VSA008

VSA008

$297.00
  • Description:VIBRATION ACCELEROMETER, 1 AXIS,
  • Series:-
  • Mfr:ifm efector, inc.
  • Package:Box

SKU:fe5cf7ea57ac Category: Brand:

  
  • Quantity
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Product Detailed Parameters

  • Description:VIBRATION ACCELEROMETER, 1 AXIS,
  • Series:-
  • Mfr:ifm efector, inc.
  • Package:Box
  • Sensor Type:Acceleration
  • Sensing Range:1Hz ~ 10kHz
  • Sensitivity:-
  • Output Type:Analog
  • Power - Rated:7.2V ~ 10.8V / 15mA
  • Operating Temperature:-30°C ~ 80°C
  • Features:-
  • Package / Case:Module
  • Mounting Type:Chassis Mount
  • Termination:Cable with Connector

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VSA008

Buying Guide
Summary

ifm efector, inc. VSA008 is used in Vibration Sensors category where placement, interface fit, and operating envelope drive measurement reliability. Key specs include Description (VIBRATION ACCELEROMETER, 1 AXIS), Output type (Analog), Temperature (-30°C ~ 80°C), Package/case (Module), and Mounting (Chassis Mount).

Selection Notes
  • For VSA008, confirm Sensing Range (1Hz ~ 10kHz) is suitable for your use case and operating conditions.
  • Double-check the mounting type (Chassis Mount) for your intended installation method.
  • Check the required supply voltage (7.2V ~ 10.8V / 15mA) and allow margin for tolerance and transients.
  • Confirm the frequency range (1Hz ~ 10kHz) fits your signal band and filtering plan.
Alternates & Substitutions
  • For Vibration Sensors substitutions, lock footprint/pinout and operating envelope first, then verify the critical performance conditions on your hardware.
  • When evaluating alternates, treat package/case Module, mounting Chassis Mount, packaging Box as non-negotiable unless you are re-spinning the PCB.
  • Verify the alternate stays within supply 7.2V ~ 10.8V / 15mA, temperature -30°C ~ 80°C across startup, load steps, and worst-case temperature.
  • When in doubt, treat the swap as an ECO: define acceptance criteria, then validate under worst-case operating corners.
FAQ

How do I validate sensor performance for VSA008?
Test with real fixtures and environmental conditions, then confirm calibration, drift, and noise behavior meet your requirements.

What is the output type of VSA008?
Analog

Which Sensor Type is listed for VSA008?
Acceleration

What frequency range does VSA008 cover?
1Hz ~ 10kHz

Application Scenarios

For ifm efector, inc. VSA008 used in Vibration Sensors designs, the shortlist is often driven by predictable margins and a straightforward validation plan. They measure acceleration and angular motion to support stabilization, navigation, and vibration analytics. Engineers typically consider bandwidth, noise density, bias drift, and mechanical mounting so sensor fusion remains robust. Shock and vibration sensing is validated under realistic mechanical profiles so thresholds and false-trigger rates remain bounded. From a validation perspective, the goal is confirming the part still behaves well under real loading and real noise sources. In industrial machinery, vibration analytics predicts bearing wear in hot, noisy enclosures. Across handheld tools, motion sensing enables safety cutoffs and usage analytics while surviving repeated drops and impacts. Across navigation modules, IMU performance influences dead-reckoning accuracy when GNSS signals are weak or blocked. With the boundaries defined early, teams can validate faster and keep failure modes more predictable.

Compatibility Advice
  • To reduce integration risk, verify environmental stress assumptions (temperature, humidity, contamination) so sensing remains repeatable over life across temperature and supply corners.
  • To keep validation repeatable, check bandwidth and latency so the control loop behavior is predictable in production. This keeps qualification evidence reproducible later.
Project Fit
  • Good fit when you can bench-verify ifm efector, inc. VSA008 for Vibration Sensors integration under realistic load and noise, and you need repeatable motion outputs with a defined latency and bandwidth budget.
  • Poor fit when noise and interference sources are unknown, so the error budget cannot be bounded, because it becomes difficult to prove margin across production variance.
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