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The Q12PRHCPU from Mitsubishi is a redundant CPU module designed for the MELSEC-Q Series. It can handle a program capacity of 124K steps, features a substantial I/O capacity of 4096 points, and utilizes RS-232 and USB communication protocols.
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| Manufacturer | Mitsubishi |
|---|---|
| Product Type | Redundant CPU Module for MELSEC-Q Series |
| Product Line | Melsec-Q |
| Part Number | Q12PRHCPU |
| Weight | 0.44 lbs (0.20 kg) |
| Program Capacity | 124K Steps |
| I/O Capacity | 4096 I/O points |
| Communication Protocol | RS-232, USB |
| Supply Voltage | 5 V DC (from a dedicated Q-series power supply unit) |
| Mounting Mode | Backplane / Rack Mount |
| Ambient Temperature for Storage | -25°C to 75°C (-13°F to 167°F) |
| Current Consumption | 640 mA |
| Ambient Temperature for Operation | 0°C to 55°C (32°F to 131°F) |
| Communication Ports | USB connector, 9-pin D-Sub female connector (RS-232) |
Mitsubishi's Q12PRHCPU is a redundant CPU module tailored for the MELSEC-Q Series, facilitating enhanced reliability in control tasks. This component can support 124,000 program steps, allowing it to execute complex operations effectively. The module offers an impressive I/O capacity of 4096 points, which provides flexibility in connections and system integration.
Powering the Q12PRHCPU requires a dedicated Q-series power supply unit, which supplies 5V DC. The unit's current consumption is rated at 640 mA, ensuring efficient energy management. Its physical design allows for backplane or rack mounting, making it adaptable to different installation environments.
Operating in an ambient temperature range from 0°C to 55°C (32°F to 131°F), this module is well-suited for a variety of industrial conditions. For storage, it can withstand temperatures from -25°C to 75°C (-13°F to 167°F). Equipped with communication capabilities, the module features a USB connector and a 9-pin D-Sub female connector for RS-232, facilitating versatile data transfer and configuration options. The compact weight of only 0.14 kg adds to its ease of integration within control systems.