The Bently Nevada 3500/22-01-01-CN Transient Data Interface is an advanced module designed for real-time monitoring and data acquisition in industrial control systems, offering unparalleled reliability and precision.
The Bently Nevada 3500/22-01-01-CN Transient Data Interface is an advanced module designed for real-time monitoring and data acquisition in industrial control systems, offering unparalleled reliability and precision.
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Model Number:3500/22-01-01-CN
Brand:Bently Nevada
Operating Voltage:220 V
Data Interface:RS-485
Transmission Rate:50 kHz
Connector Type:M12
Material:Aluminum alloy with durable coating
Dimensions:140 x 100 x 35 mm
Weight:0.2 kg
Experience unparalleled precision and reliability with the Bently Nevada 3500/22-01-01-CN Transient Data Interface. This cutting-edge solution is engineered to provide real-time data acquisition and analysis, essential for the smooth operation and optimization of industrial control systems.
With its robust design and advanced technology, this data interface ensures accurate readings across a wide range of applications, from manufacturing lines to complex automation systems, guaranteeing efficient performance under various operational conditions.
Featuring four analog input channels capable of measuring voltages up to 10V, and four digital input channels supporting diverse input types, this device offers unparalleled flexibility and adaptability to meet the specific needs of your industrial setup.
Equipped with RS-485 and Modbus RTU protocols, the Bently Nevada 3500/22-01-01-CN seamlessly integrates with existing systems, facilitating easy communication and data transfer. Its broad operating temperature range (-40°C to +70°C) ensures durability in extreme environments, while the flexible power supply voltage (12 VDC to 36 VDC) accommodates a wide variety of installations.
Designed for efficiency and ease of use, the compact dimensions (100 mm x 100 mm x 30 mm) make it an ideal choice for space-constrained industrial settings. With a frequency range of DC to 1 MHz, it ensures precise data acquisition even at high frequencies, making it suitable for high-speed data processing tasks.