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PDF LPY5150AL Data sheet ( Hoja de datos )

Número de pieza LPY5150AL
Descripción MEMS motion sensor:dual-axis pitch and yaw +-1500 /s analog output gyroscope
Fabricantes STMicroelectronics 
Logotipo STMicroelectronics Logotipo



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LPY5150AL
MEMS motion sensor:
dual axis pitch and yaw ±1500°/s analog output gyroscope
Preliminary data
Features
2.7 V to 3.6 V single-supply operation
Wide operating temperature range
(-40 °C to +85 °C)
High stability overtemperature
Analog absolute angular-rate output
Two separate outputs for each axis
(1x and 4x amplified)
Integrated low-pass filters
Low power consumption
Embedded power-down
Embedded self-test
High shock and vibration survivability
ECOPACK® RoHS and “Green” compliant
(see Section 5)
Applications
Gaming applications
Pointing devices, remote and game controllers
Motion control with user interface
Industrial and robotics
Description
The LPY5150AL is a low-power dual-axis
micromachined gyroscope capable of measuring
angular rate along pitch and yaw axes.
It provides excellent temperature stability and
high resolution over an extended operating
temperature range (-40 °C to +85 °C).
Table 1. Device summary
Order code
Temperature range (°C)
LPY5150AL
-40 to +85
LPY5150ALTR
-40 to +85
LGA-16L (5x5x1.5mm)
The LPY5150AL has a full scale of ±1500 °/s and
is capable of detecting rates with a -3 dB
bandwidth up to 140 Hz.
The gyroscope is the combination of one actuator
and one accelerometer integrated in a single
micromachined structure.
It includes a sensing element composed by single
driving mass, kept in continuous oscillating
movement and able to react when an angular rate
is applied based on the Coriolis principle.
A CMOS IC provides the measured angular rate
to the external world through an analog output
voltage, allowing high level of integration and
production trimming to better match sensing
element characteristics.
ST’s gyroscope family leverages on robust and
mature manufacturing process already used for
the production of micromachined accelerometers.
ST is already in the field with several hundreds
million sensors with excellent acceptance from
the market in terms of quality, reliability and
performance.
LPY5150AL is provided in plastic land grid array
(LGA) package. Several years ago ST pioneered
successfully the usage of this package for
accelerometers. Today ST has the widest
manufacturing capability and strongest expertise
in the world for production of sensor in plastic
LGA package.
Package
LGA-16 (5x5x1.5)
LGA-16 (5x5x1.5)
Packing
Tray
Tape and reel
July 2009
Doc ID 15809 Rev 2
This is preliminary information on a new product now in development or undergoing evaluation. Details are subject to
change without notice.
1/12
www.st.com
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LPY5150AL pdf
LPY5150AL
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Mechanical and electrical specifications
2 Mechanical and electrical specifications
2.1 Mechanical characteristics
Table 3.
Symbol
Mechanical characteristics @ Vdd = 3 V, T = 25 °C unless otherwise noted(1)
Parameter
Test condition
Min.
Typ.(2)
Max.
Unit
FSA 4x OUT (amplified)
Measurement range
FS OUT (not amplified)
±1500
±6000
SoA Sensitivity(3)
So
4x OUT (amplified)
OUT (not amplified)
0.67
0.167
SoDr
Voff
Sensitivity change vs
temperature
Zero-rate level(3)
Delta from 25°C
0.037
1.23
Vref Reference voltage
1.23
OffDr
Zero-rate level change
Vs temperature
Delta from 25°C
0.25
NL Non linearity
BW Bandwidth(4)
Best fit straight line
±1
140
Rn Rate noise density
0.175
Top
Operating
temperature range
-40
1. The product is factory calibrated at 3 V. The operational power supply range is specified in Table 4.
2. Typical specifications are not guaranteed
3. Sensitivity and zero-rate level are not ratiometric to supply voltage
4. The product is capable of measuring angular rates extending from DC to the selected BW.
+85
°/s
°/s
mV/ °/s
mV/ °/s
%/°C
V
V
°/s/°C
% FS
Hz
°/s / Hz
°C
Doc ID 15809 Rev 2
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LPY5150AL arduino
LPY5150AL
6 Revision history
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Revision history
Table 6. Document revision history
Date
Revision
Changes
04-Jun-2009
1 Initial release
06-Jul-2009
Small text changes to improve readability.
2 Updated Table 4
Doc ID 15809 Rev 2
11/12

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