Brand:General Electric Model:3VTVZ590CD001 Series:Mark VI Module Category:Circuit Board Operating Voltage:3V Form Factor:Standard Mounting Type:Panel Terminal Blocks:24 terminals Dimensions (LxWxH):9.5 x 6.5 x 1.2 cm Weight:0.05 kg Temperature Range:-20"C to +60"C Operating Frequency:Up to 1 MHz Communication Protocol:RS-485, Modbus Data Transfer Rate:Up to 1 Mbps Memory:32 KB EEPROM Power Supply:DC 3V Integrating advanced semiconductor technology, the GE 3VTVZ590CD001 Mark VI Circuit Board delivers unparalleled performance and efficiency in industrial control systems. Designed with precision, this circuit board is compatible with a wide range of industrial protocols, ensuring seamless integration into existing systems. Featuring a robust and compact design, the circuit board is engineered to withstand harsh environmental conditions, providing reliable operation in temperatures ranging from -20"C to +60"C. Its low power consumption makes it ideal for energy-conscious applications. With its comprehensive set of features, including a 32 KB EEPROM and support for up to 1 MHz operating frequency, this circuit board is capable of handling complex control tasks efficiently. The inclusion of communication interfaces like RS-485 and Modbus enables smooth data exchange between various components within the system. Manufactured using high-quality materials, the GE 3VTVZ590CD001 Mark VI Circuit Board ensures durability and longevity, reducing maintenance requirements and downtime. It is equipped with 24 terminal blocks, facilitating easy connection to other system components. This circuit board is an indispensable part of modern industrial automation, offering precise control and enhanced reliability. Its compatibility with leading industry standards and protocols makes it a versatile choice for a variety of industrial applications, including manufacturing, energy, and process control. The 3VTVZ590CD001 GE General Electric Mark VI Circuit Board is a critical component designed for advanced industrial control systems. It ensures seamless integration and enhanced operational efficiency.
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