APIs/SDKs: Python/C++ bindings, ROS/ROS 2 compatibility (commonly provided), and
APIs/SDKs: Python/C++ bindings, ROS/ROS 2 compatibility (commonly provided), and examples for teleop capture, imitation learning, and scripted behaviors.
$40,800
PNDbotics Adam-U Pro Max Upper Body Humanoid Robot is a humanoid robot from PDNBOTICS. APIs/SDKs: Python/C++ bindings, ROS/ROS 2 compatibility (commonly provided), and examples for teleop capture, imitation learning, and scripted behaviors.
Review the verified model information, technical details, compatibility, included configuration and documentation before requesting a destination-specific B2B quotation.
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PNDbotics Adam-U Pro Max Upper Body Humanoid Robot is a humanoid robot from PDNBOTICS. APIs/SDKs: Python/C++ bindings, ROS/ROS 2 compatibility (commonly provided), and examples for teleop capture, imitation learning, and scripted behaviors.
PNDbotics Adam-U Pro Max Upper Body Humanoid Robot is a humanoid robot from PDNBOTICS. APIs/SDKs: Python/C++ bindings, ROS/ROS 2 compatibility (commonly provided), and examples for teleop capture, imitation learning, and scripted behaviors.
Pro Max commonly ships with SDKs, ROS/ROS 2 interfaces, and sample code for teleop, perception, and policy training, allowing custom behaviors and integrations.
For procurement, match the exact model or part number, included accessories, configuration and condition to the written quotation before installation or deployment.
Match model, part number and serial or product-label details to the quotation.
Review system, accessory, software, power and facility requirements that apply to this product.
Confirm condition, included items, warranty, documentation and delivery terms before payment.
Use the product media and final exact-unit photographs to confirm configuration and condition before shipment.

The points below summarize model-specific information supported by manufacturer, regulatory or technical documentation.
APIs/SDKs: Python/C++ bindings, ROS/ROS 2 compatibility (commonly provided), and examples for teleop capture, imitation learning, and scripted behaviors.
Pro Max commonly ships with SDKs, ROS/ROS 2 interfaces, and sample code for teleop, perception, and policy training, allowing custom behaviors and integrations.
Summary The PNDbotics Adam-U Pro Max extends the Adam-U line with a manipulation-first, upper-body humanoid optimized for bimanual dexterity, rich perception, and rapid skill authoring.
It is a high-performance upper-body humanoid robot—head, two arms, and dexterous hands—focused on manipulation, HRI, and rapid skill development.
Modularity and integration: Standard interfaces and ROS/ROS 2 compatibility reduce integration time with vision stacks, mobile bases, and external sensors.
Suitability depends on the exact configuration, compatible systems, intended professional use and manufacturer instructions.
Evaluate PNDbotics Adam-U Pro Max Upper Body Humanoid Robot for embodied-AI, manipulation, locomotion or human-robot interaction workflows supported by the exact platform.
Confirm SDK/API, compute, simulation, teleoperation and supported AI frameworks before integration.
Match degrees of freedom, payload, reach, walking speed and end-effector capability to the intended tasks.
Confirm safety controls, charging, floor conditions, communications and commissioning requirements for the destination environment.
The table summarizes confirmed model and technical information confirmed from product specifications and technical documentation. Configuration-sensitive values should be checked against the exact supplied unit.
Use this checklist to reduce configuration, compatibility and acceptance problems.
Manufacturer and regulatory references are prioritized so buyers can verify identity, compatibility and configuration-sensitive information.
Technical or regulatory resource relevant to PNDbotics Adam-U Pro Max Upper Body Humanoid Robot evaluation.
Key questions for evaluating PNDbotics Adam-U Pro Max Upper Body Humanoid Robot before purchase.
APIs/SDKs: Python/C++ bindings, ROS/ROS 2 compatibility (commonly provided), and examples for teleop capture, imitation learning, and scripted behaviors.
Exact robot model, revision and manufacturer part reference; Payload, reach, mobility, speed or working-envelope requirements relevant to the application; Battery, charging, runtime and power requirements where applicable.
No. Hardware revision, software, accessories, modules, handpieces, probes or other options can vary. The written quotation and exact-unit identification should define the supplied configuration.
Only items explicitly listed in the quotation and packing scope should be treated as included. Reference photographs can show accessories or system components that are not part of the final offer.
International B2B delivery can be arranged for approved destinations subject to product-specific transport requirements, customs rules and the agreed freight, insurance and delivery terms.
Manufacturer names and trademarks are used for product identification. Confirm model-specific instructions, compatibility and regional requirements before use.
Model, label/serial information, condition and supplied configuration can be confirmed before dispatch.
Quotation, packing scope, warranty terms and delivery responsibilities are documented before order approval.
Export packing, freight, insurance and shipment documentation can be coordinated for approved destinations.
Support is available for configuration questions, installation planning and procurement documentation.
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