Products & Services
See also: Categories | Featured Products | Technical Articles | More Information-
Supplier: Jewell Instruments, LLC
Description: information. Our recently CENELEC and AREMA qualified JMA-165 series MEMS accelerometers are now a cost effective and viable alternative to the traditional forced balanced designs. Features: ±0.5G & ±1.0G full ranges CENELEC/AREMA certified Low-cost MEMS technology Internal
- Acceleration: 0.5 to 1 g
- Frequency Range: 100 Hz
- Maximum Shock: 10 g
- Operating Temperature: -40 to 158 F
-
Supplier: Jewell Instruments, LLC
Description: Jewell Instruments AKA Series Accelerometers are an excellent choice for cost to performance trade-off. The AKA is based on silicon micro-machined MEMS Capacitive Accelerometer technology and designed for low power and high stability. • Triaxial Configuration • Measuring ranges
- Acceleration: 2 to 40 g
- Frequency Range: 500 Hz
- Maximum Shock: 100 g
- Maximum Vibration: 20 g
-
Supplier: Jewell Instruments, LLC
Description: Jewell Instruments DKA Series Accelerometers are an excellent choice for cost to performance trade off. The DKA is based on silicon micro-machined MEMS Capacitive Accelerometer technology and designed for low power and high stability. • Triaxial Configuration • Measuring ranges
- Acceleration: 2 to 40 g
- Frequency Range: 500 Hz
- Maximum Shock: 100 g
- Maximum Vibration: 20 g
-
-
Supplier: SignalQuest, Inc.
Description: processing, the SQ-XLD series accelerometer makes an ideal platform for real time monitoring or prototyping accelerometer systems. Function Miniature, low-cost, serial accelerometer Real-time data acquisition performance using a low cost serial cable Simple menu-driven PC
- Acceleration: 1.7 to 70 g
- Frequency Range: 10,000 to 1,000 Hz
- Minimum Accuracy: 2.5 +/-% FS
- Maximum Shock: 500 g
-
Supplier: Hottinger Brüel & Kjær A/S
Description: connector, and easy mounting via two 4-40 screws. The Dytran series 7600 accelerometer uses the same power supply as piezoresistive and strain gage sensors, allowing them to operate as stand-alone differential output accelerometers or in place of piezoresistive bridge-type
- Acceleration: 100 g
- Frequency Range: 0 to 1,400 Hz
- Operating Temperature: -40 to 248 F
- Features: Linear Accelerometer, Other
-
Supplier: Hottinger Brüel & Kjær A/S
Description: Dytran series 7503 is a high precision triaxial variable capacitance (VC) accelerometer available in various g ranges for the X, Y and Z axes. The accelerometer combines an integrated VC accelerometer chip with high drive, low impedance buffer and differential output for low
- Acceleration: 5 g
- Frequency Range: 0 to 400 Hz
- Operating Temperature: -67 to 257 F
- Features: Linear Accelerometer, Other
-
Supplier: Kistler Group
Description: The Type 8316A... capacitive accelerometer family utilizes a silicon Micro-Electro Mechanical System (MEMS) variable capacitance sensing element. Each axis consists of a very small inertial mass and a flexure element cantilever positioned between two plates. As the mass deflects under
- Acceleration: 2 to 200 g
- Frequency Range: 0 to 7,000 Hz
- Maximum Shock: 6,000 g
- Maximum Vibration: 20 g
-
Supplier: Hottinger Brüel & Kjær A/S
Description: The Dytran 7583 series provides VC-MEMS triaxial measurements in a rugged hermetically sealed package. This high-performance triaxial variable capacitance (VC) accelerometer is offered in multiple ranges to cover your acceleration measurement needs. It features outstanding thermal
- Acceleration: 100 g
- Frequency Range: 0 to 2,800 Hz
- Operating Temperature: -67 to 257 F
- Sensor Technology: MEMS
-
Supplier: PCB Piezotronics, Inc.
Description: Shock accelerometer, 60 kg, MEMS sensor installed in chip carrier (SMT)
- Acceleration: 60,000 g
- Maximum Shock: 100,000 g
- Operating Temperature: -65 to 250 F
- Sensor Technology: MEMS, Piezoresistive
-
Supplier: Kistler Group
Description: Type 8396A... triaxial capacitive accelerometer family utilizes a silicon Micro-Electro-Mechanical System (MEMS) variable capacitance sensing element. The sensing element of each axis consists of a very small inertial mass and a flexure element cantilever positioned between two plates.
- Acceleration: 2 to 200 g
- Frequency Range: 0 to 7,000 Hz
- Maximum Shock: 6,000 g
- Maximum Vibration: 20 g
-
Supplier: PCB Piezotronics, Inc.
Description: MEMS Shock Accelerometer, 60 Kg, thru hole mount, 096 integral cable
- Acceleration: 0 to 60,000 g
- Maximum Shock: 100,000 g
- Operating Temperature: -65 to 250 F
- Sensor Technology: MEMS, Piezoresistive
-
Supplier: SEQUOIA IT s.r.l.
Description: GEA Detector is a triaxial MEMS accelerometer dedicated to surveys, storage, and display via audible alarm, vibration events exceeding user-defined thresholds. IDENTIFY The high sensitivity of the sensor, allows the measurement of extremelly low level vibration. GEA Detector is
-
Supplier: Tronics Microsystems
Description: High stability, reliability, and vibration rejection for inclination measurement in downhole navigation up to +150°CAXO315T is a single-axis, high temperature, closed-loop MEMS accelerometer with ±14 g input range that offers a digital, cost-effective, and low-SWaP alternative to
- Acceleration: 14 g
- Frequency Range: 150 Hz
- Maximum Shock: 2,000 g
- Maximum Vibration: 50 g
-
Supplier: Silicon Designs, Inc.
Description: 1527 MEMS DC Accelerometer combines two patented capacitive silicon sense elements and a precision, custom CMOS integrated circuit in a hermetically sealed LCC package. The differential output voltage of the MEMS accelerometer is converted on the PCB into a current
- Acceleration: 10 to 50 g
- Frequency Range: 0 to 4,200 Hz
- Maximum Shock: 5,000 g
- Operating Temperature: -67 to 257 F
-
Supplier: Tronics Microsystems
Description: AXO305 redefines navigation accuracy with its exceptional stability and repeatability, directly challenging the performance of traditional quartz accelerometers. This single-axis, closed-loop digital MEMS accelerometer, boasting a ±5 g input range, delivers unparalleled 1-year
- Acceleration: 5 g
- Frequency Range: 120 Hz
- Maximum Shock: 50 g
- Maximum Vibration: 4.12 g
-
Supplier: PCB Piezotronics, Inc.
Description: Triaxial MEMS Shock accelerometer, 60kG, thru hole mount, integral 10-ft silicone cable terminating in pigtails
- Acceleration: 60,000 g
- Maximum Shock: 80,000 g
- Operating Temperature: -65 to 250 F
- Sensor Technology: MEMS, Piezoresistive
-
Supplier: Newark, An Avnet Company
Description: MEMS ACCELEROMETERS ROHS COMPLIANT: YES
-
Supplier: Newark, An Avnet Company
Description: EVAL BOARD, 3-AXIS MEMS ACCELEROMETER ROHS COMPLIANT: YES
-
Supplier: Silicon Designs, Inc.
Description: The SDI Model 2290 Single-Axis MEMS DC Precision Reference Calibration Accelerometer offers a precise, reliable, and accurate means of determining the sensitivity and frequency response characteristics of unknown MEMS DC accelerometers during end-to-end calibrations and
- Acceleration: 5 to 50 g
- Frequency Range: 0 to 1,800 Hz
- Maximum Shock: 2,000 to 5,000 g
- Operating Temperature: -67 to 257 F
-
Supplier: Newark, An Avnet Company
Description: EVAL BOARD, 3-AXIS MEMS ACCELEROMETER ROHS COMPLIANT: YES
-
Supplier: Shenzhen Rion Technology Co., Ltd
Description: AKE392B-Wireless three-axis accelerometer sensor series products is RION company imported the Switzerland patented technology to produce for using widely, suitable for vibration testing, impact testing and more fields. The product uses a digital interface output, RS232/485/TTL optional, can
- Acceleration: 1 to 40 g
- Frequency Range: 5 to 300 Hz
- Operating Temperature: -40 to 185 F
- Sensor Technology: MEMS
-
Supplier: Shenzhen Rion Technology Co., Ltd
Description: AKE390B voltage type accelerometer sensor series products is RION company imported the Switzerland patented technology to produce for using widely, suitable for vibration testing, impact testing and more fields. This series products with firm structure,low power consumption, excellent
- Acceleration: 1 to 40 g
- Operating Temperature: -40 to 185 F
- Sensor Technology: MEMS
- Device Category: Sensor / Transducer
-
Supplier: Utmel Electronic Limited
Description: STMICROELECTRONICS LIS344AL ACCELEROMETER, MEMS, 3AXIS, 16LLGA
-
Electronic Development Boards - Accelerometer Module, Mems; Kit Application Type Digilent -- 63W8576Supplier: Newark, An Avnet Company
Description: ACCELEROMETER MODULE, MEMS; Kit Application Type:Sensor; Silicon Manufacturer:Analog Devices; Silicon Core Number:ADXL362; Application Sub Type:Accelerometer - Three-Axis; Product Range:-; For Use With:Digilent System Boards RoHS Compliant: Yes
-
Supplier: Utmel Electronic Limited
Description: ACCELEROMETER, MEMS, 2-AXIS, ANALOGUE O/P, QFN-44
-
Supplier: Silicon Designs, Inc.
Description: The Model 1531 is an industrial-grade surface mount MEMS DC accelerometer that is specifically designed for use in higher-temperature applications. Its performance specifications are virtually identical to those of the SDI Model 1521, yet with the further incorporation of
- Acceleration: 5 to 400 g
- Frequency Range: 0 to 2,000 Hz
- Maximum Shock: 2,000 to 5,000 g
- Operating Temperature: -67 to 347 F
-
Supplier: Marposs Corp
Description: DESCRIPTION All sensors are based on a piezoelectric or MEMS (Micro-Electro-Mechanical Systems) measuring principle, equipped with a standard IEPE interface and are adapted to different applications together with Artis systems. All sensors can be connected to the Artis monitoring systems CTM,
- Measurement Axes: Biaxial, Single Axis, Triaxial
- Sensor Technology: MEMS, Piezoelectric
- Device Category: Sensor / Transducer
-
Supplier: TE Connectivity
Description: Attachment Plug & Play Accelerometer Mounting Type : Screw Other Acceleration Range (±) (GFORCE) : 500 Nonlinearity (PCTFSO) : ±1 Sensitivity : .4 mA/g Product Type Features Accelerometer Type : MEMS DC Plug & Play Accelerometer Sensor Type : DC Response Plug & Play
- Acceleration: 500 g
- Frequency Range: 0 to 3,500 Hz
- Operating Temperature: -4 to 185 F
- Sensor Technology: MEMS
-
Supplier: LORD MicroStrain Sensing Systems
Description: Wireless Accelerometer Node Overview The G-Link® -LXRS™ Wireless Accelerometer Node features on-board triaxial ±2 g or ±10 g MEMS accelerometers and an internal temperature sensor. G-Link® -LXRS™ can be employed to measure vibration or acceleration, or as a tilt sensor or
- Acceleration: -10 to 10 g
- Frequency Range: 1 to 512 Hz
- Operating Temperature: -4 to 140 F
- Sensor Outputs: Acceleration, Temperature
-
Supplier: Richardson RFPD
Description: Precision ±1.7 g or ±18 g Single-Axis iMEMS® Accelerometer
- Acceleration: 1.7 g
- Measurement Axes: Single Axis
-
Supplier: Utmel Electronic Limited
Description: STMICROELECTRONICS LIS3LV02DQ MEMS Accelerometer, Digital, X, Y, Z,2g,6g, 2.16 V, 3.6 V, QFN
-
Supplier: TE Connectivity
Description: (±) (GFORCE) : 2 Nonlinearity (PCTFSO) : ±1 Overall Acceleration Range (±) (GFORCE) : 2 - 200 Sensitivity (MVG) : 6, 20 Sensitivity Range (MVG) : .15 - 20 Product Type Features Accelerometer Type : MEMS DC Embedded Accelerometer Sensor Type : DC Response Embedded
- Acceleration: 2 g
- Frequency Range: 0 to 150 Hz
- Operating Temperature: -40 to 257 F
- Sensor Technology: MEMS
-
Supplier: SAE International
Description: determination of the necessary information about the in-plane and out-of-plane motion, e.g. the motorcycle lean angle. Since VDC systems include safety critical control functions, the validation within simulations including sensor characteristics is mandatory. The MEMS accelerometer
Find Suppliers by Category Top
Featured Products Top
-
-performance digital MEMS accelerometer with ±14 g input range for industrial applications operating under shock and vibration. AXO314 offers a low-SWaP digital, and cost-effective alternative to bulky and expensive tactical-grade quartz accelerometers. It brings a robust (read more)
Browse Accelerometers Datasheets for Tronics Microsystems -
low-noise, high resolution, closed-loop digital MEMS accelerometer with ± 1 g input range that offers a performance-equivalent, low-SWaP and cost-effective alternative to force balance inclinometers. It demonstrates an ultra-low noise density of 9 μg/√Hz with an (read more)
Browse Accelerometers 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 -
TDK Corporation announces the extension of its high-performance MEMS inertial sensors portfolio with Tronics AXO315®T1, a high-temperature MEMS accelerometer with ±14 g input range and a digital interface for measurement while drilling (MWD) applications operating up to +175°C. (read more)
Browse Accelerometers Datasheets for Tronics Microsystems -
AXO®301 High Resolution MEMS Accelerometer & Inclinometer Input measurement range of ±1 g Broadband resolution of 50 µg Tailored to high resolution industrial inclinometers and railway applications (read more)
Browse Accelerometers Datasheets for Tronics Microsystems -
Tronics AXO315®T0, a high-temperature MEMS accelerometer with ±14g (read more)
Browse Accelerometers Datasheets for Tronics Microsystems -
-based systems are coupled with high performance inertial sensors to enable precise and continuous attitude and heading determination in GNSS-denied conditions. AXO®315 is a high performance, miniature and digital MEMS accelerometer that (read more)
Browse Accelerometers 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 -
Tronics Microsystems' AXO315 is a tactical-grade 1-axis, ±14 g range, 24 bit digital SPI closed-loop MEMS accelerometer in an hermetic SMD package. AXO315 was designed and developed to provide high precision and reliability in the most challenging environments, withstanding severe (read more)
Browse Accelerometers 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
Conduct Research Top
-
Introduction to VC MEMS Accelerometers
This paper will discuss variable capacitance (VC) accelerometers utilizing MEMS technology. It will review design parameters that enable these sensors to perform reliably in harsh test environments. Then, it will compare VC MEMS sensors to piezoelectric sensors to piezoresistive sensors. Finally
-
MEMS Accelerometer Performance Comes of Age
Investment in MEMS process technology, coupled with design innovations, has greatly improved MEMS performance enough to make MEMS a viable option for a wider range of condition monitoring applications.
-
Bridge Monitoring Based on a Network of High Performance Triaxial MEMS Accelerometers
An efficient MEMS transducer network has been developed specifically to check the structural health of bridges starting from the acceleration measurement to monitor the frequency and speed variations.
-
MEMS Shock Accelerometer
of this research is the influence of the electrical impedance of the cable on the gamut of MEMS accelerometers designed to operate in severe shock environments.
-
How High in Frequency Are Accelerometer Measurements Meaningful
Almost all piezoelectric accelerometers in the current market place. have a fundamental sensor resonance below 100 KHz. In 1983. Endevco Corporation designed a series of MEMS (Micro Electro-. Mechanical Systems) accelerometers [1]. These silicon-based. piezoresistive accelerometers enabled sensor
-
AKF392B MEMS Digital Accelerometer
AKE392B-Wireless three-axis accelerometer sensor series products is RION company imported the Switzerland patented technology to produce for using widely, suitable for vibration testing, impact testing and more fields. The product uses a digital interface output, RS232/485/TTL optional, can be set
-
Accelerometers: Taking the Guesswork out of Accelerometer Selection
selection is; and some didn't even know that there were different types to begin with!. There are three main sensing technologies or types (capacitive MEMS, piezoresistive, and piezoelectric). But before you can even start considering what accelerometer type works best, it's important to first
-
Field Evaluations of a Damped MEMS Shock Sensor
Results from pyrotechnic, penetration and metal-to-metal impact field evaluations are presented which prove the performance of a new piezoresistive (PR) shock accelerometer. The microelectromechanical systems (MEMS) sensor incorporates sufficient squeeze-film damping to reduce resonant
More Information Top
-
New Trends in Networking, Computing, E-learning, Systems Sciences, and Engineering
High-Linearity MEMS Accelerometer with Lateral Comb Finger Groups . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
-
MEMS/NEMS
MEMS accelerometers can be used to trigger the air bag or lock seat belts.
-
http://etd.auburn.edu/bitstream/handle/10415/45/ROGERS_JOHN_58.pdf?sequence=1
Circuit Based MEMS Accelerometer .
-
Encyclopedia of Structural Health Monitoring Complete Document
To illustrate the fabrication methods presented above, a simple MEMS structure widely used in the design of MEMS accelerometers is adopted.
-
Advanced Mechatronics and MEMS Devices
Chapter 3 analyzes the critical aspects of various calibration methods and autocalibration procedures for MEMS accelerometers with sensor models and a principled noise model.
-
https://dspace.lib.cranfield.ac.uk/bitstream/1826/7742/1/Suitability_of_MEMS_Accelerometers-2007.pdf
Suitability of MEMS Accelerometers for Condition Monitoring: An experimental study .
-
http://repository.kulib.kyoto-u.ac.jp/dspace/bitstream/2433/85166/1/v4n2-02.pdf
Application of MEMS accelerometer to geophysics .
-
Encyclopedia of Earthquake Engineering
In contrast, Micro Electro Mechanical Systems ( MEMS ) acceler- ometers introduced in seismic applications (Holland 2003) are ideal and cost-saving devices for recording strong ground motions.
Indicates content that may require registration and/or purchase.