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Mitsubishi Melsec-Q Q173DCPU

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Q173DCPU

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The Q173DCPU from Mitsubishi is a CPU module designed for the MELSEC-Q series, optimized for IQ Motion Control. This unit has a program capacity of 16,000 steps and supports extensive I/O operations with up to 4096 points.

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Technical specifications for Q173DCPU

ManufacturerMitsubishi
Product TypeCPU Module (MELSEC-Q series, IQ Motion Control)
Product LineMelsec-Q
Part NumberQ173DCPU
Weight0.75 lbs (0.34 kg)
Program Capacity16K Steps
Current Consumption1.25 A
I/O Capacity4096 I/O points
Processing Speed0.88 ms cycle operation
Supply Voltage5V DC
Mounting ModeBackplane / Rack Mount
Communication Ports1 x USB, 1 x Ethernet, 1 x RS-232, 1 x SSCNET III
Programming LanguagesLadder Diagram (LD), Structured Text (ST), Relay Symbol
I/O ControlRemote I/O support
Motion Control32-Axis Motion Control with IQ Motion

The Q173DCPU is a key component of Mitsubishi's MELSEC-Q series, optimized for intricate control tasks, particularly in motion applications. This CPU module supports a program capacity of 16,000 steps, allowing for comprehensive process control.

Weighing only 0.33 kg, it features efficient operation with a current consumption of 1.25 amperes. The processing speed reaches 0.88 milliseconds per cycle, ensuring swift task execution. This module operates on a supply voltage of 5 volts DC and is designed for backplane or rack mounting for easy installation.

The I/O capacity is expansive, accepting up to 4096 I/O points, which enables significant interfacing with diverse devices. Communication is facilitated through multiple ports, including USB, Ethernet, RS-232, and SSCNET III, providing flexible connectivity options. Users can program the Q173DCPU using Ladder Diagram (LD), Structured Text (ST), or Relay Symbol languages, which enhances its versatility across various applications.

Additionally, it supports remote I/O control, making it suitable for complex setups. With capabilities for controlling up to 32 axes in motion control scenarios, the Q173DCPU is suited for applications demanding precise and coordinated movement. This combination of features makes it an essential tool for advanced automation and motion control tasks.