accelerometer lateral
Abstract: TN-009 time based techniques for analog built in self test e based all digital linear displacement sensor ic piezoresistive accelerometer temperature compensation TN-002 TN009 3 axis Accelerometers for rotation sensing linear acceleration Temperature Compensation Techniques for Piezoresistive Accelerometers
Text: Product Information Notes Accelerometer Systems with Built-in Testing H.V. Allen, S.C. Terry, D.W. de Bruin—IC Sensors, Milpitas, CA The ability to test sensors in the field without removing them device, this fall represents a 150 to 200 times over-force. The
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toy car control using accelerometer
Abstract: gravity sensor IC acceleration sensor mass spring ADXL05 Acceleration Sensors labpro force and motion lab
Text: Low-g Accelerometer Order Code LGA-BTA or LGA-DIN The Low-g Accelerometer can be used for a wide variety of experiments and demonstrations, both inside the lab and outside. The Low-g Accelerometer is designed for use with the following interfaces: • Vernier LabPro (for use with computers, TI graphing calculators, or Palm
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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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Airbag sensor piezoelectric
Abstract: crash sensor working principle
Text: Accelerometers for Restraint and Safety Systems Bosch produces accelerometers for deployment of airbags since 1978. The first systems have been using piezoelectric ceramics sensing elements. Starting in 1997 a new generation of sensors is in volume production providing a low-cost solution with
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CMS300
Abstract: No abstract text available
Text: Angular Rate and Dual-Axis Linear Acceleration Combi-Sensor CMS300 Technical Datasheet 1 General Description Actual size Z Y CMS300 PPYYMMLLLLRDD Made In Japan YYMMLLLL_XXXX X Features • Small 10.4 x 6.0 x 2.2mm • Proven and robust silicon MEMS vibrating ring gyro
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CMS300
CMS390)
117Hz
190Hz)
CMS300-00-0100-132
CMS300
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Untitled
Abstract: No abstract text available
Text: Angular Rate and Dual-Axis Linear Acceleration Combi-Sensor CMS390 Technical Datasheet www.siliconsensing.com 1 General Description Actual size Features • Small 10.4 x 6.7 x 2.7mm • Proven and robust silicon MEMS vibrating ring gyro and dual-axis accelerometer
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CMS390
CMS300
CMS390)
110Hz
190Hz)
CMS390-00-0100-132
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Untitled
Abstract: No abstract text available
Text: SF2006SN.A / Single axis class B seismic accelerometer 30S.SF2006SNA.E.02.13 Energy Mil/Aerospace Industrial Features Inertial Tilt Vibration Seismic ±5g linear output Very low noise of 0.9 µgrms/√Hz Wide dynamic range of 110 dB DC to 100Hz BW
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SF2006SNA
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Abstract: No abstract text available
Text: SF1600S.A – SF1600SN.A / Single axis best in class seismic accelerometer 30S.SF1600A.B.01.12 Energy Mil/Aerospace Industrial Features Inertial Tilt − − − − − − − − Vibration Seismic ±3g linear output Best in class noise level of 0.3 µgrms/√Hz
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SF1600S
SF1600SN
SF1600A
100Hz
1500Hz
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CMS300
Abstract: No abstract text available
Text: Angular Rate and Dual-Axis Linear Acceleration Combi-Sensor CMS390 Technical Datasheet 1 General Description Actual size Features • Small 10.4 x 6.7 x 2.7mm • Proven and robust silicon MEMS vibrating ring gyro and dual-axis accelerometer • Excellent bias over temperature (1.75˚/s, 30mg)
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CMS390
CMS300
CMS390)
117Hz
190Hz)
12ems
CMS390-00-0100-132
CMS300
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Untitled
Abstract: No abstract text available
Text: SF1600S.A – SF1600SN.A / Single axis best in class seismic accelerometer 30S.SF1600A.C.02.13 Energy Mil/Aerospace Industrial Features Inertial Tilt Vibration Seismic ±3g linear output Best in class noise level of 0.3 µgrms/√Hz
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Untitled
Abstract: No abstract text available
Text: SF2006SN.A / Single axis class B seismic accelerometer 30S.SF2006SNA.C.05.11 Energy Mil/Aerospace Industrial Features Inertial Tilt − − − − − − − − Vibration Seismic ±5g linear output Very low noise of 0.9 µgrms/√Hz Wide dynamic range of 110 dB DC to 100Hz BW
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SF2006SNA
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1000Hz
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Untitled
Abstract: No abstract text available
Text: SF2006SN.A / Single axis class B seismic accelerometer 30S.SF2006SNA.D.01.12 Energy Mil/Aerospace Industrial Features Inertial Tilt − − − − − − − − Vibration Seismic ±5g linear output Very low noise of 0.9 µgrms/√Hz Wide dynamic range of 110 dB DC to 100Hz BW
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1000Hz
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Untitled
Abstract: No abstract text available
Text: SF1600S.A – SF1600SN.A / Single axis best in class seismic accelerometer 30S.SF1600A.A.11.11 Energy Mil/Aerospace Industrial Features Inertial Tilt − − − − − − − − Vibration Seismic ±3g linear output Best in class noise level of 0.3 µgrms/√Hz
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XED 2013 Y supply
Abstract: XED 2013 Y xed 2013 Inertial accelerometer
Text: Dual-Axis Accelerometer CAS200 www.siliconsensing.com Technical Datasheet 1 General Description Actual size Y CAS214 - C X Features • Small 10.4 x 6.0 x 2.2mm • Excellent bias repeatability over temperature • Dual-axis MEMS accelerometer in a hermetically
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CAS214
170Hz)
CAS200-00-0100-132
XED 2013 Y supply
XED 2013 Y
xed 2013
Inertial accelerometer
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motorola speedometer
Abstract: speedometer digital speedometer airbag
Text: MOTOROLA SEMICONDUCTOR APPLICATION NOTE Baseball Pitch Speedometer AN1635 Prepared by: Carlos Miranda, Systems and Applications Engineer and David Heeley, Systems and Applications Mechanical Engineer INTRODUCTION The Baseball Pitch Speedometer, in its simplest form, consists of a target with acceleration sensors mounted on it, an
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AN1635
motorola speedometer
speedometer
digital speedometer
airbag
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piezoelectric pressure sensor
Abstract: Z147
Text: II. PIEZOELECTRIC PRESSURE TRANSDUCERS INTRODUCTION Low impedance pressure sensors measure dynamic changing pressures in liquids and gasses. Events with rise times as fast as 1 µs, frequencies to hundreds of kHz, and pressure levels down to fractions of a psi can be measured
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endevco 2771c
Abstract: Introduction to accelerometers wilcoxon IEPE accelerometers circuits missile accelerometer endevco iepe circuit 2771C Theory of Modern Electronic Semiconductor Device
Text: Practical considerations of accelerometer noise cmyk Practical considerations of accelerometer noise By Bruce B. Lent March 2007 This paper is written as an overview on low-noise piezoelectric accelerometers and will review when and where low-noise devices are needed as well as the engineering tradeoffs made
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piezoelectric shock sensor
Abstract: piezoelectric sensors Accelerometer filter "Piezoelectric Sensors" tp308 shock pneumatic articles piezoelectric contact accelerometer piezoelectric contact accelerometer sensor piezoelectric pressure sensor linear force sensor Piezoelectric sensitivity
Text: Problems in high-shock measurement cmyk Problems in high-shock measurement Engineers and scientists for years have struggled trying to improve the quality of high-g shock measurement. The biggest challenge has always been to pinpoint the source s of the problem. This paper discusses
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SC-RR-70-755,
TP308
piezoelectric shock sensor
piezoelectric sensors
Accelerometer filter
"Piezoelectric Sensors"
tp308 shock
pneumatic articles
piezoelectric contact accelerometer
piezoelectric contact accelerometer sensor
piezoelectric pressure sensor
linear force sensor Piezoelectric sensitivity
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DMU10-22-0100
Abstract: No abstract text available
Text: DMU10 Technical Datasheet Six Degrees of Freedom Precision MEMS Inertial Measurement Unit www.siliconsensing.com DMU10-01 DMU10-02 OEM Module Features 1 General Description • High performance six degrees of freedom 6-DOF MEMS IMU • 7 sensor inputs - Angular rate (x3)
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DMU10-01
DMU10-02
RS-422
DMU10-00-0100-132
DMU10-22-0100
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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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Abstract: No abstract text available
Text: 3-Axis ±200 g Analog MEMS Accelerometer ADXL377 Preliminary Technical Data FEATURES GENERAL DESCRIPTION 3-axis sensing ±200 g measurement range Analog output for full impact event visibility Low power: 300 µA typical Selectable bandwidth Up to 1600Hz bandwidth (XY)
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ADXL377
1600Hz
1200Hz
ADXL377
16-Lead
CP-16-28)
4-27-2010-A
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bosch torque sensor
Abstract: BOSCH 0 265 005 2 bosch 0 265 005 265 bosch "0 265 005 265" signal hall sensor bosch acceleration sensor mass spring gravity sensor bosch abs sensor Acceleration Sensors gravity sensor in degree
Text: 14 BOSCH Acceleration sensors Spring-mass acceleration sensors Measurement of acceleration up to ± 0.8 g1 • Measurement by springmass system and Hall sensor • Registration of static and low-frequency acceleration • Optimal transient response thanks to eddy-current
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bosch piezoelectric sensor
Abstract: Piezoelectric Sensor heart UAA 180 air mass bosch amplifier for piezo sensor impact sensor Piezo sensor Bosch Piezoelectric sensor block diagram piezoelectric pressure charge amplifier
Text: 18 Acceleration sensors BOSCH Piezoelectric acceleration sensors Measurement of acceleration up to 35g 7 / O ’ I I 2> - o - 1 3 L ^ 5 ^ • Acceleration measurement by means of piezoelectric spring element bimorphous strips • Low temperature-dependence
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air mass bosch
Abstract: bosch piezoelectric sensor SO 273 Bosch Sensors bosch acceleration sensor mass spring "piezo element" sensor bosch acceleration sensor piezoelectric sensors 260 c H-136
Text: Acceleration sensors BOSCH m Piezoelectric acceleration sensors Measurement of acceleration up to 35# “ 7 i 2. - I iq -lo • Acceleration measurement by means of piezoelectric spring element bimorphous strips • Low temperature-dependence • High sensitivity
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