QRNG Chip

Unbreakable Randomness

Unbreakable Randomness, Built for Modern Security

The iQrypto QRNG Chip delivers true quantum randomness in a compact, energy-efficient form factor, setting a new standard for cryptographic security and trusted entropy generation. Designed for seamless integration into embedded systems, secure microcontrollers, and high-performance platforms, our QRNG chip enables organizations to move beyond pseudo-randomness and into physically unpredictable entropy—at the hardware level.

Why choose our QRNG?

True Randomness

Generated from natural quantum noise in silicon circuits—no light source required.

Security-Certified

Fully compliant with NIST SP 800-90 A/B/C cryptographic standards.

Compact Design

With a die size of only 1.5 × 1.5 × 0.5 mm, it’s easy to embed into any system.

Seamless Integration

Works via USB, Ethernet, or standard communication protocols.

Ultra-Low Power Consumption

Consumes just 15 mW, ideal for embedded and battery-powered devices.

Quantum Randomness at the Hardware Level

Unlike traditional Pseudo-Random Number Generators (PRNGs), which rely on algorithms and are ultimately predictable, the iQrypto QRNG chip leverages quantum mechanics to generate truly random numbers. It offers high-entropy output directly from quantum noise, ensuring statistically robust and non-repeatable results.

Our design operates entirely within silicon, meaning it does not require any optical components resulting in better reliability, simplified integration, and lower cost.

Technical Specifications

Close-up of a quantum random number generator (QRNG) microchip with gold bonding wires

Hardware

  • Die Size: 1.5 × 1.5 × 0.5 mm

  • Output Rate: 1 MRTN/s (Million Random True Numbers per second)

  • Power Consumption: 15 mW

  • Security Compliance: NIST SP 800-90 A/B/C

  • Interfaces: USB, Ethernet, or standard bus

Target Applications

IoT & Embedded Systems

  1. Secure boot, encrypted communications, and tamper-proof devices.

Financial Services

  1. Key generation for APIs, wallets, high-frequency trading, and banking infrastructure.

Scientific Research & Simulations

  1. Quantum-true randomness for models, data sets, and reproducibility.

Gaming & Lotteries

  1. Provably fair systems and verifiable randomness at scale.

Space & Aerospace

  1. Secure microelectronics for satellites and space-constrained platforms.

Integrating the QRNG Chip into Embedded Systems

For a deeper dive into integrating our QRNG chip into your embedded or secure environments, explore our dedicated article on QRNG integration. It provides practical guidance on leveraging quantum entropy generation via USB, Ethernet, or standard communication buses, with a focus on microcontrollers, cryptographic protocols, and ultra-low power constraints. Whether you’re designing post-quantum secure architectures or building tamper-resistant hardware, this guide will help you maximize the potential of our silicon-based quantum randomness engine.

FAQ - iQrypto QRNG Chip

What makes the iQrypto QRNG chip different from a traditional TRNG?

The iQrypto QRNG chip uses quantum noise at the silicon level to generate entropy, whereas traditional TRNGs often rely on thermal or electrical noise sources, which can be modeled and potentially predicted.

Yes. The chip is compatible with common protocols such as USB and Ethernet, and can be integrated with standard microcontrollers, reducing the need for significant hardware changes.

Absolutely. With its low energy consumption (just 15 mW), the chip is ideal for mobile, battery-constrained, and embedded use cases.

Each iQrypto QRNG chip is validated against NIST SP 800-90 A/B/C guidelines for entropy sources and deterministic random bit generators (DRBGs), ensuring its suitability for regulated environments.

The chip is designed for applications in finance, aerospace, IoT, secure communications, defense, gaming, and high-performance computing.

Contact us

Looking to integrate true quantum randomness into your systems?
Our team is here to help you explore how the QRNG Chip can enhance your security, cryptographic architectures, or embedded applications.