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SCA3000-E02
VTI Technologies Oy 2/4
www.vti.fi Doc. Nr. 8256000B.0 Rev.B.0
Performance Characteristics 1)
Typical supply range
2.35 – 2.7 V
Extended supply
range 2.7 – 3.6 V
Parameter
Condition
Min Typ 2) Max Min Typ 2) Max
Units
Analog and digital Vdd 2.35 2.5 2.7 - 3.3 - V
Digital I/O Vdd Vdd ≥ Digital I/O Vdd 1.7 1.8 / 2.5 2.7 - 3.3 - V
Operating temperature ** -40 - 85 -40 - 85 °C
Current consumption * Reset 3) - <7 12 - <9 - µA
Active - 200 240 - 250 - µA
Motion Detection
mode
- 170 210 - 210 - µA
Acceleration range * 4) Nominal -3 - 3 - ± 3 - g
Offset calibration error * Z-axis +1g position -40 - 40 - ± 100 - mg
Offset temperature error ** 5) -40 ... +85 °C -3 ±0.8 3 - ±0.8 - mg/°C
Sensitivity * 6) - 1000 - 1000 - Count/g
Sensitivity calibration error * -1.5 - +1.5 - ± 1 - %
Sensitivity temperature error
** 7)
-40 ... +85 °C - ±0.01 - ±0.01 - %/°C
Non-Linearity ** 8) -3 ±1 3 - 1 - % FS
Cross-Axis sensitivity ** 9) - 3 - - 3 - %
Bandwidth ** 10) Measurement mode 32 40 48 - 40 - Hz
Narrow band
measurement mode
9 11 13 - 11 - Hz
Noise ** 11) Measurement mode - 9 18 - 9 - mg RMS
Narrow band
measurement mode
- 5 10 - 5 - mg RMS
Output data rate ** Measurement mode 100 125 150 - 130 - Hz
Narrow band
measurement mode
50 63 75 - 63 -
Turn on time ** 12) Measurement mode - 30 70 - 30 - ms
Narrow band
measurement mode
- 200 400 - 200 -
I2C clock rate ** - - 100 - - 100 kHz
* 100% tested in production
** Qualified during product validation
1) The product is factory calibrated at 2.5 V in room temperature.
2) Typical values are not guaranteed.
3) Includes the current through the internal 400 kΩ pull-up resistor connected to digital I/O Vdd.
4) Range defined as g
z
y
x3
2
2
2≤++ . The measuring range is tested on sensing element level. FS = 3g.
5) Offset temperature error = {Count(0g)-Offset} / Sensitivity [ g ]. Sensitivity = Calibrated sensitivity.
Offset= Calibrated offset.
6) Sensitivity = {Count(+1g) - Count(-1g)}/2 [Count/g].
7) Sensitivity temperature error = {[Count(+1g)-Count(-1g)]/2 - Sensitivity} / Sensitivity x 100% [%].
Sensitivity = Calibrated sensitivity.
8) From straight line through sensitivity calibration (+1g, -1g) points.
9) 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 which are perpendicular to the measuring axis. The angular alignment error
between X, Y and Z axis is included into the cross axis sensitivity.
10) Frequency responses according to Figure 3 and Figure 4.
11) Average noise/axis over the measurement bandwidth defined as )
2
2
2
(
3
1z
n
y
n
x
n++ , where nx, ny and nz are
the measured signal's standard deviation due to noise in x, y and z directions.
12) Settling error less than 1% of FS.