Fourier robot lineup

Fourier operates from Singapore / China and focuses on humanoids, rehabilitation robots, and open research platforms.

Explore Fourier’s named robot platforms and major variants below. Each product includes an availability label and an official source so you can distinguish shipping products from pilots, research platforms, prototypes, and legacy models.

This directory records 5 named platforms from Singapore / China, focused on humanoids, rehabilitation robots, and open research platforms. The lineup is a source map, not a promise that every model has public pricing, checkout, delivery in your region, or the same support terms.

Robot lineup at a glance

Availability determines what you should check next. Shipping products need clear specifications, pricing, support, and purchase terms. Pilots and prototypes need deployment evidence, while legacy platforms are most useful for history and comparison.

RobotTypeStatusWhat to check
GR-3 SerieshumanoidshippingPrice, specifications, and support
GR-3ChumanoidshippingPrice, specifications, and support
GR-2humanoidshippingPrice, specifications, and support
GR-1humanoidshippingPrice, specifications, and support
Fourier N1humanoidresearchAvailability and deployment evidence

About Fourier

Fourier, officially known as Fourier Intelligence, is based in Singapore and China and operates in robotics development for healthcare, research, and industry. Founded in 2015, the company began by creating assistive robotics for rehabilitation centers and hospitals, then expanded into humanoid robotics and open research platforms. Fourier is privately owned and has grown internationally through partnerships with universities, hospitals, and research institutions. Manufacturing is carried out in China, but the company maintains R&D and commercial connections in Singapore and others in Asia and Europe. Revenue comes mainly from the sale of rehabilitation robotics for clinical settings, research platforms licensed to academic groups, and increasingly, from the supply of humanoid robots for advanced automation pilots and demonstration labs. The open research hardware lines target universities and industrial R&D—with Fourier providing both hardware and software support, as well as integration and training services. Fourier's business today combines product sales, service contracts, research partnerships, and technology licensing to a mix of institutional and private sector buyers.

Fourier Pricing and How to Buy

Fourier does not publish prices for its humanoid or rehabilitation robots and typically provides quotes upon request, with costs depending on configuration and services. Buyers initiate contact through the official website or via local distributors and may face a prequalification step, especially for research or clinical deployments. Lead times can vary from a few months to over half a year, depending on production schedules, customization, and region. The company ships to clients in Asia, Europe, and North America, but availability for certain humanoid or open-source platforms may differ by country due to regulatory or export rules. Leasing and service packages may be options for rehabilitation robots, particularly for hospitals or research partners, but terms are generally not disclosed publicly. Shipping, taxes, and local certification further affect final costs. Buyers should confirm current conditions, as pricing and regional support can change based on local regulation or distribution agreements.

Who Fourier Robots Are For

Fourier’s robots are intended for institutional buyers, including rehabilitation clinics, universities, industrial research labs, and automation pilot programs. Clinical buyers benefit from a focus on patient rehabilitation, with robots suited for therapy or assessment. Academic labs use Fourier’s open research platforms for robotics research, control experimentation, and hardware-software integration work. Industrial or commercial buyers considering humanoid automation pilots may look at the humanoid models for basic manipulation or mobility tasks. These robots are not built for consumer or small-business use; they require technical integration, ongoing software support, and specialized facilities for operation. Buyers lacking technical staff or those seeking plug-and-play automation for simple, repetitive tasks might find simpler, application-specific robots from other vendors easier to deploy. Institutions with a need for open customization and long-term development cycles are best positioned to benefit.

  • Integration with existing systems may require custom software development and dedicated technical staff, as Fourier focuses on flexible platforms rather than turnkey automation.
  • Service, spares, and maintenance support rely on regional partners or direct agreement with Fourier; buyers should confirm local availability and typical response times before purchase.
  • Robots intended for clinical or workplace use may need local safety certification and compliance with standards. Fourier’s compliance depends on region and model; confirm before committing.
  • Software licensing terms for research and development platforms can affect long-term cost and IP rights. Ask about source code access, updates, and restrictions before buying.
  • Export restrictions may limit shipments of advanced models to specific countries or end-users, especially for open-source research platforms. Clarify eligibility and local import rules early.
  • Typical duty cycles and expected robot lifespans should be clarified at purchase, especially for high-utilization deployments such as clinical or industrial research environments.
  • Total cost of ownership includes shipping, installation, training, and ongoing software support, which may not be bundled. Budget for all ancillary costs and periodic renewal fees.

Fourier Alternatives

Vendors a buyer typically cross-shops against Fourier.

  • Unitree Robotics — Unitree Robotics is based in China and focuses on quadruped and humanoid robots for education and research. Unlike Fourier, its robots are widely available to general buyers and frequently used in robotics competitions and classroom settings.
  • Pal Robotics — Pal Robotics operates out of Spain and supplies humanoid platforms like REEM-C and TALOS for research, industrial prototyping, and public engagement. The company places more emphasis on European safety and regulatory compliance for public spaces.
  • Agility Robotics — Agility Robotics develops bipedal robots such as Digit mainly for logistics and commercial use, in contrast to Fourier’s mix of clinical and open research aims. Agility focuses on warehouse and last-mile automation rather than medical or academic users.
  • Infinity Robotics — Infinity Robotics offers rehabilitation robots and assistive exoskeletons geared toward therapy and clinical use. The company is more focused on turnkey therapeutic devices rather than open research or humanoid robotics platforms.
  • UBTECH Robotics — UBTECH Robotics creates consumer-facing and educational humanoid robots and some industrial models. It primarily serves educational and light commercial markets, not the clinical or deep research segment served by Fourier.

Bottom Line

Fourier supplies modular, research-ready humanoid and rehabilitation robots to academic, clinical, and select industrial buyers, with a business model anchored in institutional partnerships. Buyers should expect unpublished pricing, service requirements, and integration effort, making these robots fit for organizations with technical capacity and complex needs.

Explore The Bot Scout’s in-depth coverage of all major humanoid robot makers for detailed cross-comparisons and recent deployment case studies.

How to choose a Fourier robot

Choose between Fourier models by job, body type, and evidence status before comparing headline capabilities. A shipping label is stronger than an announcement, but buyers still need the exact configuration, price or quote, delivery region, software access, safety limits, warranty, and repair path in writing.

  • Shortlist the body type that fits the real workspace and task.
  • Open the model’s official source and confirm that the named configuration is current.
  • Ask whether access is checkout, distributor order, sales quote, pilot, or research-only.
  • Compare service location and fault recovery before comparing demo performance.

Primary sources

FAQs

What robots does Fourier make?

Fourier has 5 named platforms in this directory across humanoid. Each listing links to the official evidence used for its public status.

Can you buy a Fourier robot now?

Availability varies by model. A shipping label means the official source presents the platform as current; it does not guarantee checkout, delivery in every region, a public price, or local support.

How should buyers compare Fourier robots?

Start with the job and body type, then verify the exact configuration, price or quote path, delivery region, software access, safety limits, service, and evidence date with Fourier.

What support does Fourier offer for integration and training?

Fourier provides technical support packages, integration assistance, and user training for institutional buyers, especially for clinical and research clients. Support is generally negotiated as part of the sales contract and can include in-person or remote training, initial configuration, and ongoing technical troubleshooting. The level of support varies by region and by robot type.

How does Fourier manage software updates and platform evolution?

Software updates and platform modifications for Fourier robots are handled through subscription and direct support agreements for most institutional clients. Buyers may receive periodic firmware or software upgrades, but access to source code and development toolchains depends on the platform and the licensing terms. Ask for detailed terms before purchasing a research model.

Are Fourier’s humanoid robots suitable for real-world industrial automation?

Fourier’s humanoid robots are primarily deployed for research, prototyping, or demonstration purposes. While some industrial labs may use them for pilot automation projects, their readiness for large-scale, high-duty industrial tasks depends on the specific model, workflow, and integration effort. Full production deployment may require additional engineering.

Can Fourier robots be customized for specialized research or clinical tasks?

Fourier’s open research platforms are designed with customization in mind and support modifications via hardware attachments and software extensions. Clinical or industrial buyers can often request tailored features at the point of sale. Discuss your technical requirements with the company early to confirm support for your application.