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{ "item_title" : "Safety Logic Unit", "item_author" : [" Charles Tang", "Peter Chu "], "item_description" : "This is a book about Mathematically Provable Governance, Physical Silicon Interlocks, and Frontier Quantum Trust Anchors.The End of the Black Box EraAs high-capacity neural networks and autonomous agentic frameworks take control of power grids, financial networks, medical systems, and automated manufacturing, humanity faces a critical engineering crisis. Non-deterministic AI models can neither be fully inspected in real time nor guaranteed against catastrophic failure mode transitions. Soft, post-hoc visualizations and probabilistic software prompts offer no mathematical safety guarantees when autonomous systems operate in high-stakes environments.Safety Logic Unit (SLU) presents a revolutionary paradigm shift: moving safety out of unverified software layers and anchoring it permanently in mathematical invariants and physical hardware.By unifying J-space barrier functions, mechanistic circuit interpretability, and the Model Context Protocol (MCP), this book delivers a complete, end-to-end blueprint for constructing SLUs-verifiable execution cores that enforce non-negotiable operational guardrails across three distinct governance tiers:Tier 1: In-Flight Real-Time Interlocks (Microseconds to Milliseconds) - Hardware-level silicon and room-temperature diamond quadrupolar quantum co-processors (OpenQPU) that intercept trajectory drift in continuous autonomous loops.Tier 2: Pre-Commit Gateways (Seconds to Minutes) - Low-latency API proxies that audit agentic tool calls, code deployments, and database mutations before changes commit to production.Tier 3: Strategic Asynchronous Audits (Days to Weeks) - Deep $J$-space stress-testing engines that evaluate high-stakes executive decisions-such as M&A acquisitions, capital allocation, and infrastructure restructuring-against complex physical and regulatory invariants.From formal state-space proofs and Verilog RTL synthesis to autonomous fab-in-a-box manufacturing and solid-state quadrupolar spin physics, Safety Logic Unit is the definitive technical guide for engineers, silicon architects, and researchers building the un-hackable trust anchors of the intelligent age.Includes living digital companion resources, interactive packaging schematics, and open-source HDL specifications at https: //www.qiassoc.org.", "item_img_path" : "https://covers3.booksamillion.com/covers/bam/9/79/824/087/9798240873010_b.jpg", "price_data" : { "retail_price" : "26.99", "online_price" : "26.99", "our_price" : "26.99", "club_price" : "26.99", "savings_pct" : "0", "savings_amt" : "0.00", "club_savings_pct" : "0", "club_savings_amt" : "0.00", "discount_pct" : "10", "store_price" : "" } }
Safety Logic Unit|Charles Tang

Safety Logic Unit : Architecting Real-Time Governance for Autonomous AI and Quantum World Models

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Overview

This is a book about Mathematically Provable Governance, Physical Silicon Interlocks, and Frontier Quantum Trust Anchors.

The End of the Black Box Era

As high-capacity neural networks and autonomous agentic frameworks take control of power grids, financial networks, medical systems, and automated manufacturing, humanity faces a critical engineering crisis. Non-deterministic AI models can neither be fully inspected in real time nor guaranteed against catastrophic failure mode transitions. Soft, post-hoc visualizations and probabilistic software prompts offer no mathematical safety guarantees when autonomous systems operate in high-stakes environments.

Safety Logic Unit (SLU) presents a revolutionary paradigm shift: moving safety out of unverified software layers and anchoring it permanently in mathematical invariants and physical hardware.

By unifying J-space barrier functions, mechanistic circuit interpretability, and the Model Context Protocol (MCP), this book delivers a complete, end-to-end blueprint for constructing SLUs-verifiable execution cores that enforce non-negotiable operational guardrails across three distinct governance tiers:

    • Tier 1: In-Flight Real-Time Interlocks (Microseconds to Milliseconds) - Hardware-level silicon and room-temperature diamond quadrupolar quantum co-processors (OpenQPU) that intercept trajectory drift in continuous autonomous loops.
    • Tier 2: Pre-Commit Gateways (Seconds to Minutes) - Low-latency API proxies that audit agentic tool calls, code deployments, and database mutations before changes commit to production.
    • Tier 3: Strategic Asynchronous Audits (Days to Weeks) - Deep $J$-space stress-testing engines that evaluate high-stakes executive decisions-such as M&A acquisitions, capital allocation, and infrastructure restructuring-against complex physical and regulatory invariants.

From formal state-space proofs and Verilog RTL synthesis to autonomous fab-in-a-box manufacturing and solid-state quadrupolar spin physics, Safety Logic Unit is the definitive technical guide for engineers, silicon architects, and researchers building the un-hackable trust anchors of the intelligent age.

Includes living digital companion resources, interactive packaging schematics, and open-source HDL specifications at https: //www.qiassoc.org.

Details

  • ISBN-13: 9798240873010
  • ISBN-10: 9798240873010
  • Publisher: Quantum Intelligence Association
  • Publish Date: September 2026
  • Dimensions: 9 x 6 x 0.45 inches
  • Shipping Weight: 0.64 pounds
  • Page Count: 214

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