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AVI Series: Removing Vibration Noise from Measurements

AVI Series vibration control platforms provide performance, functionality and reliability that is unrivaled in the industry today, which is why thousands of researchers around the world have trusted Herzan to remove vibration noise from their measurements.

An Electromagnetic Variable Inertance and Damping Seat Suspension with by Pengfei Liu, Donghong Ning et al

Abstract This paper proposes a novel semi-active electromagnetic device with the capability of variable inertance and damping (VIVD) and an energy storage priority control (ESPC) strategy for vibration reduction of vehicle seat suspensions. The VIVD device can control its inertance and damping by adjusting resistances in a variable admittance (VA) circuit different from the traditional mechanical damper. The circuit and mechanical dynamics model of the VIVD seat suspension is analyzed and verified with tests, and the energy storage characteristic and controllability of the VIVD device are explored. Also, the frequency response characteristics of the VIVD device are derived from the admittance characteristics of the VA circuit. For the semi-active VIVD seat suspension, an H controller is designed to obtain the desired control force. An ESPC strategy is proposed to make the electromagnetic force of the VIVD device track the desired control force. The test results show that the VIVD se

A semi-active suspension using a magnetorheological damper with nonlin by J Yang, D Ning et al

The group of active suspensions with controllable actuating force is noted with their excellent performance in reducing vibrations, however, their demanding requirements for high power consumption and high cost as well as the highly potential instability issue have hindered their practical usage. Semi-active suspensions with controllable stiffness or damping are simple, stable and cost-efficient, but they cannot provide equivalent performance with active suspensions. By incorporating the negative stiffness mechanism into the semi-active suspension using a magnetorheological (MR) damper, this paper provides a solution to improving the vibration-reduction performance of the semi-active suspensions to the level achievable by active suspensions while avoiding the disadvantages of active control. The experimental results demonstrated that the new suspension has brought better vibration-reduction performance than the passive suspension and the conventional MR suspension, and that the vibrati

Global Single-Axis Accelerometers Market 2020 Potential Growth, Competitive Landscape and Development of Industry by 2025

Global Single-Axis Accelerometers Market 2020 Potential Growth, Competitive Landscape and Development of Industry by 2025
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