The ABB IRB 1200 Next Generation is a compact high-precision six-axis industrial robot family built for assembly, dispensing, finishing, machine tending, handling, and electronics production.
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The ABB IRB 1200 Next Generation is a compact high-precision six-axis industrial robot family designed for assembly, dispensing, finishing, machine tending, handling, packing, and electronics production.
It is available in 5, 7, 8, and 9 kg payload variants with 0.7 m or 0.9 m reach, depending on the configuration.
Powered by ABB OmniCore, the family delivers pose repeatability down to approximately 0.011 mm, path repeatability down to 0.03 mm, high-speed motion up to 1,600 mm/s, flexible mounting, integrated utilities, and a design around 20% lighter than its predecessor.
Its broader payload range, improved precision, lighter design, and OmniCore control make the family a versatile current platform for compact, high-speed industrial automation.
Four variants cover small and medium tools, parts, grippers, and process loads.
Compact working envelope fits dense assembly, electronics, handling, and machine cells.
Class-leading pose precision supports accuracy-critical production and process quality.
Modern ABB controller platform provides advanced motion, connectivity, safety, and software.
Reduced manipulator mass can lower pedestal demands, energy use, and installation cost.
Up to 24 signal pins and larger air supply support advanced grippers and sensors.
Industrial robot arm
Assembly, dispensing & finishing
Indoor / industrial production
Current IRB 1200 Gen2
5/7/8/9 kg by variant
700 or 900 mm
Fixed robotic arm
Grippers & process tooling
Up to 1,600 mm/s
Continuous; controller powered
Electric via OmniCore
OmniCore and RobotStudio
External sensors via CP/CS
200 × 230 mm base
42–44 kg by variant



The ABB IRB 1200 Next Generation price is available by quotation and ABB does not publish one global price across all four variants and controller packages. The final cost depends on payload and reach, OmniCore controller, operator interface, protection, utilities, tooling, software, safety and integration. The robot arm is only one part of the investment. A usable industrial robot cell may also require the controller, FlexPendant or operator interface, pedestal, end effector, dress pack, vision, fixtures, safety equipment, PLC and fieldbus integration, guarding, programming, installation, training and production acceptance. Freight, taxes, customs, spare parts and local support can also change the delivered cost.
Before comparing offers, confirm the exact variant, controller generation, condition, included equipment, software licences and service responsibilities. The better buying question is: what is included, what performance is guaranteed, and who supports the complete cell?
You can request ABB IRB 1200 Next Generation pricing or a complete automation quote through Anton Robots before committing.
You can buy or request the ABB IRB 1200 Next Generation through Anton Robots. Anton Robots helps industrial buyers verify the genuine commercial route, compare new, used, refurbished or integrator-built packages and determine whether the ABB IRB 1200 Next Generation matches the payload, reach and process. IRB 1200 Next Generation is an active ABB family introduced with four variants and current OmniCore support.
Before buying, confirm the exact robot variant, serial number where applicable, controller, RobotWare version, mounting orientation, environmental protection, end effector, process equipment, safety architecture, shipping, warranty and commissioning. A bare manipulator listing is not the same as a production-ready cell. Professional buyers should compare the total installed system, production target and support route rather than only the lowest displayed robot price.
To start, request ABB IRB 1200 Next Generation buying or sourcing guidance through Anton Robots.
You can find the ABB IRB 1200 Next Generation for sale through ABB, authorised partners, system integrators and Anton Robots. Finding a ABB IRB 1200 Next Generation for sale is only the first step. Buyers should verify whether the offer is a new supported robot, an integrator package, remaining stock, a used manipulator, a refurbished system or an incomplete arm without the correct controller and software. Confirm whether the offer is 5/0.9, 7/0.7, 8/0.9 or 9/0.7 plus controller, RobotWare, utilities, mounting, protection, tooling and service.
A useful comparison should cover the exact payload and reach variant, controller generation, operating hours, maintenance, calibration, batteries, cables, tooling, safety hardware, delivery, commissioning and warranty. Avoid treating a marketplace listing as proof that ABB will support the exact serial number or configuration.
If you are evaluating a ABB IRB 1200 Next Generation, contact Anton Robots. We can also compare it with other robotic arms for the same application.
Yes. You can request an ABB IRB 1200 Next Generation quote through Anton Robots. A useful quote should identify the exact robot variant, controller, operator interface, RobotWare options, cabling, mounting, protection class, freight, warranty and available support. The proposal should define the exact variant, OmniCore controller, tool, process, fixtures, communications, safety, programming, cycle and acceptance criteria.
The supplier also needs the part weight and dimensions, tool mass and centre of gravity, required reach, cycle time, accuracy, process equipment, floor layout, utilities, communications and safety constraints. This allows the proposal to be based on the real application rather than a generic arm price. Ask for a clear statement of integration scope, production acceptance test, exclusions, delivery milestones and responsibility after commissioning.
Anton Robots can help compare the ABB IRB 1200 Next Generation against other industrial robot arms and prepare a package around the actual task.
A typical ABB IRB 1200 Next Generation package may include the manipulator, selected OmniCore controller, FlexPendant or operator interface, robot cables, RobotWare and mounting hardware. The exact contents vary by country, controller generation, integrator and application, so buyers should request a written bill of supply:
The controller, tooling and application engineering can change the project cost more than the difference between payload variants. End effectors and integration are especially important. The same robot can be configured for welding, machine tending, palletizing, handling, dispensing or assembly, but each task needs different tooling, fixtures, process equipment and safety validation. A low robot-only price may exclude most of what makes the system productive.
You can request an itemised ABB IRB 1200 Next Generation package quote through Anton Robots before approving the cell.
The family has four variants: 5 kg at 0.9 m, 7 kg at 0.7 m, 8 kg at 0.9 m and 9 kg at 0.7 m. The choices let buyers trade reach against payload while keeping a compact six-axis platform. The practical result depends on the exact variant, controller, payload centre of gravity, tool, mounting position, process and cell design rather than the headline specification alone. The 9 kg model does not provide the 0.9 m reach, and every tool and cable reduces available part payload.
Before buying or integrating the robot, verify tool mass, part mass, centre of gravity, reach, wrist moments, mounting and production path. A proper evaluation should use RobotStudio simulation, load diagrams, the real parts and tools, representative cycle testing and a documented safety assessment. Select the variant from the complete load and reach calculation.
You can request ABB IRB 1200 Next Generation application advice through Anton Robots and compare the complete cell or a more suitable current ABB alternative.
ABB states pose repeatability down to approximately 0.011 mm and path repeatability down to 0.03 mm. The OmniCore-powered motion platform targets high-end assembly, dispensing and finishing applications where path and position quality matter. The practical result depends on the exact variant, controller, payload centre of gravity, tool, mounting position, process and cell design rather than the headline specification alone. The best value depends on variant and test condition and does not include fixture, vision, tool or thermal error.
Before buying or integrating the robot, verify required tolerance, path or point accuracy, Absolute Accuracy, calibration, payload, tool, fixture, temperature and acceptance test. A proper evaluation should use RobotStudio simulation, load diagrams, the real parts and tools, representative cycle testing and a documented safety assessment. Specify the process tolerance rather than quoting the best family number alone.
You can request ABB IRB 1200 Next Generation application advice through Anton Robots and compare the complete cell or a more suitable current ABB alternative.
The new family is designed for high-speed motion up to approximately 1,600 mm/s in the stated performance context. ABB also promotes cycle times around 5% faster than the previous IRB 1200 generation. The practical result depends on the exact variant, controller, payload centre of gravity, tool, mounting position, process and cell design rather than the headline specification alone. Maximum linear speed is not the same as safe or achievable cycle speed with a loaded tool and process constraints.
Before buying or integrating the robot, verify the complete path, payload, acceleration, settle time, process dwell, collision clearance and RobotStudio cycle estimate. A proper evaluation should use RobotStudio simulation, load diagrams, the real parts and tools, representative cycle testing and a documented safety assessment. Validate the end-to-end production cycle with the actual application.
You can request ABB IRB 1200 Next Generation application advice through Anton Robots and compare the complete cell or a more suitable current ABB alternative.
Yes, the family is designed for floor, wall and ceiling or inverted mounting. Its lighter design and compact footprint can reduce support structure and improve cell density. The practical result depends on the exact variant, controller, payload centre of gravity, tool, mounting position, process and cell design rather than the headline specification alone. Any orientation still needs a structure designed for the dynamic forces, service access and cable movement.
Before buying or integrating the robot, verify ABB mounting limits, forces, pedestal or frame, bolts, reach, maintenance, cable routing and safety clearance. A proper evaluation should use RobotStudio simulation, load diagrams, the real parts and tools, representative cycle testing and a documented safety assessment. Have the integrator certify the final mounting design.
You can request ABB IRB 1200 Next Generation application advice through Anton Robots and compare the complete cell or a more suitable current ABB alternative.
ABB lists compatibility with OmniCore E10, C30, C90XT and V250XT. This allows buyers to match cabinet size, environmental protection, external axes, I/O and application complexity. The practical result depends on the exact variant, controller, payload centre of gravity, tool, mounting position, process and cell design rather than the headline specification alone. Not every controller option, safety package or external-axis arrangement is identical across markets and variants.
Before buying or integrating the robot, verify controller model, RobotWare, SafeMove, external axes, drives, I/O, fieldbus, enclosure, power and software licences. A proper evaluation should use RobotStudio simulation, load diagrams, the real parts and tools, representative cycle testing and a documented safety assessment. Choose the controller from the complete cell architecture.
You can request ABB IRB 1200 Next Generation application advice through Anton Robots and compare the complete cell or a more suitable current ABB alternative.
The family offers up to 24 customer power and signal pins plus a larger integrated air hose. These utilities can support more grippers, sensors and vacuum functions while reducing external cable wear and interference. The practical result depends on the exact variant, controller, payload centre of gravity, tool, mounting position, process and cell design rather than the headline specification alone. The exact CP/CS option, voltage, current, air flow and connector must match the selected tool.
Before buying or integrating the robot, verify tool electrical load, signals, air demand, connector, cable class, wrist movement, I/O and maintenance access. A proper evaluation should use RobotStudio simulation, load diagrams, the real parts and tools, representative cycle testing and a documented safety assessment. Specify utilities at quotation stage rather than adding unmanaged external cables later.
You can request ABB IRB 1200 Next Generation application advice through Anton Robots and compare the complete cell or a more suitable current ABB alternative.
Choose IRB 1200 Next Generation for premium compact precision, IRB 1300 for more payload or reach and IRB 1100 for smaller four-kilogram tasks. The families cover different footprints, payloads, reaches, protection and cycle requirements. The practical result depends on the exact variant, controller, payload centre of gravity, tool, mounting position, process and cell design rather than the headline specification alone. A larger model can increase cell size and energy, while a smaller one may leave no payload or reach margin.
Before buying or integrating the robot, verify tool and part load, reach, accuracy, path, cycle, mounting, environment, controller, footprint and future product mix. A proper evaluation should use RobotStudio simulation, load diagrams, the real parts and tools, representative cycle testing and a documented safety assessment. Select the smallest current robot that meets the validated process with margin.
You can request ABB IRB 1200 Next Generation application advice through Anton Robots and compare the complete cell or a more suitable current ABB alternative.
The ABB IRB 1200 Next Generation can be supplied internationally through ABB’s global channel and integrator network. Industrial robot delivery depends on the destination country, robot condition, controller, freight method, export rules, customs and local service coverage. Confirm regional controller configuration, electrical standard, certifications, freight, ABB service and local application support.
Before ordering, confirm who disconnects, preserves, packs, lifts, insures, imports, installs, anchors, reconnects, calibrates and recommissions the system. Used robots should be shipped with transport restraints, controller cabinets, FlexPendant, cables, backups and maintenance records. A robot that can physically be transported is not necessarily supported or ready for production in another country.
You can request international availability for the ABB IRB 1200 Next Generation through Anton Robots so the complete delivery and commissioning route can be checked. Buyers should obtain written confirmation of these points before approving a budget, purchase order, integration project, or production deployment.
ABB IRB 1200 Next Generation availability and lead time can change according to model status, variant, controller, options, integrator capacity and destination. The family is current, but variant, controller, utilities, options, tooling and engineered-cell scope determine delivery time.
Before committing to a production date, ask whether the robot is factory ordered, remaining stock, used, refurbished or already allocated, and whether the controller, tooling, safety system and integration resources share the same schedule. Cell design, RobotStudio simulation, manufacturing of fixtures, software, factory acceptance testing, freight, installation and site acceptance often take longer than obtaining the arm itself.
You can request current ABB IRB 1200 Next Generation availability and project lead time through Anton Robots. Buyers should obtain written confirmation of these points before approving a budget, purchase order, integration project, or production deployment.
Before buying the ABB IRB 1200 Next Generation, check the warranty or refurbishment guarantee, covered components, service territory, repair process, software entitlement, spare-parts availability and who supports the integrated cell. Confirm ABB coverage for manipulator, controller, operator interface and options and separate integrator coverage for tooling, fixtures and software. Ask:
For a legacy robot, serial-number support and spare-parts horizon are primary buying criteria. Contact Anton Robots to review the complete package. Buyers should obtain written confirmation of these points before approving a budget, purchase order, integration project, or production deployment.
The ABB IRB 1200 Next Generation is worth considering if you need a current compact ABB robot with high precision, 5–9 kg payload and modern OmniCore control. Its strongest value comes from its four variants, exceptional repeatability, lighter architecture, integrated utilities, flexible mounting and current lifecycle.
However, a robot arm only creates value when the task, tool, fixture, controller, safety design, cycle time and support are correctly engineered. It remains a non-collaborative industrial arm requiring a complete tool, cell, safeguarding and integration and is limited to a 0.9 m maximum reach.
Buyers should compare total installed cost, expected throughput, quality, uptime, maintenance, energy, changeover and remaining product life rather than only payload and purchase price. For a legacy unit, a low acquisition cost can be outweighed by integration, batteries, calibration, parts and downtime risk. Compare other robotic arms and request application advice through Anton Robots.
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