MMA1270D

1
Motorola Sensor Device Data
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The MMA series of silicon capacitive, micromachined accelerometers
features signal conditioning, a 2–pole low pass filter and temperature
compensation. Zero–g offset full scale span and filter cut–off are factory set and
require no external devices. A full system self–test capability verifies system
functionality.
Features
Integral Signal Conditioning
Linear Output
2nd Order Bessel Filter
Calibrated Self–test
EPROM Parity Check Status
Transducer Hermetically Sealed at Wafer Level for Superior Reliability
Robust Design, High Shock Survivability
Typical Applications
Vibration Monitoring and Recording
Appliance Control
Mechanical Bearing Monitoring
Computer Hard Drive Protection
Computer Mouse and Joysticks
Virtual Reality Input Devices
Sports Diagnostic Devices and Systems
ORDERING INFORMATION
Device Temperature Range Case No. Package
MMA1270D –40 to +105°C Case 475–01 SOIC–16
SIMPLIFIED ACCELEROMETER FUNCTIONAL BLOCK DIAGRAM
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  
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Figure 1. Simplified Accelerometer Functional Block Diagram
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REV 0
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by MMA1270D/D
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SEMICONDUCTOR TECHNICAL DATA
Motorola, Inc. 2002
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MMA1270D: Z AXIS SENSITIVITY
MICROMACHINED
ACCELEROMETER
±2.5g
16 LEAD SOIC
CASE 475–01
16
9
1
8
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Pin Assignment
Frees
cale Semiconductor,
I
Freescale Semiconductor, Inc.
For More Information On This Product,
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2
Motorola Sensor Device Data
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MAXIMUM RATINGS
(Maximum ratings are the limits to which the device can be exposed without causing permanent damage.)
Rating Symbol Value Unit
Powered Acceleration (all axes) g
pd
1500 g
Unpowered Acceleration (all axes) g
upd
2000 g
Supply Voltage V
DD
–0.3 to +7.0 V
Drop Test
(1)
H
drop
1.2 m
Storage Temperature Range T
stg
–40 to +125 °C
NOTES:
1. Dropped onto concrete surface from any axis.
ELECTRO STATIC DISCHARGE (ESD)
WARNING: This device is sensitive to electrostatic
discharge.
Although the Motorola accelerometers contain internal
2kV ESD protection circuitry, extra precaution must be taken
by the user to protect the chip from ESD. A charge of over
2000 volts can accumulate on the human body or associated
test equipment. A charge of this magnitude can alter the per-
formance or cause failure of the chip. When handling the ac-
celerometer, proper ESD precautions should be followed to
avoid exposing the device to discharges which may be detri-
mental to its performance.
Frees
cale Semiconductor,
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Freescale Semiconductor, Inc.
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3
Motorola Sensor Device Data
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OPERATING CHARACTERISTICS
(Unless otherwise noted: –40°C T
A
+105°C, 4.75 V
DD
5.25, Acceleration = 0g, Loaded output
(1)
)
Characteristic
Symbol Min Typ Max Unit
Operating Range
(2)
Supply Voltage
(3)
Supply Current
Operating Temperature Range
Acceleration Range
V
DD
I
DD
T
A
g
FS
4.75
1.1
40
5.00
2.1
2.5
5.25
3.0
+105
V
mA
°C
g
Output Signal
Zero g (T
A
= 25°C, V
DD
= 5.0 V)
(4)
Zero g (V
DD
= 5.0 V)
Sensitivity (T
A
= 25°C, V
DD
= 5.0 V)
(5)
Sensitivity(V
DD
= 5.0 V)
Bandwidth Response
Nonlinearity
V
OFF
V
OFF
S
S
f
–3dB
NL
OUT
2.25
2.2
712.5
693.8
40
1.0
2.5
2.5
750
750
50
2.75
2.8
787.5
806.3
60
+1.0
V
V
mV/g
mV/g
Hz
% FSO
Noise
RMS (0.1 Hz – 1.0 kHz)
Spectral Density (RMS, 0.1 Hz – 1.0 kHz)
(6)
n
RMS
n
SD
3.5
700
6.5
mVrms
µg/Hz
Self–Test
Output Response (V
DD
= 5.0 V)
Input Low
Input High
Input Loading
(7)
Response Time
(8)
V
ST
V
IL
V
IH
I
IN
t
ST
0.9
V
SS
0.7 V
DD
50
1.25
125
10
1.6
0.3 V
DD
V
DD
300
25
V
V
V
µA
ms
Status
(12)(13)
Output Low (I
load
= 100 µA)
Output High (I
load
= –100 µA)
V
OL
V
OH
V
DD
0.8
0.4
V
V
Output Stage Performance
Electrical Saturation Recovery Time
(9)
Full Scale Output Range (I
OUT
= –200 µA)
Capacitive Load Drive
(10)
Output Impedance
t
DELAY
V
FSO
C
L
Z
O
V
SS
+0.25
50
2.0
V
DD
0.25
100
ms
V
pF
Mechanical Characteristics
Transverse Sensitivity
(11)
V
XZ,YZ
5.0 % FSO
NOTES:
1. For a loaded output the measurements are observed after an RC filter consisting of a 1 k resistor and a 0.1 µF capacitor to ground.
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
the device may operate as a linear device but is not guaranteed to be in calibration.
4. The device can measure both + and acceleration. With no input acceleration the output is at midsupply. For positive acceleration the output
will increase above V
DD
/2 and for negative acceleration the output will decrease below V
DD
/2.
5. Sensitivity limits apply to 0 Hz acceleration.
6. At clock frequency 35 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. Time for amplifiers to recover after an acceleration signal causing them to saturate.
10. Preserves phase margin (60°) to guarantee output amplifier stability.
11. A measure of the device’s ability to reject an acceleration applied 90° from the true axis of sensitivity.
12. 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
high whenever the self–test input is high.
13. The Status pin output latches high if the EPROM parity changes to odd. The Status pin can be reset by a rising edge on self–test, unless
a fault condition continues to exist.
Frees
cale Semiconductor,
I
Freescale Semiconductor, Inc.
For More Information On This Product,
Go to: www.freescale.com
nc...

MMA1270D

Mfr. #:
Manufacturer:
NXP / Freescale
Description:
Accelerometers 4.75-5.25 VOLT
Lifecycle:
New from this manufacturer.
Delivery:
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