Specializing in the design and manufacture of automotive motor armatures and stators.

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Master the new era, choose Hanwha Electric's P-gear armature

Release Time:

2023-08-19

In today's fast-paced society, technology is developing at an unprecedented rate. As modern people, we are constantly pursuing more efficient and intelligent lifestyles. In this era of pursuing intelligence, choosing the right electrical equipment products is particularly important. Today, I would like to introduce Hanwha Electro-Mechanical's P-gear armature.

As a company focusing on the electrical equipment industry, Hanwha Electro-Mechanical has always been committed to providing customers with high-quality and intelligent products. As an innovative product of Hanwha Electro-Mechanical, the P-gear armature greatly meets users' needs for intelligent driving experience.

So, what is so attractive about the P-gear armature? First of all, it adopts the most advanced technology and materials to ensure the high reliability and stability of the product. This means that under any circumstances, the P-gear armature can maintain excellent performance, bringing higher safety to your driving.

Secondly, the intelligent design of the P-gear armature adds a lot of convenience to the driving experience. It can monitor various vehicle parameters in real time and adjust them intelligently according to the actual situation. Whether it is starting, accelerating or decelerating, the P-gear armature can accurately control the power output, making your driving smoother and more comfortable.

In addition, Hanwha Electro-Mechanical's P-gear armature also has excellent energy-saving characteristics. By optimizing the efficiency of electricity utilization, it can minimize energy consumption and contribute to environmental protection. This not only helps reduce carbon emissions, but also brings a longer cruising range to your vehicle.

In summary, choosing Hanwha Electro-Mechanical's P-gear armature means you have chosen a more intelligent and efficient driving experience. Whether in the city or in the countryside, it can bring more fun and convenience to your driving. Choose Hanwha Electro-Mechanical's P-gear armature now, drive the new era, and take your driving experience to a higher level!






Hanwha Electro-Mechanical

09-13

2022

Methods for winding the armature of a DC brushless automotive motor

The method for winding the armature winding of a DC brushless car motor is to leave a section of the cable end free and tie it tightly to the shaft. Hold the car armature with one hand, and wind the coil inductance clockwise with the other hand. Taking a five-slot armature as an example, the first coil is 1-5, the second coil is 2-6, then 3-7..., and so on. The sides of many components are on the next layer. The 5-9 components have one side on the next layer and the other side on the top layer. The sides of many components are on the top layer. In order to ensure the insulation between the top layer and the next layer components, it is advisable to place 0.1-0.15mm thick insulating paper pads in between. When the coil inductance in the slot reaches a certain level, a crossbar is needed to make it reach the bottom of the slot. When winding the coil inductance, the wire should be tightened first. Whether in the slot or the wire connection part, it is necessary to prevent the occurrence of crossed turns to prevent excessive space occupation and short circuit between turns due to partial stress of the wire. After all the windings are wound, the wire ends of the same winding component are bundled together, then the insulation layer of the wire connector is removed, different color waterproof sleeves are used, and they are embedded in the corresponding commutator segments. The important role of the armature in a DC brushless motor: DC motor,

08-22

2022

Design rules for automotive armatures

Automotive armature manufacturers indicate that single-layer windings are not suitable for large-capacity motors, and small-capacity motors should not be double-layered. The magnetic flux density of the motor core should not be too high or too low. When the frequency and thickness of the silicon steel sheet core material are constant, the iron loss depends on the magnetic flux density. If the magnetic flux density is too high, the iron loss increases, and the motor efficiency decreases. The increased heat from the iron core increases the motor temperature, and the increased excitation power increases the motor power factor, so the magnetic flux density of the core should not be too high. Try to avoid excessive saturation of the magnetization curve. If the magnetic density is too low, it will increase the amount of motor material used, increasing the cost. The rotor teeth are narrow, the magnetic density is high, the slot entry wire is large, that is, the automotive armature slots are large. Automotive armature manufacturers indicate that due to poor air conduction, there are many gaps in the slots, affecting the coils and easily damaging the heat dissipation of the insulation material, accelerating the increase in motor temperature. The slot fill factor of the motor slots cannot be too high or too low. Usually, the slot fill factor for low-speed motors is 75% to 85%, which can effectively prevent the enamelled wire from loosening in the slots. The design of the motor rotor slot shape should use parallel trapezoidal recesses as much as possible, and the edges of the recesses should not have sharp corners. Try to use a circular bottom recess, because the circular slot is filled with aluminum, which is easy to injection mold and the stator chip is easy to insert. The coil current density should not be...

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