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Supplier: Kistler Group
Description: Measurement module (DAQ) for piezoelectric sensors (charge amplifier). Suitable for KiDAQ Data Acquisition system types Portable, Rack and DIN Rail. 4 analog input channels Galvanic isolation 500 VDC A/D conversion: 100 kSps sampling rate per channel, 24 Bit resolution Measuring
- Analog Input Channels: 4 #
- Application: General Lab and Industrial
- Form Factor: Rack Mount, DIN Rail
- Isolation: Other
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Supplier: Kistler Group
Description: The 1-channel handheld charge amplifier is suitable as a mobile, battery-operated charge amplifier for service and commissioning tasks on piezoelectric sensors (e.g. preloading of force sensors). Handy thanks to battery operation Immediate display and evaluation
- Electrical Connectors: BNC
- Frequency Range: 0.0 to 10 kHz
- Input Voltage: 9 volts
- Mounting Style: Desktop
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Supplier: Kistler Group
Description: The miniature charge amplifier Type 5039A converts the electrical charge signals yielded by piezoelectric sensors into proportional voltages. The instrument is integrated into a rugged metal housing according to degree of protection IP-65 and conceived for industrial use.
- Electrical Connectors: BNC
- Frequency Range: 0.0 to 17 kHz
- Input Voltage: 4 volts
- Number of Channels: 2
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Supplier: Columbia Research Labs, Inc.
Description: Columbia Model 5840 Differential Charge Amplifier has been specifically designed to operate with differential output piezoelectric vibration sensors typically used in aircraft engine condition monitoring systems. It features small package size and extremely low power
- Electrical Connectors: Other
- Frequency Range: 0.0050 to 2 kHz
- Input Impedance: 10000 kohms
- Input Voltage: 24 to 32 volts
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Supplier: Kistler Group
Description: Universal analog charge amplifier, optional Piezotron input; RS-232C & USB interface; extremely wide charge and frequency range; outstanding noise performance
- Electrical Connectors: BNC
- Frequency Range: 0.0 to 200 kHz
- Input Voltage: 30 volts
- Mounting Style: Desktop
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Supplier: Columbia Research Labs, Inc.
Description: Columbia Model 5624 Charge Amplifier has been designed for use with virtually all piezoelectric transducers to form various airborne vibration and shock data acquisition systems. It features small package size and extremely low power consumption. The Model 5624 Charge
- Electrical Connectors: Other
- Input Impedance: 25 kohms
- Input Voltage: 24 to 32 volts
- Number of Channels: 1
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Supplier: Columbia Research Labs, Inc.
Description: The Columbia Series 5820 Charge Amplifiers are designed for use with virtually all piezoelectric transducers to form various airborne vibration and shock data acquisition systems. These devices feature a very small package size and extremely low power consumption. The Series
- Electrical Connectors: Other
- Frequency Range: 0.0050 to 10 kHz
- Mounting Style: Wall Mounted
- Number of Channels: 1
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Supplier: Columbia Research Labs, Inc.
Description: The Columbia Model 4601 Charge Amplifier is a Low Cost, High Performance instrument for general purpose use with piezoelectric transducers for the measurement of acceleration, force and dynamic pressure. The Model 4601 features wide bandwidth, low noise, low output offset and a
- Accuracy: 2 % FS
- Analog Input Channels: 1 #
- Form Factor: Stand Alone
- Maximum Output: 20 +/-volts
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Supplier: RESON
Description: The CCA 1000 is a compact low-noise conditioning charge amplifier designed for use with piezoelectric hydrophones and other piezoelectric detectors. The CCA 1000 enables the uses of long cables between hydrophone and amplifier without affecting the hydrophone
- Analog Input Channels: 1 #
- Form Factor: Stand Alone
- Maximum Output: 2 +/-volts
- Outputs: Voltage Output?
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I/O Modules and Instruments - Charge Amplifier Module for Piezoelectrical Sensors -- Q.brixx XL A141Supplier: Gantner Instruments, Inc.
Description: 4 channels charge amplifier: For piezoelectric sensors Measuring ranges: 1000...1000000 pC Fast high accuracy digitalization: 24 bit ADC 100 kHz sample rate per channel Signal conditioning: linearization, digital filter, average, scaling, min/max storage, arithmetic, alarm
- Analog Input Channels: 4 #
- Form Factor: DIN Rail
- Isolation: Channel-to-Channel Isolation, Other
- Operating Temperature: -4 to 140 F
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I/O Modules and Instruments - Charge Amplifier Module for Piezoelectrical Sensors -- Q.bloxx XE A141Supplier: Gantner Instruments, Inc.
Description: Engineered with Kistler Galvanic isolation: 500 VDC channel to channel, channel to power supply, and channel to bus 4 channels charge amplifier: For piezoelectric sensors Measuring ranges: 1000...1000000 pC Fast high accuracy digitalization:
- Analog Input Channels: 4 #
- Connection to Host: RS232/422/485
- Form Factor: DIN Rail
- Isolation: Channel-to-Channel Isolation, Other
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Supplier: Gantner Instruments, Inc.
Description: 4 channels charge amplifier: For piezoelectric sensors Measuring ranges: 1000...1000000 pC Fast high accuracy digitalization: 24 bit ADC 100 kHz sample rate per channel Signal conditioning: linearization, digital filter, average, scaling, min/max storage, arithmetic, alarm
- Analog Input Channels: 4 #
- Form Factor: DIN Rail
- Isolation: Channel-to-Channel Isolation, Other
- Operating Temperature: -4 to 140 F
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Supplier: Gantner Instruments, Inc.
Description: to channel, channel to power supply, and channel to bus 4 channels charge amplifier: For piezoelectric sensors Measuring ranges: 1000...1000000 pC Fast high accuracy digitalization: 24 bit ADC 100 kHz sample rate per channel Signal conditioning: linearization, digital filter,
- Analog Input Channels: 4 #
- Connection to Host: RS232/422/485
- Form Factor: DIN Rail
- Isolation: Channel-to-Channel Isolation, Other
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Supplier: Wilcoxon Sensing Technologies
Description: High temperature accelerometer and charge amplifier system, sensor operation to +260°C, 100 mV/g sensitivity, ±10% tolerance, top exit with R1-1-J3-12 cable included
- Acceleration: 50 g
- Features: Corrosion Resistant
- Frequency Range: 0.2000 to 14000 Hz
- Operating Temperature: -58 to 248 F
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Supplier: Wilcoxon Sensing Technologies
Description: Intrinsically Safe charge mode accelerometer, high temperature 260C, and charge amplifier system
- Acceleration: 50 g
- Features: Corrosion Resistant, Intrinsically Safe
- Frequency Range: 1 to 15000 Hz
- Operating Temperature: -58 to 500 F
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Supplier: Wilcoxon Sensing Technologies
Description: Intrinsically Safe accelerometer, high temperature 260C, high frequency 20 mV/g, charge amplifier system, side exit integral cable
- Acceleration: 100 g
- Features: Corrosion Resistant, Intrinsically Safe
- Frequency Range: 0.5000 to 20000 Hz
- Operating Temperature: -58 to 500 F
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Supplier: Electro Optical Components, Inc.
Description: Features High Gain of 10 V/pC Wide Operating Range from 250 Hz to 15 MHz Low Input Noise of 40 x 10-21 C/vHz and 700 pV/vHz Optimized for Sinusoidal Signals from AC Coupled Charge Sources Applications Pyro- and
- Input Impedance: 1000 Mohms
- Maximum Output: 10 +/-volts
- Operating Temperature: -40 to 212 F
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Description: certain impedance and charge measurements, this standard is also applicable to piezoelectric transducers with built-in amplifiers.Sound pressure transducers sense and measure the pressure oscillations within an elastic fluid medium experiencing stress-strain waves. When
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Supplier: CEC Vibration Products
Description: Features: Small size Pre-Filtering Applications: Engine Test Cells Calibration Laboritory Description: The 1-310 series charge amplifiers are used with piezo-electric accelerometers that do not have internal
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Supplier: Wilcoxon Sensing Technologies
Description: Intrinsically Safe charge mode accelerometer, sensor operation to +260°C, 100 mV/g sensitivity, ±10% tolerance, top exit 10-32 connector, for use with CC726Echarge amplifier
- Acceleration: 50 g
- Features: Corrosion Resistant, Intrinsically Safe
- Frequency Range: 1 to 15000 Hz
- Operating Temperature: -58 to 500 F
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Supplier: MTI Instruments Inc.
Description: . Features Designed for cabling and wiring troubleshooting, audio signal simulation, machinery speed signal simulation, low-voltage bridge mode (microvolt DC output) sensor signal simulation and gas turbine maintenance, the 1510A produces accurate and precise voltage, charge, and speed
- Features: Battery Powered, Self Test / Diagnostics / Self Calibrating
- Frequency Range: 10 to 100 Hz
- Number of Input Channels: 1 #
- Operating Temperature: 32 to 122 F
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Supplier: Newport MKS
Description: The NPC120SG High Performance Single Channel Piezo Stack Amplifier is for applications that require more dynamic movements than our model NPC3. With a permanent output current of 120 mA vs the 40 mA of the NPC3, the NPC120SG provides much faster charging of the piezo stack in use. This
- Communication Standards: RS232, USB
- Number of Axes / Motors: 1
- Operating Temperature: 5 to 35 C
- Supply Voltage (DC): 24 volts
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Supplier: SAE International
Description: HUMS accelerometers. Although this interface was specified with an internally amplified piezoelectric accelerometer in mind for Airframe and Drive Train accelerometers, this does not preclude the use of piezoelectric accelerometer with remote charge amplifier or any other
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Supplier: PCB Piezotronics, Inc.
Description: CUSTOM CABLE, 6917M113/120 Designed to mate with differential type piezoelectric accelerometers which utilize a two pin receptacle with 7/16-27 UNS-2A threads and differential charge amplifiers that use twin BNC receptacles. This cable assembly is designed for continuous use in
- Connector Type: BNC
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Supplier: Honeywell Test & Measurement
Description: high natural frequency is required. The MAQ14 is a self generating piezoelectric transducer which has no internal electronics and requires no external power for operation. These units are usually connected to a local charge amplifier that is mounted as near as possible in a
- Operating Temperature: -70.6 to 480 F
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Conduct Research Top
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Selection of Amplifiers & Hardline Cables for High-Temp. Piezoelectric Sensors
environments up to 1,400 degrees F requires the combined use of a high-temperature charge mode piezoelectric sensor, a remotely located charge amplifier, and rugged interconnecting cables. This technical article covers the key characteristics that should be taken into consideration in the selection
More Information Top
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Handbook of Force Transducers
In his summary table of transducer characteristics for measurement of force, weight and torque, Mansfield has included only the following types in 1973: resistive, magnetoelastic and piezoelectric ( charge amplifier , quartz oscillator and special piezo-transistor) [2.38].
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Vibration Engineering and Technology of Machinery
A piezoelectric charge amplifier is used to amplify the piezoelectric sensor patch signal.
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A four-reflection laser interferometer for vibration measurements
Basile G., Marl D., Mazzoleni F., "Bilateral comparison of a piezoelectric charge amplifier " (IT, De), Euromet Project A585 , 2002 .
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On the closed form mechanistic modeling of milling: Specific cutting energy, torque, and power
'l Piezoelectric Charge Amplifier .
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Active vibration control of a smart plate using a piezoelectric sensor–actuator pair at
elevated temperatures
The sensor signal from the PZT-5H piezoceramic sensor patch is fed into a four channel sensor signal conditioning system (Spranktronics) where the sensor signal is amplified using a piezoelectric charge amplifier after conditioning.
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Modal control of a plate using a fuzzy logic controller
A piezoelectric charge amplifier is used to amplify the piezoelectric sensor patch signal.
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Fuzzy logic based modal space control of a cantilevered beam instrumented with
piezoelectric patches
A piezoelectric charge amplifier is used to amplify the sensor crystal signal.
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MEMS versus MOMS from a systems point of view
(b) Piezoelectric charge amplifier circuit. . require drive voltages of the order of tens to a hundred volts.
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Encyclopedia of Smart Materials 2 Volume Set Complete Document
r Require relatively expensive charge amplifiers ( piezoelectric accelerometers .
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VI INTERNATIONAL CONGRESS ON EXPERIMENTAL MECHANICS TECHNICAL PROGRAM
Charge Amplifiers Piezoelectric -Type Sensors c.
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