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Supplier: Kistler Group
Description: This robust piezoelectric sensor is perfect for indirect force measurement on machine and structural surfaces Properties: Dimensions (L / B / H) 51.5 / 25.4 / 26.9 mm Connector KIAG 10-32UNF neg. Overload proof
- Arrangement (If Applicable): Uniaxial
- Construction: Semiconductor (Piezoresistive)
- Operating Temperature: -22 to 248 F
- Termination Options: Lead Wires
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Supplier: Kistler Group
Description: With its low weight, this tiny piezoelectric sensor is perfect for indirect force measurement on lightweight-structur es Properties: Dimensions (L / B / H) 40 / 17 / 15 mm Connector KIAG 10-32UNF neg. High sensitivity Overload proof
- Arrangement (If Applicable): Uniaxial
- Construction: Semiconductor (Piezoresistive)
- Operating Temperature: 32 to 158 F
- Termination Options: Lead Wires
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Supplier: PCB Piezotronics, Inc.
Description: ICP® piezoelectric strain sensor, titanium hsg This high-resolution dynamic alternative to bond foil strain gauges uses a quartz sensing element in a durable, titanium housing. It has 0.0006 microstrain resolution, 5 volt output, 100k Hz frequency response and 0.5 gram
- Construction: Semiconductor (Piezoresistive)
- Operating Temperature: -65 to 250 F
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Supplier: Newport MKS
Description: 140SG can be operated in open or closed-loop mode. The resolution in open-loop mode is in the sub-nanometer range. The NPM140SG features a high resolution strain-gauge position sensor for highly accurate and repeatable closed-loop motion. Also, the position feedback compensates for piezo
- Stroke or X-Axis Travel: 0.0055 inch
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Supplier: Columbia Research Labs, Inc.
Description: The Columbia Model 5804 Military-Grade Strain Gage Amplifier is designed to amplify signals from Columbia's DT and DTD Series Full-Bridge Strain Sensors. The system will provide both strain and temperature outputs. The strain output incorporates a microprocessor-drive n
- Electrical Connectors: Other
- Input Voltage: 15 to 35 volts
- Mounting Style: Wall Mounted
- Number of Channels: 1
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Supplier: Newport MKS
Description: NPM140SG can be operated in open or closed-loop mode. The resolution in open-loop mode is in the sub-nanometer range. The NPM140SG features a high resolution strain-gauge position sensor for highly accurate and repeatable closed-loop motion. Also, the position feedback compensates for piezo
- Stroke or X-Axis Travel: 0.0055 inch
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Supplier: Newport MKS
Description: -frequency error compensation, tracking, fast stepping or continuous scanning. The closed-loop version features a high res strain-gauge position sensor for highly accurate and repeatable motion, that also compensates for actuator creep. The sensors are built in a full Wheatstone bridge
- Axis Configuration: X Axis Only
- Stroke or X-Axis Travel: 0.0079 inch
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Supplier: Newport MKS
Description: -frequency error compensation, tracking, fast stepping or continuous scanning. The closed-loop version features a high res strain-gauge position sensor for highly accurate and repeatable motion, that also compensates for actuator creep. The sensors are built in a full Wheatstone bridge
- Axis Configuration: X Axis Only
- Stroke or X-Axis Travel: 0.0157 inch
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Supplier: DEPRAG, Inc.
Description: Highly accurate measurements Wide measurement range In-process control with the torque transducer The selection of a suitable torque transdu- cer is a basic requirement for the adjust- ment - monitoring and inspection of screw- drivers - and also for the testing of screw joints and screw joint
- Accuracy: 1 ±% Full Scale
- Category of Device: Sensor / Transducer
- Maximum Torque: 1.77 to 177 In-lbs
- Operating Temperature: 32 to 140 F
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Supplier: PI (Physik Instrumente) L.P.
Description: Open-Loop and Closed-Loop Versions For Capacitive, Strain Gauge and LVDT Sensors Integrated Linear Amplifier w/ 14 W Peak Power Runs on Single Stabilized Voltage (12 to 30 VDC)
- Electrical Connectors: LEMO™ Connector
- Input Impedance: 100 kohms
- Input Voltage: -2 to 12 volts
- Number of Channels: 1
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Supplier: PI (Physik Instrumente) L.P.
Description: temperatures to 80 °C Position Sensor Option for Closed-Loop Operation Strain gauge sensor made of metal foil: Compact and with a linearity error to 0.2 % for high position stability and repeatability. Indirect position measurement Fields of Application
- Blocked Force: 10 to 40 N
- Capacitance: 1500 to 3700 nF
- Diameter or Height: 6 mm
- Electrical Connectors: LEMO™ Connector, Other
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Supplier: Piezosystem Jena, Inc.
Description: degrees of freedom. Dynamic work is possible. The elements of the PZ series can be equipped with measurement systems (strain gauge or capacitive sensors) that compensate for hysteresis.
- Capacitance: 1800 nF
- Diameter or Height: 20 mm
- Electrical Connectors: LEMO™ Connector
- Length: 40 mm
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Supplier: Piezosystem Jena, Inc.
Description: degrees of freedom. Dynamic work is possible. The elements of the PZ 200 OEM series can be equipped with measurement systems (strain gauge or capacitive sensors) that compensate for hysteresis.
- Capacitance: 2500 nF
- Diameter or Height: 17 mm
- Electrical Connectors: LEMO™ Connector
- Length: 50 mm
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Supplier: Piezosystem Jena, Inc.
Description: degrees of freedom. Dynamic work is possible. The elements of the PZ 400 OEM series can be equipped with measurement systems (strain gauge or capacitive sensors) that compensate for hysteresis.
- Capacitance: 13600 nF
- Diameter or Height: 24 mm
- Electrical Connectors: LEMO™ Connector
- Length: 66 mm
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Supplier: Piezosystem Jena, Inc.
Description: resolution than is possible with mechanical or electromechanical systems. The PZ series stages can be easily combined with XY-elements of the XYZ series or with tilting piezoelectric modules of the PSH series to give positioning with all degrees of freedom. Dynamic work is possible. The
- Capacitance: 700 nF
- Diameter or Height: 18 mm
- Electrical Connectors: LEMO™ Connector
- Length: 25 mm
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Supplier: Gefran
Description: The “IMPACT” series of Gefran, are pressure transmitters, without transmission fluid, for using in High temperature environment (350°C). Medium pressure is transferred directly to the sensitive silicon element via a thick diaphragm. Strain is transduced by a micro-worked silicon
- Accuracy: 0.2500 to 0.5000 ±% FS
- Electrical Output: Analog Voltage
- Pressure Reading: Gauge
- Sensor Technology: Piezoelectric
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Supplier: DEPRAG, Inc.
Description: The mobile and compact measurement device ME 5000 with integrated battery allows torque measurement independent of location or power supply. E.g. ideal to ascertain a screwdriver’s optimal setting value directly on the assembly station. A docking station and battery charger are included with the ME
- Display Type: Digital Readout
- Measurement Type: Torque
- Output: Serial, Other
- Programmability: Front Panel
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Supplier: MTI Instruments Inc.
Description: as strain gauge amplifiers portability and features are popular for use among railroad signal servicing, power plant, test labs and many other laboratory uses has a variable phase control to simulate machinery imbalance conditions it’s even been used to simulate low level medical EEG
- 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: 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 gain control
- Accuracy: 2 % FS
- Analog Input Channels: 1 #
- Application: General Lab and Industrial
- Form Factor: Stand Alone
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Description: Lays down detailed specifications for the instrumentation and procedure to be used for transverse shock sensitivity testing. Applies to rectilinear accelerometers of the strain gauge, piezoresistive and piezoelectric type. Is applicable for a time range from 0,01 ms to 10 ms and
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Supplier: Win Source Electronics
Description: Manufacturer: Texas Instruments Win Source Part Number: 791742-PGA300ARHHT Type: Piezoelectric - Strain Gauge Operating Temperature Range: -40°C ~ 150°C Output Type: Analog Voltage Input Type: Analog Voltage Family Name: PGA300ARHHT Categories: Integrated
- TJ: -40 to 150 C
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Supplier: CSA Group
Description: Lays down detailed specifications for the instrumentation and procedure to be used for transverse shock sensitivity testing. Applies to rectilinear accelerometers of the strain gauge, piezoresistive and piezoelectric type. Is applicable for a time range from 0,01 ms to 10 ms and
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Supplier: Instrumented Sensor Technology
Description: used with external piezoresistive accelerometers as well as strain gauges, load cells, and other types of bridge-type transducers. User adjustable gain and analog low-pass filtering are also available on the input signal conditioning circuits. The unit employs 4th order Bessel LPFs
- Application: General Lab and Industrial, Vehicular
- Connection to Host: Other, RS232/422/485
- Sensor Inputs: Accelerometer
- User Interface: None
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Encyclopedia of Structural Health Monitoring Complete Document
As compared to electrical resistance or piezoelectric strain gauges , these advantages come at the cost of expense and data acquisition rate limits for large networks.
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Experimental determination of the natural frequencies of complex-shaped shells
The strains in the shell are recorded with piezoelectric strain gages , followed by the Fourier analysis of the oscillograms .
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Fundamental understanding of piezoelectric strain sensors
Keywords: Smart structures, Piezoelectric Strain Gages , Sensor calibration, PVDF .
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A piezoelectric field-effect strain gage
Ripperger, E. A., "'A Piezoelectric Strain Gage ," Proc. SESA, XII (1), 117-124 (1954).
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Structural Dynamics, Volume 3
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This chapter provides an overview of bonded metal strain gage technology with a lesser focus on both piezoresistive (MEMS, defined later) and piezoelectric strain gages .
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AIAA Journal > Intelligent structures for aerospace - A technology overview and assessment
Note that such weighting functions can be applied to the output of any sensing device, including fiber optic sensors, and do not rely on a shaped piezoelectric strain gauge sen- sor.
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Structural dynamic characterization of small-scale multipurpose payloads using conventional and fiber optic sensors
Multiple FBGs and a piezoelectric strain gauge were attached to an experimental payload structure (a cylindrical canister).
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Piezoelectric Strain Gages .
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