Allicdata Part #: | BU-23842-141-ND |
Manufacturer Part#: |
BU-23842-141 |
Price: | $ 31.30 |
Product Category: | Sensors, Transducers |
Manufacturer: | Knowles |
Short Description: | ACCELEROMETER |
More Detail: | Vibration, Acceleration Sensor Voltage User Define... |
DataSheet: | BU-23842-141 Datasheet/PDF |
Quantity: | 1000 |
25 +: | $ 28.45680 |
Series: | BU |
Part Status: | Active |
Sensor Type: | Vibration, Acceleration |
Sensing Range: | -- |
Sensitivity: | -40dB ±3dB |
Output Type: | Voltage |
Power - Rated: | -- |
Operating Temperature: | -- |
Features: | Waterproof |
Package / Case: | Ceramic |
Mounting Type: | User Defined |
Termination: | Solder Posts |
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Motion Sensors come in a variety of forms, but all have one purpose in common: to track and monitor movement. Among the many types of motion sensors available today, vibration sensors are a type of non-contact transducer which can be used to detect and measure vibration, shock, and other dynamic events going on in the area of interest. Specifically, BU-23842-141 is a model of vibration sensor used for vibration-based motion sensing and performs the task of detecting and recognizing mechanical vibrations.
The BU-23842-141 model is typically employed in wide array of vibration monitoring applications for analysis of machinery dynamics and fault detection. The device’s stock design includes a uniform platinum weight surrounded by a silicon diaphragm, which is stimulated by the shocks and frictions in the environment. The weigh and diaphragm are contained in a metal housing, protected against temperature and humidity. Additionally, the model offers two integral mounting systems as named aluminum and stainless steel, to aid in fastening the sensor to the object of observation.
At the core of the working principle of the BU-23842-141 model is the piezoelectric principle. As the device is exposed to vibrational events, the weight in the enclosure generates an electrical charge. This charge is then converted into a voltage and current signal further by the device, which can then be used for analysis.
As far as practical use goes, the BU-23842-141 model can be used for the observation in a variety of fields. Some of the fields in which the device can be put to use include automotive, industrial manufacturing, consumer electronics, and aerospace fields. In these, the model can be used to observe the vibration behaviour of machine inputs, detect fault conditions, determine machinery clearances, and analyse the health state of a system.
In addition to the above fields, the BU-23842-141 model is also suitable for applications related to general condition monitoring and athletics. In the case of condition monitoring, it can be employed to detect even the smallest of identifying anomaly in the system, which can lead to successful early detection and preventive maintenance. As for the athletic part, the model can be leveraged to analyse the performance level of international-level athletes in various sports such as skydiving, ski jumping, and track and field events, and help athletes strive for better performances.
To sum up, BU-23842-141 is a model of vibration sensor used for vibration-based motion sensing and performs the task of detecting and recognizing mechanical vibrations. The device’s working principle is based on the piezoelectric principle, with a uniform platinum weight and a silicon diaphragm mounted in a metal housing acting as the key components. The model has a wide range of applications in the automotive, industrial, consumer electronics, aerospace, condition monitoring, and athletics fields.
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