MIII Bus-based Motion Control
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MIII Bus-based Motion Control

1.Only parameter setting is required, collect variable data and save it to system memory or an SD card, and also allows data storage, analysis, and confirmation via Ethernet or USB.
2.EtherCAT or MⅢ bus control for higher real-time performance and easier maintenance.
3.Supports IoT interface for real-time data collection and more convenient management.
4.Equipped with expandable application software modules, allowing for plugin expansion of required modules based on customer needs.
5.A powerful combination of 2GB running memory and 8GB storage, ensuring excellent execution speed.
6.The product is built with high precision at its core, efficiency as its driving force, and flexibility as its advantage, delivering outstanding performance to meet diverse application scenarios.
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Product Introduction

product-1600-853

 

Hardware Overview

 

1.Input Interface: Used to receive signals from external devices, such as button inputs on the machine tool control panel, signals from various sensors (e.g., position sensors, temperature sensors), and CNC machining programs transmitted by external devices. Common input interfaces include USB, serial, and Ethernet ports, allowing easy connection and data transmission with various external devices.
2.Output Interface: Outputs control signals processed by the CNC system to various machine components, such as drive motors, solenoid valves, and indicator lights, to control the machine's movement, actions, and status displays. The type and format of output signals must be compatible with the connected components to ensure accurate signal transmission and execution.
3.Typically uses an LCD or touchscreen display to show the CNC system's user interface, machining programs, parameters, machine status, alarm information, etc., allowing operators to monitor and control the system easily.
4.Supports communication with external devices, such as data transmission with a host computer for remote monitoring, program transfer, system upgrades, etc.; or networking with other CNC devices for collaborative work and centralized management. Communication methods may include wired (e.g., Ethernet, serial) and wireless (e.g., Wi-Fi, Bluetooth) communication.
5.With advanced multi-core CPU architecture and a powerful supercomputing platform, providing an incredibly smooth and responsive operating experience.
6.Equipped with 2GB of large storage, ensuring smooth operation of programs and the ability to handle various tasks without interruption.
7.High anti-interference design, passing the 4.5KV EFT test and CE certification.
8.Supports stable RS485 communication, making it more reliable for expanding peripheral devices.
9.Supports up to 256 input/output points, enabling control of more mechanisms.
10.Capable of controlling up to 64 axes, showcasing unparalleled control power.
11.Uses USB 3.0 ports, ensuring fast and convenient program transfer and import.
12.Program pre-reading can reach 8000 Blocks/s, offering enhanced processing power.

 

Software Overview

 

1.RT-Linux embedded control system platform
2.Full compile 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.Conversational auxiliary program editing
8.Special curve machining: supports constant speed machining for parabolas and spline curves, resulting in smoother surface finishes; spline curve teaching function can automatically fit curves between points using cubic equations, producing smoother curves than traditional teaching functions
9.Integration of open UI and PLC platform, allowing customers to freely customize interfaces and functions, enabling unprecedented personalized operating experiences
10.Self-distributed permissions greatly enhance the system's flexibility and adaptability, allowing each user to customize access permissions based on needs
11.Supports graphical simulation, conversational programming, and M-code customization
12.Fast execution speed: PLC scanning time is short, allowing for quick response to machining instructions, improving machining efficiency
13.Supports open macro program design - MACRO
14.Supports CAD/CAM assisted programming
15.High-speed path processing technology, achieving up to 1000 blocks/second for high-speed small segment machining, while performing NURBS optimization on the segment path to smooth singularities, ensuring machining accuracy and improving processing efficiency
16.NURBS spline fitting technology, fitting the segments multiple times to optimize the path and produce smooth curves with controllable precision for production machining
17.Supports constant JERK control technology for smoother high-speed machining
18.Supports full closed-loop control to ensure precise mechanical end-point positioning

 

Product parameters

 

Product Series

NC-X0

Product Model

NC-X0

► System Specifications

 

Display Screen Size

No screen

Maximum Number Of Axes (Including Spindles)

Standard 6 (maximum 40)

Maximum Number Of Channels

Standard 1 (maximum 16)

Maximum Number Of Linked Axes Per Single Channel

6

Maximum Number Of Spindles Per Single Channel

10

DA/AD

External expansion module board (expandable to 32 groups) 14BIT

Operating System

RT Linux

Memory

2GB

Program Capacity

8GB

Number Of Pre-read Units

8000 Block/s

Maximum Number Of Tool Compensation Groups

160 groups

Transmission

USB/RS485/LAN/WIFI

Bus Functionality

MECHATROLINK-III/EtherCAT

Maximum Expandable I/O

256/256(1ms64IN/OUT,4ms 192IN/OUT)

(IoT)Industrial Internet Of Things

Optional

Absolute Value Function

SSI (6 groups, expandable up to 12 groups)

► Compensation function

 

Taper compensation

Supported

Backlash compensation

Supported

Corner radius compensation

Supported

Bidirectional screw error compensation

Supported

Feedforward compensation

Supported

► High-Speed High-Precision

 

NURBS Fitting

Supported

Closed-Loop Control Functionality

Supported

► Auxiliary functions

 

Custom startup screen

Supported

Mixing bus axes and generic axes

Supported

IO redefinition function

Supported

Tilted axis machining

Supported

Tilted plane machining

Supported

DNC Machining

Supported

Proportional scaling

Supported

Acceleration/Deceleration Type

Linear type (constant A), S-type (constant JERK)

Electronic Cam, PID Control

The number of cam curves is unlimited, and each channel has 16 sets of PID for winding and unwinding.

Handwheel Prediction

Supported

Handwheel Interrupt

Supported

Multi-function Handwheel

Supported

Graphical Simulation

Supported

Authority Management

Supported

Calendar Lock

Supported

Axis Load Monitoring

Supported

Oscilloscope Monitoring

Supported

Following Error Detection

Supported

Data Backu

Supported

► Compound Functionality

 

Multi-Channel Functionality

Supported

Independent channel control of robotic arm

Supported

 

Product Features

 

1. Open industrial motion controller

2. High cost-performance ratio

3. High stability

4. Fast execution speed

5. Complete compensation functions

6. Supports G-code editing

7. Comprehensive communication protocol

 

Application Cases

 

1. 3C Electronics (Inserts, PCB Depaneling, Tray, etc.), Visual Inspection Machine

2. 3D Tool Machine

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