Solartron Metrology LVDT

Nº de Estoque RS: 646-527Marca: Solartron MetrologyPart Number: 922935
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Documentos Técnicos

Especificações

Stroke

±1mm

Overall Width

25mm

Minimum Operating Temperature

-40°C

Maximum Operating Temperature

+85°C

Current Rating

10 → 13 mA

País de Origem

United Kingdom

Detalhes do produto

Miniature ac Energised Inductive Displacement Transducer

When the primary winding is connected to an AC supply, current starts to flow in the secondary coils. The secondary coils are connected in series opposition so that two voltages have opposite phase so when the core is in the centre position then voltages of equal magnitude but opposite phase will be induced in each secondary coil and the output is zero. As the core is moved in one direction the voltage in the corresponding secondary coil increases while the other coil experiences a complementary voltage reduction. The effect is a transducer voltage output that is proportional to displacement. Knowledge of the magnitude and the phase of the output with respect to the excitation signal allows one to deduce the position and direction of the core motion from the null position.

Linear Variable Differential Transformers (LVDT)

These devices comprise a movable nickel iron core and three coils - one for energisation and two for pick-up. They need to be driven by a sine wave to produce an output amplitude and phase directly proportional to the position of the core with respect to the pick-up coils. A phase sensitive detector is required to demodulate the output signal. The main advantages of LVDTs are;

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R$ 3.067,16

Each (Sem VAT)

Solartron Metrology LVDT

R$ 3.067,16

Each (Sem VAT)

Solartron Metrology LVDT
Informações de estoque temporariamente indisponíveis.

Documentos Técnicos

Especificações

Stroke

±1mm

Overall Width

25mm

Minimum Operating Temperature

-40°C

Maximum Operating Temperature

+85°C

Current Rating

10 → 13 mA

País de Origem

United Kingdom

Detalhes do produto

Miniature ac Energised Inductive Displacement Transducer

When the primary winding is connected to an AC supply, current starts to flow in the secondary coils. The secondary coils are connected in series opposition so that two voltages have opposite phase so when the core is in the centre position then voltages of equal magnitude but opposite phase will be induced in each secondary coil and the output is zero. As the core is moved in one direction the voltage in the corresponding secondary coil increases while the other coil experiences a complementary voltage reduction. The effect is a transducer voltage output that is proportional to displacement. Knowledge of the magnitude and the phase of the output with respect to the excitation signal allows one to deduce the position and direction of the core motion from the null position.

Linear Variable Differential Transformers (LVDT)

These devices comprise a movable nickel iron core and three coils - one for energisation and two for pick-up. They need to be driven by a sine wave to produce an output amplitude and phase directly proportional to the position of the core with respect to the pick-up coils. A phase sensitive detector is required to demodulate the output signal. The main advantages of LVDTs are;