Examples of 'wheatstone bridge' in a sentence

Meaning of "wheatstone bridge"

Wheatstone bridge is an electrical circuit used to measure unknown electrical resistance by comparing it with a known resistance value. The bridge circuit consists of four resistors connected in a diamond shape, with voltage applied across two opposite corners and a galvanometer connected to the other two corners to measure the balanced or unbalanced condition of the bridge
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  • An instrument used to measure an unknown electrical resistance by balancing two legs of a bridge circuit, one leg of which includes the unknown component.

How to use "wheatstone bridge" in a sentence

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wheatstone bridge
Wheatstone bridge with temperature gradient compensation.
They are connected to form a wheatstone bridge.
Wheatstone bridge circuit is used to determine unknown resistances more precisely.
The gauge does not form part of the wheatstone bridge.
The wheatstone bridge configuration is a standard arrangement for determining the resistance change of strain gauges.
The change in resistance is measured by connecting the gauges in a wheatstone bridge circuit.
The Wheatstone bridge is a very useful circuit.
They can be connected in a Wheatstone bridge arrangement.
Wheatstone bridge An instrument used for measuring resistance.
The emblem is a stylized representation of a Wheatstone bridge.
Wheatstone bridge input meter Current or voltage input meter.
Four gauges are used to make a Wheatstone bridge.
A Wheatstone bridge and a multimeter both include voltage dividers.
The circuit shown is a simple Wheatstone bridge configuration.
The Wheatstone bridge is formed by a looped series of four resistors.

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Four gauges that are mounted on a Wheatstone bridge are used.
A Wheatstone bridge using resistors of any configuration could be made.
The sensor is mounted in a Wheatstone bridge.
This thus gives a Wheatstone bridge with four magnetoresistors.
Uexc is the excitation voltage of the Wheatstone bridge.
Use a Wheatstone bridge circuit with a three or four wire circuit.
The bridge circuit arrangement is a Wheatstone bridge arrangement.
The Wheatstone bridge circuit is widely used to precisely measure resistance.
The resistors are mounted in the Wheatstone bridge in a customary manner.
A gauge is formed by four resistor elements arranged as a Wheatstone bridge.
It can thus be inserted electrically in a Wheatstone bridge to measure variation in impedance.
These signal leads are placed in a configuration called a Wheatstone bridge.
The detector strands are mounted in a Wheatstone bridge together with unchanging resistances.
Another method of measuring the value of a resistor is the Wheatstone bridge.
The imbalance value of the Wheatstone bridge would thus remain unchanged.
This bridge works under the principle of Wheatstone bridge.
In one preferred embodiment a Wheatstone bridge adapted to measuring complex impedances is applied.
The gauges were installed on a test body in a Wheatstone bridge arrangement.
Full Wheatstone bridge design for measurement accuracy and low temperature drift.
The connection of sensitive elements in a Wheatstone bridge is also known.
The four half Wheatstone bridges can be selectively combined to form a full Wheatstone bridge.
A load cell usually consists of four strain gauges in a Wheatstone bridge configuration.
The measured value of the Wheatstone bridge should equal zero in this situation.
A torque transducer usually consists of four strain gauges in a Wheatstone bridge configuration.
The described Wheatstone bridge arrangement for controlling pressure is useful but is not essential.
This equation is the same as for the functionally equivalent Wheatstone bridge.
The piezoresistors are electrically connected in a Wheatstone bridge configuration for the acceleration measurement.
The imaging bolometer and the common mode rejection bolometer are arranged in a Wheatstone bridge.
The changes in resistance are sensed by a Wheatstone bridge integrated into the chip.
Each half of the Wheatstone bridge can thus be regarded as a separate thermal flow sensor.
The four individual sensors are connected in a Wheatstone bridge as shown in the figure.
Modern thermometric titration temperature probes consist of a thermistor which forms one arm of a Wheatstone bridge.
A compact acquisition system based on a Wheatstone bridge associated to a phase detector has been developed.
The resistance changes may be readout for example by a Wheatstone bridge circuit.
Two other electrodes linked by a Wheatstone bridge connection were equally located in the two segments.

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They are connected to form a wheatstone bridge
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