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SCA1000-D01 Ver la hoja de datos (PDF) - Murata Manufacturing

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SCA1000-D01 Datasheet PDF : 18 Pages
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SCA1000-D01
Note 1. The measuring range is limited only by the sensitivity, offset and supply voltage rails of the device
Note 2. 1g = 9.82m/S2
Note 3. Offset specified as Voffset = Vout(0g) [ V ]. See note 13.
Note 4. Sensitivity specified as Vsens = {Vout(+1g) - Vout(-1g)}/2 [ V/g ]. See note 13
Note 5.
Offset error specified as Offset Error = {Vout(0g) - Vdd/2} / Vsens [ g ]
Vsens = Nominal sensitivity
Vdd/2 = Nominal offset
See note 13.
Note 6. Sensitivity error specified as Sensitivity Error = { [Vout(+1g) - Vout(-1g)] / 2 - Vsens} / Vsens x 100% [% ]
Vsens = Nominal sensitivity
See note 13.
Note 7. From straight line through -1g and +1g.
Note 8. The frequency response is determined by the sensing element’s internal gas damping. The output has true DC
(0Hz) response.
Note 9. The ratiometric error is specified as.
Vout(@
Vx)
×
5.00V
RE = 100% × 1
Vx
Vout(@5V )
Note 10. The cross-axis sensitivity determines how much acceleration, perpendicular to the measuring axis, couples to the
output. The total cross-axis sensitivity is the geometric sum of the sensitivities of the two axes that are
perpendicular to the measuring axis.
Note 11. In addition, supply voltage noise couples to the output due to the ratiometric nature of the accelerometer.
Note 12. The self-test will increase the output voltage. The output will go to Vdd rail. The purpose of the self-test is to check
out the total functionality of the sensor. It is not meant for calibration or auto zeroing.
Note 13. Measuring positions
Murata Electronics Oy
www.muratamems.fi
Doc. Nr. 8225700
8/18
Rev.C

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