Triaxial accelerometer A/30
piezoelectrichigh-temperaturehigh-sensitivity

triaxial accelerometer
triaxial accelerometer
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Characteristics

Number of axes
triaxial
Technology
piezoelectric
Other characteristics
high-temperature, high-sensitivity, industrial, for general purposes, for automotive applications, for machine condition monitoring
Acceleration range

9,807 m/s²
(32,175 ft/s²)

Frequency

13 kHz, 15 kHz

Description

Features • Mounting via cut through holes, see datasheet for available options. • Ultra lightweight design • High Sensitivity KONIC Shear Sensing Element. • Electrically Insulated individual inserts, eliminating ground loop interference. • Microdot Connector - 10-32 UNF Applications •Modal Analysis of lightweight structures •Automotive •Aerospace •High Temperature •Machine Monitoring •Condition Monitoring •Impact Testing •Industrial •Vibration Shaker Testing General purpose triaxial vibration transducer compromising three welded Konic Shear sensing elements bonded orthogonally into hard anodized aluminium housing. The inserts are electrically insulated individually and from the housing, thus eliminating ground loop interference. The additional mechanical isolation implicit in the construction provides near elimination of strain induced error. The spatial response of a structure to dynamic forcing, may lead to erroneous single axis vibration or shock measurement, due to the inherent directional property of the transducer. In cases where is deemed to be a problem, an orthogonal three axis measurement, allowing computation of absolute value and direction offers a solution. The d33 component suppression property of the Konic design, resulting in minimization of cross axis error, is particularly advantageous for three axis measurement integrity.
*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.