Product Introduction
The iNexBot C1102 EtherCAT industrial robot control system is based on an IPC + RTOS design and supports the X86 computing platform with a variety of real-time operating systems.
iNexBot's proprietary control algorithms support standard robot configurations such as serial articulated, parallel articulated, SCARA, cartesian, and link-type structures, and can also be customized for special-structure articulated robots.
Thanks to iNexBot's outstanding hardware platform and algorithm capability, the NRC series control systems support heterogeneous multi-robot collaboration, as well as synchronized motion and interpolation of up to 64 axes.
iNexBot currently offers a broad range of general-purpose processes, including arc welding, TIG welding, laser welding, resistance welding (spot welding), laser cutting, spray painting, dispensing, palletizing, and conveyor tracking, with custom process development available on request.
Using the NexDroid OpenAPI interface, users can design and develop their own process systems and human-machine interfaces, and can even implement dedicated robot forward/inverse kinematics and trajectory-planning algorithms.
iNexBot control systems have been proven on more than 10,000 industrial robot installations, earning customers' trust through their reliability and stability. iNexBot's unique NexDroid Open API further provides high scalability and configurability to meet the needs of customers across different industries.
Product Features

Excellent scalability. The NRC series robot controllers use EtherCAT and CANopen buses for servo master/slave station connection, supporting synchronized motion of up to 64 axes and widely used in robot and CNC equipment control. Compared with traditional pulse-based control solutions, they dramatically reduce system wiring and maintenance costs while offering outstanding expandability.

Multi-robot collaboration with secondary development support. The NRC supports multi-robot collaboration, simultaneously coordinating up to 4 industrial robots, and supports customer secondary development.
Specifications
| Model | C1102 |
|---|---|
| CPU | Intel Celeron J1900 2.0GHz |
| Memory | 4G |
| Power | 24V (±10%) |
| OS | Linux RT |
| Network ports | 1*EtherCAT, 1*Ethernet |
| USB | 1*USB 3.0, 3*USB 2.0 |
| COM | 1*RS232, 1*RS485 |
| Teach pendant | (Optional) T30 robot teach pendant: 8-inch TFT full touchscreen, Linux+QT |
| Controlled axes | 64-axis synchronized interpolation motion / 6-axis articulated robot + floor track + 2-axis positioner*2 |
| Communication protocols | EtherCAT, Profinet, Ethernet/IP, OPC-UA, FinsTCP, TCP/IP, ModbusTCP, ModbusRTU |
| Operating modes | Teach mode, play mode, remote mode |
| Programming methods | Teach programming, offline programming, drag teaching |
| Motion functions | Point-to-point, line, circular arc, spline curve, linear weaving, FLYBY |
| Instruction set | Motion instructions, logic instructions, I/O instructions, arithmetic instructions |
| Position control modes | Point-to-point control, continuous-path control |
| Coordinate systems | Joint coordinate system, robot coordinate system, tool coordinate system, user coordinate system |
| Structure algorithms | 20+ configurations including 6-axis articulated robots More details |
| Applications | Arc welding, TIG welding, laser welding, resistance welding (electric welding), stamping, loading/unloading, laser cutting, spray painting, dispensing, palletizing, conveyor tracking, etc. |
Dimension Drawing

Product Advantages
True Multi-Robot Capability
One controller can control 4 robots simultaneously, with each robot's parameters and programs fully independent of the others; in run and remote modes, all robots can be started and stopped in sync. In addition to one-to-many control, each robot can be paired with any type of external axis, including floor tracks, positioners, and gantries. Dual-robot collaboration mode is also supported, keeping the start/stop of two robots perfectly synchronized.
Built-In General-Purpose Processes
The system comes with general-purpose processes such as loading/unloading, palletizing, welding, seam tracking, vision, laser cutting, conveyor tracking, collision detection, and drag teaching, all customizable to user requirements. With these built-in functions, users can quickly and easily implement the processes they need.
Flexible Programming
In addition to traditional teach-pendant programming, PC-based teaching software and configuration-software-style touchscreen programming are also available.







