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E-LIS3L02AS5TR 查看數據表(PDF) - STMicroelectronics

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E-LIS3L02AS5TR Datasheet PDF : 14 Pages
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2 Mechanical and Electrical Specifications
LIS3L02AS5
Table 2.
Mechanical Characteristics1 (continued)
(Temperature range -40°C to +85°C) All the parameters specified @ Vdd = 5.0V,
T = 25°C unless otherwise noted
Symbol
Parameter
Test Condition
Min.
Typ.2
Max.
Unit
Top
Operating Temperature
Range
Wh Product Weight
-40
+85
°C
0.6
gram
Note: 1 The product is factory calibrated at 5.0V. The device can be powered from 4.5V to 5.5V. Voff, So
and Vt parameters will vary with supply voltage.
2 Typical specifications are not guaranteed
3 Verified by wafer level test and measurement of initial offset and sensitivity
4 Zero-g level and sensitivity are essentially ratiometric to supply voltage
5 Guaranteed by design
6 Contribution to the measuring output of an inclination/acceleration along any perpendicular axis
7 “Self test output voltage change” is defined as Vout(Vst=Logic1)-Vout(Vst=Logic0)
t(s) 8 “Self test output voltage change” varies cubically with supply voltage
c 9 When full-scale is set to ±6g, “self-test output voltage change” is one third of the specified value.
u 10 Minimum resonance frequency Fres=1.5KHz. Sensor bandwidth=1/(2*π*110K*Cload) with
d Cload>1nF.
te Pro 2.2 Electrical Characteristics
bsole Table 3.
Electrical Characteristics1
(Temperature range -40°C to +85°C) All the parameters are specified @ Vdd =5.0V, T=25°C
unless otherwise noted
- O Symbol
Parameter
Test Condition
Min.
Typ.2
Max. Unit
t(s) Vdd
Supply Voltage
uc Idd
Supply Current
4.5
5
5.5
V
mean value
PD pin connected to GND
1.0
1.5
mA
rod IddPdn
Supply Current in Power rms value
Down Mode
PD pin connected to Vdd
2.5
5
µA
te P Logic 0 level
0
Vst
Self Test Input
le Logic 1 level
3.6
0.8
V
Vdd
V
oRout Output Impedance
80
110
140
k
ObsCload Capacitive Load Drive3
320
pF
Ton
Turn-On Time at exit from
Power Down mode
Cload in µF
550*Cload+0.3
ms
Note: 1 The product is factory calibrated at 5.0V
2 Typical specifications are not guaranteed
3 Minimum resonance frequency Fres=1.5KHz. Sensor bandwidth=1/(2*π*110k*Cload) with
Cload>1nF
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