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The 20 Series fabricated resolver features a highly optimized stator and rotor design that maximizes the efficiency of the magnetic field interaction. The stator is wound with high-precision coils using advanced winding techniques, and the rotor is made from a premium magnetic material with precisely engineered magnetic poles. This combination results in a resolver that can provide extremely accurate and stable angular position feedback.
The resolver is housed in a rugged and compact enclosure that offers excellent protection against environmental factors and mechanical stress. The enclosure is made from a high-strength alloy that is resistant to corrosion, impact, and vibration, ensuring the resolver's durability in even the most challenging operating conditions.
The FR-200 fabricated resolver is equipped with a sophisticated signal processing unit that can convert the raw electrical signals from the stator-rotor interaction into a variety of output formats. This unit is designed to filter out noise and interference, and it can be configured to provide analog or digital signals with high precision and resolution.
1. Ultra-High Accuracy: The fabricated resolver offers an exceptionally high level of accuracy, with a resolution that is among the best in the industry. This makes it ideal for applications that demand the utmost precision, such as in precision engineering, metrology, and scientific research.
2. High Reliability: Its robust construction and advanced manufacturing processes ensure high reliability and long-term stability. The resolver can operate continuously for extended periods without significant degradation in performance, making it a trusted choice for critical applications.
3. Advanced Signal Processing: The built-in signal processing unit of the fabricated resolver provides advanced features such as noise filtering, signal amplification, and digital encoding. This allows for easy integration with a wide range of control systems and ensures accurate and reliable position feedback.
4. Compact and Lightweight: Despite its high performance, the fabricated resolver has a compact and lightweight design that makes it easy to install in space-constrained applications. Its small size does not compromise its functionality or accuracy, making it a versatile option for various systems.
5. Customization Capabilities: The resolver can be customized to meet specific application requirements, including different voltage inputs, signal output protocols, and mechanical interfaces.
1. Precision Engineering: In precision engineering applications, such as CNC machining centers and coordinate measuring machines, the motor is used to provide accurate position feedback for the precise control of the machine axes. Its ultra-high accuracy helps to improve the quality of the machined parts and increase the productivity of the manufacturing process.
2. Metrology and Scientific Research: In metrology laboratories and scientific research facilities, the resolver is used for precise angular position measurement in experiments and calibration procedures. Its high reliability and accuracy make it an essential tool for these applications.
3. High-Tech Manufacturing: In high-tech manufacturing industries, such as semiconductor manufacturing and microelectronics, the fabricated resolver is used in equipment such as wafer handlers and inspection systems. Its ability to provide accurate position feedback in a clean and controlled environment is crucial for ensuring the quality of the products.
4. Robotics and Automation: In advanced robotics and automation systems, the resolver is used to control the movement of robotic arms and other actuators. Its high accuracy and reliability enable robots to perform complex tasks with precision and repeatability, improving the efficiency and productivity of the automation process.
5. Aerospace and Satellite Systems: In aerospace and satellite applications, the fabricated resolver is used in systems such as attitude control systems and antenna pointing mechanisms. Its ability to withstand harsh environmental conditions and provide accurate position feedback is essential for these critical applications.
The 20 Series fabricated resolver features a highly optimized stator and rotor design that maximizes the efficiency of the magnetic field interaction. The stator is wound with high-precision coils using advanced winding techniques, and the rotor is made from a premium magnetic material with precisely engineered magnetic poles. This combination results in a resolver that can provide extremely accurate and stable angular position feedback.
The resolver is housed in a rugged and compact enclosure that offers excellent protection against environmental factors and mechanical stress. The enclosure is made from a high-strength alloy that is resistant to corrosion, impact, and vibration, ensuring the resolver's durability in even the most challenging operating conditions.
The FR-200 fabricated resolver is equipped with a sophisticated signal processing unit that can convert the raw electrical signals from the stator-rotor interaction into a variety of output formats. This unit is designed to filter out noise and interference, and it can be configured to provide analog or digital signals with high precision and resolution.
1. Ultra-High Accuracy: The fabricated resolver offers an exceptionally high level of accuracy, with a resolution that is among the best in the industry. This makes it ideal for applications that demand the utmost precision, such as in precision engineering, metrology, and scientific research.
2. High Reliability: Its robust construction and advanced manufacturing processes ensure high reliability and long-term stability. The resolver can operate continuously for extended periods without significant degradation in performance, making it a trusted choice for critical applications.
3. Advanced Signal Processing: The built-in signal processing unit of the fabricated resolver provides advanced features such as noise filtering, signal amplification, and digital encoding. This allows for easy integration with a wide range of control systems and ensures accurate and reliable position feedback.
4. Compact and Lightweight: Despite its high performance, the fabricated resolver has a compact and lightweight design that makes it easy to install in space-constrained applications. Its small size does not compromise its functionality or accuracy, making it a versatile option for various systems.
5. Customization Capabilities: The resolver can be customized to meet specific application requirements, including different voltage inputs, signal output protocols, and mechanical interfaces.
1. Precision Engineering: In precision engineering applications, such as CNC machining centers and coordinate measuring machines, the motor is used to provide accurate position feedback for the precise control of the machine axes. Its ultra-high accuracy helps to improve the quality of the machined parts and increase the productivity of the manufacturing process.
2. Metrology and Scientific Research: In metrology laboratories and scientific research facilities, the resolver is used for precise angular position measurement in experiments and calibration procedures. Its high reliability and accuracy make it an essential tool for these applications.
3. High-Tech Manufacturing: In high-tech manufacturing industries, such as semiconductor manufacturing and microelectronics, the fabricated resolver is used in equipment such as wafer handlers and inspection systems. Its ability to provide accurate position feedback in a clean and controlled environment is crucial for ensuring the quality of the products.
4. Robotics and Automation: In advanced robotics and automation systems, the resolver is used to control the movement of robotic arms and other actuators. Its high accuracy and reliability enable robots to perform complex tasks with precision and repeatability, improving the efficiency and productivity of the automation process.
5. Aerospace and Satellite Systems: In aerospace and satellite applications, the fabricated resolver is used in systems such as attitude control systems and antenna pointing mechanisms. Its ability to withstand harsh environmental conditions and provide accurate position feedback is essential for these critical applications.