MOSO Robotics Logo

Humanoid Robots

There is a set of tasks in most buildings that nobody wants and everybody has to cover. The same route walked every hour. The same tray carried to the same place. The same question answered at the front desk two hundred times a day.

A humanoid robot is built for that work. It is bipedal, roughly the size of a person, and it moves through space designed for people, which means stairs, doorways, and counters instead of a track or a fixed cell. We are a nationwide distributor for Faraday Future humanoid systems, and we do the configuration, installation, and operator training that puts one to work in your building.

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

Two humanoid systems, one frame

Both Master models stand 1310 mm, run two hours on a swappable battery, walk at 1.8 m/s, and carry the same 3 kg. The body is not what separates them.

Every dollar of difference goes into perception, on-device compute, and how deep your team can develop. The Edu gives a student visual programming and a no-code tool, and that is enough to change what the robot does in an afternoon. The Ultra adds LiDAR, depth, an NVIDIA Orin NX module, and a full SDK on Ubuntu, for a team that will write its own software rather than run what ships.

PDP Banner Master Ultra 图二 scaled

Repetitive work

Tasks that run the same way every time, on a schedule, without needing a person to decide what happens next. Moving items between two fixed points is the common example.

Guided tours

A defined route through a building with stops, a script, and questions answered along the way. Common in visitor centers, campuses, and showrooms.

Front-of-house tasks

Greeting, wayfinding, check-in support, and delivery to a table or a room. The robot handles the routine interaction so staff handle the ones that need judgment.

Demonstration programs

Classroom, lab, and public-facing programs where the robot itself is the subject. Curriculum and operator training come with the system.

A humanoid robot is not a replacement for supervision. It runs a defined task under the oversight of your staff, inside a space your team has prepared for it. Anything that requires judgment, escalation, or a decision about a person still belongs to a person.

Humanoid systems we distribute

We distribute the Faraday Future Master series. Both systems below share the same body, the same battery, and the same movement envelope. What separates them is how much the robot can perceive, how much it can compute on its own, and how far your team can develop on top of it.

These are compact humanoid systems, 1310 mm tall and under 40 kg. They walk, they hold a conversation, and they are built to be programmed. They are not material handling equipment, and the payload figure below is the honest limit on that.

Master Ultra Main scaled

Faraday Future

Master Ultra

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.

Master Edu Main scaled

Faraday Future

Master 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.

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 Inquiry

What to compare before you buy a humanoid robot

Most specification sheets list the same figures. These are the ones that decide whether a system works in your building, and the question each one is really answering.

SpecificationWhat it tells youAsk this
Runtime and chargingHow long the system operates before it needs to charge, and how long charging takes.Does one unit cover your shift, or does the schedule need two?
PayloadHow much the system can carry or manipulate.What is the heaviest thing it will actually handle on a normal day?
Reach and workspaceThe height and distance the arms can work within.Can it reach your counters, shelves, and carts as they are built today?
Mobility and terrainStairs, thresholds, ramps, floor surfaces, and door widths the system can handle.Walk the route yourself and note every step and every tight turn.
Operating environmentTemperature, humidity, dust, and whether the system is rated for outdoor use.Does any part of the route leave a climate-controlled space?
ConnectivityNetwork requirements, coverage needs, and what happens when the connection drops.Does your facility allow this device on its network, and who approves that?
Safety featuresObstacle detection, emergency stop, speed limits, and the supervision the manufacturer requires.What does the system do when a person steps in front of it?
Certification statusFCC certification and Covered List status, which procurement language usually tests for.Ask for current documentation, since certification status changes.
Support and partsWho 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.

Where humanoid 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 lab coursework where the system is the curriculum. Teacher training and budget cycle timing matter more than the hardware.

Hospitality

Guest-facing and back-of-house tasks: delivery to rooms and tables, wayfinding, and routine front-desk support during a rush.

Manufacturing

Repetitive line and material tasks in a space built for people, where changing the building to suit fixed automation is not practical.

Working in corrections, security, or law enforcement? Quadruped systems and CORAS®, the Correction Officer Robotics Assistant System, are usually the better starting point. See quadruped robots and CORAS.

A robot does not arrive ready to work

It arrives as hardware. What makes it useful in your building is the work that happens around it, and you know who to call at each step.

01

Scoping

You describe the shift and the space. We say what a unit can do in it, and what it cannot.

02

Configuration

We handle the secondary development your site needs, so the system does your task and not a generic one.

03

On-site integration

We install in person, connect the system to your network and workflow, and test it in place.

04

Operator training

Your people run the robot before we leave, and we stay reachable after that.

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.

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

Common questions about humanoid robots

Ask us something else
What is a humanoid robot?

A humanoid robot is a bipedal system built roughly to human proportions so that it can move through space designed for people. It walks rather than rolls, which lets it handle stairs, thresholds, and doorways that stop a wheeled unit. Most are built to carry, move, or hand off items and to interact with people through speech or a screen.

Do humanoid robots work on their own?

No. A humanoid robot runs a task it has been configured to run, under the supervision of your staff. It needs scoping, configuration, installation, and operator training before it does anything useful, and it needs a person responsible for it after that. Any system marketed as needing none of this is being oversold.

What is the difference between a humanoid robot and a quadruped robot?

A humanoid is bipedal and built for tasks that involve carrying, handing off, and interacting with people in a building. A quadruped has four legs, is more stable on rough ground, and is generally used to carry sensors and cameras through stairs, gravel, and space a wheeled unit cannot cross. The task decides which one fits, not the appearance.

How much does a humanoid robot cost?

It depends on the model, the configuration, the secondary development your site needs, and whether installation and training are included. We quote the whole deployment rather than the hardware alone, because the hardware by itself does not do the job. Tell us the task and the site and we will put a number in writing.

Do you manufacture these 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.

Who operates the robot once it is installed?

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 task as your needs shift.

Will a humanoid robot work in our building?

That depends on the route. Stairs, door widths, floor surfaces, tight turns, network coverage, and whether any part of the route leaves a climate-controlled space all matter. Walking the route is the first thing we do, and it is also the fastest way to find out that a system is not the right fit.

Is the system certified for use in a government facility?

Certification is specific to the model and it changes over time, so we provide current manufacturer documentation rather than a general claim. Ask us for the FCC certification and Covered List status of the exact model you are considering, and verify it against that documentation before your purchase goes to review.

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.