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Mobile-Base Dual-Arm Humanoid Robot with LinkerBot O6 Tactile Six-DOF Dexterous Hands & Wrist RGB Cameras. 16 DOF, Orin NX 100 TOPS, 16 GB RAM, dual DLA cores, MID360 LiDAR, stereo vision & full-stack open SDK. The ultimate high-DOF tactile mobile manipulation platform.
R1-A5-D Ultimate G — mobile-base humanoid with LinkerBot O6 Tactile dexterous hands, wrist RGB cameras, MID360 LiDAR & stereo vision
The R1-A5-D Ultimate G is the flagship high-DOF tactile manipulation platform in the Ultimate series. It pairs the same R1-A5-D mobile base with LinkerBot O6 Tactile six-DOF dexterous hands — adding force-sensitive tactile sensors to the already capable O6 architecture — plus wrist-mounted RGB cameras, all driven by the NVIDIA Jetson Orin NX 100 TOPS compute module. Unlike the Smart series, Ultimate G runs on an 8-core CPU with 16 GB LPDDR5 and dual DLA cores — delivering 2.5× the AI performance and enough memory headroom for large-model inference, multi-modal sensor fusion, and real-time control of complex hand kinematics with tactile feedback. The LinkerBot O6 Tactile hands provide five-finger dexterous grasping with 6 active degrees of freedom, 130 N grip force, and force-sensitive fingertips and palm arrays — enabling contact-aware grasping, slip detection, and force-controlled manipulation on the move.
The LinkerBot O6 Tactile takes the proven O6 six-DOF dexterous hand architecture and adds force-sensitive tactile sensing to fingertips and palm arrays. The underlying mechanics remain identical: 6 active degrees of freedom across 11 joints (6 active + 5 passive), worm-gear transmission for high torque density, 370 g per hand, and 130 N maximum five-finger grip force. What changes is the addition of tactile feedback — turning the hand from a position-controlled gripper into a contact-aware manipulation system. The tactile sensors detect normal and shear forces at the fingertips, enabling the robot to sense slip, adjust grip force in real time, and distinguish between object textures and compliance. Combined with the wrist RGB cameras, the O6 Tactile creates a closed loop: the wrist camera identifies the grasp target, the hand approaches and makes contact, the tactile sensors verify successful engagement, and the grip force modulates to prevent crushing fragile items or dropping heavy ones. This is the difference between grasping and feeling what you grasp — critical for physical human-robot interaction, delicate assembly, and robust mobile manipulation in unstructured environments.
LinkerBot O6 Tactile six-DOF dexterous hands on the R1-A5-D mobile base for contact-aware mobile manipulation
Ultimate G combines six-DOF dexterous hands with tactile sensing to create a platform optimized for force-aware mobile manipulation. The LinkerBot O6's 6 active DOF enable complex grasp formations — precision grips, power grasps, tripod pinches, and lateral holds — while the tactile sensors provide real-time feedback on contact quality. On a mobile base, this matters: the robot drives over uneven floors, accelerates and decelerates, and manipulates objects while in motion. Without tactile feedback, the hand must maintain excessive grip force to compensate for unknown disturbances. With tactile sensing, the hand dynamically modulates force based on actual contact conditions — gripping a wine glass with feather pressure and a toolbox with full strength, automatically. The Orin NX 100 TOPS runs tactile inference networks (slip detection, texture classification, force estimation) on the DLA cores while the GPU handles grasp planning and hand kinematics — all in real time, all on board.
Ultimate G processes four synchronized sensor modalities on the Orin NX 100 TOPS: scene-level depth from the head binocular camera, 360° point clouds from the MID360 LiDAR, close-up RGB from the wrist-mounted cameras, and force/tactile data from the LinkerBot O6 Tactile fingertips and palm arrays. This is the richest sensor fusion stack in the R1-A5-D lineup. The dual DLA cores run vision and tactile inference networks in parallel — one DLA for head stereo and wrist grasp analysis, one for tactile feature extraction — while the GPU handles LiDAR SLAM, path planning, and dexterous hand control. With 16 GB RAM, the system holds multiple perception and control models concurrently: a scene understanding network for navigation, an object detector for grasp targets, a wrist-based grasp quality estimator, a tactile slip detector, and a force controller — all running simultaneously. This four-modal fusion enables research in multi-modal sensorimotor learning (training policies that fuse vision, touch, and proprioception), physical human-robot interaction (safe contact with humans), and robust mobile manipulation (grasping under uncertainty with tactile verification).
The R1-A5-D chassis adds 3 degrees of freedom to the upper body: a telescopic pillar for height adjustment and a 2-DOF wheeled base for omnidirectional navigation. Combined with the MID360 LiDAR and stereo camera head, the robot builds real-time maps, plans paths, and avoids obstacles autonomously — then stops precisely to manipulate. The removable lithium-ion battery in the chassis delivers approximately 1.5 hours of untethered operation.
The built-in NVIDIA Jetson Orin NX delivers 100 TOPS of AI compute across an 8-core CPU, 16 GB LPDDR5, and dual NVDLA V2.0 accelerators. Controlling two LinkerBot O6 Tactile hands with 6 DOF each plus tactile inference, processing three visual streams (head stereo + two wrist cameras), running LiDAR SLAM, and fusing four sensor modalities simultaneously demands serious compute — and the Orin NX delivers. The dedicated DLA cores offload neural network inference from the GPU: one DLA for vision perception, one for tactile feature extraction, leaving GPU resources free for sensor fusion, grasp planning, and real-time hand kinematics. The 16 GB RAM provides space for large dexterous manipulation models, VLA policies, tactile-vision fusion networks, and multi-robot coordination algorithms that would not fit on an 8 GB module. No external GPU server, no cloud dependency — just power on and deploy.
A binocular camera head delivers a 146° × 124° field of view with a 60 mm stereo baseline for scene-level understanding. RGB streams at 1280×720@30 Hz and depth at 544×448@10 Hz. Combined with the MID360 LiDAR, wrist RGB cameras, and tactile sensors, the R1-A5-D Ultimate G offers the richest multi-modal perception stack in the lineup — with the Orin NX 100 TOPS processing all streams in real time for SLAM, object detection, grasp planning, tactile inference, and hand control.
Four-array beamforming microphones and dual 3 W speakers enable clear voice capture and synthesis in noisy labs, warehouses, or classrooms. The open audio framework supports custom wake words, multilingual TTS, and integration with LLMs for conversational command-and-control — even while the base is in motion.
At 683 × 520 × 440 mm collapsed (1323 mm elevated), the R1-A5-D Ultimate G navigates standard doorways, elevators, and lab aisles. The telescopic pillar lowers the upper body for transport and raises it for manipulation. At approximately 30 kg with battery, it is a self-contained mobile research platform — no external compute rack, no tether cables during operation.
Collapsed (683 mm) and elevated (1323 mm) configurations for navigation and manipulation
Unitree provides a mature, Linux-based robot development framework with open APIs for the underlying system, robotic arms, mobile base, audio, lighting, and visual control. ROS 2 native support, dual encoders on every arm joint, and hollow internal wiring make the R1-A5-D Ultimate G a clean slate for reinforcement learning, tactile dexterous manipulation research, embodied AI, and autonomous navigation studies. The built-in Orin NX 100 TOPS with dual DLA cores and 16 GB RAM handles perception, tactile inference, grasp planning, and hand control locally — with compute headroom to grow into large VLA models, multi-robot coordination, and on-device reinforcement learning without hardware limits.
Ultimate G is the top high-DOF tactile manipulation platform with flagship compute already installed. The Orin NX 100 TOPS, 16 GB RAM, and dual DLA cores provide headroom to grow:
| Model | Unitree R1-A5-D Ultimate G (Mobile Base) |
| Dimensions (Collapsed) | 683 × 520 × 440 mm (H × W × D) |
| Dimensions (Elevated) | 1323 × 520 × 440 mm (H × W × D) |
| Weight (with Battery) | ~30 kg |
| Total DOF | 16 (Arm 5×2, Waist 1, Head 2, Pillar 1, Base 2) |
| Arm Reach | 420 mm (forearm + upper arm) |
| Peak Shoulder Torque | 60 Nm |
| Max Arm Payload | ~2 kg (posture-dependent) |
| End-Effector Precision | ±0.1 mm |
| End Effectors | LinkerBot O6 Tactile six-DOF dexterous hands (5-finger, 6 active + 5 passive joints, worm-gear transmission, both arms, pre-installed) |
| Hand DOF | 6 active DOF per hand (11 joints total: 6 active + 5 passive) |
| Hand Grip Force | 130 N max five-finger grip; 28 N thumb tip; 33 N four-finger tip |
| Hand Weight | ~370 g per hand |
| Hand Repeat Accuracy | ±0.2 mm |
| Wrist Cameras | RGB integrated (both wrists, pre-installed) |
| Tactile Sensing | Force-sensitive fingertips and palm arrays (pre-installed on both hands) |
| Vision | Binocular camera — RGB 1280×720@30 Hz, Depth 544×448@10 Hz, FOV 146°×124° |
| LiDAR | MID360 360° LiDAR (chassis-integrated) |
| Head Compute | 8-core high-performance CPU + 10 TOPS NPU |
| Body Compute | 8-core high-performance CPU |
| Onboard AI Compute | NVIDIA Jetson Orin NX 100 TOPS, 8-core CPU, 16 GB LPDDR5, 2× NVDLA V2.0 (built-in) |
| Audio | 4-array microphone + dual 3 W speakers |
| Connectivity | Wi-Fi 6, Bluetooth 5.2, OTA updates |
| Power | Removable chassis Li-ion battery (~1.5 h) + external DC PSU. Upper body does not accept a battery. |
| SDK & Interfaces | Linux-based framework, ROS 2, open APIs for arm/base/audio/vision/tactile/lighting, CUDA & TensorRT support |
| Controllers | Standard dual-hand controllers included |
| Warranty | 12 months on the entire unit |
Every configuration shares the same R1-A5-D mobile base — the difference is the end effector and compute module. Choose the one that matches your research goals:
| Config | Hand | Compute | Features |
|---|---|---|---|
| Ultimate A | Dex1-1 V2 | Orin NX 100 TOPS, 16 GB, DLA | Entry-level parallel grippers, MID360 LiDAR, flagship compute |
| Ultimate B | Dex3-1 (RGB) | Orin NX 100 TOPS, 16 GB, DLA | 3-finger dexterous hand with wrist RGB camera |
| Ultimate C | Dex3-1 Tactile (RGB) | Orin NX 100 TOPS, 16 GB, DLA | 3-finger hand with tactile sensors + wrist RGB camera |
| Ultimate D | BrainCo Revo 2 Basic (RGB) | Orin NX 100 TOPS, 16 GB, DLA | 5-finger anthropomorphic hand with wrist RGB camera |
| Ultimate E | BrainCo Revo 2 Tactile (RGB) | Orin NX 100 TOPS, 16 GB, DLA | 5-finger hand with tactile sensors + wrist RGB camera |
| Ultimate F | LinkerBot O6 (RGB) | Orin NX 100 TOPS, 16 GB, DLA | 6-DOF dexterous hand with wrist RGB camera |
| Ultimate G | LinkerBot O6 Tactile (RGB) | Orin NX 100 TOPS, 16 GB, DLA | 6-DOF hand with tactile sensors + wrist RGB camera |
| Ultimate H | Tendon-driven dexterous hand (RGB) | Orin NX 100 TOPS, 16 GB, DLA | Advanced tendon-driven mechanism for research-grade biomimetic dexterity |
* Specifications are based on manufacturer data and may vary slightly by production batch. Optional compute modules and alternative end effectors sold separately.
Unitree® is a registered trademark of Unitree Robotics. Images are for reference; actual product appearance may differ.
Users must maintain a sufficient safety distance. This is a civilian robot — comply with local laws and regulations.
Mobile-Base Dual-Arm Humanoid Robot with LinkerBot O6 Tactile Six-DOF Dexterous Hands & Wrist RGB Cameras. 16 DOF, Orin NX 100 TOPS, 16 GB RAM, dual DLA cores, MID360 LiDAR, stereo vision & full-stack open SDK. The ultimate high-DOF tactile mobile manipulation platform.
R1-A5-D Ultimate G — mobile-base humanoid with LinkerBot O6 Tactile dexterous hands, wrist RGB cameras, MID360 LiDAR & stereo vision
The R1-A5-D Ultimate G is the flagship high-DOF tactile manipulation platform in the Ultimate series. It pairs the same R1-A5-D mobile base with LinkerBot O6 Tactile six-DOF dexterous hands — adding force-sensitive tactile sensors to the already capable O6 architecture — plus wrist-mounted RGB cameras, all driven by the NVIDIA Jetson Orin NX 100 TOPS compute module. Unlike the Smart series, Ultimate G runs on an 8-core CPU with 16 GB LPDDR5 and dual DLA cores — delivering 2.5× the AI performance and enough memory headroom for large-model inference, multi-modal sensor fusion, and real-time control of complex hand kinematics with tactile feedback. The LinkerBot O6 Tactile hands provide five-finger dexterous grasping with 6 active degrees of freedom, 130 N grip force, and force-sensitive fingertips and palm arrays — enabling contact-aware grasping, slip detection, and force-controlled manipulation on the move.
The LinkerBot O6 Tactile takes the proven O6 six-DOF dexterous hand architecture and adds force-sensitive tactile sensing to fingertips and palm arrays. The underlying mechanics remain identical: 6 active degrees of freedom across 11 joints (6 active + 5 passive), worm-gear transmission for high torque density, 370 g per hand, and 130 N maximum five-finger grip force. What changes is the addition of tactile feedback — turning the hand from a position-controlled gripper into a contact-aware manipulation system. The tactile sensors detect normal and shear forces at the fingertips, enabling the robot to sense slip, adjust grip force in real time, and distinguish between object textures and compliance. Combined with the wrist RGB cameras, the O6 Tactile creates a closed loop: the wrist camera identifies the grasp target, the hand approaches and makes contact, the tactile sensors verify successful engagement, and the grip force modulates to prevent crushing fragile items or dropping heavy ones. This is the difference between grasping and feeling what you grasp — critical for physical human-robot interaction, delicate assembly, and robust mobile manipulation in unstructured environments.
LinkerBot O6 Tactile six-DOF dexterous hands on the R1-A5-D mobile base for contact-aware mobile manipulation
Ultimate G combines six-DOF dexterous hands with tactile sensing to create a platform optimized for force-aware mobile manipulation. The LinkerBot O6's 6 active DOF enable complex grasp formations — precision grips, power grasps, tripod pinches, and lateral holds — while the tactile sensors provide real-time feedback on contact quality. On a mobile base, this matters: the robot drives over uneven floors, accelerates and decelerates, and manipulates objects while in motion. Without tactile feedback, the hand must maintain excessive grip force to compensate for unknown disturbances. With tactile sensing, the hand dynamically modulates force based on actual contact conditions — gripping a wine glass with feather pressure and a toolbox with full strength, automatically. The Orin NX 100 TOPS runs tactile inference networks (slip detection, texture classification, force estimation) on the DLA cores while the GPU handles grasp planning and hand kinematics — all in real time, all on board.
Ultimate G processes four synchronized sensor modalities on the Orin NX 100 TOPS: scene-level depth from the head binocular camera, 360° point clouds from the MID360 LiDAR, close-up RGB from the wrist-mounted cameras, and force/tactile data from the LinkerBot O6 Tactile fingertips and palm arrays. This is the richest sensor fusion stack in the R1-A5-D lineup. The dual DLA cores run vision and tactile inference networks in parallel — one DLA for head stereo and wrist grasp analysis, one for tactile feature extraction — while the GPU handles LiDAR SLAM, path planning, and dexterous hand control. With 16 GB RAM, the system holds multiple perception and control models concurrently: a scene understanding network for navigation, an object detector for grasp targets, a wrist-based grasp quality estimator, a tactile slip detector, and a force controller — all running simultaneously. This four-modal fusion enables research in multi-modal sensorimotor learning (training policies that fuse vision, touch, and proprioception), physical human-robot interaction (safe contact with humans), and robust mobile manipulation (grasping under uncertainty with tactile verification).
The R1-A5-D chassis adds 3 degrees of freedom to the upper body: a telescopic pillar for height adjustment and a 2-DOF wheeled base for omnidirectional navigation. Combined with the MID360 LiDAR and stereo camera head, the robot builds real-time maps, plans paths, and avoids obstacles autonomously — then stops precisely to manipulate. The removable lithium-ion battery in the chassis delivers approximately 1.5 hours of untethered operation.
The built-in NVIDIA Jetson Orin NX delivers 100 TOPS of AI compute across an 8-core CPU, 16 GB LPDDR5, and dual NVDLA V2.0 accelerators. Controlling two LinkerBot O6 Tactile hands with 6 DOF each plus tactile inference, processing three visual streams (head stereo + two wrist cameras), running LiDAR SLAM, and fusing four sensor modalities simultaneously demands serious compute — and the Orin NX delivers. The dedicated DLA cores offload neural network inference from the GPU: one DLA for vision perception, one for tactile feature extraction, leaving GPU resources free for sensor fusion, grasp planning, and real-time hand kinematics. The 16 GB RAM provides space for large dexterous manipulation models, VLA policies, tactile-vision fusion networks, and multi-robot coordination algorithms that would not fit on an 8 GB module. No external GPU server, no cloud dependency — just power on and deploy.
A binocular camera head delivers a 146° × 124° field of view with a 60 mm stereo baseline for scene-level understanding. RGB streams at 1280×720@30 Hz and depth at 544×448@10 Hz. Combined with the MID360 LiDAR, wrist RGB cameras, and tactile sensors, the R1-A5-D Ultimate G offers the richest multi-modal perception stack in the lineup — with the Orin NX 100 TOPS processing all streams in real time for SLAM, object detection, grasp planning, tactile inference, and hand control.
Four-array beamforming microphones and dual 3 W speakers enable clear voice capture and synthesis in noisy labs, warehouses, or classrooms. The open audio framework supports custom wake words, multilingual TTS, and integration with LLMs for conversational command-and-control — even while the base is in motion.
At 683 × 520 × 440 mm collapsed (1323 mm elevated), the R1-A5-D Ultimate G navigates standard doorways, elevators, and lab aisles. The telescopic pillar lowers the upper body for transport and raises it for manipulation. At approximately 30 kg with battery, it is a self-contained mobile research platform — no external compute rack, no tether cables during operation.
Collapsed (683 mm) and elevated (1323 mm) configurations for navigation and manipulation
Unitree provides a mature, Linux-based robot development framework with open APIs for the underlying system, robotic arms, mobile base, audio, lighting, and visual control. ROS 2 native support, dual encoders on every arm joint, and hollow internal wiring make the R1-A5-D Ultimate G a clean slate for reinforcement learning, tactile dexterous manipulation research, embodied AI, and autonomous navigation studies. The built-in Orin NX 100 TOPS with dual DLA cores and 16 GB RAM handles perception, tactile inference, grasp planning, and hand control locally — with compute headroom to grow into large VLA models, multi-robot coordination, and on-device reinforcement learning without hardware limits.
Ultimate G is the top high-DOF tactile manipulation platform with flagship compute already installed. The Orin NX 100 TOPS, 16 GB RAM, and dual DLA cores provide headroom to grow:
| Model | Unitree R1-A5-D Ultimate G (Mobile Base) |
| Dimensions (Collapsed) | 683 × 520 × 440 mm (H × W × D) |
| Dimensions (Elevated) | 1323 × 520 × 440 mm (H × W × D) |
| Weight (with Battery) | ~30 kg |
| Total DOF | 16 (Arm 5×2, Waist 1, Head 2, Pillar 1, Base 2) |
| Arm Reach | 420 mm (forearm + upper arm) |
| Peak Shoulder Torque | 60 Nm |
| Max Arm Payload | ~2 kg (posture-dependent) |
| End-Effector Precision | ±0.1 mm |
| End Effectors | LinkerBot O6 Tactile six-DOF dexterous hands (5-finger, 6 active + 5 passive joints, worm-gear transmission, both arms, pre-installed) |
| Hand DOF | 6 active DOF per hand (11 joints total: 6 active + 5 passive) |
| Hand Grip Force | 130 N max five-finger grip; 28 N thumb tip; 33 N four-finger tip |
| Hand Weight | ~370 g per hand |
| Hand Repeat Accuracy | ±0.2 mm |
| Wrist Cameras | RGB integrated (both wrists, pre-installed) |
| Tactile Sensing | Force-sensitive fingertips and palm arrays (pre-installed on both hands) |
| Vision | Binocular camera — RGB 1280×720@30 Hz, Depth 544×448@10 Hz, FOV 146°×124° |
| LiDAR | MID360 360° LiDAR (chassis-integrated) |
| Head Compute | 8-core high-performance CPU + 10 TOPS NPU |
| Body Compute | 8-core high-performance CPU |
| Onboard AI Compute | NVIDIA Jetson Orin NX 100 TOPS, 8-core CPU, 16 GB LPDDR5, 2× NVDLA V2.0 (built-in) |
| Audio | 4-array microphone + dual 3 W speakers |
| Connectivity | Wi-Fi 6, Bluetooth 5.2, OTA updates |
| Power | Removable chassis Li-ion battery (~1.5 h) + external DC PSU. Upper body does not accept a battery. |
| SDK & Interfaces | Linux-based framework, ROS 2, open APIs for arm/base/audio/vision/tactile/lighting, CUDA & TensorRT support |
| Controllers | Standard dual-hand controllers included |
| Warranty | 12 months on the entire unit |
Every configuration shares the same R1-A5-D mobile base — the difference is the end effector and compute module. Choose the one that matches your research goals:
| Config | Hand | Compute | Features |
|---|---|---|---|
| Ultimate A | Dex1-1 V2 | Orin NX 100 TOPS, 16 GB, DLA | Entry-level parallel grippers, MID360 LiDAR, flagship compute |
| Ultimate B | Dex3-1 (RGB) | Orin NX 100 TOPS, 16 GB, DLA | 3-finger dexterous hand with wrist RGB camera |
| Ultimate C | Dex3-1 Tactile (RGB) | Orin NX 100 TOPS, 16 GB, DLA | 3-finger hand with tactile sensors + wrist RGB camera |
| Ultimate D | BrainCo Revo 2 Basic (RGB) | Orin NX 100 TOPS, 16 GB, DLA | 5-finger anthropomorphic hand with wrist RGB camera |
| Ultimate E | BrainCo Revo 2 Tactile (RGB) | Orin NX 100 TOPS, 16 GB, DLA | 5-finger hand with tactile sensors + wrist RGB camera |
| Ultimate F | LinkerBot O6 (RGB) | Orin NX 100 TOPS, 16 GB, DLA | 6-DOF dexterous hand with wrist RGB camera |
| Ultimate G | LinkerBot O6 Tactile (RGB) | Orin NX 100 TOPS, 16 GB, DLA | 6-DOF hand with tactile sensors + wrist RGB camera |
| Ultimate H | Tendon-driven dexterous hand (RGB) | Orin NX 100 TOPS, 16 GB, DLA | Advanced tendon-driven mechanism for research-grade biomimetic dexterity |
* Specifications are based on manufacturer data and may vary slightly by production batch. Optional compute modules and alternative end effectors sold separately.
Unitree® is a registered trademark of Unitree Robotics. Images are for reference; actual product appearance may differ.
Users must maintain a sufficient safety distance. This is a civilian robot — comply with local laws and regulations.
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