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Supplier: Ametek Solartron Metrology
Description: ease of installation Excellent magnetic shielding Wide range of signal conditioning and instrumentation Absolute Positioning The S Series of LVDT Displacement Transducers is the culmination of many years' experience gained from Solartron Metrology's highly
- Interface: Serial
- LVDT Type: Current Balance DC-DC
- Linearity: 0.2000 ±% Full Scale
- Measurement Range: 0.0984 to 11.81 inch
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Supplier: Ametek Solartron Metrology
Description: 3, 12, 25mm measurement range 0.25% Linearity FRO Small 9.5mm body diameter With a 9.5mm body diameter, the Optimum Series of LVDT displacement transducers is the ideal choice for process control and research applications where space is limited. Optimum Series transducers
- LVDT Type: Current Balance AC-AC
- Linearity: 0.2500 ±% Full Scale
- Measurement Range: 0.0591 to 1.97 inch
- Operating Temperature: -40 to 302 F
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Supplier: Ametek Solartron Metrology
Description: 2, 5, 10mm measurement range Infinite resolution DC/DC LVDT sensor The DF DC/DC miniature displacement transducer has a friction-free core and DFg has a free guided core incorporating Delrin bearings. All types incorporate a linear variable differential
- LVDT Type: Current Balance DC-DC
- Linearity: 0.3000 ±% Full Scale
- Measurement Range: 0.0787 to 0.3937 inch
- Operating Temperature: 23 to 158 F
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Supplier: OMEGA Engineering, Inc.
Description: The LD620 DC output displacement tranducers have improved IP67- rated sealing, coupled with new polymer guides with rigid carriers. These transducers are accurate and reliable, especially in wet and corrosive conditions. Output options are either ±5 Vdc (LD620) or 0-10 Vdc (LD621). An
- LVDT Type: Current Balance DC-DC
- Linearity: 0.2000 ±% Full Scale
- Measurement Range: Over 0.1969 inch
- Operating Temperature: 32 to 149 F
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Supplier: OMEGA Engineering, Inc.
Description: detect the smallest movement the associated instrumentation is capable of identifying. These transducers utilize a precision linear variable differential transformer (LVDT) as the measuring source, together with hybrid ICs which include an oscillator, demodulator, and filter;
- LVDT Type: Current Balance DC-DC
- Linearity: 0.3000 ±% Full Scale
- Measurement Range: Over 0.0394 inch
- Operating Temperature: -4 to 176 F
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Supplier: OMEGA Engineering, Inc.
Description: encountered. The armature assembly provides friction-free movement within the sensor due to the large radial clearance of the bore. These transducers offer excellent linearity, low levels of residual voltage and good temperature coefficients, making them ideal for most industrial or
- LVDT Type: Current Balance AC-AC
- Linearity: 0.1000 to 0.5000 ±% Full Scale
- Measurement Range: Over 0.0492 inch
- Operating Temperature: -67 to 302 F
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Linear Variable Differential Transformers (LVDT) - LVDT Long Stroke Displacement Transducer -- LD300Supplier: OMEGA Engineering, Inc.
Description: The LD300 Series provides our longest stroke length, up to 300 mm (12 inches), based on the established linear variable differential transformer principle. LVDT's, which are ac powered, ultimately produce the best accuracy using remote electronics. Special winding techniques are used
- LVDT Type: Current Balance AC-AC
- Linearity: 0.2500 ±% Full Scale
- Measurement Range: Over 0.6000 inch
- Operating Temperature: -40 to 212 F
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Supplier: RDP Electrosense
Description: These transducers are for displacement / position measurement. They make an accurate position measurement of the movement of the armature (the sliding part) relative to the body of the displacement transducer.This transducer uses the Linear Variable
- LVDT Type: Current Balance AC-AC
- Linearity: 0.1000 to 0.5000 ±% Full Scale
- Measurement Range: 0.9843 inch
- Operating Temperature: -58 to 257 F
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Supplier: RDP Electrosense
Description: These transducers are for displacement / position measurement. They make an accurate position measurement of the movement of the armature (the sliding part) relative to the body of the displacement transducer. This transducer uses the Linear Variable
- LVDT Type: Current Balance AC-AC
- Linearity: 0.2500 to 0.5000 ±% Full Scale
- Measurement Range: 7.87 inch
- Operating Temperature: -40 to 257 F
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Supplier: RDP Electrosense
Description: These transducers are for displacement / position measurement. They make an accurate position measurement of the movement of the armature (the sliding part) relative to the body of the displacement transducer. This transducer uses the Linear Variable
- LVDT Type: Current Balance AC-AC
- Measurement Range: 0.3937 inch
- Operating Temperature: -4 to 257 F
- Output: Voltage
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Supplier: RDP Electrosense
Description: These transducers are for displacement / position measurement. They make an accurate position measurement of the movement of the armature (the sliding part) relative to the body of the displacement transducer. This transducer uses the Linear Variable
- LVDT Type: Current Balance AC-AC
- Linearity: 0.5000 ±% Full Scale
- Measurement Range: 3.94 inch
- Operating Temperature: 14 to 122 F
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Description: The Most Advanced Digital Variable Impedance Transducer for Noncontact Linear Position / Displacement / Proximity Sensing > Self tuning bridge, will perform with nearly any sensor, any conductive target > Pushbutton calibration > Pushbutton temperature
- Body: Cylindrical
- Measurement Range: 0.0100 to 1 inch
- Output: Voltage
- Technology: Inductive Linear Position Sensor/Switch
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Supplier: Stellar Technology
Description: LVDT displacement transducers provided by Stellar Technology are used for a myriad of test and measurement applications; from precision dimensional gauging to monitoring of fault-line movement. Whether the application is for aerospace, automotive testing, factory automation, quality
- LVDT Type: Current Balance DC-DC
- Linearity: 0.5000 ±% Full Scale
- Measurement Range: 0.1000 to 0.4000 inch
- Operating Temperature: -58 to 176 F
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Supplier: Columbia Research Labs, Inc.
Description: The Columbia DDCP Series transducers are completely self-contained displacement measurement systems that operate from a low voltage DC power supply or battery. They permit highly accurate readout and recording of an output signal directly without auxiliary signal conditioning
- LVDT Type: Current Balance DC-DC
- Linearity: 0.2500 to 0.5000 ±% Full Scale
- Measurement Range: 0.2000 to 1 inch
- Operating Temperature: -40 to 200 F
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Supplier: Columbia Research Labs, Inc.
Description: The Columbia DDCP Series transducers are completely self-contained displacement measurement systems that operate from a low voltage DC power supply or battery. They permit highly accurate readout and recording of an output signal directly without auxiliary signal conditioning
- LVDT Type: Current Balance DC-DC
- Linearity: 0.2500 to 0.5000 ±% Full Scale
- Measurement Range: 1 inch
- Operating Temperature: -40 to 200 F
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Supplier: Columbia Research Labs, Inc.
Description: The Columbia DDCP Series transducers are completely self-contained displacement measurement systems that operate from a low voltage DC power supply or battery. They permit highly accurate readout and recording of an output signal directly without auxiliary signal conditioning
- LVDT Type: Current Balance DC-DC
- Linearity: 0.2500 to 0.5000 ±% Full Scale
- Measurement Range: 1 inch
- Operating Temperature: -40 to 200 F
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Supplier: Columbia Research Labs, Inc.
Description: The Columbia DDCP Series transducers are completely self-contained displacement measurement systems that operate from a low voltage DC power supply or battery. They permit highly accurate readout and recording of an output signal directly without auxiliary signal conditioning
- LVDT Type: Current Balance DC-DC
- Linearity: 0.2500 to 0.5000 ±% Full Scale
- Measurement Range: 1 inch
- Operating Temperature: -40 to 200 F
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Supplier: Ametek Solartron Metrology
Description: 2.6mm measurement range Rugged construction Short body length SM transducers cover two standard linear ranges from ±1mm to ±3mm. They are designed for measuring displacement in applications where infinite resolution and repeatability are
- LVDT Type: Current Balance AC-AC
- Linearity: 0.2500 ±% Full Scale
- Measurement Range: 0.0394 to 0.1181 inch
- Operating Temperature: -40 to 185 F
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Supplier: Stellar Technology
Description: LVDT displacement transducers provided by Stellar Technology are used for a myriad of test and measurement applications; from precision dimensional gauging to monitoring of fault-line movement. Whether the application is for aerospace, automotive testing, factory automation, quality
- LVDT Type: Current Balance DC-DC
- Linearity: 0.5000 ±% Full Scale
- Measurement Range: 0.5000 to 8 inch
- Operating Temperature: 14 to 160 F
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Supplier: Stellar Technology
Description: LVDT displacement transducers provided by Stellar Technology are used for a myriad of test and measurement applications; from precision dimensional gauging to monitoring of fault-line movement. Whether the application is for aerospace, automotive testing, factory automation, quality
- LVDT Type: Current Balance DC-DC
- Linearity: 0.5000 ±% Full Scale
- Measurement Range: 0.5000 to 3 inch
- Operating Temperature: 14 to 158 F
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Supplier: Stellar Technology
Description: LVDT displacement transducers provided by Stellar Technology are used for a myriad of test and measurement applications; from precision dimensional gauging to monitoring of fault-line movement. Whether the application is for aerospace, automotive testing, factory automation, quality
- LVDT Type: Current Balance AC-AC
- Linearity: 0.5000 ±% Full Scale
- Measurement Range: 0.5000 to 18.5 inch
- Operating Temperature: -40 to 250 F
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Supplier: Acme Chip Technology Co., Limited
Description: CONTACT DISPLACEMENT HEAD 10MM
- Operating Temperature: 14 to 131 F
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Supplier: ASTM International
Description: includes linear variable displacement transducers (LVDT's), linear displacement transducers (LDTs) and linear strain transducers (LST's). 1.2 This calibration procedure is used to determine the relationship between output of the
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Supplier: Honeywell Test & Measurement
Description: Model VL7A (spring return armature) ac-ac long stroke displacement transducer is designed for measuring static and dynamic displacements from ±0.5 in to ±3.0 in. This model achieve impressive 0.25 % full scale non-linearities. Displacement transducer bodies
- Linearity: 0.2500 ±% Full Scale
- Measurement Range: 1 inch
- Operating Temperature: -58 to 257 F
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Supplier: Trans-Tek, Inc.
Description: The Series 210-220 AC LVDTs offer precision linear displacement measurements for applications with strokes from 0.5 to 60 inches. The transducers have been designed with an extremely low temperature coefficient, and non-linearity of less than ± 0.25% F.S. Variable
- LVDT Type: Current Balance AC-AC
- Linearity: 0.2500 ±% Full Scale
- Measurement Range: 0.5000 to 1.3 inch
- Operating Temperature: -67 to 400 F
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Supplier: LORD MicroStrain Sensing Systems
Description: The World's Smallest Linear Displacement Sensor! Differential Variable Reluctance Transducer Overview Ideal for critical linear displacement measurements, the Microminiature DVRT® delivers high performance in a tiny package. Advanced materials and
- Measurement Range: 0.0591 to 0.3543 inch
- Operating Temperature: -67 to 347 F
- Repeatability: 0.0394 mils
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Supplier: Sensor Developments, Inc.
Description: displacement motors, fluid meters, linear actuators, and other drive motors to measure the output torque, in real-time and at the source. The use of this sensor greatly reduces the potential of electrical noise due to bearings or slip-ring brushes, and allows for more extreme
- Accuracy: 0.1000 ±% Full Scale
- Category of Device: Sensor / Transducer
- Electrical Output: Analog Voltage
- Maximum Torque: 500 In-lbs
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Supplier: Gilson Company, Inc.
Description: stainless steel and durable, high-strength polymer components. The unit uses an air bearing system (50 PSIG minimum, clean, dry compressed air source required) to assure reliable loading with accurate and repeatable results. A linear variable displacement transducer
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Supplier: LORD MicroStrain Sensing Systems
Description: LORD MicroStrain® Displacement Variable Reluctance Transducer (DVRT®) systems enable precise micro-position measurement for a wide variety of applications. From slow, slight movements over time to high frequency vibration, the DVRT® system provides accurate, repeatable
- Features: Integral Filter
- Operating Temperature: -4 to 140 F
- Outputs: Voltage
- Sensor Inputs: LVDT / RVDT
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Featured Products Top
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list is endless. Displacement Sensor – S Series • <0.2% Linearity • Analogue, DC and 4-20mA versions • 19 mm diameter stainless steel body (read more)
Browse Linear Variable Differential Transformers (LVDT) Datasheets for Ametek Solartron Metrology -
In an automation system, the most necessary measured variable is displacement. When upgrading of system, a high accuracy displacement transducer is needed. Magnetostrictive displacement transducer is developed as a result of attending to need like this. Model GY Series are (read more)
Browse Inductive Linear Position Sensors and Switches Datasheets for Exsenco, LLC -
. Improved linearity and other standard options are available. These transducers are for displacement / position measurement. They make an accurate position measurement of the movement of the armature (the sliding part) relative to the body of the displacement transducer. This (read more)
Browse Linear Variable Differential Transformers (LVDT) Datasheets for RDP Electrosense -
GT series gauging transducer employs precision linear bearings to optimise the LVDTs measurement precision and repeatability. Using the well-proven linear variable differential transformer (LVDT) principle delivering infinite resolution with absolute (read more)
Browse Linear Position Sensors Datasheets for RDP Electrosense -
there is no physical contact in the sensing element ours are one of the most reliable types available. What is an LVDT Displacement sensor? LVDT stands for Linear Variable Differential Transformer. The moving part of the LVDT is connected to a core rod. Inside the body of (read more)
Browse Linear Variable Differential Transformers (LVDT) Datasheets for RDP Electrosense -
Displacement transducers — pre-calibrated, easy to install and use RDP’s LVDTs are designed for accurate displacement/position measurement even under the harshest conditions. (read more)
Browse Linear Variable Differential Transformers (LVDT) Datasheets for RDP Electrosense -
displacement transducer. This transducer uses the Linear Variable Differential Transformer (LVDT) principle which means that it is probably the most robust and reliable position sensor type available. The strength of the LVDT sensor's principle is that there is no electrical contact across the (read more)
Browse Linear Variable Differential Transformers (LVDT) Datasheets for RDP Electrosense -
In an automation system, the most necessary measured variable is displacement. When upgrading of system, a high accuracy displacement transducer is needed. Magnetostrictive displacement transducer is developed as a result of attending to need like this. Model GY Series are (read more)
Browse Magnetostrictive Position Sensors Datasheets for Exsenco, LLC -
GY Series are highly accurate linear displacement transducers with a positional accuracy of up to 1μm used for displacement and level measurements in a variety of operating conditions. (read more)
Browse Linear Position Sensors Datasheets for Exsenco, LLC -
GY Series are high-quality, highly accurate, non-contact displacement/level transducers made in Japan by SANTEST. They are suitable for measuring linear displacement and liquid levels in all types of environments. Learn More (read more)
Browse Linear Encoders Datasheets for Exsenco, LLC
Conduct Research Top
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AN509 SCM5B43 - DC LVDT Input Module
Linear variable displacement transducers (LVDTs) provide a method of measuring displacements with very high accuracy and infinite resolution. These type of transducers utilize a precision linear variable differential transformer (also referred to in the industry as LVDT) as a measuring source
More Information Top
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Advances in FRP Composites in Civil Engineering
Five linear variable displacement transducers (LVDTs) were installed on each beam to measure deflections at different beam locations (Figure 2).
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Obtaining Material Properties of the Plantar Soft Tissue for
a Patient-Specific Finite Element Model of the Foot
Linear Variable Displacement Transducer .
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Materials and Joints in Timber Structures
For Type A cross-sections only, three Linear Variable Displacement Transduc- ers (LVDT) recorded the horizontal displacements of the centreline of the web at heights of 175 mm (LVDT 2), 250 mm (mid-height – LVDT 1) and 325 mm (LVDT 3…
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Inference of bond slip in prestressed tendons in concrete bridge girders
Shahawy and Batchelor (1996) [23] and NCHRP 579 [24] mea- sured tendons’ slip in I-girders globally by posting linear variable displacement transducer (LVDT) on end strands to monitor the slip between individual strands and the end of the test girder.
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Mechanical Testing of Bone and the Bone-Implant Interface
The machine linear variable displacement transducer (LVDT) should be periodically calibrated using an exten- someter.
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Auxin increases the hydraulic conductivity of auxin-sensitive hypocotyl tissue
Rates were measured with a linear variable displacement transducer (Model 7DCDT-500; Hewlett- Packard, Waltham, Mass., USA) connected by a fine wire (0.076 mm diameter) to a clipattached to the hypocotyl ca.
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Calibration of a Compaction Simulator for the Measurement of Tablet Thickness During Compression
The name '' linear variable displacement transducer '' suggests that a tinear relationship exists between the dis- placement and the voltage output over the range specified by the manufacturer.
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http://krex.k-state.edu/dspace/bitstream/handle/2097/13133/PaulBartley2011.pdf?sequence=1
34 4.1.2 Linear Variable Displacement Transducers .................................................................
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Models for the Dynamic Simulation of Tank Track Components
Linear Variable Displacement Transducer .
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InCIEC 2014
Linear variable displacement transducers (LVDT) were placed at various loca- tion horizontally and vertically to check the displacement profile of the wall (Fig. 5).
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