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200-510-070-113-200-510-111-034-VM600-MPC4 振动计

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200-510-070-113-200-510-111-034-VM600-MPC4  振动计

Vibro-meter-200-510-070-113-200-510-111-034-VM600-MPC4(4)_副本.jpg

产品说明:振动计200-510-071-113是一款高质量的振动计,专为精确测量而设计。它配备了先进的功能和用户友好的界面,使其适用于各种工业应用。

产品参数:

型号:200-510- 0771 -11

框架:VM600 MPC4


200-510-070-113-200-510-111-034-VM600-MPC4振动计是一种用于测量物体振动的仪器,可以测量物体的振动速度、加速度、位移等参数。振动计通常由拾振器、信号放大器和显示装置等部分组成,拾振器是用来直接指示位移、速度、加速度和加速度导数等振动量的峰值、峰-峰值、平均值或均方根值的仪器。


200-510-070-113-200-510-111-034-VM600-MPC4振动计的应用非常广泛,如在机械、电子、航空航天、化工等领域中都有应用。通过振动计的应用,可以监测设备的运行状态和故障,及时发现和解决问题,提高设备的可靠性和安全性。同时,振动计还可以用于科学研究,如地震监测、声学研究等领域。


总之,200-510-070-113-200-510-111-034-VM600-MPC4振动计是一种非常重要的测量仪器,对于保障设备和系统的正常运行以及促进科学研究的发展都具有重要意义。


200-510-070-113-200-510-111-034-VM600-MPC4振动计的原理基于惯性原理,即将被测量的振动体视为刚体,通过测量其惯性运动来间接测量物体的振动。在振动计中,通常采用振子作为测量元件,当被测物体振动时,振子会跟随物体的振动而运动,其运动状态可以通过测量电路转换为电信号,进一步进行处理和显示。


具体的测量方法有以下两种:


位移测量:测量振子在垂直于振动物体方向上的位移变化。通常采用差动变压器或电容式传感器来测量振子的位移变化,并将其转换为电信号。

加速度测量:通过测量振子相对于地面的加速度来间接测量物体的振动加速度。通常采用压电传感器或应变式传感器来测量振子的加速度,并将其转换为电信号。

在振动计中,除了测量电路外,还包括放大器、滤波器、积分器等信号处理电路,以便对测量的电信号进行进一步的处理和显示。同时,为了实现更准确的测量,现代振动计通常采用数字信号处理技术,如FFT(快速傅里叶变换)等算法,以提高测量的精度和稳定性。


总之,200-510-070-113-200-510-111-034-VM600-MPC4振动计的原理是基于惯性原理,通过测量物体的惯性运动来间接测量物体的振动。通过采用不同的测量元件和信号处理技术,可以实现高精度、高稳定性的振动测量。

200-510-070-113-200-510-111-034-VM600-MPC4  振动计

Vibro-meter-200-510-070-113-200-510-111-034-VM600-MPC4(4)_副本.jpg

Product Description: Vibration Meter 200-510-071-113 is a high quality vibration meter designed for precise measurement. It is equipped with advanced features and a user-friendly interface, making it suitable for a variety of industrial applications.

Product parameters:

Model: 200-510-0771-11

Framework :VM600 MPC4


200-510-070-113-200-510-111-034-VM600-MPC4 vibration meter is an instrument used to measure the vibration of objects, which can measure the vibration speed, acceleration, displacement and other parameters. The vibration meter is usually composed of a vibration pickup, a signal amplifier and a display device, etc. The vibration pickup is used to directly indicate the peak, peaking, average or root mean square value of the vibration quantity such as displacement, speed, acceleration and acceleration derivative.


200-510-070-113-200-510-111-034-VM600-MPC4 vibration meter is widely used, such as in machinery, electronics, aerospace, chemical and other fields. Through the application of the vibration meter, the operating status and fault of the equipment can be monitored, the problems can be found and solved in time, and the reliability and safety of the equipment can be improved. At the same time, the vibrometer can also be used in scientific research, such as earthquake monitoring, acoustic research and other fields.


In short, 200-510-070-113-200-510-111-034-VM600-MPC4 vibration meter is a very important measuring instrument, which is of great significance for ensuring the normal operation of equipment and systems and promoting the development of scientific research.


The principle of the 200-510-070-113-200-510-111-034 VM600-MPC4 vibration meter is based on the principle of inertia, which means that the vibration body to be measured is regarded as a rigid body, and the vibration of the object is measured indirectly by measuring its inertial motion. In the vibration meter, the oscillator is usually used as the measuring element. When the object to be measured vibrates, the oscillator will follow the vibration of the object and move, and its motion state can be converted into an electrical signal by the measurement circuit for further processing and display.


There are two specific measurement methods:


Displacement measurement: The displacement change of the oscillator in the direction perpendicular to the vibrating object is measured. Usually a differential transformer or capacitive sensor is used to measure the displacement change of the oscillator and convert it into an electrical signal.

Acceleration measurement: The vibration acceleration of an object is indirectly measured by measuring the acceleration of the oscillator relative to the ground. Usually a piezoelectric sensor or strain gauge sensor is used to measure the acceleration of the oscillator and convert it into an electrical signal.

In the vibration meter, in addition to the measurement circuit, it also includes signal processing circuits such as amplifiers, filters, integrators, etc., in order to further process and display the measured electrical signals. At the same time, in order to achieve more accurate measurement, modern vibration meters usually use digital signal processing technology, such as FFT (fast Fourier transform) and other algorithms to improve the accuracy and stability of the measurement.


In short, the principle of 200-510-070-113-200-510-111-034-VM600-MPC4 vibration meter is based on the principle of inertia, by measuring the inertial motion of the object to indirectly measure the vibration of the object. By using different measuring elements and signal processing techniques, vibration measurement with high accuracy and stability can be achieved.

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BENTLY126599-01 
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WOODWARD8273-140 2301D
HONEYWELLFC-FANWR-24R
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WATLOW ANAFAZECLS216-10000000
HONEYWELLTERMINAL PLATE F860-CA 
TRICON 4000103-510
KONGSBERGRMP201-8
PARKER87-008145-03
TRICON4000093-310
WATL OW ANAFAZECAS200


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