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MXD7210GL Datasheet(PDF) 2 Page - List of Unclassifed Manufacturers

Part No. MXD7210GL
Description  Low Cost, Low Noise -10 g Dual Axis Accelerometer with Digital Outputs
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MXD7210GL Datasheet(HTML) 2 Page - List of Unclassifed Manufacturers

 
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MEMSIC MXD7210GL/HL/ML/NL
Page 2 of 10
2003.08.04
MXD7210GL/HL/ML/NL SPECIFICATIONS (Measurements @ 25°C, Acceleration = 0 g unless otherwise noted; VDD = 5.0V
unless otherwise specified)
Parameter
Conditions
Min
MXD7210GL/H
L
Typ.
Max
Min.
MXD7210ML/N
L
Typ.
Max.
Units
SENSOR INPUT
Measurement Range1
Each Axis
±10.0
±10.0
g
Nonlinearity
Best fit straight line
0.5
0.5
% of FS
Alignment Error2
±1.0
±1.0
degrees
Alignment Error
X Sensor to Y Sensor
0.01
0.01
degrees
Cross Axis Sensitivity3
±0.5
±0.5
%
SENSITIVITY
Sensitivity Xout, Yout
Sensitivity Xout, Yout
Each Axis
VDD=5.0V
VDD=3.0V
3.6
3.5
4.0
4.0
4.4
4.5
3.6
3.5
4.0
4.0
4.4
4.5
%/g
%/g
Sensitivity Change over
Temperature4
Delta from 25
°C
10
15
%
ZERO g BIAS LEVEL
0 g Voltage Xout, Yout
0 g Voltage Xout, Yout
0 g Voltage Xout, Yout
0 g Voltage Xout, Yout
Each Axis
VDD=5.0V
VDD=5.0V
VDD=3.0V
VDD=3.0V
48.8
-0.3
48
-0.5
50.0
0.00
50
0.00
51.2
0.3
52
0.5
48.8
-0.3
48
-0.5
50.0
0.00
50
0.00
51.2
0.3
52
0.5
%
g
%
g
0 g Offset vs. Temperature4
Delta from 25
°C
1.5
1.5
mg/
°C
NOISE PERFORMANCE
Noise Density, rms
@25
°C
0.4
1.0
0.4
1.0
mg/
Hz
FREQUENCY RESPONSE
3dB Bandwidth
19
19
Hz
DUTY CYCLE OUTPUT
STAGE
Output High Voltage
Vs-0.2
Vs-0.2
V
Output Low Voltage
0.2
0.2
V
Current
Source or sink,
@3.0V-5.0V Supply
250
250
uA
T25 Drift vs. Temperature
-900
-750
-600
-900
-750
-600
ppm/
°C
Rise/Fall Time
200
200
ns
POWER SUPPLY
Operating Voltage Range
2.7
5.25
2.7
5.25
V
Quiescent Supply Current
3.2
4.1
3.2
4.1
mA
Turn-On Time
Level (0g), @5.0V
Supply
100
100
mS
TEMPERATURE RANGE
Operating Range
0
+70
-40
+85
°C
NOTES
1 Guaranteed by measurement of initial offset and sensitivity.
2 Alignment error is specified as the angle between the true and indicated axis of
sensitivity.
3 Cross axis sensitivity is the algebraic sum of the alignment and the inherent
sensitivity errors.
4 Defined as the output change from ambient to maximum temperature or ambient to
minimum temperature.
5 Duty cycle period


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