
Aircraft structures face demanding loads throughout their service life – from take-off and landing to turbulence and high-dynamic flight maneuvers. Over time, fatigue, overload or material defects can alter structural rigidity and dynamic behavior.
Modal and structural analyses help make these changes visible. By identifying natural frequencies, mode shapes and damping characteristics, aerospace engineers can assess structural behavior, validate designs and detect potentially critical changes.
The challenge: the sensors themselves must have minimal influence on the structure being tested.
ASC offers lightweight, high-frequency IEPE accelerometers ideally equipped for this task. The triaxial KS903B.10 and KS903B.100, for example, weigh lower than 10 grams. Together with the uniaxial KS96B.10, KS96B.100, KS97B.10 and KS97B.100 (mass is around 3 grams depending on the corresponding model) the portfolio provides measurement ranges from ±60 g to ±600 g, top or side connector options as well as TEDS integration.
Looking to capture structural dynamics without weighing down your test setup? Let us know your application and we will come back with the optimal sensor solution.
Please get in touch. We would be glad to support you personally.
E-mail: service[at]asc-sensors.de
Phone: +49 8441 786547-0

ASC supplies high-precision inertial sensor solutions for demanding measurement tasks in several industries. Our engineers have a deep understanding of a wide variety of applications – for example in the rail transport sector, the automotive industry or for structural health monitoring systems. Discover now the diverse options that sensors from ASC offer you.

Uniaxial, capacitive
Measurement range: ±2 to ±400 g
Noise density: 7 to 400 µg/√Hz
Frequency range (±5 %): DC to 2000 Hz

Triaxial, capacitive
Measurement range: ±2 to ±200 g
Noise density: 10 to 680 µg/√Hz
Frequency range (±5 %): DC to 2900 Hz
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