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Supplier: Silicon Designs, Inc.
Description: Featuring an average bias repeatability better than 2 mg, the 1527 is SDI's tactical-grade inertial measurement accelerometer. Years of exhaustive R&D have generated an exceptional MEMS accelerometer with superb Allan Variance, long term bias repeatability, scale factor
- Acceleration: 10 to 50 g
- Device Type: Sensor / Transducer, Other
- Features: Sealed
- Frequency Range: 0.0 to 1050 Hz
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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 higher
- Acceleration: 5 to 400 g
- Device Type: Sensor / Transducer, Other
- Features: Sealed
- Frequency Range: 0.0 to 2000 Hz
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Supplier: Silicon Designs, Inc.
Description: SDI's 1-axis Model 2012 and 3-axis Model 2422 MEMS DC Test & Measurement Accelerometer Modules are designed for applications in which the power supply may be limited, or if only a steady +5V DC excitation is available or preferred.
- Acceleration: 2 to 400 g
- Device Type: Sensor / Transducer
- Frequency Range: 0.0 to 4200 Hz
- Maximum Shock: 2000 to 5000 g
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Supplier: Silicon Designs, Inc.
Description: SDI's Models 2210, 2260, and 2266 Low Cost Single-Axis MEMS DC Accelerometers are rugged plug-and-play measurement devices for suitable for a wide array of demanding applications. All three models excel in zero-to-medium frequency industrial applications, particularly where reliable
- Acceleration: 2 to 400 g
- Device Type: Sensor / Transducer
- Frequency Range: 0.0 to 4200 Hz
- Number of Axes: Single Axis
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Supplier: Tronics Microsystems
Description: AXO315 redefines precision navigation in extreme environments. This single-axis, closed-loop digital MEMS accelerometer delivers exceptional stability and repeatability, crucial for accurate navigation under severe temperature fluctuations and intense vibrations. Offering a ±14 g input
- Acceleration: 14 g
- Device Type: Sensor / Transducer
- Features: Self Test / Diagnostics / Self Calibrating
- Frequency Range: 300 Hz
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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
- Device Type: Sensor / Transducer
- Frequency Range: 150 Hz
- Maximum Shock: 2000 g
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Supplier: Tronics Microsystems
Description: AXO301 redefines precision inclination measurement in challenging conditions. This ±1g, single-axis, closed-loop digital MEMS accelerometer and inclinometer delivers performance comparable to high-end quartz sensors, but in a significantly smaller, lighter, and more power-efficient
- Acceleration: 1 g
- Device Type: Sensor / Transducer
- Features: Self Test / Diagnostics / Self Calibrating
- Frequency Range: 15 Hz
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Supplier: Tronics Microsystems
Description: AXO314 redefines precision inertial sensing, delivering exceptional stability and repeatability for navigation systems operating under severe vibration conditions. This digital MEMS accelerometer, with a ±14 g input range, offers performance comparable to traditional quartz
- Acceleration: 14 g
- Device Type: Sensor / Transducer
- Features: Self Test / Diagnostics / Self Calibrating
- Frequency Range: 300 Hz
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Supplier: PCB Piezotronics, Inc.
Description: Triaxial MEMS DC accelerometer, 675 mV/g, 2 g, 10 ft integral cable
- Acceleration: 2 g
- Frequency Range: 0.0 to 350 Hz
- Maximum Shock: 3000 g
- Number of Axes: Triaxial
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Supplier: PCB Piezotronics, Inc.
Description: MEMS ACCEL, TRIAXIAL, 3503A1160KG/030LY
- Acceleration: 60000 g
- Maximum Shock: 80000 g
- Number of Axes: Triaxial
- Operating Temperature: -65 to 250 F
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Supplier: PCB Piezotronics, Inc.
Description: Differential MEMS DC accelerometer, 27 mV/g, 100 g, 10 ft integral cable
- Acceleration: 100 g
- Frequency Range: 0.0 to 1500 Hz
- Maximum Shock: 5000 g
- Operating Temperature: -65 to 250 F
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Supplier: PCB Piezotronics, Inc.
Description: MEMS DC ACCEL, 3741F1210G/015LN
- Acceleration: 10 g
- Frequency Range: 0.0 to 1000 Hz
- Maximum Shock: 5000 g
- Operating Temperature: -65 to 250 F
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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
- Acceleration: 1.7 to 70 g
- Device Type: Sensor / Transducer
- Frequency Range: 1000 to 10000 Hz
- Maximum Shock: 500 g
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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
- Acceleration: 2 to 40 g
- Device Type: Sensor / Transducer
- Features: Sealed
- Frequency Range: 500 Hz
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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
- Device Type: Sensor / Transducer
- Frequency Range: 5 to 300 Hz
- Number of Axes: Triaxial
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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
- Device Type: Sensor / Transducer
- Number of Axes: Triaxial
- Operating Temperature: -40 to 185 F
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Supplier: Shenzhen Rion Technology Co., Ltd
Description: AKE398B current 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
- Device Type: Sensor / Transducer
- Number of Axes: Triaxial
- Operating Temperature: -40 to 185 F
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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
- Device Type: Sensor / Transducer
- Frequency Range: 0.0 to 7000 Hz
- Maximum Shock: 6000 g
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Supplier: Sherborne Sensors
Description: The A700 range of Solid State Accelerometers measure acceleration in single or dual axes. The accelerometer utilises MEM technology having positive mechanical stops conferring excellent shock resistance. The -0101 version incorporates a temperature sensor enabling each sensor to
- Acceleration: -5 to 5 g
- Device Type: Sensor / Transducer
- Maximum Shock: 3500 g
- Number of Axes: Single Axis, Biaxial
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Supplier: Sherborne Sensors
Description: The A600 range of Solid State Accelerometers measure vector acceleration with high accuracy using a micromachined (MEMS) silicon sensor incorporating an air damping feature. Unlike fluid damped devices the air damping employed is essentially independent of temperature. The transducer
- Acceleration: -20 to 20 g
- Device Type: Sensor / Transducer
- Frequency Range: 0.0 to 600 Hz
- Maximum Shock: 200 g
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Supplier: Imego
Description: IQA10 is a micromachined three-axis accelerometer. It uses Imego's patented Quad Slanted Beam principle to obtain symmetric sensitivity for all three axes with near-zero cross coupling. Its compact single-chip design completely avoids any risk for axis misalignment and allows for a cost
- Device Type: Sensor / Transducer
- Features: Other
- Maximum Shock: 1500 g
- Number of Axes: Triaxial
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Supplier: Jewell Instruments, LLC
Description: The JMA-100/200/300 series is available in single (JMA-100), dual (JMA-200) and triple (JMA-300) axis configurations. This presents a robust and rugged design for industrial use, but with the benefit of low-cost MEMS technology. Features • ±0.5 g, ±1.0 g and
- Acceleration: -0.5000 to 1.5 g
- Device Type: Sensor / Transducer
- Features: Sealed
- Maximum Shock: 100 g
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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
- Acceleration: 2 to 40 g
- Device Type: Sensor / Transducer
- Features: Sealed
- Frequency Range: 500 Hz
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Supplier: TE Connectivity
Description: Accelerometer Type : MEMS DC Sensor Package : Plug & Play Vibration Sensor Product Type : MEMS Accelerometer Signal Characteristics Frequency Response (HZ) : 0-1400 to 0-4500 Usage Conditions Operating Temperature Range : -40 - 90 DEGC [-40 - 194 DEGF ]
- Acceleration: 200 g
- Frequency Range: 0.0 to 4500 Hz
- Operating Temperature: -40 to 194 F
- Sensor Technology: MEMS
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Supplier: Micromega Dynamics
Description: RECOVIB Feel has been designed for performing an immediate vibratory analysis. It is connected to an Android device or tablet PC via a USB connection. The supplied application enables the streaming of real-time vibration data on a chart in the time domain and in the frequency domain. Once the data
- Acceleration: 2 to 15 g
- Device Type: Transmitter
- Frequency Range: 0.0 to 250 Hz
- Minimum Accuracy: 0.3000 to 0.5000 +/-% FS
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Supplier: Kionix, Inc.
Description: The KXTG9 series adds a flexible programmable motion-interrupt chip with fast SPI interface into the Kionix suite of products. These sensors can accept supply voltages between 1.8V and 3.6V. Sensitivity is factory programmable allowing customization for applications requiring from 1.5g to 6.0g
- Acceleration: 3 g
- Device Type: Sensor / Transducer
- Features: Sealed, Self Test / Diagnostics / Self Calibrating
- Maximum Shock: 5000 to 10000 g
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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™
- Acceleration: -10 to 10 g
- Features: Battery Powered, Wireless
- Frequency Range: 1 to 512 Hz
- Number of Axes: Triaxial
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Supplier: Columbia Research Labs, Inc.
Description: The Columbia Series SSA-1000 Solid State Silicon Accelerometers utilize military-grade assembly line construction techniques with the production controls and inspection associated with a Military Certified Quality System. These sensors offer improved performance, smaller size and added
- Acceleration: -2 to 2 g
- Device Type: Sensor / Transducer
- Frequency Range: 0.0 to 100 Hz
- Maximum Shock: 1200 g
Find Suppliers by Category Top
More Information Top
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NanoTech Conferences > Space Microsystems and Reliability: The Contribution of Behavioral Modeling
The case study deals with a MEMS COTS accelerometer , the ADXL150, that is exposed to various constraints and inserted into a launch vehicles measurement system.
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Reliability issues of an accelerometer under environmental stresses
In the following paragraph a case study of a MEMS COTS accelerometer , the ADXL150, is presented.
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Micro-system inertial sensing technology overview.
COTS MEMS Accelerometer Grades and Suppliers......................................................
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MEMS for pico- to micro-satellites
[12] “Reliability of COTS MEMS Accelerometer Under Shock And Thermomechanical Cycling “, by Reza Ghaffarian, 2001 SMTA International Conference .
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Radiation sensitivity of microelectromechanical system devices
R. Ghaffarian, D. G. Sutton, P. Chaffee, N. Marquez, A. K. Sharma, and A. Teverovsky, “Reliability of COTS MEMS accelerometer un- der shock and thermomechanical cycling,” 2001 SMTA International Conference, Chicago, IL 30 Sep-4 Oct 2001 .
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MEMS Reliability
Total dose effects and SEE screening on MEMS COTS accelerometers .
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Reliability of MEMS for space applications
Reliability of COTS MEMS Accelerometer Under Shock And Thermomechanical Cycling “, by Reza Ghaffarian, 2001 SMTA International Conference 6. “ .
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Single Event Effects in MEMS Accelerometers
Abstract— We present single event effects, induced by heavy ions and protons, on a COTS MEMS accelerometer .
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Reliability research on micro- and nano-electromechanical systems: a review
Tanner et al. [69] analyzed the absolute maximum rating for shock tested on a commercial off the shelf ( COTS ) MEMS accelerometer and compared it to the published absolute max- imum rating for acceleration.
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An introduction to mechanical-properties-related issues in MEMS structures
92. R. GHAFFARIAN, D. G. SUTTON, P. CHAFFEE, N. MARQUEZ, A. K. SHARMA and A. TEVEROVSKY, “Re- liability of COTS MEMS Accelerometer under Shock and Ther- momechanical Cycling,” Presented in Proceedings of SMTA Inter- national, 2001, Edina, MN, USA, Surface Mount …
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