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JONETIX

JONETIX develops high‑security hardware and cryptographic protocols that protect networks, devices, and data from intrusion. Its patented Single‑Cell Secure Sharding (SCSS) enables distributed ledgers to process thousands to millions of transactions per second while preserving privacy, and its Silicon Anchor Security Engine (SASE) provides hardware‑level immunity to password attacks, side‑channel exploits, and memory‑based threats such as Meltdown and Spectre.

Updated 27 days ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Current network and device security solutions rely on software-level defenses that can be bypassed by password attacks, side‑channel exploits, and hardware tampering, leaving critical data and identities vulnerable. Existing cryptographic methods often cannot scale to the high transaction throughput required by modern distributed ledgers while preserving privacy.

Solution

Jonetix delivers hardware‑level security that creates immutable, physically unclonable identities for chips and users, eliminating the effectiveness of password‑based attacks and unauthorized access. Its Silicon Anchor Security Engine (SASE) embeds a secure anchor in silicon, providing perpetual protection for credentials and memory. The patented Single‑Cell Secure Sharding (SCSS) technology enables distributed ledgers to shard at the granularity of a single principal‑attribute pair, allowing transaction rates from thousands to millions per second without compromising privacy. Tri‑Shield Memories encrypt data within the CPU and are designed to resist imaging, probing, and all known side‑channel attacks, ensuring that sensitive information remains protected even against advanced hardware attacks.

Target Audience

Primary customers are enterprises and organizations that operate high‑throughput distributed ledger systems, as well as manufacturers of secure hardware and devices requiring tamper‑proof credential and memory protection.

Features

  • Silicon Anchor Security Engine (SASE) generates unlimited, physically unclonable chip and user identities, blocking credential theft at the hardware level
  • Single‑Cell Secure Sharding (SCSS) provides theoretical‑limit sharding for any ledger type, scaling throughput to millions of transactions per second while preserving PII privacy
  • CryptoLoop protocol enables secure messaging over insecure networks, immune to password attacks and cryptanalysis
  • Tri‑Shield Memories employ internal CPU encryption (WDp‑iFPEE) that resists deep‑discovery, imaging, probing, and side‑channel attacks such as Meltdown and Spectre
  • Hardware‑embedded immutable security layer creates absolute barriers against intrusion, eliminating anonymous parties in transactions
This profile is AI-generated and may contain inaccuracies.