KUKA KR 50 R2500 is a 50 kg KR IONTEC industrial robot with about 2,501 mm reach for handling, machine tending, palletizing, assembly, and process automation.
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KUKA KR 50 R2500 is a six-axis KR IONTEC industrial robot designed for medium-payload handling, machine tending, palletizing, assembly, dispensing, and process automation.
It combines a 50 kg rated total load, approximately 2,501 mm maximum reach, flexible mounting, and standard, cleanroom, foundry, food and revised -2 configurations.
The robot is strongest where a relatively slim 50 kg arm must cover large machines, pallets, fixtures, or multi-station cells without moving into the largest heavy-robot class.
Its 50 kg payload, long reach, and relatively slim structure make KR 50 R2500 particularly suitable for large work envelopes that require substantial handling capacity without moving to an ultra-heavy robot.
Handles substantial workpieces, grippers, fixtures, and process equipment.
Large envelope for machines, pallets, conveyors, and multi-station cells.
Standard, cleanroom, foundry, food and revised variants are available.
Selected versions support floor, ceiling, wall, and angled installation.
KUKA lists protected body and wrist areas depending on the exact variant.
Current KUKA control platform supports integration, safety, and programming.
Industrial robot arm
Handling, palletizing and welding
Indoor industrial; IP65/IP67
Guarded production cell with flexible mounting options
50 kg
2,501 mm
Fixed robotic arm; floor, ceiling, wall or angled mounting
Application-specific grippers, welding torches and industrial process tools
Axis speeds up to 360°/s (A6)
Mains powered
Electric through a KUKA KR C5-series controller
KR C5 / C5-2 and smartPAD
Joint encoders; KUKA vision, force sensing and process sensors are application-specific
Maximum reach: 2,501 mm; overall envelope depends on mounting and joint pose
559 kg



The KUKA KR 50 R2500 price is normally available by project quote rather than as one fixed global list price. The final cost can depend on the exact KR 50 R2500, R2500-2, cleanroom, foundry, food or other environmental version, controller, software options, end effector, vision, fixtures, safety equipment, integration, installation, training, shipping, taxes, warranty and regional support. A robot arm or mobile system is only one part of the deployed solution. Two quotations can therefore look very different: one may cover mainly the core hardware, while another may include tooling, guarding, programming, commissioning and production acceptance.
Buyers should compare the total installed cost and the expected output, not only the robot line item. Ask the supplier to state what is included, what the customer must provide and which assumptions were used for payload, reach, cycle time and environment.
You can request a KUKA KR 50 R2500 quote through Anton Robots to compare the complete package, delivery terms and support before ordering.
You can buy, order or request the KUKA KR 50 R2500 through Anton Robots. We help buyers check the correct commercial route, compare the available package, understand what is included and decide whether the robot fits the intended application. KUKA KR 50 R2500 is part of KUKA’s current KR IONTEC portfolio and is purchased through project quotation. Before ordering, confirm the exact KR 50 R2500, R2500-2, cleanroom, foundry, food or other environmental version, controller, mounting, payload, reach, end effector, software, safety, integration and local service.
This matters because the same model name can appear in a bare-hardware quotation, a partially engineered package or a complete turnkey cell. The lowest headline price is not always the lowest-risk purchase if tooling, programming, installation or support are omitted.
To begin, request a KUKA KR 50 R2500 quote and Anton Robots can help compare the robot, application package, shipping, warranty and support. Anton Robots can help compare KUKA KR 50 R2500 proposals on the same application scope, including tooling, safety, commissioning, delivery, warranty and local support.
You can find the KUKA KR 50 R2500 for sale through the manufacturer, authorised robot integrators, industrial automation suppliers and specialist marketplaces such as Anton Robots.
However, finding a listing is only the first step. Confirm the exact suffix or configuration, controller generation, condition, included cables, teach pendant, licences, tooling, safety equipment and service coverage. A listing described only by the family name may not identify the payload, reach, environment version or mounting arrangement required for your process. For professional buyers, compare the total delivered and commissioned cost rather than the arm price alone.
If you need the robot for a production deadline, also verify manufacturing lead time, integrator capacity, acceptance testing and spare-parts availability. Contact Anton Robots to review a KUKA KR 50 R2500 offer before purchasing. Request a formal specification rather than relying on a marketplace title or promotional image. The model suffix, controller, environment version and included application package should match the quotation. Stock claims should be tied to a serialised unit or confirmed production allocation, not a generic product page.
Yes. You can request a quote for the KUKA KR 50 R2500 through Anton Robots.
A useful quotation should identify the exact KR 50 R2500, R2500-2, cleanroom, foundry, food or other environmental version, controller, teach pendant or operator interface, software, mounting, gripper, process tool, dress pack, vision, pedestal, fixtures and safety equipment, safety, engineering, programming, commissioning, training, delivery and warranty. It should also state the assumed workpiece, payload including tooling, centre of gravity, required reach positions, cycle target, utilities and operating environment.
This matters because an apparently inexpensive proposal can become more expensive once omitted hardware, integration, freight, duties or site work are added. Ask for clear exclusions and an acceptance-test plan. Anton Robots can help compare proposals on the same scope so the decision is based on deployable value rather than an incomplete base price. The supplier should be given enough application data to size the system correctly: part drawings, weight, centre of gravity, cycle target, process forces, machine layout, utilities and operator workflow. Without that information, the quotation is only a budget estimate and should not be treated as a deployable commitment.
A typical KUKA KR 50 R2500 package may include the core robot and the items specified by the selected commercial configuration. The exact delivery varies by country, application and integrator, so request a written packing and scope list. Confirm whether the offer includes:
A quotation for the arm alone is not a working automation system. Compare what is included, what remains optional and what the customer must supply. You can request an itemised KUKA KR 50 R2500 package through Anton Robots before buying.
The written scope should distinguish manufacturer-standard hardware from integrator-built equipment and customer-supplied items. It should also define documentation, source-code ownership, electrical drawings, risk assessment, manuals and acceptance testing. These deliverables affect the buyer’s ability to maintain or modify the system later.
The KUKA KR 50 R2500 may be available for international delivery, but this depends on the manufacturer’s sales territory, destination, export rules, freight method, local certification, installation needs and support coverage. Industrial robots can require specialist crating, insurance, customs handling, unloading equipment, foundation or mounting preparation and local commissioning.
Before ordering, ask whether the quote includes freight, insurance, customs clearance, import duties, VAT or GST, local delivery, installation and return shipping for warranty work. Also confirm voltage, controller specification, language, safety documentation and whether an authorised service partner supports the destination.
International buyers should compare landed and commissioned cost, not only the factory price. Anton Robots can help request a destination-specific quotation. Confirm that local installation and service can be provided after the robot arrives. A lower overseas price may lose its advantage if the buyer must source rigging, electrical work, safety validation, programming and emergency support separately. The landed price and the commissioned price should be shown as different totals.
KUKA KR 50 R2500 availability and delivery time can change according to the selected KR IONTEC variant, controller, tooling, integrator capacity, safety engineering and production acceptance plan. Some distributors may hold a robot or demonstration unit, while most industrial projects are configured and scheduled after the application is reviewed. Lead time can also be affected by grippers, vision, process equipment, safety hardware, custom fixtures, software, factory acceptance testing, freight and site readiness.
Do not assume an online product page means immediate stock. Ask the supplier to identify whether the robot is new, demonstration, refurbished or build-to-order; the exact controller and variant; the estimated ship date; and the commissioning schedule.
If the robot is required for a shutdown or launch date, include schedule milestones and delay responsibilities in the quotation. Ask for separate dates for robot availability, tooling completion, factory acceptance, shipment, site installation and production acceptance. Delays often come from custom tooling or site readiness rather than the arm itself. The project plan should identify dependencies and the person responsible for each milestone.
Before buying the KUKA KR 50 R2500, confirm the written warranty period, covered components, exclusions, repair location, response process and who pays freight or engineer travel. Review KUKA maintenance, gearbox and motor support, controller software, spare parts, dress packs and authorised integrator coverage. Also ask whether batteries, wear parts, end effectors, third-party software, customer modifications and process equipment are covered.
A robot can remain in service for many years, so long-term controller, teach pendant, motor, gearbox and cable support may matter more than a small difference in purchase price. For a production-critical installation, define escalation contacts, response expectations, backup procedures and spare-parts strategy.
You can contact Anton Robots to compare warranty and support terms before ordering. Support quality should be evaluated against the operational importance of the cell. A training-only robot can tolerate a slower response route, while a production bottleneck may need local spares, remote diagnostics and defined service escalation. Ask how software updates and replacement controller hardware will be managed over the expected life.
The KUKA KR 50 R2500 is worth considering if its payload, reach, speed, environment rating and integration ecosystem match the process you need to automate. Its 50 kg load and roughly 2.5 m reach provide useful coverage for substantial industrial cells without requiring the footprint and cost of a very heavy robot. It is not the right purchase if the task falls outside the robot’s rated load, workspace or process capabilities, or if the business case depends on unrealistic cycle time or unattended operation.
The decision should include tooling, safety, engineering, training, maintenance, downtime risk and expected production life. Compare alternatives using the same assumptions and test the actual parts whenever possible.
You can browse other industrial robotic arms or request application advice through Anton Robots before committing. To judge value, calculate output improvement, labour redeployment, scrap reduction, quality, uptime and changeover benefits against the full installed cost. Include maintenance, consumables and internal engineering time. A robot can be technically capable but commercially weak if the process volume or product stability is too low.
The standard KUKA KR 50 R2500 has a rated total load of 50 kg and maximum reach of approximately 2,501 mm. Revised R2500-2 versions are listed around 2,500 mm.
Payload includes the gripper, dress-pack components at the flange, sensors and workpiece; centre of gravity and wrist inertia must also remain within limits. The exact mounting positions and protection ratings depend on the standard, cleanroom, foundry, food or revised variant. Verify the complete model code, load diagram and every required pose before ordering. Final sizing should use the complete tool and workpiece, not only the product mass.
Verify centre of gravity, wrist inertia, required orientation, acceleration and all critical poses in a 3D study. A robot operating near its limit may deliver less cycle performance and leave little capacity for future product changes. Document the assumptions used for payload, reach, environment and throughput so later changes can be priced and assessed without weakening the original safety or performance case.
The KUKA KR 50 R2500 is suited to medium-payload material handling, machine tending, palletising, part transfer, assembly, dispensing, gluing, inspection and process automation. Its 2.5 m reach can serve large machines, pallets and multi-station fixtures, while 50 kg capacity supports substantial grippers and workpieces.
Foundry, food and cleanroom variants broaden the environment range when correctly specified. It is not a collaborative robot and generally requires a safeguarded cell. The business case should include tooling, pedestal, foundation, cycle time and operator access.
The integrator should observe the current process and test representative parts whenever possible. Variability in presentation, tolerances, surfaces and operator interventions can determine whether the robot meets the target. The application should be defined as a complete workflow, not only a list of robot motions. Anton Robots can help compare KUKA KR 50 R2500 proposals on the same application scope, including tooling, safety, commissioning, delivery, warranty and local support.
KUKA lists KR C5 and KR C5-2 controller options across current KR IONTEC configurations, with exact compatibility depending on the variant and market. The quote should identify the controller cabinet, smartPAD, software version, safety options, fieldbus, I/O, licences and robot cables. Confirm application software, simulation, offline programming and plant-standard communication.
The integrator should deliver backups, electrical drawings, safety documentation and source code. Controller selection can affect cabinet footprint, energy, maintenance and future service.
Ask for program backups, source-code access, electrical drawings, network settings, user permissions and recovery instructions. The buyer should be able to restore operation after a controller replacement or software fault. Cybersecurity and plant-network approval should also be addressed before the system is connected. The selected supplier should confirm the specification in writing and demonstrate the critical cycle or process before the buyer approves final production acceptance.
KUKA KR 50 R2500 is a conventional industrial robot and is not intended for unrestricted collaborative operation. A 50 kg payload and long reach can create serious impact, crushing and trapping hazards.
The process may add sharp tools, hot parts, machine motion, pressure, dust or chemicals. A task-specific risk assessment will normally require fencing, interlocked access, scanners, safe zones, emergency stops and controlled restart. Foundation stability, payload data and tool retention also affect safety. Specialist food, cleanroom or foundry construction changes environmental suitability, not collaboration status.
Safety must be validated for the robot, tool, workpiece, process and surrounding machines together. A manufacturer safety function is only one component of the final system. The integrator should provide the risk assessment, safety validation report, operating procedures and training required by the destination workplace. Document the assumptions used for payload, reach, environment and throughput so later changes can be priced and assessed without weakening the original safety or performance case.
The correct version depends on the production environment. KUKA lists standard KR 50 R2500, cleanroom CR lite, foundry F, food HO and revised R2500-2 configurations. These variants can differ in mounting positions, body protection, wrist protection, materials, coatings, lubricants and controller compatibility. Confirm cleaning chemicals, dust, heat, moisture, hygiene and contamination requirements with the integrator.
Do not assume that a standard robot can be converted economically after installation. The full suffix and environmental documentation should appear in the quotation.
Tool selection should be demonstrated with the real part range and expected contamination, wear or surface variation. Include spare fingers, cups, seals, cables and calibration procedures. Vision performance should be tested under production lighting and at the required throughput, not only in a controlled demonstration. Anton Robots can help compare KUKA KR 50 R2500 proposals on the same application scope, including tooling, safety, commissioning, delivery, warranty and local support.
Choose the KR 50 R2500 when the complete tool and workpiece remain comfortably within 50 kg and the 2.5 m envelope covers all required poses. A 70 kg or heavier robot may provide more wrist-inertia margin, larger tooling and future flexibility, but it can increase footprint, foundation load, energy use and purchase cost. Compare the full load diagram, centre of gravity, cycle time, mounting and environmental option.
If the application operates continuously near the limit, a larger robot may achieve better acceleration and reliability. Model both options with the actual tool.
Compare alternatives using the same assumptions for tooling, safety, integration, delivery and support. A lower-payload or simpler robot may be better when it achieves the task with less footprint and engineering, while a larger model may provide useful future margin. Document why the selected configuration is the best fit. The selected supplier should confirm the specification in writing and demonstrate the critical cycle or process before the buyer approves final production acceptance.
A complete KUKA KR 50 R2500 quote should identify the exact standard, -2, cleanroom, foundry or food variant, controller, smartPAD, cables, software and safety options. Include the gripper or process tool, dress pack, pedestal, foundation, vision, fixtures, guarding, electrical panel, programming, commissioning and training.
State payload, centre of gravity, reach positions, cycle target, environment and acceptance test. Freight, rigging, installation, warranty, preventive maintenance, spare parts and regional support should be itemised. Compare proposals on the same turnkey scope rather than the arm price.
The quote should finish with measurable acceptance criteria such as cycle time, placement accuracy, uptime, changeover time and successful handling of defined part variants. Payment milestones and warranty start should be linked to clear project stages. This converts a hardware purchase into an accountable automation project. Document the assumptions used for payload, reach, environment and throughput so later changes can be priced and assessed without weakening the original safety or performance case.
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