Performance Without Compromise
CARDIAC-PURR eliminates GPU thermal throttling through software — no infrastructure changes. 2.36x clock advantage validated over 200+ hours. Patent pending. The first solution deployable directly by cloud tenants that sustains peak GPU performance with no changes to the underlying infrastructure.
Performance Metrics
Validated Performance
The Problem
Silicon Generates Heat.
Heat Constrains Performance.
This Is Physics.
Every processor — GPU, CPU, or specialised accelerator — operates within a defined thermal envelope. When sustained workloads push a processor toward its thermal design limit, hardware protection mechanisms automatically reduce operating frequency.
The processor is protected. The workload is not. In sustained AI training, inference, and scientific compute, this translates directly to extended run times, inconsistent throughput, and unpredictable service quality.
A parallel constraint affects memory. When a long-running process exhausts available system memory, the operating system terminates it — without warning, without partial output, and without recourse.
Both failure modes share the same characteristic: they are disruptive. CARDIAC-PURR and PURR Shield are designed to keep compute jobs running without interruption.
Inventions
Technology Overview
Advanced thermal management solutions for sustained GPU performance.
Advanced Software-Driven
Thermal Management
CARDIAC-PURR is the first solution deployable directly by cloud tenants that eliminates thermal throttling and sustains peak GPU performance — with no changes to the underlying infrastructure.
The algorithm draws on biological systems — specifically the cardiac nervous system and feline frequency patterns. Just as the heart preserves rhythmic stability through feedback, CARDIAC-PURR maintains thermal equilibrium through feedback control deployed through software.
This bio-inspired design enables proactive thermal management that keeps compute performance stable before constraint boundaries are reached.
Stable Memory.
No Termination Events.
PURR Shield addresses the second critical failure mode in sustained GPU compute: memory exhaustion. When a process exceeds available system memory, the operating system terminates it without warning — discarding hours or days of work.
Full technical documentation available under mutual NDA.
Benchmark Summary
Benchmarks
Independently corroborated telemetry across 200+ hours of validated runtime.
THERMAL PERFORMANCE — BEFORE vs. AFTER
THERMAL CONTROL — PERFORMANCE VISUALISATION
Hardware Portfolio
Supported GPU Architectures.
CARDIAC-PURR has been validated across multiple GPU architectures and deployment environments. Characterisation of additional platforms is ongoing.
Market Context
AI Workloads Throttle.
Infrastructure Amplifies the Consequences.
As GPU architectures advance — from 700W per processor to over 2,300W in next-generation platforms — the gap between reactive and proactive thermal management becomes the defining performance differentiator. Hardware cooling alone cannot address what is fundamentally a software-layer problem.
In the European Union, the Energy Efficiency Directive requires data centres exceeding 500 kW to measure and report energy performance and to adopt efficiency-first decisions for all new technical installations. Proactive thermal control directly improves Power Usage Effectiveness and aligns operational practice with binding EU efficiency obligations.
Licensing Model
Flexible Terms. Clear Process.
CARDIAC-PURR is available under a negotiated non-exclusive technology licence. Commercial terms are structured around deployment scale and are finalised following mutual NDA and technical diligence. To begin the conversation, submit a licensing inquiry below.
Initial response within two business days.
Full technical documentation and mechanism details are available under mutual NDA. Please indicate your interest in the form below.
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Controlled Thermals. Stable Memory.
Powering Multiple Industries.
Every environment where processors must sustain high performance over extended periods, and where a thermal event or memory failure carries financial, operational, or safety consequences.
"The telemetry methodology — MD5-verified, UUID-traceable, corroborated by an unmodifiable third-party audit log — reflects a standard of evidentiary rigour that goes well beyond typical software benchmarks. The sustained-clock result over 200+ hours is technically significant."
The Inventor
Emil Igidov is a business- and technology-oriented lawyer practising across Sweden, Denmark, and Poland. His legal training reflects a core professional discipline: constructing robust frameworks under constraint, documenting outcomes with evidentiary precision, and establishing defensible priority positions.
This discipline underpins the development of CARDIAC-PURR and PURR SHIELD.
A 200+ hour zero-throttle validation run on leading cloud GPU hardware, a telemetry chain secured through MD5 verification and UUID-level traceability, and a USPTO filing dated March 14, 2026 — these are not typical software outputs — they reflect a methodology grounded in evidentiary rigour and legal-grade defensibility.
IP & Legal Status
Priority Established.
Protection In Place.
Priority date established
Copyright protection in force
2info Sp. z o.o.
Full technical diligence by NDA
Chip-level embedding available
Research & Roadmap
The Principle Is Proven.
Innovation Continues.
CARDIAC-PURR and PURR SHIELD established that a proactive control layer — deployed through software, without hardware access, without infrastructure changes, without administrator access — can eliminate the two most costly failure modes in sustained GPU compute.
The underlying principle is not specific to thermal physics or memory management. It applies to any system governed by hard constraints where violation carries significant cost: a control layer that keeps the system within boundaries prevents the failure rather than documenting it.
Two new inventions are in active development.
Legal AI Kernel Systems
A framework for AI systems under strict regulatory constraints — fully auditable, traceable, and structured for direct use by enterprises, law firms, and regulators.
Further Invention — Domain Undisclosed
A further invention addressing a distinct domain is in active development. If you are working on a problem where physical, computational, or legal constraints create costly, unpredictable failure events —
News
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Let's Begin the Conversation.
Full technical documentation and mechanism details are available under mutual NDA. Initial response within two business days.