Mitsubishi Q06UDEHCPU | Universal PLC CPU Module – MELSEC-Q Series Overview The Mitsubishi Q06UDEHCPU is a universal CPU module from the MELSEC-Q Series, designed for high-speed and high-performance control in industrial automation systems. With 60K steps (240KB) of program memory, built-in Ethernet and USB interfaces, and a 9.5 ns instruction processing speed, it offers robust and flexible control capabilities for a wide range of applications. Key Features Program Capacity: 60K steps / 240KB Processing Speed: 9.5 ns per LD instruction Built-in Interfaces: Ethernet (10/100 Mbps) and USB I/O Points: Supports up to 4096 local I/O points Memory Capacity: 768KB standard RAM, 1024KB standard ROM SD Memory Card Slot: Supports up to 8MB for program and data storage Multi-CPU Support: Enables complex system configurations Mounting: Rack-mounted design for Q Series base units Technical Specifications Model: Q06UDEHCPU Series: MELSEC-Q Power Supply: 5V DC (from base unit) Current Consumption: 0.39 A Dimensions (W x H x D): 27.4 x 98 x 89.3 mm Weight: Approx. 0.22 kg Operating Temperature: 0°C to 55°C Certifications: CE, UL Applications Manufacturing automation Process control systems Material handling equipment Packaging machinery Building automation systems Why Choose the Q06UDEHCPU? High-Speed Processing: 9.5 ns instruction speed ensures rapid response times Integrated Communication: Built-in Ethernet and USB ports simplify connectivity Flexible Memory Options: Supports SD memory cards for expanded storage Scalable I/O: Accommodates up to 4096 local I/O points for complex systems Reliable Performance: Designed for demanding industrial environments Order Now The Mitsubishi Q06UDEHCPU CPU module is available and ready for worldwide shipping. Return to the Mitsubishi MELSEC-Q Series collection for more options in this family. Explore our full range of Mitsubishi MELSEC Programmable Controllers (PLC) to discover scalable automation solutions, from legacy MELSEC systems to next-generation PLCs designed for high performance, connectivity, and flexibility.