Product Description
Permanent Split Capacitor Motor, Frame 3.3″, 2P&4P, UL certificated, reliable, low noise, over load protected, high efficiency, with various frame size and poles. Can develop motor per customer requirements.
Type | Series | Frame | Voltage | Current | Power | RPM |
Capacitor Start (3.3″,2P) | HYC82-38-2 0012 | 82.4mm | 115V | 0.65A | 38W | 3000RPM |
Capacitor Start (3.3″,2P) | HYC82-84-2 5007 | 82.4mm | 230V | 0.8A | 94W | 3200RPM |
Capacitor Start (3.3″,2P) | HYC82-187-2 0003 | 82.4mm | 115V | 2.5A | 187W | 3200RPM |
Capacitor Start (3.3″,2P) | HYC82-38-2 5001 | 82.4mm | 230V | 0.34A | 38W | 3000RPM |
Capacitor Start (3.3″,2P) | HYC82-63-4 0005 | 82.4mm | 115V | 1.2A | 63W | 3000RPM |
Capacitor Start (3.3″,2P) | HYC82-30-2 5005 | 82.4mm | 230V | 0.24A | 30W | 3300ROM |
Capacitor Start (3.3″,2P) | HYC82-38-2 9001 | 82.4mm | 115/230V | 0.52/0.26A | 38W | 3270RPM |
Capacitor Start (3.3″,4P) | HYC82-63-4 5006 | 82.4mm | 230V | 0.65A | 63W | 1550RPM |
Capacitor Start (3.3″,4P) | HYC82-25-4 5004 | 82.4mm | 230V | 0.38A | 25W | 1550RPM |
Capacitor Start (3.3″,4P) | HYC82-15-4 0003 | 82.4mm | 115V | 0.32A | 15W | 1550RPM |
Capacitor Start (3.3″,4P) | HYC82-94-4 0006 | 82.4mm | 115V | 2.1A | 94W | 1550RPM |
Capacitor Start (3.3″,4P) | HYC82-125-4 0008 | 82.4mm | 115V | 2.5A | 125W | 1550RPM |
Capacitor Start (3.3″,4P) | HYC82-63-4 9001 | 82.4mm | 115/230V | 1.1/0.6A | 63W | 1550RPM |
Capacitor Start (3.3″,4P) | HYC82-10-4 0001 | 82.4mm | 115V | 0.2A | 10W | 1550RPM |
Capacitor Start (3.3″,4P) | HYC82-5-4 0001 | 82.4mm | 115V | 0.15A | 5W | 1550RPM |
Capacitor Start (3.3″,4P) | HYC82-50-4 0012 | 82.4mm | 115V | 1.1A | 50W | 1550RPM |
Capacitor Start (3.3″,4P) | HYC82-25-4 0015 | 82.4mm | 115V | 0.7A | 25W | 1550RPM |
Our company FAQ for you
(1) Q: What kind motors you can provide?
A:We mainly provide AC Motor, DC Brushed Motor, Gear Motor, Blower.,
(2) Q: Is it possible to visit your factory
A: Sure. But please kindly keep us posted a few days in advance. We need to check our
schedule to see if we are available then.
(3) Q: Can I get some samples
A: It depends. If only a few samples for personal use or replacement, I am afraid it will
be difficult for us to provide, because all of our motors are custom made and no stock
available if there is no further needs. If just sample testing before the official order and
our MOQ, price and other terms are acceptable, we’d love to provide samples.
(4) Q: Is there a MOQ for your motors?
A: Yes. The MOQ is between 1000~10,000pcs for different models after sample approval.
But it’s also okay for us to accept smaller lots like a few dozens, hundreds or thousands
For the initial 3 orders after sample approval.For samples, there is no MOQ requirement. But the less the better (like no more than 5pcs) on condition that the quantity is enough in case any changes needed after initial testing.
/* 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(/(.*?):(.*)$/))&&1
Application: | Industrial |
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Speed: | Variable Speed |
Number of Stator: | Single-Phase |
Function: | Driving |
Casing Protection: | Protection Type |
Number of Poles: | 2 |
Samples: |
US$ 10/Piece
1 Piece(Min.Order) | |
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Customization: |
Available
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What factors should be considered when selecting an AC motor for a particular application?
When selecting an AC motor for a particular application, several factors need to be considered to ensure the motor meets the requirements and performs optimally. Here are the key factors to consider:
- Power Requirements: Determine the power requirements of the application, including the required torque and speed. The motor should have adequate power output to meet the demands of the specific task. Consider factors such as starting torque, running torque, and speed range to ensure the motor can handle the load effectively.
- Motor Type: There are different types of AC motors, including induction motors, synchronous motors, and brushless DC motors. Each type has its own characteristics and advantages. Consider the application’s requirements and factors such as speed control, efficiency, and starting torque to determine the most suitable motor type.
- Environmental Conditions: Assess the environmental conditions in which the motor will operate. Factors such as temperature, humidity, dust, and vibration levels can impact motor performance and longevity. Choose a motor that is designed to withstand the specific environmental conditions of the application.
- Size and Space Constraints: Consider the available space for motor installation. Ensure that the physical dimensions of the motor, including its length, diameter, and mounting arrangement, are compatible with the available space. Additionally, consider the weight of the motor if it needs to be mounted or transported.
- Efficiency: Energy efficiency is an important consideration, as it can impact operational costs and environmental sustainability. Look for motors with high efficiency ratings, which indicate that they convert electrical energy into mechanical energy with minimal energy loss. Energy-efficient motors can lead to cost savings and reduced environmental impact over the motor’s lifespan.
- Control and Speed Requirements: Determine if the application requires precise speed control or if a fixed speed motor is sufficient. If variable speed control is needed, consider motors that can be easily controlled using variable frequency drives (VFDs) or other speed control mechanisms. For applications that require high-speed operation, select a motor that can achieve the desired speed range.
- Maintenance and Serviceability: Assess the maintenance requirements and serviceability of the motor. Consider factors such as the accessibility of motor components, ease of maintenance, availability of spare parts, and the manufacturer’s reputation for reliability and customer support. A motor that is easy to maintain and service can help minimize downtime and repair costs.
- Budget: Consider the budget constraints for the motor selection. Balance the desired features and performance with the available budget. In some cases, investing in a higher quality, more efficient motor upfront can lead to long-term cost savings due to reduced energy consumption and maintenance requirements.
By carefully considering these factors, it is possible to select an AC motor that aligns with the specific requirements of the application, ensuring optimal performance, efficiency, and reliability.
Can AC motors be used in renewable energy systems, such as wind turbines?
Yes, AC motors can be used in renewable energy systems, including wind turbines. In fact, AC motors are commonly employed in various applications within wind turbines due to their numerous advantages. Here’s a detailed explanation:
1. Generator: In a wind turbine system, the AC motor often functions as a generator. As the wind turbine blades rotate, they drive the rotor of the generator, which converts the mechanical energy of the wind into electrical energy. AC generators are commonly used in wind turbines due to their efficiency, reliability, and compatibility with power grid systems.
2. Variable Speed Control: AC motors offer the advantage of variable speed control, which is crucial for wind turbines. The wind speed is variable, and in order to maximize energy capture, the rotor speed needs to be adjusted accordingly. AC motors, when used as generators, can adjust their rotational speed with the changing wind conditions by modifying the frequency and voltage of the output electrical signal.
3. Efficiency: AC motors are known for their high efficiency, which is an important factor in renewable energy systems. Wind turbines aim to convert as much of the wind energy into electrical energy as possible. AC motors, especially those designed for high efficiency, can help maximize the overall energy conversion efficiency of the wind turbine system.
4. Grid Integration: AC motors are well-suited for grid integration in renewable energy systems. The electrical output from the AC generator can be easily synchronized with the grid frequency and voltage, allowing for seamless integration of the wind turbine system with the existing power grid infrastructure. This facilitates the efficient distribution of the generated electricity to consumers.
5. Control and Monitoring: AC motors offer advanced control and monitoring capabilities, which are essential for wind turbine systems. The electrical parameters, such as voltage, frequency, and power output, can be easily monitored and controlled in AC motor-based generators. This allows for real-time monitoring of the wind turbine performance, fault detection, and optimization of the power generation process.
6. Availability and Standardization: AC motors are widely available in various sizes and power ratings, making them readily accessible for wind turbine applications. They are also well-standardized, ensuring compatibility with other system components and facilitating maintenance, repair, and replacement activities.
It’s worth noting that while AC motors are commonly used in wind turbines, there are other types of generators and motor technologies utilized in specific wind turbine designs, such as permanent magnet synchronous generators (PMSGs) or doubly-fed induction generators (DFIGs). These alternatives offer their own advantages and may be preferred in certain wind turbine configurations.
In summary, AC motors can indeed be used in renewable energy systems, including wind turbines. Their efficiency, variable speed control, grid integration capabilities, and advanced control features make them a suitable choice for converting wind energy into electrical energy in a reliable and efficient manner.
What are the key advantages of using AC motors in industrial applications?
AC motors offer several key advantages that make them highly suitable for industrial applications. Here are some of the main advantages:
- Simple and Robust Design: AC motors, particularly induction motors, have a simple and robust design, making them reliable and easy to maintain. They consist of fewer moving parts compared to other types of motors, which reduces the likelihood of mechanical failure and the need for frequent maintenance.
- Wide Range of Power Ratings: AC motors are available in a wide range of power ratings, from small fractional horsepower motors to large industrial motors with several megawatts of power. This versatility allows for their application in various industrial processes and machinery, catering to different power requirements.
- High Efficiency: AC motors, especially modern designs, offer high levels of efficiency. They convert electrical energy into mechanical energy with minimal energy loss, resulting in cost savings and reduced environmental impact. High efficiency also means less heat generation, contributing to the longevity and reliability of the motor.
- Cost-Effectiveness: AC motors are generally cost-effective compared to other types of motors. Their simple construction and widespread use contribute to economies of scale, making them more affordable for industrial applications. Additionally, AC motors often have lower installation and maintenance costs due to their robust design and ease of operation.
- Flexible Speed Control: AC motors, particularly induction motors, offer various methods for speed control, allowing for precise adjustment of motor speed to meet specific industrial requirements. Speed control mechanisms such as variable frequency drives (VFDs) enable enhanced process control, energy savings, and improved productivity.
- Compatibility with AC Power Grid: AC motors are compatible with the standard AC power grid, which is widely available in industrial settings. This compatibility simplifies the motor installation process and eliminates the need for additional power conversion equipment, reducing complexity and cost.
- Adaptability to Various Environments: AC motors are designed to operate reliably in a wide range of environments. They can withstand variations in temperature, humidity, and dust levels commonly encountered in industrial settings. Additionally, AC motors can be equipped with protective enclosures to provide additional resistance to harsh conditions.
These advantages make AC motors a popular choice for industrial applications across various industries. Their simplicity, reliability, cost-effectiveness, energy efficiency, and speed control capabilities contribute to improved productivity, reduced operational costs, and enhanced process control in industrial settings.
editor by CX 2024-05-15
China Custom ZD Electric Brake / Fan Connection Box Right Angle Hollow Shaft Helical Hypoid AC Induction Gear Motor vacuum pump for ac
Product Description
Model Selection
ZD Leader has a wide range of micro motor production lines in the industry, including DC Motor, AC Motor, Brushless Motor, Planetary Gear Motor, Drum Motor, Planetary Gearbox, RV Reducer and Harmonic Gearbox etc. Through technical innovation and customization, we help you create outstanding application systems and provide flexible solutions for various industrial automation situations.
• Model Selection
Our professional sales representive and technical team will choose the right model and transmission solutions for your usage depend on your specific parameters.
• Drawing Request
If you need more product parameters, catalogues, CAD or 3D drawings, please contact us.
• On Your Need
We can modify standard products or customize them to meet your specific needs.
Product Parameters
Hypoid Gear Motor
MOTOR TYPE | ZDF3 |
OUTPUT POWER | 100W / 200W / 400W / 750W / 1500W / 2200W (Can Be Customized) |
OUTPUT SHAFT | Hollow Shaft / CHINAMFG Shaft |
Voltage type | 3 phase 220V(50/60HZ), 3 phase 380V(50/60HZ) |
Phase | Three-Phase |
Insulation Grade | F stage |
Accessories | Electric Brake / Fan / Connection Box |
Gear Ratio | 5K-240K |
Detailed Images
Other Products
Company Profile
/* 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 |
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Speed: | Constant Speed |
Number of Stator: | Single-Phase |
Function: | Driving, Control |
Casing Protection: | Closed Type |
Number of Poles: | 2 |
Customization: |
Available
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Can gear motors be used in robotics, and if so, what are some notable applications?
Yes, gear motors are widely used in robotics due to their ability to provide torque, precise control, and compact size. They play a crucial role in various robotic applications, enabling the movement, manipulation, and control of robotic systems. Here are some notable applications of gear motors in robotics:
1. Robotic Arm Manipulation:
Gear motors are commonly used in robotic arms to provide precise and controlled movement. They enable the articulation of the arm’s joints, allowing the robot to reach different positions and orientations. Gear motors with high torque capabilities are essential for lifting, rotating, and manipulating objects with varying weights and sizes.
2. Mobile Robots:
Gear motors are employed in mobile robots, including wheeled robots and legged robots, to drive their locomotion. They provide the necessary torque and control for the robot to move, turn, and navigate in different environments. Gear motors with appropriate gear ratios ensure the robot’s mobility, stability, and maneuverability.
3. Robotic Grippers and End Effectors:
Gear motors are used in robotic grippers and end effectors to control the opening, closing, and gripping force. By integrating gear motors into the gripper mechanism, robots can grasp and manipulate objects of various shapes, sizes, and weights. The gear motors enable precise control over the gripping action, allowing the robot to handle delicate or fragile objects with care.
4. Autonomous Drones and UAVs:
Gear motors are utilized in the propulsion systems of autonomous drones and unmanned aerial vehicles (UAVs). They drive the propellers or rotors, providing the necessary thrust and control for the drone’s flight. Gear motors with high power-to-weight ratios, efficient energy conversion, and precise speed control are crucial for achieving stable and maneuverable flight in drones.
5. Humanoid Robots:
Gear motors are integral to the movement and functionality of humanoid robots. They are used in robotic joints, such as hips, knees, and shoulders, to enable human-like movements. Gear motors with appropriate torque and speed capabilities allow humanoid robots to walk, run, climb stairs, and perform complex motions resembling human actions.
6. Robotic Exoskeletons:
Gear motors play a vital role in robotic exoskeletons, which are wearable robotic devices designed to augment human strength and assist in physical tasks. Gear motors are used in the exoskeleton’s joints and actuators, providing the necessary torque and control to enhance human abilities. They enable users to perform tasks with reduced effort, assist in rehabilitation, or provide support in physically demanding environments.
These are just a few notable applications of gear motors in robotics. Their versatility, torque capabilities, precise control, and compact size make them indispensable components in various robotic systems. Gear motors enable robots to perform complex tasks, move with agility, interact with the environment, and assist humans in a wide range of applications, from industrial automation to healthcare and exploration.
What are some common challenges or issues associated with gear motors, and how can they be addressed?
Gear motors, like any mechanical system, can face certain challenges or issues that may affect their performance, reliability, or longevity. However, many of these challenges can be addressed through proper design, maintenance, and operational practices. Here are some common challenges associated with gear motors and potential solutions:
1. Gear Wear and Failure:
Over time, gears in a gear motor can experience wear, resulting in decreased performance or even failure. The following measures can address this challenge:
- Proper Lubrication: Regular lubrication with the appropriate lubricant can minimize friction and wear between gear teeth. It is essential to follow manufacturer recommendations for lubrication intervals and use high-quality lubricants suitable for the specific gear motor.
- Maintenance and Inspection: Routine maintenance and periodic inspections can help identify early signs of gear wear or damage. Timely replacement of worn gears or components can prevent further damage and ensure the gear motor’s optimal performance.
- Material Selection: Choosing gears made from durable and wear-resistant materials, such as hardened steel or specialized alloys, can increase their lifespan and resistance to wear.
2. Backlash and Inaccuracy:
Backlash, as discussed earlier, can introduce inaccuracies in gear motor systems. The following approaches can help address this issue:
- Anti-Backlash Gears: Using anti-backlash gears, which are designed to minimize or eliminate backlash, can significantly reduce inaccuracies caused by gear play.
- Tight Manufacturing Tolerances: Ensuring precise manufacturing tolerances during gear production helps minimize backlash and improve overall accuracy.
- Backlash Compensation: Implementing control algorithms or mechanisms to compensate for backlash can help mitigate its effects and improve the accuracy of the gear motor.
3. Noise and Vibrations:
Gear motors can generate noise and vibrations during operation, which may be undesirable in certain applications. The following strategies can help mitigate this challenge:
- Noise Dampening: Incorporating noise-dampening features, such as vibration-absorbing materials or isolation mounts, can reduce noise and vibrations transmitted from the gear motor to the surrounding environment.
- Quality Gears and Bearings: Using high-quality gears and bearings can minimize vibrations and noise generation. Precision-machined gears and well-maintained bearings help ensure smooth operation and reduce unwanted noise.
- Proper Alignment: Ensuring accurate alignment of gears, shafts, and other components reduces the likelihood of noise and vibrations caused by misalignment. Regular inspections and adjustments can help maintain optimal alignment.
4. Overheating and Thermal Management:
Heat buildup can be a challenge in gear motors, especially during prolonged or heavy-duty operation. Effective thermal management techniques can address this issue:
- Adequate Ventilation: Providing proper ventilation and airflow around the gear motor helps dissipate heat. This can involve designing cooling fins, incorporating fans or blowers, or ensuring sufficient clearance for air circulation.
- Heat Dissipation Materials: Using heat-dissipating materials, such as aluminum or copper, in motor housings or heat sinks can improve heat dissipation and prevent overheating.
- Monitoring and Control: Implementing temperature sensors and thermal protection mechanisms allows for real-time monitoring of the gear motor’s temperature. If the temperature exceeds safe limits, the motor can be automatically shut down or adjusted to prevent damage.
5. Load Variations and Shock Loads:
Unexpected load variations or shock loads can impact the performance and durability of gear motors. The following measures can help address this challenge:
- Proper Sizing and Selection: Choosing gear motors with appropriate torque and load capacity ratings for the intended application helps ensure they can handle expected load variations and occasional shock loads without exceeding their limits.
- Shock Absorption: Incorporating shock-absorbing mechanisms, such as dampers or resilient couplings, can help mitigate the effects of sudden load changes or impacts on the gear motor.
- Load Monitoring: Implementing load monitoring systems or sensors allows for real-time monitoring of load variations. This information can be used to adjust operation or trigger protective measures when necessary.
By addressing these common challenges associated with gear motors through appropriate design considerations, regular maintenance, and operational practices, it is possible to enhance their performance, reliability, and longevity.
Can you explain the advantages of using gear motors in various mechanical systems?
Gear motors offer several advantages when utilized in various mechanical systems. Their unique characteristics make them well-suited for applications that require controlled power transmission, precise speed control, and torque amplification. Here’s a detailed explanation of the advantages of using gear motors:
1. Torque Amplification:
One of the key advantages of gear motors is their ability to amplify torque. By using different gear ratios, gear motors can increase or decrease the output torque from the motor. This torque amplification is crucial in applications that require high torque output, such as lifting heavy loads or operating machinery with high resistance. Gear motors allow for efficient power transmission, enabling the system to handle demanding tasks effectively.
2. Speed Control:
Gear motors provide precise speed control, allowing for accurate and controlled movement in mechanical systems. By selecting the appropriate gear ratio, the rotational speed of the output shaft can be adjusted to match the requirements of the application. This speed control capability ensures that the mechanical system operates at the desired speed, whether it needs to be fast or slow. Gear motors are commonly used in applications such as conveyors, robotics, and automated machinery, where precise speed control is essential.
3. Directional Control:
Another advantage of gear motors is their ability to control the rotational direction of the output shaft. By using different types of gears, such as spur gears, bevel gears, or worm gears, the direction of rotation can be easily changed. This directional control is beneficial in applications that require bidirectional movement, such as in actuators, robotic arms, and conveyors. Gear motors offer reliable and efficient directional control, contributing to the versatility and functionality of mechanical systems.
4. Efficiency and Power Transmission:
Gear motors are known for their high efficiency in power transmission. The gear system helps distribute the load across multiple gears, reducing the strain on individual components and minimizing power losses. This efficient power transmission ensures that the mechanical system operates with optimal energy utilization and minimizes wasted power. Gear motors are designed to provide reliable and consistent power transmission, resulting in improved overall system efficiency.
5. Compact and Space-Saving Design:
Gear motors are compact in size and offer a space-saving solution for mechanical systems. By integrating the motor and gear system into a single unit, gear motors eliminate the need for additional components and reduce the overall footprint of the system. This compact design is especially beneficial in applications with limited space constraints, allowing for more efficient use of available space while still delivering the necessary power and functionality.
6. Durability and Reliability:
Gear motors are designed to be robust and durable, capable of withstanding demanding operating conditions. The gear system helps distribute the load, reducing the stress on individual gears and increasing overall durability. Additionally, gear motors are often constructed with high-quality materials and undergo rigorous testing to ensure reliability and longevity. This makes gear motors well-suited for continuous operation in industrial and commercial applications, where reliability is crucial.
By leveraging the advantages of torque amplification, speed control, directional control, efficiency, compact design, durability, and reliability, gear motors provide a reliable and efficient solution for various mechanical systems. They are widely used in industries such as robotics, automation, manufacturing, automotive, and many others, where precise and controlled mechanical power transmission is essential.
editor by CX 2024-04-15
China Professional DC Gear Motor Brushless Brush DC Motor 10W 90W 200W 400W Gdm Motor Agitator Motor Fan Motor Electric Motor Small Gear Motor AC Gear Motor CH CV Motor Factory vacuum pump belt
Product Description
DC Gear Motor | |||||
G | DM | 06 | 55 | 105 | |
Enterprise Code | Motor Type | Outer Diameter | Cover Model | Outer Length | |
G – GPG | DM – DC Motor | 60 – 60 × 60 70 – 70 × 70 80 – 80 × 80 90 – 90 × 90 104 – 104 × 104 |
55 – 55mm 62 – 62mm 69 – 69mm 80 – 80mm 90 – 90mm 104 -104mm |
70-70mm 75-75mm 79-79mm 86.5- 86.5mm 99.5- 99.5mm 105-105mm |
118-118mm 122-122mm 118-118mm 140-140mm 165-165mm 167-167mm 175-175mm |
15 | S | P | B | 12 | 18 |
Power Capacity | Mounting Face | Motor Shaft Shape | Accessories | Voltage | Speed |
10W 15W 20W 25W 30W 35W 40W 60W 90W 120W 150W 180W 200W 250W 300W 350W 400W |
R – Round Flange S – Square Flange |
P: Cylindrical Shaft C: Gear Shaft |
H – Feet Seat B – Brake Magnetic |
12 – DC 12V 24 – DC 24V 110 – DC 110V 220 – DC 220V |
15 – 1500 18 – 1800 22 – 2200 32 – 3200 |
Model | Gear Box | Rated Power | Voltage | Amp | Speed | Turning Moment | Shell Diameter | Motor Height | |
W | V | A | r/min | mN.m | mm | 06 | 07 | ||
GDM06-55SP GDM06-55SC GDM07-55SP GDM07-55SC |
2GN 3GN |
15 | 12 | 2.30 | 1500 | 95.45 | Φ55 | 75 | 79 |
1800 | 79.53 | ||||||||
2200 | 65.10 | ||||||||
Optical Axis | 12 | 2.30 | 3200 | 44.78 | |||||
2GN 3GN |
24 | 1.05 | 1500 | 95.45 | |||||
1800 | 79.53 | ||||||||
2200 | 65.10 | ||||||||
Optical Axis | 24 | 1.05 | 3200 | 44.78 |
FAQ
Q: How about your company?
A: We are a gear motor factory established in 1995 and located in HangZhou city of china.
We have more than 1200 workers. Our main product is AC micro gear motor 6W to 250W,
AC small gear motor 100W to 3700W, brush DC motor 10W to 400W, brushless motor10W to 750W,
drum motor 60W to 3700W, planetary gearbox,and worm gearbox,etc.
Q: How about your quality control?
A: From raw material to finished products, we have strict and complete IPQC.
And the advanced test-ing machine can assure of qualified products delivered.
Q: How to choose a suitable motor?
A: If you have gear motor pictures or drawings to show us,
or you tell us detailed specs like volt-age, speed, torque, motor size, the working model of the motor, needed lifetime and noise level, etc.
please do not hesitate to let us know, then we can suggest a suitable motor per your request.
Q: Can you make the gear motor with customizing specifications?
A: Yes, we can customize per your request for the voltage, speed, torque, and shaft size and shape.
if you need additional wires or cables soldered on the terminal or need to add connectors, or capacitors, or EMC we can make it too.
Q: What’s your lead time?
A: Usually our regular standard product will need 10-15days, a bit longer for customized products.
But we are very flexible on the lead time, it will depend on the specific orders.
Q: What is your MOQ?
A: If delivered by sea, the minimum order is 100 pieces, if deliver by express, there is no limit.
Q: Do you have the item in stock?
A: l am sorry we do not have the item in stock, All products are made with orders.
Q: How to contact us?
A: You can send us an inquiry.
/* 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: | Single-Phase |
Function: | Driving, Control |
Casing Protection: | Protection Type |
Number of Poles: | 4 |
Customization: |
Available
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Where can individuals find reliable resources for learning more about gear motors and their applications?
Individuals seeking to learn more about gear motors and their applications have access to various reliable resources that provide valuable information and insights. Here are some sources where individuals can find reliable information about gear motors:
1. Manufacturer Websites:
Manufacturer websites are a primary source of information about gear motors. Gear motor manufacturers often provide detailed product specifications, application guides, technical documentation, and educational materials on their websites. These resources offer insights into different gear motor types, features, performance characteristics, and application considerations. Manufacturer websites are a reliable and convenient starting point for learning about gear motors.
2. Industry Associations and Organizations:
Industry associations and organizations related to mechanical engineering, automation, and motion control often have resources and publications dedicated to gear motors. These organizations provide technical articles, whitepapers, industry standards, and guidelines related to gear motor design, selection, and application. Examples of such associations include the American Gear Manufacturers Association (AGMA), International Electrotechnical Commission (IEC), and Institute of Electrical and Electronics Engineers (IEEE).
3. Technical Publications and Journals:
Technical publications and journals focused on engineering, robotics, and motion control are valuable sources of in-depth knowledge about gear motors. Publications like IEEE Transactions on Industrial Electronics, Mechanical Engineering magazine, or Motion System Design magazine often feature articles, case studies, and research papers on gear motor technology, advancements, and applications. These publications provide authoritative and up-to-date information from industry experts and researchers.
4. Online Forums and Communities:
Online forums and communities dedicated to engineering, robotics, and automation can be excellent resources for discussions, insights, and practical experiences related to gear motors. Websites like Stack Exchange, engineering-focused subreddits, or specialized forums provide platforms for individuals to ask questions, share knowledge, and engage in discussions with professionals and enthusiasts in the field. Participating in these communities allows individuals to learn from real-world experiences and gain practical insights.
5. Educational Institutions and Courses:
Technical colleges, universities, and vocational training centers often offer courses or programs in mechanical engineering, mechatronics, or automation that cover gear motor fundamentals and applications. These educational institutions provide comprehensive curricula, textbooks, and lecture materials that can serve as reliable resources for individuals interested in learning about gear motors. Additionally, online learning platforms like Coursera, Udemy, or LinkedIn Learning offer courses on topics related to gear motors and motion control.
6. Trade Shows and Exhibitions:
Attending trade shows, exhibitions, and industry conferences related to automation, robotics, or motion control provides opportunities to learn about the latest advancements in gear motor technology. These events often feature product demonstrations, technical presentations, and expert panels where individuals can interact with gear motor manufacturers, industry experts, and other professionals. It’s a great way to stay updated on the latest trends, innovations, and applications of gear motors.
When seeking reliable resources, it’s important to consider the credibility of the source, the expertise of the authors, and the relevance to the specific area of interest. By leveraging these resources, individuals can gain a comprehensive understanding of gear motors and their applications, from basic principles to advanced topics, enabling them to make informed decisions and effectively utilize gear motors in their projects or applications.
What are some common challenges or issues associated with gear motors, and how can they be addressed?
Gear motors, like any mechanical system, can face certain challenges or issues that may affect their performance, reliability, or longevity. However, many of these challenges can be addressed through proper design, maintenance, and operational practices. Here are some common challenges associated with gear motors and potential solutions:
1. Gear Wear and Failure:
Over time, gears in a gear motor can experience wear, resulting in decreased performance or even failure. The following measures can address this challenge:
- Proper Lubrication: Regular lubrication with the appropriate lubricant can minimize friction and wear between gear teeth. It is essential to follow manufacturer recommendations for lubrication intervals and use high-quality lubricants suitable for the specific gear motor.
- Maintenance and Inspection: Routine maintenance and periodic inspections can help identify early signs of gear wear or damage. Timely replacement of worn gears or components can prevent further damage and ensure the gear motor’s optimal performance.
- Material Selection: Choosing gears made from durable and wear-resistant materials, such as hardened steel or specialized alloys, can increase their lifespan and resistance to wear.
2. Backlash and Inaccuracy:
Backlash, as discussed earlier, can introduce inaccuracies in gear motor systems. The following approaches can help address this issue:
- Anti-Backlash Gears: Using anti-backlash gears, which are designed to minimize or eliminate backlash, can significantly reduce inaccuracies caused by gear play.
- Tight Manufacturing Tolerances: Ensuring precise manufacturing tolerances during gear production helps minimize backlash and improve overall accuracy.
- Backlash Compensation: Implementing control algorithms or mechanisms to compensate for backlash can help mitigate its effects and improve the accuracy of the gear motor.
3. Noise and Vibrations:
Gear motors can generate noise and vibrations during operation, which may be undesirable in certain applications. The following strategies can help mitigate this challenge:
- Noise Dampening: Incorporating noise-dampening features, such as vibration-absorbing materials or isolation mounts, can reduce noise and vibrations transmitted from the gear motor to the surrounding environment.
- Quality Gears and Bearings: Using high-quality gears and bearings can minimize vibrations and noise generation. Precision-machined gears and well-maintained bearings help ensure smooth operation and reduce unwanted noise.
- Proper Alignment: Ensuring accurate alignment of gears, shafts, and other components reduces the likelihood of noise and vibrations caused by misalignment. Regular inspections and adjustments can help maintain optimal alignment.
4. Overheating and Thermal Management:
Heat buildup can be a challenge in gear motors, especially during prolonged or heavy-duty operation. Effective thermal management techniques can address this issue:
- Adequate Ventilation: Providing proper ventilation and airflow around the gear motor helps dissipate heat. This can involve designing cooling fins, incorporating fans or blowers, or ensuring sufficient clearance for air circulation.
- Heat Dissipation Materials: Using heat-dissipating materials, such as aluminum or copper, in motor housings or heat sinks can improve heat dissipation and prevent overheating.
- Monitoring and Control: Implementing temperature sensors and thermal protection mechanisms allows for real-time monitoring of the gear motor’s temperature. If the temperature exceeds safe limits, the motor can be automatically shut down or adjusted to prevent damage.
5. Load Variations and Shock Loads:
Unexpected load variations or shock loads can impact the performance and durability of gear motors. The following measures can help address this challenge:
- Proper Sizing and Selection: Choosing gear motors with appropriate torque and load capacity ratings for the intended application helps ensure they can handle expected load variations and occasional shock loads without exceeding their limits.
- Shock Absorption: Incorporating shock-absorbing mechanisms, such as dampers or resilient couplings, can help mitigate the effects of sudden load changes or impacts on the gear motor.
- Load Monitoring: Implementing load monitoring systems or sensors allows for real-time monitoring of load variations. This information can be used to adjust operation or trigger protective measures when necessary.
By addressing these common challenges associated with gear motors through appropriate design considerations, regular maintenance, and operational practices, it is possible to enhance their performance, reliability, and longevity.
What are the different types of gears used in gear motors, and how do they impact performance?
Various types of gears are used in gear motors, each with its unique characteristics and impact on performance. The choice of gear type depends on the specific requirements of the application, including torque, speed, efficiency, noise level, and space constraints. Here’s a detailed explanation of the different types of gears used in gear motors and their impact on performance:
1. Spur Gears:
Spur gears are the most common type of gears used in gear motors. They have straight teeth that are parallel to the gear’s axis and mesh with another spur gear to transmit power. Spur gears provide high efficiency, reliable operation, and cost-effectiveness. However, they can generate significant noise due to the meshing of teeth, and they may produce axial thrust forces. Spur gears are suitable for applications that require high torque transmission and moderate to high rotational speeds.
2. Helical Gears:
Helical gears have angled teeth that are cut at an angle to the gear’s axis. This helical tooth configuration enables gradual engagement and smoother tooth contact, resulting in reduced noise and vibration compared to spur gears. Helical gears provide higher load-carrying capacity and are suitable for applications that require high torque transmission and moderate to high rotational speeds. They are commonly used in gear motors where low noise operation is desired, such as in automotive applications and industrial machinery.
3. Bevel Gears:
Bevel gears have teeth that are cut on a conical surface. They are used to transmit power between intersecting shafts, usually at right angles. Bevel gears can have straight teeth (straight bevel gears) or curved teeth (spiral bevel gears). These gears provide efficient power transmission and precise motion control in applications where shafts need to change direction. Bevel gears are commonly used in gear motors for applications such as steering systems, machine tools, and printing presses.
4. Worm Gears:
Worm gears consist of a worm (a type of screw) and a mating gear called a worm wheel or worm gear. The worm has a helical thread that meshes with the worm wheel, resulting in a compact and high gear reduction ratio. Worm gears provide high torque transmission, low noise operation, and self-locking properties, which prevent reverse motion. They are commonly used in gear motors for applications that require high gear reduction and locking capabilities, such as in lifting mechanisms, conveyor systems, and machine tools.
5. Planetary Gears:
Planetary gears, also known as epicyclic gears, consist of a central sun gear, multiple planet gears, and an outer ring gear. The planet gears mesh with both the sun gear and the ring gear, creating a compact and efficient gear system. Planetary gears offer high torque transmission, high gear reduction ratios, and excellent load distribution. They are commonly used in gear motors for applications that require high torque and compact size, such as in robotics, automotive transmissions, and industrial machinery.
6. Rack and Pinion:
Rack and pinion gears consist of a linear rack (a straight toothed bar) and a pinion gear (a spur gear with a small diameter). The pinion gear meshes with the rack to convert rotary motion into linear motion or vice versa. Rack and pinion gears provide precise linear motion control and are commonly used in gear motors for applications such as linear actuators, CNC machines, and steering systems.
The choice of gear type in a gear motor depends on factors such as the desired torque, speed, efficiency, noise level, and space constraints. Each type of gear offers specific advantages and impacts the performance of the gear motor differently. By selecting the appropriate gear type, gear motors can be optimized for their intended applications, ensuring efficient and reliable power transmission.
editor by CX 2024-04-11
China manufacturer 10W 16W Copper Wire Electric Exhaust Shaded Pole AC Compressor Fan Motor with Good quality
Product Description
Product Description
The YZF26 series motor adopts the end cover with 26mm mounting bracket screw spacing , which has the advantages of safety , reliability , low noise , small vibration and long life.
This series of motor is suitable for refrigerating equipment such as freezer , refrigerator, wine cabinet , fresh – keeping cabinet , condenser, evaporator, display chiller, radiator , etc.
The lead wire specification, size ” L ” and terminal of motor can be customized.
Installation Instructions
Operating Mode:S1 Insulation Grade: Class E
Protection Class: IP41 Environmental Temperature:-30ºC~+50ºC
Drawing
Product Parameters
TYPE | YZF3-13T | YZF5-13T | YZF10-20T | YZF16-25T | YZF20-30T | YZF25-40T | YZF34-45T | ||||||
VOLTAGE V | 220-240 | 220-240 | 110-120 | 220-240 | 110/120 | 220-240 | 110-120 | 220-240 | 110-120 | 220-240 | 110-120 | 220-240 | 110-120 |
FREQUENCY Hz | 50/60 | 50/60 | 60 | 50/60 | 60 | 50/60 | 60 | 50/60 | 60 | 50/60 | 60 | 50/60 | 60 |
INPUT POWER W | 25 | 35 | 35 | 40 | 40 | 60 | 60 | 75 | 75 | 90 | 90 | 110 | 110% |
OUTPUT POWER W | 3 | 5 | 5 | 10 | 10 | 16 | 16 | 20 | 20 | 25 | 25 | 34 | 34, |
RATED CURRENT A | 0.16 | 0.21 | 0.45 | 0.25 | 6 | 0.37 | 0.7 | 0.50 | 1.10 | 0.65 | 1.35 | 0.75 | 1.50 |
RATED SPEED r/min | 1300 | 1300 | 1450 | 1300 | 1450 | 1300 | 1450 | 1300 | 1450 | 1300 | 1450 | 1300 | 1450 |
AIR VOLUME m3/h | 210 | 455 | 510 | 645 | 790 | 780 | 900 | 1000 | 1050 | 1030 | 1100 | 1080 | 1210 |
A mm | 13 | 13 | 19 | 25 | 30 | 40 | 45 | ||||||
B mm | 15 | 15 | 16 | 16 | 16 | 16 | 16 | ||||||
C mm | 45 | 45 | 46 | 46 | 46 | 46 | 46 | ||||||
D mm | 78 | 78 | 85 | 92 | 97 | 06 | 114 | ||||||
FAN BLADE mm | Φ170 | Φ200 | Φ230 | Φ250 | Φ254 | Φ300 | Φ300 | ||||||
NET WEIGHT kg | 0.8 | 0.8 | . | 1.3 | 1.5 | 1.8 | 2.1 | ||||||
QTY/CTN pcs | 24 | 24 | 24 | 12 | 12 | 12 | 12 | ||||||
CERTIFICATION | CE CCC | CE CCC | CE CCC | CE CCC | CE CCC | CE CCC | CE CCC |
/* 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(/(.*?):(.*)$/))&&1
Application: | Refrigeration Equipment |
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Operating Speed: | Constant Speed |
Power Source: | AC Motor |
Function: | Refrigeration |
Casing Protection: | Protection Type |
Number of Poles: | 4 |
Samples: |
US$ 2.2/Piece
1 Piece(Min.Order) | |
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Customization: |
Available
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What role do AC motors play in HVAC (heating, ventilation, and air conditioning) systems?
In HVAC (heating, ventilation, and air conditioning) systems, AC motors play a crucial role in various components and functions. These motors are responsible for powering fans, compressors, pumps, and other essential equipment within the HVAC system. Let’s explore the specific roles of AC motors in HVAC systems:
- Air Handling Units (AHUs) and Ventilation Systems: AC motors drive the fans in AHUs and ventilation systems. These fans draw in fresh air, circulate air within the building, and exhaust stale air. The motors provide the necessary power to move air through the ductwork and distribute it evenly throughout the space. They play a key role in maintaining proper indoor air quality, controlling humidity, and ensuring adequate ventilation.
- Chillers and Cooling Towers: HVAC systems that use chillers for cooling rely on AC motors to drive the compressor. The motor powers the compressor, which circulates refrigerant through the system, absorbing heat from the indoor environment and releasing it outside. AC motors are also used in cooling towers, which dissipate heat from the chiller system by evaporating water. The motors drive the fans that draw air through the cooling tower and enhance heat transfer.
- Heat Pumps: AC motors are integral components of heat pump systems, which provide both heating and cooling. The motor drives the compressor in the heat pump, enabling the transfer of heat between the indoor and outdoor environments. During cooling mode, the motor circulates refrigerant to extract heat from indoors and release it outside. In heating mode, the motor reverses the refrigerant flow to extract heat from the outdoor air or ground and transfer it indoors.
- Furnaces and Boilers: In heating systems, AC motors power the blowers or fans in furnaces and boilers. The motor drives the blower to distribute heated air or steam throughout the building. This helps maintain a comfortable indoor temperature and ensures efficient heat distribution in the space.
- Pumps and Circulation Systems: HVAC systems often incorporate pumps for water circulation, such as in hydronic heating or chilled water systems. AC motors drive these pumps, providing the necessary pressure to circulate water or other heat transfer fluids through the system. The motors ensure efficient flow rates and contribute to the effective transfer of thermal energy.
- Dampers and Actuators: AC motors are used in HVAC systems to control airflow and regulate the position of dampers and actuators. These motors enable the adjustment of airflow rates, temperature control, and zone-specific climate control. By modulating the motor speed or position, HVAC systems can achieve precise control of air distribution and temperature in different areas of a building.
AC motors in HVAC systems are designed to meet specific performance requirements, such as variable speed control, energy efficiency, and reliable operation under varying loads. Maintenance and regular inspection of these motors are essential to ensure optimal performance, energy efficiency, and longevity of the HVAC system.
In conclusion, AC motors play vital roles in HVAC systems by powering fans, compressors, pumps, and actuators. They enable proper air circulation, temperature control, and efficient transfer of heat, contributing to the overall comfort, air quality, and energy efficiency of buildings.
Can AC motors be used in renewable energy systems, such as wind turbines?
Yes, AC motors can be used in renewable energy systems, including wind turbines. In fact, AC motors are commonly employed in various applications within wind turbines due to their numerous advantages. Here’s a detailed explanation:
1. Generator: In a wind turbine system, the AC motor often functions as a generator. As the wind turbine blades rotate, they drive the rotor of the generator, which converts the mechanical energy of the wind into electrical energy. AC generators are commonly used in wind turbines due to their efficiency, reliability, and compatibility with power grid systems.
2. Variable Speed Control: AC motors offer the advantage of variable speed control, which is crucial for wind turbines. The wind speed is variable, and in order to maximize energy capture, the rotor speed needs to be adjusted accordingly. AC motors, when used as generators, can adjust their rotational speed with the changing wind conditions by modifying the frequency and voltage of the output electrical signal.
3. Efficiency: AC motors are known for their high efficiency, which is an important factor in renewable energy systems. Wind turbines aim to convert as much of the wind energy into electrical energy as possible. AC motors, especially those designed for high efficiency, can help maximize the overall energy conversion efficiency of the wind turbine system.
4. Grid Integration: AC motors are well-suited for grid integration in renewable energy systems. The electrical output from the AC generator can be easily synchronized with the grid frequency and voltage, allowing for seamless integration of the wind turbine system with the existing power grid infrastructure. This facilitates the efficient distribution of the generated electricity to consumers.
5. Control and Monitoring: AC motors offer advanced control and monitoring capabilities, which are essential for wind turbine systems. The electrical parameters, such as voltage, frequency, and power output, can be easily monitored and controlled in AC motor-based generators. This allows for real-time monitoring of the wind turbine performance, fault detection, and optimization of the power generation process.
6. Availability and Standardization: AC motors are widely available in various sizes and power ratings, making them readily accessible for wind turbine applications. They are also well-standardized, ensuring compatibility with other system components and facilitating maintenance, repair, and replacement activities.
It’s worth noting that while AC motors are commonly used in wind turbines, there are other types of generators and motor technologies utilized in specific wind turbine designs, such as permanent magnet synchronous generators (PMSGs) or doubly-fed induction generators (DFIGs). These alternatives offer their own advantages and may be preferred in certain wind turbine configurations.
In summary, AC motors can indeed be used in renewable energy systems, including wind turbines. Their efficiency, variable speed control, grid integration capabilities, and advanced control features make them a suitable choice for converting wind energy into electrical energy in a reliable and efficient manner.
Can you explain the basic working principle of an AC motor?
An AC motor operates based on the principles of electromagnetic induction. It converts electrical energy into mechanical energy through the interaction of magnetic fields. The basic working principle of an AC motor involves the following steps:
- The AC motor consists of two main components: the stator and the rotor. The stator is the stationary part of the motor and contains the stator windings. The rotor is the rotating part of the motor and is connected to a shaft.
- When an alternating current (AC) is supplied to the stator windings, it creates a changing magnetic field.
- The changing magnetic field induces a voltage in the rotor windings, which are either short-circuited conductive bars or coils.
- The induced voltage in the rotor windings creates a magnetic field in the rotor.
- The magnetic field of the rotor interacts with the rotating magnetic field of the stator, resulting in a torque force.
- The torque force causes the rotor to rotate, transferring mechanical energy to the connected shaft.
- The rotation of the rotor continues as long as the AC power supply is provided to the stator windings.
This basic working principle is applicable to various types of AC motors, including induction motors and synchronous motors. However, the specific construction and design of the motor may vary depending on the type and intended application.
editor by CX 2024-04-03
China supplier AC 220V 50Hz 50W Copper Pedestal Fan Electric Motor vacuum pump design
Product Description
1. 16 inches 45w 71*16mm electric fan parts ac fan motor with capacitor for table fan
2. The working voltage is 220v 50Hz,the maximum power is 45w
3. The rotating speed(RPM) is 1250r/min~1350r/min
4. The coil material is Aluminum wire
5. Fine Process Technique
6. Low noise,long work time
7. With competitive price
8. AC Electric Fan Motor
Product Specification | |
Material | Aluminum wire winding |
Working Voltage | 220v 50Hz |
Maximum power | 45W |
Application | Table fan |
Rotating speed(RPM) | 1250r/min~1350r/min |
Bosin Electronics Manufacture 55W/60W 14mm/16mm/18mm/20mm/25mm Table/Wall/Floor Fan Motor,etc.
1.Three types of fan motors:
♣ Normal fan motor
♣ Fan motor with metal electroplating
♣ Ball-bearing fan motor
2. Aluminium & Copper wire coiling can be optional
3. Motor speed:1250rpm & 2200rpm can be optional
4. OEM & ODM are acceptable
5. Can be fully customized according to the customers’ sample of fan motor or fan blade(10-16 inches)
(If you have any questions, please feel free to contact us.)
Model | Voltage | Frequency | Input Power | Speed | Electrode | Insulation grade | Capacitor |
BS-06 |
127 | 60 | 6 | 1300 | 4 | E | 2.5 |
220 | 50 | 5 | 1300 | 4 | E | 1 | |
127 | 60 | 8 | 1250 | 4 | E | 3.5 | |
220 | 50 | 8 | 1250 | 4 | E | 1 | |
127 | 60 | 10 | 1250 | 4 | E | 4 | |
220 | 50 | 10 | 1250 | 4 | E | 1 | |
220 | 50 | 12 | 1200 | 4 | E | 1.5 | |
220 | 50 | 20 | 1300 | 4 | E | 1.5 | |
220 | 50 | 25 | 1300 | 4 | E | 1.5 |
Application: | Industrial |
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Speed: | Variable Speed |
Number of Stator: | Single-Phase |
Function: | Driving, Control |
Casing Protection: | Protection Type |
Number of Poles: | 2 |
Samples: |
US$ 0/Piece
1 Piece(Min.Order) | |
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Customization: |
Available
|
|
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What role do AC motors play in HVAC (heating, ventilation, and air conditioning) systems?
In HVAC (heating, ventilation, and air conditioning) systems, AC motors play a crucial role in various components and functions. These motors are responsible for powering fans, compressors, pumps, and other essential equipment within the HVAC system. Let’s explore the specific roles of AC motors in HVAC systems:
- Air Handling Units (AHUs) and Ventilation Systems: AC motors drive the fans in AHUs and ventilation systems. These fans draw in fresh air, circulate air within the building, and exhaust stale air. The motors provide the necessary power to move air through the ductwork and distribute it evenly throughout the space. They play a key role in maintaining proper indoor air quality, controlling humidity, and ensuring adequate ventilation.
- Chillers and Cooling Towers: HVAC systems that use chillers for cooling rely on AC motors to drive the compressor. The motor powers the compressor, which circulates refrigerant through the system, absorbing heat from the indoor environment and releasing it outside. AC motors are also used in cooling towers, which dissipate heat from the chiller system by evaporating water. The motors drive the fans that draw air through the cooling tower and enhance heat transfer.
- Heat Pumps: AC motors are integral components of heat pump systems, which provide both heating and cooling. The motor drives the compressor in the heat pump, enabling the transfer of heat between the indoor and outdoor environments. During cooling mode, the motor circulates refrigerant to extract heat from indoors and release it outside. In heating mode, the motor reverses the refrigerant flow to extract heat from the outdoor air or ground and transfer it indoors.
- Furnaces and Boilers: In heating systems, AC motors power the blowers or fans in furnaces and boilers. The motor drives the blower to distribute heated air or steam throughout the building. This helps maintain a comfortable indoor temperature and ensures efficient heat distribution in the space.
- Pumps and Circulation Systems: HVAC systems often incorporate pumps for water circulation, such as in hydronic heating or chilled water systems. AC motors drive these pumps, providing the necessary pressure to circulate water or other heat transfer fluids through the system. The motors ensure efficient flow rates and contribute to the effective transfer of thermal energy.
- Dampers and Actuators: AC motors are used in HVAC systems to control airflow and regulate the position of dampers and actuators. These motors enable the adjustment of airflow rates, temperature control, and zone-specific climate control. By modulating the motor speed or position, HVAC systems can achieve precise control of air distribution and temperature in different areas of a building.
AC motors in HVAC systems are designed to meet specific performance requirements, such as variable speed control, energy efficiency, and reliable operation under varying loads. Maintenance and regular inspection of these motors are essential to ensure optimal performance, energy efficiency, and longevity of the HVAC system.
In conclusion, AC motors play vital roles in HVAC systems by powering fans, compressors, pumps, and actuators. They enable proper air circulation, temperature control, and efficient transfer of heat, contributing to the overall comfort, air quality, and energy efficiency of buildings.
How do AC motors contribute to the functioning of household appliances?
AC motors play a crucial role in the functioning of numerous household appliances by converting electrical energy into mechanical energy. These motors are used in a wide range of devices, powering various components and performing essential tasks. Let’s explore how AC motors contribute to the functioning of household appliances:
- Kitchen Appliances: AC motors are found in various kitchen appliances, such as refrigerators, freezers, dishwashers, and blenders. In refrigerators and freezers, AC motors drive the compressor, which circulates the refrigerant and maintains the desired temperature. Dishwashers use AC motors to power the water pumps, spray arms, and the motorized detergent dispenser. Blenders utilize AC motors to rotate the blades and blend ingredients.
- Laundry Appliances: AC motors are integral to laundry appliances like washing machines and clothes dryers. Washing machines rely on AC motors to power the agitator or the drum, facilitating the washing and spinning cycles. Clothes dryers use AC motors to rotate the drum and operate the blower fan, facilitating the drying process.
- Vacuum Cleaners: Vacuum cleaners utilize AC motors to generate suction and drive the motorized brush or beater bar. These motors power the fan or impeller, creating the necessary airflow for effective cleaning.
- Fans and Air Circulation: AC motors are employed in various types of fans, including ceiling fans, table fans, and pedestal fans. These motors drive the fan blades, producing airflow and facilitating air circulation to provide cooling or ventilation in rooms. Additionally, AC motors power exhaust fans used in kitchens, bathrooms, and range hoods to remove odors, smoke, or excess moisture.
- Air Conditioning and Heating Systems: AC motors are critical components in air conditioning and heating systems. They power the compressor, condenser fan, and blower fan, which are responsible for circulating refrigerant, dissipating heat, and delivering conditioned air throughout the house. AC motors enable the regulation of temperature and humidity levels, ensuring comfort in residential spaces.
- Garage Door Openers: AC motors are utilized in garage door openers to drive the mechanism responsible for opening and closing the garage door. These motors generate the necessary torque to lift or lower the door smoothly and efficiently.
- Other Appliances: AC motors are also found in a variety of other household appliances. For instance, they power pumps in water heaters, swimming pool filters, and sump pumps. AC motors are used in dehumidifiers, humidifiers, and air purifiers to drive the fans and other internal components. They are also present in audiovisual equipment, such as DVD players, record players, and fans used for cooling electronics.
In summary, AC motors are essential components in household appliances, enabling their proper functioning and delivering the mechanical energy required for various tasks. From kitchen appliances to laundry machines, fans, air conditioning systems, and more, AC motors provide the necessary power and functionality to enhance our daily lives.
What are the key advantages of using AC motors in industrial applications?
AC motors offer several key advantages that make them highly suitable for industrial applications. Here are some of the main advantages:
- Simple and Robust Design: AC motors, particularly induction motors, have a simple and robust design, making them reliable and easy to maintain. They consist of fewer moving parts compared to other types of motors, which reduces the likelihood of mechanical failure and the need for frequent maintenance.
- Wide Range of Power Ratings: AC motors are available in a wide range of power ratings, from small fractional horsepower motors to large industrial motors with several megawatts of power. This versatility allows for their application in various industrial processes and machinery, catering to different power requirements.
- High Efficiency: AC motors, especially modern designs, offer high levels of efficiency. They convert electrical energy into mechanical energy with minimal energy loss, resulting in cost savings and reduced environmental impact. High efficiency also means less heat generation, contributing to the longevity and reliability of the motor.
- Cost-Effectiveness: AC motors are generally cost-effective compared to other types of motors. Their simple construction and widespread use contribute to economies of scale, making them more affordable for industrial applications. Additionally, AC motors often have lower installation and maintenance costs due to their robust design and ease of operation.
- Flexible Speed Control: AC motors, particularly induction motors, offer various methods for speed control, allowing for precise adjustment of motor speed to meet specific industrial requirements. Speed control mechanisms such as variable frequency drives (VFDs) enable enhanced process control, energy savings, and improved productivity.
- Compatibility with AC Power Grid: AC motors are compatible with the standard AC power grid, which is widely available in industrial settings. This compatibility simplifies the motor installation process and eliminates the need for additional power conversion equipment, reducing complexity and cost.
- Adaptability to Various Environments: AC motors are designed to operate reliably in a wide range of environments. They can withstand variations in temperature, humidity, and dust levels commonly encountered in industrial settings. Additionally, AC motors can be equipped with protective enclosures to provide additional resistance to harsh conditions.
These advantages make AC motors a popular choice for industrial applications across various industries. Their simplicity, reliability, cost-effectiveness, energy efficiency, and speed control capabilities contribute to improved productivity, reduced operational costs, and enhanced process control in industrial settings.
editor by CX 2023-12-06
in Malegaon India sales price shop near me near me shop factory supplier Ye3 Ce CCC IEC Ie3 Premium Efficiency Three Phase AC Induction High Speed Electric Motor for Fan Pump Blower Compressor Conveyor Mixer Ye3-315L1-2 160kw 2985kw manufacturer best Cost Custom Cheap wholesaler
The new items consist of a series of substantial-tech and substantial good quality chains and sprockets and gears, this kind of as chains and gearboxes for agricultural machineries, metallurgical chains, escalator action-chains, substantial-velocity tooth chains, timing chains, self-lubrication chains, among which have variety large pace tooth chain for automobile department dynamic box and aerial chains fill in the blanks of chain in China. We are aiming to fulfill the calls for of the clientele all around the entire world.. We offer you OEM services.
YE3 CE CCC IEC IE3 Premium Effectiveness A few Stage AC Induction EPT Pace Electric powered EPT for supporter pump blower compressor conveyor mixer
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Overview
Our organization has investigated and deveXiHu (West EPT) Dis.Hu (West EPT) Dis.ed total series vertical motor for multistage pump, which conforms to the stXiHu (West EPT) Dis.Hu (West EPT) Dis.rd of IEC Degree three (YE3 Sequence) and Power Efficiency Level 2(YXL and YX3 Sequence). The exterior of the motor manages to get the Design Patent granted by Condition Mental Home Business office of the People’s Republic of EPTT. This series of motor has been productively utilised in many domestic multistage pump manufacturing EPTTrprises, as well exported to different areas as European EPT, Japan and EPTTiwan.
EPTT Description
- Frame sizes: 71 to 315
- Rated output: .37 to 220kW
- Voltage: 380V or other
- Frequency: 50Hz or sixty Hz
- Obligation Cycle: S1
- Insulation class: F
- Degree of security: IP55
- Quantity of poles: two
- Efficiency stages: IE2 /IE3
- Enclosure: IC411
Features
- Classy Physical appearance, reduced sound in start off and procedure, satisfy the requirement of bi-aXiHu (West EPT) Dis.al pressure.
- Installation dimension and Power Efficiency conform strictly to the stXiHu (West EPT) Dis.Hu (West EPT) Dis.rd of IEC and DIN42673, cooling technique IC411.
- Security Course IP55cast iron frame avert the motor from dust and splash ideal construction in compliance with global stXiHu (West EPT) Dis.Hu (West EPT) Dis.rd, secure in operation.
- Insulation Course F, robust warmth resistance and EPT resistance, EPTT life span of insulation, be in a position to perform in significant surroundings.
- StXiHu (West EPT) Dis.Hu (West EPT) Dis.rdization design and style, high high quality content,EPTd processing gear and perfect top quality assurance system, substantial power preserving,little vibration,lower sounds,constant functionality and trustworthy.
Application
Used with the multistage pump, the motor’s wide application ranges in the provide drinking water pressurizing of large constructing, drinking water shipping and delivery in EPTT distance or in the scenario when the strain enhance by big pressure tools is necessary, meeting the need of living water source of household locations,big architectural intricate(like faculty,army,massive manufacturing unit and so on.) and villa-cluster the motor can also be applied in the EPT system of air-conditioner and EPT-combating supercharging of industrial developing complicated in pressurizing of waterworks from EPTT length or be utilised to suction clean h2o from building site.
Display Space
Certificates
Quality Support
EPTT EPTT
EPT EPT Creation Workshop and Stream Chart
Certificates and far more Organization information make sure you go to quotABOUT US quot
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Welcome to get in touch with us immediately…
https://youtu.be/frVvg3yQqNM
WANNAN EPT EPTT EPTS
in Karaganda Kazakhstan sales price shop near me near me shop factory supplier High Quality Electric DC Brushless Motor for Ventilating Fan Pump Driver manufacturer best Cost Custom Cheap wholesaler
Our professionals and engineers have 23 several years of Knowledge in the Bearing Business. It has established secure cooperation with many properly acknowledged universities and institutes in china this kind of as, Zhejiang College, Jilin University, Technical committee of nationwide chain drive normal, Institute of national chain travel, Zhejiang application engineering material institute, Huhan materials safety institute and it cooperated to identified China 1st Car chain institute with National chain travel institute. EPG is a skilled maker and exporter that is concerned with the style, development and creation. Substantial EPT Electrical DC Brushless EPT for Ventilating Enthusiast/EPT Driver
Merchandise characteristic
one. Stator dimensions is optional
two. Safe, trustworthy, reduced sounds, good commencing, EPT lifestyle
3. EPT EPT
Rated voltage one hundred ten~120V/220~240V-50/60Hz
Normal utilised: Exhaust fan, air purifier, micro-oven, supporter, induction cooker, fridge, pump, heater, hood oven, blower, air conditioner, Heater EPTs, dehumidifiers
Thermal protector with one shot fuse or multi shot fuseDC EPT for GrinEPTwith UL acceptance
Electrical specification
Typical Market |
EPT for sector and commerce uses motor |
Software |
EPT EPTs motor EPT equipment motor Enthusiast motor |
Principal EPT Parameters |
Running voltage: AC 110V-AC 230V |
Rated Recent: .2A |
Rated EPT: 35W |
Control mode: Open up loop sensorless velocity management |
EPT Necessity |
Cooling strategy: Natural cooling |
Operate surroundings: No dust, oil mist and corrosive fuel |
Work temperature :-ten ordmC~ forty five ordmC |
Humidity: lt80%RH, noncondensable, and unfrosted |
Vibration : lt5.7 m/s2 |
Storage: -five ordmC~ one hundred and five ordmC, safeguarded from dust in intact offers |
Standard Software |
Bladeless admirer |
Air purifier |
EPT gear |
Ventilator |
Sand mill |
Functionality Attributes |
Appropriate for less than 35W brushless DC motor. |
Guide and distant handle of fan begin/cease, acceleration/deceleration, and head shake about 5m from a admirer. |
AC110V~AC230V, Broad functioning range. |
Large efficiency, more vitality-saving and surroundings-helpful. |
Security from overcurrent and short circuit and buzzing alarm. |
Sensorless manage, EPT-preserving. |
EPT dimensions
Our company FAQ for you
(one) Q: What type motors you can supply?
A:For now,we largely supply Kitchen area Hood EPT,DC EPT,Equipment EPT,Fan EPT Fridge EPT,Hair Dryer EPT BlenEPTEPT Mixer EPT,
Shade Pole EPT,Capacitor EPT,BLDC EPT PMDC EPT,Synchronous EPT,Stepping EPT etc.
(two) Q: Is it feasible to pay a visit to your manufacturing unit
A: Confident. But remember to kindly preserve us posted a couple of daEPTEPT. We require to verify our
timetable to see if we are obtainable then.
(3) Q: Can I get some samples
A: It relies upon. If only a few samples for personal use or alternative, I am scared it will
be hard for us to give, since all of our motors are EPT and no stock
obtainable if there is no even more needs. If just sample screening prior to the formal orEPTand
our MOQ, cost and other phrases are suitable, we might love to provide samples.
(4) Q: Is there a MOQ for your motors?
A: Yes. The MOQ is between 1000~10,000pcs for various designs after sample acceptance.
But it is also okay for us to settle for scaled-down plenty like a couple of dozens, hundreds or countless numbers
For the first three orders after sample approval.For samples, there is no MOQ need. But the considerably less the far better (like no far more than 5pcs) on problem that the amount is enough in circumstance any modifications necessary right after first tests.
ABOUT US
Ritscher team was set up in 2006.we alwaEPTfocus on micro-motors for EPT EPT EPT and business EPT considering that location up.presently we have two skilled micro-motor factories in EPT which severally located in HangEPT metropolis and HangEPT city.it has an region of twenty five,000 sq. meters EPTs and a lot more than three hundred staff, yearly output is 3 million pcs and has five million pcs annual generating capability.soon after numerous several years deveXiHu (West Lake) Dis.Hu (West Lake) Dis.ment,we experienced developed a great status in the market place and got a lot more and much more customers’ EPT in the entire world.
We began from shaded pole motors at starting, up to now,our product incEPTd of shaded pole motors,synchronous motors,stepping motors ,capacitor motors, BLDC motors, DC motors and compressors. Our merchandise are extensively utilized for creating refrigerators, freezers, micro-wave ovens, air heaters, air exhausters, ventilators,ovens, air filter, therapeutic massage EPTs and many other equipments.
As a realiable good quality warranty,Ritscher has total R ampD departement,QC section,making section,obtain section and so on. has best generating products like EPT diecasting, Zinc diecasting, Sheet steel stamping, Plastic EPT molding and so on. also test/ detection device like multiplex temp measuring gadget, overall performance parameter inspection device, Phenol peptide remedy pinhole tester,Anechoic place and so forth.
Endeavoring to give the ideal merchandise and services to consumers,we alwaEPTdo the most energy to turn into an outstXiHu (West Lake) Dis.Hu (West Lake) Dis. maker of micro motors.
Ritscher is alwaEPTwilling to set up honest company relationship with pals from all more than the world.
Welcome speak to with us!
EPTke ritscher ,enEPT contemporary lifestyle!
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With thorough requirments, we can also develop your particular made merchandise. Excellent consideration has been paid on environmental safety and energy conserving. Our business pays distinct focus to customers’ needs, listening to the specific specifications of every client and guaranteeing whole pleasure.
The above pointed out specification is agent specification,can also be designed and produced in accordance to buyer demands.
Functions:
Reversible plug for simple rotation
Fast installation
Strength efficient
Peaceful procedure
EPTall bearing
Automated overload
Thermal protection
Higher efficiency, Substantial trustworthiness, Tiny vibration, Reduced noise
Application:
Ideal to air-cooled heat pump module units and equivalent purposes.
Normal Outline Dimensions:
Main technological information:
Type | Voltage | Frequency | Output | Existing | Pace | Insulation | amounts of defense | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
V | Hz | W | A | r/min | course | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
YS-250-6 | 380 | fifty | 250 | .95 | 940 | F | IP55 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
YS-250-eight | 380 | fifty | 250 | one.twenty | 720 | F | IP55 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
YS-370-six | 380 | fifty | 370 | 1.30 | 940 | F | IP55 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
YS-370-8 | 380 | fifty | 370 | 1.50 | 720 | F | IP55 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
YS-550-six | 380 | fifty | 550 | one.80 | 940 | F | IP55 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
YS-550-8 | 380 | 50 | 550 | 2.10 | 720 | F | IP55 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
YS-750-6 | 380 | 50 | 750 | 2.thirty | 940 | F | IP55 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
YS-750-8 | 380 | 50 | 750 | 2.fifty | 720 | F | IP55 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
YS-1100-six | 380 | 50 | 1100 | 3.10 | 950 | F | IP55 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
YS-1100-8 | 380 | 50 | 1100 | 3.30 | 720 | F | IP55 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
YS-1800-6 | 380 | fifty | 1800 | 4.fifty | 940 | F | IP55 | |||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
YS-2200-6 | 380 | fifty | 2200 | 5.fifty | 950 | F | IP55 |
Notes:
The earlier mentioned described specification is agent specification,The specification can also be made and made
in accordance to clients necessity.
The products of a hundred-120V,200-240V,60Hz can also be provided as requested.
We will not give EPT observe on adjustments,please contact our technological department for additional info.
Conditions:
1. Trade Phrases: FOEPT, CEPT, CNF, EXW, Door TO Door.
2. Payment Conditions: T/T, L/C, Western Union.
3. Payment Situation: 30% deposit EPT, 70% harmony before delivery.
4. Shipping and delivery Time: fifteen-thirty daEPTafter deposit (if T/T).
5. Shipping: EPTy sea, by air and by categorical shipping
Firm information:
one.HangZhou EPTyi Electric Co., Ltd. is situated in EPTinEPTng EPTnomic DeveXiHu (West Lake) Dis.Hu (West Lake) Dis.ment Zone, XiHu (West Lake) Dis.hu (West Lake) Dis. District, HangZhou Town.
It is a skilled motor producing EPTrprise integrating design and style, generation and revenue.
two.The business holds important EPT and can style and make the EPT dimensions and can customize according to EPT requirements.
3.The company’s major items are window-fashion, cupboard, spEPT wall-mounted fan and other property-use air-conditioning motors
commercial air-conditioning motors
supporter coil complete selection of motors
air strength models with motors
enthusiasts
dryer with large temperature and pressure motors and Admirer
Ceiling air conditioning card EPT collection motor
new air device motor
duct blower motor
air-cooled (drinking water) heat pump module device motor
substantial static force supporter coil motor.
4.CARLYI branded motors have been accepted by CCC, ISO9001, CE, RoHS certification.
FAQ:
Q1: Are you factory?
A: Sure, we have been in planning and supplying exceptional motors for clients. Our manufacturing facility manufacturing is all unEPTISO9001 top quality administration method.
Q2: How EPT you could prepare samples?
A: Typically 3 daEPTif we have the sample in hand. If tailored one particular, about a week around
Q3: How about batch orEPTproduction?
A: Usually 15-thirty days, the personalized or recently deveXiHu (West Lake) Dis.Hu (West Lake) Dis.ed items may possibly consider more half month.
This fall: Do you examine the finished goods?
A: Of course, we do inspection in accordance to ISO9001 stXiHu (West Lake) Dis.Hu (West Lake) Dis.rd and dominated by our skilled QC staff.
Q5: What edge do you have?
A: For the motors, we have EPT sufficient of 18months ensure, and for the provider, we supply 24 hrs specialized assistance and barrier-cost-free communication.
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Our principal merchandise are Needle Roller bearings, Cylindrical Roller Bearings, Rod conclude Bearings, Spherical basic bearings, Monitor roller Bearings for Guideway, Roller Bearings, Blend Bearings for forklifts, Drinking water Pump Bearings, SNR Car Bearings and all kinds of Spherical Bearings. We can provide a complete-assortment of electrical power transmission merchandise like chains, sprockets and plate wheels, pulleys, gearboxes, motors, couplings, gears and racks. The group is concentrated on generating all variety of normal roller chains and sprockets, gears & gearboxes, this kind of as conveyor chain & sprockets , stainless steel chain, agricultural chain and has not just bought its merchandise all above china, but also bought far more than 65% goods to oversees, like Europe, The us, South-east Asia, and it also has established up storage logistics in areas like Europe.
The earlier mentioned pointed out specification is consultant specification,can also be designed and manufactured according to consumer needs.
Attributes:
Reversible plug for simple rotation
Swift set up
Energy productive
Silent procedure
EPTall bearing
Automated overload
Thermal protection
Higher efficiency, High dependability, Tiny vibration, Reduced sound
Software:
For professional spEPT out of doors fans and comparable.
Normal Define Dimensions:
Major technological information:
Type | Voltage | Frequency | Output | Present | Speed | Insulation | ||||||||||||||||||||||||||||||||||||||||||||||||||||||
V | Hz | W | A | r/min | class | |||||||||||||||||||||||||||||||||||||||||||||||||||||||
YDK-40-six | 220 | 50 | 40 | .fifty five | 850 | EPT | ||||||||||||||||||||||||||||||||||||||||||||||||||||||
YDK-sixty-six | 220 | 50 | 60 | .65 | 870 | EPT | ||||||||||||||||||||||||||||||||||||||||||||||||||||||
YDK-70-six | 220 | 50 | 70 | .85 | 850 | EPT | ||||||||||||||||||||||||||||||||||||||||||||||||||||||
YDK-80-six | 220 | fifty | 80 | .nine | 900/800 | EPT | ||||||||||||||||||||||||||||||||||||||||||||||||||||||
YDK-ninety-six | 220 | 50 | 90 | one | 850 | EPT | ||||||||||||||||||||||||||||||||||||||||||||||||||||||
YDK-a hundred-four | 220 | fifty | one hundred | .fifty five | 1100 | EPT | ||||||||||||||||||||||||||||||||||||||||||||||||||||||
Notes:
The earlier mentioned mentioned specification is representative specification,The specification can also be designed and created
according to buyers prerequisite.
The products of 100-120V,two hundred-240V,60Hz can also be provided as asked for.
We will not give EPT observe on adjustments,please contact our technological department for further details.
Conditions:
one. Trade Terms: FOEPT, CEPT, CNF, EXW, Doorway TO Doorway.
2. Payment Conditions: T/T, L/C, Western Union.
3. Payment Condition: thirty% deposit EPT, 70% harmony prior to delivery.
4. Delivery Time: fifteen-30 daEPTafter deposit (if T/T).
5. Delivery: EPTy sea, by air and by categorical shipping and delivery
Business info:
1.HangZhou EPTyi Electric powered Co., Ltd. is positioned in EPTinEPTng EPTnomic DeveXiHu (West Lake) Dis.Hu (West Lake) Dis.ment Zone, XiHu (West Lake) Dis.hu (West Lake) Dis. District, HangZhou City.
It is a specialist motor producing EPTrprise integrating layout, manufacturing and sales.
2.The business holds key EPT and can design and style and make the EPT sizes and can customise according to EPT specifications.
three.The company’s principal goods are window-style, cabinet, spEPT wall-mounted supporter and other house-use air-conditioning motors
commercial air-conditioning motors
supporter coil complete assortment of motors
air vitality units with motors
enthusiasts
dryer with high temperature and strain motors and Admirer
Ceiling air conditioning card EPT sequence motor
fresh air unit motor
duct blower motor
air-cooled (water) warmth pump module unit motor
higher static strain fan coil motor.
4.CARLYI branded motors have been accepted by CCC, ISO9001, CE, RoHS certification.
FAQ:
Q1: Are you factory?
A: Yes, we have been in creating and providing excellent motors for buyers. Our manufacturing unit creation is all unEPTISO9001 top quality administration technique.
Q2: How EPT you could prepare samples?
A: Normally three daEPTif we have the sample in hand. If personalized one particular, about a 7 days about
Q3: How about batch orEPTproduction?
A: Typically fifteen-thirty times, the personalized or newly deveXiHu (West Lake) Dis.Hu (West Lake) Dis.ed items could just take a lot more 50 % month.
Q4: Do you inspect the finished products?
A: Yes, we do inspection according to ISO9001 stXiHu (West Lake) Dis.Hu (West Lake) Dis.rd and dominated by our experienced QC staff.
Q5: What benefit do you have?
A: For the motors, we have EPT ample of 18months promise, and for the service, we provide 24 hours technological help and barrier-cost-free interaction.
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We will provide ideal solutions and higher top quality merchandise with all sincerity. Our goods are created by present day computerized equipment and equipment. Moreover, WE CAN Create Tailored VARIATORS, GEARED MOTORS, Electrical MOTORS AND OTHER HYDRAULIC Products According TO CUSTOMERS’ DRAWINGS.
NEP Top quality Performance CSA UL1004 Certificated Footed Footless Layout EPT/C A few Phase Induction AC Electric powered NEMA MG1 Motor for supporter pump blower
———————————————————————————————
Programs
Typical apps incEPT operations where constant or regular obligation is required. EPT torque procedure is ten:one, Variable torque operation is from zero to foundation velocity. High quality-performance motors are designed to preserve power above prolonged time period. Class F insulated, one.15 support issue.
Features
Minimal-drop electrical quality lamination metal. Forged iron frames, IP55 defense, double lip seal keeps dampness and contamination. Over dimensions bearing, spike resistant magnet wire, conduit box completely gasket and ground lug in conduit box. Stainless steel nameplate. C ampD face kits obtainable.
EPT Description
- Body size: 140 ~ 440
- Rated EPT: 1 to 250HP
- Voltage: 230V/460V, 575V
- Frequency: 60Hz
- Service factor: 1.fifteen
- Insulation class: F
- Efficiency stages: NEMA Top quality
- Enclosure: TEFC
- Poles: 2,4,6
- Diploma of defense: IP55
Info Sheet
Type | Output HP |
Frame | Conn. | Code | Entire load r/min |
Current at 460V | Torque | Effectiveness | EPT Element | ||||||||
Idle | Total load (A) |
Locked rotor (A) |
Complete load (LEPT-FT) |
Locked rotor % |
EPTreak down % |
Full load% | three/four load % |
one/2 load % |
Total load % |
three/4 load % |
one/2 load % |
||||||
NEP143T2-2 | one | 143T | 2Y/Y | K | 3495 | .seventy four | one.5 | nine.six | 1.50 | 220 | 265 | 77. | eighty one.08 | 78.29 | eighty two | 74.seventy five | 62.34 |
NEP143T3-two | 1.5 | 143T | 2Y/Y | K | 3490 | .87 | 2. | 13.eight | two.26 | 215 | 250 | eighty four. | 84.34 | eighty three.46 | eighty four | 79.twenty | 68.fifty nine |
NEP145T-2 | 2 | 145T | 2Y/Y | J | 3485 | .ninety | 2.six | eighteen.seven | 3.01 | 210 | 240 | eighty five.five | 86.16 | 85.91 | eighty five | eighty three.sixty one. | 74.sixty nine |
NEP143T2-four | 1 | 143T | 2Y/Y | K | 1745 | one.10 | one.6 | eleven. | three.01 | 280 | 300 | 85.five | eighty four.84 | 81.54 | 70 | sixty one.33 | forty eight.58 forty seven |
NEP145T1-4 | one.5 | 145T | 2Y/Y | K | 1735 | 1.32 | two.2 | fourteen.1 | 4.54 | 250 | 280 | 86.5 | 86.ninety three | eighty two.seventy seven | seventy four | 66.forty one | 53.42 |
NEP145T2-4 | 2 | 145T | 2Y/Y | J | 1730 | one.72 | two.9 | 18. | 6.07 | 245 | 270 | 86.five | 86.88 | 82.63 | seventy five | 67.63 | fifty four.57 |
NEP145T-six | 1 | 145T | 2Y/Y | J | 1155 | one.thirty | 1.seven | nine.eight | four.55 | 260 | 280 | 82.five | 81.ninety six | seventy seven.97 | 65 | 55.57 | forty two.55 |
NEP182T-two | three | 182T | 2Y/Y | J | 3530 | one.26 | 3.seven | 29.eight | 4.46 | two hundred | 230 | 86.five | 86.26 | 83.85 | 87 | eighty four.69 | seventy seven. |
NEP184T-two | five | 184T | 2Y/Y | H | 3520 | one.56 | six. | forty five.one | seven.46 | a hundred and eighty | 215 | 88.five | 88.75 | 87.64 | 88 | 85.51 | seventy eight.01 |
NEP182T-4 | 3 | 182T | 2Y/Y | J | 1760 | one.41 | three.six | 27. | eight.95 | 215 | 250 | 89.5 | ninety.06 | 88.51 | 86 | eighty one.seventy seven | seventy one.87 |
NEP184T-4 | 5 | 184T | 2Y/Y | H | 1755 | 2.11 | six.one | 40.two | fourteen.ninety six | 185 | 225 | 89.five | ninety.45 | 90.05 | 86 | 83.ninety three | 75.forty eight |
NEP182T-six | 1.five | 182T | 2Y/Y | H | 1180 | one.fifty three | 2.3 | 13.three | six.68 | a hundred ninety | 250 | 87.5 | 86.seventy seven | eighty four.twenty | 70 | 61.28 | forty eight.19 |
NEP184T-6 | 2 | 184T | 2Y/Y | J | 1180 | 1.98 | 3. | 18.one | 8.90 | 180 | 240 | 88.5 | 88. | eighty five.fifty two | 70 | 60.eighty four | 47.eighty |
NEP213T-2 | 7.five | 213T | 2 #9651/ #9651 | H | 3535 | 2.18 | eight.eight | 59.five | 11.14 | 250 | 290 | 89.five | 90.02 | 88.eighty five | 89 | 89.fifty two | 84.33 |
NEP215T-2 | 10 | 215T | two #9651/ #9651 | G | 3530 | two.fifty eight | eleven.seven | 76.5 | fourteen.88 | 240 | 280 | 90.two | ninety.79 | 89.57 .57 |
89 | 87.69 | 84.29 |
NEP213T-4 | seven.five | 213T | 2 #9651/ #9651 | G | 1765 | 3.35 | 9. | 56.9 | 22.32 | 250 | 280 | 91.seven | 92.23 | 90.ninety four | 85 | eighty two.forty one | seventy three.63 |
NEP215T-4 | 10 | 215T | two #9651/ #9651 | G | 1765 | 4.eighteen | twelve. | seventy seven.9 | 29.76 | 240 | 200 | ninety one.7 | 92.27 | 91.13 | 85 | 82.09 | seventy two.ninety eight |
NEP213T-6 | 3 | 213T | 2Y/Y | J | 1185 | 2.35 | four.2 | 28.four | thirteen.30 | 185 | 230 | 89.five | 89.35 | 87.seventy eight | seventy four | 66.83 | fifty five.17 |
NEP215T-6 | five | 215T | 2Y/Y | H | 1180 | three.41 | seven.one | 42.1 | 22.26 | one hundred seventy | 215 | 89.5 | 89.20 | 88.31 | 74 | sixty eight.4 | 57.ninety eight |
NEP254T-2 | 15 | 254T | two #9651/ #9651 | G | 3560 | 4.23 | seventeen.one | one hundred ten | 22.thirteen | 220 | 250 | ninety one. | ninety.83 | 89.twelve | ninety | ninety.fifty two | eighty five.sixty five |
NEP256T-two | 20 | 256T | 2 #9651/ #9651 | F | 3555 | four.ninety seven | 22.9 | one hundred forty | 29.fifty five | 220 | 250 | 91. | 91.16 | ninety.03 | 90 | 89.seventy one | eighty five.40 |
NEP254T-4 | fifteen | 254T | two #9651/ #9651 | G | 1780 | 5.04 | 17.9 | 104 | forty four.26 | one hundred eighty | 230 | 92.four | 93.12 | 92.86 | eighty five | 83.fifty five | seventy seven.seventy five |
Variety | Output HP |
Frame | Conn. | Code | Total load r/min |
Existing at 460V | Torque | Effectiveness | EPT Element | |||||||||||||
Idle | Entire load (A) |
Locked rotor (A) |
Total load (LEPT-FT) |
Locked rotor % |
EPTreak down % |
Entire load% | 3/4 load % |
one/two load % |
Complete load % |
three/4 load % |
one/two load % |
|||||||||||
NEP256T-4 | 20 | 256T | two #9651/ #9651 | G | 1780 | six.sixty two | 23.seven | 140 | 59.02 | a hundred and sixty | two hundred | ninety three. | ninety three.74 | 93.52 | eighty five | eighty three.33 | 77.39 | |||||
NEP254T-six | seven.five | 254T | two #9651/ #9651 | G | 1190 | 4.eighty two | 10.3 | fifty nine.three | 33.10 | 190 | 230 | 91. | ninety one.41 | ninety.fifty nine | 75 | 70.72 | sixty.96 | |||||
NEP256T-6 | 10 | 256T | 2 #9651/ #9651 | G | 1185 | six.ninety four | thirteen.7 | seventy seven.three | forty four.33 | a hundred and eighty | 220 | ninety one. | 91.59 | ninety.seventy one | seventy five | 70.39 | sixty.27 | |||||
NEP284TS-2 | 25 | 284TS | 2 #9651/ #9651 | F | 3560 | 7.twenty five | 28.4 | 161.2 | 36.89 | one hundred eighty | 220 | ninety one.7 | 91.97 | 89.28 | ninety | 89. | 84.88 | |||||
NEP286TS-two | 30 | 286TS | 2 #9651/ #9651 | F | 3560 | 7.68 | 34. | 181.5 | forty four.26 | a hundred and eighty | 220 | 91.seven | ninety one.72 | 90.07 | ninety | 89.six | eighty five.seventy eight | |||||
NEP284T-4 | 25 | 284T | 2 #9651/ #9651 | F | 1780 | ten.33 | 29.four | 156.8 five |
seventy three.seventy seven | one hundred eighty | 230 | ninety three.6 | ninety four.01 | ninety three.forty nine | 85 | 82.08 | 73.42 | |||||
NEP286T-4 | thirty | 286T | two #9651/ #9651 | F | 1780 | eleven.24 | 35.three | 178.4 | 88.53 | 175 | 220 | ninety three.six | 94.31 | 94.22 | eighty five | eighty two.seventy two | 75.73 | |||||
NEP284T-six | 15 | 284T | two #9651/ #9651 | G | 1185 | 8.27 | eighteen.nine | 103.5 | 66.49 | 170 | two hundred | 91.seven | 91.91 | ninety.92 | eighty one | seventy six.06 | sixty five.29 | |||||
NEP286T-6 | 20 | 286T | two #9651/ #9651 | F | 1185 | ten.39 | twenty five.2 | 132.2 | 88.sixty five | a hundred and seventy | 200 | ninety one.seven | ninety two.06 | 91.31 | 81 | 77.09 | sixty seven.one | |||||
NEP324TS-2 | forty | 324TS | 2 #9651/ #9651 | F | 3560 | eight.59 | 45. | 281.two | fifty nine.02 | two hundred | 225 | ninety two.four | 92.sixty two | ninety one.55 | 90 | 89.sixty nine | 86.33 | |||||
NEP326TS-two | fifty | 326TS | 2 #9651/ #9651 | F | 3560 | 10.sixty five | 55.9 | 355.7 | 73.77 | 200 | 225 | 93. | ninety three.331 | 92.88 | 90 | 89.35 | eighty five.71 | |||||
NEP324T-4 | forty | 324T | two #9651/ #9651 | F | 1775 | 11.78 | 45.two | 279.6 | 118.37 | 195 | 235 | 94.one | ninety four.81 | ninety four.76 | 88 | 86.37 | 81.forty five | |||||
NEP326T-4 | 50 | 326T | two #9651/ #9651 | F | 1775 | 14.19 | fifty six.3 | 355.4 | 147.96 | 195 | 235 | ninety four.5 | 95.seventeen | 95.18 | 88 | 86.seventy eight | eighty two.15 | |||||
NEP324T-six | twenty five | 324T | two #9651/ #9651 | F | 1175 | eight.forty seven | thirty.seven | 167.5 | 111.76 | one hundred seventy five | 220 | 93. | ninety three.fifty nine | 93.eighty two | 82 | eighty one.eighteen | 75.seventy five | |||||
NEP326T-6 | 30 | 326T | two #9651/ #9651 | E | 1175 | 9.96 | 36.8 | 195.nine | 134.11 | a hundred and seventy | 210 | 93. | 94.17 | 94.59 | 82 | eighty one.fifteen | 75.98 | |||||
NEP364TS-two | 60 | 364TS | two #9651/ #9651 | F | 3575 | eleven.fifty five | sixty six. | 398.5 | 88.16 | a hundred and sixty | 205 | 93.six | ninety three.seventy nine | 93.07 | ninety one | ninety.59 | 88.21 | |||||
NEP365TS-two | seventy five | 365TS | 2 #9651/ #9651 | F | 3575 | thirteen.10 | 82.four | 482.five | one hundred ten.twenty | a hundred and sixty | 205 | 93.6 | ninety three.84 | 93.44 | 91 | ninety.95 | 89.87 | |||||
NEP364T-four | sixty | 364T | two #9651/ #9651 | G | 1785 | eighteen.02 | 68. | 427.five | 176.fifty six | one hundred seventy five | 210 | 95. | 95.4 | ninety five.081 | 87 | 86.11 | 80.seventy three | |||||
NEP365T-four | seventy five | 365T | 2 #9651/ #9651 | G | 1785 | 21.eighty four | eighty four.six | 497.6 | 220.70 | 170 | 200 | 95.four | ninety six.01 | ninety five.ninety one | 87 | 86.26 | eighty one.96 | |||||
NEP364T-6 | 40 | 364T | 2 #9651/ #9651 | F | 1190 | fourteen.67 | forty eight.5 | 247.one | 176.fifty six | 150 | two hundred | 94.one | 94.94 | 94.35 | 82 | eighty one.seventy four | seventy five.22 | |||||
NEP365T-6 | 50 | 365T | two #9651/ #9651 | G | 1190 | sixteen.ninety two | sixty.7 | 298.7 | 220.70 | 150 | 200 | ninety four.one | 94.83 | ninety four.28 | eighty two | eighty.48 | seventy five.03 | |||||
NEP405TS-two | 100 | 405TS | 2 #9651/ #9651 | F | 3575 | 22.four | 109.3 | 667 | 146.ninety three | one hundred eighty | 250 | 94.1 | 94.seventeen | 94.01 | 91 | ninety two.seventy four | 90.20 | |||||
NEP405T-4 | 100 | 405T | two #9651/ #9651 | F | 1785 | 33. | 112.eight | 674 | 294.27 | a hundred and eighty | 250 | ninety five.4 | 94.eighty one | 94.39 | 87 | 86.20 | seventy nine.69 | |||||
NEP404-six | 60 | 404T | two #9651/ #9651 | F | 1190 | 21.6 | 69.one | 406 | 264.eighty four | one hundred ninety | 240 | ninety four.five | 94.43 | 94.09 | 86 | eighty four.955 | seventy eight. | |||||
NEP405T-six | 75 | 405T | 2 #9651/ #9651 | G | 1190 | 25.8 | 86.four | 531 | 331.05 | a hundred ninety | 230 | 94.5 | ninety four.69 | ninety four.32 | 86 | 85.a hundred and fifty five | seventy eight.464 | |||||
NEP444TS-2 | 125 | 444TS | Delta | F | 3580 | 24.1 | one hundred thirty five.four | 810 | 183.40 | 165 | 230 | ninety five. | 95.01 | 94.00 | ninety one | 92.01 | 89.01 | |||||
NEP445TS-two | a hundred and fifty | 445TS | Delta | F | 3580 | 35.eight | 162.five | 980 | 220.08 | a hundred and sixty | 230 | 95. | ninety five.05 | ninety three.eighty | 91 | 92.08 | 89.38 | |||||
NEP447TS-2 | 200 | 447TS | Delta | F | 3580 | 36. | 213.four | 1284 | 293.44 | 170 | 220 | 95.four | ninety five.12 | ninety three.eighty one | ninety two | ninety two.34 | 90.54 | |||||
NEP449TS-two | 250 | 449TS | Delta | F | 3580 | 33.5 | 265.six | 1550 | 366.eighty | 185 | 220 | ninety five.eight | ninety five.forty one | ninety four.thirty | ninety two | 92.forty one | ninety one.03 | |||||
NEP444T-4 | 125 | 444T | two- Delta | F | 1790 | 32.nine | 139.4 | 828 | 366.80 | one hundred eighty | 240 | 95.four | ninety five.03 | ninety four.sixty seven | 88 | 89.fifty | eighty five.07 | |||||
NEP445T-four | one hundred fifty | 445T | two- Delta | F | 1790 | 36.four | 166.six | 982 | 440.16 | one hundred seventy | 240 | ninety five.8 | 95.28 | ninety four.ninety four | 88 | 90.34 | 86.60 | |||||
NEP447T-4 | two hundred | 447T | 2- Delta | F | 1790 | 42.one | 221.2 | 1325 | 586.89 | 185 | 240 | 96.2 | ninety five.59 | 95.23 | 88 | ninety.forty seven | 86.70 | |||||
NEP449T-four | 250 | 449T | two- Delta | F | 1790 | 46.6 | 276.5 | 1667 | 733.sixty one | 185 | 230 | 96.two | ninety five.eighty two | 95.49 | 88 | ninety one.thirteen | 88.01 | |||||
NEP444T-6 | one hundred | 444T | 2- Delta | F | 1190 | 36.five | 114.6 | 691 | 441.40 | a hundred and eighty | 230 | ninety five. | ninety four.seventy seven | 94.28 | 86 | 83.twenty five | 75.fifty four | |||||
NEP445T-6 | one hundred twenty five | 445T | 2- Delta | F | 1190 | 40.four | 143.three | 852 | 551.seventy five | a hundred and eighty | 230 | 95. | 95.02 | ninety four.fifty seven | 86 | 84.28 | 77.29 | |||||
NEP447T-six | 150 | 447T | 2- Delta | F | 1190 | forty two.5 | a hundred and seventy.five | 1041 | 662.ten | a hundred and seventy | 230 | ninety five.8 | ninety five.28 | 94.seventy eight | 86 | eighty five.25 | seventy eight.seventy five | |||||
NEP449T-6 | two hundred | 449T | two- Delta | F | 1190 | fifty.eight | 227.3 | 1376 | 882.eighty | a hundred and seventy | 220 | ninety five.eight | ninety five.49 | 95.06 | 86 | 86.06 | 80.34 |
Observe: For current at 230V, several earlier mentioned values by two.
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