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J320XFS6411M01
Windouble
Main Parameters
Model | J320XFS6411M01 |
Pole Pairs | 1:64 |
Input Voltage | AC 15 Vrms |
Input Frequency | 1000 Hz |
Transformation Ratio | 0.333 ±10% |
Accuracy (of coarse resolver) | ±15' max |
Accuracy (of fine resolver) | ±5" max/ ±10" max |
Phase Shift (of coarse resolver) | 0° ±25° |
Phase Shift (of fine resolver) | 0° ±35° |
Input Impedance (of coarse resolver) | (7800 ±1170) Ω |
Input Impedance (of fine resolver) | (235 ±35) Ω |
Output Impedance (of coarse resolver) | (1500 ±225) Ω |
Output Impedance (of fine resolver) | (560 ±84) Ω |
Dielectric Strength | AC 500 Vrms 1min |
Insulation Resistance | 250 MΩ min |
Maximum Rotational Speed | 200 rpm |
Operating Temperature Range | -55℃ to +155℃ |
High Precision and Reliability
Aerograde dual speed resolvers have unparalleled high precision and reliability, which makes them irreplaceable in many fields, especially in military, aerospace, aviation, and maritime applications. Dual speed resolvers, with their multi-pole design, further enhance measurement accuracy and system stability.
Application in Complex Working Conditions
In complex working conditions such as aerospace, such resolvers can provide stable signal output to ensure the normal operation of equipment. The dual speed resolver system, through coarse-fine signal decoupling, can effectively reduce errors and improve measurement accuracy.
Environmental Resistance
Aerograde resolvers have advantages such as resistance to shock, high temperature, and oil contamination. These characteristics enable them to work stably in harsh environments, which is particularly important for equipment like spacecraft that need to operate in extreme conditions.
Mature Technology and Wide Application
Dual speed resolver technology is already very mature and has been widely applied in various fields, such as servo control and position encoding.
System Stability: The multi-pole design further improves the stability of the system, which is particularly important for spacecraft that require long-term stable operation.
Error Reduction
Through coarse-fine signal decoupling, dual speed resolvers can effectively reduce errors during the measurement process, enhancing the overall performance of the system.
Technical Integration
In the control system of spacecraft, dual speed resolvers can be integrated with other sensors and actuators to form a complex control system, enabling more advanced control strategies.
Main Parameters
Model | J320XFS6411M01 |
Pole Pairs | 1:64 |
Input Voltage | AC 15 Vrms |
Input Frequency | 1000 Hz |
Transformation Ratio | 0.333 ±10% |
Accuracy (of coarse resolver) | ±15' max |
Accuracy (of fine resolver) | ±5" max/ ±10" max |
Phase Shift (of coarse resolver) | 0° ±25° |
Phase Shift (of fine resolver) | 0° ±35° |
Input Impedance (of coarse resolver) | (7800 ±1170) Ω |
Input Impedance (of fine resolver) | (235 ±35) Ω |
Output Impedance (of coarse resolver) | (1500 ±225) Ω |
Output Impedance (of fine resolver) | (560 ±84) Ω |
Dielectric Strength | AC 500 Vrms 1min |
Insulation Resistance | 250 MΩ min |
Maximum Rotational Speed | 200 rpm |
Operating Temperature Range | -55℃ to +155℃ |
High Precision and Reliability
Aerograde dual speed resolvers have unparalleled high precision and reliability, which makes them irreplaceable in many fields, especially in military, aerospace, aviation, and maritime applications. Dual speed resolvers, with their multi-pole design, further enhance measurement accuracy and system stability.
Application in Complex Working Conditions
In complex working conditions such as aerospace, such resolvers can provide stable signal output to ensure the normal operation of equipment. The dual speed resolver system, through coarse-fine signal decoupling, can effectively reduce errors and improve measurement accuracy.
Environmental Resistance
Aerograde resolvers have advantages such as resistance to shock, high temperature, and oil contamination. These characteristics enable them to work stably in harsh environments, which is particularly important for equipment like spacecraft that need to operate in extreme conditions.
Mature Technology and Wide Application
Dual speed resolver technology is already very mature and has been widely applied in various fields, such as servo control and position encoding.
System Stability: The multi-pole design further improves the stability of the system, which is particularly important for spacecraft that require long-term stable operation.
Error Reduction
Through coarse-fine signal decoupling, dual speed resolvers can effectively reduce errors during the measurement process, enhancing the overall performance of the system.
Technical Integration
In the control system of spacecraft, dual speed resolvers can be integrated with other sensors and actuators to form a complex control system, enabling more advanced control strategies.