Q172HCPU Mitsubishi Universal Model Redundant Power Supply Module
Product Details:
Place of Origin: | Japan |
Brand Name: | MITSUBISHI |
Certification: | CE |
Model Number: | Q172HCPU |
Payment & Shipping Terms:
Minimum Order Quantity: | 1 |
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Price: | Contact |
Packaging Details: | new and original |
Delivery Time: | 5-7 days |
Payment Terms: | T/T, Western Union,paypal |
Supply Ability: | 100 |
Detail Information |
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Brand: | MITSUBISHI | Modenl Number: | Q172HCPU |
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Country Of Origin: | Japan | Program Capacity: | 8 K Steps |
Basic Operation Processing Speed (LD Instruction): | 0.12 μs | Input: | 100 To 240 V AC |
Output: | 5 V DC/3 A | Type: | Redundant Power Supply Module |
Highlight: | plc power supply module,diode redundancy module |
Product Description
Q172HCPU Mitsubishi Universal model Redundant Power Supply Module
Product Description
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
Primary Applications
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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
Control specifications | ||
Number of control axes | SV13/SV22/SV43 | |
Operation cycle (default) | SV13 | |
SV22/SV43 | ||
Interpolation function | SV13/SV22/SV43 | |
Control method | SV13/SV22 | |
SV43 | ||
Acceleration/deceleration processing | ||
Compensation function | ||
Programming language | SV13/SV22 | |
SV43 | ||
Servo program (dedicated instruction) capacity | SV13/SV22 | |
SV43 | ||
Number of positioning points | SV13/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 axes | SV13/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 modules | Q172LX | |
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] |
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8 axes
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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)
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Positioning control, constant speed positioning, high-speed oscillation control
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Automatic trapezoidal acceleration/deceleration, S-curve acceleration/deceleration
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Backlash compensation, electronic gear, phase compensation (SV22)
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Motion SFC, dedicated instruction, Mechanical support language (SV22)
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EIA language (G-code)
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14 k steps
|
248 k bytes
|
3200 points (positioning data can be set indirectly)
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Approx. 10600 points (positioning data can be designated indirectly)
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IBM PC/AT
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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)
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1 line
|
Q172LX: 1 module usable
Q172EX-S2: 4 modules usable*1 Q173PX: 3 modules usable*2 |
|
Up to 8 axes
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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)
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USB/SSCNET
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Possible to connect 3 modules of manual pulse generator
|
Possible to connect 8 modules*4 (SV22 use)
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Up to 1 module per CPU
|
Up to 4 modules per CPU (SV22 use)
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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
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Up to 1 module per CPU (SV13, SV22 use)
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Up to 7 stages
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1.14
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0.22
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104.6 (H) × 27.4 (W) × 114.3 (D)
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(*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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