Join Symmatrics and help build the future of encryption. We’re shaping the next era of data security — and we’re looking for innovators like you.

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At Symmatrics, we’re redefining cybersecurity with a prevention-first approach - stopping threats before they exist. Backed by 60+ years of combined experience in government security, our leadership brings unmatched expertise and innovation to the forefront of data protection.
Our technology has been valued at over $200M in patents by AIPI, underscoring its breakthrough impact on the industry. With $236M in previous technology exits, our team has a proven track record of driving transformative security solutions.
Symmatrics operates at the cutting edge of Quantum-SecureTM encryption and AI-resistant security, ensuring enterprises and governments stay protected in a rapidly evolving threat landscape... That’s what we do.
SYSTEM AND METHOD FOR RANDOMIZATION FOR ROBUST RFID SECURITY
It describes a system that utilizes randomized identifiers for RFID tags to provide robust security and targeted information dissemination.
SYSTEM, APPARATUS, AND METHOD FOR FORMING A SECURED NETWORK USING TAG DEVICES HA...
This patent covers the manufacturing, authentication, and authorization of tag devices, as well as the formation of secured networks.
USING A NESTED RANDOM NUMBER-BASED SECURITY ECOSYSTEM FOR BLOCK CHAINS FOR ELECT...
This patent describes methods, systems, and apparatuses for block chain security schemes for electronic cash tokens.
SECURE COMMUNICATION WITH RANDOM NUMBERS
This patent covers methods, systems, and apparatuses for secure communications through a secure database using random numbers, including one-time use random number cipher keys.
USING GLOBALLY-UNIQUE NUMBERS FOR ALL SECURE UNIQUE TRANSACTIONS, AUTHENTICATION...
This application describes a system for generating and utilizing globally unique values to secure transactions, authentications, and communications.
DELIVERING RANDOM NUMBER KEYS SECURELY FOR ONE-TIME PAD SYMMETRIC KEY ENCRYPTION
It describes methods for secure key delivery leveraging quantum random number generators and physical mechanisms.
PROVIDING RANDOM NUMBERS OVER AN INSECURE CHANNEL USING DISGUISED CYPHERTEXTS
It describes methods for secure key delivery leveraging quantum random number generators and physical mechanisms.
Symmatrics replaces trust assumptions with mathematical proof, protecting your organization from the risks of today and the threats of tomorrow.
Symmatrics is a team of SaaS encryption pioneers, who have developed a suite of products designed to raise the standard of encryption now, and in the quantum future. We accomplish this goal by delivering the most secure symmetric keys at scale.
Traditional encryption relies on public or shared keys that can eventually be broken as computing power increases. Symmatrics uses a new symmetric-key delivery model that eliminates those dependencies, offering a simpler, more resilient, and future-ready approach to secure data exchange.
Yes. By avoiding public key cryptography entirely and relying on ephemeral symmetric keys, Symmatrics is inherently resistant to quantum attacks. This is also how we can guarantee 'Mathematically Unbreakable Encryption'.
While Symmatrics is ideal for any organization that manages sensitive, regulated, or mission-critical data that needs to be encrypted securely, we find the most immediate value and response from financial institutions, cloud security offerings, as well as the urgently growing casino/gaming space.
The Software Development Kit (SDK) enables integration of Symmatrics technology into existing applications or infrastructure. It provides a secure, standardized way to facilitate key distribution to authorized devices for quantum secure encryption.

Symmatrics replaces trust assumptions with mathematical proof, protecting your organization from the risks of today and the threats of tomorrow.
Isn’t this the same as other“quantum” encryption vendors?
Many vendors market post-quantum products built on computationally secure PQC algorithms, and some make FIPS or standards claims worth checking against the actual NIST CMVP certificate. Symmatrics’ differentiator is delivering single-use symmetric keys at internet scale.
How is this different from Quantum Key Distribution (QKD)?
QD distributes keys using quantum physics but typically requires specialized hardare and dedicated fiber, which limits where it can be deployed. Symmatrics delivers the security benefits of single-use symmetric keys over ordinary internet infrastructure —no special hardware or dedicated links required.
How is this different from NIST’s post-quantum standards (ML-KEM, ML-DSA)?
NIST’s post-quantum algorithms are excellent and standards-track, but they’re still computationally secure —they replace today’s math with new math believed to be hard for quantum computers. Symmatrics avoids that bet with single-use symmetric keys, which quantum computers give no advantage against. Many organizations will run both; Symmatrics is designed to sit alongside a NIST PQC migration, not replace it.
Where does your randomness come from?
The security of a one-time pad depends entirely on the keys being truly random, not pseudo-random. Symmatrics generates keys from true random sources rather than deterministic algorithms.
One-time pads have always failed on key distribution. How does Symmatrics solve that at internet scale?
This is the classic objection, and it’s the right one — historically OTP failed on logistics, not math. Our patented Key Distribution Center (KDC) generates truly random keys and delivers single-use symmetric keys only to verified endpoints, with no public-key exchange in the path. The key-delivery engineering is the actual product.
Isn’t “mathematically unbreakable encryption” just marketing?
It’s fair skepticism — most bold crypto claims don’t survive expert scrutiny. Ours is deliberately scoped: it applies to a correctly used one-time pad, whose security is a mathematical proof, not a difficulty assumption. The hard part isn’t the cipher (which has been trusted for decades) — it’s delivering single-use keys at scale, which is what our technology does.
What do you mean by“mathematically unbreakable”?
It refers to a specific, well-established property proven by Claude Shannon in 1949: when a symmetric key is truly random, used once, and at least as long as the message, the cipher text reveals no information about the original message — a guarantee called perfect secrecy, or information-theoretic security, that is stronger than the computational difficulty other ciphers depend on.
Two honest points: it describes the cipher, not the whole system — real-world security also depends on how keys are generated and delivered, which is exactly what our KDC is designed to protect; and it protects the data, not careless endpoints or people. We say it plainly because precision is what technical buyers respect.
What is a one-time pad (OTP)?
A one-time pad encrypts a message by combining it with a random key that is the same length as the message and used only once. When those conditions hold, it is the only encryption method proven to be unbreakable regardless of an attacker’s computing power.
What’s the difference between Symmetric and Asymmetric (public-key) encryption?
Asymmetric (public-key) encryption uses a public key to lock data and a private key to unlock it. It's how most of the internet works today — and it’s the part most exposed to quantum attack, because the math behind it can be reverse-engineered by a powerful enough computer.
Symmetric encryption uses the same shared key to lock and unlock. It has no public-key math to break, so with strong, single-use keys it stands up to quantum computing. The historical catch has always been getting the shared key to both sides securely at scale — the exact problem Symmatrics is built to solve.
What is a “trust layer,” and why does the internet need a new one?
Almost everything online rests on a hidden assumption: that certain long-lived keys and certificates will stay secret. That assumption is the internet’s trust layer — and it’s aging. Quantum computing and AI-accelerated attacks target exactly those long-lived secrets. Symmatrics replaces that assumption with something sturier: trust that is created fresh for each exchange and expires immediately, so there’s nothing durable left to compromise.