10.1 inch IoT Industrial Motion Controller NC-X3
2.Simply set parameters, collect variable data, and save it to system memory or an SD card. Data can also be saved, analyzed, and confirmed via Ethernet or USB.
3.EtherCAT or MⅢ bus control for higher real-time performance and easier maintenance.
4.Supports IoT interfaces, enabling real-time acquisition of processing data for more convenient management.
5.Features expandable application software modules, allowing the addition of necessary modules in plugin form based on customer needs.
6.2GB of RAM and 8GB of storage work together to provide exceptional execution speed.
7.This product focuses on high precision, powered by high efficiency and flexibility, creating outstanding performance to meet diverse application scenarios.

Hardware Overview
1.Input Interfaces : Used to receive signals from external devices, such as button inputs from the machine tool's operation panel, signals from various sensors (e.g., position sensors, temperature sensors), or CNC machining programs transmitted from external devices. Common input interface types include USB, serial ports, and Ethernet, making it easy to connect and transfer data with different external devices.
2.Output Interfaces : These output control signals processed by the CNC system to various execution components of the machine tool, such as drive motors, solenoid valves, and indicator lights, to control the machine's movement, actions, and status display. The type and format of the output signals must match the connected components to ensure accurate signal transmission and execution.
3.Typically uses LCD screens or touchscreens to display the CNC system's operation interface, machining programs, machining parameters, machine tool status, alarm information, etc., making it easier for operators to monitor and control the system.
4.Supports communication with external devices, such as transmitting data to a host computer (e.g., for remote monitoring, program transmission, and system upgrades) or networking with other CNC devices for coordinated work and centralized management. Communication methods may include wired connections (e.g., Ethernet, serial ports) and wireless connections (e.g., Wi-Fi, Bluetooth).
5.With a leading multi-core CPU architecture and a powerful supercomputing-level platform, this system delivers an exceptionally smooth and seamless operation experience.
6.Equipped with 2GB of massive storage space, the system runs programs smoothly without interruption and easily handles diverse tasks.
7.High anti-interference design, passing the 4.5KV EFT test and CE certification.
8.Supports highly stable RS485 communication, providing more reliable expansion of peripheral devices.
9.Supports up to 256 input/output points , enabling control of more mechanisms.
10.Supports up to 64-axis control , showcasing unparalleled control capabilities.
11.USB 3.0 interface , ensuring fast and convenient program transfer during import.
12.Program pre-read can reach up to 8000 Block/s , providing stronger processing power.

Software Overview
1. RT-Linux embedded control system platform
2. Fully compiled execution module
3. Configurable IoT development platform
4. Remote assistance for fault diagnosis and upgrades
5. Platform-based design concept
6. 64-bit high-speed and high-precision contour control
7. Dialog-based auxiliary program editing
8. Special curve processing : Supports constant feed rate processing for parabolic and spline curves, resulting in higher surface finish quality; spline curve teaching function, automatically fitting the curve between points using cubic equations, providing smoother curves compared to traditional teaching functions.
9. Integration of open UI and PLC platform , allowing customers to freely customize the interface and functions, achieving an unprecedented personalized user experience.
10. Flexible permission allocation greatly enhances system adaptability, enabling each user to customize access permissions based on needs.
11. Supports graphical simulation, dialog-based programming, and custom M-code functions
12. Fast execution speed : Short PLC scan time enables rapid response to processing commands, improving processing efficiency.
13. Automatically track workpiece position through vision , real-time acquisition of position information, making industrial automation control easier.
14. Direct connection to smart cameras , or using PC-BASE mode to achieve visual positioning, flying imaging, and other functions.
15. Connect multiple (8) vision systems , enabling integration of multiple cameras' graphics and data analysis.
16. Supports servo tension , with PID regulation for servo tension, main proportional control, and mixed usage. The main proportional control can be divided into active nonlinear and feedback linear proportional control.
17. Provides dedicated system and servo drives , along with UPS modules.
Product parameters
|
Product Series |
NC-X1 |
NC-X3 |
NC-X4 |
NC-X5 |
NC-X8 |
|
► System Specifications |
|||||
|
Display Size |
7-inch |
10.1-inch |
10.4-inch |
15-inch |
19-inch |
|
Maximum Number of Axes (Including Spindle) |
Standard 6 (Maximum 40) |
Standard 6 (Maximum 40) |
Standard 6 (Maximum 40) |
Standard 6 (Maximum 40) |
Standard 6 (Maximum 40) |
|
Maximum Number of Channels |
Standard 1 (Maximum 16) |
Standard 1 (Maximum 16) |
Standard 1 (Maximum 16) |
Standard 1 (Maximum 16) |
Standard 1 (Maximum 16) |
|
Maximum Number of Interpolated Axes per Channel |
6 |
6 |
6 |
6 |
6 |
|
Maximum Number of Spindles per Channel |
10 |
10 |
10 |
10 |
10 |
|
Operating System |
RT Linux |
RT Linux |
RT Linux |
RT Linux |
RT Linux |
|
Memory |
2GB |
2GB |
2GB |
2GB |
2GB |
|
Program Capacity |
8GB |
8GB |
8GB |
8GB |
8GB |
|
Number of Blocks in Lookahead Buffer |
8000 blocks/s |
8000 blocks/s |
8000 blocks/s |
8000 blocks/s |
8000 blocks/s |
|
Maximum Number of Tool Compensation Groups |
160 groups |
160 groups |
160 groups |
160 groups |
160 groups |
|
Communication Interfaces |
USB/RS485/LAN/WIFI |
USB/RS485/LAN/WIFI |
USB/RS485/LAN/WIFI |
USB/RS485/LAN/WIFI |
USB/RS485/LAN/WIFI |
|
Maximum Expandable I/O |
256/256 (1ms 64 IN/OUT, 4ms 192 IN/OUT) |
256/256 (1ms 64 IN/OUT, 4ms 192 IN/OUT) |
256/256 (1ms 64 IN/OUT, 4ms 192 IN/OUT) |
256/256 (1ms 64 IN/OUT, 4ms 192 IN/OUT) |
256/256 (1ms 64 IN/OUT, 4ms 192 IN/OUT) |
|
Industrial Internet of Things (IoT) |
Optional |
Optional |
Optional |
Optional |
Optional |
|
Absolute Positioning Function |
SSI (6 groups, expandable up to 12 groups) |
SSI (6 groups, expandable up to 12 groups) |
SSI (6 groups, expandable up to 12 groups) |
SSI (6 groups, expandable up to 12 groups) |
SSI (6 groups, expandable up to 12 groups) |
|
► Compensation Functions |
|||||
|
Taper Compensation |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Backlash Compensation |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Arc Tip Compensation |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Bidirectional Ball Screw Error Compensation |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Feedforward Compensation |
Supported |
Supported |
Supported |
Supported |
Supported |
|
► High-Speed and High-Precision |
|||||
|
NURBS Fitting |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Full Closed-Loop Control Function |
Supported |
Supported |
Supported |
Supported |
Supported |
|
► Auxiliary Functions |
|||||
|
Customizable Startup Screen |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Mixed Use of Bus Axes and General-Purpose Axes |
Supported |
Supported |
Supported |
Supported |
Supported |
|
IO Redefinition Function |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Tilted Axis Machining |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Tilted Plane Machining |
Supported |
Supported |
Supported |
Supported |
Supported |
|
DNC Machining |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Proportional Scaling |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Acceleration and Deceleration Types |
Linear Type (Constant Acceleration), S-Type (Constant Jerk) |
Linear Type (Constant Acceleration), S-Type (Constant Jerk) |
Linear Type (Constant Acceleration), S-Type (Constant Jerk) |
Linear Type (Constant Acceleration), S-Type (Constant Jerk) |
Linear Type (Constant Acceleration), S-Type (Constant Jerk) |
|
Electronic Cam and PID Control |
Unlimited Number of Cam Curves,Each Channel Supports 16 Sets of PID for Unwinding and Rewinding |
Unlimited Number of Cam Curves,Each Channel Supports 16 Sets of PID for Unwinding and Rewinding |
Unlimited Number of Cam Curves,Each Channel Supports 16 Sets of PID for Unwinding and Rewinding |
Unlimited Number of Cam Curves,Each Channel Supports 16 Sets of PID for Unwinding and Rewinding |
Unlimited Number of Cam Curves,Each Channel Supports 16 Sets of PID for Unwinding and Rewinding |
|
Gear Prediction |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Gear Interruption |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Multi-Function Gear |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Graphical Simulation |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Permission Management |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Perpetual Calendar Lock |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Axial Load Monitoring |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Oscilloscope Function |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Follow Error Detection |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Data Backup |
Supported |
Supported |
Supported |
Supported |
Supported |
|
► Compound Functions |
|||||
|
Multi-Channel Function |
Supported |
Supported |
Supported |
Supported |
Supported |
|
Independent Channel Control for Robotic Arms |
Supported |
Supported |
Supported |
Supported |
Supported |
Comparison Between MECHATROLINK-III and EtherCAT
|
Product Series |
MECHATROLINK-III |
EtherCAT |
|
► System Specifications |
||
|
DA/AD |
Standard 2 channels (non-expandable) |
External module board (expandable up to 32 sets) 14BIT |
|
Bus Function |
MECHATROLINK-III |
EtherCAT |
|
General Purpose Axis Ports |
Standard 2 sets (non-expandable) |
External module board (expandable up to 32 sets) |
|
I/O |
SIO |
EtherCAT |
Product Features
1. Open Industrial Motion Controller
2. High cost-performance ratio
3. High stability
4. Fast execution speed
5. Comprehensive compensation function
6. Support G-code editing
7. Complete communication protocols
Application Cases
Tool slotting machine, polishing machine, tube bending machine, woodworking machine, diamond wire winding machine, shoe mold machine, sheet metal slotting machine, visual inspection machine, etc.
Dimensions


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