Variable Reluctance Resolver Multipole Size 117 Series
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Variable Reluctance Resolver Multipole Size 117 Series

Lead length, wiring harness and rotor's inner diameter can be customized.
Outline and installation dimension drawing is available by inquiry.
Custom solutions can be technically supported by our engineers.
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  • J117XU9734

  • Windouble

Main Parameters


Model J117XU9732 J117XU9733 J117XU9734 J117XU9735 J117XU9736
Pole Pairs 2 3 4 5 6
Input Voltage AC 7 Vrms AC 7 Vrms AC 7 Vrms AC 7 Vrms AC 7 Vrms
Input Frequency 10000 Hz 10000 Hz 10000 Hz 10000 Hz 10000 Hz
Transformation Ratio 0.286 ±10% 0.286 ±10% 0.286 ±10% 0.286 ±10% 0.286 ±10%
Accuracy ≤ ±60' ≤ ±40' ≤ ±30' ≤ ±25' ≤ ±20'
Phase Shift ≤ ±15° ≤ ±15° ≤ ±15° ≤ ±15° ≤ ±15°
Dielectric Strength AC 500 Vrms 1sec
Insulation Resistance 250 MΩ min
Rotor Inner Diameter TBD TBD 44.6 mm TBD TBD
Wire Cross Sectional Area 0.35 mm² 0.35 mm² 0.35 mm² 0.35 mm² 0.35 mm²
Maximum Rotational Speed 30000 rpm 30000 rpm 30000 rpm 30000 rpm 30000 rpm
Operating Temperature Range -40℃ to +155℃


Introduction of Variable Reluctance Resolvers

Variable reluctance resolvers, known for their high-quality sensing capabilities, operate on the principle of the magnetic reluctance effect. These resolvers are adept at translating minute changes in the magnetic field into precise measurements of an object's position, speed, or other physical quantities. The resolver typically consists of a magnet and a magnetic reluctance element. The reluctance element is made from a magneto-sensitive material, such as a nickel-iron alloy, which exhibits variable resistance in response to changes in the external magnetic field.

 

Signal Measurement Process 

As the object moves, the magnetic field of the attached magnet changes, inducing a change in the reluctance element's resistance. To measure this resistance, the resolver employs a circuit that maintains a constant current through the reluctance element, generating a voltage signal that corresponds to the element's resistance. This voltage signal is then amplified and converted, ultimately being transformed into a representation of the object's position or other physical quantities.

 

Advantages 

High Sensitivity: Quick to respond to the slightest changes in the magnetic field.

Fast Response Time: Delivers immediate feedback on the object's motion.

High Precision: Ensures accurate measurements, vital for critical applications.

 

Application 

These resolvers are widely used across various fields, including industrial automation, mechanical control, and instrumentation, where precise angular displacement sensing is required.


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