Shock accelerometer B00Y44
triaxialpiezoelectricIEPE

Shock accelerometer - B00Y44 - LNS Dynamics LLC - triaxial / piezoelectric / IEPE
Shock accelerometer - B00Y44 - LNS Dynamics LLC - triaxial / piezoelectric / IEPE
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Characteristics

Number of axes
triaxial
Technology
piezoelectric, IEPE
Other characteristics
low-sensitivity, for general purposes, industrial, for automotive applications, for crash tests, shock, IP68
Frequency

Min.: 10 Hz

Max.: 10,000 Hz

Description

Product Overview
The B00Y44 is a high-impact triaxial IEPE shock accelerometer engineered for extreme event capture in rugged test environments. Designed for aerospace, automotive, electronics, and industrial R&D labs, this sensor delivers rapid-response measurements under severe shock conditions and full manufacturing control from LNS.

Short Description
Shock IEPE Accelerometer
Triaxial
Sensitivity: 0.5 mV/g
Range: ±10,000 g
Temperature Range: -50 ~ 120 °C
Connector: 1/4-28 4pin
Mount: Thru-Hole

Key Features & Highlights
  • Triaxial Measurement — Simultaneously records X, Y, and Z axes to reduce mounting complexity and enable full-axis shock monitoring.
  • Extremely High Shock Range — ±10,000 g measurement range, suitable for very high-impact events and harsh test protocols.
  • Low Sensitivity for High-g Range — Approximately 0.5 mV/g sensitivity to support large amplitude capture without saturation.
  • Broad Frequency Response — From ~10 Hz to ~10 kHz, enabling capture of rapid transients and shock–vibration coupling.
  • Temperature Stability — Operating from –50 °C to +120 °C to handle extreme environments without performance degradation.
  • Connector & Mounting — Standard 1/4-28 four-pin connector plus through-hole mounting for test-fixture compatibility.

Why Choose the B00Y44?
  • Built for extreme events — Engineered for high shock, drop towers, impact sleds and severe crash pulses.
  • Vertical integration & quality assurance — LNS controls piezo-material fabrication, assembly, calibration and output verification for reproducibility and reliability.
  • Global-ready for engineers — Integrates into IEPE-based systems and designed for deployment across automotive, aerospace, electronics and industrial test labs.
  • Comprehensive support — Supplied with calibration certificates, traceability and compliance information for qualification and specification adherence.

Typical Applications
  • High-g impact simulation (crash, drop-tower, sled)
  • Aerospace component impact testing (landing gear, jettison, separation events)
  • Electronics board drop & shock testing for rugged devices
  • Heavy industrial equipment and structural impact monitoring
  • Multi-axis shock capturing in test labs where reliability and throughput matter

Caractéristiques / spécifications techniques
  • Sensitivity (mV/g): 0.5
  • Range (g): 10000 (±10,000 g)
  • Broadband Resolution (g rms): 0.02
  • Linearity: 3%
  • Frequency Range [10%] (Hz): 10-10k
  • Resonant Frequency (kHz): ≥70
  • Discharge Time Constant (s): ≤0.5
  • Transverse Sensitivity: ≤5%
  • Excitation Voltage (Vdc): 20-30 Vdc
  • Constant Current Excitation (mA): 2-20 mA
  • Output Impedance (Ω): ≤100
  • Output Bias Voltage (V): 8-12 Vdc
  • Max Shock (g): 12000
  • Temperature Range (℃): -50~120
  • Min Temperature (℃): -50
  • Max Temperature (℃): 120
  • Sensitivity Temperature Coefficient (%/℃): -0.07
  • Sealing: Laser Welding IP68
  • Housing Material: Titanium Alloy
  • Output Connector: 1/4-28 4pin
  • Mounting: Thru-Hole
  • Weight (grams): 7.8
  • Sensor Type: Shock
  • Output Type: IEPE
  • Axis: Triaxial
  • TEDS Optional: No

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*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.