TECHNICAL SPECIFICATION

Zero-knowledge decentralized storage architecture

Botanika SOL integrates local lossless AI compression with erasure-coded sharding to deliver S3-compatible speeds. We secure enterprise data pipelines across a globally distributed, physical hardware network owned by sovereign operators.

/ CORE PROTOCOLS

Three layers of security

Our decentralized architecture executes multi-layered compression, redundant sharding, and zero-knowledge encryption locally. This ensures your data is fully protected before a single byte ever leaves your local machine.

PHASE 01
PHASE 02
PHASE 03

Lossless AI compression

Erasure-coded sharding

Zero-knowledge encryption

Proprietary lossless neural algorithms analyze and compress files locally. This maximizes raw throughput and minimizes transfer latency, optimizing speed before the sharding process begins.

Files are split into redundant, mathematical shards distributed across independent B1 hardware nodes. The network prevents data loss even if multiple physical nodes go offline simultaneously.

Military-grade AES-256 encryption occurs entirely client-side. Only the data owner holds the private cryptographic keys required to reassemble and decrypt the sharded files.

A stark technical schematic of data packet sharding, clean geometric particles dispersing from a central node, high-contrast black vector lines on a solar-yellow background, orthographic projection.
A stark technical schematic of data packet sharding, clean geometric particles dispersing from a central node, high-contrast black vector lines on a solar-yellow background, orthographic projection.
TRANSMISSION PATHWAY

Raw throughput metrics

By compressing data locally prior to sharding, Botanika SOL slashes bandwidth overhead by up to seventy percent. This technical efficiency allows our decentralized network to match S3 speeds directly.