A3125-022-010 is a dual-channel bearing vibration monitor from Emerson, part of the AMS 3125 series. It is primarily used to measure absolute bearing vibration signals on equipment such as small steam, gas and water turbines, and is also suitable for equipment such as compressors, pumps and fans. The monitor has a vibration acceleration output of 100mV/g, suitable for a 40g measurement range.
Technical Specifications
Manufacture
EMERSON
Model
A3125/022-010
Part Number
A3125-022-010
Description
2-Channel Bearing-Vibration Monitor
MoOrigin
Germany
Dimension
34*25*14cm
Weight
0.8kg
Product Details
Emerson's Dual-Channel Bearing-Vibration Monitor is designed for use in small-scale and low-channel applications, such as small steam, gas, and hydro turbines, as well as compressors, pumps, and fans. It measures absolute bearing vibration signals. The measurement settings, alarms, and outputs can be configured in the field using software.
Emerson's AMS 3125 series is a dual-channel bearing vibration monitor designed for small and low-channel applications, suitable for small steam, gas and water turbines, as well as compressors, pumps and fans. The monitor measures absolute bearing vibration signals, and its measurement settings, alarms and outputs can be configured in the field through software.
This series of products offers a variety of models to meet different measurement needs, such as A3125/022-010 for vibration acceleration measurement and A3125/022-020 for vibration velocity measurement.
Main features:
Sensor input type: ICP piezoelectric sensor.
Measuring range: Freely selectable via configuration software, depending on the measuring range of the sensor used.
Frequency range: 5 to 5000 Hz for high-pass filter, 50 to 5000 Hz for low-pass filter.
Environmental conditions: Temperature range -20 to 65°C, protection class IP65.
Electrical characteristics: Supply voltage +24 VDC, permissible voltage range +18 to +31.2 VDC, maximum power consumption 6 W.
Output types: Includes buffered output, current output, and relay output.