content here.
content here.

Inertial Measurement Units (IMUs)

ADI’s award-winning Inertial Measurement Units (IMUs) are based on ADI’s iSensor intelligent sensor accelerometers and gyroscopes. ADI IMUs offer highly integrated devices that sense motion — including the type, rate, and direction of that motion – across multiple axis. By using the combined input from multiple accelerometer and gyroscope inertial sensing devices, IMUs are able to measure multiple degrees of freedom (DoF) in complex applications using a single component. Learn more about inertial sensing.

ADI’s broad range of interface compatible IMU solutions reduce system development time by up to 12 months due to the high level of integration on each chip and because all complex yet critical IMU calibration and compensation is done by ADI. Customers are saved the significant investment required in test equipment, and designers are assured the device will provide accurate and stable feedback. These devices also offer unprecedented ease-of-use with a simple, programmable interface that ensures the device is ready for integration right out-of-the-box.

Inertial Sensors

NEW PRODUCTS

Loading Selection Table Data. Please wait...

Processing request. Please wait.

Help

  • Sort: Click on the arrows beneath the parameter on which you would like to sort, ascending and descending order.

  • Add/Remove Parameters: Click on the Add/Remove Parameters button. Select/deselect the checkbox of the parameter in the add/remove parameter pop up box. Click on "Update" for the table to redraw with new selection of parameters.

  • Filter: Enter the desired value to filter parameter(s) by, and click the "Update Results" button to update the table display.

  • Reset Table: Click "Reset Table" to clear all filters/sorts and restore table back to default view.

  • Quick Filters: When applicable, select a quick filter with preset parameters filtered to narrow the results returned.

  • No Parts Returned: Adjust the filters on your least critical selection parameters in order to broaden your search.

Inertial Measurement Units (IMU)
  • Use Up or Down Arrows in Heading to Sort in Ascending or Descending Order
  • Narrow Results by Entering Values in Numeric Fields or by Pull Down Selections

Add/Remove Parameters










Part#
Results: 9
Product DescriptionRangeSensitivityTypical Bandwidth (kHz)Noise Density (°/s/rtHz)Voltage Supply (V)Supply Current Temp Range (°C)Package
Sort  
sortDescending sortAscending
 
sortDescending sortAscending
sortDescending sortAscending
sortDescending sortAscending
sortDescending sortAscending
sortDescending sortAscending
sortDescending sortAscending
Filter By Value
 
ADIS163004 DoF Inertial Sensor +/- 75 to +/- 300 °/s 0.0125°/s/LSB (+/-75°/s) 0.330.0384.75 to 5.2546.2mA-40 to 85°C(31 x 23 x 7.5) mm Mod
ADIS163506 DoF Sensor (room temp CAL) +/- 75 to +/- 300 °/s 0.0183 °/s/LSB (+/-80°/s)0.350.054.75 to 5.2557mA-40 to 85°C23 mm x 23 mm x 23 mm Mod
ADIS163546 DoF Sensor (-20 to 70C CAL) +/- 75 to +/- 300 °/s 0.0183 °/s/LSB (+/-80°/s)0.350.054.75 to 5.2557mA-40 to 85°C23 mm x 23 mm x 23 mm Mod
ADIS163556 DoF Sensor (-40 to 85C CAL +/- 75 to +/- 300 °/s 0.0183 °/s/LSB (+/-80°/s)0.350.054.75 to 5.2557mA-40 to 85°C23 mm x 23 mm x 23 mm Mod
ADIS163606 DoF Sensor (Room Temp CAL) +/- 75 to +/- 300 °/s 0.0125°/s/LSB (+/-75°/s) 0.330.054.75 to 5.2549mA-40 to 105°C 23 mm x 23 mm x 23 mm Mod
ADIS163626 DoF Inertial Sensor (-20 to 70C CAL)+/- 75 to 300 °/s 0.0125°/s/LSB (+/-75°/s) 0.330.0444.75 to 5.2549mA-40 to 105°C 23 mm x 23 mm x 23 mm Mod
ADIS163646 DoF Sensor (-20 to 70C CAL) +/- 75 to 300 °/s 0.0125°/s/LSB (+/-75°/s) 0.330.054.75 to 5.2549mA-40 to 105°C 23 mm x 23 mm x 23 mm Mod
ADIS163656 DoF Sensor (-40 to 85C CAL) +/- 75 to +/- 300 °/s 0.0125°/s/LSB (+/-75°/s) 0.330.054.75 to 5.2549mA-40 to 105°C 23 mm x 23 mm x 23 mm Mod
ADIS16405High Precision Tri-Axis Gyroscope, Accelerometer, Magnetometer (with Temp CAL) +/- 75 to +/- 300 °/s 0.0125°/s/LSB (+/-75°/s) 0.330.054.75 to 5.2570mA-40 to 105°C 23 mm x 23 mm x 23 mm Mod
Please scroll down to see more data.
back to top