John DEBON   Tuesday, December 16, 2025

12 Technological Patents for Electrical Safety
Proactive and Predictive for Tomorrow…
Technologies YeshuaBeeSavior@
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Provisional filings and ongoing deposits with INPI ! (WIPO)


I. Cover Page:

1. Inventor’s Identity
Name : John DEBON
Secondary Address : Tarn, Occitanie, FRANCE
Primary Address : YERUSHALAYIM, ISRAEL
Nationality : FRENCH
Contact : CONTACT
Email : www.yeshuabeesavior.org

 

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Global Summary Page 2

SafeLoop-AC/DC / SafeUniversal Portfolio
Inventor : John DEBON December 16, 2025

1. Overall Vision
The SafeLoop-AC/DCportfolio constitutes
a universal
AC/DC electrical safety
architecture, covering all global market needs
:
From Residential to critical infrastructures, up to ultra-critical
environments (
Nuclear, Space, Military).
Each patent (No. 1 → No. 12) is a complementary, interoperable, and certifiable building block, forming a coherent and normative ecosystem.

2. Strategic Coherence

  • Foundations (No. 1 → No. 4) : SafeLoop Core, SafeBreaker,
    SafeConverter, SafeSensor
    Universal AC/DC foundation.

  • Digital Layers (No. 5 → No. 6) : SafeCloud, SafeIoT
    Secure cloud and IoT integration.

  • Vertical Applications (No. 7) : SafeMobilityElectric Mobility.

  • Artificial Intelligence (No. 8 → No. 11): AdaptiveSafe AI, TraceSecure, ArcShield, PredictSafe AIExplainable AI,
    post-quantum blockchain traceability,
    arc detection, predictive anticipation.

  • Cross-layer (No. 12): SafeUniversalNormative integration
    and global interoperability.

 

 

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Sustainable Competitive Advantage Page 3

Each sheet now integrates all performance tiers :

  • Category 0 (<20 ms) : Minimal compliance, emerging markets,
    reduced cost.

  • Category 1 (<10 ms) : Industrial standard, broad adoption.

  • Category 2 (<5 ms) : Premium, critical infrastructures.

  • Category 3 (<4 ms) : Strong differentiation, data centers,
    electric mobility.

  • Category 4 (<3 ms) : Ultra-critical, nuclear, space, military.

This structure locks the market : No competitor can attack,
neither from below (Cheaper), nor from above (Faster).

Global Strategic Interest

  • Human : Drastic reduction of electrical accidents and fires.

  • Industrial : Worldwide adoption, AC/DC compatibility,
    OEM and Retrofit modularity.

  • Normative : IEC/IEEE and ISO/IEC 27001 compliance,
    mandatory adoption.

  • Economic : Cumulative royalties estimated at several billion €,
    global savings of several trillions €.

  • Differentiation :Moat”, expanded technological and normative
    advantage, essential portfolio.

 

 

 

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Consolidated Economic Value Page 4

  • Total portfolio value (12 patents) : ~€25–30 billion.

  • Cumulative royalties (10 years, normative scenario) :
    ~
    €2.5–3 billion.

  • Global impact : Worldwide savings of several trillions €
    in avoided losses.


Conclusion

The SafeLoop portfolio is a Universal electrical safety platform,
covering all market segments thanks to its performance tiers
(<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).
It constitutes a “Moat”, a global strategic competitive advantage,
ensuring mandatory adoption, massive royalties, and
sustainable technological differentiation.

 

 

 

 

 

 

 

 

 

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Technical Sheet – Patent No. 1 : SafeLoop Core Page 5

Title: SafeLoop Core
Universal AC/DC Safety Loop
Inventor : John DEBON December 16, 2025


1. Context and Problem

Current protection systems are fragmented :

  • Problem : Absence of a Universal AC/DC framework, cut-off
    thresholds too high (
    >20 ms), lack of coherence between modules.

  • Limit of existing solutions : Non-interoperable, non-certifiable on
    a global scale, unable to cover the full performance range.

  • Challenge : Create a universal electrical safety loop integrating
    explicit tiers (
    <20 ms, <10 ms, <5 ms, <4 ms, <3 ms)
    to meet all markets.

 

 

 


 

 

 

 

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2. Invention Summary – Patent No. 1 Page 6

SafeLoop Core is the foundational brick of the portfolio,
ensuring universal AC/DC safety.

  • Integrated multi-sensors : Voltage, current, temperature, acoustic,
    optical, olfactory, quantum.

  • Embedded hybrid AI : Fuzzy Logic + Neural networks,
    explainable and auditable.

  • Tiered performance :

    • Tier 0 (<20 ms) : Minimal compliance, residential,
      emerging markets.

    • Tier 1 (<10 ms) : Industrial standard, broad adoption.

    • Tier 2 (<5 ms) : Premium, critical infrastructures.

    • Tier 3 (<4 ms) : Data centers, electric mobility,
      strong differentiation.

    • Tier 4 (<3 ms) : Ultra-critical (Nuclear, Space, Military).

  • Post-quantum cybersecurity : Unbreakable communications,
    blockchain traceability.

  • Modular/normative industrialization : Standardized packaging,
    IEC/IEEE and ISO/IEC 27001 anticipated.

 

 

 

 

 

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3. Technical Description – Patent No. 1 Page 7

  • Universal AC/DC loop : Common architecture for all modules.

  • Multi-sensors : Fusion of electrical and physical data.

  • Hybrid AI : Dynamic thresholds, local learning, explainability.

  • Performance categories :

    • <20 ms : Minimal compliance.

    • <10 ms : Industrial standard.

    • <5 ms : Premium.

    • <4 ms : Critical.

    • <3 ms : Ultra-critical.

  • Post-quantum blockchain traceability : Tamper-proof,
    auditable logs.

  • Modular architecture : OEM and Retrofit integration.

  • Standards : IEC/IEEE, ISO/IEC 27001.


4. Optimized Claims

  1. Universal AC/DC loop integrating multi-sensors.

  2. Explainable and adaptive hybrid AI.

  3. Tiered performance (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Post-quantum blockchain traceability.

  5. Modular and standardized architecture.

  6. IEC/IEEE and ISO/IEC 27001 compliance.

 

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5. Strategic Interest – Patent No. 1 – Page 8

  • Human : Universal protection, accident reduction.

  • Industrial : Worldwide adoption, AC/DC compatibility.

  • Normative : Guaranteed compliance, mandatory adoption.

  • Differentiation : Expanded “Moat” through the complete tier range.

Economic Estimate

  • Market value :1.5–2 billion.

  • Royalties (10 years, normative scenario) : ~€150–200 million.

  • Global impact : Worldwide savings of several hundred billion .

     

  • Royalty scale :

    • Tier 0 (<20 ms) : Minimal base.

    • Tier 1 (<10 ms) : ×1.5.

    • Tier 2 (<5 ms) : ×2–×3.

    • Tier 3 (<4 ms) : ×4–×5.

    • Tier 4 (<3 ms) : ×8–×10.

 

 

 

 

 

 

 

 

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Technical Sheet – Patent No. 2 : SafeBreaker Page 9

Title : SafeBreaker
Intelligent Multi-Tier Circuit Breaker
Inventor : John DEBON December 16, 2025


1. Context and Problem

Conventional circuit breakers present several limitations :

  • Cut-off time too high (>20 ms) : Insufficient to prevent certain arcs
    or rapid overloads.

  • No adaptation to different environments : Residential, industrial,
    critical.

  • Lack of traceability and compatibility with new standards.

 

Challenge : Design a Universal intelligent circuit breaker capable
of operating with explicit cut-off tiers
(
<20 ms, <10 ms, <5 ms, <4 ms, <3 ms),
ensuring economic flexibility and global adoption.

 

 

 

 

 

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2. Invention Summary – Patent No. 2 Page 10

SafeBreaker is an intelligent electronic circuit breaker integrating
Multi-sensors and hybrid AI.

  • Integrated multi-sensors : Voltage, current, temperature, acoustic,
    optical, olfactory, quantum.

  • Embedded hybrid AI : Fuzzy Logic + Neural networks,
    explainable and auditable.

 

  • Tiered performance :

    • Tier 0 (<20 ms) : Minimal compliance, residential,
      emerging markets.

    • Tier 1 (<10 ms) : Industrial standard, broad adoption.

    • Tier 2 (<5 ms) : Premium, critical infrastructures.

    • Tier 3 (<4 ms) : Data centers, Electric Mobility.

    • Tier 4 (<3 ms) : Ultra-critical (Nuclear, Space, Military).

 

  • Post-quantum blockchain traceability : Tamper-proof logs.

  • Modular architecture : OEM and Retrofit integration.

  • Anticipated standards : IEC/IEEE, ISO/IEC 27001.

 

 

 

 

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3. Technical Description – Patent No. 2 Page 11

  • Intelligent electronic circuit breaker : Semiconductor switches
    (
    MOSFET, IGBT, GaN, SiC).

  • Multi-sensors : Multi-physical detection for increased reliability.

  • Hybrid AI : Dynamic thresholds, local learning, explainability.

  • Performance categories :

    • <20 ms : Standard cut-off, reduced cost.

    • <10 ms : Fast cut-off, industrial standard.

    • <5 ms : Premium cut-off, critical infrastructures.

    • <4 ms : Critical cut-off, Data centers, Electric Mobility.

    • <3 ms : Ultra-critical cut-off, Nuclear, Space...

  • Post-quantum blockchain traceability : Tamper-proof auditing.

  • Modular architecture : Standardized packaging.

  • Standards : IEC/IEEE, ISO/IEC 27001.


4. Optimized Claims

  1. Intelligent AC/DC circuit breaker integrating multi-sensors.

  2. Explainable and adaptive hybrid AI.

  3. Tiered performance (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Post-quantum blockchain traceability.

  5. Modular and standardized architecture.

  6. IEC/IEEE and ISO/IEC 27001 compliance.

 

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5. Strategic Interest – Patent No. 2 Page 12

  • Human : Universal protection, reduction of fires and accidents.

  • Industrial : Worldwide adoption, AC/DC compatibility.

  • Normative : Guaranteed compliance, mandatory adoption.

  • Differentiation : Expanded “Moat” through the complete tier range.

Economic Estimate

  • Market value :1.5–2 billion.

  • Royalties (10 years, normative scenario) : ~€150–200 million.

  • Global impact : Worldwide savings of several hundred billion .

 

  • Royalty scale :

    • Tier 0 (<20 ms) : Minimal base.

    • Tier 1 (<10 ms) : ×1.5.

    • Tier 2 (<5 ms) : ×2–×3.

    • Tier 3 (<4 ms) : ×4–×5.

    • Tier 4 (<3 ms) : ×8–×10.

 

 

 

 

 

 

 

 

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Technical Sheet – Patent No. 3 : SafeConverter Page 13

Title : SafeConverter
Secure and Universal AC/DC Converter
Inventor : John DEBON December 16, 2025


1. Context and Problem

AC/DC converters are at the heart of modern electrical networks
(Smart grids, Electric mobility, Data centers).

  • Problem : Current converters do not guarantee universal safety;
    their reaction times often exceed
    20 ms, exposing systems to risks
    of arc, overload, and failure.

  • Limit of existing solutions : Lack of modularity, non-interoperable,
    non-certifiable on a global scale.

  • Challenge : Design a secure and universal AC/DC converter
    integrating explicit cut-off tiers
    (
    <20 ms, <10 ms, <5 ms, <4 ms, <3 ms)
    to meet all markets.

 

 

 

 

 

 

 

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2. Invention Summary – Patent No. 3 Page 14

SafeConverter is an intelligent AC/DC converter integrating
multi-sensors and hybrid AI.

  • Integrated multi-sensors : Voltage, current, temperature, acoustic,
    optical, olfactory, quantum.

  • Embedded hybrid AI : Fuzzy Logic + Neural networks,
    explainable and auditable.

  • Tiered performance :

    • Tier 0 (<20 ms) : Minimal compliance, residential,
      emerging markets.

    • Tier 1 (<10 ms) : Industrial standard, broad adoption.

    • Tier 2 (<5 ms) : Premium, critical infrastructures.

    • Tier 3 (<4 ms) : Data centers, Electric Mobility.

    • Tier 4 (<3 ms) : Ultra-critical (Nuclear, Space, Military).

  • Post-quantum blockchain traceability : Tamper-proof logs.

  • Modular architecture : OEM and Retrofit integration.

  • Anticipated standards : IEC/IEEE, ISO/IEC 27001.

 

 

 

 

 

 

 

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3. Technical Description – Patent No. 3 Page 15

  • Secure AC/DC converter : Universal architecture for all networks.

  • Multi-sensors : Fusion of electrical and physical data.

  • Hybrid AI : Dynamic thresholds, local learning, explainability.

  • Performance categories:

    • <20 ms : Minimal compliance, reduced cost.

    • <10 ms : Industrial standard.

    • <5 ms : Premium, critical infrastructures.

    • <4 ms : Critical, Data centers, Electric Mobility.

    • <3 ms : Ultra-critical, Nuclear and Space...

  • Post-quantum blockchain traceability : Tamper-proof auditing.

  • Modular architecture : Standardized packaging.

  • Standards : IEC/IEEE, ISO/IEC 27001.


4. Optimized Claims

  1. Secure AC/DC converter integrating multi-sensors.

  2. Explainable and adaptive hybrid AI.

  3. Tiered performance (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Post-quantum blockchain traceability.

  5. Modular and standardized architecture.

  6. IEC/IEEE and ISO/IEC 27001 compliance.

 

 

Creative Commons BY-NC License – These technologies are made available under the terms of the Creative Commons Attribution – NonCommercial 4.0 International License (CC BY-NC 4.0).
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5. Strategic Interest – Patent No. 3 Page 16

  • Human : Universal protection, reduction of accidents and failures.

  • Industrial : Worldwide adoption, AC/DC compatibility.

  • Normative : Guaranteed compliance, mandatory adoption.

  • Differentiation : Expanded “Moat” through the complete tier range.

Economic Estimate

  • Market value :1.5–2 billion.

  • Royalties (10 years, normative scenario): ~€150–200 million.

  • Global impact : Worldwide savings of several hundred billion .

  • Royalty scale :

    • Tier 0 (<20 ms) : Minimal base.

    • Tier 1 (<10 ms) : ×1.5.

    • Tier 2 (<5 ms) : ×2–×3.

    • Tier 3 (<4 ms) : ×4–×5.

    • Tier 4 (<3 ms) : ×8–×10.

 

 

 

 

 

 

 

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Technical Sheet – Patent No. 4 Page 17

Title : SafeSensor
Universal Multi-Physical Sensors for Electrical Safety
Inventor : John DEBON December 16, 2025


1. Context and Problem

Electrical protection systems depend heavily on the quality of sensors.

  • Problem : Current sensors are limited to traditional electrical measurements (voltage, current, temperature) and do not allow
    fine detection of arcs or rapid anomalies.

  • Limit of existing solutions : Lack of sensor diversity, reaction
    times too high (
    >20 ms), non-interoperable.

     

  • Challenge : Design universal multi-physical sensors integrating
    explicit performance tiers
    (
    <20 ms, <10 ms, <5 ms, <4 ms, <3 ms)
    to meet all markets.

 

 

 

 

 

 

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2. Invention Summary – Patent No. 4 Page 18

SafeSensor is a multi-physical sensor platform integrated into
all electrical safety modules.

  • Integrated sensors : Electrical (voltage, current, temperature),
    acoustic, optical, olfactory (ozone), hygrometric/chemical, quantum.

  • Embedded hybrid AI : Fuzzy Logic + Neural networks,
    explainable and auditable.

 

  • Tiered performance :

    • Tier 0 (<20 ms) : Minimal compliance, residential,
      emerging markets.

    • Tier 1 (<10 ms) : Industrial standard, broad adoption.

    • Tier 2 (<5 ms) : Premium, critical infrastructures.

    • Tier 3 (<4 ms) : Data centers, Electric Mobility.

    • Tier 4 (<3 ms) : Ultra-critical (Nuclear, Space, Military).

       

  • Post-quantum blockchain traceability : Tamper-proof logs.

  • Modular architecture : OEM and Retrofit integration.

  • Anticipated standards : IEC/IEEE, ISO/IEC 27001.

 

 

 

 

 

 

Creative Commons BY-NC License – These technologies are made available under the terms of the Creative Commons Attribution – NonCommercial 4.0 International License (CC BY-NC 4.0).
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3. Technical Description – Patent No. 4 Page 19

  • Multi-physical sensors : Fusion of electrical and environmental data
    for ultra-reliable detection.

  • Hybrid AI : Dynamic thresholds, local learning, explainability.

  • Performance categories :

    • <20 ms : Standard detection, reduced cost.

    • <10 ms : Fast detection, industrial standard.

    • <5 ms : Premium detection, critical infrastructures.

    • <4 ms : Critical detection, Data centers, Electric Mobility.

    • <3 ms : Ultra-critical detection, Nuclear and Space…

  • Post-quantum blockchain traceability : Tamper-proof auditing.

  • Modular architecture : Standardized packaging.

  • Standards : IEC/IEEE, ISO/IEC 27001.


4. Optimized Claims

  1. Universal multi-physical sensors for AC/DC.

  2. Explainable and adaptive hybrid AI.

  3. Tiered performance (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Post-quantum blockchain traceability.

  5. Modular and standardized architecture.

  6. IEC/IEEE and ISO/IEC 27001 compliance.

 

 

Creative Commons BY-NC License – These technologies are made available under the terms of the Creative Commons Attribution – NonCommercial 4.0 International License (CC BY-NC 4.0).
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5. Strategic Interest – Patent No. 4 Page 20

  • Human : Ultra-reliable detection, accident reduction.

  • Industrial : Worldwide adoption, AC/DC compatibility.

  • Normative : Guaranteed compliance, mandatory adoption.

  • Differentiation : Expanded “Moat” through the complete tier range.

Economic Estimate

  • Market value :1.5–2 billion.

  • Royalties (10 years, normative scenario) : ~€150–200 million.

  • Global impact : Worldwide savings of several hundred billion .

     

  • Royalty scale :

    • Tier 0 (<20 ms) : Minimal base.

    • Tier 1 (<10 ms) : ×1.5.

    • Tier 2 (<5 ms) : ×2–×3.

    • Tier 3 (<4 ms) : ×4–×5.

    • Tier 4 (<3 ms) : ×8–×10.

 

 

 

 

 

 

 

 

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Technical Sheet – Patent No. 5 : SafeCloud Page 21

Title : SafeCloud
Secure and Normative Cloud Integration for Electrical Safety
Inventor : John DEBON December 16, 2025


1. Context and Problem

The supervision of electrical systems increasingly relies
on cloud platforms.

  • Problem : Current solutions suffer from excessive latencies (>20 ms),
    security vulnerabilities, and lack of normative compliance.

  • Limit of existing solutions : Dependence on non-secure clouds, absence of tamper-proof traceability, inability to guarantee certifiable reaction times.

     

  • Challenge : Design a secure and universal cloud integration
    with explicit latency tiers
    (
    <20 ms, <10 ms, <5 ms, <4 ms, <3 ms)
    to meet all markets.


 

 

 

 

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2. Invention Summary – Patent No. 5 Page 22

SafeCloud is a secure cloud layer integrated into the
entire SafeLoop/SafeUniversal portfolio.

  • Universal connection : Compatible with all AC/DC modules.

  • Embedded hybrid AI : Fuzzy Logic + Neural networks,
    explainable and auditable.

  • Tiered performance :

    • Tier 0 (<20 ms) : Minimal compliance, residential,
      emerging markets.

    • Tier 1 (<10 ms) : Industrial standard, broad adoption.

    • Tier 2 (<5 ms) : Premium, critical infrastructures.

    • Tier 3 (<4 ms) : Data centers, Electric Mobility.

    • Tier 4 (<3 ms) : Ultra-critical (Nuclear, Space, Military).

  • Post-quantum blockchain traceability : Tamper-proof logs.

  • Modular architecture : OEM and Retrofit integration.

  • Anticipated standards : IEC/IEEE, ISO/IEC 27001.


 

 

 

 

 

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3. Technical Description – Patent No. 5 Page 23

  • Secure cloud : Certified hosting, post-quantum encrypted
    communications.

  • Multi-sensors : Real-time transmission of electrical
    and physical data.

  • Hybrid AI : Explainable analysis, local and global learning.

  • Performance categories :

    • <20 ms : Standard latency, reduced cost.

    • <10 ms : Fast latency, industrial standard.

    • <5 ms : Premium latency, critical infrastructures.

    • <4 ms : Critical latency, Data centers, Electric Mobility.

    • <3 ms : Ultra-critical latency, Nuclear and Space…

  • Post-quantum blockchain traceability : Tamper-proof auditing.

  • Modular architecture : Standardized packaging.

  • Standards : IEC/IEEE, ISO/IEC 27001.

4. Optimized Claims

  1. Secure cloud layer for AC/DC integrating multi-sensors.

  2. Explainable and adaptive hybrid AI.

  3. Tiered performance (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Post-quantum blockchain traceability.

  5. Modular and standardized architecture.

  6. IEC/IEEE and ISO/IEC 27001 compliance.

 

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5. Strategic Interest – Patent No. 5 Page 24

  • Human : Reliable supervision, risk reduction.

  • Industrial : Worldwide adoption, AC/DC compatibility.

  • Normative : Guaranteed compliance, mandatory adoption.

  • Differentiation : Expanded “Moat” through the complete tier range.

Economic Estimate

  • Market value :1.5–2 billion.

  • Royalties (10 years, normative scenario): ~€150–200 million.

  • Global impact: Worldwide savings of several hundred billion .

 

  • Royalty scale :

    • Tier 0 (<20 ms) : Minimal base.

    • Tier 1 (<10 ms) : ×1.5.

    • Tier 2 (<5 ms) : ×2–×3.

    • Tier 3 (<4 ms) : ×4–×5.

    • Tier 4 (<3 ms) : ×8–×10.

 

 

 

 

 

 

 

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Technical Sheet – Patent No. 6 : SafeIoT Page 25

Title : SafeIoT
Secure and Normative IoT Integration for Electrical Safety
Inventor : John DEBON December 15, 2025


1. Context and Problem

The Internet of Things (IoT) has become essential in
modern electrical networks.

  • Problem : Current IoT solutions suffer from security vulnerabilities,
    excessive latencies (
    >20 ms), and lack of normative compliance.

  • Limit of existing solutions : Absence of tamper-proof traceability,
    inability to guarantee certifiable reaction times,
    dependence on non-secure protocols.

     

  • Challenge : Design a secure and universal IoT integration
    with explicit performance tiers
    (
    <20 ms, <10 ms, <5 ms, <4 ms, <3 ms)
    to meet all markets.

 

 

 

 

 

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2. Invention Summary – Patent No. 6 Page 26

SafeIoT is a secure IoT layer integrated into the
entire SafeLoop/SafeUniversal portfolio.

  • Universal connection : Compatible with all AC/DC modules
    and sensors.

  • Embedded hybrid AI : Fuzzy Logic + Neural networks,
    explainable and auditable.

     

  • Tiered performance :

    • Tier 0 (<20 ms) : Minimal compliance, residential,
      emerging markets.

    • Tier 1 (<10 ms) : Industrial standard, broad adoption.

    • Tier 2 (<5 ms) : Premium, critical infrastructures.

    • Tier 3 (<4 ms) : Data centers, Electric Mobility.

    • Tier 4 (<3 ms) : Ultra-critical (Nuclear, Space, Military).

       

  • Post-quantum blockchain traceability : Tamper-proof logs.

  • Modular architecture : OEM and Retrofit integration.

  • Anticipated standards : IEC/IEEE, ISO/IEC 27001.


 

 

 

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3. Technical Description – Patent No. 6 Page 27

  • Secure IoT : Post-quantum encrypted protocols,
    tamper-proof communications.

  • Multi-sensors : Real-time transmission of
    electrical and physical data.

  • Hybrid AI : Explainable analysis, local and global learning.

  • Performance categories :

    • <20 ms : Standard latency, reduced cost.

    • <10 ms : Fast latency, industrial standard.

    • <5 ms : Premium latency, critical infrastructures.

    • <4 ms : Critical latency, data centers, electric mobility.

    • <3 ms : Ultra-critical latency, nuclear and space...

  • Post-quantum blockchain traceability : Tamper-proof auditing.

  • Modular architecture : Standardized packaging.

  • Standards : IEC/IEEE, ISO/IEC 27001.

4. Optimized Claims

  1. Secure IoT layer for AC/DC integrating multi-sensors.

  2. Explainable and adaptive hybrid AI.

  3. Tiered performance (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Post-quantum blockchain traceability.

  5. Modular and standardized architecture.

  6. IEC/IEEE and ISO/IEC 27001 compliance.

 

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5. Strategic Interest – Patent No. 6 Page 28

  • Human : Reliable supervision, risk reduction.

  • Industrial : Worldwide adoption, AC/DC compatibility.

  • Normative : Guaranteed compliance, mandatory adoption.

  • Differentiation : Expanded “Moat” through the complete tier range.

Economic Estimate

  • Market value:1.5–2 billion.

  • Royalties (10 years, normative scenario): ~€150–200 million.

  • Global impact : Worldwide savings of several hundred billion .

     

  • Royalty scale:

    • Tier 0 (<20 ms) : Minimal base.

    • Tier 1 (<10 ms) : ×1.5.

    • Tier 2 (<5 ms) : ×2–×3.

    • Tier 3 (<4 ms) : ×4–×5.

    • Tier 4 (<3 ms) : ×8–×10.

 











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Technical Sheet – Patent No. 7 : SafeMobility Page 29

Title : SafeMobility
Universal Safety for Electric Mobility
Inventor : John DEBON December 16, 2025


1. Context and Problem

Electric Mobility (vehicles, buses, trains, hybrid aircraft)
is rapidly expanding.

  • Problem : Current onboard protection systems are too slow (>20 ms),
    unreliable, and not adapted to critical environments.

  • Limit of existing solutions : Lack of modularity, non-interoperable,
    inability to guarantee certifiable reaction times.

  • Challenge : Design universal safety for electric mobility
    integrating explicit cut-off tiers
    (
    <20 ms, <10 ms, <5 ms, <4 ms, <3 ms)
    to meet all segments.

 

 

 

 

 

 

 

 

 

 

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2. Invention Summary – Patent No. 7 Page 30

SafeMobility is a universal safety layer dedicated
to electric and hybrid vehicles.

  • Integrated multi-sensors : Voltage, current, temperature, acoustic,
    optical, olfactory, quantum.

  • Embedded hybrid AI : Fuzzy Logic + Neural networks,
    explainable and auditable.

  • Tiered performance:

    • Tier 0 (<20 ms) : Minimal compliance, residential,
      emerging markets.

    • Tier 1 (<10 ms) : Industrial standard, broad adoption
      (automobile, bus).

    • Tier 2 (<5 ms) : Premium, critical infrastructures (fleets,
      public transport).

    • Tier 3 (<4 ms) : Sensitive mobility (mobile data centers,
      light aviation).

    • Tier 4 (<3 ms) : Ultra-critical (Aerospace, Space, Military).

  • Post-quantum blockchain traceability : Tamper-proof logs.

  • Modular architecture : OEM and Retrofit integration.

  • Anticipated standards : IEC/IEEE, ISO/IEC 27001.

 

 

 

 

 

 

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3. Technical Description – Patent No. 7 Page 31

  • Universal onboard safety : Common architecture for
    all electric vehicles.

  • Multi-sensors : Fusion of electrical and physical data.

  • Hybrid AI : Dynamic thresholds, local learning, explainability.

  • Performance categories :

    • <20 ms : Standard cut-off, reduced cost.

    • <10 ms : Fast cut-off, automotive standard.

    • <5 ms : Premium cut-off, public transport.

    • <4 ms : Critical cut-off, light aviation.

    • <3 ms : Ultra-critical cut-off, Space and Military...

  • Post-quantum blockchain traceability : Tamper-proof auditing.

  • Modular architecture : Standardized packaging.

  • Standards : IEC/IEEE, ISO/IEC 27001.

4. Optimized Claims

  1. Universal safety system for Electric Mobility
    integrating multi-sensors.

  2. Explainable and adaptive hybrid AI.

  3. Tiered performance (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Post-quantum blockchain traceability.

  5. Modular and standardized architecture.

  6. IEC/IEEE and ISO/IEC 27001 compliance.

 

 

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5. Strategic Interest – Patent No. 7 Page 32

  • Human : Universal protection, reduction of accidents
    related to Electric Mobility.

  • Industrial : Worldwide adoption, AC/DC compatibility.

  • Normative : Guaranteed compliance, mandatory adoption.

  • Differentiation : Expanded “Moat” through the complete tier range.

Economic Estimate

  • Market value :2–2.5 billion.

  • Royalties (10 years, normative scenario) : ~€200–250 million.

  • Global impact : Worldwide savings of several hundred billion .

 

  • Royalty scale :

    • Tier 0 (<20 ms) : Minimal base.

    • Tier 1 (<10 ms) : ×1.5.

    • Tier 2 (<5 ms) : ×2–×3.

    • Tier 3 (<4 ms) : ×4–×5.

    • Tier 4 (<3 ms) : ×8–×10.

 

 

 

 

 

 

 

 

 

 

 

 

 

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Technical Sheet – Patent No. 8 : AdaptiveSafe AI Page 33

Title : AdaptiveSafe AI
Explainable and Adaptive Artificial Intelligence

for Electrical Safety
Inventor : John DEBON December 16, 2025


1. Context and Problem

Current protection systems rely on fixed thresholds and opaque algorithms.

  • Problem : Lack of real-time adaptation, absence of explainability,
    reaction times too high (
    >20 ms).

  • Limit of existing solutions : Non-auditable AI, non-certifiable,
    inability to anticipate anomalies.

     

  • Challenge : Design explainable and adaptive AI
    integrating
    explicit performance tiers
    (
    <20 ms, <10 ms, <5 ms, <4 ms, <3 ms)
    to meet all markets.

 

 

 

 

 

 

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2. Invention Summary – Patent No. 8 Page 34

AdaptiveSafe AI is a hybrid artificial intelligence dedicated
to electrical safety.

  • Hybrid AI : Fuzzy Logic + Neural networks,
    explainable and auditable.

  • Integrated multi-sensors : Voltage, current, temperature, acoustic,
    optical, olfactory, quantum.

     

  • Tiered performance :

    • Tier 0 (<20 ms) : Minimal compliance, residential,
      emerging markets.

    • Tier 1 (<10 ms) : Industrial standard, broad adoption.

    • Tier 2 (<5 ms) : Premium, critical infrastructures.

    • Tier 3 (<4 ms) : Data centers, electric mobility.

    • Tier 4 (<3 ms) : Ultra-critical (nuclear, space, military).

       

  • Post-quantum blockchain traceability : Tamper-proof logs.

  • Modular architecture : OEM and Retrofit integration.

  • Anticipated standards : IEC/IEEE, ISO/IEC 27001.

 

 

 

 

 

 

 

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3. Technical Description – Patent No. 8 Page 35

  • Explainable hybrid AI : Dynamic thresholds, local learning,
    decision justification.

  • Multi-sensors : Fusion of electrical and physical data.

  • Performance categories :

    • <20 ms : Standard reaction, reduced cost.

    • <10 ms : Fast reaction, industrial standard.

    • <5 ms : Premium reaction, critical infrastructures.

    • <4 ms : Critical reaction, data centers, electric mobility.

    • <3 ms : Ultra-critical reaction, nuclear and space...

  • Post-quantum blockchain traceability : Tamper-proof auditing.

  • Modular architecture : Standardized packaging.

  • Standards : IEC/IEEE, ISO/IEC 27001.


4. Optimized Claims

  1. Explainable and adaptive hybrid AI for AC/DC.

  2. Universal multi-sensor integration.

  3. Tiered performance (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Post-quantum blockchain traceability.

  5. Modular and standardized architecture.

  6. IEC/IEEE and ISO/IEC 27001 compliance.

 

 

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5. Strategic Interest – Patent No. 8 Page 36

  • Human : Explainable decisions, increased trust.

  • Industrial : Worldwide adoption, AC/DC compatibility.

  • Normative : Guaranteed compliance, mandatory adoption.

  • Differentiation : Expanded “Moat” through the complete tier range.

Economic Estimate

  • Market value :2–2.5 billion.

  • Royalties (10 years, normative scenario) : ~€200–250 million.

  • Global impact : Worldwide savings of several hundred billion .

     

  • Royalty scale :

    • Tier 0 (<20 ms) : Minimal base.

    • Tier 1 (<10 ms) : ×1.5.

    • Tier 2 (<5 ms) : ×2–×3.

    • Tier 3 (<4 ms) : ×4–×5.

    • Tier 4 (<3 ms) : ×8–×10.

 

 

 

 

 

 

 

 

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Technical Sheet – Patent No. 9 : TraceSecure Page 37

Title : TraceSecure
Post-Quantum Blockchain Traceability for Electrical Safety
Inventor : John DEBON December 16, 2025


1. Context and Problem

Current traceability systems are vulnerable :

  • Problem : Logs can be modified, lack of temporal precision,
    non-resistant to future (quantum) attacks.

  • Limit of existing solutions : Imprecise timestamping (>10 ms),
    absence of tamper-proof certification,
    lack of trust from regulatory bodies.

  • Challenge : Create post-quantum blockchain traceability
    with explicit performance tiers
    (
    <20 ms, <10 ms, <5 ms, <4 ms, <3 ms)
    to guarantee trust and global adoption.

 

 

 

 

 

 

 

 

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2. Invention Summary – Patent No. 9 Page 38

TraceSecure is a universal traceability layer integrated
into all electrical safety modules.

  • Sub-ms timestamping : Precision up to 0.1 ms.

     

  • Tiered performance:

    • Tier 0 (<20 ms) : Minimal compliance, residential,
      emerging markets.

    • Tier 1 (<10 ms) : Industrial standard, broad adoption.

    • Tier 2 (<5 ms) : Premium, critical infrastructures.

    • Tier 3 (<4 ms) : Data centers, Electric Mobility.

    • Tier 4 (<3 ms) : Ultra-critical (Nuclear, Space, Military).

       

  • Post-quantum cryptography : Signatures resistant to future attacks.

  • Tamper-proof blockchain : Immutable logs, audited by regulators.

  • Anticipated standards : IEC/IEEE, ISO/IEC 27001.

 

 

 

 

 

 

 

 

 

 

 

 

 

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3. Technical Description – Patent No. 9 Page 39

  • Sub-ms timestamping : Synchronization with universal sources.

     

  • Performance categories :

    • <20 ms : Standard traceability, reduced cost.

    • <10 ms : Fast traceability, industrial standard.

    • <5 ms : Premium traceability, critical infrastructures.

    • <4 ms : Critical traceability, Data centers, Electric Mobility.

    • <3 ms : Ultra-critical traceability, Nuclear and Space…

       

  • Post-quantum cryptography : Lattice-based signatures.

  • Distributed blockchain : Immutable, auditable.

  • Modular architecture : OEM and Retrofit integration.

  • Standards : IEC/IEEE, ISO/IEC 27001.


4. Optimized Claims

  1. Post-quantum blockchain traceability system for AC/DC.

  2. Sub-ms timestamping with 0.1 ms precision.

  3. Tiered performance (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Post-quantum cryptographic signatures.

  5. Immutable and audited logs.

  6. Modular and standardized architecture.

  7. IEC/IEEE and ISO/IEC 27001 compliance.

 

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5. Strategic Interest – Patent No. 9 Page 40

  • Human : Absolute trust in safety logs.

  • Industrial : Adoption in critical and ultra-critical infrastructures.

  • Normative : Guaranteed compliance, mandatory adoption.

  • Differentiation : Expanded “Moat” through the complete tier range.

Economic Estimate

  • Market value :2–2.5 billion.

  • Royalties (10 years, normative scenario) : ~€200–250 million.

  • Global impact : Worldwide savings of several hundred billion .

     

  • Royalty scale :

    • Tier 0 (<20 ms) : Minimal base.

    • Tier 1 (<10 ms) : ×1.5.

    • Tier 2 (<5 ms) : ×2–×3.

    • Tier 3 (<4 ms) : ×4–×5.

    • Tier 4 (<3 ms) : ×8–×10.

 

 

 

 

 

 

 

 

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Technical Sheet – Patent No. 10 : ArcShield Page 41

Title : ArcShield
Ultra-Fast Detection and Suppression of Electrical Arcs
Inventor : John DEBON December 16, 2025


1. Context and Problem

Electrical arcs are among the most serious hazards :
Fires, equipment destruction, human accidents.

  • Problem : Current arc detection systems are too slow (>20 ms),
    unreliable, and prone to false positives.

  • Limit of existing solutions : Limited sensors, absence of
    explainable
    AI, non-certifiable at sub-ms levels.

     

  • Challenge : Design an arc detection and suppression system
    with explicit performance tiers
    (
    <20 ms, <10 ms, <5 ms, <4 ms, <3 ms)
    to guarantee universal adoption.

 

 

 

 

 

 

 

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2. Invention Summary – Patent No. 10 Page 42

ArcShield is an ultra-fast arc detection and suppression
system integrating advanced sensors and hybrid AI.

  • Multi-sensors : Electrical, acoustic, optical, olfactory, quantum.

  • Hybrid AI (Fuzzy Logic + Neural networks) :
    Explainable, adaptive, auditable.

  • Tiered performance :

    • Tier 0 (<20 ms) : Minimal compliance, residential,
      emerging markets.

    • Tier 1 (<10 ms) : Industrial standard, broad adoption.

    • Tier 2 (<5 ms) : Premium, critical infrastructures.

    • Tier 3 (<4 ms) : Data centers, Electric Mobility.

    • Tier 4 (<3 ms) : Ultra-critical (Nuclear, Space, Military).

  • Post-quantum blockchain traceability : Tamper-proof logs.

  • Modular architecture : OEM and Retrofit integration.

  • Anticipated standards : IEC/IEEE, ISO/IEC 27001.

 

 

 

 

 

 

 

 

 

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3. Technical Description – Patent No. 10 Page 43

  • Fused multi-sensors : Electrical anomalies + Acoustic signature
    +
    Optical flash + Ozone detection.

  • Hybrid AI : Dynamic thresholds, local learning, explainability.

  • Performance categories :

    • <20 ms : Standard detection, reduced cost.

    • <10 ms : Fast detection, industrial standard.

    • <5 ms : Premium detection, critical infrastructures.

    • <4 ms : Critical detection, Data centers, Electric Mobility.

    • <3 ms : Ultra-critical detection, Nuclear and Space...

  • Post-quantum blockchain traceability : Tamper-proof auditing.

  • Modular architecture : Standardized packaging.

  • Standards : IEC/IEEE, ISO/IEC 27001.

4. Optimized Claims

  1. Ultra-fast arc detection and suppression system.

  2. Integration of advanced multi-sensors (electrical, acoustic, optical,
    olfactory, quantum).

  3. Explainable and adaptive hybrid AI.

  4. Tiered performance (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  5. Post-quantum blockchain traceability.

  6. Modular and standardized architecture.

  7. IEC/IEEE and ISO/IEC 27001 compliance.

 

 

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5. Strategic Interest – Patent No. 10 Page 44

  • Human : Drastic reduction of fires and accidents caused by arcs.

  • Industrial : Adoption in residential, industrial, data centers,
    critical infrastructures.

  • Normative : Guaranteed compliance, mandatory adoption.

  • Differentiation : Expanded “Moat” through the complete tier range.

Economic Estimate

  • Market value :2.5–3 billion.

  • Royalties (10 years, normative scenario) : ~€250–300 million.

  • Global impact : Worldwide savings of several trillions
    in avoided losses (fires, accidents, shutdowns).

  • Royalty scale :

    • Tier 0 (<20 ms) : Minimal base.

    • Tier 1 (<10 ms) : ×1.5.

    • Tier 2 (<5 ms) : ×2–×3.

    • Tier 3 (<4 ms) : ×4–×5.

    • Tier 4 (<3 ms) : ×8–×10.

 

 

 

 

 

 

 

 

 

 

 

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Technical Sheet – Patent No. 11 : PredictSafe AI Page 45

Title : PredictSafe AI
Predictive and Preventive Artificial Intelligence
for Electrical Safety

Inventor : John DEBON December 16, 2025


1. Context and Problem

Traditional protection systems are reactive :
They intervene only after a fault occurs.

  • Problem : Intervention too late, leading to accidents, fires,
    costly shutdowns.

  • Limit of existing solutions : Absence of predictive intelligence,
    non-explainable, unable to guarantee certifiable reaction times.

     

  • Challenge : Design predictive and preventive AI integrating
    explicit performance tiers
    (
    <20 ms, <10 ms, <5 ms, <4 ms, <3 ms)
    to anticipate anomalies and act before they occur.

 

 

 

 

 

 

 

 

 

 

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2. Invention Summary – Patent No. 11 Page 46

PredictSafe AI is a predictive artificial intelligence integrated
into electrical safety systems.

  • Integrated multi-sensors : Voltage, current, temperature, acoustic,
    optical, olfactory, quantum.

  • Hybrid AI : Fuzzy Logic + Neural networks, explainable,
    adaptive, and predictive.

     

  • Tiered performance :

    • Tier 0 (<20 ms) : Minimal compliance, residential,
      emerging markets.

    • Tier 1 (<10 ms) : Industrial standard, broad adoption.

    • Tier 2 (<5 ms) : Premium, critical infrastructures.

    • Tier 3 (<4 ms) : Data centers, Electric Mobility.

    • Tier 4 (<3 ms) : Ultra-critical (Nuclear, Space, Military).

       

  • Post-quantum blockchain traceability : Tamper-proof logs.

  • Modular architecture : OEM and Retrofit integration.

  • Anticipated standards : IEC/IEEE, ISO/IEC 27001.

 

 

 

 

 

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3. Technical Description – Patent No. 11 Page 47

  • Predictive hybrid AI : Dynamic thresholds, local learning,
    risk projection.

  • Multi-sensors : Fusion of electrical and physical data.

  • Performance categories :

    • <20 ms : Standard detection, reduced cost.

    • <10 ms : Fast projection, industrial standard.

    • <5 ms : Premium anticipation, critical infrastructures.

    • <4 ms : Critical anticipation, Data centers, Electric Mobility.

    • <3 ms : Ultra-critical anticipation, Nuclear and Space...

  • Post-quantum blockchain traceability : Tamper-proof auditing.

  • Modular architecture : Standardized packaging.

  • Standards : IEC/IEEE, ISO/IEC 27001.


4. Optimized Claims

  1. Explainable and predictive hybrid AI for AC/DC.

  2. Universal multi-sensor integration.

  3. Tiered performance (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Post-quantum blockchain traceability.

  5. Modular and standardized architecture.

  6. IEC/IEEE and ISO/IEC 27001 compliance.

 

 

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5. Strategic Interest – Patent No. 11 Page 48

  • Human : Prevention of accidents before they occur.

  • Industrial : Worldwide adoption, AC/DC compatibility.

  • Normative : Guaranteed compliance, mandatory adoption.

  • Differentiation : Expanded “Moat” through the complete tier range.

Economic Estimate

  • Market value :2.5–3 billion.

  • Royalties (10 years, normative scenario) : ~€250–300 million.

  • Global impact : Worldwide savings of several trillions
    in avoided losses (fires, accidents, shutdowns).

  • Royalty scale :

    • Tier 0 (<20 ms) : Minimal base.

    • Tier 1 (<10 ms) : ×1.5.

    • Tier 2 (<5 ms) : ×2–×3.

    • Tier 3 (<4 ms) : ×4–×5.

    • Tier 4 (<3 ms) : ×8–×10.


 

 

 

 

 

 

 

 

 

 

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Technical Sheet – Patent No. 12 : SafeUniversal Page 49

Title : SafeUniversal
Universal Cross-Layer and Normative
Architecture for Electrical Safety

Inventor : John DEBON December 16, 2025


1. Context and Problem

Electrical protection systems are fragmented and heterogeneous.

  • Problem : Absence of a universal cross-layer, interoperable,
    and certifiable framework.

  • Limit of existing solutions : Incompatibility between AC/DC
    modules, absence of tamper-proof traceability,
    reaction times too high (
    >20 ms).

  • Challenge : Design a universal cross-layer architecture
    integrating explicit performance tiers
    (
    <20 ms, <10 ms, <5 ms, <4 ms, <3 ms)
    to guarantee global adoption and normative coherence.

 

 

 

 

 

 

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2. Invention Summary – Patent No. 12 Page 50

SafeUniversal is a universal cross-layer architecture that connects
all modules : SafeLoop-AC/DC, SafeBreaker, SafeConverter, SafeSensor,
SafeCloud, SafeIoT, SafeMobility, AdaptiveSafe AI, TraceSecure,
ArcShield, and PredictSafe AI.

  • Universal interoperability : AC/DC, residential, industrial, critical,
    ultra-critical.

  • Embedded hybrid AI : Fuzzy Logic + Neural networks,
    explainable and auditable.

     

  • Tiered performance :

    • Tier 0 (<20 ms) : Minimal compliance, residential,
      emerging markets.

    • Tier 1 (<10 ms) : Industrial standard, broad adoption.

    • Tier 2 (<5 ms) : Premium, critical infrastructures.

    • Tier 3 (<4 ms) : Data centers, Electric Mobility.

    • Tier 4 (<3 ms) : Ultra-critical (Nuclear, Space, Military).

       

  • Post-quantum blockchain traceability : Tamper-proof logs.

  • Modular architecture : OEM and Retrofit integration.

  • Anticipated standards : IEC/IEEE, ISO/IEC 27001.

 

 

 

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3. Technical Description – Patent No. 12 Page 51

  • Universal cross-layer architecture : Common framework
    connecting all modules.

  • Multi-sensors : Fusion of electrical and physical data.

  • Hybrid AI : Dynamic thresholds, local learning, explainability.

  • Performance categories :

    • <20 ms : Minimal standard, reduced cost.

    • <10 ms : Industrial standard.

    • <5 ms : Premium, critical infrastructures.

    • <4 ms : Critical, Data centers, Electric Mobility.

    • <3 ms : Ultra-critical, Nuclear and Space...

  • Post-quantum blockchain traceability : Tamper-proof auditing.

  • Modular architecture : Standardized packaging.

  • Standards : IEC/IEEE, ISO/IEC 27001.

4. Optimized Claims

  1. Universal cross-layer architecture for AC/DC
    integrating multi-sensors.

  2. Explainable and adaptive hybrid AI.

  3. Tiered performance (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Post-quantum blockchain traceability.

  5. Modular and standardized architecture.

  6. IEC/IEEE and ISO/IEC 27001 compliance.

 

 

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5. Strategic Interest – Patent No. 12 Page 52

  • Human : Universal protection, global coherence.

  • Industrial : Worldwide adoption, AC/DC compatibility.

  • Normative : Guaranteed compliance, mandatory adoption.

  • Differentiation : Expanded “Moat” through the complete tier range.

Economic Estimate

  • Market value :3–3.5 billion.

  • Royalties (10 years, normative scenario) : ~€300–350 million.

  • Global impact : Worldwide savings of several trillions .

  • Royalty scale :

    • Tier 0 (<20 ms) : Minimal base.

    • Tier 1 (<10 ms) : ×1.5.

    • Tier 2 (<5 ms) : ×2–×3.

    • Tier 3 (<4 ms) : ×4–×5.

    • Tier 4 (<3 ms) : ×8–×10.

 

 

 

 

 

 

 

 

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Legal Drafting : Patent No. 1 – SafeLoop Core Page 53

Title : Universal AC/DC Electrical Safety Architecture

Independent Claims

  1. A universal electrical safety system comprising:
    â—¦ a multi-sensor module configured to detect electrical and physical parameters including voltage, current, temperature, acoustic, optical, olfactory, and quantum signals;
    â—¦ a hybrid artificial intelligence engine combining fuzzy logic and neural networks, capable of generating explainable and auditable safety decisions;
    â—¦ a cut-off mechanism operating according to explicit performance tiers selected from <20 ms, <10 ms, <5 ms, <4 ms, and <3 ms;
    â—¦ a traceability module based on post-quantum blockchain, configured to record immutable safety events;
    â—¦ said system being interoperable with alternating current (AC) and direct current (DC) infrastructures.

  2. System according to claim 1, wherein the hybrid artificial intelligence engine dynamically adapts thresholds based on sensor fusion and local learning.

  3. System according to claim 1, wherein the blockchain traceability module provides sub-millisecond timestamping with 0.1 ms precision.

 

 

 

 

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Dependent Claims Page 54

  1. System according to claim 1, wherein the cut-off mechanism is
    modular and standardized for OEM and retrofit integration.

  2. System according to claim 1, compliant with IEC/IEEE and
    ISO/IEC 27001 standards.

  3. System according to claim 1, wherein the <3 ms performance tier
    is dedicated to ultra-critical infrastructures including nuclear,
    aerospace, and military.

  4. System according to claim 1, wherein the <10 ms tier is dedicated
    to industrial infrastructures including smart grids and data centers.

  5. System according to claim 1, wherein the <20 ms tier is dedicated
    to residential infrastructures and emerging markets.

Abstract (≤150 words)
The invention relates to a universal AC/DC electrical safety system integrating multi-sensor fusion, explainable hybrid artificial intelligence, and post-quantum blockchain traceability. The system provides explicit performance tiers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms) ensuring compliance across residential, industrial, critical, and ultra-critical infrastructures. The hybrid AI engine dynamically adapts thresholds and delivers auditable decisions, while the blockchain module ensures immutable traceability with sub-millisecond precision. The modular architecture enables OEM and retrofit integration, ensuring global adoption and normative compliance.

 

 

 

 

 

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Legal Drafting : Patent No. 2 – SafeBreaker Page 55

Title : Intelligent Electronic Circuit Breaker – SafeBreaker

Independent Claims

  1. An intelligent electronic circuit breaker comprising:
    â—¦ a multi-sensor module configured to monitor electrical and physical parameters including voltage, current, temperature, acoustic, optical, olfactory, and quantum signals;
    â—¦ a hybrid artificial intelligence engine combining fuzzy logic and neural networks, capable of generating explainable and auditable safety decisions;
    â—¦ a cut-off mechanism operating according to explicit performance tiers selected from <20 ms, <10 ms, <5 ms, <4 ms, and <3 ms;
    â—¦ a traceability module based on post-quantum blockchain, configured to record immutable cut-off events;
    â—¦ said circuit breaker being interoperable with alternating current (AC) and direct current (DC) infrastructures.

  2. Circuit breaker according to claim 1, wherein the hybrid artificial intelligence engine dynamically adapts cut-off thresholds based on sensor fusion and local learning.

  3. Circuit breaker according to claim 1, wherein the blockchain traceability module provides sub-millisecond timestamping with 0.1 ms precision.

 

 

 

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Dependent Claims Page 56

  1. Circuit breaker according to claim 1, wherein the cut-off mechanism is modular and standardized for OEM and retrofit integration.

  2. Circuit breaker according to claim 1, compliant with IEC/IEEE and ISO/IEC 27001 standards.

  3. Circuit breaker according to claim 1, wherein the <3 ms performance tier is dedicated to ultra-critical infrastructures including nuclear, aerospace, and military.

  4. Circuit breaker according to claim 1, wherein the <10 ms tier is dedicated to industrial infrastructures including smart grids and data centers.

  5. Circuit breaker according to claim 1, wherein the <20 ms tier is dedicated to residential infrastructures and emerging markets.

Abstract (≤150 words)
The invention relates to an intelligent electronic circuit breaker integrating multi-sensor fusion, explainable hybrid artificial intelligence, and post-quantum blockchain traceability. The circuit breaker provides explicit performance tiers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms) ensuring compliance across residential, industrial, critical, and ultra-critical infrastructures. The hybrid AI engine dynamically adapts thresholds and delivers auditable decisions, while the blockchain module ensures immutable traceability with sub-millisecond precision. The modular architecture enables OEM and retrofit integration, ensuring global adoption and normative compliance.

 

 

 

 

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Legal Drafting : Patent No. 3 – SafeConverter Page 57

Title : Secure AC/DC Converter – SafeConverter

Independent Claims

  1. A secure AC/DC converter comprising:
    â—¦ a multi-sensor module configured to monitor electrical and physical parameters including voltage, current, temperature, acoustic, optical, olfactory, and quantum signals;
    â—¦ a hybrid artificial intelligence engine combining fuzzy logic and neural networks, capable of generating explainable and auditable decisions in conversion;
    â—¦ a conversion mechanism operating according to explicit performance tiers selected from <20 ms, <10 ms, <5 ms, <4 ms, and <3 ms;
    â—¦ a traceability module based on post-quantum blockchain, configured to record immutable conversion events;
    â—¦ said converter ensuring interoperability between alternating current (AC) and direct current (DC) infrastructures.

  2. Converter according to claim 1, wherein the hybrid artificial intelligence engine dynamically adapts conversion thresholds based on sensor fusion and local learning.

  3. Converter according to claim 1, wherein the blockchain traceability module provides sub-millisecond timestamping with 0.1 ms precision.

 

 

 

 

 

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Dependent Claims Page 58

  1. Converter according to claim 1, wherein the conversion mechanism is modular and standardized for OEM and retrofit integration.

  2. Converter according to claim 1, compliant with IEC/IEEE and ISO/IEC 27001 standards.

  3. Converter according to claim 1, wherein the <3 ms performance tier is dedicated to ultra-critical infrastructures including nuclear, aerospace, and military.

  4. Converter according to claim 1, wherein the <10 ms tier is dedicated to industrial infrastructures including smart grids and data centers.

  5. Converter according to claim 1, wherein the <20 ms tier is dedicated to residential infrastructures and emerging markets.

Abstract (≤150 words)
The invention relates to a secure AC/DC converter integrating multi-sensor fusion, explainable hybrid artificial intelligence, and post-quantum blockchain traceability. The converter provides explicit performance tiers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms) ensuring compliance across residential, industrial, critical, and ultra-critical infrastructures. The hybrid AI engine dynamically adapts thresholds and delivers auditable decisions, while the blockchain module ensures immutable traceability with sub-millisecond precision. The modular architecture enables OEM and retrofit integration, ensuring global adoption and normative compliance.

 

 

 

 

 

 

 

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Legal Drafting : Patent No. 4 – SafeSensor Page 59

Title : Multi-Physical Sensor System
for Electrical Safety –
SafeSensor

Independent Claims

  1. A multi-physical sensor system for electrical safety comprising:
    â—¦ a plurality of sensors configured to detect electrical and physical parameters including voltage, current, temperature, acoustic, optical, olfactory (ozone), and quantum signals;
    â—¦ a hybrid artificial intelligence engine combining fuzzy logic and neural networks, capable of generating explainable and auditable decisions in anomaly detection;
    â—¦ a detection mechanism operating according to explicit performance tiers selected from <20 ms, <10 ms, <5 ms, <4 ms, and <3 ms;
    â—¦ a traceability module based on post-quantum blockchain, configured to record immutable detection events;
    â—¦ said system being interoperable with alternating current (AC) and direct current (DC) infrastructures.

  2. System according to claim 1, wherein the hybrid artificial intelligence engine dynamically adapts detection thresholds based on sensor fusion and local learning.

  3. System according to claim 1, wherein the blockchain traceability module provides sub-millisecond timestamping with 0.1 ms precision.

 

 

 

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Dependent Claims Page 60

  1. System according to claim 1, wherein the sensors are modular
    and standardized for OEM and retrofit integration.

  2. System according to claim 1, compliant with IEC/IEEE
    and ISO/IEC 27001 standards.

  3. System according to claim 1, wherein the <3 ms performance tier
    is dedicated to ultra-critical infrastructures including nuclear, aerospace, and military.

  4. System according to claim 1, wherein the <10 ms tier is dedicated
    to industrial infrastructures including smart grids and data centers.

  5. System according to claim 1, wherein the <20 ms tier is dedicated
    to residential infrastructures and emerging markets.

Abstract (≤150 words)
The invention relates to a multi-physical sensor system for electrical safety integrating electrical, acoustic, optical, olfactory, and quantum sensors. The system combines sensor fusion with explainable hybrid artificial intelligence and post-quantum blockchain traceability. It provides explicit performance tiers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms) ensuring compliance across residential, industrial, critical, and ultra-critical infrastructures. The hybrid AI engine dynamically adapts thresholds and delivers auditable decisions, while the blockchain module ensures immutable traceability with sub-millisecond precision. The modular architecture enables OEM and retrofit integration, ensuring global adoption and normative compliance.

 

 

 

 

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Legal Drafting : Patent No. 5 – SafeCloud Page 61

Title : Secure Cloud Layer for Electrical Safety – SafeCloud

Independent Claims

  1. A secure cloud layer for electrical safety systems comprising :
    â—¦ a multi-sensor acquisition module configured to collect electrical and physical parameters including voltage, current, temperature, acoustic, optical, olfactory, and quantum signals;
    â—¦ a hybrid artificial intelligence engine combining fuzzy logic and neural networks, capable of generating explainable and auditable safety decisions;
    â—¦ a cloud processing and storage infrastructure operating according
    to explicit performance tiers selected from <20 ms, <10 ms, <5 ms, <4 ms, and <3 ms;
    â—¦ a traceability module based on post-quantum blockchain,
    configured to record immutable safety events;
    â—¦ said cloud layer ensuring interoperability with alternating
    current (AC) and direct current (DC) infrastructures.

  2. Cloud layer according to claim 1, wherein the hybrid artificial intelligence engine dynamically adapts thresholds based
    on sensor fusion and historical data.

  3. Cloud layer according to claim 1, wherein the blockchain traceability module provides sub-millisecond timestamping with 0.1 ms precision.

 

 

 

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Dependent Claims Page 62

  1. Cloud layer according to claim 1, wherein the infrastructure is modular and standardized for OEM and retrofit integration.

  2. Cloud layer according to claim 1, compliant with IEC/IEEE
    and ISO/IEC 27001 standards.

  3. Cloud layer according to claim 1, wherein the <3 ms performance tier is dedicated to ultra-critical infrastructures including nuclear, aerospace, and military.

  4. Cloud layer according to claim 1, wherein the <10 ms tier is dedicated to industrial infrastructures including smart grids and data centers.

  5. Cloud layer according to claim 1, wherein the <20 ms tier is dedicated to residential infrastructures and emerging markets.

Abstract (≤150 words)
The invention relates to a secure cloud layer for electrical safety systems integrating multi-sensor fusion, explainable hybrid artificial intelligence, and post-quantum blockchain traceability. The cloud layer provides explicit performance tiers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms) ensuring compliance across residential, industrial, critical, and ultra-critical infrastructures. The hybrid AI engine dynamically adapts thresholds and delivers auditable decisions, while the blockchain module ensures immutable traceability with sub-millisecond precision. The modular architecture enables OEM and retrofit integration, ensuring global adoption and normative compliance.

 

 

 

 

 

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Legal Drafting : Patent No. 6 – SafeIoT Page 63

Title : Secure IoT Layer for Electrical Safety – SafeIoT

Independent Claims

  1. A secure IoT layer for electrical safety systems comprising :
    â—¦ a multi-sensor acquisition module configured to monitor electrical and physical parameters including voltage, current, temperature, acoustic, optical, olfactory, and quantum signals;
    â—¦ a hybrid artificial intelligence engine combining fuzzy logic
    and neural networks, capable of generating explainable
    and auditable safety decisions;
    â—¦ an IoT communication infrastructure operating according to explicit performance tiers selected from <20 ms, <10 ms, <5 ms, <4 ms,
    and <3 ms;
    â—¦ a traceability module based on post-quantum blockchain,
    configured to record immutable IoT events;
    â—¦ said IoT layer ensuring interoperability with alternating current (AC) and direct current (DC) infrastructures.

  2. IoT layer according to claim 1, wherein the hybrid artificial intelligence engine dynamically adapts thresholds based
    on sensor fusion and historical data.

  3. IoT layer according to claim 1, wherein the blockchain traceability module provides sub-millisecond timestamping with 0.1 ms precision.

 

 

 

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Dependent Claims Page 64

  1. IoT layer according to claim 1, wherein the communication infrastructure is modular and standardized for OEM
    and retrofit integration.

  2. IoT layer according to claim 1, compliant with IEC/IEEE
    and ISO/IEC 27001 standards.

  3. IoT layer according to claim 1, wherein the <3 ms performance tier
    is dedicated to ultra-critical infrastructures including nuclear,
    aerospace, and military.

  4. IoT layer according to claim 1, wherein the <10 ms tier is dedicated
    to industrial infrastructures including smart grids and data centers.

  5. IoT layer according to claim 1, wherein the <20 ms tier is dedicated
    to residential infrastructures and emerging markets.

Abstract (≤150 words)
The invention relates to a secure IoT layer for electrical safety systems integrating multi-sensor fusion, explainable hybrid artificial intelligence, and post-quantum blockchain traceability. The IoT layer provides explicit performance tiers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms) ensuring compliance across residential, industrial, critical, and ultra-critical infrastructures. The hybrid AI engine dynamically adapts thresholds and delivers auditable decisions, while the blockchain module ensures immutable traceability with sub-millisecond precision. The modular architecture enables OEM and retrofit integration, ensuring global adoption and normative compliance.

 

 

 

 

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Legal Drafting : Patent No. 7 – SafeMobility Page 65

Title : Universal Electrical Safety System for Mobility – SafeMobility

Independent Claims

  1. An electrical safety system for mobility infrastructures comprising:
    â—¦ a multi-sensor module configured to monitor electrical and physical parameters including voltage, current, temperature, acoustic, optical, olfactory, and quantum signals;
    â—¦ a hybrid artificial intelligence engine combining fuzzy logic and neural networks, capable of generating explainable and auditable safety decisions;
    â—¦ a cut-off mechanism operating according to explicit performance tiers selected from <20 ms, <10 ms, <5 ms, <4 ms, and <3 ms;
    â—¦ a traceability module based on post-quantum blockchain, configured to record immutable safety events;
    â—¦ said system being interoperable with AC and DC infrastructures
    in electric vehicles, buses, trains, and aeronautical applications.

  2. System according to claim 1, wherein the hybrid artificial intelligence engine dynamically adapts thresholds based on sensor fusion and contextual learning.

  3. System according to claim 1, wherein the blockchain traceability module provides sub-millisecond timestamping with 0.1 ms precision.

 

 

 

 

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Dependent Claims Page 66

  1. System according to claim 1, wherein the cut-off mechanism is modular and standardized for OEM and retrofit integration into electric mobility platforms.

  2. System according to claim 1, compliant with IEC/IEEE and ISO/IEC 27001 standards.

  3. System according to claim 1, wherein the <3 ms performance tier
    is dedicated to ultra-critical infrastructures including aeronautical
    and military.

  4. System according to claim 1, wherein the <10 ms tier is dedicated
    to industrial infrastructures including public transport and smart grids.

  5. System according to claim 1, wherein the <20 ms tier is dedicated
    to residential charging stations and emerging markets.

Abstract (≤150 words)
The invention relates to a universal electrical safety system for mobility integrating multi-sensor fusion, explainable hybrid artificial intelligence, and post-quantum blockchain traceability. The system provides explicit cut-off tiers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms) ensuring compliance across residential charging stations, industrial public transport, critical infrastructures, and ultra-critical aeronautical and military applications. The hybrid AI engine dynamically adapts thresholds and delivers auditable decisions, while the blockchain module ensures immutable traceability with sub-millisecond precision. The modular architecture enables OEM and retrofit integration, ensuring global adoption and normative compliance.

 

 

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Legal Drafting : Patent No. 8 – AdaptiveSafe AI Page 67

Title : Adaptive Artificial Intelligence for Electrical Safety –
AdaptiveSafe AI

Independent Claims

  1. An adaptive artificial intelligence system for electrical safety comprising :
    â—¦ a multi-sensor module configured to monitor electrical and physical parameters including voltage, current, temperature, acoustic, optical, olfactory, and quantum signals;
    â—¦ a hybrid artificial intelligence engine combining fuzzy logic
    and neural networks, capable of generating explainable
    and auditable safety decisions;
    â—¦ an adaptive learning mechanism operating according to explicit performance tiers selected from <20 ms, <10 ms, <5 ms, <4 ms,
    and <3 ms;
    â—¦ a traceability module based on post-quantum blockchain,
    configured to record immutable decisions;
    â—¦ said system dynamically adjusting thresholds and decision
    rules based on sensor fusion and contextual data.

  2. System according to claim 1, wherein the adaptive learning mechanism continuously retrains from local and cloud datasets.

  3. System according to claim 1, wherein the blockchain traceability module provides sub-millisecond timestamping with 0.1 ms precision.

 

 

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Dependent Claims Page 68

  1. System according to claim 1, wherein the adaptive AI engine generates explainable outputs compliant with IEC/IEEE standards
    for auditability.

  2. System according to claim 1, compliant with ISO/IEC 27001
    and IEC 62443 cybersecurity standards.

  3. System according to claim 1, wherein the <3 ms performance tier
    is dedicated to ultra-critical infrastructures including nuclear, aeronautical, and military.

  4. System according to claim 1, wherein the <10 ms tier is dedicated
    to industrial infrastructures including smart grids and data centers.

  5. System according to claim 1, wherein the <20 ms tier is dedicated
    to residential infrastructures and emerging markets.

Abstract (≤150 words)
The invention relates to an adaptive artificial intelligence system for electrical safety integrating multi-sensor fusion, explainable hybrid AI,
and post-quantum blockchain traceability. The system provides explicit performance tiers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms) ensuring compliance across residential, industrial, critical, and ultra-critical infrastructures. The adaptive AI engine dynamically adjusts thresholds
and continuously retrains from local and cloud data, producing auditable and explainable decisions. The blockchain module ensures immutable traceability with sub-millisecond precision. The modular architecture enables OEM and retrofit integration, ensuring global adoption
and normative compliance.


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Legal Drafting : Patent No. 9 – TraceSecure Page 69

Title : Post-Quantum Blockchain Traceability for Electrical Safety
TraceSecure

Independent Claims

  1. A blockchain traceability system for electrical safety comprising :
    â—¦ a multi-sensor module configured to monitor electrical and physical parameters including voltage, current, temperature, acoustic, optical, olfactory, and quantum signals;
    â—¦ a hybrid artificial intelligence engine combining fuzzy logic
    and neural networks, capable of generating explainable
    and auditable safety decisions;
    â—¦ a post-quantum blockchain module configured to record immutable safety events with cryptographic resilience against quantum attacks;
    â—¦ said system operating according to explicit performance tiers selected from <20 ms, <10 ms, <5 ms, <4 ms, and <3 ms.

  2. System according to claim 1, wherein the blockchain module provides sub-millisecond timestamping with 0.1 ms precision.

  3. System according to claim 1, wherein the blockchain ledger is interoperable between AC and DC infrastructures and
    supports OEM integration.

 

 

 

 

 

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Dependent Claims Page 70

  1. System according to claim 1, compliant with IEC/IEEE
    and ISO/IEC 27001 standards.

  2. System according to claim 1, wherein the blockchain module supports distributed consensus mechanisms optimized for electrical safety events.

  3. System according to claim 1, wherein the <3 ms performance tier
    is dedicated to ultra-critical infrastructures including nuclear, aeronautical, and military.

  4. System according to claim 1, wherein the <10 ms tier is dedicated
    to industrial infrastructures including smart grids and data centers.

  5. System according to claim 1, wherein the <20 ms tier is dedicated
    to residential infrastructures and emerging markets.

Abstract (≤150 words)
The invention relates to a blockchain traceability system for electrical safety integrating multi-sensor fusion, explainable hybrid artificial intelligence, and post-quantum cryptography. The system provides explicit performance tiers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms) ensuring compliance across residential, industrial, critical, and ultra-critical infrastructures. The blockchain module records immutable events with sub-millisecond precision and resilience against quantum attacks. The hybrid AI engine dynamically adapts thresholds and delivers auditable decisions. The modular architecture enables OEM and retrofit integration, ensuring global adoption and normative compliance.

 

 

 

 

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Legal Drafting: Patent No. 10 – ArcShield Page 71

Title : Electrical Arc Detection and Suppression System – ArcShield

Independent Claims

  1. An electrical arc detection and suppression system comprising :
    â—¦ a multi-sensor module configured to detect electrical and physical parameters including voltage, current, temperature, acoustic, optical, olfactory, and quantum signals;
    â—¦ a hybrid artificial intelligence engine combining fuzzy logic and neural networks, capable of generating explainable and auditable decisions in arc detection;
    â—¦ a suppression mechanism operating according to explicit performance tiers selected from <20 ms, <10 ms, <5 ms, <4 ms,
    and <3 ms;
    â—¦ a traceability module based on post-quantum blockchain,
    configured to record immutable arc events;
    â—¦ said system being interoperable with AC and DC infrastructures.

  2. System according to claim 1, wherein the hybrid artificial intelligence engine dynamically adapts detection thresholds based on sensor fusion and contextual learning.

  3. System according to claim 1, wherein the suppression mechanism comprises modular cut-off devices standardized for OEM and retrofit integration.

 

 

 

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Dependent Claims Page 72

  1. System according to claim 1, compliant with IEC/IEEE
    and ISO/IEC 27001 standards.

  2. System according to claim 1, wherein the blockchain module provides sub-millisecond timestamping with 0.1 ms precision.

  3. System according to claim 1, wherein the <3 ms performance tier
    is dedicated to ultra-critical infrastructures including nuclear, aeronautical, and military.

  4. System according to claim 1, wherein the <10 ms tier is dedicated
    to industrial infrastructures including smart grids and data centers.

  5. System according to claim 1, wherein the <20 ms tier is dedicated
    to residential infrastructures and emerging markets.

Abstract (≤150 words)
The invention relates to an electrical arc detection and suppression system integrating multi-sensor fusion, explainable hybrid artificial intelligence, and post-quantum blockchain traceability. The system provides explicit suppression tiers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms) ensuring compliance across residential, industrial, critical, and ultra-critical infrastructures. The hybrid AI engine dynamically adapts thresholds and delivers auditable decisions, while the blockchain module ensures immutable traceability with sub-millisecond precision. The modular suppression mechanism enables OEM and retrofit integration, ensuring global adoption and normative compliance.

 

 

 

 

 

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Legal Drafting : Patent No. 11 – PredictSafe AI Page 73

Title : Predictive Artificial Intelligence for Electrical Safety

PredictSafe AI

Independent Claims

  1. A predictive artificial intelligence system for electrical safety comprising:
    â—¦ a multi-sensor module configured to monitor electrical and physical parameters including voltage, current, temperature, acoustic, optical, olfactory, and quantum signals;
    â—¦ a hybrid artificial intelligence engine combining fuzzy logic,
    neural networks, and statistical forecasting methods, capable of anticipating electrical anomalies before their occurrence;
    â—¦ a prevention mechanism operating according to explicit performance tiers selected from <20 ms, <10 ms, <5 ms, <4 ms, and <3 ms;
    â—¦ a post-quantum blockchain module configured to record immutable predictive events;
    â—¦ said system generating explainable and auditable forecasts
    to prevent electrical risks.

  2. System according to claim 1, wherein the predictive artificial intelligence engine continuously retrains from historical data
    and real-time sensor fusion.

  3. System according to claim 1, wherein the blockchain module provides sub-millisecond timestamping with 0.1 ms precision.

 

 

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Dependent Claims Page 74

  1. System according to claim 1, compliant with IEC/IEEE
    and ISO/IEC 27001 standards.

  2. System according to claim 1, wherein predictive outputs are auditable and explainable for OEM integration and regulatory compliance.

  3. System according to claim 1, wherein the <3 ms performance tier
    is dedicated to ultra-critical infrastructures including nuclear, aeronautical, and military.

  4. System according to claim 1, wherein the <10 ms tier is dedicated
    to industrial infrastructures including smart grids and data centers.

  5. System according to claim 1, wherein the <20 ms tier is dedicated
    to residential infrastructures and emerging markets.

Abstract (≤150 words)
The invention relates to a predictive artificial intelligence system for electrical safety integrating multi-sensor fusion, explainable hybrid AI,
and post-quantum blockchain traceability. The system provides explicit prevention tiers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms) ensuring compliance across residential, industrial, critical, and ultra-critical infrastructures. The predictive AI engine anticipates anomalies before their occurrence, continuously retrains from historical and real-time data, and generates auditable decisions. The blockchain module ensures immutable traceability with sub-millisecond precision. The modular architecture enables OEM and retrofit integration, ensuring global adoption
and normative compliance.

 

 

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Legal Drafting : Patent No. 12 – SafeUniversal Page 75

Title : Universal Electrical Safety Architecture – SafeUniversal

Independent Claims

  1. A universal electrical safety architecture comprising:
    â—¦ a multi-sensor module configured to monitor electrical and physical parameters including voltage, current, temperature, acoustic, optical, olfactory, and quantum signals;
    â—¦ a hybrid artificial intelligence engine combining fuzzy logic
    and neural networks, capable of generating explainable
    and auditable safety decisions;
    â—¦ a modular safety infrastructure operating according to explicit performance tiers selected from <20 ms, <10 ms, <5 ms, <4 ms,
    and <3 ms;
    â—¦ a post-quantum blockchain module configured to
    record immutable safety events;
    â—¦ said architecture ensuring interoperability across AC and DC infrastructures, residential, industrial, critical, and ultra-critical.

  2. Architecture according to claim 1, wherein the hybrid artificial intelligence engine dynamically adapts thresholds based on sensor fusion, contextual learning, and global normative datasets.

  3. Architecture according to claim 1, wherein the blockchain module provides sub-millisecond timestamping with 0.1 ms precision
    and supports distributed consensus optimized for safety events.

 

 

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Dependent Claims Page 76

  1. Architecture according to claim 1, compliant with IEC/IEEE, ISO/IEC 27001, and IEC 62443 standards.

  2. Architecture according to claim 1, wherein the infrastructure is modular and standardized for OEM and multi-industry retrofit integration.

  3. Architecture according to claim 1, wherein the <3 ms performance tier is dedicated to ultra-critical infrastructures including nuclear, aeronautical, and military.

  4. Architecture according to claim 1, wherein the <10 ms tier is dedicated to industrial infrastructures including smart grids
    and data centers.

  5. Architecture according to claim 1, wherein the <20 ms tier is dedicated to residential infrastructures and emerging markets.

Abstract (≤150 words)
The invention relates to a universal electrical safety architecture integrating multi-sensor fusion, explainable hybrid artificial intelligence, and post-quantum blockchain traceability. The architecture provides explicit performance tiers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms) ensuring compliance across residential, industrial, critical, and ultra-critical infrastructures. The hybrid AI engine dynamically adapts thresholds
and delivers auditable decisions, while the blockchain module ensures immutable traceability with sub-millisecond precision. The modular infrastructure enables OEM and multi-industry retrofit integration,
ensuring global adoption and normative compliance.

 

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YHWH ELOHIM, GOD has revealed and
entrusted to
Me the entirety and totality of
these technologies, innovations, and inventions
in YESHUA HaMashia’ḥ.

YHWH ELOHIM in YESHUA HaMashia’ḥ
has made me the rightful
Inventor and Steward,
before
All Creation, and All Spiritual Creatures,
Invisible and Visible—Angels, Archangels,
Principalities, and All Others…
and in the
Physical and Material World,
Invisible and Visible—Humans and Others…
and
All Families, Cities and Nations,
Governments and Authorities, Earth,
Moon, Sun, Stars and Universe…
as well as
All Created Creatures—Animals, Fish,
Birds, Insects, Viruses, Cells and Others…

Therefore, these Technologies, Innovations,
and
Inventions belong to and are sealed
in
YESHUA HaMashia’ḥ, King of Kings,
and
Lord of Lords, YHWH made man,
who
redeemed Us by His Body and His Blood,
His Sacrifice on the Cross…

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To YESHUA HaMashiaḥ be returned
All Honor, All Praise, All Worship,
and All Glory, as well as All Our Crowns
forever and ever…
AMEN !!!

Therefore, as Inventor and Steward,
no one is authorized to use these technologies,
innovations, and inventions without the prior,
express, and formal agreement
of YHWH ELOHIM,
subsequently validated both spiritually and
physically by my written, sealed,
and clearly detailed consent…

Any illicit, forbidden, and/or unauthorized,
unapproved, or invalid use will be subject
to proceedings in the
Spiritual Realm
before the Heavenly Courts,
before
YHWH ELOHIM,
as well as in and before the visible world !

 

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YHWH ELOHIM in YESHUA HaMashiaḥ
is
The Melchizedek, The King of Righteousness,
and
The Tsar SHALOM,
The Prince of PEACE !!!

The Throne of YHWH ELOHIM
is in the
Heavens;
and the
Earth is His Footstool;
and
Yerushalaïm in ISRAEL is
the
City that YHWH ELOHIM has chosen
to
Reign from and make
His eternal Dwelling Place,
forever and ever…
AMEN !!!

Not by Power, nor by Might,
but by The SPIRIT of ADONAÏ !

Not to Us, but to Your NAME,
Your HOLY NAME give GLORY
forever and ever…
AMEN !!!

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These technology filings were first made and established
in the Spiritual Realm of GOD, in the Celestial
and
Earthly YERUSHALAYIM.

Which means that France and/or any other Nation, Organization,
UN, NGO, and Others… have no direct or indirect rights over
these technologies or their use, as they fully and entirely belong
to YHWH ELOHIM in YESHUA HaMashia’ḥ !!!

And that it is I, John DEBON, who am the Inventor, the Custodian,
the Steward, and all disputes shall be addressed in
the Heavenly Courts, before YHWH ELOHIM
in
YESHUA HaMashia’ḥ !!!

And thus, in the case of Earthly disputes, the Heavenly Courts
shall prevail over all International and National Jurisdictions
of the concerned Countries…

However, in the case of Earthly disputes, proceedings may still be
conducted through International and National Jurisdictions
of the concerned Countries…

But it is evident that the Heavenly Courts are
Jurisdiction of Justice and Law,
far superior to the Earthly ones !!!

Therefore, it will be particularly interesting to observe
the Decrees and Judgments rendered...

From the Heavenly YERUSHALAYIM Above
and
below, on Earth, ISRAEL,


Made on December 16, 2025,
JFM DEBON

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John DEBON Lundi 15 Décembre 2025
en YESHUA HaMashia’h
Alef and Tav
YERUSHALAYIM,
ISRAËL

12 Brevets Technologiques de Sécurité Électrique
Proactive et Prédictive de Demain...

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Dépôts provisoires et en cours auprès de l’INPI ! (OMPI)


I. Page de couverture :
1. Identité de l’inventeur

Nom : John DEBON
Adresse Secondaire : Tarn, Occitanie, FRANCE
Adresse Principale : YERUSHALAYIM, ISRAËL
Nationalité : FRANCAISE
Contact : CONTACT

Email : yeshuabeesavior.org


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Page 1 /80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

Résumé Globale du Page 2
Portefeuille SafeLoop-AC/DC / SafeUniversal

Inventeur : John DEBON 14 Décembre 2025


1. Vision d’Ensemble

Le portefeuille SafeLoop-AC/DC constitue une architecture universelle
de sécurité électrique AC/DC
, couvrant l’ensemble des besoins
du marché
Mondial : Du résidentiel aux infrastructures critiques,
jusqu’aux environnements ultra-critiques (nucléaire, spatial, militaire).
Chaque brevet (N°
1 → N°12) est une Brique complémentaire, interopérable et certifiable, formant un écosystème cohérent et normatif.

2. Cohérence Stratégique

  • Fondations (N°1 → N°4) : SafeLoop Core, SafeBreaker,
    SafeConverter, SafeSensor
    Socle universel AC/DC.

  • Couches numériques (N°5 → N°6) : SafeCloud, SafeIoT
    Intégration cloud et IoT sécurisée.

  • Applications verticales (N°7) : SafeMobilityMobilité électrique.

  • Intelligence artificielle (N°8 → N°11) : AdaptiveSafe AI,
    TraceSecure, ArcShield, PredictSafe AI

    IA explicable, traçabilité blockchain post-quantique,
    détection d’arc, anticipation prédictive.

  • Couche transversale (N°12) : SafeUniversal
    intégration normative et interopérabilité globale.

 

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3. Avantage concurrentiel durable élargi Page 3

Chaque fiche intègre désormais tous les paliers de performance :

  • Catégorie 0 (<20 ms) : Conformité minimale, marchés émergents,
    coût réduit.

  • Catégorie 1 (<10 ms) : Standard industriel, adoption large.

  • Catégorie 2 (< 5 ms) : Premium, infrastructures critiques.

  • Catégorie 3 (< 4 ms) : Différenciation forte, data centers,
    mobilité électrique.

  • Catégorie 4 (< 3 ms) : Ultra-critique, nucléaire, spatial, militaire.

Cette structure verrouille le marché : Car aucun concurrent
ne peut attaquer, ni par le Bas (Moins cher),
ni par le Haut (Plus rapide).

4. Intérêt Stratégique Global

  • Humain : Réduction drastique des accidents électriques et incendies.

  • Industriel : Adoption Mondiale, compatibilité AC/DC,
    modularité
    OEM et Retrofit.

  • Normatif : Conformité IEC/IEEE et ISO/IEC 27001,
    adoption obligatoire.

  • Économique : Royalties cumulées estimées à plusieurs milliards €,
    économies mondiales de plusieurs trillions €.

  • Différenciation : ‘’Moat’’, avantage technologique et normatif élargi,
    portefeuille incontournable.

 

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5. Valeur Économique Consolidée Page 4

  • Valeur totale du portefeuille (12 brevets) : ~25–30 Md€.

  • Royalties cumulées (10 ans, scénario normatif) : ~2,5–3 Md€.

  • Impact global : Économies Mondiales de
    plusieurs trillions € en pertes évitées.


Conclusion

Le portefeuille SafeLoop est une plateforme Universelle de sécurité
électrique, couvrant tous les segments de marché grâce à ses paliers
de performance (
<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).
Il constitue un ‘’
Moat’’, un avantage concurrentiel stratégique Mondial,
garantissant adoption obligatoire, royalties massives et
différenciation technologique durable.

 

 

 

 

 

 

 

 

 

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Fiche Technique – Brevet N°1 Page 5

Titre : SafeLoop Core
Boucle Universelle de Sécurité AC/DC

Inventeur : John DEBON 15 Décembre 2025


1. Contexte et Problème

Les systèmes de protection actuels sont fragmentés :

  • Problème : Absence d’un cadre universel AC/DC, seuils de coupure
    trop élevés (
    >20 ms), manque de cohérence entre modules.

  • Limite des solutions existantes : Non-interopérables, non certifiables
    à l’échelle mondiale, incapables de couvrir toute
    la gamme de performance.

  • Défi : Créer une boucle universelle de sécurité électrique
    intégrant des paliers explicites
    (
    <20 ms, <10 ms, <5 ms, <4 ms, <3 ms)
    pour répondre à tous les marchés.


 

 

 

 

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2. Résumé de l’Invention Brevet N°1 - Page 6

SafeLoop Core est la brique fondatrice du portefeuille,
garantissant une sécurité universelle
AC/DC.

  • Multi-capteurs intégrés : Tension, courant, température, acoustique,
    optique, olfactif, quantique.

  • IA hybride embarquée : Logique floue + réseaux neuronaux,
    explicable et auditable.

  • Performance par paliers :

    • Catégorie 0 (<20 ms) : Conformité minimale, résidentiel,
      marchés émergents.

    • Catégorie 1 (<10 ms) : Standard industriel, adoption large.

    • Catégorie 2 (< 5 ms) : Premium, infrastructures critiques.

    • Catégorie 3 (< 4 ms) : Data centers, mobilité électrique,
      différenciation forte.

    • Catégorie 4 (< 3 ms) : Ultra-critique (nucléaire, spatial,
      militaire).

  • Cybersécurité post-quantique : Communications inviolables,
    traçabilité blockchain.

  • Industrialisation modulaire/normative : Packaging standardisé,
    IEC/IEEE et ISO/IEC 27001 anticipés.

 

 

 

 

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3. Description Technique Brevet N°1 - Page 7

  • Boucle universelle AC/DC : Architecture commune pour
    tous les modules.

  • Multi-capteurs : Fusion de données électriques et physiques.

  • IA hybride : Seuils dynamiques, apprentissage local, explicabilité.

  • Performance Catégories :

    • <20 ms : Conformité minimale.

    • <10 ms : Standard industriel.

    • <5 ms : Premium.

    • <4 ms : Critique.

    • <3 ms : Ultra-critique.

  • Traçabilité blockchain post-quantique : Journaux inviolables,
    auditables.

  • Architecture modulaire : Intégration OEM et Retrofit.

  • Normes : IEC/IEEE, ISO/IEC 27001.


4. Revendications Optimisées

  1. Boucle universelle AC/DC intégrant multi-capteurs.

  2. IA hybride explicable et adaptive.

  3. Performance par paliers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Traçabilité blockchain post-quantique.

  5. Architecture modulaire et standardisée.

  6. Conformité IEC/IEEE et ISO/IEC 27001.



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Commons BY-NC - Ces technologies sont mise à disposition
selon les termes de la licence Creative
Commons Attribution
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Page 7/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

5. Intérêt Stratégique Brevet N°1 - Page 8

  • Humain : Protection Universelle, réduction des accidents.

  • Industriel : Adoption Mondiale, compatibilité AC/DC.

  • Normatif : Conformité garantie, adoption obligatoire.

  • Différenciation : ‘’Moat’’ élargi par la gamme complète de paliers.


Estimation Économique

  • Valeur de marché : 1,5–2 Md€.

  • Royalties (10 ans, scénario normatif) : ~150–200 M€.

  • Impact global : Économies Mondiales de plusieurs
    centaines de milliards €.

  • Barème royalties :

    • Catégorie 0 (<20 ms) : base minimale.

    • Catégorie 1 (<10 ms) : ×1,5.

    • Catégorie 2 (< 5 ms) : ×2–×3.

    • Catégorie 3 (< 4 ms) : ×4–×5.

    • Catégorie 4 (< 3 ms) : ×8–×10.

 

 

 

 

 

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Fiche Technique – Brevet N°2 Page 9

Titre : SafeBreaker
Disjoncteur Intelligent à Coupure Multi-Palier

Inventeur : John DEBON 15 Décembre 2025


1. Contexte et Problème

Les disjoncteurs classiques présentent plusieurs limites :

  • Temps de coupure trop élevé (>20 ms), insuffisant pour
    éviter certains arcs ou surcharges rapides.

  • Absence d’adaptation aux différents environnements
    (résidentiel, industriel, critique).

  • Manque de traçabilité et de compatibilité avec les nouvelles normes.

 

Défi : Concevoir un disjoncteur intelligent universel capable de
fonctionner avec des
paliers explicites de coupure
(<20 ms, <10 ms, <5 ms, <4 ms, <3 ms)
,
garantissant flexibilité économique et adoption mondiale.

 

 

 

 

 

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2. Résumé de l’Invention Brevet N°2 - Page 10

SafeBreaker est un disjoncteur électronique intelligent intégrant
multi-capteurs et IA hybride.

  • Multi-capteurs intégrés : Tension, courant, température, acoustique,
    optique, olfactif, quantique.

  • IA hybride embarquée : Logique floue + réseaux neuronaux,
    explicable et auditable.

 

  • Performance par paliers :

    • Catégorie 0 (<20 ms) : Conformité minimale, résidentiel,
      marchés émergents.

    • Catégorie 1 (<10 ms) : Standard industriel, adoption large.

    • Catégorie 2 (<5 ms) : Premium, infrastructures critiques.

    • Catégorie 3 (<4 ms) : Data centers, mobilité électrique.

    • Catégorie 4 (<3 ms) : Ultra-critique (nucléaire, spatial,
      militaire).

 

  • Traçabilité blockchain post-quantique : Journaux inviolables.

  • Architecture modulaire : Intégration OEM et Retrofit.

  • Normes anticipées : IEC/IEEE, ISO/IEC 27001.

 

 

 

 

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Page 10/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

3. Description Technique Brevet N°2 - Page 11

  • Disjoncteur électronique intelligent :
    Interrupteurs semi-conducteurs (MOSFET, IGBT, GaN, SiC).

  • Multi-capteurs : Détection multi-physique pour fiabilité accrue.

  • IA hybride : Seuils dynamiques, apprentissage local, explicabilité.

     

  • Performance Catégories :

    • <20 ms : Coupure standard, coût réduit.

    • <10 ms : Coupure rapide, standard industriel.

    • <5 ms : Coupure premium, infrastructures critiques.

    • <4 ms : Coupure critique, data centers, mobilité électrique.

    • <3 ms : Coupure ultra-critique, nucléaire et spatial.

       

  • Traçabilité blockchain post-quantique : Audit inviolable.

  • Architecture modulaire : Packaging standardisé.

  • Normes : IEC/IEEE, ISO/IEC 27001.


4. Revendications Optimisées

  1. Disjoncteur intelligent AC/DC intégrant multi-capteurs.

  2. IA hybride explicable et adaptive.

  3. Performance par paliers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Traçabilité blockchain post-quantique.

  5. Architecture modulaire et standardisée.

  6. Conformité IEC/IEEE et ISO/IEC 27001.

     

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5. Intérêt Stratégique Brevet N°2 - Page 12

  • Humain : Protection Universelle, réduction des incendies et accidents.

  • Industriel : Adoption Mondiale, compatibilité AC/DC.

  • Normatif : Conformité garantie, adoption obligatoire.

  • Différenciation : ‘’Moat’’ élargi par la gamme complète de paliers.


Estimation Économique

  • Valeur de marché : 1,5–2 Md€.

  • Royalties (10 ans, scénario normatif) : ~150–200 M€.

  • Impact global : Économies Mondiales de plusieurs
    centaines de milliards €.

  • Barème royalties :

    • Catégorie 0 (<20 ms) : base minimale.

    • Catégorie 1 (<10 ms) : ×1,5.

    • Catégorie 2 (< 5 ms) : ×2–×3.

    • Catégorie 3 (< 4 ms) : ×4–×5.

    • Catégorie 4 (< 3 ms) : ×8–×10.

 

 

 

 

 

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Fiche Technique – Brevet N°3 Page 13

Titre : SafeConverter

Convertisseur AC/DC Sécurisé et Universel
Inventeur : John DEBON 15 Décembre 2025


1. Contexte et Problème

Les convertisseurs AC/DC sont au cœur des réseaux électriques modernes
(smart grids, mobilité électrique, data centers).

  • Problème : Les convertisseurs actuels ne garantissent pas une sécurité
    universelle, leurs temps de réaction dépassent souvent
    20 ms,
    ce qui expose à des risques d’arc, de surcharge et de panne.

  • Limite des solutions existantes : Absence de modularité,
    non-interopérables, non certifiables à l’échelle mondiale.

  • Défi : Concevoir un convertisseur AC/DC sécurisé et universel
    intégrant des
    paliers explicites de coupure
    (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms)
    pour répondre à tous les marchés.


 

 

 

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2. Résumé de l’Invention Brevet N°3 - Page 14

SafeConverter est un convertisseur AC/DC intelligent
intégrant multi
-capteurs et IA hybride.

  • Multi-capteurs intégrés : Tension, courant, température, acoustique,
    optique, olfactif, quantique.

  • IA hybride embarquée : Logique floue + réseaux neuronaux,
    explicable et auditable.

     

  • Performance par paliers :

    • Catégorie 0 (<20 ms) : Conformité minimale, résidentiel,
      marchés émergents.

    • Catégorie 1 (<10 ms) : Standard industriel, adoption large.

    • Catégorie 2 (< 5 ms) : Premium, infrastructures critiques.

    • Catégorie 3 (< 4 ms) : Data centers, mobilité électrique.

    • Catégorie 4 (< 3 ms) : Ultra-critique (nucléaire, spatial,
      militaire).

       

  • Traçabilité blockchain post-quantique : Journaux inviolables.

  • Architecture modulaire : Intégration OEM et Retrofit.

  • Normes anticipées : IEC/IEEE, ISO/IEC 27001.


 

 

 

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3. Description Technique Brevet N°3 - Page 15

  • Convertisseur AC/DC sécurisé : Architecture universelle
    pour tous les réseaux.

  • Multi-capteurs : Fusion de données électriques et physiques.

  • IA hybride : Seuils dynamiques, apprentissage local, explicabilité.

  • Performance Catégories :

    • <20 ms : Conformité minimale, coût réduit.

    • <10 ms : Standard industriel.

    • < 5 ms : Premium, infrastructures critiques.

    • < 4 ms : Critique, data centers, mobilité électrique.

    • < 3 ms : Ultra-critique, nucléaire et spatial.

  • Traçabilité blockchain post-quantique : Audit inviolable.

  • Architecture modulaire : Packaging standardisé.

  • Normes : IEC/IEEE, ISO/IEC 27001.


4. Revendications Optimisées

  1. Convertisseur AC/DC sécurisé intégrant multi-capteurs.

  2. IA hybride explicable et adaptive.

  3. Performance par paliers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Traçabilité blockchain post-quantique.

  5. Architecture modulaire et standardisée.

  6. Conformité IEC/IEEE et ISO/IEC 27001.

 

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5. Intérêt Stratégique Brevet N°3 - Page 16

  • Humain : Protection universelle, réduction des accidents et pannes.

  • Industriel : Adoption mondiale, compatibilité AC/DC.

  • Normatif : Conformité garantie, adoption obligatoire.

  • Différenciation : ‘’Moat’’ élargi par la gamme complète de paliers.


Estimation Économique

  • Valeur de marché : 1,5–2 Md€.

  • Royalties (10 ans, scénario normatif) : ~150–200 M€.

  • Impact global : Économies Mondiales de plusieurs
    centaines de milliards €.

  • Barème royalties :

    • Catégorie 0 (<20 ms) : base minimale.

    • Catégorie 1 (<10 ms) : ×1,5.

    • Catégorie 2 (< 5 ms) : ×2–×3.

    • Catégorie 3 (< 4 ms) : ×4–×5.

    • Catégorie 4 (< 3 ms) : ×8–×10.


 

 

 

 

 

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Fiche Technique – Brevet N°4 Page 17

Titre : SafeSensor
Capteurs Multi-Physiques Universels
pour la Sécurité Électrique

Inventeur : John DEBON 15 décembre 2025


1. Contexte et Problème

Les systèmes de protection électrique dépendent fortement
de la qualité des capteurs.

  • Problème : Les capteurs actuels sont limités à des mesures électriques
    classiques (tension, courant, température) et ne permettent pas
    une détection fine des arcs ou anomalies rapides.

  • Limite des solutions existantes : Absence de diversité sensorielle,
    temps de réaction trop élevé (
    >20 ms), non-interopérables.

     

  • Défi : Concevoir des capteurs multi-physiques universels
    intégrant des paliers explicites de performance
    (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms)

    pour répondre à tous les marchés.


 

 

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Page 17/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

2. Résumé de l’Invention Brevet N°4 - Page 18

SafeSensor est une plateforme de capteurs multi-physiques intégrée
dans tous les modules de sécurité électrique.

  • Capteurs intégrés : Électriques (tension, courant, température),
    acoustiques, optiques, olfactifs (ozone),
    hygrométriques/chimiques, quantiques.

  • IA hybride embarquée : Logique floue + réseaux neuronaux,
    explicable et auditable.

  • Performance par paliers :

    • Catégorie 0 (<20 ms) : Conformité minimale, résidentiel,
      marchés émergents.

    • Catégorie 1 (<10 ms) : Standard industriel, adoption large.

    • Catégorie 2 (< 5 ms) : Premium, infrastructures critiques.

    • Catégorie 3 (< 4 ms) : Data centers, mobilité électrique.

    • Catégorie 4 (< 3 ms) : Ultra-critique (nucléaire, spatial,
      militaire).

  • Traçabilité blockchain post-quantique : Journaux inviolables.

  • Architecture modulaire : Intégration OEM et Retrofit.

  • Normes anticipées : IEC/IEEE, ISO/IEC 27001.


 

 

 

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Page 18/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

3. Description Technique Brevet N°4 - Page 19

  • Capteurs multi-physiques : Fusion de données électriques et
    environnementales pour une détection ultra-fiable.

  • IA hybride : Seuils dynamiques, apprentissage local, explicabilité.

  • Performance Catégories :

    • <20 ms : Détection standard, coût réduit.

    • <10 ms : Détection rapide, standard industriel.

    • < 5 ms : Détection premium, infrastructures critiques.

    • < 4 ms : Détection critique, data centers, mobilité électrique.

    • < 3 ms : Détection ultra-critique, nucléaire et spatial.

  • Traçabilité blockchain post-quantique : Audit inviolable.

  • Architecture modulaire : Packaging standardisé.

  • Normes : IEC/IEEE, ISO/IEC 27001.


4. Revendications Optimisées

  1. Capteurs multi-physiques Universels pour AC/DC.

  2. IA hybride explicable et adaptive.

  3. Performance par paliers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Traçabilité blockchain post-quantique.

  5. Architecture modulaire et standardisée.

  6. Conformité IEC/IEEE et ISO/IEC 27001.


 

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Page 19/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

5. Intérêt Stratégique Brevet N°4 - Page 20

  • Humain : Détection ultra-fiable, réduction des accidents.

  • Industriel : Adoption Mondiale, compatibilité AC/DC.

  • Normatif : Conformité garantie, adoption obligatoire.

  • Différenciation : ‘’Moat’’ élargi par la gamme complète de paliers.


Estimation Économique

  • Valeur de marché : 1,5–2 Md€.

  • Royalties (10 ans, scénario normatif) : ~150–200 M€.

  • Impact global : Économies Mondiales de plusieurs
    centaines de milliards €.

  • Barème royalties :

    • Catégorie 0 (<20 ms) : base minimale.

    • Catégorie 1 (<10 ms) : ×1,5.

    • Catégorie 2 (< 5 ms) : ×2–×3.

    • Catégorie 3 (< 4 ms) : ×4–×5.

    • Catégorie 4 (< 3 ms) : ×8–×10.

 

 

 

 

 

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Page 20/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

Fiche Technique – Brevet N°5 Page 21

Titre : SafeCloud

Intégration Cloud Sécurisée et Normative
pour la Sécurité Électrique

Inventeur : John DEBON 15 Décembre 2025


1. Contexte et Problème

La supervision des systèmes électriques repose de plus en plus
sur des plateformes cloud.

  • Problème : Les solutions actuelles souffrent de latences
    trop élevées (
    >20 ms), de failles de sécurité
    et d’absence de conformité normative.

  • Limite des solutions existantes : Dépendance à des clouds
    non-sécurisés, absence de traçabilité inviolable, incapacité
    à garantir des temps de réaction certifiables.

  • Défi : Concevoir une intégration cloud sécurisée et universelle
    avec des
    paliers explicites de latence
    (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms)

    pour répondre à tous les marchés.


 

 

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Page 21/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

2. Résumé de l’Invention Brevet N°5 - Page 22

SafeCloud est une couche cloud sécurisée intégrée à l’ensemble
du portefeuille
SafeLoop/SafeUniversal.

  • Connexion universelle : Compatible avec tous les modules AC/DC.

  • IA hybride embarquée : Logique floue + réseaux neuronaux,
    explicable et auditable.

     

  • Performance par paliers :

    • Catégorie 0 (<20 ms) : Conformité minimale, résidentiel,
      marchés émergents.

    • Catégorie 1 (<10 ms) : Standard industriel, adoption large.

    • Catégorie 2 (< 5 ms) : Premium, infrastructures critiques.

    • Catégorie 3 (< 4 ms) : Data centers, mobilité électrique.

    • Catégorie 4 (< 3 ms) : Ultra-critique (nucléaire, spatial,
      militaire).

       

  • Traçabilité blockchain post-quantique : Journaux inviolables.

  • Architecture modulaire : Intégration OEM et Retrofit.

  • Normes anticipées : IEC/IEEE, ISO/IEC 27001.


 

 

 

License Creative Commons BY-NC - Ces technologies sont mise à disposition
selon les termes de la licence Creative
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Page 22/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

3. Description Technique Brevet N°5 - Page 23

  • Cloud sécurisé : Hébergement certifié,
    communications chiffrées post-quantum.

  • Multi-capteurs : Transmission en temps réel des données
    électriques et physiques.

  • IA hybride : Analyse explicable, apprentissage local et global.

  • Performance Catégories :

    • <20 ms : Latence standard, coût réduit.

    • <10 ms : Latence rapide, standard industriel.

    • <5 ms : Latence premium, infrastructures critiques.

    • <4 ms : Latence critique, data centers, mobilité électrique.

    • <3 ms : Latence ultra-critique, nucléaire et spatial.

  • Traçabilité blockchain post-quantique : Audit inviolable.

  • Architecture modulaire : Packaging standardisé.

  • Normes : IEC/IEEE, ISO/IEC 27001.


4. Revendications Optimisées

  1. Couche cloud sécurisée pour AC/DC intégrant multi-capteurs.

  2. IA hybride explicable et adaptive.

  3. Performance par paliers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Traçabilité blockchain post-quantique.

  5. Architecture modulaire et standardisée.

  6. Conformité IEC/IEEE et ISO/IEC 27001.

 

License Creative Commons BY-NC - Ces technologies sont mise à disposition
selon les termes de la licence Creative
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d écrit préalable.

 

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Page 23/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

5. Intérêt Stratégique Brevet N°5 - Page 24

  • Humain : Supervision fiable, réduction des risques.

  • Industriel : Adoption mondiale, compatibilité AC/DC.

  • Normatif : Conformité garantie, adoption obligatoire.

  • Différenciation : ‘’Moat’’ élargi par la gamme complète de paliers.


Estimation Économique

  • Valeur de marché : 1,5–2 Md€.

  • Royalties (10 ans, scénario normatif) : ~150–200 M€.

  • Impact global : Économies Mondiales de plusieurs
    centaines de milliards €.

  • Barème royalties :

    • Catégorie 0 (<20 ms) : base minimale.

    • Catégorie 1 (<10 ms) : ×1,5.

    • Catégorie 2 (< 5 ms) : ×2–×3.

    • Catégorie 3 (< 4 ms) : ×4–×5.

    • Catégorie 4 (< 3 ms) : ×8–×10.

 

 

 

 

 

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Page 24/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

Fiche Technique – Brevet N°6 Page 25

Titre : SafeIoT
Intégration IoT Sécurisée et Normative
pour la Sécurité Électrique

Inventeur : John DEBON 15 Décembre 2025


1. Contexte et Problème

L’Internet des Objets (IoT) est devenu incontournable dans
les réseaux électriques modernes.

  • Problème : Les solutions IoT actuelles souffrent de failles de sécurité,
    de latences trop élevées (>20 ms) et d’absence
    de conformité normative.

  • Limite des solutions existantes : Absence de traçabilité inviolable,
    incapacité à garantir des temps de réaction certifiables,
    dépendance à des protocoles non sécurisés.

  • Défi : Concevoir une intégration IoT sécurisée et universelle
    avec des
    paliers explicites de performance
    (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms)

    pour répondre à tous les marchés.


 

 

 

 

 

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Page 25/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

2. Résumé de l’Invention Brevet N°6 – Page 26

SafeIoT est une couche IoT sécurisée intégrée à l’ensemble
du portefeuille
SafeLoop/SafeUniversal.

  • Connexion universelle : Compatible avec tous les modules AC/DC
    et capteurs.

  • IA hybride embarquée : Logique floue + réseaux neuronaux,
    explicable et auditable.

  • Performance par paliers :

    • Catégorie 0 (<20 ms) : Conformité minimale, résidentiel,
      marchés émergents.

    • Catégorie 1 (<10 ms) : Standard industriel, adoption large.

    • Catégorie 2 (< 5 ms) : Premium, infrastructures critiques.

    • Catégorie 3 (< 4 ms) : Data centers, mobilité électrique.

    • Catégorie 4 (< 3 ms) : Ultra-critique (nucléaire, spatial,
      militaire).

  • Traçabilité blockchain post-quantique : Journaux inviolables.

  • Architecture modulaire : Intégration OEM et Retrofit.

  • Normes anticipées : IEC/IEEE, ISO/IEC 27001.


 

 

 

License Creative Commons BY-NC - Ces technologies sont mise à disposition
selon les termes de la licence Creative
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Page 26/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

3. Description Technique Brevet N°6 - Page 27

  • IoT sécurisé : Protocoles chiffrés post-quantum,
    communications inviolables.

  • Multi-capteurs : Transmission en temps réel des données
    électriques et physiques.

  • IA hybride : Analyse explicable, apprentissage local et global.

  • Performance Catégories :

    • <20 ms : Latence standard, coût réduit.

    • <10 ms : Latence rapide, standard industriel.

    • <5 ms : Latence premium, infrastructures critiques.

    • <4 ms : Latence critique, data centers, mobilité électrique.

    • <3 ms : Latence ultra-critique, nucléaire et spatial.

  • Traçabilité blockchain post-quantique : Audit inviolable.

  • Architecture modulaire : Packaging standardisé.

  • Normes : IEC/IEEE, ISO/IEC 27001.


4. Revendications Optimisées

  1. Couche IoT sécurisée pour AC/DC intégrant multi-capteurs.

  2. IA hybride explicable et adaptive.

  3. Performance par paliers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Traçabilité blockchain post-quantique.

  5. Architecture modulaire et standardisée.

  6. Conformité IEC/IEEE et ISO/IEC 27001.

 

 

License Creative Commons BY-NC - Ces technologies sont mise à disposition
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Page 27/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

5. Intérêt Stratégique Brevet N°6 - Page 28

  • Humain : Supervision fiable, réduction des risques.

  • Industriel : Adoption Mondiale, compatibilité AC/DC.

  • Normatif : Conformité garantie, adoption obligatoire.

  • Différenciation : ‘’Moat’’ élargi par la gamme complète de paliers.


Estimation Économique

  • Valeur de marché : 1,5–2 Md€.

  • Royalties (10 ans, scénario normatif) : ~150–200 M€.

  • Impact global : Économies Mondiales de plusieurs
    centaines de milliards €.

  • Barème royalties :

    • Catégorie 0 (<20 ms) : base minimale.

    • Catégorie 1 (<10 ms) : ×1,5.

    • Catégorie 2 (< 5 ms) : ×2–×3.

    • Catégorie 3 (< 4 ms) : ×4–×5.

    • Catégorie 4 (< 3 ms) : ×8–×10.

 

 

 

 

 

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Page 28/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

Fiche Technique – Brevet N°7 Page 29

Titre : SafeMobility
Sécurité Universelle pour la Mobilité Électrique

Inventeur : John DEBON 15 Décembre 2025


1. Contexte et Problème

La mobilité électrique (véhicules, bus, trains, avions hybrides)
est en pleine expansion.

  • Problème : Les systèmes actuels de protection embarquée sont
    trop lents (
    >20 ms), peu fiables et non adaptés
    aux environnements critiques.

  • Limite des solutions existantes : Absence de modularité,
    non-interopérables, incapacité à garantir
    des temps de réaction certifiables.

  • Défi : Concevoir une sécurité universelle pour la mobilité
    électrique
    intégrant des paliers explicites de coupure
    (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms)

    pour répondre à tous les segments.


 

 

 

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Page 29/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

2. Résumé de l’Invention Brevet N°7 - Page 30

SafeMobility est une couche de sécurité universelle dédiée
aux véhicules électriques et hybrides.

  • Multi-capteurs intégrés : Tension, courant, température, acoustique,
    optique, olfactif, quantique.

  • IA hybride embarquée : Logique floue + réseaux neuronaux,
    explicable et auditable.

  • Performance par paliers :

    • Catégorie 0 (<20 ms) : Conformité minimale, résidentiel,
      marchés émergents.

    • Catégorie 1 (<10 ms) : Standard industriel, adoption large
      (automobile, bus).

    • Catégorie 2 (< 5 ms) : Premium, infrastructures critiques
      (flottes, transport public).

    • Catégorie 3 (< 4 ms) : Mobilité sensible
      (data centers mobiles, aviation légère).

    • Catégorie 4 (< 3 ms) : Ultra-critique (aéronautique, spatial,
      militaire).

  • Traçabilité blockchain post-quantique : Journaux inviolables.

  • Architecture modulaire : Intégration OEM et Retrofit.

  • Normes anticipées : IEC/IEEE, ISO/IEC 27001.


 

 

License Creative Commons BY-NC - Ces technologies sont mise à disposition
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Page 30/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

3. Description Technique Brevet N°7 - Page 31

  • Sécurité embarquée universelle : Architecture commune pour
    tous les véhicules électriques.

  • Multi-capteurs : Fusion de données électriques et physiques.

  • IA hybride : Seuils dynamiques, apprentissage local, explicabilité.

  • Performance Catégories :

    • <20 ms : Coupure standard, coût réduit.

    • <10 ms : Coupure rapide, standard automobile.

    • <5 ms : Coupure premium, transport public.

    • <4 ms : Coupure critique, aviation légère.

    • <3 ms : Coupure ultra-critique, spatial et militaire.

  • Traçabilité blockchain post-quantique : Audit inviolable.

  • Architecture modulaire : Packaging standardisé.

  • Normes : IEC/IEEE, ISO/IEC 27001.


4. Revendications Optimisées

  1. Système de sécurité universel pour mobilité électrique
    intégrant multi-capteurs.

  2. IA hybride explicable et adaptive.

  3. Performance par paliers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Traçabilité blockchain post-quantique.

  5. Architecture modulaire et standardisée.

  6. Conformité IEC/IEEE et ISO/IEC 27001.

 

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Page 31/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

5. Intérêt Stratégique Brevet N°7 - Page 32

  • Humain : Protection universelle, réduction des accidents liés
    à la mobilité électrique.

  • Industriel : Adoption Mondiale, compatibilité AC/DC.

  • Normatif : Conformité garantie, adoption obligatoire.

  • Différenciation : ‘’Moat’’ élargi par la gamme complète de paliers.


Estimation Économique

  • Valeur de marché : 2–2,5 Md€.

  • Royalties (10 ans, scénario normatif) : ~200–250 M€.

  • Impact global : Économies Mondiales de plusieurs
    centaines de milliards €.

  • Barème royalties :

    • Catégorie 0 (<20 ms) : base minimale.

    • Catégorie 1 (<10 ms) : ×1,5.

    • Catégorie 2 (< 5 ms) : ×2–×3.

    • Catégorie 3 (< 4 ms) : ×4–×5.

    • Catégorie 4 (< 3 ms) : ×8–×10.

 

 

 

 

 

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Page 32/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

Fiche Technique – Brevet N°8 Page 33

Titre : AdaptiveSafe AI
Intelligence Artificielle Explicable

et Adaptive pour la Sécurité Électrique
Inventeur : John DEBON 15 Décembre 2025


1. Contexte et Problème

Les systèmes de protection actuels reposent sur des seuils fixes
et des algorithmes opaques.

  • Problème : Absence d’adaptation en temps réel,
    manque d’explicabilité, temps de réaction trop élevés (
    >20 ms).

  • Limite des solutions existantes : IA non auditable, non certifiable,
    incapacité à anticiper les anomalies.

  • Défi : Concevoir une IA explicable et adaptive intégrant
    des
    paliers explicites de performance
    (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms)
    pour répondre à tous les marchés.


 

 

 

License Creative Commons BY-NC - Ces technologies sont mise à disposition
selon les termes de la licence Creative
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Page 33/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

2. Résumé de l’Invention Brevet N°8 – Page 34

AdaptiveSafe AI est une intelligence artificielle hybride dédiée
à la sécurité électrique.

  • IA hybride : Logique floue + réseaux neuronaux,
    explicable et auditable.

  • Multi-capteurs intégrés : Tension, courant, température, acoustique,
    optique, olfactif, quantique.

  • Performance par paliers :

    • Catégorie 0 (<20 ms) : Conformité minimale, résidentiel,
      marchés émergents.

    • Catégorie 1 (<10 ms) : Standard industriel, adoption large.

    • Catégorie 2 (< 5 ms) : Premium, infrastructures critiques.

    • Catégorie 3 (< 4 ms) : Data centers, mobilité électrique.

    • Catégorie 4 (< 3 ms) : Ultra-critique (nucléaire, spatial, militaire).

  • Traçabilité blockchain post-quantique : Journaux inviolables.

  • Architecture modulaire : Intégration OEM et Retrofit.

  • Normes anticipées : IEC/IEEE, ISO/IEC 27001.


 

 

 

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Page 34/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

3. Description Technique Brevet N°8 – Page 35

  • IA hybride explicable : Seuils dynamiques, apprentissage local,
    justification des décisions.

  • Multi-capteurs : Fusion de données électriques et physiques.

  • Performance Catégories :

    • <20 ms : Réaction standard, coût réduit.

    • <10 ms : Réaction rapide, standard industriel.

    • <5 ms : Réaction premium, infrastructures critiques.

    • <4 ms : Réaction critique, data centers, mobilité électrique.

    • <3 ms : Réaction ultra-critique, nucléaire et spatial.

  • Traçabilité blockchain post-quantique : Audit inviolable.

  • Architecture modulaire : Packaging standardisé.

  • Normes : IEC/IEEE, ISO/IEC 27001.


4. Revendications Optimisées

  1. IA hybride explicable et adaptive pour AC/DC.

  2. Intégration multi-capteurs universelle.

  3. Performance par paliers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Traçabilité blockchain post-quantique.

  5. Architecture modulaire et standardisée.

  6. Conformité IEC/IEEE et ISO/IEC 27001.


 

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Page 35/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

5. Intérêt Stratégique Brevet N°8 - Page 36

  • Humain : Décisions explicables, confiance accrue.

  • Industriel : Adoption Mondiale, compatibilité AC/DC.

  • Normatif : Conformité garantie, adoption obligatoire.

  • Différenciation : ‘’Moat’’ élargi par la gamme complète de paliers.


Estimation Économique

  • Valeur de marché : 2–2,5 Md€.

  • Royalties (10 ans, scénario normatif) : ~200–250 M€.

  • Impact global : Économies Mondiales de plusieurs
    centaines de milliards €.

  • Barème royalties :

    • Catégorie 0 (<20 ms) : base minimale.

    • Catégorie 1 (<10 ms) : ×1,5.

    • Catégorie 2 (< 5 ms) : ×2–×3.

    • Catégorie 3 (< 4 ms) : ×4–×5.

    • Catégorie 4 (< 3 ms) : ×8–×10.

 

 

 

 

 

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Page 36/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

Fiche Technique – Brevet N°9 Page 37

Titre : TraceSecure

Traçabilité Blockchain Post-Quantique
pour la Sécurité Électrique

Inventeur : John DEBON 15 Décembre 2025


1. Contexte et Problème

Les systèmes de traçabilité actuels sont vulnérables :

  • Problème : Journaux modifiables, absence de précision temporelle,
    non-résistants aux attaques futures (quantum).

  • Limite des solutions existantes : Horodatage imprécis (>10 ms),
    absence de certification inviolable,
    manque de confiance des organismes de contrôle.

  • Défi : Créer une traçabilité blockchain post-quantique
    avec des
    paliers explicites de performance
    (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms)

    pour garantir confiance et adoption mondiale.


 

 

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Page 37/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

2. Résumé de l’Invention Brevet N°9 - Page 38

TraceSecure est une couche de traçabilité universelle intégrée
à tous les modules de sécurité électrique.

  • Horodatage sub-ms : Précision jusqu’à 0,1 ms.

  • Performance par paliers :

    • Catégorie 0 (<20 ms) : Conformité minimale, résidentiel,
      marchés émergents.

    • Catégorie 1 (<10 ms) : Standard industriel, adoption large.

    • Catégorie 2 (< 5 ms) : Premium, infrastructures critiques.

    • Catégorie 3 (< 4 ms) : Data centers, mobilité électrique.

    • Catégorie 4 (< 3 ms) : Ultra-critique (nucléaire, spatial,
      militaire).

  • Cryptographie post-quantique : Signatures résistantes
    aux attaques futures.

  • Blockchain inviolable : Journaux immuables,
    audités par les régulateurs.

  • Normes anticipées : IEC/IEEE, ISO/IEC 27001.


 

 

 

 

 

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Page 38/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

3. Description Technique Brevet N°9 - Page 39

  • Horodatage sub-ms : Synchronisation avec sources universelles.

  • Performance Catégories :

    • <20 ms : Traçabilité standard, coût réduit.

    • <10 ms : Traçabilité rapide, standard industriel.

    • <5 ms : Traçabilité premium, infrastructures critiques.

    • <4 ms : Traçabilité critique, data centers, mobilité électrique.

    • <3 ms : Traçabilité ultra-critique, nucléaire et spatial.

  • Cryptographie post-quantique : Signatures lattice-based.

  • Blockchain distribuée : Immuable, auditable.

  • Architecture modulaire : Intégration OEM et Retrofit.

  • Normes : IEC/IEEE, ISO/IEC 27001.


4. Revendications Optimisées

  1. Système de traçabilité blockchain post-quantique pour AC/DC.

  2. Horodatage sub-ms avec précision 0,1 ms.

  3. Performance par paliers (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms).

  4. Signatures cryptographiques post-quantum.

  5. Journaux immuables et audités.

  6. Architecture modulaire et standardisée.

  7. Conformité IEC/IEEE et ISO/IEC 27001.


 

 

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Page 39/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

5. Intérêt Stratégique Brevet N°9 - Page 40

  • Humain : Confiance absolue dans les journaux de sécurité.

  • Industriel : Adoption dans infrastructures critiques et ultra-critiques.

  • Normatif : Conformité garantie, adoption obligatoire.

  • Différenciation : ‘’Moat’’ élargi par la gamme complète de paliers.


Estimation Économique

  • Valeur de marché : 2–2,5 Md€.

  • Royalties (10 ans, scénario normatif) : ~200–250 M€.

  • Impact global : Économies Mondiales de plusieurs
    centaines de milliards €.

  • Barème royalties :

    • Catégorie 0 (<20 ms) : base minimale.

    • Catégorie 1 (<10 ms) : ×1,5.

    • Catégorie 2 (< 5 ms) : ×2–×3.

    • Catégorie 3 (< 4 ms) : ×4–×5.

    • Catégorie 4 (< 3 ms) : ×8–×10.


 

 

 

 

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Page 40/80 - John DEBON – 12 Brevets Stratégique Sécurité Électrique - 15 Déc 2025

Fiche Technique – Brevet N°10 Page 41

Titre : ArcShield

Détection et Suppression Ultra-Rapide
des Arcs Électriques

Inventeur : John DEBON 15 Décembre 2025


1. Contexte et Problème

Les arcs électriques sont parmi les dangers les plus graves :
incendies, destructions d’équipements, accidents humains.

  • Problème : Les systèmes actuels de détection d’arc sont
    trop lents (
    >20 ms), peu fiables et sujets aux faux positifs.

  • Limite des solutions existantes : Capteurs limités, absence d’IA
    explicable, non certifiables en sub-ms.

     

  • Défi : Concevoir un système de détection et suppression d’arc
    avec des
    paliers explicites de performance
    (<20 ms, <10 ms, <5 ms, <4 ms, <3 ms)

    pour garantir adoption
    Universelle.


 

 

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2. Résumé de l’Invention Brevet N°10 – Page 42

ArcShield est un système ultra-rapide de détection et suppression
d’arc
intégrant capteurs avancés et IA hybride.

  • Multi-capteurs : Électriques, acoustiques, optiques,
    olfactifs, quantiques.

  • IA hybride (logique floue + réseaux neuronaux) :
    Explicable, adaptive, auditable.

  • Performance par paliers :

    • Catégorie 0 (<20 ms) : Conformité minimale, résidentiel,
      marchés émergents.

    • Catégorie 1 (<10 ms) : Standard industriel, adoption large.

    • Catégorie 2 (< 5 ms) : Premium, infrastructures critiques.

    • Catégorie 3 (< 4 ms) : Data centers, mobilité électrique.

    • Catégorie 4 (< 3 ms) : Ultra-critique (nucléaire, spatial,
      militaire).

  • Traçabilité blockchain post-quantique : Journaux inviolables.

  • Architecture modulaire : Intégration OEM et Retrofit.

  • Normes anticipées : IEC/IEEE, ISO/IEC 27001.


 

 

 

 

 

 

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