MMA3202EG Freescale, MMA3202EG Datasheet - Page 3

MMA3202EG

Manufacturer Part Number
MMA3202EG
Description
Manufacturer
Freescale
Datasheet

Specifications of MMA3202EG

Family Name
MMA3202
Package Type
SOIC W
Operating Supply Voltage (min)
4.75V
Operating Supply Voltage (typ)
5V
Operating Supply Voltage (max)
5.25V
Operating Temperature (min)
-40C
Operating Temperature (max)
125C
Operating Temperature Classification
Automotive
Product Height (mm)
3.3mm
Mounting
Surface Mount
Pin Count
20
Lead Free Status / RoHS Status
Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MMA3202EG
Manufacturer:
FREESCALE
Quantity:
20 000
Sensors
Freescale Semiconductor
Table 2. Operating Characteristics
(Unless otherwise noted: –40°C ≤ T
10. The Status pin output latches high if a Low Voltage Detection or Clock Frequency failure occurs, or the EPROM parity changes to odd. The
11. Time for amplifiers to recover after an acceleration signal causing them to saturate
12. Preserves phase margin (60°) to guarantee output amplifier stability.
13. A measure of the device's ability to reject an acceleration applied 90° from the true axis of sensitivity.
Operating Range
Output Signal
Noise
Self-Test
Status
Minimum Supply Voltage (LVD Trip)
Clock Monitor Fail Detection Frequency
Output Stage Performance
Mechanical Characteristics
1.
2. These limits define the range of operation for which the part will meet specification.
3. Within the supply range of 4.75 and 5.25 volts, the device operates as a fully calibrated linear accelerometer. Beyond these supply limits
4. The device can measure both + and – acceleration. With no input acceleration the output is at mid-supply. For positive acceleration the
5. The device is calibrated at 20g.
6. At clock frequency ≅70 kHz.
7. The digital input pin has an internal pull-down current source to prevent inadvertent self test initiation due to external board level leakages.
8. Time for the output to reach 90% of its final value after a self-test is initiated.
9. The Status pin output is not valid following power-up until at least one rising edge has been applied to the self-test pin. The Status pin is
Supply Voltage
Supply Current
Operating Temperature Range
Acceleration Range X-axis
Acceleration Range Y-axis
Zero-g (T
Zero-g
Sensitivity X-axis (T
Sensitivity Y-axis (T
Sensitivity X-axis
Sensitivity Y-axis
Bandwidth Response
Nonlinearity
RMS (.01 Hz – 1 kHz)
Power Spectral Density
Clock Noise (without RC load on output)
Output Response
Input Low
Input High
Input Loading
Response Time
Output Low (I
Output High (I
Electrical Saturation Recovery Time
Full Scale Output Range (I
Capacitive Load Drive
Output Impedance
Transverse Sensitivity
Package Resonance
For a loaded output the measurements are observed after an RC filter consisting of a 1 kΩ resistor and a 0.01 μF capacitor to ground.
the device may operate as a linear device but is not guaranteed to be in calibration.
output will increase above V
high whenever the self-test input is high, as a means to check the connectivity of the self-test and Status pins in the application.
Status pin can be reset low if the self-test pin is pulsed with a high input for at least 100 μs, unless a fault condition continues to exist.
(9) (10)
A
= 25°C, V
load
(7)
load
(2)
(3)
(8)
= 100 μA)
= 100 μA)
A
A
DD
Characteristic
= 25°C, V
= 25°C, V
(12)
(13)
= 5.0 V)
OUT
DD
= 200 μA)
/2 and for negative acceleration the output will decrease below V
DD
DD
(4)
= 5.0 V)
= 5.0 V)
(11)
A
≤ +105°C, 4.75 ≤ V
(6)
(5)
DD
≤ 5.25, Acceleration = 0g, Loaded output.)
Symbol
V
NL
t
V
DELAY
V
n
n
V
V
f
n
f
V
V
g
g
OFF,V
–3dB
g
V
XZ,YZ
I
V
f
V
t
PKG
T
S
S
RMS
C
Z
PSD
CLK
I
min
FSO
DD
OFF
LVD
ST
S
S
OH
DD
FS
FS
OUT
ST
IN
OL
IH
A
IL
O
V
V
L
0.7 × V
V
0.46 V
DD
4.75
2.35
3.72
7.44
–1.0
0.25
Min
–40
360
V
–30
9.6
2.7
19
38
50
6
SS
– 0.8
DD
DD
0.50 V
DD
112.5
–100
5.00
56.3
3.25
Typ
400
110
300
2.5
2.0
2.0
0.2
20
40
12
10
/2.
8
4
8
DD
V
0.3 × V
0.54 V
(1)
DD
+125
–300
+1.0
Max
5.25
2.65
4.28
8.56
14.4
V
440
260
100
2.8
0.4
4.0
5.0
10
21
42
– 0.25
DD
DD
DD
MMA3202KEG
μV/(Hz
mV/g/V
mV/g/V
% FSO
% FSO
mVrms
mVpk
mV/g
mV/g
Unit
kHz
kHz
mA
μA
ms
ms
°C
Hz
pF
V
V
V
V
V
V
V
V
V
Ω
g
g
g
1/2
)
3

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