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LSM330D Datasheet, PDF (1/66 Pages) STMicroelectronics – Low power mode
LSM330D
iNEMO inertial module:
3D accelerometer and 3D gyroscope
Datasheet — production data
Features
■ Analog supply voltage: 2.4 V to 3.6 V
■ Digital supply voltage IOs: 1.8 V
■ Low power mode
■ Power-down mode
■ 3 independent acceleration channels and 3
angular rate channels
■ ±2 g/±4 g/±8 g/±16 g dynamically selectable
full scale
■ ±250/±500/±2000 dps dynamically selectable
full scale
■ SPI/I2C serial interface (16-bit data output)
■ Programmable interrupt generator for free-fall
and motion detection
■ ECOPACK® RoHS and “Green” compliant
Application
■ GPS navigation systems
■ Impact recognition and logging
■ Gaming and virtual reality input devices
■ Motion activated functions
■ Intelligent power saving for handheld devices
■ Vibration monitoring and compensation
■ Free-fall detection
■ 6D orientation detection
Description
The LSM330D is a system-in-package featuring a
3D digital accelerometer and a 3D digital
gyroscope.
ST’s family of MEMS sensor modules leverages
the robust and mature manufacturing processes
already used for the production of micromachined
accelerometers.
LGA-28L (3x5.5x1.0 mm)
The various sensing elements are manufactured
using specialized micromachining processes,
while the IC interfaces are developed using a
CMOS technology that allows the design of a
dedicated circuit which is trimmed to better match
the sensing element characteristics.
The LSM330D has dynamically user-selectable
full scale acceleration range of ±2 g/±4 g/±8
g/±16 g and angular rate of ±250/±500/±2000
deg/sec.
The accelerometer and gyroscope sensors can
be either activated or separately put in Low
power/Power-down mode for applications
optimized for power saving.
The LSM330D is available in a plastic land grid
array (LGA) package.
Table 1. Device summary
Part number
Temperature
range [°C]
Package
Packing
LSM330D -40 to +85
LSM330DTR -40 to +85
LGA-28L
(3x5.5x1.0
mm)
Tray
Tape and
reel
August 2012
This is information on a product in full production.
Doc ID 022562 Rev 2
1/66
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