IRB 6710 Six-axis robotic arm (manipulator)
Multi-joint Robot · Load range: 175-210 kg · Reach: 2.65-2.95 m
IRB 6710 Specification Parameters
Modular design, high-performance large robots. Suitable for a load range from 175kg to 210kg, offering customers more choices, higher performance, and up to 20% energy savings. ABB further expands its large robot family, launching four energy-saving new products with 22 options covering a wider range of fields, providing customers with more choices and higher performance. The new generation of large robots includes IRB 6710, IRB 6720, IRB 6730, and IRB 6740, suitable for load ranges from 150kg to 310kg, with working radii from 2.5m to 3.2m, providing customers with more choices while significantly improving performance and reducing energy consumption. The development of the IRB 6710-6740 large robot series is designed to meet diverse and flexible needs, helping customers ensure production continuity and corporate resilience across industries including automotive, electric vehicles, general industry, foundry, electronics, food and beverage, and logistics.
Model introduction
Modular design, high-performance large robots. Suitable for a load range from 175kg to 210kg, offering customers more choices, higher performance, and up to 20% energy savings. ABB further expands its large robot family, launching four energy-saving new products with 22 options covering a wider range of fields, providing customers with more choices and higher performance. The new generation of large robots includes IRB 6710, IRB 6720, IRB 6730, and IRB 6740, suitable for load ranges from 150kg to 310kg, with working radii from 2.5m to 3.2m, providing customers with more choices while significantly improving performance and reducing energy consumption. The development of the IRB 6710-6740 large robot series is designed to meet diverse and flexible needs, helping customers ensure production continuity and corporate resilience across industries including automotive, electric vehicles, general industry, foundry, electronics, food and beverage, and logistics.
Large multi-joint robots · Series technical features
ABB's large six-axis robots cover loads ranging from 125 to 800 kg with a reach of 1.93 to 4.2 m, specifically designed for heavy-duty handling, palletizing, spot welding, and large machining for high-intensity applications.
The IRB 8700 supports a maximum load of 800kg, while the IRB 7720 supports 620kg, easily handling vehicle bodies and heavy workpiece handling.
The maximum working radius can reach 4.2m, covering a wide working area around large workpieces.
The optimized mechanical structure ensures excellent repeatability even under high loads.
Some models support multiple reach configurations (such as the IRB 7600, which offers 5 reach options), precisely matching workshop space.
Typical application scenarios
Common application processes for this model (click to view process details):
Large multi-joint robots · Other models in the same series
Compare load and reach to choose the model that best suits your process.





IRB 6710 model positioning and working condition adaptation
IRB 6710 This is an industrial robot model belonging to ABB's large multi-joint robot, with a rated load of 175kg and a motion radius of 2650mm. ABB's technical foundation is TrueMove/QuickMove, excellent motion control, high trajectory accuracy, and RAPID language that is easy to read and maintain; The control platform is the OmniCore series, and the programming ecosystem consists of RAPID language + FlexPendant teach pendant.
From the perspective of working condition adaptation, the typical use for positioning large loads (175kg) is:Integrated palletizing, die-casting and part-picking, heavy handling and weldingCommon application processes for this model include handling, palletizing, cutting, and assembly. The extra-long boom (2650mm) is suitable for large workpieces and cross-line services, with attention to rigidity and vibration during large overhanging postures. Foundation load-bearing and base fastening torque under heavy load conditions are essential items for installation acceptance; if the inertia ratio exceeds the limit, the cycle time will degrade significantly.
| Parameters | Engineering interpretation and usage recommendations |
|---|---|
| Rated load capacity: 175kg | It is recommended to reserve a load margin of 20%–30%; Verification is made by combining end self-weight + workpiece + imbalanced load inertia, especially sensitive to high-speed conditions |
| Movement radius: 2650mm | Determine the radius of the workcell layout: bins, tooling, and fences are bounded by maximum arm span + safety distance; Verify the accessibility of each pick-and-place point during cross-station service |
| Controller: OmniCore series | Decide on the process ecosystem, spare parts channels, and second-hand residual value; Currently, spare parts channels are smooth, and repair and upgrade paths are mature |
Control systems and common failure modes
The OmniCore series controller accompanying the IRB 6710 uses RAPID language and development environment + FlexPendant teach pendant. Maintenance of this generation of control platforms focuses on three basic components: power, storage, and cooling—most "sudden downtime" can be detected in advance when preventive maintenance is in place.
| Failure mode | Typical performance | Disposal recommendations |
|---|---|---|
| Driver module fault code | Driver module fault code (3 series power module aging, reporting 20032/20043 error) | Included as a mandatory inspection item for annual maintenance, with spare parts stocked in advance |
| SMB measurement board battery depletion leads to loss of origin | SMB measurement board battery depletion causing loss of origin (multi-axis simultaneous alarm) | Initial interpretation of alarm codes by reference with manuals, remote diagnosis allows for early positioning |
| Control cabinet fan and temperature control failure causing over-temperature shutdown | Control cabinet fan and temperature control failure causing over-temperature shutdown | Daily inspection coverage, with abnormal trends (abnormal noises/temperature rise/errors) recorded |
| Intermittent communication failures caused by cable and drag chain wear | Intermittent communication failures caused by cable and drag chain wear | Quarterly dust removal maintenance and cabinet temperature monitoring |
| Maintenance projects | Cycle recommendations | Key points |
|---|---|---|
| SMB battery packs are replaced every 2–3 years | According to the manufacturer's manual cycle | SMB battery packs are replaced every 2–3 years, and the zero points of each shaft are calibrated immediately after replacement |
| Gearbox lubricating oil is tested and replaced hourly (oil sample metal shavings analysis) | According to the manufacturer's manual cycle | Gearbox lubricating oil is tested and replaced hourly (oil sample metal shavings analysis) |
| Regularly clean and replace the Drive Module fan unit | Periodically | Regularly clean and replace the Drive Module fan unit |
| Cable and drag chain inspection | every six months | Insulation, shielding, and bending radius inspection of power and encoder lines, as well as wear of cables inside the drag chain, are the main causes of intermittent faults |
| Zero point and accuracy retest | Every year | Repeatability measured by dial gauges or laser trackers, drift trend digitization—accuracy degradation can be seen six months in advance |
| Control cabinet dust removal and fans | Every quarter | Filter cleaning, fan speed and noise checks, cabinet temperature recording; Dust environments shorten the cycle |
Henghuan's service capabilities for IRB 6710
This site is a third-party robotics technology service provider. The eight major business supports related to IRB 6710 are as follows (sorted by service frequency for each model):
- Maintenance and repair: For IRB 6710 on-site diagnostics, board-level repairs, and annual maintenance contracts—SMB battery pack replacement every 2–3 years, we implemented brand-exclusive items according to SOPs, with same-day response from Sichuan and Chongqing.
- Used & in-stock robot sales: IRC5 generation has a large circulation and abundant documentation; S4C old cabinets are becoming increasingly scarce, so it is recommended to evaluate and upgrade control controls; In-stock IRB 6710 or equivalent models come with a full-function test report and a 12-month warranty.
- Sales of new industrial robots: When adding new production lines or replacing entire batches, we conduct cross-brand selection comparisons based on process requirements (including ABB models of the same class) and provide configuration and pricing plans.
- Applied technology services: Process programming, trajectory optimization, tap time potential, and reshaping formula management for IRB 6710, with targeted commissioning according to handling, palletizing, cutting, and assembly conditions.
- Research and development of automation equipment: Custom fixture ends, peripheral tooling, and safety fences for IRB 6710, with interfaces designed according to ABB flange and IO standards.
- Robot rental: For short-term capacity or process validation periods, IRB 6710 equivalent in-stock models can be rented, including transportation, installation, and commissioning, with flexible rental terms and repurchasing.
Common issues with this device
Is it easy to find spare parts for IRB 6710?
ABB's spare parts channels for this generation are smooth; we have in-stock or short-cycle channels for standard parts such as drivers, power modules, batteries, and teach pendant components; It is recommended to configure replacement consumables for SMB battery packs every 2–3 years according to the annual maintenance contract.
With a nominal load of 175kg, how much can it actually handle?
The rated load is the static load limit of the flange surface. In actual selection, three factors must be considered: the self-weight of the end fixture (vacuum suction cup groups or grippers often account for 2–5kg), the inertia generated by the workpiece offload (checked according to the inertia ratio when the center of gravity deviates from the flange center), and the dynamic load during high-speed movement. The conventional engineering practice is to keep the "end + workpiece" within 70%–80% of the rated value to ensure cycle time and service life.
If the equipment's accuracy deteriorates after several years of use, how can it be restored?
According to the inspection order: first check whether the zero point is drifting (common after collision or battery depletion), then perform zero calibration; Check the reducer's return error (actual measurement of forward and reverse positioning deviation; if exceeded, disassemble or replace); Then check the installation base fastening and foundation settlement; Finally, trajectory compensation parameter restructuring. Most accuracy issues can be mostly restored after calibration and maintenance, so there is no need to rush into major repairs—we first release the inspection data before deciding on the plan.
Is the used IRB 6710 worth buying?
IRC5 generation has a large circulation volume and abundant documentation, and the gradual shortage of S4C old cabinet spare parts suggests upgrading evaluation and control. Three essential items for second-hand procurement: comprehensive inspection reports (axial accuracy, driver status, insulation and battery), maintenance history and operating hours, controller generation, and software license integrity. Every used machine we sell comes with inspection records and a 12-month warranty, and we can also accept third-party inspections designated by customers.
Need technical support or procurement for this model?
Whether it's model selection comparison, installation and commissioning, or maintenance of in-use equipment, you can contact Henghuan. Tell us about your processes, loads, and equipment status, and we will provide third-party technical support and solution recommendations.
Contact Henghuan Back to the full series