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Supplier: LORD MicroStrain Sensing Systems
Description: Miniature Attitude Heading Reference System (AHRS) Overview The 3DM-GX3® -25 is a high-performance, miniature Attitude Heading Reference System (AHRS), utilizing MEMS sensor technology. It combines a triaxial accelerometer, triaxial gyro, triaxial magnetometer
- Additional Outputs: Magnetic Field (Magnetometer)
- Angular Rate Range: 50 to 1200 deg/sec
- Bandwidth: 225 Hz
- Linear Acceleration Measurement: MEMS
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Supplier: LORD MicroStrain Sensing Systems
Description: Miniature Attitude Heading Reference System Overview The 3DM-GX3® -25-OEM is a high-performance, miniature Attitude Heading Reference System (AHRS), utilizing MEMS sensor technology. It combines a triaxial accelerometer, triaxial gyro, triaxial magnetometer, temperature
- Additional Outputs: Magnetic Field (Magnetometer)
- Angular Rate Range: 50 to 1200 deg/sec
- Bandwidth: 225 Hz
- Linear Acceleration Measurement: MEMS
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Supplier: LORD MicroStrain Sensing Systems
Description: The 3DM-GX4 -25™ is a miniature high end industrial Attitude Heading and Reference System (AHRS), utilizing the highest performance MEMS sensor technology. It combines a triaxial accelerometer, triaxial gyro, triaxial magnetometer, temperature sensors, pressure altimeter and dual on
- Additional Outputs: Magnetic Field (Magnetometer)
- Angular Rate Range: 300 deg/sec
- Bandwidth: 500 Hz
- Electrical Output: Serial / Digital
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Supplier: LORD MicroStrain Sensing Systems
Description: Miniature Attitude Heading Reference System (AHRS) Overview The 3DM-GX3® -35 high-performance, miniature Attitude Heading Reference System (AHRS) with GPS, combines MEMS sensor technology and a highly sensitive embedded GPS receiver. It incorporates a triaxial
- Additional Outputs: Magnetic Field (Magnetometer)
- Angular Rate Range: 50 to 1200 deg/sec
- Bandwidth: 225 Hz
- Features: GPS Aided
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Supplier: SBG Systems SAS
Description: -weight sensor (49 grams) includes a MEMS-based Inertial Measurement Unit (IMU) and runs an enhanced Extended Kalman Filter (EKF) which fuses inertial and aiding information to provide accurate real time orientation and navigation data. High Accuracy for Such a Small Sensor
- Accuracy: 0.2000 ±% Full Scale
- Angular Rate Range: 450 to 1000 deg/sec
- Bandwidth: 250 Hz
- Electrical Output: Serial / Digital, Network / Fieldbus Output
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Supplier: SBG Systems SAS
Description: Ellipse-A is a small-sized high performance Attitude and Heading Reference System (AHRS). It provides Roll, Pitch, Heading, and Heave data. This light-weight sensor (45 grams) includes a MEMS-based Inertial Measurement Unit (IMU) integrating three gyroscopes, three magnetometers
- Accuracy: 0.2000 ±% Full Scale
- Angular Rate Range: 450 to 1000 deg/sec
- Bandwidth: 250 Hz
- Electrical Output: Serial / Digital, Network / Fieldbus Output
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Supplier: SBG Systems SAS
Description: Ellipse-N is a small-sized high performance Inertial Navigation System (INS) with integrated GNSS receiver. It provides Roll, Pitch, Heading, Heave, and Navigation data. This light-weight sensor includes a MEMS-based Inertial Measurement Unit (IMU) integrating three gyroscopes
- Accuracy: 0.2000 ±% Full Scale
- Angular Rate Range: 450 to 1000 deg/sec
- Bandwidth: 250 Hz
- Electrical Output: Serial / Digital, Network / Fieldbus Output
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Supplier: SBG Systems SAS
Description: Ekinox-A is an ITAR Free Attitude & Heading Reference System (AHRS) or MRU (Motion Reference Unit). It combines high end gyroscopes, accelerometers, magnetometers, and runs an enhanced Extended Kalman Filter (EKF) to provide Roll, Pitch, Heading, and Heave. High
- Accuracy: 0.0500 ±% Full Scale
- Angular Rate Range: 400 deg/sec
- Bandwidth: 100 Hz
- Electrical Output: Serial / Digital, Network / Fieldbus Output
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Supplier: DigiKey
Description: LSM303DLH MEMS Accelerometer, Magnetometer Sensor Evaluation Board
- Manufacturer: Other
- Ports: RS232/RS422/RS485
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Supplier: DigiKey
Description: LSM303DLM MEMS Accelerometer, Magnetometer Sensor Evaluation Board
- Manufacturer: Other
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Supplier: DigiKey
Description: LSM303D MEMS Accelerometer, Magnetometer Sensor Evaluation Board
- Manufacturer: Other
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Supplier: DigiKey
Description: LSM303DLH MEMS Accelerometer, Magnetometer Sensor Evaluation Board
- Manufacturer: Other
- Ports: RS232/RS422/RS485, SPI
- Supported System: Microcontroller
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Supplier: Win Source Electronics
Description: Alternative Parts (Cross-Reference): Cross Manufacturer: Analog Devices Inc. Category: Sensors, Transducers Motion Sensors IMUs (Inertial Measurement Units) Series: iMEMS®, iSensor™ Package: Tray Product Status: Obsolete Sensor Type: Accelerometer, Gyroscope, Magnetometer, 9 Axis
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Supplier: Win Source Electronics
Description: Alternative Parts (Cross-Reference): Cross Manufacturer: Analog Devices Inc. Category: Sensors, Transducers Motion Sensors IMUs (Inertial Measurement Units) Series: iMEMS®, iSensor™ Package: Tray Product Status: Active Sensor Type: Accelerometer, Gyroscope, Magnetometer, 9 Axis Output
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Supplier: RS Components, Ltd.
Description: MEMS 3D accelerometer and gyroscope. â?¢ LSM303AGR MEMS 3D accelerometer and magnetometer. â?¢ LPS22HB MEMS 260-1260hPa absolute digital output barometer. â?¢ HTS221 capacitive relative humidity and temperature sensor. â?¢ DIL24 socket
- Category: Development Suite / Kit
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Supplier: QUALCOMM, Incorporated
Description: Qualcomm® Bluetooth® Low Energy Solutions Environmental Sensor Board The Environmental Sensor Board is a plug-in expansion board for development with the CSR1011 development board or the CSR101x Starter development kit and is designed to help developers create next generation MEMS
- Technology: Bluetooth
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Supplier: Win Source Electronics
Description: Win Source Part Number: 1283647-STEVAL-MKI12 4V1 Category: Development Boards, Kits, Programmers>Evaluati on Boards - Sensors Series: MEMS Package: Bulk Standard Package: 1 Sensitivity: Multiple Supplied Contents: Board(s) Sensing Range: Multiple Ranges
- Category: Development Board
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Supplier: Win Source Electronics
Description: Win Source Part Number: 1283664-STEVAL-MKI11 3V1 Category: Development Boards, Kits, Programmers>Evaluati on Boards - Sensors Series: MEMS Package: Box Standard Package: 1 Interface: I2C Sensitivity: 1 ~ 3.9mg/Digit, ±0.01%/°C Supplied
- Category: Development Board
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Supplier: RS Components, Ltd.
Description: . â?¢ 100MHz STM32F411VET6 Cortex-M4F core microcontroller with 512KB Flash memory, 128KB RAM. â?¢ On-board LSM303DLHC MEMS e-compass with 3-axis accelerometer and 3-axis magnetometer. â?¢ On-board L3GD20 MEMS 3-axis gyroscope. â?¢ On-board MP45DT02 MEMS
- Category: Development Suite / Kit
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Supplier: Infineon Technologies AG
Description: XENSIV™ PASCO2V15 5V sensor XENSIV™ DPS368 pressure sensor XENSIV™ IM72D128 MEMS microphones SHT35 humidity and temperature sensor BMI270 6-axis inertial measurement unit BMM350 3-axis magnetometer sensor OPTIGA™ Trust M
- Category: Development Board
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Supplier: RS Components, Ltd.
Description: The Microchip MM7150 Motion Sensor Module is a fully integrated inertial measurement device suitable for a wide range of applications requiring motion and 3D positioning data. The module incorporates MEMS technology coupling an accelerometer, gyroscope and magnetometer with
- Operating Temperature: 70 C
- Package Type / Mounting: Other
- Sensor Type: Acceleration Sensor
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Supplier: RS Components, Ltd.
Description: with 512KB Flash memory, 128KB SRAM. â?¢ On-board ST-LINK/V2-1 debugger/programmer. â?¢ On-board LSM6DS3H 3-axis accelerometer / 3-axis gyroscope. â?¢ On-board LIS3MDL 3-axis magnetometer. â?¢ On-board LPS22HB barometer
- Category: Development Suite / Kit
- Supported System: Sensors, Other
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Description: other measurable quantities. A deep understanding of these interactions can be leveraged to apply sensor fusion techniques to minimize noise and/or extract additional information from sensor signals. Advances in microcontroller and MEMS manufacturing, along with improved internet
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Supplier: Richardson RFPD
Description: machine learning core – ultra-low-power high performance MEMS motion sensor (IIS2DH) – ultra-low-power 3-axis magnetometer (IIS2MDC) – digital absolute pressure sensor (LPS22HH) – relative humidity and temperature sensor (HTS221) – low-voltage digital local temperature
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Pressure Point 1: MEMS Pressure Sensors - Pressure Measurement Types
Microelectromechanical system (MEMS) pressure sensors have changed the way that system designers and application engineers measure pressure. The simplicity of use, small size, low cost and ruggedness allow these sensors to address applications in automobiles and industrial process control as well
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Micromechanical detectors for ferromagnetic resonance spectroscopy
Several authors have investigated similar MEMS-based magnetometers over the last ten years.17 In this paper, we focus on some of the microcantilever configurations recently studied in our laboratories that demonstrate the usefulness of MEMS magnetometers .
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MRS Online Proceedings Library - Development of a MEMS Xylophone Bar Magnetometer Using Optical Interferometry for Detection - Cambridge Journals Online
We report the results of an optical interferometric study, which was designed to measure the magnetic-field induced displacement of a resonating xylophone bar MEMS magnetometer .
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3D Magnetic Field Sensor Concept for Use in Inertial Measurement Units (IMUs)
In contrast to classical resonant MEMS magnetometers , which are based on Lorentz force mea- surement, our sensor uses permanent magnetic materials and piezoresistive detection with silicon strain gauges of nanometric section, leading to low power consumption and high sensitivity for small sensor…
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Single-structure 3-axis lorentz force magnetometer with sub-30 nT/√HZ resolution
To demonstrate that the MEMS magnetometer is capable of measuring Earth’s field, the device is rotated 360° about its y-axis and the horizontal component of Earth’s field is measured from the sensor’s x- and z-axis outputs, showing the expected sin…
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Sensitivity Enhancement of Lorentz Force MEMS Resonant Magnetometers via Internal Thermal-Piezoresistive Amplification
With their small size, low-cost and simplicity, MEMS magnetometers offer an attractive solu- tion for many applications.
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Advances in magnetometry
Fabricating MEMS magnetometers is generally challenging.
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Indoor Location Technologies
There are several principles on which MEMS magnetometers are based on that have enough sensitivity to measure the Earth’s magnetic field (e.g. *50 lT)—Lorentz force [23, 24], Magneto resistance [25], atomic spin-exchange relaxation-free mode (SERF) [25–27], and Hall…
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Optimization of two GPS/MEMS-IMU integration strategies with application to sports
Keywords GPS/INS integration Á MEMS-IMU Á MEMS magnetometer Á Navigation performance Á Loosely and closely coupled integration Á Orientation initialization Á Sport .
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