Ac Motor Dc Motor
AC motor DC motor use electrical current to produce rotating magnetic fields that, in turn, generate rotational mechanical force in the armature—located on the rotor or stator—around the shaft. The various motor designs use this same basic concept to convert electric energy into powerful bursts of force and provide dynamic levels of speed or power.
DC motors are usually seen in applications where the motor speed needs to be externally controlled. AC motors work best in applications where power performance is sought for extended periods of time. All DC motors are single-phase, but AC motors can be single-phase or three-phase.
AC and DC motors use the same principle of using an armature winding and magnetic field except with DC motors, the armature rotates while the magnetic field doesn’t rotate. In AC motors the armature does not rotate and the magnetic field continuously rotates.
In some applications today, DC electric motors are replaced by combining an AC electric motor with an electronic speed controller, known as variable frequency drive. DC electric motors are replaced with an AC electric motor and an electronic speed controller because it is a more economical and less expensive solution.
DC electric motors have many moving parts that are expensive to replace, and DC electric motor repair is usually more expensive than using a new AC electric motor with an electronic controller.
AC Motor Specification:
Motor type | Induction / Brake / Speed adjusting / Reversible / Torque…Motor | ||
Size | 60 mm / 70mm / 80mm / 90mm / 104mm / 110mm / 130mm... | ||
Output speed | Motor 1200-3000 rpm, Gear Ratio 1/3 ~ 1/1800 | ||
Output power | 6W / 10W / 15W / 25W / 40W / 60W / 90W / 120 W /140W / 2000W / 370W ......3700W | ||
Output shaft | 8mm ~ 50mm; round shaft, D-cut shaft, key-way shaft, hollow shaft… | ||
Voltage | Single Phase 110V/220V; 50Hz/60Hz | ||
Accessories | Brake / Connector / Terminal box / Capacitor / Controller… | ||
Gearbox type | Parallel shaft | ||
Right angle hollow worm shaft | Right angle bevel hollow shaft | Flat type hollow shaft | |
Right angle solid worm shaft | Right angle bevel solid shaft | Flat type solid shaft | |
Planetary center shaft | |||
DC Motor Specification:
Product Name | DC Motor | ||
Motor type | Brush type / Brushless type / Stepper type | ||
Frame size | 16mm ~ 130mm... can be customized | ||
Running speed | Motor 1500-4000 rpm, Gear Ratio 1/3 ~ 1/3000 | ||
Output power | 3W ~2200W... can be customized | ||
Output shaft | round shaft, D-cut shaft, key-way shaft, hollow shaft… | ||
Voltage type | 12V / 24V / 36V / 48V / 90V / 110V /220V... can be customized | ||
Accessories | Internal driver / External driver / Connector / Brake / Encoder… | ||
Gearbox type | Parallel shaft | ||
Right angle hollow worm shaft | Right angle bevel hollow shaft | Flat type hollow shaft | |
Right angle solid worm shaft | Right angle bevel solid shaft | Flat type solid shaft | |
Planetary center shaft | |||
FAQ
Q: Can you make the AC motor DC motor with customization?
A: Yes, we can customize per your request, like power, shaft, voltage, speed, configuration, material, etc.
Q: Do you provide AC motor DC motor samples?
A: Yes. A sample is available for testing.
Q: What is your MOQ of AC motor DC motor?
A: It is 10pcs for the beginning of our business.
Q: What's your lead time of AC motor DC motor?
A: Standard products need 5-30days, a bit longer for customized products.
Q: Do you provide technical support?
A: Yes. Our company has a design and development team, we can provide technical support if you need.
Q: How to ship to us?
A: It is available by air, or by sea, or by train.
Q: How to pay the money?
A: T/T and L/C are preferred, with a different currency, including USD, EUR, RMB, etc.
Q: How can I know the product is suitable for me?
A: >1ST confirm drawing and specification >2nd test sample >3rd start mass production.
Q: Can I come to your company to visit?
A: Yes, you are welcome to visit us at any time.
Q: How shall we contact you?
A: You can send inquiries directly, and we will respond within 24 hours.
The AC electric motor’s stator has coils that are supplied with the alternating current and produce a rotating magnetic field. The AC electric motor’s rotor rotates inside the electric motor’s coils and is attached to an output shaft that produces torque by the rotating magnetic field. There are two different types of AC electric motors and each of them uses a different type of rotor. The first type of AC motor is called an induction motor (also known as an asynchronous motor).
An induction motor uses a magnetic field on the rotor of an induction motor that’s created by an induced current. The other type of AC motor is called a synchronous motor and rotates precisely at the supply frequency or on a sub-multiple of the supply frequency.
Asynchronous motor is able to operate with precision supply frequency because it doesn’t reply on induction. The magnetic field on a synchronous motor is generated by current delivered through slip rings or a permanent magnet. Synchronous motors run faster than induction motors because the speed is reduced by the slip of the asynchronous motor.
DC MOTORS
DC electric motors are powered from direct current (DC) power and are mechanically commutated machines. DC electric motors have a voltage induced rotating armature winding, and a non-rotating armature field frame winding that is a static field, or a permanent magnet.
DC electric motors use different motor connections of the field and armature winding to produce different speed and torque regulation. Unlike AC electric motors, DC electric motor speed can be controlled within the winding by changing the voltage applied to the DC motor armature, or by adjusting the field frame current.
Most DC electric motors today are manufactured to be controlled with industrial electronic DC drives. DC electric motors are still used in many applications across the globe such as paper producing machines, and steel mill rolling machines.
CONCLUSION
DC motors are usually seen in applications where the motor speed needs to be externally controlled. AC motors work best in applications where power performance is sought for extended periods of time. All DC motors are single phase, but AC motors can be single phase or three phase.
AC and DC motors use the same principle of using an armature winding and magnetic field except with DC motors, the armature rotates while the magnetic field doesn’t rotate. In AC motors the armature does not rotate and the magnetic field continuously rotates.
In some applications today, DC electric motors are replaced by combining an AC electric motor with an electronic speed controller, known as variable frequency drive. DC electric motors are replaced with an AC electric motor and an electronic speed controller because it is a more economical and less expensive solution.
DC electric motors have many moving parts that are expensive to replace, and DC electric motor repair is usually more expensive than using a new AC electric motor with an electronic controller.
So as far as maintenance is concern, AC motors are used most as easy availability of AC supply DC motor has constant maintenance problem.
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