OR-01
A compact platform for movement and interaction research.
Explore the Oryn family.
Explore with a purpose
Explore the concept, then define the environment, task and evidence needed for a real evaluation.
Research
A compact platform for movement and interaction research.
| Focus | Research |
| Format | Product exploration |
| Year | 2026 |
Quiet surfaces, articulated joints and a restrained sensor visor.
Concept configuration: modular sensing, onboard compute and replaceable battery. Illustrative specifications.
Real applications require validated engineering and supervised testing.
Oryn Robotics
A modular platform with a focus on fine movement.
A robust silhouette for field research concepts.
Describe the environment, the intended work and the people supervising it. Keep the assumptions visible.
Check the required interfaces, physical setup and supporting equipment with the responsible team.
Agree on the questions to test and the limits of the trial before moving beyond the concept.
A platform for careful experimentation
Share your intended use and the requirements that matter.
Precision
A modular platform with a focus on fine movement.
| Focus | Precision |
| Format | Product exploration |
| Year | 2026 |
Quiet surfaces, articulated joints and a restrained sensor visor.
Concept configuration: modular sensing, onboard compute and replaceable battery. Illustrative specifications.
Real applications require validated engineering and supervised testing.
Oryn Robotics
A compact platform for movement and interaction research.
A robust silhouette for field research concepts.
Describe the environment, the intended work and the people supervising it. Keep the assumptions visible.
Check the required interfaces, physical setup and supporting equipment with the responsible team.
Agree on the questions to test and the limits of the trial before moving beyond the concept.
A platform for careful experimentation
Share your intended use and the requirements that matter.
Field
A robust silhouette for field research concepts.
| Focus | Field |
| Format | Product exploration |
| Year | 2026 |
Quiet surfaces, articulated joints and a restrained sensor visor.
Concept configuration: modular sensing, onboard compute and replaceable battery. Illustrative specifications.
Real applications require validated engineering and supervised testing.
Oryn Robotics
Describe the environment, the intended work and the people supervising it. Keep the assumptions visible.
Check the required interfaces, physical setup and supporting equipment with the responsible team.
Agree on the questions to test and the limits of the trial before moving beyond the concept.
A platform for careful experimentation
Share your intended use and the requirements that matter.
Tell us about your research.
Hardware. Sensing. Movement.
hello@orynrobotics.example
Monday–Friday · 9:00–18:00
We reply within one working day, and your details stay with us.
Hardware. Sensing. Movement.
Our point of view
A robotics design study in material, motion and human curiosity.
A clear product language for complex machines.
Explore the concept, then define the environment, task and evidence needed for a real evaluation.
Keep the information needed for a choice close to the choice itself. Clear names, readable dimensions and a visible next step matter more than adding another layer.
The right starting point depends on the person, place and purpose. Use the collection as a guide, then ask about the details that make your situation different.
A platform for careful experimentation
Explore the collection or share a specific question with us.
A closer look at Oryn.
Yes. Visit the Rivergate lab any weekday, or book a demonstration day and we bring an OR-01 to you.
Base platform, chosen modules and a care plan, quoted as one figure. There are no licence fees for the SDK or updates.
Hands, sensor heads and end effectors are interchangeable. For anything beyond the catalogue, the engineering team scopes custom modules on request.
Indoor spaces as standard. OR-03 Field adds sealed joints and an extended temperature range for barns, glasshouses and light rain.
Over the air, on a schedule you set. Every release is tested on the simulator first and can be rolled back from the dock.
We take every platform back. Modules are refurbished or recycled, and you receive credit toward the next generation.
Research notes and new concepts.
Inside the next edition
Explore the concept, then define the environment, task and evidence needed for a real evaluation.
There is plenty more to discover.
Sensing, movement and control.
A protected sensor array gives each concept a clear visual identity.
Articulated joints make the movement architecture visible.
Telemetry and configuration belong to one coherent interface. Concept only.
Compare real screens and find the repeated decisions. Identify where similar components behave differently.
Define a smaller set of patterns with explicit states. Check keyboard use, long content and compact layouts.
Give the team working examples and a clear process for changes. A system should make the next screen easier to build.
A platform for careful experimentation
Tell us which part of the experience you would like to explore.
Four directions for supervised research.
A platform for studying movement and interaction in a controlled environment.
A concept for exploring fine control, careful sensing and repeatable motion.
A visual study of robust hardware in an outdoor research setting.
An approachable hardware language for supervised interaction research.
Before the next step
Explore the concept, then define the environment, task and evidence needed for a real evaluation.
Ask about the detailsStudy movement in a prepared environment.
Define a narrow research question and a supervised test setting.
Document the task, conditions and observations.
Describe the environment, the intended work and the people supervising it. Keep the assumptions visible.
Check the required interfaces, physical setup and supporting equipment with the responsible team.
Agree on the questions to test and the limits of the trial before moving beyond the concept.
A platform for careful experimentation
Share your intended use and the requirements that matter.
Explore the detail of controlled motion.
Focus on sensing, mechanism design and repeatable movement.
Capabilities shown here are concepts, pending engineering validation.
Describe the environment, the intended work and the people supervising it. Keep the assumptions visible.
Check the required interfaces, physical setup and supporting equipment with the responsible team.
Agree on the questions to test and the limits of the trial before moving beyond the concept.
A platform for careful experimentation
Share your intended use and the requirements that matter.
Consider hardware in a changing setting.
Study how surfaces, visibility and weather affect the research question.
This is a visual concept, not an operating specification.
Describe the environment, the intended work and the people supervising it. Keep the assumptions visible.
Check the required interfaces, physical setup and supporting equipment with the responsible team.
Agree on the questions to test and the limits of the trial before moving beyond the concept.
A platform for careful experimentation
Share your intended use and the requirements that matter.
Make the machine easier to understand.
Explore posture, sensor placement and clear feedback in a supervised setting.
Begin with a focused interaction and documented constraints.
Describe the environment, the intended work and the people supervising it. Keep the assumptions visible.
Check the required interfaces, physical setup and supporting equipment with the responsible team.
Agree on the questions to test and the limits of the trial before moving beyond the concept.
A platform for careful experimentation
Share your intended use and the requirements that matter.
Explore the model specifications.
Compact movement and interaction research.
Modular precision research.
Field research concept.
Before the next step
Explore the concept, then define the environment, task and evidence needed for a real evaluation.
Ask about the detailsLet proportion explain the machine.
A research platform’s outer form needs to be read alongside access, serviceability and the intended environment. This concept explores those relationships visually; the rendered surface is not evidence of a tested material or manufacturing process.
The enclosure is part of the experiment.
Document which parts need access during an experiment and where cables or tools would be handled. Treat those as design questions to resolve with the engineering team. A clear list is more useful than assuming a polished render answers them.
Walk through setup, observation and shutdown as separate activities. Capture what the operator needs to see at each stage. The next prototype should address a specific question rather than simply adding more detail.
A small mechanism. A complex problem.
Begin with a clearly described manipulation task and the objects involved. Record the environment, the supervision required and what a successful observation would look like. This concept does not claim measured dexterity or validated performance.
A task gives a mechanism its context.
Consider setup and recovery as well as the central movement. The surrounding workflow can expose needs that a single demonstration misses. Keep the observation separate from the conclusion drawn from it.
Document the configuration and the limits of the test. Share the questions that remain open with the people planning the next iteration. A repeatable record is more valuable than a dramatic but unexplained result.
Context changes the design question.
A platform shown in a field setting still needs a clear operating envelope. List the conditions, access arrangements and supervision that would need assessment. The concept imagery is a starting point for discussion, not proof of field readiness.
A new setting needs a new review.
Choose one question to investigate and the information needed to answer it. Separate assumptions about the setting from what has actually been observed. Keep a practical plan for stopping the trial when the conditions change.
Bring the notes back to the people responsible for the platform and environment. Resolve the most consequential unknowns before widening the scope. The next step should follow evidence from the review, rather than the visual appeal of the demonstration.
Materials, mechanisms and research settings.
Notes / 01
Designing a machine that communicates through proportion.
Notes / 02
A small mechanism with a large design challenge.
Notes / 03
Why context changes the hardware conversation.
Explore with a purpose
Explore the concept, then define the environment, task and evidence needed for a real evaluation.
The first of a new family
Considered motion.
Human curiosity.
A coherent system
Hardware. Sensing. Movement.
Explore the next platform
Oryn Robotics
Oryn Robotics
Ideas shaping the next generation of machines.
Engineering, in brief
Measured on the OR-01 in its standard configuration. Every figure is repeatable; the method sheet is in Downloads.
Arms, hands and sensor heads share one mechanical and electrical interface. Swap a module in the field, not the workshop.
Python and C++ bindings, ROS 2 packages and a simulator that matches the hardware to the millimetre. Your code runs on day one.
Torque limiting on every joint, a 360° depth ring and a stop that is mechanical, not just software. Certified for shared spaces.
Harmonic drives and a low-vibration chassis keep the platform under conversation level, even under load.
In the field
From the labs, studios and farms running Oryn platforms today.
We had the OR-01 walking our corridor test loop within an afternoon. The SDK is the first we have used that does not fight the hardware.
The hand is the reason we chose Oryn. Picking seedlings without bruising them is a task most platforms fail at on day one.
Quiet matters more than anyone expects. Visitors talk to the OR-02 instead of about it. That changes the whole exhibit.
Before you ask
Lead times, support and what happens after delivery. For anything technical, the engineering team answers directly.
All questionsOR-01 ships in six to eight weeks. OR-02 Pro and OR-03 Field are built to order and take ten to twelve. A demonstration unit can usually visit you sooner.
The platform, two battery packs, a charging dock, the calibration kit and a year of software updates. Extra hands and sensor heads are ordered separately.
Yes. The SDK exposes every joint and sensor. Most teams start from the sample behaviours and are running their own within the first week.
A named engineer for the first ninety days, then a support desk with a four-hour response during working hours. On-site visits are available under the care plan.
Universities and research institutes receive 20% off the platform and free simulator seats for students. Ask about the loan programme for short projects.
See it move
We bring an OR-01 to your space for a day. Bring the task you are unsure about; that is the one we want to try.