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Q172HCPU Mitsubishi Universal Model Redundant Power Supply Module

    Buy cheap Q172HCPU Mitsubishi Universal Model Redundant Power Supply Module from wholesalers
     
    Buy cheap Q172HCPU Mitsubishi Universal Model Redundant Power Supply Module from wholesalers
    • Buy cheap Q172HCPU Mitsubishi Universal Model Redundant Power Supply Module from wholesalers
    • Buy cheap Q172HCPU Mitsubishi Universal Model Redundant Power Supply Module from wholesalers

    Q172HCPU Mitsubishi Universal Model Redundant Power Supply Module

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    Brand Name : MITSUBISHI
    Model Number : Q172HCPU
    Price : Negotiations
    Delivery Time : 5-7 working days
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    Q172HCPU Mitsubishi Universal Model Redundant Power Supply Module

    Q172HCPU Mitsubishi Universal model Redundant Power Supply Module


    Product Description

    The Mitsubishi Q172HCPU is a ​​Motion Programmable Logic Controller (PLC) CPU unit​​ from the MELSEC-Q QnU series, designed for advanced multi-axis motion control in industrial automation systems. It functions as a specialized motion controller that can be installed on the same base unit as a general-purpose PLC CPU, enabling complex, high-speed, and high-precision synchronized control of up to 8 axes via the ​​SSCNET III​​ high-speed serial communication network . It is engineered for applications requiring sophisticated motion profiles, such as interpolation and electronic cam functions.

    Product Features

    • ​High-Speed Multi-Axis Control​​: Capable of controlling up to ​​8 axes​​ simultaneously, supporting advanced interpolation functions including linear interpolation (up to 4 axes), circular interpolation (2 axes), and helical interpolation (3 axes) .
    • ​High-Speed Network Integration​​: Uses ​​SSCNET III​​ optical fiber network for connecting to servo amplifiers. This provides high-speed communication (speed command output up to 50 MPPS), noise immunity, and can extend over long distances (up to 800 meters).
    • ​Diverse Control Modes​​: Supports various control methods including PTP (Point-to-Point) control, speed control, and position follow-up control, making it adaptable to a wide range of automated machinery .
    • ​Multiple Programming Languages​​: Offers flexibility with support for different programming languages depending on the application, such as Motion SFC, dedicated commands, EIA language (G-code), and robot language (MELFA-BASIC IV) .
    • ​Compact and Robust Design​​: Features a compact form factor designed for backplane/rack mounting, with an operating temperature range of ​​0°C to +55°C​​, suitable for industrial environments.

    Materials and Construction

    As a core component of Mitsubishi's Q series PLC system, the Q172HCPU is built with industrial-grade materials to ensure durability and reliable operation in demanding factory conditions. It is designed for ​​backplane/rack mounting​​ and requires a ​​5V DC power supply​​ from a dedicated Q-series power supply unit
    1
    . The module includes a ​​USB connector​​ for easy connection to programming tools

    Primary Applications

    This motion CPU is ideal for complex automation systems that require precise coordination of multiple axes:
    • ​Industrial Robotics​​: For controlling robotic arms with precise trajectory planning.
    • ​Packaging Machinery​​: Enabling high-speed, synchronized movements in filling, capping, and labeling machines.
    • ​Machine Tools​​: Providing accurate multi-axis control for CNC machining, cutting, and drilling operations.
    • ​Semiconductor Manufacturing Equipment​​: Ensuring ultra-precise positioning and handling in production and inspection processes.

    Important Parameters

    The table below summarizes the key technical specifications of the Mitsubishi Q172HCPU.
    Parameter
    Specification
    ​Model​
    Mitsubishi Q172HCPU
    ​Product Type​
    Motion PLC CPU Unit
    ​Number of Control Axes​
    Up to 8 axes
    ​Communication Network​
    SSCNET III (1 system)
    ​Supply Voltage​
    5 V DC (from Q-series PSU)
    ​Program Capacity​
    14k steps (SV13/SV22) / 248k bytes (SV43)
    ​Operating Ambient Temperature​
    0°C to +55°C (32°F to 131°F)
    ​Dimensions (W x H x D)​
    27.4 mm x 104.6 mm x 114.3 mm
    ​Weight​
    0.22 kg
    Control specifications
    Number of control axesSV13/SV22/SV43
    Operation cycle (default)SV13
    SV22/SV43
    Interpolation functionSV13/SV22/SV43
    Control methodSV13/SV22
    SV43
    Acceleration/deceleration processing
    Compensation function
    Programming languageSV13/SV22
    SV43
    Servo program (dedicated instruction) capacitySV13/SV22
    SV43
    Number of positioning pointsSV13/SV22
    SV43
    Programming tool
    PERIPHERAL I/F
    Home position return function
    JOG operation function
    Manual pulse generator operation function
    Synchronous encoder operation function
    M-code function
    Limit switch output function
    ROM operation function
    Absolute position system
    Number of SSCNET III lines
    Number of Motion related modules
    Module specifications
    Number of control axesSV13/SV22/SV43
    Operation cycle (default)SV13
    SV22/SV43
    Servo amplifier connection method
    PERIPHERAL I/F
    Manual pulse generator operation function
    Synchronous encoder operation function
    Controllable modulesQ172LX
    Q172EX-S2
    Q173PX
    QX_/QY_/QH_/QX_Y_
    Q64AD/Q68ADV/Q68ADI/Q62DA/Q64DA/Q68DAV/Q68DAI
    QI60
    Number of stages of extension base
    5 V DC internal current consumption [A]
    Mass [kg]
    Exterior dimensions [mm]

    8 axes
    0.44 ms/1 to 3 axes
    0.88 ms/4 to 8 axes
    0.88 ms/1 to 5 axes
    1.77 ms/6 to 8 axes
    Linear interpolation (up to 4 axes), 2-axis circular interpolation, helical interpolation (3 axes)
    Positioning control, speed control, speed-position switching control, fixed-pitch feed, constant speed control, position follow-up control, speed control with fixed position stop, speed switching control, high-speed oscillation control, synchronous control (SV22)
    Positioning control, constant speed positioning, high-speed oscillation control
    Automatic trapezoidal acceleration/deceleration, S-curve acceleration/deceleration
    Backlash compensation, electronic gear, phase compensation (SV22)
    Motion SFC, dedicated instruction, Mechanical support language (SV22)
    EIA language (G-code)
    14 k steps
    248 k bytes
    3200 points (positioning data can be set indirectly)
    Approx. 10600 points (positioning data can be designated indirectly)
    IBM PC/AT
    USB/SSCNET
    Proximity dog method (2 types), count method (3 types), data set method (2 types),
    dog cradle method, stopper method (2 types), limit switch combined method
    Provided
    Possible to connect 3 modules
    Possible to connect 8 modules (SV22 use)
    M-code output function provided, M-code completion wait function provided (SV13/SV22)
    Number of output points 32 points
    Watch data: Motion control data/word device
    Provided
    Made compatible by setting battery to servo amplifier. (Possible to select the absolute data method or incremental method for each axis)
    1 line
    Q172LX: 1 module usable
    Q172EX-S2: 4 modules usable*1
    Q173PX: 3 modules usable*2

    Up to 8 axes
    0.44 ms/1 to 3 axes
    0.88 ms/4 to 8 axes
    0.88 ms/1 to 5 axes
    1.77 ms/6 to 8 axes
    SSCNET III connection (1 line)
    USB/SSCNET
    Possible to connect 3 modules of manual pulse generator
    Possible to connect 8 modules*4 (SV22 use)
    Up to 1 module per CPU
    Up to 4 modules per CPU (SV22 use)
    Up to 3 modules per CPU (incremental synchronous encoder use in SV22)
    Up to 1 module per CPU (only manual pulse generator use)
    Total: up to 256 points per CPU
    Total: up to 256 points per CPU
    Up to 1 module per CPU (SV13, SV22 use)
    Up to 7 stages
    1.14
    0.22
    104.6 (H) × 27.4 (W) × 114.3 (D)


    (*1)Q172EX-S2 cannot be used in SV13 and SV43.

    (*2)This is the case of using an incremental synchronous encoder (SV22 used). When using a manual pulse generator, only one module is allowed.

    (*4)Up to 8 of manual pulse generators and synchronous encoders can be used in total.

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