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LVDT
Linear Variable Differential Transformer measures distance traveled in a straight line.
See Also: Linear Position Sensors
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Displacement Sensing Products
Ideal for precise micro-position measurements, our miniature linear variable displacement transducers (LVDTs) provide accurate, repeatable measurement. Inductive contact, non-contact, slide, and spring-actuated sensors are available in various stroke lengths-- ideal in spaces where traditional LVDTs are too large. Our sensors operate in harsh environments over millions of cycles without degradation in performance
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General Purpose - AC Operation
Columbia Research Laboratories
The S Series LVDT's are Columbia's general purpose line of LVDTs. They are designed to sense linear displacement over the ranges of +/-0.04" to +/-0.30" and translate this motion into a precisely proportional voltage for measurement and control.
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Linear Variable Differential Transformers (LVDTs)
Whilst there are several ways to measure displacement, the Linear Variable Differential Transformer (LVDT) remains a popular transducer in most industrial applications. LVDTs initially were used as a means of taking dimensional readings in laboratories. They gained popularity in a wide variety of industrial monitoring and control applications, and whilst an LVDT is used to measure displacement the technology can be employed within other transducer types.
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L.V.D.T Controller
Columbia Research Laboratories
Columbia's single and dual channel microprocessor-based LVDT indicator and set-point controllers are designed for industrial and process control applications utilizing and Columbia H, M, or S series LVDT. IN addition to displaying real-time LVDT readings, these instruments display MIN, MAX and TIR values.
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LVDT Displacement Sensors "Economy Series"
INELTA Sensorsysteme GmbH & Co. KG
With a higher Rel. linearity error and a smaller Operation temperature range as well as a simplified type of construction, these LVDTs can be poduced and sold cheaper.
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LVDT Displacement Sensors With Ball Swivel Heads
INELTA Sensorsysteme GmbH & Co. KG
This LVDT Series is made for a rough, industrial use. The housing having a diameter of 20mm is fastened "floating" to the application using two ball swivel heads. There is a diversity of displacements up to 200m possible.
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LVDT Measuring Taster
INELTA Sensorsysteme GmbH & Co. KG
The pushrod is guided using maintenance-free bearing. It is pushed out with an integrated feather.
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LVDT Signal Conditioner
NTC-6000
Quick and easy setup with front panel push buttons and LED indicatorsSelectable excitation frequency, analog outputs and bandwidthAutomatic excitation synchronization for multiple unit systemsSelf-diagnostics for LVDT failure, disconnect, or short circuitDigital communications via RS-485 2-wire multi-drop busHot swapability — setup can be saved and reloaded via RS-485 portCybersecurity lockout and tamper detectWorks with nearly any AC LVDT, RVDT, or LVRT half bridge
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LVDT With A Diameter Of 4mm
INELTA Sensorsysteme GmbH & Co. KG
Miniature displacement sensors, position sensors
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LVDT With Guided Armature
INELTA Sensorsysteme GmbH & Co. KG
A guided amature is guided using a maintenance-free bearing.
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LVDT With Unguided Armature On Both Sides
INELTA Sensorsysteme GmbH & Co. KG
The amature is attached to the application, but still moves free inside the LVDT. The correct axial alignment is important. The pushrod moves without any contact.
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Measurement Amplifier In Rugged IP65 Housing
INELTA Sensorsysteme GmbH & Co. KG
For DMS Force Sensors and LVDT
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Miniature LVDT Position Sensors
Miniature LVDTs are ideal where reliable measurements are needed in small spaces. With options for venting up to 30,000 psi, and temperature ratings to 400°F (200°C), these LVDTs operate in hydraulic equipment, embedded in robotics, and used in harsh downhole conditions.
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Signal Conditioner
INELTA Sensorsysteme GmbH & Co. KG
Signal Conditioning of LVDT Displacement Sensors and Force Sensors
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Signal Conditioner As Circuit Board Module
INELTA Sensorsysteme GmbH & Co. KG
For LVDT Displacement Sensors, DMS Force Sensors
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Signal Conditioner in DIN Rail Housing
Series IMA2
INELTA Sensorsysteme GmbH & Co. KG
For LVDT Displacement Sensors, DMS Force Sensors and potentiometric Sensors
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LVDT With Pneumatic Function
INELTA Sensorsysteme GmbH & Co. KG
2-3 bar compressed air moves the strings out the integrated return spring pulls the output back into the housing
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LVDT Sensor Amplifiers
Analog Devices signal conditioning ICs, together with linear variable differential transformers (LVDTs), can be used to convert mechanical position to a dc voltage. The IC provides both the excitation for the LVDT and the output conversion to dc level with a user selectable gain. ADI LVDT signal conditioners are available to interface with a wide range of LVDTs, including half bridge and standard 4- and 5-wire.
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Displacement Transducers
Displacement transducers, non-contact displacement sensors, LVDT sensors, LVIT sensors and potentiometers with a variety of electrical outputs to measure and transmit travel ranges.
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Digital LVDT sensor ZET 7111-L
ZET 7111-L is a digital LVDT displacement sensor. It requires no special adjustment and starts measuring right after power is on. Displacement measured values are transferred in digital form via CAN interface. The LVDT digital sensor consists of a primary transducer (LVDT sensor) and a measuring element (ZET 7111-L unit). The LVDT sensor converts meaured object (to which it is mechanically connected) linear displacement into electric signal to be further transferred into displacement values by the measurement module.
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High Accuracy AC Reference Source
515
Clarke-Hess Communications Research
The Model 515 High Accuracy AC Reference Generator fills a need for a relatively low cost and practical solution for supplying a reference excitation to typical LVDT and Synchro/Resolver transducers. The Model 515 has built-in load sensing which, in effect, yields "zero" output impedance and virtually eliminates the effects of fluctuating output loads. With up to 15 VA of output into loads with as much as 80 of phase shift, the Model 515 is ideally suited to driving inductive loads.
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High-Temperature Extensometers < 950 °C Capacitive
Is typically used in hot tensile applications with tube type furnaces and consist of a separate measuring unit and suspension arm assembly. The measuring unit uses an LVDT with a fixed travel that remains outside of the furnace, the arms are located mostly inside of the heating system and attach the specimen to the measuring unit.
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VDT/Resolver Simulation Module for SLSC
Bloomy's VDT/Resolver Simulation Module offers eight channels of variable differential transformer (VDT) sensor simulation at an unmatched price point. Its highly-flexible nature allows each channel to be configured independently for simulation of a linear variable differential transformer (LVDT), a rotary variable differential transformer (RVDT), or a resolver. Versatile, separate E1 and E2 returns allow each channel to be connected in a 4-, 5- or 6-wire configuration. The included VeriStand SLSC driver also allows each channel to simulate two 4-wire sensors where shared excitation is acceptable.
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4 Channels, 28-90 Vrms Input, 47 Hz-1 kHz
LD5
A linear variable differential transformer (LVDT) is a type of electrical transformer/transducer used for measuring linear displacement (position). A counterpart to this device used for measuring rotary displacement is called a rotary variable differential transformer (RVDT). The RVDT is like an LVDT in that it measures a positional displacement, however, the displacement, which is still a linear proportional function, is based on rotary instead of linear positional movement.
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3, 2 or 1 Channels, 0.5 VA, 1.5 VA or 3.0 VA
DLx
Linear Variable Differential Transformer (LVDT) and Rotary Variable Differential Transformer (RVDT) are transformer-type voltage/current transducers that convert a linear/rotary movement of a core/shaft to a multi-wire differential AC electrical signal. Both deliver signals linearly proportional to the position of a shaft (magnetic induction core). An LVDT/RVDT simulator is used to convert digital positional commands to corresponding AC signals.
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2 Channels, 28 Vrms Input, 10 kHz-20 kHz
LD4
A linear variable differential transformer (LVDT) is a type of electrical transformer/transducer used for measuring linear displacement (position). A counterpart to this device used for measuring rotary displacement is called a rotary variable differential transformer (RVDT). The RVDT is like an LVDT in that it measures a positional displacement, however, the displacement, which is still a linear proportional function, is based on rotary instead of linear positional movement.
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4 Channels, 2-28 Vrms Input, 5 kHz-10 kHz
LD3
A linear variable differential transformer (LVDT) is a type of electrical transformer/transducer used for measuring linear displacement (position). A counterpart to this device used for measuring rotary displacement is called a rotary variable differential transformer (RVDT). The RVDT is like an LVDT in that it measures a positional displacement, however, the displacement, which is still a linear proportional function, is based on rotary instead of linear positional movement.
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4 Channels, 2-28 Vrms Input, 1 kHz-5 kHz
LD2
A linear variable differential transformer (LVDT) is a type of electrical transformer/transducer used for measuring linear displacement (position). A counterpart to this device used for measuring rotary displacement is called a rotary variable differential transformer (RVDT). The RVDT is like an LVDT in that it measures a positional displacement, however, the displacement, which is still a linear proportional function, is based on rotary instead of linear positional movement.
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24-Channel VME Synchro/LVDT Simulation/Acquisition Module
V545
The V545 is a generalized- DSP-based sinewave processor intended for both simulation and acquisition of LVDTs, RVDTs, synchros, and resolvers. 24 generalized, isolated channels are provided. Each channel can be a signal source or a measurement input. Users can program any desired relationship between input and output channels, allowing simulation and measurement of a wide range of inductive transducers, using internal or external excitation.