HP MJF for Unmanned Systems
High-Accuracy MEMS Accelerometers for UAVs & Unmanned Systems used in Commercial, Industrial & Military Applications
2422H Accelerometer Harsh-environment three-axis accelerometer module with 5VDC input
2422H Accelerometer

Harsh-environment three-axis accelerometer module with 5VDC input

Visit Website Contact
Saved
Save
2422H Accelerometer

The 2422H is a specialized three-axis accelerometer module designed for applications with limited power supplies or where steady +5V DC excitation is available or preferred. Based on three orthogonally-mounted SDI industrial-grade surface mount MEMS accelerometer chips, the sensor provides low noise and excellent long-term stability.

The hermetically-sealed IP67-rated accelerometer is ideal for applications experiencing large or rapid temperature fluctuations or prolonged periods of extreme temperatures, and features a rugged titanium casing with an easily detachable connector that allows for custom cable lengths. Each unit is individually tested, calibrated and verified in a climate chamber before shipping, and a full calibration report is provided.

Specifications:

Dimensions 0.985 x 0.985 x 0.825”
Weight 24g
Power 4.75 – 5.25 VDC
G-Range Options ±2, 5, 10, 25, 50, 100, 200, 400g
Bias Calibration Error (%) 0.25 typ., 0.6 max
Bias Calibration Error (mV) 25 typ., 60 max
Bias Temperature Shift -100 to +100 PPM/oC
Scale Factor Calibration Error (%) 0.5 typ., 1.25 max
Scale Factor Temperature Shift -150 to +50 PPM/oC

THE WEEKLY eBRIEF

The latest unmanned systems news, straight to your inbox.

Get our weekly roundup of technology developments, new products and industry news.

By subscribing, you agree to receive the weekly UST eBrief newsletter from EchoBlue Ltd. Unsubscribe at any time using the link in every email. See our Privacy Notice.

Advancing Unmanned Systems Through Strategic Collaboration UST works with major OEMs to foster collaboration and increase engagement with SMEs, to accelerate innovation and drive unmanned systems capabilities forward.