Built on Model Hardware Standard
Meet AINA, the LabCobot. AI that works safely in your lab.
Give AI agents a consistent way to work with your lab equipment. Model Hardware Standard defines the capabilities, checks, and results. AINA carries out approved tasks and keeps each run traceable.
Live session · no prep needed · English or German
- Deployed in research labs today
- EU-hosted, GDPR-aligned
- 40 h integration included
validated
Trusted by
What makes AINA different
One standard from AI request to lab result.
Model Hardware Standard (MHS), defined
Model Hardware Standard (MHS) is SupraTix’s framework for connecting AI agents to laboratory equipment. It defines a consistent way to describe device capabilities, check requests, execute approved actions, and return traceable results. AINA puts the standard into practice in your lab.
- Connected equipment
- AI agents and models, AINA LabCobot, sensors, instruments, grippers, and programmable lab equipment.
- Capabilities and limits
- Available commands, accepted inputs, device state, operating limits, and safety constraints.
- Execution checks
- Permissions, preconditions, parameter ranges, approvals, and digital-twin checks before motion.
- Traceable results
- Telemetry, measurements, images, completion status, warnings, and errors with workflow context.
One governed execution loop
From agent request to AINA’s physical evidence—in four steps.
- parameter range
- digital-twin check
- approval
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Discover compatible hardware
MHS reveals available devices, supported actions, current state, and declared operating constraints.
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Validate the action plan
Permissions, parameter ranges, preconditions, and the digital twin check the model’s request before motion begins.
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AINA executes
AINA translates the approved request into deterministic, collaborative robot operations—no safety cage required.
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Return evidence
Telemetry, images, measurements, exceptions, and completion status return to the model with the workflow context intact.
Safe physical AI by design
Every agent request is checked before AINA acts.
- Scopeonly exposed actions and ranges
- Preflightstate, twin check, approvals
- Traceevery run stays observable
Evidence from the lab
AINA already runs in research labs.
- 4,000+organizations on the SupraWorx model and data layer behind AINA
- 4 stepsdiscover, validate, execute, return evidence—one governed loop
- 40 hprotocol mapping and process customization in every package
- EUhosted, GDPR-aligned infrastructure with on-device processing first
“Integrating AINA to automate repetitive tasks has been a game-changer, but the true strength lies in the full package. With seamless automation and robust analysis tools, it provides everything we need to work smarter and faster.”
“AI should not just understand the experiment. It should work safely beside you. MHS is the interface that makes this laboratory work.”
From one endpoint to a connected lab
AINA is already working in labs. MHS makes it agent-ready.
Three AINA deployments.
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Advancing Spatial Omics Analysis with AINA, the LabCobot.Eva Hernschier

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Transforming Laboratory Processes with Advanced Technology at TU ChemnitzTobias Goecke (Göcke)
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Real-Time Dermatology Classification with AINA, the LabCobot - SupraWorx WorkbenchEva Hernschier

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Transforming Laboratory Processes with Advanced Technology at TU Chemnitzby Tobias Goecke (Göcke)Read the TU Chemnitz use case
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Get AINA
Two AINA packages. Model Hardware Standard in both.
Every AINA ships with its Model Hardware Standard endpoint, digital-twin validation and 40 hours of guided integration.
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Best for a focused first workflow
AINA Standard
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€26,691.40excl. tax
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Pick, collect, and place workflows
AINA Standard Model Hardware Standard endpoint
40 hours of protocol mapping and process customization
- Request Standard Buy online
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Most flexible
AINA Hero
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€37,491.40excl. tax
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Individual robotic gripper for your use case
AINA Premium Model Hardware Standard endpoint
40 hours of protocol mapping and process customization
- Request Hero Buy online
Book a live demoNot sure which AINA fits?
Show us your workflow. We’ll propose the smallest useful starting point.
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Practical answers
What teams ask before they get AINA.
What is Model Hardware Standard?
Model Hardware Standard (MHS) is SupraTix’s framework for connecting AI agents to laboratory equipment. It defines a consistent way to describe device capabilities, check requests, execute approved actions, and return traceable results. AINA puts the standard into practice in your lab.
How is Model Hardware Standard different from a direct hardware API?
A hardware API provides device-specific commands. Model Hardware Standard defines how capabilities, operating limits, execution checks, and results fit together. AINA applies this framework through device adapters, so an agent can request a task and review its outcome in a consistent structure.
What evidence does Model Hardware Standard return after execution?
An MHS execution can return device state, parameters, telemetry, measurements, images, completion status, warnings, and errors with the workflow context needed for review or a model's next step.
Can I connect the AINA LabCobot to my Laboratory Information Management System (LIMS)?
Yes. AINA supports integration with ELN and LIMS systems such as eLabNext. The AINA team can also help connect additional systems.
Do I need programming skills to set up AINA?
No. The AINA team maps device capabilities into Model Hardware Standard, configures the digital-twin validation flow, and provides 40 hours of training and process customization.
How does AINA protect sensitive laboratory data?
AINA prioritizes on-device processing, secure private-cloud capabilities, GDPR-aligned handling, and encryption to reduce external transmission risks and safeguard laboratory data.
What happens if power or network connectivity is interrupted?
AINA is designed to resume after power is restored. During network interruptions, supported tasks can continue on-device, data is buffered securely, and connected systems synchronize again when connectivity returns.
Can AINA's gripper be changed for different use cases?
Yes. AINA's robotic-arm attachments, including the gripper, can be exchanged to support different laboratory tasks and use cases.
Are there specific safety requirements for operating AINA in a laboratory?
AINA is a collaborative robot designed to operate without an enclosed safety case. It stops immediately when it detects an object during an action.
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Bring AINA into your lab
Tell us what AINA should do in your lab.
Describe the task in plain language. We’ll map a practical starting point and the right AINA configuration.
Agents decide. AINA does the work. MHS keeps it governed.
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