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KUKA LBR Med 7 R800

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The KUKA LBR Med 7 R800 is a seven-axis medical robotics component built for sensitive assistance, rehabilitation, diagnostics, surgical systems, treatment devices, and medical research.

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Payload
7 kg
Max Speed
KUKA does not publish a single TCP-speed figure in the current public LBR Med summary
Runtime
Mains powered
Navigation
Sunrise.OS Med and KUKA smartPAD
Environment
Indoor medical spaces; IP54
Best For
Medical-device integration

OVERVIEW

The KUKA LBR Med 7 R800 is a seven-axis medical robotics component designed for sensitive assistance, rehabilitation, diagnostics, surgical systems, treatment devices, and medical research.

It combines a 7 kg payload, 800 mm reach, ±0.1 mm pose repeatability, joint-torque sensing, approximately 25.5 kg arm weight, IP54 protection, and installation in any orientation.

The smooth, disinfectant-resistant design works with the KUKA Sunrise Cabinet Med and is intended for integration by medical-device manufacturers.

Its joint-torque sensing, medical-grade design, and flexible mounting make LBR Med 7 R800 a specialist component for regulated medical systems that require sensitive motion and deep integration by the device manufacturer.

IS THIS ROBOT RIGHT FOR YOU?

Good fit if...

Not ideal if...

APPLICATIONS AND USE CASE FIT

Cleaning
Warehouse transport
Material handling
Inspection
Security / patrol
Delivery / service runs
Palletizing / stacking
Pick and place / sorting
Welding / fabrication
Manufacturing automation
Human interaction / service
Home / personal use

KEY FEATURES

7 kg medical payload

Supports instruments, treatment devices, sensors, fixtures, and selected medical tools.

800 mm reach

Compact workspace suits treatment systems, laboratories, and clinical equipment integration.

Seven-axis sensitivity

Redundant motion and joint-torque sensing support compliant, human-oriented movement.

±0.1 mm repeatability

Provides repeatable positioning for validated medical and research workflows.

Disinfectant-resistant design

Smooth surfaces and resistant coating support hygiene-focused equipment design.

Medical integration platform

Sunrise Cabinet Med and documentation support qualified medical-device manufacturers.

TECHNICAL SPECIFICATIONS

Robot type

Medical collaborative robot arm

Main purpose

Medical-device integration

Operating environment

Indoor medical spaces; IP54

Deployment

Medical-device integration component; not a standalone medical device

Payload / load capacity

7 kg

Reach

800 mm

Mobility

Fixed arm; any mounting position

Manipulation

Application-specific medical instrument, gripper or certified end effector

Max speed

KUKA does not publish a single TCP-speed figure in the current public LBR Med summary

Runtime

Mains powered

Power source

Electric through the Sunrise Cabinet Med controller

Navigation / control

Sunrise.OS Med and KUKA smartPAD

Sensors

Joint-torque sensors on all 7 axes

Dimensions

Maximum reach: 800 mm; overall envelope depends on mounting and joint pose

Weight

25.5 kg

SUPPLIER

Within 1-2 days
Augsburg, Germany
Worldwide via KUKA offices and partners
Manufacturer

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FAQ

Frequently asked questions

How much does the KUKA LBR Med 7 R800 cost? +

The KUKA LBR Med 7 R800 price is supplied through a project-specific medical quotation rather than a public retail price. The final cost depends on the Sunrise Cabinet Med, software, end effector, medical-device engineering, validation, documentation, training and support. A displayed arm price or used-market figure is not the final cost of a productive robot system. Buyers may also need a controller, teach pendant, end effector, dress pack, pedestal, guarding, safety equipment, software, integration, programming, shipping, taxes, commissioning, training, warranty and spare parts.

Before comparing offers, confirm the exact generation, reach, controller, environmental version, included equipment and support route. The better buying question is: what is included, what is excluded, and who guarantees the completed application?

You can request KUKA LBR Med 7 R800 pricing or a system review through Anton Robots before approving a budget.

Where can I buy the KUKA LBR Med 7 R800? +

You can request the KUKA LBR Med 7 R800 through Anton Robots for an eligible medical-development project. Anton Robots helps buyers verify the exact robot, legitimate commercial route and complete automation package. LBR Med is an active KUKA medical robotics component, not a complete approved treatment device for direct clinical use.

Before buying or importing a unit, confirm the full model code, generation, controller, software, payload data, delivery country, warranty, spare parts and local service. A family name, old brochure or secondary-market listing does not always identify the same mechanical arm or supported controller generation. Professional buyers should compare the complete cell and integration responsibility rather than choosing only the lowest robot price. For medical, collaborative or used equipment, also verify the applicable certification and risk-assessment requirements.

To start, request KUKA LBR Med 7 R800 buying or sourcing guidance through Anton Robots.

Where can I find a KUKA LBR Med 7 R800 for sale? +

You can source the KUKA LBR Med 7 R800 through KUKA’s medical sales process, qualified integrators and specialist channels such as Anton Robots. Finding a KUKA LBR Med 7 R800 for sale is only the first step. Buyers should verify whether the offer is current, new, used, refurbished, incomplete, controller-only, arm-only or unsupported outside its original region. The supplier must clarify the intended medical device, regulatory responsibilities, controller, software, validation support and permitted use.

A useful comparison should cover the exact model code, serial number, manufacturing year, operating hours, controller, teach pendant, cables, mastering status, service history, software licences, warranty and available parts. For used industrial robots, require a powered inspection and confirm that the selected integrator can recommission the system safely.

If you are looking for a KUKA LBR Med 7 R800, contact Anton Robots. We can also compare it with other robots in the same category.

Can I get a quote for the KUKA LBR Med 7 R800? +

Yes. You can request a KUKA LBR Med 7 R800 project review through Anton Robots. A useful quotation should identify the exact robot and controller, end effector, payload and inertia assumptions, mounting structure, safety system, application software, fixtures, integration, commissioning, training and acceptance criteria. The proposal should define the clinical or research function, tool, forces, patient contact, accuracy, safety concept, software, cleaning, validation and target market.

Buyers should provide the destination country, workpiece, tool, required reach, cycle time, environment, process, production schedule and any existing machines or fieldbus systems. That information allows the supplier to verify load data and determine whether the proposed configuration is technically suitable. The quote should state who owns programming, risk assessment, documentation and production acceptance.

Anton Robots can help compare the KUKA LBR Med 7 R800 against other relevant robots.

What is included when you buy the KUKA LBR Med 7 R800? +

A typical KUKA LBR Med 7 R800 package may include the seven-axis arm, Sunrise Cabinet Med, cables, software interfaces, documentation and medical integration support. The exact contents vary by country, seller, controller generation, configuration and product condition, so buyers should request a written list:

  • LBR Med 7 R800 robot arm
  • KUKA Sunrise Cabinet Med
  • Robot, power and communication cables
  • Medical software and integration interfaces
  • Application tool or instrument interface
  • Safety, risk-management and validation engineering
  • Installation, training and documentation
  • Freight, warranty and technical support

The integrator or medical-device manufacturer remains responsible for the final device, clinical function, regulatory submission and validated safety. A robot arm alone does not create a working automation cell. Tooling, guarding, fixtures, software, machine interfaces, safety validation and production testing can equal or exceed the hardware cost. For used equipment, mastering data, backups, cables and compatible software are especially important.

You can request an itemised KUKA LBR Med 7 R800 offer or availability review through Anton Robots before committing.

What are the payload and reach of the KUKA LBR Med 7 R800? +

The LBR Med 7 R800 has a 7 kg rated payload and an 800 mm maximum reach. The seven-axis arm weighs approximately 25.5 kg and can be installed in any orientation. The practical result depends on the exact model, controller, tool, load data, installation, environment and application rather than the headline specification alone. The payload includes the medical instrument, adapters, cables and any patient-contact tooling, while dynamic loads and centre of gravity also matter.

Before purchase or integration, verify the complete tool mass, centre of gravity, inertia, reach, patient geometry, required posture and cable routing. A proper feasibility study should simulate or test the real tool, workpiece, paths, obstacles, process forces and cycle requirement instead of relying only on catalogue reach. It is intended for compact sensitive medical systems rather than heavy industrial handling.

You can request KUKA LBR Med 7 R800 application advice through Anton Robots and compare the complete system before purchase.

How accurate is the KUKA LBR Med 7 R800? +

KUKA specifies ±0.1 mm pose repeatability for the LBR Med 7 R800. Joint-torque measurement accuracy is listed at approximately ±2%, supporting sensitive motion and force-aware application development. The practical result depends on the exact model, controller, tool, load data, installation, environment and application rather than the headline specification alone. Repeatability is not complete clinical accuracy and does not include calibration, instrument deflection, registration, imaging or patient movement.

Before purchase or integration, verify the full accuracy budget, calibration, force measurement, tracking, tool, imaging, registration and validation protocol. A proper feasibility study should simulate or test the real tool, workpiece, paths, obstacles, process forces and cycle requirement instead of relying only on catalogue reach. The medical-device manufacturer must validate the finished system against its clinical requirement.

You can request KUKA LBR Med 7 R800 application advice through Anton Robots and compare the complete system before purchase.

Is the KUKA LBR Med a complete medical device? +

No, the LBR Med is a medical robotics component for integration into a finished medical device. KUKA supplies the arm, controller and supporting technology to qualified manufacturers developing rehabilitation, diagnostics, treatment or surgical systems. The practical result depends on the exact model, controller, tool, load data, installation, environment and application rather than the headline specification alone. The robot does not independently provide clinical approval, intended use, patient safety or treatment efficacy.

Before purchase or integration, verify the legal manufacturer, intended purpose, risk classification, standards, regulatory strategy, clinical evidence and post-market responsibilities. A proper feasibility study should simulate or test the real tool, workpiece, paths, obstacles, process forces and cycle requirement instead of relying only on catalogue reach. Purchase should begin with the medical-device architecture and regulatory plan.

You can request KUKA LBR Med 7 R800 application advice through Anton Robots and compare the complete system before purchase.

What medical applications suit the KUKA LBR Med 7 R800? +

The platform can support rehabilitation, diagnostic positioning, treatment equipment, surgical assistance and medical research. Seven axes, torque sensing and a human-arm-like form enable compliant movement in compact patient-oriented systems. The practical result depends on the exact model, controller, tool, load data, installation, environment and application rather than the headline specification alone. Suitability depends on the instrument, patient contact, force, sterility, precision, clinical workflow and required certification.

Before purchase or integration, verify the intended use, patient population, tool, forces, contact duration, cleaning, accuracy, fail-safe behaviour and human oversight. A proper feasibility study should simulate or test the real tool, workpiece, paths, obstacles, process forces and cycle requirement instead of relying only on catalogue reach. The robot should solve one precisely defined medical function.

You can request KUKA LBR Med 7 R800 application advice through Anton Robots and compare the complete system before purchase.

Can the KUKA LBR Med work directly beside patients and clinicians? +

The arm is designed for sensitive human-oriented medical integration. Joint-torque sensing and compliant control can support carefully engineered physical interaction and constrained movement. The practical result depends on the exact model, controller, tool, load data, installation, environment and application rather than the headline specification alone. A sensitive arm is not automatically safe for every patient-contact tool, speed, force or failure scenario.

Before purchase or integration, verify risk analysis, speed and force limits, tool hazards, entrapment, emergency stop, redundant monitoring, validation and clinician procedure. A proper feasibility study should simulate or test the real tool, workpiece, paths, obstacles, process forces and cycle requirement instead of relying only on catalogue reach. Safety belongs to the complete certified medical device, not the arm alone.

You can request KUKA LBR Med 7 R800 application advice through Anton Robots and compare the complete system before purchase.

How is the KUKA LBR Med programmed and controlled? +

The LBR Med works with the KUKA Sunrise Cabinet Med and associated medical integration software. Developers can implement motion, torque, compliance and device-specific behaviour within the supported KUKA environment. The practical result depends on the exact model, controller, tool, load data, installation, environment and application rather than the headline specification alone. Software access, validated libraries, safety architecture and change control depend on the commercial and regulatory project.

Before purchase or integration, verify controller version, APIs, development licences, real-time interfaces, safety functions, cybersecurity, documentation and software lifecycle. A proper feasibility study should simulate or test the real tool, workpiece, paths, obstacles, process forces and cycle requirement instead of relying only on catalogue reach. Obtain written development and maintenance entitlements before designing the product.

You can request KUKA LBR Med 7 R800 application advice through Anton Robots and compare the complete system before purchase.

What is the difference between LBR Med 7 R800 and LBR Med 14 R820? +

The 7 R800 carries 7 kg at 800 mm, while the 14 R820 carries 14 kg at 820 mm. Both use seven axes and the Sunrise Cabinet Med, but the 14 kg model weighs more and has slightly lower listed repeatability. The practical result depends on the exact model, controller, tool, load data, installation, environment and application rather than the headline specification alone. More payload can increase size, inertia and system cost and may not benefit a lightweight instrument application.

Before purchase or integration, verify tool mass, reach, inertia, forces, patient access, mounting, accuracy, device size and future requirements. A proper feasibility study should simulate or test the real tool, workpiece, paths, obstacles, process forces and cycle requirement instead of relying only on catalogue reach. Select the smallest model that retains a validated performance margin.

You can request KUKA LBR Med 7 R800 application advice through Anton Robots and compare the complete system before purchase.

Can the KUKA LBR Med 7 R800 be shipped internationally? +

The LBR Med 7 R800 can be supplied internationally through qualified KUKA medical projects. Delivery depends on the destination country, product status, freight method, export controls, customs, electrical standards, controller configuration and local service coverage. Destination regulations, manufacturer eligibility, electrical standards, documentation, import, installation and service coverage must be confirmed.

Before ordering, confirm who acts as importer of record, whether the controller and software are supported in the destination and who will install, master, commission and validate the robot. Industrial arms require suitable lifting, packaging, foundation planning and protection against transit damage. Medical and collaborative systems can also involve additional regulatory and application-specific responsibilities.

You can request international availability for the KUKA LBR Med 7 R800 through Anton Robots so the complete route can be checked. Buyers should obtain written confirmation of these points before approving a budget, purchase order, integration, medical programme, or production deployment.

Is the KUKA LBR Med 7 R800 in stock and how long does delivery take? +

KUKA LBR Med 7 R800 availability and delivery time can change according to the exact variant, controller, production allocation, seller inventory, refurbishment work and integration scope. Medical arms are normally allocated and configured through project sales rather than standard distributor inventory. A robot appearing online should not automatically be treated as a complete locally stocked system.

Before committing to a production date, ask whether the quoted arm is built to order, physically in stock, used, refurbished or only subject to manufacturer confirmation. Lead time can also be affected by tooling, safety equipment, fixtures, software, freight, customs, commissioning and factory acceptance testing.

You can request current KUKA LBR Med 7 R800 availability through Anton Robots. Buyers should obtain written confirmation of these points before approving a budget, purchase order, integration, medical programme, or production deployment.

What warranty and support should I check for the KUKA LBR Med 7 R800? +

Before buying the KUKA LBR Med 7 R800, confirm the warranty or seller guarantee, covered components, controller and software entitlement, exclusions, service territory, parts availability and repair process. Confirm coverage for the arm, torque sensors, controller, cables and software plus calibration, documentation, service response and validated change control. Ask these questions:

  • Is the arm new, manufacturer-refurbished, integrator-refurbished, or sold as-is?
  • Who supports the controller, drives, motors, encoders, cables and teach pendant?
  • Are mastering, backups, software licences and safety options included?
  • What response time and spare-parts commitment applies to production failures?
  • Who performs installation, risk assessment and application acceptance?
  • How long will the exact generation remain serviceable in the destination country?

Lifecycle support can be more important than the initial hardware price. Contact Anton Robots to review the package before purchase.

Is the KUKA LBR Med 7 R800 worth buying? +

The KUKA LBR Med 7 R800 is worth considering if you are a qualified medical-device developer that genuinely needs sensitive seven-axis motion and can fund the complete regulatory programme. Its strongest value comes from its torque sensing, compact 800 mm reach, seven-axis redundancy, hygienic design and KUKA medical controller ecosystem.

However, the purchase only makes sense when the exact model, payload, reach, controller, environment and support match the application. It is not a plug-and-play surgical or rehabilitation product and cannot be deployed clinically without complete device engineering and approval. Buyers should compare complete installed cost, cycle time, expected uptime, energy, maintenance, integration risk and currently supported alternatives. For a production project, define measurable acceptance criteria before approving the cell rather than selecting a robot only by brand or nominal payload.

Compare other robots in the same category and request application advice through Anton Robots.

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