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  • TEL Tokyo Electron MR-MC01-S100 Controller Module
  • TEL Tokyo Electron MR-MC01-S100 Controller Module
  • TEL Tokyo Electron MR-MC01-S100 Controller Module
TEL Tokyo Electron MR-MC01-S100 Controller Module TEL Tokyo Electron MR-MC01-S100 Controller Module TEL Tokyo Electron MR-MC01-S100 Controller Module

TEL Tokyo Electron MR-MC01-S100 Controller Module

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  • Delivery date: stock
  • The quality assurance period: 365 days
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TEL Tokyo Electron MR-MC01-S100 Controller Module

Product Details Introduction

TEL Tokyo Electron MR-MC01-S100 Controller Module

(Controller Module)


Product Function Introduction:

The MR-MC01-S100 controller module is a core component specifically designed for high-precision motion control or automated process control in TEL (Tokyo Electron) equipment. This module typically integrates a microprocessor, I/O control interface, communication interface, and motor control logic, and is the control core that enables precise execution of equipment actions.


The main functions include:


Control the operation and positioning of stepper motors or servo motors


Realize multi axis linkage, speed control, and acceleration/deceleration curve generation


Receive action instructions from the upper system, perform logical processing and feedback


Support sensor input and limit detection to ensure safe operation of equipment


Provide communication capabilities with the main control system or human-machine interface (such as RS-232/485, Ethernet, CAN, etc.)


Main application areas:

1. Control of wafer handling and positioning system

Manage precise movements of handling arms, alignment platforms, and other components in subsystems such as EFEM, Transfer Module, and Aligner


Execute the logic of the wafer transport path from FOUP → Load Port → Process Chamber


2. Multi axis motor control

Control the coordinated motion of multiple execution axes (X, Y, Z, or θ axis) to achieve precise mechanical structure control


Parameters such as speed, acceleration, target position, zeroing, etc. can be set


3. Control of components in vacuum or gas systems

Control the linkage of vacuum valves, gas valves, and electromagnetic mechanisms to achieve process interlocking logic


Accurately control time, sequence, and action amplitude during the processing


4. Logical control of process flow

Coordinate actions in step-by-step machining processes such as preheating, pressurization, plasma activation, etc


Manage the start stop and status feedback of actuators and sensing components

Product imag

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