Agility Robotics
Agility Robotics is a Salem, Oregon humanoid robotics company building industrial bipedal robots for warehouse and factory automation. Founded in 2015 as a spin-out of Oregon State University's Dynamic Robotics Laboratory, its flagship product is Digit — described as the first humanoid robot in commercial production deployment — and Arc, the cloud-based automation platform that operates Digit fleets, provides real-time visibility, manages task assignments, and connects Digit to existing warehouse automation including AMRs, WMS, and WES systems. Digit has commercial deployments and pilots with Amazon, GXO Logistics, Schaeffler, Toyota Motor Manufacturing Canada, and Mercado Libre, with an expanded NVIDIA partnership for foundation-model and simulation tooling. Agility operates RoboFab, a humanoid robot factory in Salem, OR with capacity to produce 10,000 robots annually. Digit has surpassed 100,000 totes moved in commercial deployment at a single Georgia facility. Agility Robotics does not publish a public developer API, SDK, or open-source release for Digit or Arc; integration is performed by Agility's solutions team and partners through a gated low-level JSON-over-WebSocket API and pysdk delivered with the robot. The company's public GitHub org primarily contains forks of infrastructure tooling (JFrog, Bazel, Fluent Bit, Kubernetes Cluster API) plus an archived documentation repo for the earlier Cassie research platform.
Index entry only — little beyond a description and a link, and nothing machine-readable enough for an agent to act on without a human reading the site first.
API Evangelist profiles Agility Robotics the way a machine reads it — 2 machine-readable artifacts, pulled from the provider's own public surface and indexed so a developer, an analyst, or an AI agent can evaluate it against every other provider on the network.
Every provider in the network is reduced to the same set of machine-readable artifacts — OpenAPI contracts, event specifications, GraphQL schemas, runnable collections, pricing and rate-limit signals, security posture, OAuth scopes, and the agent surfaces (MCP servers and skills) that let software drive the API on its own. We profile them because the interface is the part of a company you can actually inspect: it is a truer signal of what a provider does than any marketing page. From those artifacts we compute the Kin Score — Agility Robotics scores 12.6/100 (minimal), with a separate agent-readiness read of 0/100 (human only). The full breakdown is below, followed by every artifact we hold — each card links through to its machine-readable definition on apis.io.
Kin Score
This is the API Evangelist rating — a single, repeatable read computed from the artifacts on this page. Green fill is points earned; the red track is points possible, so every bar shows earned-versus-possible at a glance.
How we profile Agility Robotics
Each block below is one kind of artifact we hold for Agility Robotics. For each we say what it is and why it earns a place in the profile, then list every one we've indexed — capped at two rows, scroll within the panel for the rest.
Semantic Vocabularies 1
JSON-LD contexts give the data shared meaning across APIs. We profile them because semantics are what let a machine reconcile 'customer' here with 'customer' somewhere else.
JSON-LD contexts and semantic vocabularies used across these APIs.
Agility Robotics Context
JSON-LDSecurity Posture 1
Authentication, domain security, vulnerability disclosure, and trust-center signals — the evidence that a provider takes security seriously enough to document it. We profile it because you can't govern what you can't see.
Authentication, domain security, vulnerability disclosure, and trust-center signals.
Resources
Every other property we hold for Agility Robotics — documentation, portals, status pages, policies, and corporate surface — grouped by the job it does, following the integrator's arc from getting started to running in production.
Build 1
SDKs, sample code, and the tooling you integrate with
Access & Security 1
Authentication, authorization, and security posture
Learn 1
Tutorials, courses, talks, and written guidance
Operate 1
Status, limits, changes, and where to get help
Company 6
The organization behind the API
Other 4
Properties that don't map to a standard resource type
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