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Supplier: Kistler Group
Description: The Kistler LabAmp Type 5165A... is not only an outstanding low-noise charge amplifier for dynamic signals but also a powerful data acquisition device delivering the digitized measurement values directly to a host computer for further analysis. It is configured and operated in a
- Analog Input Channels: 4 #
- Sampling Frequency: 200 kHz
- Resolution: 24 bits
- Maximum Output: 10 volts
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Charge Amplifiers and Charge Converters - 4-8 Channel Charge Amplifier & Data Acquisition -- 5167Ax1Supplier: Kistler Group
Description: The Kistler LabAmp Type 5167Ax1 is not only an outstanding charge amplifier for multi-component force measurements but also a powerful data acquisition device delivering the digitized measurement values directly to a host computer for further analysis. It is configured and
- Analog Input Channels: 8 #
- Sampling Frequency: 100 kHz
- Resolution: 24 bits
- Operating Temperature: 32 to 140 F
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Supplier: Gantner Instruments, Inc.
Description: Electromagnetic Compatibility according to EN61000-4 and EN55011 Power supply 10 … 30 VDC Key Features 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
- Analog Input Channels: 4 #
- Sampling Frequency: 100 kHz
- Resolution: 24 bits
- Transmission Rate: 48,000 kbps
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Supplier: Kistler Group
Description: The 5050B... in-line TEDS charge amplifier series contain miniature charge amplifiers that convert the charge signal from a stand-alone high impedance piezoelectric sensor into a high level voltage signal at a low impedance output. This two wire, single ended
- Analog Input Channels: 1 #
- Accuracy: 2.5 % FS
- Output Impedance: 100 ohms
- Operating Temperature: -65.2 to 212 F
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Supplier: Kistler Group
Description: The piezoresistive single-channel amplifier Type 4624AK... is equipped with Kistler PiezoSmart ® sensor identification. The amplifier is ideally suited for use with digitally compensated sensors. The characteristic values of the sensor are automatically read out by the
- Analog Input Channels: 1 #
- Operating Temperature: -40 to 158 F
- Features: Charge Amplifiers/Converters, Charge Input, Frequency Output, General Lab and Industrial, Integral Amplifier
- User Interface: None
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Advances in Abrasive Technology XV
The force signals were subsequently amplified by a KISTLER charge amplifier and then captured and stored in a computer.
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http://dspace.mit.edu/bitstream/handle/1721.1/18020/57224494-MIT.pdf?sequence=2
The larger cantilever tip displacement creates a larger closed-circuit charge, which is measured by the Kistler charge amplifier .
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Study of machining parameter optimization in high speed milling of Inconel 718 curved surface based on cutting force
The force signals are subsequently amplified by the Kistler charge amplifier and then captured and stored in a computer via a Kistler data acquisition system.
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Adhesion of metals to polymers. I. Study of interfaces modified by inductive heating
KISTLER CHARGE AMPLIFIER .
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Development of a stress sensor based on the piezoelectric lead zirconate titanate for impact stress measurement
Fig.6 shows the detail of the system of acquiring devices: the DC power supply provides KISTLER charge amplifier with 20V DC source; the KISTLER charge amplifier used in this experiment transfers the high impedance charge signal of the piezoelectric ceramic stress …
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Investigation of Bio-Diesel Fueled Engines under Low-Temperature Combustion Strategies
The pressure transducer is connected to a Kistler charge amplifier (Model 5004) to amplify the signal, which is then passed to the data acquisition board for further processing.
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Does whole‐organism performance constrain resource use? A community test with desert lizards
The amount of force necessary to crush a prey item (prey hardness) was measured using a Kistler piezoelectric force transducer (type 9203, Kistler Inc.) connected to a portable Kistler charge amplifier (type 5995A) (see Herrel et al., 1999).
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Prognosis of the probability of failure in tool condition monitoring application-a time series based approach
The cutting force along the y direction of the machine (transverse force) was captured by the Kistler dyna- mometer in the form of charges and converted to volt- ages by the Kistler charge amplifier .
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Material and Manufacturing Technology IV
These captured force signal is filtered with low pass filters (10 Hz cut-off frequency) using KISTLER Charge am- plifier (Model: 5019B131).
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Force prediction model of Zirconia Toughened Alumina (ZTA) inserts in hard turning of AISI 4340 steel using response surface methodology
The charge generated at the dynamometer was amplified using three Kistler charge amplifier (model 5015A).
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