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ADIS16501/PCBZ датащи(PDF) 17 Page - Analog Devices

номер детали ADIS16501/PCBZ
подробное описание детали  Precision, MEMS IMU
PDF  45 Pages
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производитель  AD [Analog Devices]
домашняя страница  http://www.analog.com
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ADIS16501/PCBZ датащи(HTML) 17 Page - Analog Devices

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Data Sheet
ADIS16501
TERMINOLOGY
analog.com
Rev. B | 17 of 45
Figure 28. Microlinearity Characteristic
Cutoff (−3 dB) Frequency
For applied AC acceleration and angular rates, cutoff (−3 dB)
frequency is the frequency at which the input stimulus is attenuated
in amplitude by 29.3% (1 − √2 ÷ 2) at the output of the signal chain.
The −3 dB corner is set according to the electrical signal chain
filter selected by the user. All other signal chain elements have an
appreciably high bandwidth and are not significant contributors to
the cutoff frequency.
Cutoff (−3 dB) Frequency Tolerance
Cutoff (−3 dB) frequency tolerance is the allowable variation to the
frequency at which a −3 dB (29.3%) signal attenuation is achieved.
The device clock directly correlates to the cutoff frequency achieved
by the ADIS16501. For each percent that the device clock frequen-
cy varies from its nominal value, so too does the cutoff frequency.
Low-Pass Filter Group Delay
The low-pass filter group delay is the time required for the signal
chain output to transition from 10% to 90% of its final value.
Low-pass filter group delay is measured in response to an applied
step change in acceleration or angular rate. The low-pass filter
group delay tolerance is equivalent to the cutoff (−3 dB) frequency
tolerance.
RMS Noise
RMS noise is the standard deviation of the acceleration or angular
rate output without an applied inertial stimulus. RMS noise can
be specified at either room temperature (25°C ± 5°C), or over
the entire operating temperature range (−40°C to +105°C). The
calculation method to assess the RMS noise is the same, regard-
less of the temperature range. Make this measurement with a
sufficiently high sample rate and sufficiently long duration to ensure
that adequate accuracy and repeatability are achieved according to
the requirements of the measurement system.
RMS noise= 1n−1∑i=1nxi−x2
where:
n is the number of sample values.
xi is the individual sample value.
x is the mean value of the population.
Resonant Frequency
Resonant frequency is also known as natural frequency (f0). Input
acceleration at the resonant frequency of a MEMS element causes
the sensor to displace by an amount equivalent to the applied
acceleration multiplied by the quality factor. For either underdamp-
ed or overdamped systems, acceleration applied at the resonant
frequency is not inherently destructive to the MEMS element.
Quality Factor
The quality factor is a scalar factor that governs the increase or
decrease in amplitude of an acceleration signal applied at the
resonant frequency of a MEMS element.
Sensitivity to Linear Acceleration (Limited
Condition, Gyroscope Only)
Sensitivity to linear acceleration is the change in the angular rate
output of the ADIS16501 in response to an applied linear accel-
eration. It is measured in °/sec/g. Reduced sensitivity to linear
acceleration improves the angular rate signal accuracy in harsh
environments where shock and vibration are present. Analog Devi-
ces, Inc., validates the gyroscope sensitivity to linear acceleration
through the application of both DC acceleration and Haversine
shock testing (<90 g peak and ≤10 ms duration).
Power-On Reset (POR)
After either a hardware or software reset, the ADIS16501 performs
a series of internal diagnostic routines to ensure the integrity of its
various signal chains. Although the inertial channels are not fully
settled until tSETTLE elapses, SPI communications can be conducted
after a minimum holdoff time of tPOR. This allows the system to
request noninertial data, apply desired configurations, or run the
available diagnostic routines.



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