System

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How to Structure Inputs for Better Outputs

Blog Image

The Threat of Power and EM Side-Channel Analysis

CMOS logic gates draw dynamic power dependent on data transitions. An attacker with an oscilloscope measuring power rail fluctuations or EM radiation can reconstruct secret lattice keys during polynomial reduction within minutes.

Transistor-Level Entropy. Domain Isolation. Second-Order DPA Immune.

Domain-Oriented Masking (DOM) splits sensitive cryptographic operands into independent randomized shares, ensuring physical power signatures reveal zero mathematical correlation with private keys.


Pillar 1: Domain-Oriented Masking (DOM) Architecture

Our hardware architecture splits sensitive cryptographic variables into independent secret shares. Non-linear modular operations maintain strict domain isolation and inject fresh physical entropy via integrated True Random Number Generators (TRNG).

You can:

  • View and filter request payloads or event logs.

  • Pin important signals for quick reference.

  • Search structured data without leaving your workspace.

It’s the foundation for everything else, because before you automate or monitor, you need to understand what’s going on.


Pillar 2: Glitch-Resistant Masked Multipliers

Once you can see your data clearly, the next step is Automate. This module lets you turn any manual debugging step, build routine, or test trigger into a defined workflow.

Examples:

  • Run a cleanup task when a new build completes.

  • Trigger notifications when an endpoint changes state.

  • Chain actions across environments (dev → staging → prod).

Automation here is intentionally lightweight — just enough logic to remove friction, not replace your system.

*Think of it as the glue between what you see and what you do next.


Pillar 3: Comprehensive TVLA Testing

The final piece is Monitor — real-time awareness without heavy setup. It lets you track the key metrics and signals you actually care about, not an ocean of noise.

Use cases include:

  • Watching API uptime and latency trends.

  • Tracking event rates or job completion times.

  • Setting simple alerts for threshold breaches.

You don’t need a full observability stack —a just clear, focused monitoring that keeps your workflow tight.


Why Silicon-Enforced Security is Non-Negotiable

Blog Image

True post-quantum security cannot be achieved with software alone. Quantum cryptanalysis and physical laboratory attacks require hardware-rooted silicon trust. Tashkian Semiconductor bridges post-quantum algorithms directly into high-speed silicon logic verified across TSMC, GlobalFoundries, and Intel Foundry nodes.

Tashkian Semiconductor bridges post-quantum algorithms directly into high-speed silicon logic verified across TSMC, GlobalFoundries, and Intel Foundry nodes.

  • Inspect gives you insight.

  • Automate gives you leverage.

  • Monitor gives you confidence.

That’s the core workflow — and the heart of our product.

Next steps

Want to try it in your own stack?

Start with the CLI or open a sample workspace in the browser — both take less than 2 minutes to set up.

The Threat of Power and EM Side-Channel Analysis

CMOS logic gates draw dynamic power dependent on data transitions. An attacker with an oscilloscope measuring power rail fluctuations or EM radiation can reconstruct secret lattice keys during polynomial reduction within minutes.

Transistor-Level Entropy. Domain Isolation. Second-Order DPA Immune.

Domain-Oriented Masking (DOM) splits sensitive cryptographic operands into independent randomized shares, ensuring physical power signatures reveal zero mathematical correlation with private keys.


Pillar 1: Domain-Oriented Masking (DOM) Architecture

Our hardware architecture splits sensitive cryptographic variables into independent secret shares. Non-linear modular operations maintain strict domain isolation and inject fresh physical entropy via integrated True Random Number Generators (TRNG).

You can:

  • View and filter request payloads or event logs.

  • Pin important signals for quick reference.

  • Search structured data without leaving your workspace.

It’s the foundation for everything else, because before you automate or monitor, you need to understand what’s going on.


Pillar 2: Glitch-Resistant Masked Multipliers

Once you can see your data clearly, the next step is Automate. This module lets you turn any manual debugging step, build routine, or test trigger into a defined workflow.

Examples:

  • Run a cleanup task when a new build completes.

  • Trigger notifications when an endpoint changes state.

  • Chain actions across environments (dev → staging → prod).

Automation here is intentionally lightweight — just enough logic to remove friction, not replace your system.

*Think of it as the glue between what you see and what you do next.


Pillar 3: Comprehensive TVLA Testing

The final piece is Monitor — real-time awareness without heavy setup. It lets you track the key metrics and signals you actually care about, not an ocean of noise.

Use cases include:

  • Watching API uptime and latency trends.

  • Tracking event rates or job completion times.

  • Setting simple alerts for threshold breaches.

You don’t need a full observability stack —a just clear, focused monitoring that keeps your workflow tight.


Why Silicon-Enforced Security is Non-Negotiable

Blog Image

True post-quantum security cannot be achieved with software alone. Quantum cryptanalysis and physical laboratory attacks require hardware-rooted silicon trust. Tashkian Semiconductor bridges post-quantum algorithms directly into high-speed silicon logic verified across TSMC, GlobalFoundries, and Intel Foundry nodes.

Tashkian Semiconductor bridges post-quantum algorithms directly into high-speed silicon logic verified across TSMC, GlobalFoundries, and Intel Foundry nodes.

  • Inspect gives you insight.

  • Automate gives you leverage.

  • Monitor gives you confidence.

That’s the core workflow — and the heart of our product.

Next steps

Want to try it in your own stack?

Start with the CLI or open a sample workspace in the browser — both take less than 2 minutes to set up.

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    [#artificial]

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Evaluate Silicon IP in Minutes

Silicon IP,

Request RTL Evaluation Today!

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    [#artificial]

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Evaluate Silicon IP in Minutes

Silicon IP,

Request RTL Evaluation Today!

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    &

    [#intelligence]

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