The Next Era Needs a New Structure
Robotics is moving beyond traditional fixed-purpose machines toward Physical AI, application-driven behavior, and deployable robot instances.

Company
MINTROBOT develops robot platform foundations for Physical AI, humanoid-era automation, and deployable robot instances.
This direction is backed by more than 10 years of industrial robot manufacturing, deployment, and operation experience across real automation environments.
Why MINTROBOT exists
MINTROBOT exists to help open robotics to more participants, similar to how smartphones created a platform for applications. The robotics industry is entering a new era, and growth requires moving beyond closed, one-purpose machines toward app-capable robot platforms that more ecosystem members can build on, configure, deploy, and commercialize.
The Next Era Needs a New Structure
Robotics is moving beyond traditional fixed-purpose machines toward Physical AI, application-driven behavior, and deployable robot instances.
More Builders in the Robotics Ecosystem
Like the smartphone and app ecosystem, robotics can grow faster when platform makers, application builders, researchers, integrators, and partners can all participate.
App-Capable Robot Platforms
MINTROBOT builds robot platform foundations so applications and deployments can be developed without treating every new task as a from-scratch robot program.
What we build now
MINTROBOT supplies the platform foundations that help more robot applications be created faster. Component platforms provide controllable APIs, while compound platforms organize components and surrounding devices into app-ready foundations that AI and software teams can use to build robot instances for different purposes.
Component platforms
Arm
motion / manipulation API
Gripper
grip / vision API
Mobile Base
mobility / navigation API
Etc. Module
sensor / IO / device API
Compound platform
Robot applications
Manufacturing App
deployable robot app
Hospitality App
deployable robot app
Home Service App
deployable robot app
Etc.
deployable robot app
Robot instance / product
The product is the combined result: component platforms, compound platform architecture, robot applications, and deployment context working as one deployable robot instance.
Engineering heritage
MINTROBOT's platform direction comes from 10+ years of building and operating real robotic systems. Previous industrial robot arm projects are engineering records that shaped how we think about platform capability, service access, cost-aware design, and real deployment constraints.
7+ Years
Selected systems have remained in long-term production operation after initial deployment.
24/7
Experience with non-stop manufacturing lines where reliability, maintenance, and stable operation matter.
Still Operating
Original systems are still active today, validating design decisions over actual operating time.
Historical articulated arm work for motion planning, end-effector timing, and repeatable object transfer.
SCARA automation record for tuning and process-oriented handling where repeatability and fixture interaction matter.
Assembly-oriented SCARA work across part positioning, tooling, and controlled task sequencing.
Alternative SCARA assembly setup used to validate mechanism layout, station timing, and process-side adaptation.
Packaging automation record for repetitive handling, product transfer, and fixture-guided operation.
Column-style loading and unloading workflow that informs stable workspace and material-flow platform design.
Column robot application work for constrained reach, repeatable positioning, and task-specific manipulation.
Machine-side automation record for access, loading, unloading, timing, and maintainable cell operation.
Cartesian automation record for board handling, fixture access, and practical process integration.
3-axis process automation record for path control, process consistency, and application-specific mechanism layout.
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Commercial paths
The preferred conversation starts with platform fit: target task, operating environment, workspace, payload class, mounting, maintenance access, validation path, and commercialization model.
Evaluate whether Pal Series, Son Series, or a compound platform configuration can support the target application and deployment environment.
Combine component platforms, perception, workspace, and system coordination for education, research, service automation, or partner integration.
Discuss platform licensing, manufacturing transfer, or partner-led commercialization paths.
Connect MINTROBOT products with runtime, sensing, simulation, validation, or application-layer partners.
Platform review
Talk with MINTROBOT about component platform fit, compound platform configuration, reference applications, deployment fit, operating conditions, and the path from platform review to real use.
Start Platform Review