Q10UDEHCP
The Mitsubishi Q10UDEHCP is a CPU unit from the MELSEC Q Series. It is designed for industrial automation systems requiring a high-performance and flexible programmable logic controller (PLC) with enhanced processing power, communication capabilities, and ease of integration into complex control systems. This CPU unit supports a wide range of industrial applications, including factory automation, process control, and robotics, where precision and scalability are essential.
DESCRIBE
Key Features:
Type: PLC CPU Unit
Model: Q10UDEHCP
Series: MELSEC Q Series
Processing Power:
High-performance processing for fast control of complex tasks
Advanced 32-bit RISC CPU for efficient instruction execution
High-Speed Control:
Fast processing speed with a processing time of 0.065 ms for one 1k instruction
Capable of handling complex logic operations and multiple I/O devices simultaneously
Large Memory Capacity:
Ample memory for handling large programs and extensive data processing
Program Memory: 100 KB
Data Memory: 128 KB
Flexible Expansion:
Supports a wide range of I/O expansion modules, communication modules, and special function units to meet various application needs
Compatible with digital, analog, and special-purpose I/O modules
Built-in Communication:
Ethernet Port for communication with other PLCs, HMIs, and devices over a network
Supports Modbus TCP, Ethernet/IP, and MELSEC communication protocols
RS-232C/RS-485 communication options available for additional network connectivity
Integrated Diagnostics:
Built-in diagnostic functions for system health checks, error detection, and troubleshooting
LED indicators for easy monitoring of operational status, errors, and communication status
Programmed with GX Works2/3:
Easy programming and configuration using GX Works2 or GX Works3 software
Integrated simulation tools for testing and debugging before deployment
Compact and Modular Design:
DIN rail mountable for easy integration in control panels or machinery cabinets
Compact form factor for efficient use of space in industrial settings
Specifications / Parameters:
Processor:
CPU Type: 32-bit RISC processor for high-speed processing
Instruction Execution Time: 0.065 ms for 1k instructions
Memory:
Program Memory: 100 KB
Data Memory: 128 KB
I/O Address: Supports up to 8192 I/O points (expandable through modules)
I/O Configuration:
Supports digital, analog, and special function I/O modules for flexible application configurations
Expansion: Can be expanded with up to 8 expansion units
Communication:
Ethernet Port for fast communication with devices, including HMIs, SCADA systems, and other PLCs
Supports Modbus TCP, Ethernet/IP, MELSEC protocols for seamless communication in industrial networks
RS-232C and RS-485 for serial communication with additional devices
High-speed communication for real-time control and data exchange
Power Supply:
Input Voltage: 24 V DC (for CPU unit operation)
Current Consumption: Approx. 100 mA
Dimensions:
Width: 90 mm
Height: 90 mm
Depth: 130 mm
Weight: Approx. 0.4 kg
Operating Temperature: 0°C to +55°C
Storage Temperature: -25°C to +70°C
Humidity: 20% to 90% RH (non-condensing)
Protection Class: IP20 (for indoor use)
Mounting: DIN rail mountable
Status Indicators:
Built-in LED indicators for power, communication status, and operational diagnostics
Provides clear visibility of system health and operational status
Applications:
Factory Automation: Used to control automated production lines, robotic arms, and conveyor systems for efficient manufacturing processes
Process Control: Controls processes such as temperature, pressure, flow, and level in industries like chemical, food processing, and pharmaceuticals
Building Automation: Controls HVAC systems, lighting, and security systems in commercial and industrial buildings
Machine Control: Ideal for controlling various types of machinery, including CNC machines, injection molding machines, and automated workstations
Material Handling: Controls material handling systems, such as AGVs, lifts, and sorting systems, for streamlined operations
Energy Management: Used in industrial plants for monitoring and controlling energy usage and optimizing operational efficiency
Robotics: Integrates with robots for controlling movement, feedback, and interaction with other systems
Water Treatment: Monitors and controls pumps, valves, and sensors in water treatment plants and other environmental systems