Legba offers disposable, full‑Chromium browser sessions that run in isolated containers with real residential IPs, providing human‑like rendering, built‑in captcha solving, and anti‑bot tradecraft to avoid detection.
Funding
Funding not disclosed
Founders
Product
Problem
AI agents and fintech applications need to interact with websites that employ strong bot detection, MFA, and anti‑automation measures, but traditional headless browsers are easily identified and lack residential IPs, leading to blocked logins, failed transactions, and data‑extraction errors.
Solution
Legba provides disposable, full‑Chromium browser sessions that run in isolated containers with real residential IPs selected by geography. Each session includes native GPU rendering, real fonts, canvas, and WebGL, making it indistinguishable from a human‑driven browser. Integrated captcha solving and anti‑bot tradecraft handle hCaptcha and reCAPTCHA without external stitching. Sessions are burn‑after‑reading: they self‑destruct on TTL expiry or tab closure, leaving no logs or state. Access is offered via a Chrome extension for manual use, a hosted sandbox for autonomous agents, an MCP config line for LLM‑driven tools, and a REST/SDK API for production workloads.
Target Audience
Primary customers are AI developers building autonomous agents and fintech platforms that require reliable, undetectable browsing for login, transaction, and data‑extraction tasks.
Features
- Full headful Chromium engine with GPU, real fonts, canvas, and WebGL rendering
- Localized residential IPs from any city, rotating dynamically to match target expectations
- Built‑in hCaptcha and reCAPTCHA solving performed within the session
- Anti‑bot tradecraft derived from experience breaking Cloudflare, Incapsula, DataDome, etc.
- Burn‑after‑reading containers with configurable TTL, ensuring zero residual data
- Multiple access methods: Chrome extension, hosted sandbox, MCP one‑line config, and REST/SDK API
- Dynamic server selection and geographic routing for optimal latency and reliability