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Supplier: PCB Piezotronics, Inc.
Description: High amplitude, triaxial ICP® accel., 0.5 mV/g, 10k g range, w/built-in 2nd order low-pass filter (-3dB at 20 kHz)
- Acceleration: 10,000 g
- Maximum Shock: 25,000 g
- Operating Temperature: -65 to 250 F
- Features: Other
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Supplier: Columbia Research Labs, Inc.
Description: The 951-TX Triaxial Piezoelectric Accelerometer was designed to be an integral part of a computer-controlled vibration analysis system. The high and low frequency response of the unit is controlled with ultrahigh input impedance and low pass filters to provide
- Acceleration: 50 g
- Frequency Range: 2 to 5,000 Hz
- Minimum Accuracy: 5 +/-% FS
- Maximum Shock: 1,000 g
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Supplier: Dataforth Corporation
Description: voltage output. The excitation current, signal gain, and filter high-pass and low-pass cutoff frequencies are field-configurable through a set of slide switches. Six poles of signal filtering in the SCM5B48 module result in greater than 100dB of normal-mode rejection for
- Frequency Range: 0.2 to 20,000 Hz
- Minimum Accuracy: 0.2 +/-% FS
- Operating Temperature: -40 to 185 F
- Sensor Outputs: Acceleration
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Supplier: Win Source Electronics
Description: Manufacturer: NXP USA Inc. Win Source Part Number: 1336609-MMA5224LW Category: Sensors, Transducers>Motion Sensors - Accelerometers Packaging: Tube Type: Digital Features: Selectable Low Pass Filter Standard Package: 75 Mounting: Surface Mount Output Type: PCM, SPI Axis:
- Acceleration: 240 g
- Operating Temperature: -40 to 257 F
- Features: Other
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Supplier: Win Source Electronics
Description: Manufacturer: NXP Win Source Part Number: 041717-MMA1631NKW Packaging: Reel - TR Type: Digital Features: Selectable Low Pass Filter Mounting: SMD (SMT) Output Type: PCM Axis: Z Acceleration Range: ±312g Sensitivity (LSB/g): 1638 Categories: Sensors, Transducers Status:
- Acceleration: 312 g
- Features: Other
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Supplier: Win Source Electronics
Description: Manufacturer: NXP Win Source Part Number: 041716-MMA1618KW Packaging: Reel - TR Type: Digital Features: Selectable Low Pass Filter Mounting: SMD (SMT) Output Type: PCM Axis: Z Acceleration Range: ±187g Sensitivity (LSB/g): 2.731 Categories: Sensors, Transducers Status:
- Acceleration: 187 g
- Operating Temperature: -40 to 221 F
- Features: Other
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Supplier: Win Source Electronics
Description: Manufacturer: NXP Win Source Part Number: 041718-MMA2631NKW Packaging: Reel - TR Type: Digital Features: Selectable Low Pass Filter Mounting: SMD (SMT) Output Type: PCM Axis: X Acceleration Range: ±312g Sensitivity (LSB/g): 1.64 Categories: Sensors, Transducers Status:
- Acceleration: 312 g
- Operating Temperature: -40 to 221 F
- Features: Other
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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: Wilcoxon Sensing Technologies
Description: 731A seismic sensor and P31 low noise power/amplifier system, top exit accelerometer with R6-2T-J9-10 cable, selectable gain (1, 10, 100), low pass filter
- Acceleration: 0.5 g
- Frequency Range: 0.05 to 450 Hz
- Features: Corrosion Resistant, Integrated Electronics Piezo Electric (IEPE)
- Device Type: Sensor / Transducer
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Supplier: PCB Piezotronics, Inc.
Description: Accelerometer, IEPE, 10 mV/g triax, ±500 g, -65°F to +347°F, not isolated, adhesive mount or M2.5 thread, 2-pole low pass filter w 2 kHz corner freq, 5 grams
- Acceleration: 500 g
- Frequency Range: 1,000 Hz
- Measurement Axes: Triaxial
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Supplier: PCB Piezotronics, Inc.
Description: Accelerometer, IEPE, 10 mV/g triax, ±500 g, -65°F to +347°F, not isolated, adhesive mount or M2.5 thread, 2-pole low pass filter w 10 kHz corner freq, 5 grams
- Acceleration: 500 g
- Frequency Range: 5,000 Hz
- Measurement Axes: Triaxial
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Supplier: ROHM Semiconductor USA, LLC
Description: The KXTH9 is an ultra-low noise, low-power, analog tri-axis accelerometer with an integrated 4-channel multiplexer and factory-programmable low-pass filter. With a factory-programmable g-range of ±1.5g to ±6g, the KXTH9 operates from 1.8 V to 3.6 V DC supply
- Operating Temperature: -40 to 185 F
- Measurement Axes: Triaxial
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Supplier: PCB Piezotronics, Inc.
Description: Accelerometer, IEPE, 10 mV/g triax, ±500 g, -65°F to +347°F, not isolated, adhesive mount or M2.5 thread, 2-pole low pass filter w 2 kHz corner freq, 5 grams, no cable incl.
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Supplier: ROHM Semiconductor USA, LLC
Description: The KXUD9 is a low-power, tri-axis accelerometer with either I2C or SPI communication protocols, a user-definable low-pass filter and embedded motion wake-up. The KXUD9 offers user-selectable g-ranges of ±2g, ±4g or ±8g and an auxiliary input for A/D conversion. It
- Operating Temperature: -40 to 185 F
- Measurement Axes: Triaxial
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Supplier: PCE Instruments / PCE Americas Inc.
Description: PCE-VS10 is a vibration meter, analyzer or sensor condition monitoring switch used to measure RMS and peak value of vibration velocity or acceleration piezoelectrically. This IP67-rated vibration monitoring switch features a red and green visual warning or alarm with programmable high pass
- Acceleration: 0.01019367991845056 to 101.9367991845056 g
- Frequency Range: 2 to 10,000 Hz
- Operating Temperature: -40 to 176 F
- Sensor Input: Accelerometer
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Supplier: PCE Instruments / PCE Americas Inc.
Description: 711 and programmable high pass and low pass filters.
- Acceleration: 0.01019367991845056 to 101.9367991845056 g
- Frequency Range: 2 to 10,000 Hz
- Operating Temperature: -40 to 176 F
- Sensor Input: Accelerometer
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Supplier: ROHM Semiconductor USA, LLC
Description: combination of improved shock, reflow, and thermal performance. The KX023 also offers accelerometer outputs with up to 16-bit resolution for greater precision. User-selectable parameters include ± 2g, 4g or 8g ranges and Output Data Rates (ODR) with programmable high-pass and
- Operating Temperature: -40 to 185 F
- Measurement Axes: Triaxial
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Supplier: ROHM Semiconductor USA, LLC
Description: combination of improved shock, reflow, and thermal performance. The KX022 also offers accelerometer outputs with up to 16-bit resolution for greater precision. User-selectable parameters include ± 2g, 4g or 8g ranges and Output Data Rates (ODR) with programmable high-pass and
- Operating Temperature: -40 to 185 F
- Measurement Axes: Triaxial
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Supplier: MTI Instruments Inc.
Description: Features Input Signal Configuration: Differential or Single Ended Channel gain settings: 1, 4, 10 mV/pC Highpass filter options: 0, 10, 15, 20, 25 Hz Lowpass filter options: 10K, 5K, 2K, 500 Hz
- Analog Input Channels: 2 #
- Signal Converter Type: Charge Amplifiers/Converters
- Features: Digital (FIR, IIR), High Pass, Low Pass
- Filter / Amplifier: Integral Filter
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Supplier: Red Pitaya, d.o.o.
Description: STEMlab 125-14 Low Noise is based on a STEMlab 125-14 board that is populated with additional linear analog power for analog power supplies to reduce RF inputs and outputs noise and consequently increase ENOB.
- Analog Input Channels: 6 #
- Digital I/O Channels: 16 #
- Sampling Frequency: 125,000 kHz
- Accuracy: 0.2 % FS
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Supplier: LORD MicroStrain Sensing Systems
Description: with ultra low noise, high sensitivity IEPE (Integral Electronic Piezoelectric) accelerometers. It features 109.5 dB of dynamic range, 1 kHz to 104 kHz sampling rates, ± 32 μseconds network burst synchronization, and user selectable low pass filtering. Globally
- Acceleration: 200 g
- Frequency Range: 1 to 33,000 Hz
- Number of Input Channels: 1 #
- Maximum Shock: 200 g
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Supplier: Kionix, Inc.
Description: ranges. Several user-programmable internal low pass filters eliminate the need for external filter capacitors.
- Acceleration: 3 g
- Maximum Shock: 5,000 to 10,000 g
- Operating Temperature: -40 to 185 F
- Sensor Outputs: Acceleration
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Supplier: Kionix, Inc.
Description: low pass filters eliminate the need for external filter capacitors. The auxillary input provides access to the embedded A/D converter. The sensor element functions on the principle of differential capacitance. Acceleration causes displacement of a silicon structure
- Acceleration: 2 to 8 g
- Frequency Range: 50 to 2,000 Hz
- Maximum Shock: 5,000 to 10,000 g
- Operating Temperature: -40 to 185 F
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Supplier: Kionix, Inc.
Description: The KXUD9 series of linear accelerometers and inclinometers is designed to provide flexibility. These sensors can accept supply voltages between 1.8V and 3.6V. Sensitivity is user selectable at 2g, 4g, 6g, and 8g. Several user-programmable internal low pass filters
- Acceleration: 2 to 8 g
- Frequency Range: 1,800 to 3,500 Hz
- Maximum Shock: 5,000 to 10,000 g
- Operating Temperature: -40 to 185 F
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Supplier: iba America LLC
Description: Input module with 4 analog inputs Measurement of mechanical vibration by means of IEPE accelerometers Expected availability in 2025
- Analog Input Channels: 4 #
- Sampling Frequency: 100 kHz
- Resolution: 24 bits
- Accuracy: 0.1 % FS
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Supplier: Encore Electronics, Inc.
Description: The Model 176 is a computer-controlled charge amplifier module. It features variable gain and output scaling and will accept differential or single-ended inputs. The following parameters are displayed and adjustable: accelerometer sensitivity, differential or single-ended mode, scaling,
- Low Pass Cutoff Frequency: 12 kHz
- High Pass Cutoff Frequency: 0.005 kHz
- Bandwidth: 80 kHz
- Number of Poles: 6, 8
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Supplier: Vibra-Metrics
Description: options include RMS or Peak display, as well as a wide range of high pass and low pass filters to focus on frequencies of interest. Applications: Any Application where immediate display of machine PdM data or 4-20mA output is required.
- Display Type: Numeric Display
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Supplier: SAE International
Description: triaxial angular rate sensor were mounted into a Hybrid III 50 2x-percentile-male ATD headform and compared in a variety of impact events and multibody simulations. Appropriate low-pass digital filter cutoff frequencies for differentiating the angular rate sensor data into
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Supplier: Micromega Dynamics
Description: has been extracted, you can replay it in a data viewer, on your smartphone or your PC. The viewer allows for a detailed analysis of the vibrations recorded in the time domain and in the frequency domain. Various signal processing options are available: high-pass, low-pass and
- Acceleration: 2 to 15 g
- Frequency Range: 0 to 250 Hz
- Minimum Accuracy: 0.3 to 0.5 +/-% FS
- Operating Temperature: 14 to 122 F
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Supplier: Instrumented Sensor Technology
Description: Sallen-Key analog low-pass filter. 3dB filter cut-off frequencies are fixed at the time of manufacture. Specific analog filter cut-offs ranging from 60Hz to 1915Hz can be chosen by the customer at the time of order to accommodate specific data bandwidth
- Inputs: Accelerometer Input
- Data Acquisition: Datalogger / Recorder
- User Interface: Front Panel and Display
- Application: General Lab and Industrial, Vehicular
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Supplier: Instrumented Sensor Technology
Description: 1.5"x3.2"x1.5", 7oz. Built-In Piezoresistive Accelerometer Excellent Low Frequency Response Automatic Offset Correction Programmable Low Pass Filters 12 Bit A/D for Improved Accuracy 1200 Hz Digitization Rate Setup & Data Download via wireless IR & USB. Windows
- Inputs: Accelerometer Input
- Data Acquisition: Datalogger / Recorder
- Application: General Lab and Industrial, Vehicular
- User Interface: None
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Supplier: OMEGA Engineering, Inc.
Description: The iNET-400 system is a low cost card cage that attaches to Windows computers via USB 2.0. The advantage of a card cage is that you can select which I/O modules to install as needed to build a customized system. The instruNet card cage typically has one A/D measurement module and additional
- Analog Input Channels: 6 #
- Digital I/O Channels: 4 #
- Low Pass Cutoff Frequency: 0.006 to 4 kHz
- Gain Range: 1 to 64 #
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Supplier: OMEGA Engineering, Inc.
Description: The iNET-400 system is a low cost card cage that attaches to Windows computers via USB 2.0. The advantage of a card cage is that you can select which I/O modules to install as needed to build a customized system. The instruNet card cage typically has one A/D measurement module and additional
- Operating Temperature: 33.8 to 113 F
- Features: Accelerometer Input, DC Current Input, DC Voltage Input, Data Acquisition Instrument / System, I/O Module, Other, Other Input, RTD Input, Strain Gauge / Bridge Input, Thermistor Input, Thermocouple Input
- Architecture: Analog (RC)
- User Interface: Computer Programmable
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Supplier: OROS
Description: measurement process, taking advantage of multi-analysis and simultaneous recording capabilities. Multi-analysis allows simultaneous analysis of the inputs in different modes such as FFT, 1/n Octave and synchronous order analysis reducing your measurement to a single pass. Simultaneous
- Analog Input Channels: 32 #
- Digital I/O Channels: 1 #
- Sampling Frequency: 40 kHz
- Resolution: 24 bits
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counterpart the Low pass filter. It will depend largely on the additional parasitic components within and element, such an inductor which have a self resonant frequency due to it's parasitic capacitance, which it's effect will depend on the way it is implemented. Our standard high pass filters as all of (read more)
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counterpart the Low pass filter. It will depend largely on the additional parasitic components within and element, such an inductor which have a self resonant frequency due to it's parasitic capacitance, which it's effect will depend on the way it is implemented. Our standard high pass filters as (read more)
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Precision Bandwidth & High Rejection Optimized for the 118–160MHz frequency range, this filter delivers 25dB of high rejection across the 88–108MHz stopband, effectively suppressing low-frequency interference and clutter to maintain a clean transmission (read more)
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referred to as a band-reject filter or a low-pass filter because it rejects the carrier freqency . This virtually eliminates high frequency content and voltage peaks, thereby reducing motor heating to give you extended motor life – and less downtime. The SineWave Guardian also offers incredible (read more)
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change or other parameters which will not require a total re-design. On the mechanical side, any product found that matches the electrical specification can be modified to a specific style or connectors on the input and output, or in the case of Duplexers having any type of connectors in any of the 3 ports. This applies to any Bandpass, Duplexer, Triplexer, Low pass, High pass, band stop, Multi-band RF Filter, and more. (read more)
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transmission and low ripple that capture the emission peaks of each fluorophore. Emission filters must also be designed with very steep edges and relatively narrow bandwidths in order to block as much of the overlap between fluorophore emission as possible. Wide-range out-of-band blocking should (read more)
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More Information Top
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The Problems With Accelerometer Corrections – Can They be Overcome?
Accelerometer Low pass filter HPF .
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Human-Computer Interaction: Interaction Technologies
For all accelerometers low pass filters were applied to smoothen the raw signals.
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Avionics systems development for small unmanned aircraft
The gyros have drifts, and the low pass filtered accelerometer measurements are used to correct for them.
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Vision and inertial sensor cooperation using gravity as a vertical reference
In this case, ^n is given by the rotation update, but must be monitored using the low pass filtered accelerometer signals, for which the above equation still holds, to reset the accumulated drift.
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Real-Time Control of a Two-Wheeled Inverted
Pendulum Mobile Robot
Employing micro-electromechanical (MEM) sensors, FAS- G consists of a combination of two low pass filtered accelerometers and one piezo-ceramic gyro.
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Development of a Two-Wheeled Inverted Pendulum Mobile Robot
FAS-G consists of a combination of two low pass filtered accelerometers and one piezo-ceramic gyro.
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Registration and segmentation for 3D map building - a solution based on stereo vision and inertial sensors
In this case A is given by the rotation update, but must be monitored using the low pass filtered accelerometer signals, for which the above equation still holds, to reset the accumulated drift.
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Active Structural Control with Stable Fuzzy PID Techniques
Accelerometer Low - pass filter .
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Structural health monitoring sensor development for the Imote2 platform
3-axis Analog Accelerometer Low - pass Filter Gain Difference Amplifier 16-bit ADC .
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Active structural acoustic control of a thick-walled cylindrical shell
Difference of external and embedded accelerometers Low - pass filter .
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