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Accelerometers
convert acceleration into electrical signals, usually denoted as a
See Also: Gyros, Gravimeters, IMU, Gyroscopes
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Configurable CAN And LIN Data Logger
Rebel CT4
The Influx Rebel CT 4 is a compact data logger, making it an ideal choice for engineering applications that require vehicle CAN 2.0 and LIN network data. The Rebel CT 4 can optionally be expanded to include GNSS , 3D accelerometer, 3D Gyro, Wi-Fi and 4G LTE.
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Control Unit
Epec 3610
Epec 3610 Control Unit is a compact controller containing 22 I/O pins, all of them can be configured as input pins. Epec 3610 has an RS-232 serial port and as an assembly variant, I/O interface that is compatible with the previous Epec 2038 Control Unit. However, Epec 3610 also comes with completely new features like high-side current measurement and an internal 3-axis accelerometer, for example, for levelling purposes. Epec 3610 also has an option for accurate Pt1000 measurement.
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Cross Domain Development Kit
XDK
Enjoy an all-in-one prototyping platform for sensor based IoT projects. It’s packed with state of the art sensor technology and ready-to-use software packages, capable of fulfilling all your IoT application needs. Start building your project right away to test your idea and validate your concept. Built-in sensors: Accelerometer, Gyroscope, Magnetometer, Inertial measurement unit, Humidity/ Pressure/ Temperature/ sensor, Acoustic noise sensor, Digital light sensor.
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Digital Magnetic Compass
The SeaTRAX with PNI’s high sensitivity magnetometers and accelerometers is a COTS high- performance heading sensor for seismic streamers and towed arrays.
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Dual Accelerometer
M6
*Built-in damping and overrange stops*Safe overrange limits*Force up to 2000 G without damage to sensor*Temperature compensated for accurate response over entire temperature range*High slew rate operational amplifiers (1.2 V/usec)*Internal RF shielding on each pin
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Dual-Axis Accelerometer For HS3/4/4-DIFF Handyscopes, +/- 16G
TP-ACC160-25
The Accelerometer is a low cost, low power, complete dual-axis accelerometer with signal conditioned voltage outputs. The output signals are analog voltage proportional to acceleration. The Accelerometer is capable of measuring both positive and negative accelerations to at least +/- 16G.
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Dual-Axis Accelerometer For HS3/4/4-DIFF Handyscopes, +/- 2G
TP-ACC20-25
The Accelerometer is a low cost, low power, complete dual-axis accelerometer with signal conditioned voltage outputs. The output signals are analog voltage proportional to acceleration. The Accelerometer is capable of measuring both positive and negative accelerations to at least +/- 2G.
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Dual-Axis Accelerometer For HS3/4/4-DIFF Handyscopes, +/- 5G
TP-ACC50-25
The Accelerometer is a low cost, low power, complete dual-axis accelerometer with signal conditioned voltage outputs. The output signals are analog voltage proportional to acceleration. The Accelerometer is capable of measuring both positive and negative accelerations to at least �+/- 5G.
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Dual-Axis Accelerometer For HS5 & 6 Handyscopes, +/- 2G
TP-ACC20-09
The Accelerometer is a low cost, low power, complete dual-axis accelerometer with signal conditioned voltage outputs. The output signals are analog voltage proportional to acceleration. The Accelerometer is capable of measuring both positive and negative accelerations to at least +/- 2G.
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Force Balanced Accelerometer
PA-23, PA-23BH, S-230
The Geotech Model S-230 is a high resolution, 1-component, force balanced accelerometer capable of meeting the noise and stability requirements of the most demanding seismic studies. It features a very wide frequency response (DC to 90 Hz) and an internal calibration coil.
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General Purpose
Columbia Research Laboratories
This group of accelerometers is made up of the 3000 and 5000 Series. The 3000 Series are standard size units, including many with all welded construction, that are hermetically sealed for use in dirty and humid environments. The 5000 Series are smaller and lighter in weight than standard units. Characteristics are almost identical except that with miniature units higher natural frequencies and shock levels can be obtained due to their inherently reduced mass. Sensitivities, however are somewhat lower. High Temperature models are available that operate to +500°F. For best performance use with the Columbia Model 4601 Charge Amplifier or Model 5810 Inline Charge Converter.
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General-purpose Accelerometer
MTN/1100
General-purpose accelerometer with isolated AC outputs, ideal for vibration analsis and for use in harsh environments.
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Hardware
Metra Mess- und Frequenztechnik in Radebeul e.K.
*Compact measuring modules *Connect two IEPE accelerometers to your PC*USB-Interface facilitates installation*No settings necessary*Power supply via USB
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High Performance Linear Accelerometers
Columbia Research Laboratories
The sensors featured in Columbia's High Performance Force Balance Accelerometers offer extremely rugged, high performance accelerometers. These sensors are used in applications ranging from severe vibration and shock environments, to demanding missile and airborne applications and downhole well servicing applications. Columbia also offers high temperature and miniature High Performance Sensors.
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High Sensitivity Accelerometers
Metra Mess- und Frequenztechnik in Radebeul e.K.
The piezoelectric accelerometers on this page are intended for the measurement of lowest vibrations. Typical fields of application include the monitoring of buildings, dams, bridges, oil platforms and pipelines. These sensors are often called seismic accelerometers because they are used to monitor construction activity, volcanoes and earthquakes. Their high sensitivity is achieved -unlike other high sensitivity accelerometers- by the sensing element itself and not by internal amplification. From this results highest resolution and lowest noise.
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IEPE Monoaxial Accelerometer – 100 mV/g
HDP352C34
Monoaxial accelerometer general purpose, ICP, 100mV/g, weight 5,8 g, range 50 g pk
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IEPE Triaxial Accelerometer – 1000 mV/g
HDWBV-100
IEPE tri-axial accelerometer for the measurement of vibration transmitted to whole body.
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IEPE Triaxial Accelerometer – 1000 mV/g
HDP356B18
Triaxial accelerometer high sensitivity, ICP, 1V/g, weight 25g, range 5 g pk
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IEPE Triaxial Accelerometer – 10 mV/g
HDP356A02
Triaxial accelerometer miniature for hand-arm measurement, ICP, 10mV/g, weight 4g, range 500 g pk
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IEPE Triaxial High Sensitivity Accelerometer 10V/g
HDBV-1000
HDBV-1000 is a tri-axial accelerometer for the measurement of human exposure to whole-body vibrations, according to ISO 2631 and ISO 8041.
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IEPE Triaxial Whole Body Accelerometer – 1000 mV/g
HD2030MSP
HD2030MSP is an accelerometer suitable for the measurement of vibrations transmitted by seats to the occupants of passenger and work vehicles.
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INERTIAL MEASUREMENT UNIT
MS-IMU3020
The MS-IMU3020 delivers market leading price to performance in an ultra-compact aluminum package. The gyro bias instability of 0.9 /h and accelerometer bias instability of 9 g supply ample performance to support a range of applications from UAS navigation and control to pipeline inspection.
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Inertial Measurement Units
IMU
Analog Devices inertial measurement unit (IMU) sensors are based on multiaxis combinations of precision gyroscopes, accelerometers, magnetometers, and pressure sensors. Our technology reliably senses and processes multiple degrees of freedom, even in highly complex applications and under dynamic conditions. These plug and play solutions include full factory calibration, embedded compensation and sensor processing, and a simple programmable interface.
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Inertial Measurement Units (IMU)
Inertial Measurement Unit (IMU) sensors integrate multiaxis combinations of precision gyroscopes, accelerometers, magnetometers, and pressure sensors, intelligently fused to provide reliable position and motion discernment for stabilization and navigation applications. Precision MEMs IMUs deliver the required accuracy levels even in complex operating environments and under dynamic or extreme motion dynamics. ADI iSensor® IMU technology has been uniquely developed to reliably provide the high performance necessary to enable emerging applications in autonomous machinery and instruments, across multiple markets.
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Inertial & Tilt Sensors
Jewell Instruments is a world leader in the design, manufacture, and distribution of high-precision accelerometer and inclinometer sensors for tilt and acceleration applications. We also provide custom-engineered sensors for specific application solutions.
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Linear Accelerometers
Columbia Research Laboratories
Columbia Research Labs line of Force Balance Linear Accelerometers offers low cost, high performance, general purpose single axis accelerometers that are ideal for DC and low frequency measurements, with both voltage and current signal outputs available. Also offered are Columbia's Solid State Sensors and our specialized Airborne Sensors that generate outputs specifically designed to operate from +24 to +32VDC aircraft power, that is excellent for airborne telemetry applications. And our Low Noise Sensors are designed for use in seismic, low level, low frequency motion studies.
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Low Frequency Vibration Signal Conditioner
A compact Signal Amplifier to make optimal signal processing being connected with the Servo type Accelerometers. It is used for Vibration Acceleration Measurement, Waveform Observation, for various Analysis in combination with the AC Voltage Meter, Oscilloscope, FFT Analyzer respectively. Furthermore, Voltage signals from the Microphones or Sound Level Meters can be output to the instruments like Recorders along with the Vibration Signals.
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Measurement
Vibration Meter
The input signal of the Vibration meter software, which is the output signal of the accelerometer, i.e. the vibrational acceleration signal, is filtered by means of one of four possible digital band filters. Then, based on this signal, vibrational velocity and displacement signals are calculated by means of integrating filters. Thus, the software generates three signals which are transferred to the ZETLAB data server virtual channels created by the program and having the word “Acceleration”, “Speed” or “Displacement” in their names, respectively.Signals are averaged for a selected time interval (0.1 s, 1 s, or 10 s), after which the obtained values are displayed in the dialog box elements of the Vibration meter program. It is possible to display a root-mean-square (RMS), average amplitude or peak value.
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MEMS Inertial Test
Cohu´s inertial solutions enable high precise Gyroscope and Accelerometer test with best-in-class cost of test due to high parallelism and package flexibility. All Cohu stimulus modules guarantee high precision and velocity stability as well as high temperature accuracy. With use of our high efficient handler portfolio we can offer the ideal solution with optimized cost of test.