Quadruped Robots
Wheels need a floor. Legs need a route. That difference is the whole reason a four-legged robot exists, and it is the first thing worth being precise about, because legged does not mean it goes anywhere.
A quadruped is a carrying platform. It moves a camera, a sensor, or a lesson through space, and what it is carrying is what makes it useful. We are a nationwide distributor for Faraday Future quadruped systems, and we do the secondary development, on-site integration, and operator training that turns a platform into a deployment.
What we do with these systems
01
Distribute Faraday Future humanoid robots nationwide
02
Build the secondary development a specific site needs
03
Install on site and connect to how your team already works
04
Train the operators who will run it, before we leave
The work
Two families, four systems
Our quadruped lineup splits cleanly. The FX Navi is a compact 8 kg platform built to be carried into a classroom and programmed. The FX Aegis series is a heavier 15 to 16 kg chassis that comes in three configurations, from a display unit through a development platform to an industrial one.
Every model in the lineup is operated. Autonomous navigation is listed by the manufacturer as a future capability on the models that will have it, so today a person runs the route. That is worth knowing before anything else, because it is the assumption buyers make most often and it is not yet true.
Teaching legged robotics
Balance, gait, and perception stop being diagrams when something has to stay upright while it walks. Open SDKs and expansion ports make the robot the coursework rather than the demonstration.
Carrying sensors on a route
An operator walks a fixed route and the robot carries what needs to see it. Cameras, radar, depth, and positioning modules mount to the payload and expansion ports.
Ground a cart cannot cross
Grades to 40 degrees, thresholds, and obstacle clearance to 35 cm on the industrial model. Legs earn their cost on grade and uneven ground, not on flat floor.
Display and activation
Preloaded dynamic motions that run in front of a crowd on day one, for open houses, recruiting events, and brand activations where the robot is why people stopped.
A quadruped is not a replacement for supervision. It runs a defined route under the oversight of your staff. Anything that requires judgment, escalation, or a decision about a person still belongs to a person.
Systems
Quadruped systems we distribute
We distribute the Faraday Future Aegis and Navi series.
Faraday Future
Aegis Pro
The development and deployment system. Master Ultra adds five degrees of freedom, an NVIDIA Orin NX compute module, 3D LiDAR, a four-camera suite with depth, 4G and 5G connectivity, and VR teleoperation. It runs Ubuntu 22.04 with a full SDK, standardized APIs, and Python support.
Built for research groups, enterprise deployments, and any team that intends to write its own applications on the platform rather than use it as delivered.
Faraday Future
Aegis Ultra
The teaching and program system. Master Edu pairs the Master hardware with the Intellectual & Interactive and Locomotion & Manipulation platforms, plus a visual programming environment and the Openclaw no-code tool. Students and staff can change what the robot does without writing code first.
Built for classrooms, labs, robotics programs, and public-facing demonstration work where the robot itself is the subject.
Faraday Future
Aegis Edu
The teaching and program system. Master Edu pairs the Master hardware with the Intellectual & Interactive and Locomotion & Manipulation platforms, plus a visual programming environment and the Openclaw no-code tool. Students and staff can change what the robot does without writing code first.
Built for classrooms, labs, robotics programs, and public-facing demonstration work where the robot itself is the subject.
Faraday Future
Navi
The teaching and program system. Master Edu pairs the Master hardware with the Intellectual & Interactive and Locomotion & Manipulation platforms, plus a visual programming environment and the Openclaw no-code tool. Students and staff can change what the robot does without writing code first.
Built for classrooms, labs, robotics programs, and public-facing demonstration work where the robot itself is the subject.
Get the specification sheet
Send us the task and the site and we will send you the specification sheet for the system that fits it, along with the manufacturer’s certification documentation.
Sales InquiryEvaluation
What to compare before you buy a quadruped robot
Most specification sheets list the same figures. These are the ones that decide whether a system works on your route, and the question each one is really answering.
| Specification | What it tells you | Ask this |
|---|---|---|
| Stair climb height | The riser height the system can take continuously, flight after flight. Different from obstacle clearance. | Measure your risers. If they are above the published figure, stairs are out. |
| Obstacle clearance | The height of a single object the system can step over. | Does this describe one threshold, or are you assuming it means stairs? |
| IP rating | Protection against dust and water. IP32 is indoors. IP54 covers limited dust and splashing. | Does any part of the route leave a dry, covered space? |
| Payload | How much sensor and mounting hardware the system can carry. | Add up the weight of every module you intend to mount, plus the bracket. |
| Runtime and charging | How long the system runs before it charges, and how long charging takes. | How long is your route, and does one battery cover it with margin? |
| Onboard perception | What the system senses with as shipped, versus what you add. | Is the camera on the robot, or does it come from a phone you supply? |
| Autonomy | Whether the system is operated or navigates on its own. | Is autonomous navigation shipping today, or listed as a future update? |
| Expansion ports | The physical and data interfaces available for sensors and peripherals. | Will the module you want actually connect, and who wires it? |
| Development access | Whether an SDK and APIs are available, and whether simulation is supported. | Will anyone on your team write code against this, now or in two years? |
| Certification status | FCC certification and Covered List status, which procurement language usually tests for. | Ask for current documentation, since certification status changes. |
| Support and parts | Who services the system, how parts are sourced, and how long repairs take. | Who answers the phone in year two, and where are they located? |
Every figure on a specification sheet is measured under defined test conditions. Runtime, payload, and speed all change with terrain, temperature, load, and duty cycle. Treat published numbers as a ceiling for comparison, not a promise about your building. We attribute every specification we publish to the manufacturer who measured it.
Markets
Where quadruped systems are going in
Each market has its own procurement cycle, its own rules, and its own definition of a good shift.
Education
Robotics programs, CTE pathways, and university labs where the point is what students build on the platform. Teacher training and budget cycle timing matter more than top speed.
Security and corrections
Operated route coverage carrying video and sensors. The industrial model is the only one specified for this work, and autonomous patrol is a future capability rather than a current one.
Events and activation
Open houses, recruiting, trade shows, and public programs. Preloaded motions run in front of a crowd without setup or code.
If you are evaluating this for an agency or a facility
Faraday Future names security and inspection as intended uses for the industrial model, so it is worth being plain about what that does and does not mean today.
The unit is operated. Autonomous navigation and patrol are listed as future over-the-air capabilities and are not available at purchase. An operator runs the route, and the camera streams what it sees.
What the unit carries is what makes it useful. A route survey needs different modules than a thermal check or a perimeter walk, and those modules are separate purchases with separate integration work.
We will not tell you a deployment prevents incidents, protects officers, or reduces risk. We do not know that, nobody does, and a vendor who says otherwise is selling you something they cannot deliver.
What we will do is describe what the system can do, under what conditions, and tell you plainly when your route is outside them. Stairs are the most common one.
Deployment
A robot does not arrive ready to work
It arrives as a platform. What makes it useful on your route is the work that happens around it, and you know who to call at each step.
01
Scoping
You describe the route and the conditions. We say what a unit can do on it, and what it cannot.
02
Configuration
We specify and mount the sensors the route calls for, and build the secondary development your site needs.
03
On-site integration
We install in person, connect the system to your network and workflow, and test on the actual route.
04
Operator training
Your people run the system before we leave, and we stay reachable after that.
Procurement
What your purchasing office will ask for
Public sector buyers rarely get to buy on the strength of a demonstration. The paperwork decides it. We supply the manufacturer documentation your process needs, including specification sheets, certification records, and warranty terms, and we will tell you plainly when a document is not available yet rather than letting you find out during review.
On a quadruped, budget for the sensors as well as the robot. On an inspection or survey deployment the modules can approach or exceed the price of the platform, and none of them are included.
If your process requires a vendor legal name, purchase orders are placed with Stokes Family Holdings, LLC, doing business as MOSO Robotics.
Ask us for
Manufacturer specification sheets for the exact model quoted
Current FCC certification and Covered List documentation
Warranty terms and what they do and do not cover
A written scope covering configuration, installation, and training
Lead time and what it depends on
A quadruped robot is a four-legged system that walks rather than rolls. Legs let it handle thresholds, grades, and uneven ground that stop a wheeled unit. Most are built as carrying platforms: the robot moves, and the cameras or sensors mounted on it do the work.
It depends on the riser height, and the answer is often no. Every FX Aegis model is specified at 16 cm continuous stair climb. A typical US commercial stair riser is 17 to 18 cm and residential can approach 20 cm, so standard stairs are outside that figure. Obstacle clearance of 35 cm is a separate specification describing a single object, not a flight of stairs. Measure your risers before assuming.
Not on the systems we distribute today. Autonomous navigation and environmental scanning are listed by Faraday Future as future over-the-air capabilities on the models that will have them. Right now an operator runs the route using a controller or an app. Ask for a release timeline in writing before scoping a project around autonomy.
Only one of ours is rated for it, and only partly. The industrial model is IP54, which covers limited dust ingress and splashing water and is described by the manufacturer as semi-outdoor. It does not cover immersion, pressure washing, or sustained heavy rain. The other models are IP32 or unpublished, which means indoors.
Between 8 and 10 kg on our Aegis models, and a lighter unpublished figure on the FX Navi. That payload is for sensors, cameras, and mounting hardware rather than cargo. Add up the weight of every module you plan to mount, including brackets and cabling, before you pick a model.
A quadruped has four legs, is more stable on rough ground and grades, and is generally used to carry sensors and cameras along a route. A humanoid is bipedal and built for tasks that involve interacting with people in a building. The task decides which one fits, not the appearance. See humanoid robots.
No. We are a nationwide distributor for Faraday Future, and we are the secondary developer and integrator for the systems we sell. We do not build the hardware, and every performance specification we publish is attributed to the manufacturer who measured it.
Your people do. Operator training is part of every deployment, and your team runs the system before we leave the site. We stay reachable after that for support questions and for changes to the route as your needs shift.
Tell us what the robot needs to do
Describe the task and the space. We will tell you what fits, and we will tell you if nothing does.
