Education & research · Saudi Arabia & MENA

Robotics platforms and lab setup for education and research.

Build a robotics lab around the learning or research objective. Select platforms, development access and supervision together, rather than starting with a list of impressive machines.

Explore the selection
In the selection6 models
AGIBOT X2 EDU — whole product view
AGIBOT X2 EDU

The application

What needs to get done?

Start with the workflow. These are different applications, not a ranking of interchangeable robots.

01
AGIBOT X2 EDU — whole product view

Humanoid development

For experiments in perception, motion or interaction with the appropriate developer edition.

Explore AGIBOT X2 EDU
03
Fourier GR-1 — whole product view

Manipulation research

Plan the hands, sensing, compute and tooling around the objects used in the experiment.

Explore Fourier GR-1

Selection logic

Four checks before the shortlist.

  1. Development access

    Check available APIs, low-level control, data export and licence restrictions.

  2. Experimental hardware

    List required sensors, hands, compute and external interfaces.

  3. Software workflow

    Verify the actual simulator and middleware support for the selected edition.

  4. Lab operation

    Plan training, supervision, workspace, spares and safe reset after a failed experiment.

Your site. One project.

Specify a research platform against your experiment.

Share the research goal, control access, hardware and software stack you require.

Product selection

Meet the shortlist.

6 models in this selection. Open a product for its exact specifications, configuration and commercial options.

Browse the complete robot catalog

Compare the approaches

Choose platforms by learning or research objective

ApproachThe jobWhat to establish
Locomotion and control ↗Study movement, balance or navigation.Exact platform edition, control interfaces and safe test space.
Embodied AI and manipulation ↗Develop perception and object-handling experiments.Hands, sensors, compute and permitted software access.
Industrial automation teaching ↗Explore task programming, tooling and workcell design.Controller access, fixtures, guarding and instructor training.

Confirm SDK, ROS and simulator compatibility against the quoted hardware and software version. Plan charging, spare parts, controlled access, instructor responsibilities and technical support. Research access is not automatically included in every commercial edition.

What should a robotics lab package include?

Start with the curriculum or research tasks, then specify platforms, accessories, development licences and any required workstations. Include training, safety procedures, spare parts and support responsibilities. The final package should identify what students or researchers can actually access and modify.

How we plan a robotics project ↗

Four ways to deploy

Choose the model. Then the terms.

All four options can be requested. Configuration, availability, minimum term and service scope are confirmed in your quote.

01

PurchaseEquipment ownership

Own the equipment. The quote defines configuration, deployment and the service package.

02

Short-term rentPriced per day

Use a robot for an agreed period. Confirm dates, availability, minimum term and setup costs before booking.

03

Long-term rentPriced per month

Plan for ongoing operation. Equipment, contract term, maintenance and responsibilities belong in the proposal.

04

RaaSManaged monthly model

Combine the robot with deployment and an agreed operating and service scope. Define monitoring, maintenance and performance measures for your site.

Before you choose

Questions worth asking.

Is a standard edition equivalent to an education edition?

Not necessarily. Access permissions, SDKs, compute and accessories can differ. Confirm the exact edition and licence scope before ordering.

Can we assume ROS or simulator support?

No. Verify versions, supported interfaces and documentation for the exact configuration. A demonstration using a tool does not establish support for your workflow.

Are these robots suitable for unsupervised classroom use?

Do not assume that. Size, torque, motion and the application determine supervision and safety requirements. Plan lab operation before introducing the robot to students.

From selection to deployment

Let’s match the solution to your site.