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Byteport

Byteport provides a proprietary DART® protocol that transfers files and streams up to 1500× faster than traditional TCP while preserving end‑to‑end encryption. The solution works across on‑prem, hybrid, cloud, and air‑gapped networks, enabling petabyte‑scale, low‑latency data movement for AI training, satellite communications, autonomous robotics, and classified defense operations.

San Francisco, United StatesFounded 20252300+ followers
Updated 3 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Traditional TCP-based file transfer is limited by latency, congestion control, and bandwidth inefficiencies, making it too slow for petabyte-scale or time‑critical data movement in AI clusters, satellite stations, autonomous robotics, and defense networks.

Solution

Byteport offers a proprietary DART® protocol that bypasses the constraints of legacy TCP, delivering data transfer speeds up to 1500× faster while maintaining end‑to‑end security. The protocol can be deployed across any network topology—including on‑premises, hybrid cloud, fully cloud, and air‑gapped environments—allowing organizations to move large files and streams reliably at scale. Byteport provides full deployment guidance and integration support tailored to the security posture and performance requirements of each use case, enabling mission‑critical operations to run without transfer bottlenecks.

Target Audience

Primary customers are enterprises and agencies that require high‑performance, secure data movement for AI/ML workloads, satellite communications, autonomous robotics, and classified defense networks.

Features

  • Proprietary DART® protocol achieving up to 1500× higher throughput than standard TCP
  • Secure, encrypted transfer layer compatible with classified and air‑gapped networks
  • Seamless operation across on‑prem, hybrid, cloud, and isolated environments
  • Scalable architecture supporting petabyte‑scale data flows for AI training clusters
  • Optimized for low‑latency, high‑reliability use cases such as satellite ground stations and autonomous drone fleets
  • Comprehensive deployment guidance and integration support for diverse security postures
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