Storing Data in DNA, the Future of Information

DeepTech transforms the way the world archives knowledge by encoding digital data into synthetic DNA strands.

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About DeepTech

We are a startup at the intersection of biotechnology and information technology, dedicated to turning one of nature’s most stable information carriers into a practical storage medium.

Our core technology translates binary data into sequences of adenine, thymine, cytosine, and guanine—the building blocks of DNA. By synthesizing these custom strands, we can place vast amounts of information into a volume that is microscopic yet extraordinarily durable.

Unlike magnetic tapes or silicon‑based drives that degrade over decades, DNA remains readable for millennia when stored in cool, dry conditions. This makes it ideal for preserving cultural heritage, scientific datasets, legal records, and any asset that demands long‑term integrity.

DeepTech works with enterprises, research institutions, and government agencies to design encoding schemes, synthesize DNA libraries, and provide retrieval protocols that ensure data can be read back accurately with next‑generation sequencing equipment.

Our approach combines rigorous error‑correction algorithms with biochemical stabilization techniques, giving clients confidence that their information will survive technological obsolescence and environmental challenges.

What We Offer

Custom DNA Encoding

We translate your digital files into optimized DNA sequences, applying error‑correcting codes that maximize storage efficiency and protect against synthesis or sequencing errors.

High‑Fidelity Synthesis

Partnering with leading synthetic biology labs, we produce the designed DNA strands at scale, ensuring purity and correct sequence representation for reliable downstream retrieval.

Secure Storage Solutions

We provide guidance on long‑term preservation formats—such as dried DNA pellets encapsulated in inert matrices—so your data remains accessible for centuries without degradation.

Retrieval & Readout

When you need your information back, we coordinate sequencing runs and apply our decoding pipelines to reconstruct the original digital files with verified accuracy.

How It Works

1

Consultation & Feasibility

We begin by understanding your data volume, access patterns, and preservation goals. Our team assesses whether DNA storage is the right fit and outlines a pilot plan.

2

Encoding & Optimization

Using proprietary algorithms, we convert your binary data into DNA‑friendly sequences, integrating error‑correction codes and avoiding problematic homopolymers that could hinder synthesis.

3

Synthesis & Quality Control

The designed sequences are ordered from certified gene‑synthesis providers. Each batch undergoes rigorous quality checks to confirm sequence fidelity before moving forward.

4

Storage Preparation

The synthesized DNA is dried and encapsulated in a stabilizing matrix, then placed in secure, low‑temperature storage vessels designed for long‑term archival.

5

On‑Demand Retrieval

When you request access, we rehydrate the DNA, perform high‑throughput sequencing, and apply our decoding software to restore the original files, delivering them via secure download.

Frequently Asked Questions

    Is DNA data storage really safe for long‑term archiving?
    DNA is one of the most stable molecules known; when kept away from water, heat, and UV light, it can retain readable information for thousands of years, far surpassing conventional media.
    How much data can fit in a gram of DNA?
    Theoretical limits exceed 200 million gigabytes per gram. Practical implementations today achieve several terabytes per gram, with continual improvements as synthesis and sequencing technologies advance.
    What types of files are best suited for DNA storage?
    Any digital file—text, images, video, code, or scientific datasets—can be encoded. Because the process treats data as binary, there are no format restrictions.
    How do you protect against errors during synthesis or sequencing?
    We employ sophisticated error‑correcting codes similar to those used in deep‑space communications, plus algorithmic constraints that avoid error‑prone sequences, ensuring recoverable data even if a small fraction of bases are misread.
    Is the process environmentally friendly?
    DNA synthesis uses biocompatible reagents and produces minimal waste compared to manufacturing electronic storage media. The final DNA product is biodegradable and poses no hazardous disposal concerns.
    Can I update or add to my stored data later?
    Yes. Additional information can be encoded into new DNA strands and stored alongside the original batch. Retrieval pipelines can then combine multiple sets to present the complete updated dataset.

Contact Us

We welcome inquiries about our DNA‑based data storage solutions. Please reach out through the form on our website or via the contact methods listed below.

Ready to Store Your Data in DNA?

Contact us today to learn how our cutting‑edge technology can preserve your information for generations.

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