A hybrid stepper motor is a motor that combines the advantages of permanent magnet and reactive stepper motors, with the characteristics of small step angle and high precision.

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Waterproof stepper motors are stepper motors that can work normally under a certain waterproof level. It effectively prevents water, dust, etc. from entering the motor through special shell design and waterproof shaft seal and other technical means, so as to maintain normal operation in harsh environments.

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Servo motors are motors that control the operation of mechanical components in servo systems, and are characterized by high precision, high speed and high efficiency. It can convert voltage signals into torque and speed to drive the controlled object.

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The basic structure of bipolar stepper motors includes three parts: stator, rotor and winding. The stator is the stationary part of the motor, usually composed of multiple stator teeth, each of which is wound with two-phase bipolar windings, namely A-phase winding and B-phase winding.

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The main components of air-cooled spindle motors include spindle motors, bearing sleeves, water jackets, spindle bearing seats, etc. Its working principle is to blow air through the inside of the spindle motor through a fan to take away heat, thereby reducing the temperature of the motor.

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The working principle of stepper motor encoders is to convert electrical pulse signals into corresponding angular displacement or linear displacement. For each input pulse signal, the rotor of the stepper motor will rotate a fixed angle or move forward one step.

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The working principle of the brake stepper motor is to install a brake device (brake device) at the tail of the stepper motor, which is connected in parallel with the circuit of the stepper motor. When the motor is powered on, the brake device is also powered on, so that the brake device is separated from the output shaft of the stepper motor, and the motor can operate normally.

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The stepper motor driver is mainly composed of a microprocessor, a power amplifier, a drive circuit and a protection circuit. The microprocessor is responsible for receiving input signals, processing control algorithms and outputting control signals; the power amplifier amplifies the control signal of the microprocessor into the drive current required by the motor; the drive circuit connects the microprocessor and the power amplifier to realize signal transmission; the protection circuit ensures the safe and stable operation of the motor under various working conditions. ‌

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Linear stepper motors are devices that convert rotational motion into linear motion. Linear stepper motors usually use a screw and a nut to mesh to achieve linear motion. There are two main ways to achieve this: the first is to build a rotor with internal threads into the motor, and the internal threads of the rotor mesh with the screw; the second is to use the screw as the motor output shaft and mesh with the screw through an external drive nut.

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A servo motor is a motor that controls the operation of mechanical elements in a servo system and has high-precision position control capabilities. It can convert the input voltage signal into angular displacement or angular velocity output on the motor shaft, thereby driving the control object.

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A waterproof stepper motor is a stepper motor with waterproof, dustproof, high temperature resistance and other characteristics, which can operate normally in harsh environments. It consists of multiple electromagnetic coils, which change the force generated by the magnetic field by controlling the current of the coils, thereby driving the motor to rotate.

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Permanent magnet stepper motors are motors that use the interaction between permanent magnets and electromagnetic coils to generate rotating power. Its basic working principle is to apply currents of different phases in the stator windings to generate a rotating magnetic field, which interacts with the permanent magnets on the rotor to make the rotor rotate step by step.

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High temperature stepper motors are motors specially designed to work in extremely high temperature environments and can maintain good performance in high temperature environments. ‌Compared with ordinary motors, high temperature stepper motors use special materials and designs to adapt to high temperature environments.

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A stepper motor driver is an actuator that converts electrical pulses into angular displacements, and is mainly used to control the movement of stepper motors. It precisely controls the number of steps, speed, and direction of the stepper motor by receiving pulse signals from the control system

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The working principle of the linear stepper motor is to engage the screw with the nut and use a certain method to prevent the screw nut from rotating relative to each other, thereby causing the screw to move axially.

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The brushless DC motor is a typical mechatronics product, consisting of a motor body and a driver. ‌It has no brushes and commutators, and uses an electronic commutator to control the direction of the current to achieve the rotation of the motor.

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Integrated stepper motors‌ are devices that integrate motors and drivers into one, and control the rotation angle of the motor through electrical pulse signals. Each pulse signal causes the motor to rotate a fixed step angle, usually 1.8 degrees or 0.9 degrees.

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The working principle of the gear stepper motor is to convert electrical pulse signals into mechanical motion, and control the rotation direction and step distance of the motor by changing the energization sequence of the windings. Specifically, the gear stepper motor receives electrical pulse signals to drive the stator winding inside the motor to generate a magnetic field.

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A closed-loop stepper motor is a motor that combines the characteristics of a stepper motor and a servo motor, and achieves high precision and high efficiency through closed-loop control. A closed-loop stepper motor can remain absolutely still when stationary, and will not have slight fluctuations when stopped like a servo motor.

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A servo motor is an engine that controls the operation of mechanical components in a servo system. It is an auxiliary motor indirect speed change device. The servo motor can control the speed and position accuracy very accurately, and can convert the voltage signal into torque and speed to drive the control object.

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The working principle of waterproof stepper motors mainly includes two aspects: magnetic field drive and waterproof design. The stepper motor passes electricity through one or more sets of coils in the stator in turn. The current in the coil generates a magnetic field.

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The working principle of geared stepper motors is based on the basic working mechanism of stepper motors and combined with the transmission function of gearboxes. A stepper motor is an electric motor that converts electrical pulse signals into angular displacement or linear displacement.

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A closed-loop stepper motor is a motor that achieves closed-loop control by adding an encoder structure. ‌ This motor not only has all the functional characteristics of a stepper motor, but also implements a feedback mechanism in motion control, thereby improving the accuracy and stability of motion

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An integrated stepper motor is a motor system that integrates stepper motor, driver, motion controller and encoder into a whole. This design greatly reduces the installation space and wiring requirements, improves the reliability and practicality of the system, and is particularly suitable for application scenarios with limited installation space and high integration requirements.

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The definition of servo motors is an engine that controls the operation of mechanical elements in a servo system. It is an auxiliary motor indirect speed change device. The main function of a servo motor is to convert the input voltage control signal into the angular displacement and angular velocity output on the shaft to drive the control object.

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A stepper motor encoder is a rotary sensor that converts mechanical rotational displacement into a series of digital pulse signals through a clever mechanism. These pulse signals are like a precision ruler, giving the motor the accuracy of movement.

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The stepper motor brake is an additional device for stepper motors, designed to provide additional holding torque or to achieve rapid stopping and safe braking under certain conditions. The working principle of the stepper motor brake mainly relies on electromagnetic attraction and spring pressure when the power is off to achieve friction braking.

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A planetary gearbox is a mechanical transmission device, also known as a planetary reduction box or gearbox. Its structural feature is that multiple planetary gears rotate around a sun gear. This mechanism design enables the planetary gearbox to reduce the transmission speed ratio and increase the torque of the motor proportionally.

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A hybrid stepper motor is a motor that combines the advantages of a permanent magnet stepper motor and a reactive stepper motor. ‌ It achieves the complementary advantages of high torque and high precision through a specific structural design, thus providing a high-precision, combined stepper drive. Hybrid stepper motors are divided into two-phase, three-phase and five-phase, of which the two-phase step angle is generally 1.8 degrees, the three-phase step angle is generally 1.2 degrees, and the five-phase step angle is generally 0.72 degrees.

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A two-phase stepper motor is an actuator that converts electrical pulses into angular displacement. ‌When the stepper driver receives a pulse signal, it drives the stepper motor to rotate a fixed angle (i.e., step angle) in the set direction. By controlling the number of pulses, the angular displacement can be controlled to achieve the purpose of accurate positioning; at the same time, by controlling the frequency of the pulses, the speed and acceleration of the motor rotation can be controlled to achieve the purpose of speed regulation.

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