Working height
The manufacturer lists a working height above two metres; the measurement method is not published.
AGIBOT
Universal embodied intelligence on a mobile manipulation platform
Adjustable-height dual-arm operation, native data collection, multidimensional perception and a wheeled chassis for embodied-AI research, model inference and project integration.
General-purpose robot platform
AGIBOT describes G1 as a general-purpose robot for data collection and model inference. Its architecture combines an elevating body, dual-arm manipulation, force sensing and a wheeled chassis in a 150 kg platform.
The manufacturer positions G1 for industrial, commercial and domestic scenarios. Those are project directions rather than promises of ready-made tasks: each deployment still depends on end-effectors, software, training data, integration and site safety validation.
Working envelope and manipulation
The elevating body extends the operating envelope while force sensing and configurable end-effectors support manipulation and embodied-data projects.
The manufacturer lists a working height above two metres; the measurement method is not published.
The English page says “Span”; the official Japanese page identifies this as one-arm reach.
An official single-arm operating example, not a whole-robot or two-arm maximum payload rating.
AGIBOT describes six-axis force sensors on both arms for fine force-control development.
The manufacturer specification separates body degrees of freedom from the end-effector configuration.
The official feature copy describes 26 total robot degrees of freedom.
AGIBOT says the end effector can be replaced with a two-finger gripper; inclusion is not specified.
Head movement expands perception positioning across the working envelope.
The body can bend, extend, rise and lower as described by the manufacturer.
End-effector hardware, control software and task capability must be confirmed in the project quotation.
Multi-scenario operation
G1 supports in-place chassis turning and manufacturer-listed obstacle crossing up to 20 mm. AGIBOT also states that it can navigate 95% of factory pathways, without publishing the test method.
Define aisle clearance, thresholds, floor loading, task tools, traffic separation and production-system interfaces.
Review public interaction risk, route control, privacy, scheduling and operator responsibilities.
Manufacturer positioning does not make G1 a consumer appliance; a controlled project environment is still required.
The 95% factory-pathway statement is a manufacturer claim without a published test environment. Doorways, aisles, floor loading, slopes, thresholds and route safety must be measured at the Canadian site.
Native data collection
AGIBOT describes precise VR or motion-capture teleoperation with millisecond-level latency and full-body joint-data recording. No exact latency figure or network test condition is published for G1.
The data pipeline combines edge-cloud collection, automated validation, manual review and asynchronous cloud transfer, with local data backlog described as limited to under two hours.
G1 may be configured within AGIBOT's AIDEA data-collection ecosystem. Motion-capture or teleoperation hardware, software, licensing, cloud services, data rights and integration are separate project-scope items unless the written quotation explicitly includes them.
Multidimensional perception
G1 combines environmental perception with arm-level force feedback. Sensor count is presented exactly by source layer because the official descriptions should not be added together.
Feature copy describes eight high-resolution upper-body cameras plus six-axis force sensing on both arms.
The official feature copy describes front and rear chassis RGB-D coverage plus LiDAR for obstacle avoidance.
Three RGB-D cameras are listed in the manufacturer specification.
Five fisheye cameras are listed alongside the RGB-D camera count.
AGIBOT separately describes chassis sensing for obstacle avoidance.
Do not infer a total camera count from the two sections. Final sensor placement and the supplied G1 hardware revision should be confirmed in the written configuration.
Comprehensive safety functions
AGIBOT lists fault-triggered operation stop and alarm, collision protection, an emergency-stop button and chassis obstacle avoidance. These functions do not promise collision-free or risk-free operation.
A deployment still requires a task risk assessment, approved operating zone, operator training, emergency procedures, people separation and validation of the end effector and software behaviour.
Operation and maintenance
Manufacturer-listed features include industrial-grade components, wired data transmission, real-time status monitoring, alarms, maintenance controls, fault recovery and OTA updates.
AGIBOT describes industrial-grade components, extreme-environment testing, wired data connection and scalable production.
Monitor robot and remote status, receive alarms, access maintenance controls, initiate supported recovery and apply OTA updates.
“One-click fault recovery” does not mean every hardware or software fault can be fixed automatically. Canadian availability and delivery timing must also be confirmed; manufacturer production language is not a local-stock promise.
Verified specification summary
This table keeps manufacturer terminology and separates published facts from project interpretation. No other robot model or third-party parameter has been added.
Swipe horizontally to view the full table.
| Parameter | Published value | Interpretation boundary |
|---|---|---|
| Physical platform | ||
| Adjustable height | 130–180 cm | Robot's elevating body range |
| Robot weight | 150 kg | Floor loading, access and transport planning required |
| Single-arm reach | 70 cm | English page says “Span”; official Japanese page identifies one-arm reach |
| Working height | Over 2 m | Manufacturer-listed value; measurement method is not published |
| Runtime | 4 h+ | Manufacturer-listed; load, task and test conditions are not published |
| Degrees of freedom and manipulation | ||
| Total robot DoF | 26 | Official feature-copy total |
| DoF excluding end effector | 20 | Official specification-row value |
| End-effector configuration | 6 DoF | Can be replaced with a two-finger gripper; inclusion is not published |
| Arm force sensing | Six-axis force sensors on both arms | Manufacturer-described fine force-control support |
| Continuous one-arm hold | 3 kg object | Operating example, not a maximum whole-robot payload |
| Head movement | Horizontal and vertical rotation | Manufacturer feature description |
| Waist movement | Pitch, extension, rise and lower | Manufacturer feature description |
| Perception and compute | ||
| Specification-row sensors | RGB-D camera ×3; fisheye camera ×5 | Do not add this count to the separate feature-copy descriptions |
| Upper-body camera description | Eight high-resolution cameras | Feature-copy wording; resolution is not published |
| Chassis sensing | Front/rear RGB-D coverage and LiDAR | Described for obstacle avoidance; models and ranges are not published |
| Computing platform | NVIDIA Jetson AGX Orin 64GB | TOPS, OS, storage, SDK and ROS support are not published for G1 |
| Chassis, data and operations | ||
| Chassis turning | In-place turning | No turning-radius value is published |
| Obstacle crossing | Up to 20 mm | Does not establish stair or arbitrary-slope capability |
| Factory-pathway statement | 95% | Manufacturer claim; test environment and method are not published |
| Teleoperation | VR or motion capture; millisecond-level latency | No exact latency or network condition is published |
| Data recording | Full-body joint data | Final data fields and formats require project confirmation |
| Data pipeline | Edge-cloud collection, automated validation, manual review, asynchronous transfer | Hardware, cloud and data-service scope requires confirmation |
| Local data backlog | Under 2 h | Manufacturer-described pipeline limit, not a universal storage specification |
| Safety functions | Fault stop/alarm, collision protection, emergency stop, chassis avoidance | Site risk controls remain required |
| O&M functions | Real-time monitoring, alerts, maintenance controls, recovery, OTA | Final software and service scope requires confirmation |
| Data connection | Wired | Manufacturer describes stable wired data transmission |
Not published for G1 on the cited pages: body length or width, base footprint, battery capacity, charging method or time, speed, slope rating, stair capability, joint ranges, repeatability, gripper force, LiDAR model or range, camera resolution, wireless specifications, external ports, IP rating, temperature range, noise, ROS, SDK, API, certifications, warranty or Canadian price.
Canadian project planning
G1 is a 150 kg professional robot with a manufacturer-listed working height above two metres. Configuration should follow a task definition, site survey, privacy review and safety assessment.
Measure doorways, aisles, elevator capacity, floor limits, thresholds, turning areas and transport access.
Define reach zones, people separation, end-effector clearance, emergency access and approved robot routes.
Specify objects, forces, tools, fixtures, workflow states, success criteria and failure-handling rules.
Review recording of people, facilities and proprietary processes, plus storage, transfer, access and ownership.
Confirm wired connectivity, compute environment, teleoperation equipment, cloud region, licensing and integration.
Define commissioning, operator training, risk procedures, maintenance, warranty, updates and technical support.
The G1 page does not publish charger, charging-station, battery-pack or included-hardware/package-content information. Charging location and included hardware must therefore be confirmed before finalizing the site plan.
AGIBOT G1 Canada · Toronto
SpeedyDrone Canada is a Toronto-based technology retailer serving Canadian organizations. A G1 quotation can be scoped around the robot revision, end effector, teleoperation or motion-capture equipment, data services, software, integration, freight, training, warranty and support.
Toronto showroom: 991B Bay Street, Toronto, ON M5S 3C4. G1 display, demonstration, teleoperation experience, meeting and pickup availability must be confirmed in advance.
Canadian pricing and commercial scope require a written CAD quotation. AGIBOT's production language does not establish Canadian inventory or a fixed delivery date, and the cited official G1 product pages do not publish a price.
FAQ · Canada project planning
Answers based on current manufacturer-published G1 information and Canadian project-scope boundaries.
G1 is AGIBOT's mobile general-purpose embodied-intelligence robot for data collection, model inference and project integration. It combines an adjustable-height body, dual-arm manipulation, force sensing and a wheeled chassis.
AGIBOT publishes an adjustable height of 130–180 cm, robot weight of 150 kg and 70 cm single-arm reach. The English page labels 70 cm as “Span”; the official Japanese page clarifies one-arm reach.
The manufacturer lists a working height above two metres but does not publish the measurement method or test posture. The configured robot should be validated against ceilings, fixtures and people-separation requirements.
AGIBOT's feature description lists 26 total robot degrees of freedom. The specification table separately lists 20 degrees of freedom excluding the end effector.
They use different counting scopes: 20 DoF excludes the end effector, while the feature copy describes 26 total DoF. They should not be presented as alternative versions without written confirmation.
The manufacturer lists a 6-DoF end-effector configuration. The current page does not publish the hand model, finger forces, interface or standard package contents.
Yes. AGIBOT states that the end effector can be replaced with a two-finger gripper. That does not confirm the gripper is included; hardware and control integration must be specified in the quote.
AGIBOT describes continuous one-arm operation while holding a 3 kg object. This is not published as a maximum arm payload, two-arm payload, human-lifting rating or collaborative safety limit.
The official specification lists more than four hours. Load, motion, compute power, teleoperation activity and test conditions are not published, so actual runtime must be confirmed for the configured workload.
AGIBOT lists NVIDIA Jetson AGX Orin 64GB. The current G1 page does not publish TOPS, storage, operating system, power consumption, ROS, SDK or API support.
The specification lists three RGB-D and five fisheye cameras. Feature copy also describes eight high-resolution upper-body cameras, front and rear chassis RGB-D coverage, LiDAR and six-axis force sensing on both arms.
They are separate source descriptions and should not be added into a new total. Final sensor placement and the supplied hardware revision should be confirmed with AGIBOT in writing.
AGIBOT lists in-place turning, obstacle crossing up to 20 mm and a claim of navigating 95% of factory pathways. The 95% test method is not published, and G1 is not described as stair-capable.
Published functions include VR or motion-capture teleoperation, full-body joint-data recording, edge-cloud collaboration, automated validation, manual review and asynchronous cloud transfer. Equipment, licensing and data services require project confirmation.
AGIBOT describes asynchronous cloud transfer with local data backlog limited to under two hours. It is a data-pipeline statement, not a published local-storage capacity or guaranteed upload time for every network.
The official page lists fault-triggered stop and alarm, collision protection, an emergency-stop button and chassis obstacle avoidance. These features do not replace site risk assessment, training, guarding or emergency procedures.
AGIBOT lists real-time monitoring and alarms for the robot and remote, maintenance controls, one-click fault recovery and OTA updates. Recovery does not mean every hardware or software fault can be repaired automatically.
The cited official G1 product pages do not publish a price. Canadian pricing is project-based and requires a written CAD quotation after the robot, end effector, data system, software, integration, freight, taxes, training and support scope are defined.
Contact SpeedyDrone Canada with the proposed task, site, object and force requirements, data workflow, teleoperation equipment, integration, privacy and support needs.
The SpeedyDrone Canada showroom is at 991B Bay Street, Toronto, ON M5S 3C4. G1 display, demonstration, teleoperation experience and appointment availability must be confirmed before visiting.
Sources: AGIBOT G1 official product page, AGIBOT G1 official Japanese page, AGIBOT AIDEA official page, SpeedyDrone Canada contact page and SpeedyDrone Canada company page. Accessed August 1, 2026. Manufacturer specifications and examples may change. Final hardware, software, data services, compatibility, safety, privacy, integration, warranty, delivery, training, support and commercial terms are governed by the written quotation.
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