VetraGlove Pro Teleoperation Glove
Built on VetraSense spatial tracking, with 25DOF hand pose reconstruction, 180Hz data output, and 10ms wired latency.
View VetraGlove Pro DetailsFor robot control validation, demonstration capture, and platform integration across teleoperation gloves, upper-body motion capture, and training data workflows.
Not an isolated hardware demo, but a complete evaluation and integration workflow around control, data capture, motion mapping, and engineering implementation.
Reduce uncertainty around whether it will work, how it connects, and how quickly it can run, so users feel ready for a product consultation.
Share robot type, degrees of freedom, interfaces, and task goals, and we will run an initial product fit review.
Evaluate access to pose, joint states, timestamps, exported data streams, and related data capabilities.
Estimate integration complexity based on SDK, ROS2, sample code, and platform interfaces.
Pricing depends on product configuration, delivery region, support scope, purchase quantity, and project stage.
Recommended path:Start with a 20-minute product consultation to confirm platform compatibility and demo goals, then decide whether to move into samples, quotes, or deeper technical discussion.
Start Compatibility ReviewFrom hand motion capture to upper-body teleoperation, demonstration recording, and platform integration discussions.
Built on VetraSense spatial tracking, with 25DOF hand pose reconstruction, 180Hz data output, and 10ms wired latency.
View VetraGlove Pro DetailsA lightweight wearable exoskeleton with 14 free joints, 1000Hz theoretical joint data rate, and 200Hz/500Hz data output.
View Qnbot Exo Plus DetailsEvaluate motion mapping across DOF, kinematics, control protocols, and custom robot data pipelines.
Explore Dexterous Hand IntegrationStream pose data, joint states, and timestamps into export, replay, and robotics training pipelines.
View SDK DetailsShow how operator input, robot response, and recorded data come together in a reliable workflow for demos, training, and R&D.
Capture hand and upper-body motion as reliable input for teleoperation and robotics training.
Validate robot execution after motion mapping and confirm the control path and task feasibility.
Record pose streams, timestamps, and task clips for replay, model training, and evaluation.
Clarify documentation, interfaces, demo assets, and procurement support before requesting a quote.
Describe your robot platform, task, interface conditions, purchase region, and expected demo outcome.
Determine a suitable equipment configuration based on platform DOF, control interfaces, data needs, and demo goals.
Arrange materials, demos, quote discussions, and follow-up support based on project stage.
If you already have a robot platform, demo goal, or data collection plan, share those details with us directly.
For dexterous hand makers, robotics companies, or event teams that need to demonstrate grasping, manipulation, and robot response.
Useful details: robot model, DOF, control interface, and expected demo task.
For embodied AI teams evaluating motion data, timestamps, SDK/ROS2 interfaces, and training pipeline readiness.
For universities and institutes confirming fit with research direction, lab platforms, and procurement workflows before purchase.
Selected partner-brand products with dexvivid consultation, selection, demos, and support coordination.
Selected for robot teleoperation, demonstration data collection, and dexterous manipulation research.
First understand the robot platform, interfaces, task goals, and purchase stage, then decide whether to proceed.
Provide product materials, demo assets, technical documents, or further confirmation paths based on discussion stage.
Future additions may cover motion capture, end effectors, and embodied AI toolchain products.
Quickly understand compatibility, data access, materials, support, and purchasing before a product consultation.
It is used to capture human hand or body motion, control robot platforms, and collect demonstration data for embodied AI and dexterous manipulation research.
Compatibility depends on the dexterous hand degrees of freedom, control interface, and target task. Share your platform details for an initial assessment.
Integration can be evaluated around the SDK, ROS2, sample projects, and technical documentation. Available interfaces depend on the product documentation and project requirements.
Depending on the product configuration, teams can evaluate access to pose data, joint states, timestamps, and exported data streams.
dexvivid is the authorized distributor and solution partner responsible for product consultation, selection, procurement coordination, and support. Hardware development and manufacturing are handled by Qnbot and its legal manufacturing entity.
Pricing depends on product configuration, quantity, delivery region, and support scope. A tailored quotation is provided after the initial product consultation.
Yes. dexvivid supports robotics companies, university laboratories, research institutes, and hardware partners in the United States and Europe with product consultation and procurement coordination.
Share your use case, hardware setup, purchase region, and integration goals. dexvivid will help evaluate the right teleoperation equipment configuration and move into materials, demos, or quote discussions.