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Supplier: Gladiator Technologies, Inc.
Description: The G400D Biax Gyro represents Gladiator's breakthrough gyro technology enabling an ultra low noise biaxial digital MEMS gyro and bandwidth of 250Hz that has performance commensurate with much more expensive small Dynamically Tuned Gyros. It is designed for
- Angular / Rotary Axes: Biaxial
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Supplier: Gladiator Technologies, Inc.
Description: The G300D Gyro represents Gladiator's breakthrough gyro technology enabling an ultra low noise tri-axis MEMS gyro and bandwidth of 250Hz that has performance commensurate with much more expensive small Dynamically Tuned Gyros. It also features industry leading bias
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Supplier: Gladiator Technologies, Inc.
Description: G150Z Gyro represents Gladiator's breakthrough gyro technology enabling an ultra low noise MEMS gyro and bandwidth of 200Hz that has performance commensurate with much more expensive small RLG's and small open loop FOG's. The G150Z also features industry leading bias
- Angular / Rotary Axes: Uniaxial
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Supplier: Shenzhen Rion Technology Co., Ltd
Description: North finder is mainly used to find true north automatically. After get heading angle, if north finding inertial navigation start to move, it could output continuous changing dynamic tilt angle and heading angle. Polaris-II uses low speed drift MEMS gyro to find north, built-in IMU is
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Supplier: Shenzhen Rion Technology Co., Ltd
Description: TL740D is RION company newly developed horizontal azimuth angular gyro sensor based on latest MEMS inertial measurement platform , by means of the dynamic attitude algorithm for the angular velocity of gyroscope ,it can simultaneously output carrier’s azimuth angle .The product
- Angular / Rotary Axes: Triaxial
- Angular Rate Range: 150 deg/sec
- Electrical Output: Pulse / Frequency
- Operating Temperature: -40 to 85 F
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Supplier: Shenzhen Rion Technology Co., Ltd
Description: TL766D is RION company newly developed three axis angle instrument based on latest MEMS inertial measurement platform , it can simultaneously output Moving carrier’s horizontal angle, vertical angle and horizontal azimuth. The internal integration of the triaxial accelerometer and
- Angular / Rotary Axes: Triaxial
- Angular Rate Range: 300 deg/sec
- Electrical Output: Pulse / Frequency
- Operating Temperature: -40 to 85 F
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Supplier: Shenzhen Rion Technology Co., Ltd
Description: TL735G is a high-precision three-axis attitude meter developed by RION Technology based on the company's latest MEMS inertial measurement platform. It outputs the horizontal azimuth angle and angular rate of the object in real time by performing dynamic attitude algorithm on the angular rate
- Angular / Rotary Axes: Triaxial
- Angular Rate Range: 125 deg/sec
- Bandwidth: 100 Hz
- Electrical Output: Pulse / Frequency
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Supplier: Dytran by HBK
Description: Measure XYZ Acceleration and Roll, Pitch and Yaw. Series 7576 is a fully analog six degree of freedom (6DOF) sensor containing three MEMS–based single axis accelerometers as well as three MEMS–based gyros. The sensor will provide the end userX, Y, Z acceleration (g’s) as well
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Supplier: Dytran by HBK
Description: Measure XYZ Acceleration and Roll, Pitch and Yaw. Series 7576 is a fully analog six degree of freedom (6DOF) sensor containing three MEMS–based single axis accelerometers as well as three MEMS–based gyros. The sensor will provide the end userX, Y, Z acceleration (g’s) as well
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Supplier: Dytran by HBK
Description: Measure XYZ Acceleration and Roll, Pitch and Yaw. Series 7576 is a fully analog six degree of freedom (6DOF) sensor containing three MEMS–based single axis accelerometers as well as three MEMS–based gyros. The sensor will provide the end userX, Y, Z acceleration (g’s) as well
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Supplier: Dytran by HBK
Description: Measure XYZ Acceleration and Roll, Pitch and Yaw. Series 7576 is a fully analog six degree of freedom (6DOF) sensor containing three MEMS–based single axis accelerometers as well as three MEMS–based gyros. The sensor will provide the end userX, Y, Z acceleration (g’s) as well
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Supplier: Tronics Microsystems
Description: ) at a fraction of their size, weight, and power consumption. With an excellent bias instability of 0.4 °/h and an ARW (Angular Random Walk) of 0.07 °/vh, GYPRO4300 offers a miniature, digital and low-SWaP (Size, Weight and Power) high performance MEMS rate gyro that paves the
- Angular / Rotary Axes: Uniaxial
- Angular Rate Range: 300 deg/sec
- Bandwidth: 200 Hz
- Bias Stability: 0.4000 deg/hr
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Supplier: Imego
Description: IBG21 is a small, rugged and shock-tolerant MEMS-based gyro system. The dual-side mounting capability allows measurement of all three rotation axes on a single mounting plane. IBG21 is based on the GyroSense concept and consists of a sensor chip, a mixed-signal ASIC and a D
- Angular / Rotary Axes: Uniaxial
- Angular Rate Range: 0.0 to 3200 deg/sec
- Bandwidth: 256 Hz
- Bias Stability: 2 to 12 deg/hr
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Supplier: LORD MicroStrain Sensing Systems
Description: Miniature Inertial Measurement Unit And Vertical Gyro Overview The 3DM-GX3® -15 is a high-performance, miniature Inertial Measurement Unit and Vertical Gyro, utilizing MEMS sensor technology. It combines a triaxial accelerometer, triaxial gyro, temperature sensors, and an
- Accuracy: 0.5000 to 2 degrees
- Form Factor: Module / Standalone
- Number of Axes: 3
- Operating Temperature: -40 to 158 F
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Supplier: LORD MicroStrain Sensing Systems
Description: Overview The 3DM-GX3® -15-OEM is a high-performance, miniature Inertial Measurement Unit and Vertical Gyro, utilizing MEMS sensor technology. It combines a triaxial accelerometer, triaxial gyro, temperature sensors, and an on-board processor running a sophisticated sensor fusion
- Accuracy: 0.5000 to 2 degrees
- Form Factor: Module / Standalone
- Number of Axes: 3
- Operating Temperature: -40 to 158 F
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Supplier: LORD MicroStrain Sensing Systems
Description: The 3DM-GX4-15™ is a miniature high end industrial Inertial Measurement Unit (IMU), utilizing the highest performance MEMS sensor technology. It combines a triaxial accelerometer, triaxial gyro, temperature sensors, pressure altimeter and dual on-board processors running a
- Additional Outputs: Magnetic Field (Magnetometer)
- Angular Rate Range: 300 deg/sec
- Bandwidth: 500 Hz
- Electrical Output: Serial / Digital
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Supplier: SBG Systems SAS
Description: Web Interface >48h Internal Data Logger Robust IP68 Aluminum Enclosure Ekinox Series Brings Robust and Cost-effective MEMS to FOG Level Ekinox Series brings robust, maintenance free, and cost-effective MEMS to the Fiber Optic Gyro accuracy and
- 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: Tronics Microsystems
Description: applications requiring both acceleration and angular rate sensing with high bias stability and high sensitivity constraints, the AXO®305 closed-loop digital MEMS accelerometers sensors are ideally complemented by our GYPRO®4000 closed-loop gyros that pave the way to a new generation of
- Acceleration: 5 g
- Device Type: Sensor / Transducer
- Features: Self Test / Diagnostics / Self Calibrating
- Frequency Range: 120 Hz
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Supplier: Tronics Microsystems
Description: Tronics is the only provider of both closed-loop digital MEMS Accelerometers and Gyros, taking MEMS inertial sensors to an unrivalled level of performance. Closed-loop electronics, also called force-rebalance, brings several key advantages to inertial sensors, including superior
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Supplier: Gladiator Technologies, Inc.
Description: The MRM60 IMU is our small mid-performance NON-ITAR MEMS IMU which offers low noise gyros with 0.003°/sec/vHz (250°/s) Angle Random Walk (ARW). The IMU offers mid-performance with 3°/hr in-run bias stability, excellent bias and scale factor over temperature, rugged durability through
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Supplier: Acme Chip Technology Co., Limited
Description: MEMS GYRO Z-AXIS (YAW) 30-CLCC
- Operating Temperature: -40 to 185 F
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Supplier: Acme Chip Technology Co., Limited
Description: MEMS GYRO Z-AXIS (YAW) 30-CLCC
- Operating Temperature: -40 to 185 F
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Description: PMOD ADXRS290 2-AXIS MEMS GYRO
- Category: Development Board
- Manufacturer: Other
- Supported System: Other
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Supplier: LORD MicroStrain Sensing Systems
Description: 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 sensors, and an on-board processor running a sophisticated sensor
- Accuracy: 0.5000 to 2 degrees
- Form Factor: Module / Standalone
- Number of Axes: 3
- Operating Temperature: -40 to 158 F
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Supplier: SAE International
Description: The paper presents feasibility and effectiveness of an innovative algorithm for spacecraft attitude determination, based on the real time fusion of raw data measurements provided by APS cameras, less limited by metrological constraints than traditional cameras used for star detection, and
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Supplier: Aerotech, Inc.
Description: Design Features Smaller than traditional three-axis simulators to accommodate today's miniature MEMS gyros in a much smaller footprint Modular design based on the ARMS rate tables Continuous or limited travel options Pedestal options High torque three-axis systems for testing INU and
- Type: Three-axis
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Supplier: RS Components, Ltd.
Description: Analog Devices range of single, dual and 3 axis gyroscopes measure the angular rate of an object. ADIs range of MEMS and iSensor MEMS Gyros measure the rotation of an object in degrees per second over a wide dynamic range and bandwidth. Some products also offer on chip signal
- Package Type / Mounting: Other
- Sensor Type: Acceleration Sensor
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Supplier: RS Components, Ltd.
Description: Analog Devices range of single, dual and 3 axis gyroscopes measure the angular rate of an object. ADIs range of MEMS and iSensor MEMS Gyros measure the rotation of an object in degrees per second over a wide dynamic range and bandwidth. Some products also offer on chip signal
- Package Type / Mounting: Other
- Sensor Type: Acceleration Sensor
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Supplier: RS Components, Ltd.
Description: Analog Devices range of single, dual and 3 axis gyroscopes measure the angular rate of an object. ADIs range of MEMS and iSensor MEMS Gyros measure the rotation of an object in degrees per second over a wide dynamic range and bandwidth. Some products also offer on chip signal
- Package Type / Mounting: Other
- Sensor Type: Acceleration Sensor
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Supplier: RS Components, Ltd.
Description: Analog Devices range of single, dual and 3 axis gyroscopes measure the angular rate of an object. ADIs range of MEMS and iSensor MEMS Gyros measure the rotation of an object in degrees per second over a wide dynamic range and bandwidth. Some products also offer on chip signal
- Package Type / Mounting: Other
- Sensor Type: Acceleration Sensor
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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
- Bluetooth Component: Bluetooth® Development Kits
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Supplier: Telit IoT Solutions, Inc.
Description: . Its dead reckoning algorithm supports 3D Gyro, 3D accelerometer and Odometer inputs. It also supports A-GNSS onboard generation as well as A-GNSS server-generated file injection. The SL869-DR provides a proven gap-free navigation solution that compensates for possible difficult GNSS
- Bias / Operating Current: 0.0730 mA
- Device Type: Modem
- IC Package Type: Other
- Interface: I2C, USB, Other
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Supplier: Richardson RFPD
Description: Authentication and Brand protection secure solution with STSAFE-A110 (footprint) Wide range of industrial IoT sensors: – ultra-wide bandwidth (up to 6 kHz), low-noise, 3-axis digital vibration sensor (IIS3DWB) – 3D accelerometer + 3D Gyro iNEMO inertial measurement unit (ISM330DHCX) with
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Supplier: Aerotech, Inc.
Description: sensors in a vacuum and angular testing of inertial sensors such as gyros, MEMS and accelerometers. The AMG LP gimbal design incorporates recent Aerotech rotary stage design improvements to provide high performance at an affordable price. The finest quality motors, bearings and
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GYPRO®4300 is a high stability MEMS gyro tailored to GNSS-assisted inertial navigation and positioning of ground vehicles and trains, MRU (Motion Control Unit) for ship motion control and positioning, as well as AHRS for small aircrafts, helicopters, and drones, but (read more)
Browse Gyroscopes Datasheets for Tronics Microsystems -
4300 is the first product reference of Tronics GYPRO4000 new high performance digital MEMS gyro platform which complements the recently (read more)
Browse Gyroscopes Datasheets for Tronics Microsystems -
Discover Tronics GYPRO®4300, a high stability and vibration-tolerant digital MEMS gyro for mining and oil & gas applications. Housed in a miniature ceramic package, it features a bias instability of 0.4 °/h and a vibration rectification error of 0.5 °/h/g², which (read more)
Browse Gyroscopes Datasheets for Tronics Microsystems -
stabilization. For precision positioning and navigation of ships, AUV (Autonomous Underwater Vehicles) and subsea ROV (Remotely Operated Vehicles), Tronics MEMS accelerometers and gyros exhibit excellent bias stability and scale factor linearity that allow our customers to design high (read more)
Browse Accelerometers Datasheets for Tronics Microsystems -
Tronics is the only provider of both closed-loop MEMS Accelerometers and Gyros, taking MEMS inertial sensors to an unrivalled level of performance. Closed-loop electronics, also called force-feedback, brings several key advantages to inertial sensors, including superior (read more)
Browse Inertial Measurement Units (IMU) Datasheets for Tronics Microsystems -
Are you involved in the design of trainborne positioning and navigation systems ? Discover AXO®305, a ± 5 g high precision digital MEMS accelerometer and GYPRO®4300, a ± 300 °/s high stability digital MEMS gyro that demonstrate (read more)
Browse Accelerometers Datasheets for Tronics Microsystems -
and GYPRO®4300, a ± 300 °/s high stability digital MEMS gyro, that both take advantage of a close-loop architecture to ensure highly linear response and excellent vibration rectification error for precise tool orientation and guidance under high vibrations and shocks. (read more)
Browse Inertial Measurement Units (IMU) Datasheets for Tronics Microsystems -
quartz accelerometers and FOG gyros. They significantly demonstrate excellent performances under severe temperature and vibrations conditions at a fraction of their size, weight, and power consumption. To optimize the UAV's payload, Tronics' high-performance MEMS inertial sensors are packed (read more)
Browse Accelerometers Datasheets for Tronics Microsystems -
Meet the ideal candidates for integration into AHRS for eVTOL and helicopters! Tronics designs and manufactures low-SWaP, digital high performance MEMS accelerometers and gyros that feature high stability and repeatability with excellent (read more)
Browse Inertial Measurement Units (IMU) Datasheets for Tronics Microsystems -
bias instability and Angular Random Walk (ARW) to ensure accurate azimuth angle measurement. High-performance digital MEMS gyros and accelerometers offer a low-cost and low-SWaP alternative to the bulky and expensive quartz and FOG sensors utilized in the oil and gas (read more)
Browse Inertial Measurement Units (IMU) Datasheets for Tronics Microsystems
Conduct Research Top
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An Overview of MEMS and non-MEMS High Performance Gyros
Let us review the story of one of the most complex handheld sensing instruments built by mankind, namely gyroscopes.
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HDA536T new-generation digital MEMS dynamic tilt sensor launched by RION
HDA536T is a new-generation digital MEMS dynamic tilt sensor launched by RION. It has a built-in high-accuracy acceleration and gyro sensor and integrates a Kalman filter algorithm to dynamically measure the attitude angle of the carrier. Output methods include RS232, RS485.
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EETimes.com | Electronics Industry News for EEs & Engineering Managers
accelerometers a run for their money as the microelectromechanical systems of choice in a new breed of consumer gadgets, thanks to the advent of low-cost gyros from a MEMS startup. Slow growth may push analog, FPGA firms private The semiconductor industry is headed for an era of single-digit growth
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EETimes.com | Electronics Industry News for EEs & Engineering Managers
million battery packs used in Docomo's 3G handsets. MEMS gyroscopes eye projected CE windfall Gyroscopes may soon give accelerometers a run for their money as the microelectromechanical systems of choice in a new breed of consumer gadgets, thanks to the advent of low-cost gyros from a MEMS startup
More Information Top
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Automotive Infotainment Market Tracker Database - Semiconductors - H1 2013
MEMS Gyro Sensor .
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Advances in Gyroscope Technologies
Vibratory gyros and, in particular, MEMS gyros are the topic of Chap.
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Enhancing the mechanical resistance of micromechanical gyros
Currently, MEMS gyros are widely applied in both civil and military technologies [1, 2].
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Feedback Control of MEMS to Atoms
Fig. 1.1 A sense of scale: the sizes of things from a single carbon atom to an integrated MEMS gyro (Images used with permission.
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Electrical Insulating Materials and Electrical Engineering
This paper developed a set of new stable platform used of MEMS gyro device based on the infrared detection system, in view of the zero shift stability for MEMS gyro, with the key technologies for the gyro signal analysis and processing of …
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Biologically-inspired image-based sensor fusion approach to compensate gyro sensor drift in mobile robot systems that balance
This paper presents an image-based sensor fusion approach using sensed data from a MEMS gyro and a digital image processing system.
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Applications of Microelectromechanical Systems in Industrial Processes and Services
However, with the advent of MEMS technology, MEMS gyros have been realized that are much smaller, lighter, and less expensive than traditional gyros.
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System Simulation and Scientific Computing
Zhen Zhu, Yongming Gao, and Bin Wang Research of the Random Noise Compensation of MEMS Gyro . . . . . . . . .
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The influences of the gyro sensors' errors on the attitude calculus
Thus, analyzing the amplitudes touched by noise we conclude that the laser gyro and fiber optic gyro are less noisy than MEMS gyro .
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Test and Evaluation of High Performance Micro Electro-Mechanical System Based Inertial Measurement Units
Given that the MEMS gyro is generally a high-Q device driven into oscillation in order to measure Coriolis forces, issues of stability at startup as well as control loop settling times may become prevalent.