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Supplier: M.A.E. Apparecchiature Elettroniche srl
Description: 3 components accelerometer sensor for structural and environmental seismic monitoring, accuracy of 1 V/g, housed in an aluminum IP-67 protection rate case with embedded fixing flaps; ideal for installation in hard environments, it is supplied with IP-67 12 male Amphenol connector with
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Supplier: M.A.E. Apparecchiature Elettroniche srl
Description: Single component accelerometer sensor for structural and environmental seismic monitoring, accuracy of 1 V/g, housed in an aluminum IP-67 protection rate case with embedded fixing flaps; ideal for installation in hard environments, it is supplied with IP-67 12 male Amphenol connector
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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: 25 g
- Frequency Range: 0 to 900 Hz
- Operating Temperature: -40 to 248 F
- Features: Linear Accelerometer, Other
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Supplier: Hottinger Brüel & Kjær A/S
Description: Dytran series 7509 is a high precision single axis variable capacitance (VC) accelerometer available in various g ranges. These high performance accelerometers combine an integrated VC accelerometer chip with high drive, low impedance buffer for low level acceleration
- Acceleration: 10 g
- Frequency Range: 0 to 600 Hz
- Operating Temperature: -67 to 257 F
- Sensor Mounting: Adhesive Base
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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: 400 g
- Frequency Range: 0 to 1,600 Hz
- Operating Temperature: -67 to 257 F
- Features: Linear Accelerometer, Other
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Supplier: Hottinger Brüel & Kjær A/S
Description: The Dytran series 3100 is an IEPE accelerometer with ultra high sensitivity available in 1,000 mV/g. Design of the series 3100 features a ceramic shear sensing element, packaged in a stainless steel 5/8-inch hex housing, with a 10-32 radial connector and 10-32 mounting hole for general
- Acceleration: 5 g
- Frequency Range: 0.6 to 1,000 Hz
- Operating Temperature: -58 to 248 F
- Features: Linear Accelerometer, Other
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Supplier: DigiKey
Description: Accelerometer X Axis ±0.5g 0.2Hz ~ 1.3kHz
- Acceleration: 0.5 g
- Frequency Range: 0.2 to 1,300 Hz
- Operating Temperature: 32 to 176 F
- Sensor Outputs: Acceleration
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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 stability, axis
- Acceleration: 10 to 50 g
- Frequency Range: 0 to 1,050 Hz
- Maximum Shock: 5,000 g
- Operating Temperature: -67 to 257 F
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Supplier: Columbia Research Labs, Inc.
Description: The Models 378 and 378-HT Piezoelectric Accelerometers are designed for prolonged use in adverse industrial environments of shock, vibration, temperature, humidity and excessive oil. The high charge sensitivity of 1,000 pC/g and high mounted resonance of 10K Hz provide a wide dynamic range
- Acceleration: 1,000 g
- Frequency Range: 1 to 2,000 Hz
- Minimum Accuracy: 5 +/-% FS
- Maximum Shock: 1,000 g
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Supplier: Wilcoxon Sensing Technologies
Description: Power unit/amplifier for 731A seismic sensor, ultra low noise, selectable amplifier gain of 1, 10, 100, acceleration or velocity switchable output, wide dynamic range >120 dB, switchable low pass filter 450 Hz or 100 Hz
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Supplier: Kionix, Inc.
Description: These high-performance silicon micromachined linear accelerometers and inclinometers consist of a sensor element and an ASIC packaged in a 3x5x0.9 mm Land Grid Array (LGA). The sensor element is fabricated from single-crystal silicon with proprietary Deep Reactive Ion Etching (DRIE)
- Acceleration: 2 g
- Frequency Range: 1,000 Hz
- Maximum Shock: 5,000 g
- Operating Temperature: -40 to 185 F
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Supplier: Kionix, Inc.
Description: These high-performance silicon micromachined linear accelerometers and inclinometers consist of a sensor element and an ASIC packaged in a 5x5x1.2mm Dual Flat No-lead (DFN). The sensor element is fabricated from single-crystal silicon with proprietary Deep Reactive Ion Etching (DRIE)
- Acceleration: 2 g
- Frequency Range: 800 Hz
- Maximum Shock: 5,000 g
- Operating Temperature: -40 to 185 F
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Supplier: ROHM Semiconductor USA, LLC
Description: The KXRB5 is a high-performance, low-power tri-axis accelerometer offering multiplexed analog or SPI digital communications, an integrated 4-channel multiplexer and embedded freefall and high-g drop detection algorithms. The KXRB5 offers a factory-programmable g-range of ±1.5g to ±6g and is
- Operating Temperature: -40 to 185 F
- Measurement Axes: Triaxial
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Supplier: PCB Piezotronics, Inc.
Description: Triaxial accelerometer for seismic, 1000 mV/g, ICP®, 0.5 to 3000 Hz, 1/4-28 4-pin connector with TEDS. For HVM200 use with CBL217
- Measurement Axes: Triaxial
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Supplier: Instrumented Sensor Technology
Description: power consumption. Acceleration recording can be configured for the internal tri-axial accelerometer channels and/or up to 3 optional external accelerometer inputs. External Accelerometers The optional external accelerometer input channels are designed for use with "low
- Shock Rating: 500 g
- Inputs: Accelerometer Input
- Data Acquisition: Datalogger / Recorder
- Application: General Lab and Industrial, Vehicular
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Description: Transportation Simulator/Vibration Tester is applied to test the vibration-resistance of packed Toys, electronics, furniture, gift, ceramics,equipment,etc.,under simulated transport conditions, according to American and EU transport standard (ASTM,ISTA)
- Frequency Range: 3 to 5 Hz
- Displacement: 0.9842525 inch
- Applications: Accelerometer Calibration, Mechanical Impedance Measurements, Product Qualification / Testing, R&D / Product Design Verification, Reliability / Durability Testing, Seismic Simulation, Semiconductors / Electronics Screening, Structural Fatigue Testing, Transportation / Aerospace Simulation
- Technology: Electrodynamic, Mechanical
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Supplier: Convergence Instruments
Description: Product Description The Vibration Meter Data Logger – Vibration Sentry E-200g is a new generation of smart data logger that can record acceleration, inclination, vibration and impacts. It includes a 3-axis +-200g MEMS accelerometer, an accurate date/time clock and a non-volatile 128 Mb
- Acceleration: 200 g
- Maximum Vibration: 200 g
- Operating Temperature: -4 to 140 F
- Sensor Input: Accelerometer
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Description: A PCB vibration test bench is designed to simulate the vibrations that a PCB might experience during its operation. The test bench typically consists of a base plate, on which the PCB is mounted, and a vibration generator that produces vibrations of different frequencies and amplitudes. The
- Peak Sinusoidal Force: 674.4 to 35,968 lbs
- Frequency Range: 1 to 3,500 Hz
- Displacement: 0.9842525 to 5.905515 inch
- Peak Acceleration: 0 to 101.9367991845056 g
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Description: MIL-STD-810F Standard Mechanical Shock Bump Tester is intended to simulate the effects of repetitive shocks likely to be experienced by components when they are transported in a vehicle from one place to another place or installed for its application on a moving vehicle or platform. The tests can
- Peak Sinusoidal Force: 674.4 to 35,968 lbs
- Frequency Range: 1 to 3,500 Hz
- Displacement: 0.9842525 to 5.905515 inch
- Peak Acceleration: 0 to 101.9367991845056 g
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Description: Electromagnetic vibration table is widely used in defense, aviation, aerospace, communications, electronics, automobiles, home appliances, and other industries. This type of equipment is used for discovering the early faults, simulating the actual working condition and the structure strength test,
- Peak Sinusoidal Force: 674.4 to 6,744 lbs
- Frequency Range: 1 to 3,500 Hz
- Displacement: 0.9842525 to 5.905515 inch
- Peak Acceleration: 0 to 101.9367991845056 g
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Supplier: ECON Technologies Co.,Ltd
Description: VE series Miniature shaker is a high precision, high reliability and wide frequency band vibration equipment developed by ECON on the basis of accumulated years of vibration control technology. The frequency range is 2Hz-10,000Hz, and the force range is 20N-1,000N.
- Peak Sinusoidal Force: 0 to 4.496 lbs
- Frequency Range: 5,000 to 10,000 Hz
- Displacement: 0 to 0.1968505 inch
- Peak Acceleration: 0 to 20.38735983690112 g
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Supplier: E-Labs, Inc.
Description: feet of test floor space with climatic, dynamic and pressure testing capabilities. E-Labs maintains state-of-the art equipment for data acquisition, with over 240 channels of instrumentation for temperature, accelerometer, high-speed video/camera, and strain gauging, pressure and force
- Services Offered: Accidents / LOCA, Chemical Compatibility Testing, Combined Environments / Conditions, Corrosion Testing / Chemical Exposure, Erosion (Blowing Sand), Flow / Pressure Testing, Fungus / Biofouling, Humidity, Life Testing (HALT), Seismic / NEBS Testing, Stress Screening / HASS, Thermal Cycling / Shock,
- Industry: Aerospace / Avionics, Appliances, Automotive, Battery / Energy Products, Building & Construction, Coatings / Paint, Electrical / Electronics, Food / Drugs, Health Care / Medical, Instruments / Sensors, Marine, Materials, Nuclear / Utility, Paper / Plastic Packaging, RF / Wireless Products,
- Capabilities: Certification / Qualification, Component / Product Comparisons, Component / Product Testing, Consulting / Training, Engineering Verification Testing, Evaluation and Analysis, In-Process In-Line Testing, Performance Testing, Reliability / Robustness, Test Development, Test Fixtures / Equipment, Test
- Configuration / Form Tested: Components / Parts, Products (Equipment / Devices), Samples / Materials
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SUPPORT OF GULF OF MEXICO HYDRATE RESEARCH CONSORTIUM: ACTIVITIES TO SUPPORT ESTABLISHMENT OF A SEA FLOOR MONITORING STATION PROJECT
Specialty Devices Inc.* 3D Accelerometers ( Seismic ) .
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Assembling 3D MEMS structures by folding, aligning and latching 2D patterned films
[18] D. Mougenot and N. Thorburn, "Mems-based 3d accelerometers for land seismic acquisi- tion: Is it time?" .
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Application of the Surface Wave Survey Method on Multi-Scale Engineering Problems: Laboratory and Field Testing Case Studies
[27] Mougenot, D. and Thorburn, N., “MEMS-based 3D Accel- erometers for Land Seismic Acquisition: Is it Time?,” The Leading Edge, Vol. 23, No. 3, 2004, pp. 246–250.
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Compression along the northern Apennines? Evidence from the Mw 5.3 Monghidoro earthquake
A few hours after the main event, nine digital portable data loggers equipped with 3D short period seismic sensors and accelerometers were de- ployed by INGV in the epicentral area, covering an area of about 30 · 25 km.
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Monitoring and Modelling in Coupled Geomechanics Processes
High-resolution 3D seismic surveys generally use fixed geophones (or accelerometers ) and the excitation can be a vibrating source or an impulse.
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Monitoring and Modelling in Coupled Geomechanics Processes
High resolution 3D seismic surveys generally use shallow fixed geophones (or accelerometers ) and the excitation can be a vibrating source or an impulse.
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Field test investigation of fiber optic seismic geophone in oilfield exploration
Qilin Zou; Liwei Wang; Meng Pang; Dongsheng Tu; Min Zhang; Yanbiao Liao, “Down-hole seismic survey system with fiber-optic accelerometer sensor array for 3-dimensions vertical seismic profile ( 3D -VSP)”,Proceedings of SPIE, Vol. 6293,(2006) .
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SOFIE project – 3D shaking table test on a seven‐storey full‐scale cross‐laminated timber building
Applying Newton’s law, the seismic forces per storey were calculated (using the recording of the 3D accelerometers positioned in the centre of the building) and then plotted them against the interstorey drift of the respective storey.
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Numerical modelling of impact rupture in polysilicon microsystems
Figure 9a shows the 3D geometry of a perforated sus- pended mass, to be interpreted as the so-called seismic mass of an uniaxial accelerometer .
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Seismicity And Hydromechanical Behavior of a Fractured Reservoir Under a High-pressure Fluid Injection: Mesoscale Experiment From the HPPP-ANRCO2 Project (Fran...
The seismic events and tilts of the gallery wall were monitored respectively 1.5 and 2 m from the injection chamber by two 3D broadband accelerometers and two 2D tiltmeters.
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