Tag Archives: ac electric motors

China high quality Mini AC Motor for Table/Floor/Wall Fan AC Electric Motors Synchronous Motor manufacturer

Product Description

 

 Motor Parameters
Model Voltage(V) Frequecy(Hz) Power RPM(r/min) Notes
YSY9-4 220 50 37 1150 Can choose whether to bring the tooth box
YSY13-4 220 50 36 1100 Can choose whether to bring the tooth box
The motors can be customized accroding to the different voltage, frequecy, power, and rotation speed.

 

ABOUT US
                                                                 CERTIFICATE


FQA

 Q:Can I get a sample before the order because I really don’t know how is your quality?

 A: We offer free sample service! Do not hesitate to send inquiry to get the free sample!

 Q:What’s the delivery time? Because we really need them is urgently?

 A:7days For sending sample order. 20-30days for regular order , depends your order quantity . 

 Q:What’s the warranty period for your products?

 A: One year.

 Q:How to send a inquiry for more information?

 A:.When you send enquiry to us,please let us know your WECHAT,VIBER,WHATSAPP or SKYPE ID,so that we can quote the offer at once. We are always on line waiting for you. 

 Q: Are you a manufacturer or trading company?

 A:We are a manufacturer specialized MOTOR since 2013, such as washing machine motor , fan motor , shade-pole motor …

 Q:What certificate do you have?

 A: We have CE,CCC, ISO9001 and CQC Certificate.

 Q:Why you choose us?

 A: good quality , competitive price

 

THANKS FOR YOUR TIME .

/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Application: Household Appliances
Operating Speed: High Speed
Number of Stator: Single-Phase
Species: Single Phase
Rotor Structure: Squirrel-Cage
Casing Protection: Protection Type
Samples:
US$ 1/Piece
1 Piece(Min.Order)

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Customization:
Available

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electric motor

Can electric motors be adapted for use in both residential and industrial settings?

Yes, electric motors can be adapted for use in both residential and industrial settings. Their versatility, efficiency, and wide range of power options make them suitable for various applications in both environments. Here’s a detailed explanation of how electric motors can be adapted for use in residential and industrial settings:

  1. Residential Applications: Electric motors find numerous applications in residential settings, where their compact size, quiet operation, and energy efficiency are highly valued. Some common residential uses of electric motors include:
    • Home Appliances: Electric motors power a wide range of home appliances such as refrigerators, washing machines, dishwashers, vacuum cleaners, fans, and air conditioners. These motors are designed to provide efficient and reliable operation while minimizing noise and energy consumption.
    • Garage Door Openers: Electric motors are commonly used in residential garage door openers, providing convenient and automated access to the garage.
    • HVAC Systems: Electric motors drive the fans and compressors in heating, ventilation, and air conditioning (HVAC) systems, contributing to efficient climate control and indoor comfort.
    • Pool Pumps: Electric motors power pool pumps, circulating water and maintaining water quality in residential swimming pools.
    • Power Tools: Electric motors are integral components of various power tools used in residential settings, including drills, saws, and trimmers.
  2. Industrial Applications: Electric motors are extensively used in industrial settings due to their reliability, controllability, and adaptability to various industrial processes. Some common industrial applications of electric motors include:
    • Manufacturing Machinery: Electric motors drive a wide range of manufacturing machinery, including conveyor systems, pumps, compressors, mixers, and agitators. These motors are capable of providing precise speed and torque control, enhancing productivity and process efficiency.
    • Industrial Fans and Blowers: Electric motors power fans and blowers for ventilation, cooling, and air circulation in industrial facilities, contributing to a comfortable and safe working environment.
    • Machine Tools: Electric motors drive machine tools such as lathes, milling machines, and grinders, enabling precision machining operations in industrial manufacturing processes.
    • Material Handling Equipment: Electric motors are widely used in material handling equipment such as forklifts, conveyor systems, and hoists, facilitating efficient movement and transportation of goods within industrial facilities.
    • Pumps and Compressors: Electric motors power pumps and compressors in industrial applications, such as water supply systems, HVAC systems, and pneumatic systems.
  3. Adaptability and Customization: Electric motors can be adapted and customized to meet specific requirements in both residential and industrial settings. They are available in a wide range of sizes, power ratings, and configurations to accommodate diverse applications. Motors can be designed for different voltages, frequencies, and environmental conditions, allowing for seamless integration into various systems and equipment. Additionally, advancements in motor control technologies, such as variable frequency drives (VFDs), enable precise speed and torque control, making electric motors highly versatile and adaptable to different operational needs.
  4. Energy Efficiency and Environmental Benefits: The use of electric motors in both residential and industrial settings offers significant energy efficiency advantages. Electric motors have higher efficiency compared to other types of motors, resulting in reduced energy consumption and operational costs. Furthermore, electric motors produce zero direct emissions at the point of use, contributing to a cleaner and more sustainable environment. In residential settings, energy-efficient electric motors in appliances and HVAC systems help homeowners reduce their energy bills and minimize their carbon footprint. In industrial applications, the adoption of electric motors supports energy conservation initiatives and aligns with sustainability goals.

In summary, electric motors are adaptable for use in both residential and industrial settings. Their compact size, energy efficiency, controllability, and versatility make them suitable for a wide range of applications, from home appliances and garage door openers to manufacturing machinery and material handling equipment. The use of electric motors brings benefits such as improved energy efficiency, reduced emissions, quieter operation, and enhanced control, contributing to the efficiency and sustainability of residential and industrial operations.

electric motor

How do electric motors impact the overall productivity of manufacturing processes?

Electric motors have a significant impact on the overall productivity of manufacturing processes. Their versatility, reliability, and efficiency make them essential components in a wide range of industrial applications. Here’s a detailed explanation of how electric motors contribute to enhancing productivity in manufacturing:

  1. Mechanization and Automation: Electric motors serve as the primary power source for a vast array of industrial machinery and equipment. By providing mechanical power, electric motors enable mechanization and automation of manufacturing processes. They drive conveyor belts, pumps, compressors, robots, and other machinery, allowing for efficient material handling, assembly, and production operations. The use of electric motors in mechanized and automated systems reduces manual labor, accelerates production rates, and improves overall productivity.
  2. Precise Control and Repeatable Movements: Electric motors offer precise control over speed, position, and torque, enabling accurate and repeatable movements in manufacturing processes. This precision is crucial for tasks that require consistent and controlled operations, such as precision cutting, drilling, machining, and assembly. Electric motors allow for fine adjustments and control, ensuring that manufacturing operations are performed with high levels of accuracy and repeatability, which ultimately enhances productivity and product quality.
  3. High Speed and Acceleration: Electric motors are capable of achieving high rotational speeds and rapid acceleration, enabling fast-paced manufacturing processes. Motors with high-speed capabilities are utilized in applications that require quick operations, such as high-speed machining, packaging, and sorting. The ability of electric motors to rapidly accelerate and decelerate facilitates efficient cycle times and overall process throughput, contributing to increased productivity.
  4. Reliability and Durability: Electric motors are known for their reliability and durability, making them well-suited for demanding manufacturing environments. With proper maintenance, electric motors can operate continuously for extended periods, minimizing downtime due to motor failures. The reliability of electric motors ensures consistent and uninterrupted production, optimizing manufacturing productivity and reducing costly disruptions.
  5. Energy Efficiency: Electric motors have witnessed significant advancements in energy efficiency, leading to reduced energy consumption in manufacturing processes. Energy-efficient motors convert a higher percentage of electrical input power into useful mechanical output power, resulting in lower energy costs. By utilizing energy-efficient electric motors, manufacturers can achieve cost savings and improve the overall sustainability of their operations. Additionally, energy-efficient motors generate less heat, reducing the need for cooling and improving the overall efficiency of auxiliary systems.
  6. Integration with Control Systems: Electric motors can be seamlessly integrated with sophisticated control systems and automation technologies. This integration allows for centralized control, monitoring, and optimization of manufacturing processes. Control systems can regulate motor speed, torque, and performance based on real-time data, enabling adaptive and efficient operations. The integration of electric motors with control systems enhances the overall productivity by optimizing process parameters, minimizing errors, and facilitating seamless coordination between different stages of manufacturing.

Electric motors significantly impact the overall productivity of manufacturing processes by enabling mechanization, automation, precise control, high-speed operations, reliability, energy efficiency, and integration with advanced control systems. Their versatility and performance characteristics make them indispensable in a wide range of industries, including automotive, electronics, aerospace, food processing, and more. By harnessing the power of electric motors, manufacturers can streamline operations, improve product quality, increase throughput, and ultimately enhance productivity in their manufacturing processes.

electric motor

How do electric motors generate motion and mechanical work?

Electric motors generate motion and mechanical work through the interaction of magnetic fields and the conversion of electrical energy into mechanical energy. Here’s a detailed explanation of how electric motors accomplish this:

  1. Magnetic Fields: Electric motors consist of a stationary part called the stator and a rotating part called the rotor. The stator contains coils of wire that are supplied with an electric current, creating a magnetic field around them. The rotor, on the other hand, typically has magnets or electromagnets that produce their own magnetic fields.
  2. Magnetic Field Interaction: When an electric current flows through the coils in the stator, it generates a magnetic field. The interaction between the magnetic fields of the stator and the rotor creates a rotational force, also known as torque. This torque causes the rotor to start rotating.
  3. Electromagnetic Induction: In certain types of electric motors, such as induction motors, electromagnetic induction plays a significant role. When alternating current (AC) is supplied to the stator, it creates a changing magnetic field. This changing magnetic field induces voltage in the rotor, which leads to the flow of current in the rotor. The current in the rotor produces its own magnetic field, and the interaction between the stator’s magnetic field and the rotor’s magnetic field results in rotation.
  4. Commutation: In motors that use direct current (DC), such as brushed DC motors, commutation is employed. Commutation is the process of reversing the direction of current in the rotor’s electromagnets as the rotor rotates. This is done using a component called a commutator, which ensures that the magnetic fields of the rotor and the stator are always properly aligned. By periodically reversing the current, the commutator allows for continuous rotation.
  5. Conversion of Electrical Energy to Mechanical Energy: As the rotor rotates, the mechanical energy is produced. The rotational motion of the rotor is transferred to the motor’s output shaft, which is connected to the load or the device that needs to be driven. The mechanical work is performed as the output shaft drives the load, such as spinning a fan blade, rotating a conveyor belt, or powering a machine.

In summary, electric motors generate motion and mechanical work by utilizing the interaction of magnetic fields and the conversion of electrical energy into mechanical energy. The electric current flowing through the stator’s coils creates a magnetic field that interacts with the magnetic field of the rotor, producing torque and initiating rotation. In some motors, electromagnetic induction is employed, where a changing magnetic field induces voltage and current in the rotor, leading to rotation. Commutation, in certain motor types, ensures continuous rotation by reversing the current in the rotor’s electromagnets. The resulting rotational motion is then transferred to the motor’s output shaft, enabling the motor to perform mechanical work by driving the load.

China high quality Mini AC Motor for Table/Floor/Wall Fan AC Electric Motors Synchronous Motor   manufacturer China high quality Mini AC Motor for Table/Floor/Wall Fan AC Electric Motors Synchronous Motor   manufacturer
editor by CX 2024-04-25

China best Yej Electromagnetic Brake Motor Three Phase Induction AC Electric Brake Motors vacuum pump connector

Product Description

Electromagnetic Brake Motor
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Applications
Widely used for driving machine tools, printing machinery, forging press, transport machinery, packing machinery, food machinery, construction machinery, and woodworking machinery where quick stop, accurate braking, reciprocated operation are demanded.

General Description

  • Frame sizes: 80 to 315      
  • Rated output: 0.18 to 220kW
  • Voltage: 380V                    
  • Frequency: 50Hz
  • Efficiency levels: IE1          
  • Enclosure: IC411 – TEFC  
  • Degree of protection: IP55 (motor) & IP23 (brake)
  • Braking mode: Power failure brake
  • Rectification code: One-half period rectification    

Features
Electromagnetic brake, fast braking, energy saving, simple structure, exact position.

Optional Features:
Electrical:
Insulation Class:H
Thermal Protection: PTC Thermistor, Thermostat or PT100
Mechanical:
Others mountings
Sealing:Lip seal, Oil seal
Space Heater
Drain Hole

Model Output
kW
Rated Ampere
A
RPM Eff.% Power Factor Rated Torque
N.m
LRT
FLT
Tst
TN
LRA
FLA
Ist
IN
BDT
FLT
Tmax
TN
dB(A)
Synchronous speed   3000 r/min
YE3EJ80M1-2 0.75 1.7 2870 80.7 0.83 2.50 2.2 7.0 2.3 67
YE3EJ80M2-2 1.1 2.4 2875 82.7 0.83 3.65 2.2 7.3 2.3 71
YE3EJ90S-2 1.5 3.2 2880 84.2 0.84 4.97 2.2 7.6 2.3 75
YE3EJ90L-2 2.2 4.6 2880 85.9 0.85 7.29 2.2 7.6 2.3 75
YE3EJ100L-2 3 6.0 2880 87.1 0.87 9.95 2.2 7.8 2.3 79
YE3EJ112M-2 4 7.8 2915 88.1 0.88 13.1 2.2 8.3 2.3 79
YE3EJ132S1-2 5.5 10.6 2935 89.2 0.88 17.9 2.0 8.3 2.3 83
YE3EJ132S2-2 7.5 14.4 2930 90.1 0.88 24.4 2.0 7.9 2.3 83
YE3EJ160M1-2 11 20.6 2950 91.2 0.89 35.6 2.0 8.1 2.3 87
YE3EJ160M2-2 15 27.9 2945 91.9 0.89 48.6 2.0 8.1 2.3 87
YE3EJ160L-2 18.5 34.2 2945 92.4 0.89 60.0 2.0 8.2 2.3 87
YE3EJ180M-2 22 41.8 2950 92.7 0.89 71.2 2.0 8.2 2.3 92
YE3EJ200L1-2 30 54.7 2965 93.3 0.89 96.6 2.0 7.6 2.3 92
YE3EJ200L2-2 37 67.4 2965 93.7 0.89 119 2.0 7.6 2.3 95
YE3EJ225M-2 45 84.4 2965 94.0 0.90 145 2.0 7.7 2.3 97
YE3EJ250M-2 55 98.5 2975 94.3 0.90 177 2.0 7.7 2.3 98
YE3EJ280S-2 75 134 2975 94.7 0.90 241 1.8 7.1 2.3 99
YE3EJ280M-2 90 160 2975 95.0 0.90 289 1.8 7.1 2.3 99
YE3EJ315S-2 110 197 2975 95.2 0.90 353 1.8 7.1 2.3 101
YE3EJ315M-2 132 236 2975 95.4 0.90 424 1.8 7.1 2.3 101
YE3EJ315L1-2 160 282 2975 95.6 0.91 514 1.8 7.2 2.3 103
YE3EJ315L2-2 200 352 2975 95.8 0.91 642 1.8 7.2 2.2 103

Model Output
kW
Rated Ampere
A
RPM Eff.% Power Factor Rated Torque
N.m
LRT
FLT
Tst
TN
LRA
FLA
Ist
IN
BDT
FLT
Tmax
TN
dB(A)
Synchronous speed   1500 r/min
YE3EJ80M1-4 0.55 1.4 1430 80.6 0.75 3.67 2.3 6.0 2.3 61
YE3EJ80M2-4 0.75 1.8 1430 82.5 0.75 5.01 2.3 6.6 2.3 61
YE3EJ90S-4 1.1 2.6 1430 84.1 0.76 7.35 2.3 6.8 2.3 67
YE3EJ90L-4 1.5 3.5 1440 85.3 0.77 9.95 2.3 7.0 2.3 67
YE3EJ100L1-4 2.2 4.8 1440 86.7 0.81 14.6 2.3 7.6 2.3 70
YE3EJ100L2-4 3 6.3 1440 87.7 0.82 19.9 2.3 7.6 2.3 70
YE3EJ112M-4 4 8.4 1455 88.6 0.82 26.3 2.2 7.8 2.3 74
YE3EJ132S-4 5.5 11.2 1465 89.6 0.83 35.9 2.0 7.9 2.3 78
YE3EJ132M-4 7.5 15.0 1465 90.4 0.84 48.9 2.0 7.5 2.3 78
YE3EJ160M-4 11 21.5 1470 91.4 0.85 71.5 2.0 7.7 2.3 82
YE3EJ160L-4 15 28.8 1470 92.1 0.86 97.4 2.0 7.8 2.3 82
YE3EJ180M-4 18.5 35.3 1470 92.6 0.86 120 2.0 7.8 2.3 82
YE3EJ180L-4 22 41.8 1470 93.0 0.86 143 2.0 7.8 2.3 82
YE3EJ200L-4 30 56.6 1475 93.6 0.86 194 2.0 7.3 2.3 84
YE3EJ225S-4 37 69.6 1480 93.9 0.86 239 2.0 7.4 2.3 84
YE3EJ225M-4 45 84.4 1480 94.2 0.86 290 2.0 7.4 2.3 84
YE3EJ250M-4 55 103 1485 94.6 0.84 354 2.0 7.4 2.3 86
YE3EJ280S-4 75 136 1490 95.0 0.88 481 2.0 6.9 2.3 89
YE3EJ280M-4 90 163 1490 95.2 0.88 577 2.0 6.9 2.3 89
YE3EJ315S-4 110 199 1485 95.4 0.89 707 2.0 7.0 2.2 96
YE3EJ315M-4 132 241 1485 95.6 0.88 849 2.0 7.0 2.2 96
YE3EJ315L1-4 160 288 1485 95.8 0.89 1571 2.0 7.1 2.2 97
YE3EJ315L2-4 200 359 1485 96.0 0.90 1286 2.0 7.1 2.2 97
Synchronous speed  1000 r/min
YE3EJ80M1-6 0.37 1.2 910 68.0 0.70 3.88 1.9 5.5 2.1 58
YE3EJ80M2-6 0.55 1.6 925 72.0 0.71 5.68 1.9 5.5 2.1 58
YE3EJ90S-6 0.75 2.0 945 78.9 0.71 7.59 2.0 6.0 2.1 61
YE3EJ90L-6 1.1 2.8 950 81.0 0.73 11.1 2.0 6.0 2.1 65
YE3EJ100L-6 1.5 3.8 950 82.5 0.73 15.1 2.0 6.5 2.1 67
YE3EJ112M-6 2.2 5.4 965 84.3 0.74 21.8 2.0 6.6 2.1 74
YE3EJ132S-6 3 7.2 975 85.6 0.74 29.4 1.9 6.8 2.1 71
YE3EJ132M1-6 4 9.5 975 86.8 0.74 39.2 1.9 6.8 2.1 71
YE3EJ132M2-6 5.5 12.7 975 88.0 0.75 53.9 1.9 7.0 2.1 71
YE3EJ160M-6 7.5 16.2 980 89.1 0.79 73.1 2.0 7.0 2.1 75
YE3EJ160L-6 11 23.1 980 90.3 0.80 107 2.0 7.2 2.1 75
YE3EJ180L-6 15 30.9 980 91.2 0.81 146 1.9 7.3 2.1 78
YE3EJ200L1-6 18.5 37.8 985 91.7 0.81 179 1.9 7.3 2.1 78
YE3EJ200L2-6 22 44.8 985 92.2 0.81 213 1.9 7.4 2.1 78

Model Output
kW
Rated Ampere
A
RPM Eff.% Power Factor Rated Torque
N.m
LRT
FLT
Tst
TN
LRA
FLA
Ist
IN
BDT
FLT
Tmax
TN
dB(A)
Synchronous speed   1000 r/min
YE3EJ225M-6 30 59.1 985 92.9 0.83 291 1.9 6.9 2.1 81
YE3EJ250M-6 37 71.7 985 93.3 0.84 359 1.9 7.1 2.1 83
YE3EJ280S-6 45 85.8 990 93.7 0.85 434 1.9 7.3 2.0 85
YE3EJ280M-6 55 103 990 94.1 0.86 531 1.9 7.3 2.0 85
YE3EJ315S-6 75 145 990 94.6 0.84 723 1.9 6.6 2.0 90
YE3EJ315M-6 90 171 990 94.9 0.85 868 1.9 6.7 2.0 90
YE3EJ315L1-6 110 209 990 95.1 0.85 1061 1.9 6.7 2.0 90
YE3EJ315L2-6 132 247 990 95.4 0.86 1273 1.9 6.8 2.0 90
Synchronous speed   750 r/min
YE3EJ80M1-8 0.18 0.80 700 56.0 0.61 2.46 1.8 3.3 1.9 54
YE3EJ80M2-8 0.25 1.1 700 59.0 0.61 3.41 1.8 3.3 1.9 54
YE3EJ90S-8 0.37 1.4 695 66.0 0.61 5.08 1.8 4.0 2.0 58
YE3EJ90L-8 0.55 2.0 695 70.0 0.61 7.56 1.8 4.0 2.0 58
YE3EJ100L1-8 0.75 2.3 705 73.5 0.67 10.2 1.8 4.0 2.0 61
YE3EJ100L2-8 1.1 3.2 705 76.5 0.69 14.9 1.8 4.0 2.0 61
YE3EJ112M-8 1.5 4.2 715 77.5 0.70 20.0 1.8 4.0 2.0 63
YE3EJ132S-8 2.2 5.9 730 80.0 0.71 28.8 1.8 5.5 2.2 66
YE3EJ132M-8 3 7.6 730 82.5 0.73 39.2 1.8 5.5 2.2 66
YE3EJ160M1-8 4 9.8 725 85.0 0.73 52.7 1.9 6.0 2.2 69
YE3EJ160M2-8 5.5 13.1 725 86.0 0.74 72.4 1.9 6.0 2.2 69
YE3EJ160L-8 7.5 17.4 730 87.5 0.75 98.1 1.9 6.0 2.2 72
YE3EJ180L-8 11 25.0 725 89.0 0.75 145 1.9 6.0 2.2 72
YE3EJ200L-8 15 33.2 730 90.4 0.76 196 2.0 6.5 2.2 75
YE3EJ225S-8 18.5 40.6 735 91.2 0.76 240 2.0 6.5 2.2 75
YE3EJ225M-8 22 46.8 735 91.5 0.78 286 2.0 6.5 2.2 75
YE3EJ250M-8 30 62.6 735 92.2 0.79 390 1.9 6.5 2.0 77
YE3EJ280S-8 37 76.5 740 93.0 0.79 478 1.8 6.0 2.0 78
YE3EJ280M-8 45 92.6 740 93.5 0.79 581 1.8 6.0 2.0 78
YE3EJ315S-8 55 111 740 93.8 0.81 710 1.8 6.5 2.0 84
YE3EJ315M-8 75 151 740 94.0 0.81 968 1.8 6.5 2.0 85
YE3EJ315L1-8 90 181 740 94.5 0.81 1161 1.8 6.5 2.0 85
YE3EJ315L2-8 110 218 740 94.8 0.82 1420 1.8 6.5 2.0 85
Synchronous speed   600 r/min
YE3EJ315S-10 45 99.6 590 92.0 0.75 728 1.5 6.0 2.0 85
YE3EJ315M-10 55 121 590 92.5 0.75 890 1.5 6.0 2.0 85
YE3EJ315L1-10 75 162 590 93.0 0.76 1214 1.5 6.0 2.0 85
YE3EJ315L2-10 90 191 590 93.4 0.77 1457 1.5 6.0 2.0 85

Mounting 
Conventional mounting type and suitable frame size are given in following table(with “√”)

Frame basic type derived type
B3 B5 B35 V1 V3 V5 V6 B6 B7 B8 V15 V36 B14 B34 V18
80~112
132~160
180~280
315

If there is no other request in the order or agreement, terminal box standard position is at the right side of the frame; data above may be changed without prior notice.
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Wannan Motor Production Workshop and Flow Chart

Hundreds of Certificates, Honors and more COMPANY information please go to “ABOUT US”
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Welcome to contact us directly…
wnmmotor
https://youtu.be/frVvg3yQqNM

CHINAMFG MOTOR      INDUSTRIAL SOLUTIONS /* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Application: Industrial
Speed: Constant Speed
Number of Stator: Three-Phase
Function: Driving, Control, Brake Motor
Casing Protection: Closed Type
Number of Poles: 2
Samples:
US$ 100/Piece
1 Piece(Min.Order)

|

Customization:
Available

|

electric motor

Can electric motors be adapted for use in both residential and industrial settings?

Yes, electric motors can be adapted for use in both residential and industrial settings. Their versatility, efficiency, and wide range of power options make them suitable for various applications in both environments. Here’s a detailed explanation of how electric motors can be adapted for use in residential and industrial settings:

  1. Residential Applications: Electric motors find numerous applications in residential settings, where their compact size, quiet operation, and energy efficiency are highly valued. Some common residential uses of electric motors include:
    • Home Appliances: Electric motors power a wide range of home appliances such as refrigerators, washing machines, dishwashers, vacuum cleaners, fans, and air conditioners. These motors are designed to provide efficient and reliable operation while minimizing noise and energy consumption.
    • Garage Door Openers: Electric motors are commonly used in residential garage door openers, providing convenient and automated access to the garage.
    • HVAC Systems: Electric motors drive the fans and compressors in heating, ventilation, and air conditioning (HVAC) systems, contributing to efficient climate control and indoor comfort.
    • Pool Pumps: Electric motors power pool pumps, circulating water and maintaining water quality in residential swimming pools.
    • Power Tools: Electric motors are integral components of various power tools used in residential settings, including drills, saws, and trimmers.
  2. Industrial Applications: Electric motors are extensively used in industrial settings due to their reliability, controllability, and adaptability to various industrial processes. Some common industrial applications of electric motors include:
    • Manufacturing Machinery: Electric motors drive a wide range of manufacturing machinery, including conveyor systems, pumps, compressors, mixers, and agitators. These motors are capable of providing precise speed and torque control, enhancing productivity and process efficiency.
    • Industrial Fans and Blowers: Electric motors power fans and blowers for ventilation, cooling, and air circulation in industrial facilities, contributing to a comfortable and safe working environment.
    • Machine Tools: Electric motors drive machine tools such as lathes, milling machines, and grinders, enabling precision machining operations in industrial manufacturing processes.
    • Material Handling Equipment: Electric motors are widely used in material handling equipment such as forklifts, conveyor systems, and hoists, facilitating efficient movement and transportation of goods within industrial facilities.
    • Pumps and Compressors: Electric motors power pumps and compressors in industrial applications, such as water supply systems, HVAC systems, and pneumatic systems.
  3. Adaptability and Customization: Electric motors can be adapted and customized to meet specific requirements in both residential and industrial settings. They are available in a wide range of sizes, power ratings, and configurations to accommodate diverse applications. Motors can be designed for different voltages, frequencies, and environmental conditions, allowing for seamless integration into various systems and equipment. Additionally, advancements in motor control technologies, such as variable frequency drives (VFDs), enable precise speed and torque control, making electric motors highly versatile and adaptable to different operational needs.
  4. Energy Efficiency and Environmental Benefits: The use of electric motors in both residential and industrial settings offers significant energy efficiency advantages. Electric motors have higher efficiency compared to other types of motors, resulting in reduced energy consumption and operational costs. Furthermore, electric motors produce zero direct emissions at the point of use, contributing to a cleaner and more sustainable environment. In residential settings, energy-efficient electric motors in appliances and HVAC systems help homeowners reduce their energy bills and minimize their carbon footprint. In industrial applications, the adoption of electric motors supports energy conservation initiatives and aligns with sustainability goals.

In summary, electric motors are adaptable for use in both residential and industrial settings. Their compact size, energy efficiency, controllability, and versatility make them suitable for a wide range of applications, from home appliances and garage door openers to manufacturing machinery and material handling equipment. The use of electric motors brings benefits such as improved energy efficiency, reduced emissions, quieter operation, and enhanced control, contributing to the efficiency and sustainability of residential and industrial operations.

electric motor

How do electric motors handle variations in voltage and frequency?

Electric motors are designed to handle variations in voltage and frequency to ensure proper operation and performance. The ability of electric motors to adapt to different voltage and frequency conditions depends on their design characteristics and the presence of additional control devices. Here’s a detailed explanation of how electric motors handle variations in voltage and frequency:

  1. Voltage Variations: Electric motors can handle certain variations in voltage without significant issues. The motor’s design factors in a voltage tolerance range to accommodate fluctuations in the power supply. However, excessive voltage variations beyond the motor’s tolerance can affect its performance and lead to problems such as overheating, increased energy consumption, and premature failure. To mitigate the impact of voltage variations, electric motors may incorporate the following features:
    • Voltage Regulation: Some electric motors, especially those used in industrial applications, may include voltage regulation mechanisms. These mechanisms help stabilize the motor’s voltage, compensating for slight voltage fluctuations and maintaining a relatively steady supply.
    • Voltage Protection Devices: Motor control circuits often incorporate protective devices such as voltage surge suppressors and voltage regulators. These devices help prevent voltage spikes and transient voltage variations from reaching the motor, safeguarding it against potential damage.
    • Voltage Monitoring: In certain applications, voltage monitoring systems may be employed to continuously monitor the motor’s supply voltage. If voltage variations exceed acceptable limits, the monitoring system can trigger alarms or take corrective actions, such as shutting down the motor to prevent damage.
  2. Frequency Variations: Electric motors are designed to operate at a specific frequency, typically 50 or 60 Hz, depending on the region. However, variations in the power system frequency can occur due to factors such as grid conditions or the use of frequency converters. Electric motors handle frequency variations in the following ways:
    • Constant Speed Motors: Most standard electric motors are designed for operation at a fixed speed corresponding to the rated frequency. When the frequency deviates from the rated value, the motor’s rotational speed changes proportionally. This can affect the motor’s performance, especially in applications where precise speed control is required.
    • Variable Frequency Drives (VFDs): Variable frequency drives are electronic devices that control the speed of an electric motor by varying the supplied frequency and voltage. VFDs allow electric motors to operate at different speeds and handle frequency variations effectively. By adjusting the frequency and voltage output, VFDs enable precise control of motor speed and torque, making them ideal for applications where speed control and energy efficiency are critical.
    • Inverter Duty Motors: Inverter duty motors are specifically designed to handle the frequency variations encountered when operated with VFDs. These motors feature improved insulation systems and robust designs to withstand the harmonic distortions and voltage spikes associated with VFD operation.
  3. Motor Protection: Electric motors may incorporate protective features to safeguard against adverse effects caused by voltage and frequency variations. These protection mechanisms include:
    • Thermal Protection: Motors often include built-in thermal protection devices such as thermal switches or sensors. These devices monitor the motor’s temperature and can automatically shut it down if it exceeds safe limits due to voltage or frequency variations that lead to excessive heating.
    • Overload Protection: Overload protection devices, such as overload relays, are employed to detect excessive currents drawn by the motor. If voltage or frequency variations cause the motor to draw abnormal currents, the overload protection device can interrupt the power supply to prevent damage.
    • Voltage/Frequency Monitoring: Advanced motor control systems may incorporate voltage and frequency monitoring capabilities. These systems continuously measure and analyze the motor’s supply voltage and frequency, providing real-time feedback on any deviations. If voltage or frequency variations exceed predetermined thresholds, the monitoring system can activate protective actions or trigger alarms for further investigation.

In summary, electric motors handle variations in voltage and frequency through design considerations, additional control devices, and protective mechanisms. Voltage variations are managed through voltage regulation, protective devices, and monitoring systems. Frequency variations can be accommodated by using variable frequency drives (VFDs) or employing inverter duty motors. Motor protection features, such as thermal protection and overload relays, help safeguard the motor against adverse effects caused by voltage and frequency variations. These measures ensure the reliable and efficient operation of electric motors under different voltage and frequency conditions.

electric motor

What are the different types of electric motors available?

There are various types of electric motors available, each designed for specific applications and operating principles. These motors differ in their construction, power sources, and performance characteristics. Here is an overview of some common types of electric motors:

  1. DC Motors: DC (Direct Current) motors are widely used and come in different configurations. The most common types include brushed DC motors and brushless DC motors. Brushed DC motors use brushes and a commutator to switch the direction of current in the rotor, while brushless DC motors use electronic commutation. DC motors offer good speed control and torque characteristics, making them suitable for applications like robotics, electric vehicles, and small appliances.
  2. AC Motors: AC (Alternating Current) motors are classified into several types, including induction motors, synchronous motors, and universal motors. Induction motors are popular for their simplicity and reliability. They operate based on electromagnetic induction and are commonly used in industrial and residential applications. Synchronous motors operate at a constant speed and are often used in applications that require precise control, such as industrial machinery and synchronous clocks. Universal motors are designed to operate on both AC and DC power sources and are commonly found in household appliances like vacuum cleaners and power tools.
  3. Stepper Motors: Stepper motors are designed to move in discrete steps or increments, making them suitable for applications that require precise positioning. They are often used in robotics, 3D printers, CNC machines, and other automated systems. Stepper motors are available in various configurations, including permanent magnet stepper motors, variable reluctance stepper motors, and hybrid stepper motors.
  4. Servo Motors: Servo motors are a type of motor that combines a DC motor with a feedback control mechanism. They are known for their precise control over position, velocity, and acceleration. Servo motors are commonly used in robotics, industrial automation, and applications that require accurate motion control, such as robotic arms, RC vehicles, and camera gimbals.
  5. Linear Motors: Linear motors are designed to produce linear motion instead of rotational motion. They operate on similar principles as rotary motors but with a different mechanical arrangement. Linear motors find applications in high-speed transportation systems, cutting machines, and other systems that require linear motion without the need for mechanical conversion from rotary to linear motion.
  6. Haptic Motors: Haptic motors, also known as vibration motors, are small motors used to create tactile feedback or vibrations in electronic devices. They are commonly found in smartphones, game controllers, wearable devices, and other gadgets that require haptic feedback to enhance the user experience.

These are just a few examples of the different types of electric motors available. Each type has its own advantages, limitations, and specific applications. The selection of an electric motor depends on factors such as the required torque, speed, control, efficiency, and the specific needs of the application at hand.

China best Yej Electromagnetic Brake Motor Three Phase Induction AC Electric Brake Motors   vacuum pump connector	China best Yej Electromagnetic Brake Motor Three Phase Induction AC Electric Brake Motors   vacuum pump connector
editor by CX 2024-04-13

China Custom Premium Efficiency AC Electric Induction Small Electric Motors Electric Motor 20kw vacuum pump oil near me

Product Description

Product Description

 

Asynchronous motors are 1 of the most-widely used electric machines globally. With their compact and sturdy construction, asynchronous motors guarantee maximum service life and maintainability for decades. 

Three Phase Asynchronous motor is the AC motors, the modular for 3 phase motor offers millions of possible drive combinations.

For the high efficiency electric motor, we have YE3, YE4, YE5 series, from 0.09KW to 315KW. For different voltage, frequency and different power, we can do the customized.
 

MOTOR TYPE Asynchronous motor, YE3, YE4, YE5.
STRUCTURE Iron Cast or Aluminum Housing, Customized.
PROTECTION CLASS IP54, IP55.
INSULATION CLASS Class F.
VOLTAGE 380V, 400V, 440V, 660V, Customized.
FREQUENCY 50Hz(60Hz Available).
EFFICIENCY IE3, IE4, IE5, 
OUTPUT POWER 0.75kW~315kW.
PHASE Three Phase.
POLE 2pole, 4pole, 6pole, 8pole, 10pole.
COOLING METHOD IC 411/Customized.
DUTY S1 (24Hour continuous working).
AMBIENT TEMPRETURE -15°C≤ 0 ≤ 40°C.
ALTITUDE Not exceeding 1000m above sea level
MOUNTING TYPE B3,B5,B35, V1, V3,Customized.
STHangZhouRD IEC International Standard, China CCC, ISO 9001, CE.
PACKAGE Carton or Wooden Case, well protection, easy loading and delivery. 
APPLICATION Water Pump, Assembly line, Air Compressor, Packing and Food Machinery, Mill Machinery, fan, and other equipment.
WARRANTY 1 year except for the wear parts.
DELIVERY TIME 10-30 working days.

 

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Application: Industrial
Operating Speed: Constant Speed
Number of Stator: Three-Phase
Customization:
Available

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about shipping cost and estimated delivery time.
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Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

electric motor

What maintenance practices are essential for prolonging the lifespan of an electric motor?

Maintaining electric motors is crucial for prolonging their lifespan and ensuring optimal performance. Proper maintenance practices help prevent failures, minimize downtime, and maximize the efficiency and reliability of electric motors. Here’s a detailed explanation of essential maintenance practices for prolonging the lifespan of an electric motor:

  1. Regular Inspections: Conduct regular visual inspections of the motor to identify any signs of wear, damage, or loose connections. Inspect the motor’s external components, such as the housing, bearings, cooling fans, and cables. Look for any unusual noise, vibration, or overheating during operation, as these can indicate potential issues that require attention.
  2. Lubrication: Proper lubrication is vital for the smooth operation and longevity of electric motors. Follow the manufacturer’s guidelines for lubrication intervals and use the recommended lubricants. Apply lubrication to bearings, shafts, and other moving parts as specified. Over-lubrication or using incompatible lubricants can cause overheating and premature wear, so it’s essential to follow the recommended practices.
  3. Cleaning: Keep the motor clean and free from dirt, dust, and debris that can accumulate over time. Regularly clean the motor’s exterior using a soft brush or compressed air. Ensure that cooling vents and fans are clear of any obstructions to maintain proper airflow and prevent overheating. Cleanliness helps prevent insulation damage and improves heat dissipation.
  4. Alignment and Balance: Misalignment or imbalance in the motor’s shaft and coupling can lead to excessive vibrations and premature wear. Regularly check and correct any misalignment or imbalance issues using precision alignment tools. Proper alignment and balance reduce stress on bearings and extend their lifespan, contributing to the overall longevity of the motor.
  5. Temperature Monitoring: Monitor the motor’s temperature during operation using temperature sensors or thermal imaging techniques. Excessive heat can damage insulation, bearings, and other components. If the motor consistently operates at high temperatures, investigate the cause and take corrective actions, such as improving ventilation, reducing loads, or addressing any cooling system issues.
  6. Electrical Connections: Inspect and tighten electrical connections regularly to ensure secure and reliable connections. Loose or corroded connections can lead to voltage drops, increased resistance, and overheating. Check terminal blocks, wiring, and motor leads for any signs of damage or degradation. Properly torquing electrical connections and addressing any issues promptly helps maintain electrical integrity.
  7. Vibration Analysis: Perform regular vibration analysis to detect any abnormal vibration patterns that could indicate underlying issues. Vibration analysis tools and techniques can help identify unbalanced rotors, misalignment, bearing wear, or other mechanical problems. Addressing vibration issues early can prevent further damage and improve motor performance and longevity.
  8. Periodic Testing and Maintenance: Conduct periodic testing and maintenance based on the manufacturer’s recommendations and industry best practices. This may include insulation resistance testing, winding resistance testing, bearing lubrication checks, and other diagnostic tests. Such tests help identify potential problems before they escalate and allow for timely maintenance and repairs.
  9. Training and Documentation: Ensure that maintenance personnel are properly trained in electric motor maintenance practices. Provide training on inspection techniques, lubrication procedures, alignment methods, and other essential maintenance tasks. Maintain comprehensive documentation of maintenance activities, including inspection reports, maintenance schedules, and repair records.

By implementing these maintenance practices, motor owners can significantly prolong the lifespan of electric motors. Regular inspections, proper lubrication, cleaning, alignment, temperature monitoring, electrical connection maintenance, vibration analysis, periodic testing, and training contribute to the motor’s reliability, efficiency, and overall longevity.

electric motor

Are there any emerging trends in electric motor technology, such as smart features?

Yes, there are several emerging trends in electric motor technology, including the integration of smart features. These trends aim to improve motor performance, efficiency, and functionality, while also enabling connectivity and advanced control capabilities. Here’s a detailed explanation of some of the emerging trends in electric motor technology:

  1. Internet of Things (IoT) Integration: Electric motors are becoming increasingly connected as part of the broader IoT ecosystem. IoT integration allows motors to communicate, share data, and be remotely monitored and controlled. By embedding sensors, communication modules, and data analytics capabilities, motors can provide real-time performance data, predictive maintenance insights, and energy consumption information. This connectivity enables proactive maintenance, optimized performance, and enhanced energy efficiency.
  2. Condition Monitoring and Predictive Maintenance: Smart electric motors are equipped with sensors that monitor various parameters such as temperature, vibration, and current. This data is analyzed in real-time to detect anomalies and potential faults. By implementing predictive maintenance algorithms, motor failures can be anticipated, enabling maintenance activities to be scheduled proactively. This trend reduces unplanned downtime, improves reliability, and optimizes maintenance costs.
  3. Advanced Motor Control and Optimization: Emerging electric motor technologies focus on advanced motor control techniques and optimization algorithms. These advancements allow for precise control of motor performance, adapting to changing load conditions, and optimizing energy efficiency. Additionally, sophisticated control algorithms enable motor systems to operate in coordination with other equipment, such as variable speed drives, power electronics, and energy storage systems, resulting in improved overall system efficiency.
  4. Energy Harvesting and Regenerative Features: Electric motors can harness energy through regenerative braking and energy harvesting techniques. Regenerative braking allows motors to recover and convert kinetic energy into electrical energy, which can be fed back into the system or stored for later use. Energy harvesting technologies, such as piezoelectric or electromagnetic systems, can capture ambient energy and convert it into usable electrical energy. These features enhance energy efficiency and reduce overall power consumption.
  5. Integration with Artificial Intelligence (AI) and Machine Learning (ML): The integration of electric motors with AI and ML technologies enables advanced motor control, optimization, and decision-making capabilities. AI and ML algorithms analyze motor performance data, identify patterns, and make real-time adjustments to optimize efficiency and performance. The combination of AI/ML with electric motors opens up possibilities for autonomous motor control, adaptive energy management, and intelligent fault detection.
  6. Miniaturization and Lightweight Design: Emerging trends in electric motor technology focus on miniaturization and lightweight design without compromising performance. This trend is particularly relevant for portable devices, electric vehicles, and aerospace applications. Advancements in materials, manufacturing processes, and motor design allow for smaller, lighter, and more powerful motors, enabling greater mobility, improved efficiency, and increased power density.

The integration of smart features in electric motor technology is driving advancements in connectivity, data analytics, predictive maintenance, advanced control, energy harvesting, AI/ML integration, and miniaturization. These trends are revolutionizing the capabilities and functionality of electric motors, making them more intelligent, efficient, and adaptable to various applications. As technology continues to evolve, electric motors are expected to play a crucial role in the ongoing transition towards smart and sustainable industries.

electric motor

What is an electric motor and how does it function?

An electric motor is a device that converts electrical energy into mechanical energy. It is a common type of motor used in various applications, ranging from household appliances to industrial machinery. Electric motors operate based on the principle of electromagnetism and utilize the interaction between magnetic fields and electric current to generate rotational motion. Here’s a detailed explanation of how an electric motor functions:

  1. Basic Components: An electric motor consists of several key components. These include a stationary part called the stator, which typically contains one or more coils of wire wrapped around a core, and a rotating part called the rotor, which is connected to an output shaft. The stator and the rotor are often made of magnetic materials.
  2. Electromagnetic Fields: The stator is supplied with an electric current, which creates a magnetic field around the coils. This magnetic field is typically generated by the flow of direct current (DC) or alternating current (AC) through the coils. The rotor, on the other hand, may have permanent magnets or electromagnets that produce their own magnetic fields.
  3. Magnetic Interactions: When an electric current flows through the coils in the stator, it generates a magnetic field. The interaction between the magnetic fields of the stator and the rotor causes a rotational force or torque to be exerted on the rotor. The direction of the current and the arrangement of the magnetic fields determine the direction of the rotational motion.
  4. Electromagnetic Induction: In some types of electric motors, such as induction motors, electromagnetic induction plays a significant role. When alternating current is supplied to the stator, it creates a changing magnetic field that induces voltage in the rotor. This induced voltage generates a current in the rotor, which in turn produces a magnetic field that interacts with the stator’s magnetic field, resulting in rotation.
  5. Commutation: In motors that use direct current (DC), such as brushed DC motors, an additional component called a commutator is employed. The commutator helps to reverse the direction of the current in the rotor’s electromagnets as the rotor rotates. By periodically reversing the current, the commutator ensures that the magnetic fields of the rotor and the stator are always properly aligned, resulting in continuous rotation.
  6. Output Shaft: The rotational motion generated by the interaction of the magnetic fields is transferred to the output shaft of the motor. The output shaft is connected to the load, such as a fan blade or a conveyor belt, allowing the mechanical energy produced by the motor to be utilized for various applications.

In summary, an electric motor converts electrical energy into mechanical energy through the interaction of magnetic fields and electric current. By supplying an electric current to the stator, a magnetic field is created, which interacts with the magnetic field of the rotor, causing rotational motion. The type of motor and the arrangement of its components determine the specific operation and characteristics of the motor. Electric motors are widely used in numerous devices and systems, providing efficient and reliable mechanical power for a wide range of applications.

China Custom Premium Efficiency AC Electric Induction Small Electric Motors Electric Motor 20kw   vacuum pump oil near me		China Custom Premium Efficiency AC Electric Induction Small Electric Motors Electric Motor 20kw   vacuum pump oil near me
editor by CX 2024-04-09

China Standard 3 phase industry IE2 380V ac electric motor air compressor asynchronous motors with Hot selling

Warranty: 3months-1year, 1 Year
Model Number: 200L2-2-55KW
Type: Asynchronous Motor
Frequency: 50Hz/60Hz
Phase: Three-phase
Protect Feature: Totally Enclosed
AC Voltage: 380V
Efficiency: IE 2
Product Name: Electric Motor
Power: 55kw ac motor
Rated Voltage: 220/380V 230/440V 380/660V 400/690V
Current: 102.6A
Protection class: IP54/IP55
Speed: 2950rpm
Rated Torque: 2.3nm
Service factor: 1.2
Application: use for screw air compressor
Certification: CCC, ce, RoHS
Packaging Details: Plywood carton or pallet

3 phase industry IE2 380V ac electric motor air compressor asynchronous motors

Air compressor motor Information

Power
55KW ac motor

Protection class
IP54/IP55

Description
3 phase motors

Capacity
9.2m3/min

Pressure
8 bar/116psi

Brand
Airstone(Customized logo is avaliable)

Warranty
1 Years

1.Accept customize airend service, using CZPT or CZPT airend(no vabiration, no noise,large rotor,low speed,direct connection, large gas production.)
2.Adopt the latest standard: GB186~13 0571 88828 13858117778-2012 small and medium asynchronous motor energy efficiency limit value and energy efficiency grade.Energy efficiency rating IE2/IE3, protection class IP23/IP54/IP55, service factor 1.2,insulation class F,speed 2960r/min.
3.Direct drive compressor adopt high-precision flexible coupling, transmission ratio 1:1, low energy consumption and high efficiency.
4.Stainless steel tubing and air tube, high temperature resistance(400℃=725°F),low temperature, resistance(-200℃=518°F), high pressure resistance=long life(80 years), no leakage maintenance-free compliance with CE, IOS9001 and energy-saving certification. Long-term work,stable displacement and pressure, no collision, no failure rate.

The application range 3 phase motors of screw air compressor is very wide: heavy,light industry, mining, hydropower, seaport, engineering construction, oil and gas fields, railways, transportation, shipbuilding, energy, military industry and other industries.

HangZhou Xihu (West Lake) Dis. Mechanical Equipment Co., Ltd. is located in B district of lianhua industrial park, HangZhou city, ZheJiang province. The company was founded in May 2018, covers an area of more than 150 acres, and has a factory building of more than 6,000 square meters. The company has more than 300 fixed employees, more than 50 skilled workers, and more than 40 sets of large-scale production equipment.The company has a complete equipment production system. In order to strengthen the integration of the industry, the company passed the ISO9001:2008 international quality management system verification at the end of 2018. After the company’s unity, positive and facing fierce market competition, the company is relying on its own advantages to integrate external resources, optimize pioneering and innovation, and move forward in the direction of diversified business and diversified operations. The company is mainly engaged in the production of screw air compressors and spare parts. The main products are fix speed screw air compressor,variable frequency speed screw air compressor, permanent magnet variable frequency speed screw air compressor and two-stage screw air compressor. At the end of 2018, the company joined forces with famous school designers to develop integrated screw compressors. The pressure range is 0.4mpa-1.6mpa and the power is 4kw-315kw. It can be customized to meet the requirements of different climate buyers in different countries.

Neutral packing & original Packing & our packing are available for the 55KW electric motor.

Q1. How about the package for this 3 phase motors?A: Generally, we pack our goods in neutral wooden case. If you have legally registered patent, we can pack the goods in your branded boxes after getting your authorization letters.
Q2. What is your terms of payment?A: 100%T/T in advance, L/C, Paypal before delivery. We’ll show you the photos of the products and packages before you pay the balance.
Q3. What is your terms of the ac motor delivery?A: EXW, FOB, CFR, CIF, DDU are available.
Q4. How about your delivery time for this electric motor?A: Generally, it will take 7 to 15 working days after receiving your advance payment. The specific delivery time depends on the items and the quantity of your order.
Q5. Can you produce the 3 phase motors according to the samples?A: Yes, we can produce by your samples or technical drawings. We can build the molds and fixtures.
Q6. What is your sample policy?A: We can supply the ac motor sample if we have ready parts in stock, but the customers have to pay the sample cost and the courier cost.
Q7. Do you test all your electric motor before delivery?A: Yes, we have 100% test before delivery, don’t worry about the 3 phase motors quality.
Q8: How do you make our business long-term and good relationship?A:1. We keep good quality and competitive price to ensure our customers benefit; 2. We respect every customer as our friend and we sincerely do business and make friends with them, no matter where they come from.

How to Maximize Gear Motor Reliability

A gearmotor is a mechanical device used to transmit torque from one location to another. As its name implies, it is designed to rotate one object relative to another. Its main use is to transmit torque from one point to another. The most common types of gear motors are: worm, spur, and helical. Each of these has specific functions and can be used for a variety of applications. Reliability is also an important factor to consider when choosing a gearmotor.

Applications of a gear motor

Despite its small size, a gear motor has many applications. These include heavy machinery lifts, hospital beds, and power recliners. It is also found in many everyday products, such as electromechanical clocks and cake mixers. Its versatility allows it to produce a high force from a small electric motor. Here are some of its most common uses. You can also find a gear motor in many household appliances and vehicles.
Before selecting a gearmotor, consider the specifications of the machine you need to power. You should consider its size, weight, and ambient conditions, which include temperature regimes, noise levels, and contaminating sources. You should also take into account the envelope size, mounting method, and orientation. Other considerations include the expected service life, maintenance scope, and control type. The most suitable gearmotor for your specific application will be one that can handle the load.
The motor and gearbox types can be mixed and matched, depending on the application. A three-phase asynchronous motor and a permanent magnet synchronous servomotor are common choices for these devices. The type of motor and gearbox combination you choose will determine the power supply, the efficiency of the motor, and cost. Once you understand the application, it will be easy to integrate a gear motor into your system.
When used in industrial applications, gear motors are effective for reducing the speed of rotating shafts. One third of all industrial electric motor systems use gearing to reduce output speed. They can also save energy, which benefits the workers who operate them. In fact, industrial electric motor systems are responsible for nearly one-tenth of the carbon dioxide emissions that are produced by fossil-fueled power plants. Fortunately, efficiency and reliability are just two of the benefits of using gear motors.
Motor

Types

Before choosing a gearmotor, it is important to understand its specifications. The key factors to consider are the size, weight, and noise level of the gearmotor. Additionally, the power, torque, and speed of the motor are important factors. Specifications are also important for its operating environment, such as the temperature and the level of ingress protection. Finally, it is important to determine its duty cycle to ensure it will operate properly. To choose a suitable gearmotor, consult the specifications of your application.
Some common applications of gearmotors include packaging equipment, conveyors, and material handling applications. They also come with several advantages, including their ability to control both position and speed. This makes them ideal for applications where speed and positioning are crucial. Parallel-shaft gear units, for instance, are commonly used in conveyors, material handling, and steel mills. They are also able to operate in high-precision manufacturing. For these reasons, they are the most popular type of gearmotor.
There are three common types of gears. Helical gears have teeth that are inclined at 90 degrees to the axis of rotation, making them more efficient. Helicoidal gears, meanwhile, have a lower noise level and are therefore preferred for applications requiring high torque. Worm gears are preferred for applications where torque and speed reduction are important, and worm gears are suited for those conditions. They also have advantages over spur gears and worm gears.
The application of a gear motor is almost limitless. From heavy machine lifts to hospital bed lifting mechanisms, gear motors make it possible to use a small rotor at a high speed. Their lightweight construction also allows them to move heavy loads, such as cranes, but they do so slowly. Gear motors are an excellent choice in applications where space is an issue. A few common applications are discussed below. When choosing a gear motor, remember to choose the best size and application for your needs.
Motor

Functions

A gearmotor’s speed is directly proportional to the gear ratio. By dividing the input speed by the gear ratio, the output speed can be determined. Gear ratios above one reduce speed, while gear ratios below one increase speed. Efficiency of a gearmotor is defined as its ability to transfer energy through its gearbox. This efficiency factor takes into account losses from friction and slippage. Most gearmotor manufacturers will provide this curve upon request.
There are several factors that must be considered when choosing a gearmotor. First, the application must meet the desired speed and torque. Second, the output shaft must rotate in the desired direction. Third, the load must be properly matched to the gearmotor. Lastly, the operating environment must be considered, including the ambient temperature and the level of protection. These details will help you find the perfect gearmotor. You can compare various types of gear motors on this page and choose the one that will meet your needs.
The micro-DC gear motor is one of the most versatile types of geared motors. These motors are widely used in intelligent automobiles, robotics, logistics, and the smart city. Other applications include precision instruments, personal care tools, and cameras. They are also commonly found in high-end automotives and are used in smart cities. They also find use in many fields including outdoor adventure equipment, photography equipment, and electronics. The benefits of micro-DC gear motors are many.
The main function of a gear motor is to reduce the speed of a rotating shaft. Small electric clocks, for example, use a synchronous motor with a 1,200-rpm output speed to drive the hour, minute, and second hands. While the motor is small, the force it exerts is enormous, so it’s crucial to ensure that the motor isn’t over-powered. There is a high ratio between the input torque and the output torque.

Reliability

The reliability of a gear motor is dependent on a number of factors, including material quality, machining accuracy, and operating conditions. Gear failure is often more serious than surface fatigue, and can compromise personal safety. Reliability is also affected by the conditions of installation, assembly, and usage. The following sections provide an overview of some important factors that impact gear motor reliability. This article provides some tips to maximize gear motor reliability.
First and foremost, make sure you’re buying from a reliable supplier. Gear motors are expensive, and there is no standardization of the sizes. If a gear breaks, replacing it can take a lot of time. In the long run, reliability wins over anything. But this doesn’t mean that you can ignore the importance of gears – the quality of a gear motor is more important than how long it lasts.
Motor

Cost

The cost of a gear motor is relatively low compared to that of other forms of electric motors. This type of motor is commonly used in money counters, printers, smart homes, and automation equipment. A DC gear motor is also commonly used in automatic window machines, glass curtain walls, and banknote vending machines. There are many advantages to using a gear motor. Here are a few of them. Read on to learn more about them.
Speed management is another benefit of a gear motor. The motors tend to have less wear and tear than other motors, which means less frequent replacements. Additionally, many gear motors are easy to install and require less maintenance, which also helps reduce the overall cost of ownership. Lastly, because noise is a common concern for many electronic OEMs, DC gear motors are often quieter than their counterparts. For these reasons, they are often used in industrial settings.
Another advantage of an electric gear motor is its size and power. They are typically designed for 12V, 24V, and 48V voltages and 200-watt power. Their rated speed is 3000 rpm and their torque is 0.64 Nm. They are also more reliable than their AC counterparts and are ideal for many industrial applications. They have a high ratio of three to two, which makes them ideal for a variety of applications.
A gear motor is an electric motor that is coupled with a gear train. It uses AC or DC power, and is often called a gear reducer. The main purpose of these gear reducers is to multiply torque, while maintaining compact size and overall efficiency. However, the efficiency of a gear motor is also affected by ambient temperature and lubricants. If the gear motor is installed in the wrong location, it may be ineffective and result in premature failure of the machine.

China Standard 3 phase industry IE2 380V ac electric motor air compressor asynchronous motors  with Hot sellingChina Standard 3 phase industry IE2 380V ac electric motor air compressor asynchronous motors  with Hot selling

China best CZPT Motor Three Phase AC Electric Induction Motors near me factory

Solution Description

 Super-substantial Efficiency Frequency Variable Velocity Regulation Motor
———————————————————————————————

Programs
Extensively used in metallurgy, chemistry, textile, pharmacy, printing, packing and food market on the device or tools by which adjustable pace is essential, like enthusiast, pump, numerical handle machine, machining centre, and many others.

General Description

  • Frame sizes: eighty to 355    
  • Rated output: .18 to 375kW          
  • Insulation course: F            
  • Voltage: 380V
  • Performance levels: IE1 / IE2 / IE3
  • Frequency assortment for 2P: (3) 5-100Hz (body measurement eighty-250)
  •                                         (3) 5-70Hz (frame measurement 280)
                                            (3) 5-60Hz (frame measurement 315-355)
  • Frequency range for 4, 6, 8, 10P: (3) 5-100Hz

Attributes: 

*Stepless velocity regulation in a wide range
*Good performance, energy conserving
*Large-grade insulation materials and specific technological can face up to high frequency pulse effect
*Separated fan for compelled-ventilation
*Divided supporter for forced-ventilation

Optional Functions:
Electrical:
Insulation Course:H
Thermal Security: PTC Thermistor, Thermostat or PT100
Mechanical:
Other folks mountings
Security Degree:IP55, IP56, IP65
Sealing:Lip seal, Oil seal 
Place Heater
Drain Gap

Product Output
kW
Rated Ampere A RPM Eff.% Electricity Issue Rated Torque
N.m
dB(A) Constant Torque Frequency Assortment
Hz
Continuous Output 
Frequency Range
Hz
Synchronous speed  3000r/min
YE3VF80M1-2 .75 1.seven 2855 80.7 .eighty three 2.fifty one 70 five-50 fifty-one hundred
YE3VF80M2-2 one.1 two.four 2870 eighty two.seven .83 3.66 70
YE3VF90S-two one.five three.two 2865 eighty four.two .eighty four 5.00 74
YE3VF90L-two two.2 4.6 2870 eighty five.nine .eighty five seven.32 74
YE3VF100L-2 3 six. 2875 87.1 .87 nine.ninety seven seventy eight
YE3VF112M-two 4 seven.8 2910 88.one .88 13.1 82
YE3VF132S1-2 five.5 10.6 2935 89.2 .88 17.nine eighty five
YE3VF132S2-two seven.5 fourteen.4 2930 90.1 .88 24.four eighty five
YE3VF160M1-2 11 20.6 2950 91.2 .89 35.six 87
YE3VF160M2-two fifteen 27.nine 2945 ninety one.9 .89 forty eight.six 87
YE3VF160L-2 18.five 34.2 2945 92.4 .89 60. 87
YE3VF180M-2 22 40.five 2950 92.seven .89 seventy one.2 ninety
YE3VF200L1-two thirty 54.nine 2960 ninety three.3 .89 96.eight ninety two
YE3VF200L2-two 37 sixty seven.4 2960 ninety three.seven .89 119 92
YE3VF225M-two 45 eighty.eight 2965 94. .ninety a hundred forty five ninety four
YE3VF250M-2 55 ninety eight.5 2970 ninety four.three .ninety 177 ninety six 5-fifty 50-70
YE3VF280S-two 75 134 2975 94.seven .ninety 241 98
YE3VF280M-2 ninety a hundred and sixty 2970 ninety five. .ninety 289 98

Requirements of CZPT blower and brake for the motor

Motor Frame 80 ninety 100 112 132 a hundred and sixty a hundred and eighty two hundred 225 250 280 315 355
Cooling Fan (W)
Power
thirty 42 52 55 fifty five eighty 80 a hundred and fifty two hundred 230 320 700 700
(A)
Existing
.09 .sixteen .18 .18 .19 .26 .30 .6 .six .six one.1 1.8 1.9
Voltage Common 380V, but blower of other voltage can be custom-made depending on user’s requirement.
Encoder Optional Incremental Encoder

Mounting Kind:
Traditional mounting kind and suited body dimensions are offered in subsequent desk(with “√”)

Frame basic kind derived kind
 
B3 B5 B35 V1 V3 V5 V6 B6 B7 B8 V15 V36 B14 B34 V18
eighty~112
132~160
a hundred and eighty~280
315~355

If there is no other ask for in the purchase or agreement, terminal box regular place is at the appropriate aspect of the frame data over might be altered CZPT prior discover.
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Present Area

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Certificates

Top quality Manage

Wannan Motor Manufacturing Workshop and Circulation Chart

Hundreds of Certificates, Honors and far more Firm info remember to go to “ABOUT US”
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WANNAN MOTOR     INDUSTRIAL Options
 

Two types of AC motors consist of: Synchronous: The truth that a synchronous motor rotates at the same price as the frequency of the mains present gives the motor its name. A synchronous motor consists of a stator and a rotor. Synchronous motors have a extensive variety of apps. Induction: Induction motors are the most basic and strongest motors obtainable. These AC motors consist of two electrical factors: a wound stator and rotor assembly. The current needed to turn the rotor is created by the electromagnetic induction created by the stator windings. Induction motors are 1 of the most commonly utilised varieties of motors in the entire world.
AC motors are also various from DC motors since most AC motors do not consist of brushes. This implies that servicing and components substitution demands for AC motors tend to be considerably diminished, with most users usually anticipating a lengthier regular lifespan. As opposed to DC motors, the output speed of several varieties of AC motors is usually decided by inverter control – once again, we are going to briefly outline a selection of possible versions on the basic AC motor product.

China best CZPT Motor Three Phase AC Electric Induction Motors     near me factory

China OEM New High Quality Yg Series Squirrel Cage Cast Iron Copper Coil Roller Three-Phase Electric Motors AC Induction Electrical Motor near me manufacturer

Merchandise Description

Specification:

YG Sequence Roller A few Period Induction Motor

Normal: IEC60034
Frame Dimensions: H80-H355
Rated Voltage: 380V
Rated Frequency: 60HZ
Effectiveness Course: IE3
Insulation Class: F,H
Safety Course: IP54
Cooling Technique: IC411
Ambient Temperature: -15°C-+80ºC
Responsibility: YGa(S5+forty%), YGb(S1)


Revenue provider:

Hengli Motor:
1. Be a revenue team, with all technological help from engineer team.
two. Benefit each inquiry sent to us, make certain swift competitive supply inside 24 hrs.
three. Cooperate with client to design and produce the new goods. Offer all essential doc.

four. Respect your feed again right after obtain the motors.
five. Offer 1-2 years warranty soon after receipt of motors..
six. Guarantee all spare areas accessible in life span use.
7. Loge your complain inside 24 hrs.

 

Polyphase motors can be both two-phase or 3-period motors. They function like solitary-stage induction motors, but each one-phase and polyphase motors run on a rotating magnetic field. Their rotating magnetic fields are generated by two- or three-period currents passing via two or far more sets of coils. The rotating magnetic subject produces torque. Polyphase motors are employed in apps that demand large electrical power, these kinds of as the power push of compressors, hydraulic pumps, air conditioning compressors, and irrigation pumps.
Synchronous motors run at a velocity that is synchronous with the frequency of the mains recent. This means that in the constant-state of the motor, the rotation of the shaft is synchronized with the frequency of the source existing. The period of time of rotation of the shaft is equivalent to the quantity of AC cycles. The stator of a synchronous motor has polyphase AC electromagnets. These electromagnets make a magnetic field that rotates in synchrony with the present in the wire. The rotor geared up with long lasting magnets or electromagnets rotates synchronously with the stator magnetic area to form the 2nd synchronous rotating magnetic subject of the AC motor.

China OEM New High Quality Yg Series Squirrel Cage Cast Iron Copper Coil Roller Three-Phase Electric Motors AC Induction Electrical Motor     near me manufacturer

China Good quality 0.2~4kw Fs60~90 AC Electric Servo Motors near me shop

Item Description

Item qualities
   Ultra-large intrinsic coercivity, high temperature exceptional earth permanent,magnet materials, sturdy resistance to CZPT vitality.Utilizing electromagnetic layout optimization, aimost with the whole speed,variety continuous torque output,Sinusoidal CZPT field layout, smooth low-speed torque large overload, ability,Class F insulation, IP55 defense composition, environmental applicability, safe and dependable use.

Specialized Data

 

  Frame measurement 60ST-L00630A 60ST-L01330A 60ST-L01930A 80ST-L01330A 80ST-L57130A 80ST-L03330A 90ST-L57130A 90ST-L5710A 90ST-L 0571 1A
Rated Voltage(3 phase) 220V 220V 220V 220V 220V 220V 220V 220V 220V
Rated Electricity(kw) .2 .four .six .four .seventy five one .75 .seventy five one
Rated Torque(N.m) .6 1.3 1.9 1.three two.four three.3 two.4 three.5 four
Max Torque(N.m) 1.911 three.eight 5.73 three.9 seven.two 9.nine 7.two 10.five 12
Rated Pace(r/min) 3000 3000 3000 3000 3000 3000 3000 2000 3000
Rated current(A) one.5 2.eight 3.5 two.6 four.two 4.five three three 4
 contrary possible(V/Krpm) 28 28 28 21.05 22.77 29.27 51 sixty seven 60
Phase Resistance(Ω) 11.6 five.eighty three three.49 1.858 .901 one.081 three.two four.06 two.sixty nine
Phase Inductance(mH) 22 12.23 8.47 eleven.956 six.552 eight.29 seven 9.7 six.21
LA(mm) 106 131 154 one hundred thirty five 160 181 152 a hundred seventy five 185

 

Our Factory

For additional informations,pls go to our internet website page CZPT be reluctant!

Speak to Information:

Evan Zhou

 

hongma

Induction motors, also known as asynchronous motors, use the electromagnetic induction produced by the magnetic subject of the stator to create existing in the rotor, thus making torque. These motors do not run at a pace in sync with the present, hence the identify. They use the phenomenon of electromagnetic induction to transform electrical vitality into mechanical energy. Induction motor rotors are the most frequent sort of AC motor identified in pumps, compressors, and other devices of all types.
An AC motor is a kind of motor that utilizes the phenomenon of electromagnetic induction. AC electricity drives the motor. It is a present that periodically reverses course and alterations its magnitude of the recent over time. This current is the opposite of a immediate existing or “DC” which flows in only 1 path. AC motors can give a reasonably productive way to generate mechanical vitality from a easy electrical input signal.

China Good quality 0.2~4kw Fs60~90 AC Electrical Servo Motors     near me store

China manufacturer AC Motor 220-240V 25W Ydk95-25-4 Electric Motors with Hot selling

Solution Description

 

Motor High quality & Reliability
We CZPT good quality as a philosophy to live by.
 
An universal QM system with the newest measuring and tests approaches ensures high quality.
 
We guarantee good quality and reliability of your HUND with one hundred% closing inspection.

25W  YDK95-25-4 parameters:

Product Package deal Deal
Unit web fat
Package deal Unit gross fat Pallet Each pallet Volume
YDK95-25-four ten sets/carton fifteen.2kg/carton 16kg/carton two hundred sets/pallet 1100x960x960mm

 

packing and shipment:

 
 
 
 
our related product:

Sophisticated A single-End Getting Provider. Welcome !
 
Contact:
Aimee Chen
HangZhou CZPT CZPT Gear Co.,Ltd
Include:No.91 Xihu (West Lake) Dis. Highway, New District, HangZhou, ZheJiang , China.
 

 
 
 
  

  
  

An AC motor is a variety of motor that utilizes the phenomenon of electromagnetic induction. AC electricity drives the motor. It is a current that periodically reverses route and adjustments its magnitude of the recent in excess of time. This current is the opposite of a immediate existing or “DC” which flows in only a single route. AC motors can provide a comparatively effective way to make mechanical energy from a straightforward electrical input sign.
AC motors and gear motors consist of one-section motors for single-period AC electrical power and 3-phase motors for 3-stage AC energy. A single-section motor just needs to be linked to a solitary-section energy provide by means of the incorporated capacitors to operate. 3-phase motors do not call for capacitors. You simply link the motor directly to the three-stage AC energy supply. Dongfang Electrical delivers a wide range of AC motors and equipment motors Consistent or variable speed AC motors are available with one or a few-period equipment and electromagnetic braking options

China manufacturer AC Motor 220-240V 25W Ydk95-25-4 Electric Motors     with Hot selling

China supplier Yc Series Capatior Start Single Phase 2HP 220V AC Electric Motors with Best Sales

Solution Description

Solution Description

Features: YC sequence Solitary Period Capacitor Begin AC Electric powered Motors / asynchronous motor personal Large start torque, outstanding operating functionality, minor form, light fat, lower sound and effortless maintenance.
Utilization variety: YC Series One Section Capacitor Start off Asynchronous Motor is suitable for air compressor, pump and other gear of substantial start off torque.

Protection Class: IP44/IP54/IP55 CZPT Variety: IC0141
Insulation Class: B or F Operation Kind: S1
Rated Voltage: one hundred fifteen/230, 220V Rated Frequency: sixty Hz(50Hz)
Body content: Solid iron, cast aluminum and aluminium alloy (only utilised under 100)

 

Variety Power   KW HORSEPOWER   HP VOLTAGE   V Present   A FREQUENCY   HZ Velocity   R/MIN Performance   % POWER  FACTOR   Cos
YC711-two .eighteen .twenty five 220 1.89 50 2800 sixty .72
YC712-two .25 .33 220 two.4 50 2800 sixty four .seventy four
YC801-2 .37 .five 220 three.11 50 2800 65 .seventy seven
YC802-2 .fifty five .75 220 four.65 fifty 2800 68 .79
YC90S-2 .seventy five one 220 6.09 fifty 2800 70 .8
YC90L-2 one.1 one.5 220 8.sixty eight fifty 2800 72 .eight
YC100L1-two 1.5 two 220 eleven.38 fifty 2820 74 .eighty one
YC100L2-2 two.2 3 220 16.forty six 50 2820 75 .81
YC112M-2 3 four 220 21.88 50 2840 76 .82
YC132S-two 3.seven five.five 220 26.64 fifty 2840 77 .eighty two
YC711-4 .twelve .16 220 1.88 50 1400 fifty .58
YC712-four .eighteen .25 220 two.forty nine 50 1400 fifty three .sixty two
YC801-4 .twenty five .33 220 3.eleven 50 1400 fifty eight .63
YC802-four .37 .5 220 four.24 fifty 1400 sixty two .64
YC90S-4 .55 .75 220 five.49 50 1400 66 .sixty nine
YC90L-four .seventy five one 220 six.87 50 1400 sixty eight .73
YC100L1-4 one.1 1.5 220 nine.fifty two 50 1420 seventy one .74
YC100L2-4 1.five two 220 12.forty five fifty 1420 73 .seventy five
YC112M-4 2.two three 220 17.78 fifty 1420 74 .seventy six
YC132S-four three 4 220 23.sixty one fifty 1440 seventy five .77
YC132M-four three.7 five.five 220 28 50 1400 76 .seventy nine

 

WHY Choose US 

WHAT WE DO Within CZPT Business 

  • Stamping of lamination
  • Rotor die-casting
  • Winding and inserting – the two guide and semi-automatically
  • Vacuum varnishing
  • Machining shaft, housing, finish shields, and many others
  • Rotor balancing
  • Portray – each damp paint and powder coating
  • Motor assembly
  • Packing
  • Inspecting spare parts each and every processing 1 by 1
  • one hundred% check after every single procedure and last take a look at just before packing. 

 WHAT CZPT CAN DO FOR Customers

  • We supply standard merchandise to consumers.
  • We provide normal goods under customers’ brand names and packaging, and so on
  • We have our own R&D departmen cant develop new items in accordance to customers’requirements.

OUR Factory Capability

  • Proven:1985
  • Total : workshop, CZPT and office all developing belongs to ourselves.
  • Employees: All with far more than 8 a long time expertise,and some with far more than 30years.experience.
  • Engineers: 5  work in R&D and 6  in manufacturing facility manufacturing
  • Principal marketplace: Europe,Australia,South&North The usa,Africa,Asia,Latin..
  • Manufacturing certification: Motors has been certificated in accordance to ISO9001, TUV,  CE,  CCC,Our items are produced in accordance to RoHS and IEC standard.

These NEMA c-plane reducers are gear strength, upkeep-totally free, and can be installed in any orientation with a slip in shape “O” ring design and style. Available in lower to large reduction ratios, flange mount or foundation mount designs, right angle or hollow shaft right angle versions. Put in NEMA C-Confront AC motors, brushless DC motors, and brushed DC motors. For 1/2 HP to 3 HP Motors NEMA 56C, 140TC, and 180TC Input Flange Inline Helical Equipment Reducers Correct Angle Hypoid Gear Reducers
Polyphase motors can be possibly two-period or three-phase motors. They work like one-section induction motors, but both solitary-period and polyphase motors work on a rotating magnetic field. Their rotating magnetic fields are produced by two- or a few-section currents passing by way of two or far more sets of coils. The rotating magnetic subject produces torque. Polyphase motors are utilized in apps that call for large electricity, such as the power travel of compressors, hydraulic pumps, air conditioning compressors, and irrigation pumps.

China supplier Yc Series Capatior Start Single Phase 2HP 220V AC Electric Motors     with Best Sales

China supplier Yl 110/220V AC Single Phase Electric Motors Yl Series Single-Phase Two-Value Capacitor Motor wholesaler

Merchandise Description

YL 110/220V AC One Stage Electric powered Motors yl collection solitary-period two-worth capacitor motor

Prosperous Circumstance Apps

one. Provider of CNPC and SINOPEC

two. Provide electrical merchandise and motor handle program remedies for 30 000 enterprises

Professional Power Develop a initial-course experimental products and equipped with the world’s prime testing products
Scientific Generation

one. Implement ERP and CZPT method

two. Meet client need for merchandise customization.

Complete strength

one. Focus in manufacturing electric powered motor with much more than forty several years.

2.Have sixty eight countrywide patents and participated in the development of 16 national and market requirements.

Ambient temperature

-15ºC≤ ≤ 40ºC

Altitude

Not exceeding 1000 meters

Rated voltage

220V ± 5%

Rated frequency

50HZ

Duty/Score

Steady managing

Insulation class

Class B/F

Protection course

IP44/IP54

Cooling type

Ic0141

One-section motors have a stator. They do not have the rotating magnetic field attributes of polyphase or polyphase motors. The magnetic subject produced by the stator windings is pulsating, not rotating. When the rotor is stationary, the expansion and contraction of the stator’s magnetic area generate an electrical existing in the rotor. The recent generates the rotor magnetic discipline with the reverse polarity to the stator magnetic field. The opposite polarity applies rotational force to the higher and reduced elements of the rotor. Considering that this pressure passes through the heart of the rotor, it continues to be equivalent in each course, trying to keep the rotor stationary. If the rotor starts to switch, it continues to change in the path it started, due to the fact the rotor’s momentum produces a rotational drive in that path. Solitary-stage motors are used in minimal-electrical power programs this sort of as ceiling supporters, mixer grinders, and home appliances such as transportable electricity resources.
AC motors and gear motors include solitary-phase motors for single-phase AC electricity and 3-stage motors for 3-section AC electrical power. A solitary-phase motor simply wants to be linked to a single-period power source by means of the included capacitors to work. 3-period motors do not demand capacitors. You just link the motor right to the a few-period AC power source. Dongfang Electric delivers a wide selection of AC motors and gear motors Consistent or variable speed AC motors are offered with one or a few-phase gear and electromagnetic braking possibilities

China supplier Yl 110/220V AC Single Phase Electric Motors Yl Series Single-Phase Two-Value Capacitor Motor     wholesaler