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Laminated Magnet

Segmented permanent magnets are made by cutting off the original whole magnet into many small magnets, which are then bonded to form a permanent magnet of the original size. These small magnets are insulated from each other, which reduces electromagnetic eddy currents.

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Laminated Magnet

Segmented permanent magnets are made by cutting off the original whole magnet into many small magnets, which are then bonded to form a permanent magnet of the original size. These small magnets are insulated from each other, which reduces electromagnetic eddy currents.

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Linear Motor

Linear motor is a kind of transmission device that converts electrical energy directly into mechanical energy for linear motion without any intermediate conversion mechanism. Its main advantage lies in the fast response, high acceleration and high linear motion speed, no friction, easy to control and adjust. Its working principle can be regarded as a rotary motor according to radial dissected and spread into a plane and become, the most commonly used type of linear motor is flat and U-slot type.

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Linear Motor

Linear motor is a kind of transmission device that converts electrical energy directly into mechanical energy for linear motion without any intermediate conversion mechanism. Its main advantage lies in the fast response, high acceleration and high linear motion speed, no friction, easy to control and adjust. Its working principle can be regarded as a rotary motor according to radial dissected and spread into a plane and become, the most commonly used type of linear motor is flat and U-slot type.

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Linear Motor

Linear motor is a kind of transmission device that converts electrical energy directly into mechanical energy for linear motion without any intermediate conversion mechanism. Its main advantage lies in the fast response, high acceleration and high linear motion speed, no friction, easy to control and adjust. Its working principle can be regarded as a rotary motor according to radial dissected and spread into a plane and become, the most commonly used type of linear motor is flat and U-slot type.

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Linear Motor

Linear motor is a kind of transmission device that converts electrical energy directly into mechanical energy for linear motion without any intermediate conversion mechanism. Its main advantage lies in the fast response, high acceleration and high linear motion speed, no friction, easy to control and adjust. Its working principle can be regarded as a rotary motor according to radial dissected and spread into a plane and become, the most commonly used type of linear motor is flat and U-slot type.

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Linear Motor

Linear motor is a kind of transmission device that converts electrical energy directly into mechanical energy for linear motion without any intermediate conversion mechanism. Its main advantage lies in the fast response, high acceleration and high linear motion speed, no friction, easy to control and adjust. Its working principle can be regarded as a rotary motor according to radial dissected and spread into a plane and become, the most commonly used type of linear motor is flat and U-slot type.

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Linear Motor

Linear motor is a kind of transmission device that converts electrical energy directly into mechanical energy for linear motion without any intermediate conversion mechanism. Its main advantage lies in the fast response, high acceleration and high linear motion speed, no friction, easy to control and adjust. Its working principle can be regarded as a rotary motor according to radial dissected and spread into a plane and become, the most commonly used type of linear motor is flat and U-slot type.

VIEW DETAIL

Linear Motor

Linear motor is a kind of transmission device that converts electrical energy directly into mechanical energy for linear motion without any intermediate conversion mechanism. Its main advantage lies in the fast response, high acceleration and high linear motion speed, no friction, easy to control and adjust. Its working principle can be regarded as a rotary motor according to radial dissected and spread into a plane and become, the most commonly used type of linear motor is flat and U-slot type.

VIEW DETAIL

Linear Motor

Linear motor is a kind of transmission device that converts electrical energy directly into mechanical energy for linear motion without any intermediate conversion mechanism. Its main advantage lies in the fast response, high acceleration and high linear motion speed, no friction, easy to control and adjust. Its working principle can be regarded as a rotary motor according to radial dissected and spread into a plane and become, the most commonly used type of linear motor is flat and U-slot type.

VIEW DETAIL

Linear Motor

Linear motor is a kind of transmission device that converts electrical energy directly into mechanical energy for linear motion without any intermediate conversion mechanism. Its main advantage lies in the fast response, high acceleration and high linear motion speed, no friction, easy to control and adjust. Its working principle can be regarded as a rotary motor according to radial dissected and spread into a plane and become, the most commonly used type of linear motor is flat and U-slot type.

VIEW DETAIL

Linear Motor

Linear motor is a kind of transmission device that converts electrical energy directly into mechanical energy for linear motion without any intermediate conversion mechanism. Its main advantage lies in the fast response, high acceleration and high linear motion speed, no friction, easy to control and adjust. Its working principle can be regarded as a rotary motor according to radial dissected and spread into a plane and become, the most commonly used type of linear motor is flat and U-slot type.

VIEW DETAIL

Linear Motor

Linear motor is a kind of transmission device that converts electrical energy directly into mechanical energy for linear motion without any intermediate conversion mechanism. Its main advantage lies in the fast response, high acceleration and high linear motion speed, no friction, easy to control and adjust. Its working principle can be regarded as a rotary motor according to radial dissected and spread into a plane and become, the most commonly used type of linear motor is flat and U-slot type.

VIEW DETAIL

Linear Motor

Linear motor is a kind of transmission device that converts electrical energy directly into mechanical energy for linear motion without any intermediate conversion mechanism. Its main advantage lies in the fast response, high acceleration and high linear motion speed, no friction, easy to control and adjust. Its working principle can be regarded as a rotary motor according to radial dissected and spread into a plane and become, the most commonly used type of linear motor is flat and U-slot type.

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Magnetic couplings

Magnetic couplings are non-contact couplings that use magnetism to transmit torque, and are mainly used to connect two shafts to realize rotational transmission, which has a wide range of applications in many industrial fields.

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Magnetic couplings

Magnetic couplings are non-contact couplings that use magnetism to transmit torque, and are mainly used to connect two shafts to realize rotational transmission, which has a wide range of applications in many industrial fields.

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Magnetic couplings

Magnetic couplings are non-contact couplings that use magnetism to transmit torque, and are mainly used to connect two shafts to realize rotational transmission, which has a wide range of applications in many industrial fields.

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Magnetic couplings

Magnetic couplings are non-contact couplings that use magnetism to transmit torque, and are mainly used to connect two shafts to realize rotational transmission, which has a wide range of applications in many industrial fields.

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Motor Rotor

The rotor of permanent magnet synchronous motor is one of its core components, and its design and working principle are significantly different from those of ordinary asynchronous motors. The rotor of permanent magnet synchronous motor mainly contains permanent magnets, rotor core, rotor shaft and bearings. The following are some important features and structural forms about the rotor of permanent magnet synchronous motor:

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Motor Rotor

The rotor of permanent magnet synchronous motor is one of its core components, and its design and working principle are significantly different from those of ordinary asynchronous motors. The rotor of permanent magnet synchronous motor mainly contains permanent magnets, rotor core, rotor shaft and bearings. The following are some important features and structural forms about the rotor of permanent magnet synchronous motor:

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