SCA3100 DEMO KIT VTI Technologies, SCA3100 DEMO KIT Datasheet - Page 38

KIT DEMO ACCELEROMETER SCA3100

SCA3100 DEMO KIT

Manufacturer Part Number
SCA3100 DEMO KIT
Description
KIT DEMO ACCELEROMETER SCA3100
Manufacturer
VTI Technologies
Datasheet

Specifications of SCA3100 DEMO KIT

Sensor Type
Accelerometer, 3 Axis
Sensing Range
±2g
Interface
SPI
Sensitivity
900 counts/g
Voltage - Supply
3 V ~ 3.6 V
Embedded
No
Utilized Ic / Part
SCA3100 Series
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
551-1056
8.3 Linearity
VTI Technologies Oy
www.vti.fi
The linearity error characterization method described below is applied for those SCA3000 series
components that have measuring range ±3g or below.
Accurate input acceleration needed in linearity characterization is generated using centrifugal force
in centrifuge, see Figure 22. The RPM of the centrifuge is sweeped so that wanted input
acceleration values are applied in parallel to the sensor’s measuring axis.
Linearity error is the deviation from the straight line through sensor’s sensitivity calibration points,
see Figure 23.
Linearity error is calculated by
Equation 7
where LinEr
is sensor’s measured Z-axis output [counts] on input acceleration acc, Output
LinEr
Figure 22. Centrifugal acceleration applied for SCA3000 Z-axis.
Figure 23. SCA3000’s linearity error at input acceleration acc.
Sensor’s ideal
output
Z
Z
SCA3000 output at
axis
positive sensitivity
calibration point
@
Z-axis@acc
SCA3000 output
readings
acc
Y
=
X
-1 g
Output
is sensor’s Z-axis linearity error [%FS] on input acceleration acc, Output
Pin #1
Doc.Nr. 8257300A.07
Z
axis
Sens
Acceleration reading
from SCA3000 [g]
@
acc
FS
Output
+1 g
Centrifugal
acceleration
for Z-axis
acc
@
acc
Input acceleration [g] (centrifugal
acceleration in parallel to
SCA3000 measuring axis)
Possible offset error is not
included into linearity error
100
%
,
SCA3000 linearity
error in [g] at input
acceleration acc
@acc
SCA3000 Series
is sensor’s
Z-axis@acc
Rev.A.07
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