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ADIS16501/PCBZ Datasheet(PDF) 15 Page - Analog Devices |
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ADIS16501/PCBZ Datasheet(HTML) 15 Page - Analog Devices |
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15 / 45 page ![]() Data Sheet ADIS16501 TERMINOLOGY analog.com Rev. B | 15 of 45 Figure 24. Allan Variance Plot Example Inertial Data Format Inertial data format is the digital representation of the angular rate or acceleration information output by the ADIS16501. Both the angular rate and acceleration information are transmitted as 16-bit (or 24-bit), twos complement values. Nominal sensitivity and nominal scale factor define the relationship for converting from the digital 16-bit (or 24-bit) value to either acceleration or angular rate. Nominal Sensitivity Nominal sensitivity is the slope of the line of best fit for the angular rate and acceleration transfer functions, as measured across the output full-scale range (FSR) of the ADIS16501. The sensitivity defines the change in output (LSB) per unit change of input (g or °/sec). Figure 25. Nominal Sensitivity Slope Nominal Scale Factor The nominal scale factor is the inverse of the nominal sensitivity. It is the slope of the line of best fit for the angular rate and acceleration transfer functions, as measured across the output FSR of the ADIS16501. The nominal scale factor describes the change in input (g or °/sec) per change in the device output (LSB). Sensitivity/Scale Factor Tolerance The sensitivity/scale factor tolerance is the allowable variation be- tween the applied angular rate or acceleration and the digital output (LSB). The acceleration sensitivity can be validated at inputs of ±1 g, and the angular rate sensitivity can be validated at any input greater than ±50°/sec. Acceleration = ACCMEASgIN=+1g +ACCMEASgIN=−1g 2g Gyroscope = ΩMEASΩIN=+50°/sec −ΩMEASΩIN=−50°/sec 100°/sec Figure 26. Sensitivity/Scale Factor Transfer Function Cross Axis Sensitivity Cross axis sensitivity is the measured output of the device in response to input stimuli orthogonal to the measurement axis. It is measured as a percentage of the applied orthogonal acceleration or rotation rate. All stimulus axes are defined relative to the package body as follows: Gyroscope= ΩMEASΩZ ΩXor ΩY ×100% Acceleration = ACCMEASgX gYor gY ×100% where: ΩMEAS (ΩZ) is the measured angular rate. ΩX (or ΩY) is the applied pitch or roll rate. ACCMEAS (gX) is the measured x-axis acceleration. gY (or gZ) is the applied y- or z-axis acceleration. |
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