Who the AGIBOT A2 Ultra Suits
The AGIBOT A2 is an enterprise service humanoid built for guided exhibition, reception tasks, and multimodal interaction rather than industrial heavy lifting. It operates as a full-size bipedal platform with dexterous hands, onboard speech arrays, and navigational vision. Facilities deploying the robot use it to greet visitors, provide spoken directions, and conduct choreographed public presentations.
The machine does not serve heavy logistics environments. Its arm payload is about 2 kg. That rules out cargo crates and warehouse totes. Nor will it do domestic chores or stand in as an unassisted night patrol guard, so buyers moving heavy material should read our guide to humanoid robots in warehouses.
A release of factory automated charging stations and higher actuator lifting capacity would alter this operational assessment. For current commercial deployments, the robot requires direct staff supervision for battery exchanges and workspace monitoring. Organizations needing an interactive service ambassador will find it mechanically capable within its payload envelope.
| Factor | Assessment |
|---|---|
| Commercial price | Quote provided via sales inquiry (no listed checkout price) |
| Primary use case | Exhibition guidance, front-desk reception, multimodal interaction |
| Unsupported tasks | Heavy industrial freight, domestic cleaning, unassisted perimeter patrol |
| Arm payload capacity | Approximately 2 kg per arm |
| Procurement path | Direct enterprise inquiry through AGIBOT commercial sales |
The AGIBOT A2 Specs AGIBOT Publishes
AGIBOT publishes verified physical dimensions of 169 cm in height, 75 cm in width, 30 cm in depth, and an operational weight of approximately 69 kg for the A2 Ultra. The bipedal chassis incorporates 40 degrees of freedom across its articulated structure. The distribution includes 2 DOF in the neck, 7 DOF in each arm, 6 DOF in each leg, and 6 DOF in each dexterous hand. Buyers examining end-effector mechanics can review our technical breakdown of robotic hands.
Locomotion engineering centers on high-torque electric joints. Maximum walking speed reaches 1.2 m/s, supported by knee actuators that generate a peak torque of 270 newton-metres (N·m). It climbs ramps of up to 10 degrees. AGIBOT validated the A2 Ultra over a 5,100-hour walking test.
Specifications require careful verification because AGIBOT omits hardware metrics from its primary consumer landing page. Third-party reseller portals circulate speculative metrics regarding walking speeds and joint counts. Verified documentation confirms the 1.2 m/s maximum velocity, the 270 N·m knee rating, and the 40-DOF kinematic layout.
| Specification | Verified AGIBOT A2 Ultra Metric |
|---|---|
| Total height | 169 cm |
| Chassis width and depth | 75 cm width, 30 cm depth |
| Operating weight | Approximately 69 kg (including battery pack) |
| Degrees of freedom (DOF) | 40 total (neck 2, arms 7 each, legs 6 each, hands 6 each) |
| Maximum travel speed | 1.2 m/s |
| Peak knee joint torque | 270 N·m |
| Surface incline threshold | Up to 10-degree ramps |
| Arm payload rating | Approximately 2 kg |
What the 106-Kilometre Walk Proves
AGIBOT achieved an official Guinness World Record for the longest journey walked by a humanoid robot by completing a 106.286 km trek between 10 November and 13 November 2025. AGIBOT Innovation (Shanghai) Technology Co., Ltd. organized the trial across public routes running from Jinji Lake in Suzhou to the Bund waterfront in Shanghai. The bipedal robot maintained continuous locomotion over three days and three nights.
The transit tested outdoor environmental navigation across diverse urban infrastructure. The A2 traversed municipal asphalt, highway bridges, pedestrian slopes, and tactile paving bricks designed for blind pedestrians. Operating through overnight periods, the robot maintained path tracking using dual global positioning system (GPS) receivers, an onboard light detection and ranging (LiDAR) sensor, and an infrared depth camera.
The record validates mechanical thermal stability and joint endurance over variable surfaces, but it does not represent single-charge battery autonomy. Field engineers conducted scheduled battery swaps throughout the 106 km transit while keeping internal systems live. The accomplishment confirms mechanical durability rather than unassisted range.
Read the record next to the spec sheet and the machine comes into focus. The legs are rated for 270 N·m of peak knee torque and three days of walking. Each arm is rated for about 2 kg. The published envelope fits a reception host, a guided-tour machine, or a mobile demonstration platform. Case handling and palletising sit outside it, and no amount of walking endurance changes that.
How Long the AGIBOT A2 Battery Lasts
The AGIBOT A2 houses a 14.4 ampere-hour (Ah) battery pack that provides approximately 1.5 hours of continuous walking or 3 hours of stationary posture. The apparent conflict between a 1.5-hour operational limit and a three-day outdoor trek stems directly from hot-swappable battery engineering. Support crews swap depleted packs without powering down onboard compute or interrupting system state.
Electrical replenishment requires an alternating current input voltage between 110 volts (V) and 220 V, with full charging requiring 2 hours. AGIBOT publishes no official watt-hour rating for the pack, making third-party energy calculations unverified. The hot-swap interface allows commercial teams to maintain active service by rotating secondary packs through external charging bays.
Facility managers must plan staffing requirements around these power limits. In a commercial exhibition hall or corporate reception lobby, an eight-hour shift requires at least three to four battery rotations. Facilities without dedicated personnel to conduct physical pack swaps cannot run continuous daily service.
Where the A2 Sits in AGIBOT's Lineup
AGIBOT structures its hardware catalog across distinct robotic tiers to address research, light commercial service, and wheeled transport. The bipedal A2 Ultra serves as the shipping full-size humanoid for multimodal interaction. Alongside it sits the A2 Lite, marketed through the global store as a performance variant, and the A2-W, which pairs the humanoid upper torso with a wheeled mobile base.
The catalog expanded in 2026 with the introduction of the larger A3 Ultra full-size humanoid. For laboratory and educational buyers, AGIBOT produces the X1 open-source research platform, followed by the compact X2 series comprising the X2, X2 Ultra, X2 Edu, and X2 Neo. Readers comparing bipedal form factors can cross-reference our humanoid robot comparison.
AGIBOT also produces the G1, G2, and G2 Max industrial mobile manipulators alongside D1-series quadruped robots for specialized industrial automation. The A2 Ultra occupies a specific commercial role within this family: front-facing customer reception, tour navigation, and interactive communication.
What the A2 Ultra Senses and Runs On
Perception on the AGIBOT A2 relies on a multi-sensor array designed for real-time spatial navigation and user tracking. The sensor suite includes a 3D LiDAR unit, a red-green-blue plus depth (RGB-D) sensor, standard red-green-blue (RGB) cameras, a wide-angle fisheye camera, and an array microphone. This sensory setup enables spatial room mapping, obstacle avoidance, human face identification, and directional audio capture.
Processing options split between two computational configurations. The standard processing board uses a 16-core central processing unit (CPU). For complex computer vision workloads, AGIBOT offers an optional NVIDIA Jetson Orin 64G module. AGIBOT publishes no official tera-operations per second (TOPS) metric for the A2 Ultra, which leaves reseller computational claims unconfirmed.
Enterprise developers access the robot through dedicated software development kit (SDK) interfaces to script motion trajectories and conversational workflows. Engineers can bind reception scripts to visual detection triggers or connect external large language models to the microphone array. For the regional picture, see our guide to Chinese humanoid robots.
Buying an A2 Ultra Means Contacting Sales
AGIBOT does not publish fixed retail prices for the A2 Ultra and conducts all customer procurement through commercial sales quotations. Mail sales@agibot.com and the quote comes back priced on compute configuration, spare battery count, and technical maintenance packages. For broader market context on acquisition budgets, read our analysis on how much does a humanoid robot cost.
The A2 Ultra is certified for commercial use in several markets. Documentation confirms compliance with China Robot (CR) certification, Conformité Européenne Machinery Directive (CE-MD) standards, Conformité Européenne Radio Equipment Directive (CE-RED) rules, and Federal Communications Commission (FCC) requirements.
Reseller portals post conflicting pricing figures that do not reflect official terms from AGIBOT. Buyers must request binding price quotes directly from AGIBOT commercial representatives. Those evaluating total deployment expenses should review our dedicated AGIBOT A2 price breakdown.
Bottom Line
The AGIBOT A2 Ultra is a functional bipedal humanoid engineered for corporate reception, guided exhibition, and multimodal research tasks. It is not suitable for warehouse pallet logistics or domestic caregiving due to its 2 kg arm payload threshold and 1.5-hour continuous walking endurance. The implementation of automated self-charging docks and increased motor lifting capacity would expand its utility beyond supervised corporate lobbies. Organizations seeking a customer-facing interactive robot should contact AGIBOT enterprise sales to initiate formal hardware procurement.
Review our comprehensive AGIBOT A2 price breakdown for commercial procurement details, or consult our Chinese humanoid robots buying guide to assess competing bipedal platforms.
FAQs
What is the AGIBOT A2?
The AGIBOT A2 is a full-size bipedal humanoid robot developed by AGIBOT for reception, guided services, and multimodal human interaction. It features 40 degrees of freedom, an articulated bipedal chassis, dexterous hands, and an integrated perception suite containing 3D LiDAR and vision cameras.
How tall is the AGIBOT A2 and how much does it weigh?
The AGIBOT A2 stands 169 cm tall, measures 75 cm in width, and has a depth of 30 cm. Total operating weight is about 69 kg, battery included.
How long does the AGIBOT A2 battery last?
The standard 14.4 Ah battery pack provides approximately 1.5 hours of continuous walking or 3 hours of stationary standing posture. The pack hot-swaps. Crews change a depleted battery without shutting the onboard computing down.
Did the AGIBOT A2 really walk 106 km?
Yes, the AGIBOT A2 completed a verified 106.286 km outdoor journey from Suzhou to Shanghai between 10 November and 13 November 2025, earning an official Guinness World Record. The robot walked continuously across three days and three nights while field crews conducted periodic hot-swappable battery exchanges.
How much does the AGIBOT A2 cost?
There is no checkout price. AGIBOT publishes none for the A2 Ultra. Commercial buyers must contact AGIBOT enterprise sales directly at sales@agibot.com to receive a customized quotation based on selected compute and accessory packages.
Can you buy an AGIBOT A2?
Commercial organizations and research institutions can purchase the AGIBOT A2 through direct enterprise agreements. The machine carries CR, CE-MD, CE-RED, and FCC certifications, confirming compliance with commercial import and operational safety standards across global markets.
How much can the AGIBOT A2 lift?
The AGIBOT A2 has an arm payload capacity of approximately 2 kg per arm. This lifting threshold supports carrying light presentation items, brochures, or small consumer products, but it prevents the robot from performing heavy industrial handling.