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GE IC200ALG265A模块


 
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GE IC200ALG265A  High Precision Analog Input Module, Designed for Industrial Automation

Product Type:Analog Input Module Brand:General Electric Model:IC200ALG265A Series:Mark VI Weight:0.14 kg Dimension:11 x 6 x 6.7 cm Input Range:-10V to +10V Resolution:12-bit ADC Operating Voltage:DC 24V Operating Temperature:-20"C to +55"C Communication Protocol:ControlNet Certification:UL, CE The GE IC200ALG265A Analog Input Module is engineered to provide unparalleled accuracy and reliability in data acquisition, essential for the smooth operation of industrial control systems. 

With its robust design, the module ensures stable performance under various environmental conditions, making it ideal for use in demanding industrial settings. Featuring a 12-bit Analog-to-Digital Converter (ADC), the IC200ALG265A delivers precise measurements within an input range of -10V to +10V, enhancing the overall precision of your system. 

Designed with ease-of-use in mind, the module supports a wide range of communication protocols including ControlNet, facilitating seamless integration with other components in your industrial automation network. 

Equipped with advanced temperature tolerance (-20"C to +55"C), the IC200ALG265A is suitable for deployment in diverse industrial environments, ensuring consistent performance regardless of the ambient conditions. The GE IC200ALG265A Analog Input Module is designed to provide high accuracy and reliability in industrial automation systems, enabling precise control and monitoring in various applications.  

Performance Features

1. Excellent high-precision acquisition: The most outstanding performance feature of GE IC200ALG265A is its excellent high-precision analogue signal acquisition capability, with an accuracy of ±0.05%. In the field of industrial automation, high-precision signal acquisition means more stable production processes, more reliable product quality and higher production efficiency. In semiconductor manufacturing, for example, accurate monitoring of temperature, pressure and other parameters during the production process is critical, and small signal deviations can lead to a significant drop in chip performance. the IC200ALG265A is able to accurately acquire these critical analogue signals, providing reliable data to support the precise control of the production equipment and ensuring that the chip manufacturing process is carried out in optimal process conditions, which can effectively improve the yield rate of the product. In precision machining, it is important for the machining process to have a high degree of accuracy. In precision machining, the accurate measurement of the operating parameters of the machining equipment, such as rotational speed, torque, etc., helps to achieve high-precision machining of precision parts to meet the stringent requirements of aerospace, medical equipment and other high-end manufacturing industry on the accuracy of parts. By using high-performance ADC chips and carefully tuned signal conditioning circuit, the module can convert the input analogue signals into high-precision digital signals, providing accurate data basis for subsequent control decisions. 

2. Wide-range analogue signal input: the analogue input module has a wide range of analogue signal input, can adapt to a variety of different types of industrial sensor output signals. The input range covers common industry-standard signals such as 0 - 10 Vdc, 0 - 20 mA, 4 - 20 mA, and more. This wide-range design allows it to work seamlessly with all types of industrial sensors, greatly enhancing its versatility and adaptability in different industrial scenarios. In the petrochemical industry, all kinds of sensors output a variety of signal ranges, IC200ALG265A can easily receive these different ranges of analogue signals and accurately convert them into digital signals for transmission to the control system. In the environmental monitoring system of intelligent buildings, the module can receive different ranges of analogue signals from various sensors such as temperature, humidity, air quality, etc., and provide accurate data for the building environmental control system after accurate acquisition and conversion, so as to achieve precise regulation of the environment in the building.





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