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Product Description
Scope of work and installation diagram

Detailed Product Description
In automated production, versatility is often just as important as speed or payload. Manufacturers need robotic systems that can shift between tasks, fit into different cell layouts, and maintain stable performance under demanding conditions. The Multipurpose Robot BR20iB-20 is designed for exactly that kind of industrial flexibility. Built for handling, welding, and cutting, it combines multi-process capability with precise 6-axis articulation, making it a practical choice for facilities that value both productivity and process consistency.
Its 6-axis motion gives the robot the freedom to approach parts from multiple angles, navigate around fixtures, and perform smooth, controlled movements in applications where access and path accuracy matter. Whether it is transferring components between stations, supporting repeatable weld paths, or executing cutting tasks that require reliable positioning, the robot’s articulated structure helps users integrate automation without being locked into a narrow single-purpose workflow.
Supports multiple industrial processes, including handling, welding, and cutting
6-axis configuration enables flexible movement and better access to complex work zones
±0.08 mm repeatability helps improve consistency in repetitive operations
Flexible installation allows easier adaptation to different production layouts
Suitable for facilities seeking a balance between precision and application versatility
Factory floor space is rarely unlimited. Integrators and end users often need to work around conveyors, tooling stations, safety fencing, and existing equipment. One of the practical strengths of the Multipurpose Robot BR20iB-20 is its flexible installation capability. This gives engineering teams more freedom when planning robotic cells, whether the goal is to optimize floor usage, improve part flow, or integrate the robot into a new or existing line.
This installation flexibility can be particularly useful in facilities managing mixed production or phased automation upgrades. Rather than redesigning an entire area around one machine, teams can place the robot in a way that better supports process requirements, operator access, and maintenance routines. That makes deployment more practical and often more scalable over time.
Material handling: Moving parts between workstations, loading and unloading production equipment, or supporting repetitive transfer tasks where stable positioning improves workflow efficiency.
Welding support: Performing automated weld paths in environments where consistent movement and repeatable positioning contribute to process reliability.
Cutting operations: Assisting cutting applications that benefit from controlled robotic motion and the ability to approach workpieces from multiple directions.
products faq
A welding robot is an automated system consisting of a robotic arm, welding power source, wire feeder, and control unit. It follows pre-programmed paths to position the welding torch and execute welds with high precision. The robot can perform various welding processes including MIG/MAG, TIG, and plasma welding, with motion controlled by a PLC or CNC system that ensures repeatable accuracy.
Welding robots offer several key benefits:
Consistent quality – eliminates human error and fatigue
High productivity – operates continuously with minimal downtime
Labor savings – reduces dependence on skilled welders
Safety – removes operators from hazardous environments (fumes, heat, arc flash)
Precision – achieves repeatable accuracy within ±0.1mm
Welding robots are highly versatile and can handle a wide range of workpieces, including:
Structural steel components (H-beams, columns, frames)
Pipe and tube assemblies
Pressure vessels and tanks
Automotive and machinery parts
Custom fabricated assemblies
The robot can be equipped with positioners, rotary tables, and tracking systems to accommodate complex geometries and large components.
Modern welding robots feature user-friendly programming interfaces, including:
Teach pendant – operators guide the robot through the weld path, which is then stored as a program
Offline programming – allows programming from a computer without interrupting production
Intuitive software – simplifies parameter setting for speed, voltage, current, and weave patterns
Operators with basic welding knowledge can typically become proficient after short training.
Routine maintenance includes:
Checking and replacing welding consumables (contact tips, nozzles, liners)
Inspecting cables, hoses, and connections for wear
Lubricating robotic arm joints and gearboxes
Cleaning protective glass and sensors
Updating software and backing up programs
Regular preventive maintenance schedules help ensure long-term reliability and minimize production downtime. Our service team provides comprehensive technical support and spare parts availability.