gravity sensor
Abstract: Tilt Sensors degree 3 axis gravity sensor IC acceleration sensor vibration sensors triaxial accelerometer sensor airbag crash sensor Piezo Vibration Sensor Airbag sensor piezoelectric horizon gyroscope piezoelectric pressure sensor
Text: Accelerometer Accelerometer Design Design and and Applications Applications James James Doscher Doscher Micromachining Micromachining Evangelist Evangelist a Objectives Objectives •• •• •• •• •• What What can can II do do with with an an accelerometer?
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Stinger
Abstract: Wheatstone Bridge servo amplifier Endevco force hammer endevco 2270 iepe circuit Endevco iepe piezoelectric contact accelerometer shaker wheatstone bridge piezoelectric transducer force
Text: Minimizing measurement uncertainty in calibration and use of accelerometers TP 299 Minimizing measurement uncertainty in calibration and use of accelerometers ABSTRACT Two themes should stand out concerning measurement This paper summarizes techniques and equipment
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DX Z146
Abstract: Z147
Text: DYNAMIC MEASUREMENT TECHNICAL REFERENCE SECTION TABLE OF CONTENTS Z-131 to Z-134 I Piezoelectric Accelerometers Z-135 to Z-146 II Piezoelectric Pressure Transducers Z-147 to Z-148 III Piezoelectric Force Sensors Z-149 to Z-150 IV Impulse Hammers Z-151 to Z-152
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Introduction to accelerometers
Abstract: aCCELEROMETER APPLICATION CIRCUIT Triax AN2774 D103 D104 J105 MC13192 ACCELEROMETER using CIRCUIT S105
Text: Freescale Semiconductor Application Note AN2774 Rev. 1.1, 09/2004 Accelerometer Demonstration With the Sensor Applications Reference Design SARD 1 Introduction This application note shows how the Freescale 2.4 GHz Wireless Technology is used in conjunction with
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AN2774
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Introduction to accelerometers
aCCELEROMETER APPLICATION CIRCUIT
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Gyroscope technical data
Abstract: ADIS16201 impact sensor br06 gyroscope 9 AXIS gyroscope ANGLE ADIS16209 Gyroscope ADIS16006 ADIS16003
Text: iSensor Motion Sensor Products By embedding motion sensing in your application, valuable improvements can be realized in precision, response time, reliability, safety, and security. Analog Devices’ highly integrated, calibrated, and simple-to-implement iSensor products make realizing those
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BR06775-2
Gyroscope technical data
ADIS16201
impact sensor
br06
gyroscope 9 AXIS
gyroscope ANGLE
ADIS16209
Gyroscope
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LIS302DL X Y Z
Abstract: LGA 16L 3 axis Accelerometer 3-axis accelerometer lpy530 LIS35DE 3 axis Accelerometers for rotation sensing LPY503AL p75nf75 LPR503AL
Text: MEMS motion sensors June 2009 www.st.com/mems STMicroelectronics is driving innovation in MEMS micro electro-mechanical systems technology. With several hundred million sensors sold on the market, ST accelerometers and gyroscopes are widely used to enable advanced
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BRMEMS0609
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3 axis Accelerometer
3-axis accelerometer
lpy530
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3 axis Accelerometers for rotation sensing
LPY503AL
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Acceleration
Abstract: No abstract text available
Text: AN 012 Accelerometer Errors Introduction Although everyone would like them to be, sensors are not perfect. Understanding the accelerometer’s errors is just as important as understanding how the accelerometer works in an application. Errors can and will affect the application’s
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Abstract: No abstract text available
Text: AN 022 Getting Started with the KXTE9 Introduction This application note will help developers quickly implement proof-of-concept designs using the KXTE9 tri-axis accelerometer. Please refer to the KXTE9 data sheet for additional implementation guidelines. While Kionix strives to ensure that our accelerometers will meet
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gps tracker circuit diagram
Abstract: schematic pedometer HMC1041Z circuit diagram of pedometer pdf on Pedestrian Detection sirf grf2i reckoning VEHICLE DETECTION AMR mems pedometer MXD6020G
Text: Application Note – AN219 Digital Compass Reference Design with the SiRFstar2t GPS Chipset ABSTRACT Until recently, combining a GPS chipset with magnetic sensors for a digital compass heading feature was pretty much a separate circuit affair. Today with the
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gps tracker circuit diagram
schematic pedometer
HMC1041Z
circuit diagram of pedometer
pdf on Pedestrian Detection
sirf grf2i
reckoning
VEHICLE DETECTION AMR
mems pedometer
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LGA-16 land pattern
Abstract: LGA-16 LPR510AL LPR510ALTR
Text: LPR510AL MEMS motion sensor: dual axis pitch and roll ±100°/s analog 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
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Abstract: p75nf75 gyroscope 9 AXIS mems angular st 3000 is LGA16 LGA-16 LPY510ALTR 223V
Text: LPY510AL MEMS motion sensor dual axis pitch and yaw ±100°/s analog gyroscope Preliminary data Features • 2.7 V to 3.6 V single supply operation ■ Very extended operating temperature range -40°C to +85°C ■ High stability over temperature ■ Absolute analog rate output
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LPR510AL
Abstract: 15811 LPR510ALTR LGA16 LGA-16 land pattern LGA-16 lga16 land pattern
Text: LPR510AL MEMS motion sensor dual axis pitch and roll ±100°/s analog gyroscope Preliminary data Features • 2.7V to 3.6 V single supply operation ■ Very extended operating temperature range -40°C to +85°C ■ High stability over temperature ■ Absolute analog rate output
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AN3182
Abstract: LIS331DLH application note 3 axis Accelerometers for rotation sensing compass calibration LIS331DLH 3 axis Accelerometer 3-axis accelerometer 2 axis Accelerometer analog ACC12 adc for accelerometer sensor
Text: AN3182 Application note Tilt measurement using a low-g 3-axis accelerometer Introduction This application note describes the methods and techniques for measuring tilt angles from a low-g 3-axis accelerometer. The LIS331DLH 3-axis digital accelerometer is used as an
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3 axis Accelerometers for rotation sensing
compass calibration
3 axis Accelerometer
3-axis accelerometer
2 axis Accelerometer analog
ACC12
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LGA 16L
Abstract: LGA-16 LPY510AL LPY510ALTR ST LGA-16
Text: LPY510AL MEMS motion sensor: dual axis pitch and yaw ±100°/s analog gyroscope Preliminary data Features • 2.7 V to 3.6 V single supply operation ■ Very extended operating temperature range -40°C to +85°C ■ High stability overtemperature ■ Absolute analog rate output
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Abstract: No abstract text available
Text: LY3200ALH MEMS motion sensor: high performance ±2000 dps analog yaw-rate gyroscope Features • 2.7 V to 3.6 V single supply operation ■ Wide extended operating temperature range -40°C to +85°C ■ High stability over temperature ■ Analog absolute angular-rate output
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Abstract: No abstract text available
Text: AN 028 Getting Started with the KXCJ9 Introduction This application note will help developers quickly implement proof-of-concept designs using the KXCJ9 tri-axis accelerometer. Please refer to the KXCJ9 data sheet for additional implementation guidelines. While Kionix strives to ensure that our accelerometers will meet
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LY330ALH
Abstract: LGA-10 LY330ALHTR gyroscope 9 AXIS LGA10 LGA land pattern MEMS Gyroscope
Text: LY330ALH MEMS motion sensor: high performance ±300 dps analog yaw-rate gyroscope Features • 2.7 V to 3.6 V single-supply operation ■ Wide operating temperature range -40 °C to +85 °C ■ High stability over temperature ■ Analog absolute angular-rate outputs
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gyroscope 9 AXIS
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LGA land pattern
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Untitled
Abstract: No abstract text available
Text: AN 028 Getting Started with the KXCJ9 Introduction This application note will help developers quickly implement proof-of-concept designs using the KXCJ9 tri-axis accelerometer. Please refer to the KXCJ9 data sheet for additional implementation guidelines. While Kionix strives to ensure that our accelerometers will meet
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Abstract: No abstract text available
Text: AN 028 Getting Started with the KXCJ9 Introduction This application note will help developers quickly implement proof-of-concept designs using the KXCJ9 tri-axis accelerometer. Please refer to the KXCJ9 data sheet for additional implementation guidelines. While Kionix strives to ensure that our accelerometers will meet
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Acceleration
Abstract: No abstract text available
Text: AN 039 Getting Started with the KXCJK Introduction This application note will help developers quickly implement proof-of-concept designs using the KXCJK tri-axis accelerometer. Please refer to the KXCJK data sheet for additional implementation guidelines. While Kionix strives to ensure that our accelerometers will meet
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LY330ALH
Abstract: LGA-10 LY330ALHTR LGA10 delta dps 500 gyroscope 9 AXIS Gyroscope technical data mems gyroscope three axis seismic sensor 8161636B
Text: LY330ALH MEMS motion sensor: high performance ±300 dps analog yaw-rate gyroscope The device includes a sensing element composed of a single driving mass, kept in continuous oscillation and capable of reacting, based on the Coriolis principle, when an angular rate is applied.
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gyroscope 9 AXIS
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mems gyroscope three axis
seismic sensor
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Abstract: No abstract text available
Text: AN 023 Getting Started with the KXTF9 Introduction This application note will help developers quickly implement proof-of-concept designs using the KXTF9 tri-axis accelerometer. Please refer to the KXTF9 data sheet for additional implementation guidelines. While Kionix strives to ensure that our accelerometers will meet
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Abstract: No abstract text available
Text: LY330ALH MEMS motion sensor: high performance ±300 dps analog yaw-rate gyroscope The device includes a sensing element composed of a single driving mass, kept in continuous oscillation and capable of reacting, based on the Coriolis principle, when an angular rate is applied.
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LGA-16
Abstract: LY510ALH
Text: LY510ALH MEMS motion sensor: high performance ±100 °/s analog yaw-rate 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
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