Product Overview
The VCMI H2C – IS215VCMIH2CC is a precision analog input board designed to optimize enhanced control systems. Manufactured by GE, this module delivers reliable and accurate signal processing for various industrial automation needs. It supports a wide range of electrical inputs, ensuring seamless integration with existing control equipment. The board’s robust design allows it to perform consistently in demanding environments, making it an essential component for complex control applications. Whether used in monitoring or control tasks, this model guarantees dependable performance and improved system responsiveness.
Technical Specifications
Parameter | Specification |
---|---|
Model | VCMI H2C – IS215VCMIH2CC |
Brand | GE |
Input Voltage Range | 0-10 V DC |
Number of Channels | 16 Analog Inputs |
Operating Temperature | -20°C to 70°C |
Dimensions (WxHxD) | 150 mm x 100 mm x 30 mm |
Signal Type | Analog, Voltage Input |
Mounting | DIN Rail or Panel Mount |
Product Features
The VCMI H2C – IS215VCMIH2CC offers advanced capabilities tailored for industrial control environments. Its high channel density allows processing multiple analog signals simultaneously, improving overall system efficiency. The board features built-in noise filtering, ensuring signal integrity even in electrically noisy surroundings. Compact yet rugged, it supports both DIN rail and panel mounting for flexible installation. The design emphasizes low power consumption, reducing operational costs. Additionally, the module’s compatibility with various automation protocols makes it a versatile choice for upgrading or expanding existing control equipment.
Applications
Ideal for enhanced control applications, the VCMI H2C – IS215VCMIH2CC is widely used in industrial automation systems requiring precise analog input measurement. It is suitable for process monitoring, electrical parameter acquisition, and integration into complex control architectures. Typical environments include manufacturing plants, energy management systems, and facility automation where reliable data acquisition is critical. This model supports seamless interfacing with control and monitoring equipment, ensuring accurate and timely data for optimized system performance.
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