SCA610-E23H1A-1

SCA610-E23H1A
Murata Electronics Oy 7/12
www.muratamems.fi Doc. nr. 82 1525 00 Rev.A
2. Functional description
2.1. Measuring directions
2.2. Voltage to acceleration conversion
Analog output can be transferred to acceleration using the following equation for conversion:

ySensitivit
gVV
onAccelerati
outout
0
[g]
where: V
out
(0g) = nominal output of the device at 0g position with 5 V supply voltage (ratiometric
output), Sensitivity is the sensitivity of the device and V
out
is the output of the sensor.
2.3. Ratiometric Output
Ratiometric output means that the zero offset point and sensitivity of the sensor are proportional to
the supply voltage. If the SCA6X0 supply voltage is fluctuating the SCA6X0 output will also vary.
When the same reference voltage for both the SCA6X0 sensor and the measuring part (A/D-
converter) is used, the error caused by reference voltage variation is automatically compensated
for.
2.4. Selftest and failure detection modes
To ensure reliable measurement results the SCA6X0 has continuous interconnection failure and
calibration memory validity detection. A detected failure forces the output signal close to power
supply ground or VDD level, outside the normal output range.
The calibration memory validity is verified by continuously running parity check for the control
register memory content. In the case where a parity error is detected, the control register is
automatically re-loaded from the EEPROM. If a new parity error is detected after re-loading data
analog output voltage is forced to go close to ground level (<0.25 V).
The SCA6X0 also includes a separate self test mode. The true self test simulates acceleration, or
deceleration, using an electrostatic force. The electrostatic force simulates acceleration that is high
enough to deflect the proof mass to the extreme positive position, and this causes the output signal
to go to the maximum value. The self test function is activated by a separate on-off command on
the self test input.
-1 g position
V
out,nom
= 1.3 V
0 g position
V
out,nom
= 2.5 V
+1 g position
V
out,nom
= 3.7 V
+
-
+
-
SCA610-E23H1A
Murata Electronics Oy 8/12
www.muratamems.fi Doc. nr. 82 1525 00 Rev.A
The self-test generates an electrostatic force, deflecting the sensing element’s proof mass, thus
checking the complete signal path. The true self test performs following checks:
Sensing element movement check
ASIC signal path check
PCB signal path check
Micro controller A/D and signal path check
The created deflection can be seen in analogue output. Self test can be activated applying logic”1”
(positive supply voltage level) to ST pin (pins 6) of SCA6X0. The self test Input high voltage level is
4 – Vdd+0.3 V and input low voltage level is 0.3 – 1 V.
Figure 7. Self test wave forms.
V1 = initial output voltage before the self test function is activated.
V2 = output voltage during the self test function.
V3 = output voltage after the self test function has been de-activated and after stabilization time
Please note that the error band specified for V3 is to guarantee that the output is within 5% of the
initial value after the specified stabilization time. After a longer time (max. 1 second) V1=V3.
T1 = Pulse length for Self test activation
T2 = Saturation delay
T3 = Recovery time
T4 = Stabilization time =T2+T3
T5 = Rise time during self test.
T1 [ms] T2 [ms] T3 [ms] T4 [ms] T5 [ms] V2: V3:
10-100 Typ. 20 Typ. 50 Typ. 70 Typ. 10 Min 0.95*VDD
(4.75V @Vdd=5V)
0.95*V1-
1.05*V1
Self test characteristics.
Vout
5V
0 V
TIME
[
MS
]
T1
T2
T3
T4
V1
V2 V3
ST pin
voltage
0 V
5 V
T5
SCA610-E23H1A
Murata Electronics Oy 9/12
www.muratamems.fi Doc. nr. 82 1525 00 Rev.A
3. Mechanical Specification
Lead frame material: Copper
Plating: Nickel followed by Gold
Solderability: JEDEC standard: JESD22-B102-C
Co-planarity: 0.1 mm max.
The part weights: ~0.73 g
3.1. Dimensions
Figure 8
. Mechanical dimensions [mm].

SCA610-E23H1A-1

Mfr. #:
Manufacturer:
Description:
Motion & Position Sensors Accelerometers 1-Axis Accelerometer Analog
Lifecycle:
New from this manufacturer.
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