Product Description
Product Description
RM25 12V DC Built-in Rechargeable Lithium Battery Solar Panel Smart CHINAMFG ZigBee / Wifi Tubular Motor for blinds
We’re a leading curtain motor supplier in China, we always focus on motor and remote control system, we are especially professional at curtain motor, tubular motor and remote control system. Our products has built-in CHINAMFG module and are able to connect with GOOGLE HOME, echo dot .we also can work with the smart home system which adopts KNX,RS485,zigbee.
Product Type |
DC Tubular Motor |
Product Series |
RM25 LE Series |
Product Code |
RM25-LEC-W1-1.1/20, 1.5/20 |
Built In |
Lithium battery |
Battery capacity |
2600mAh |
Rated Voltage (V) |
12 |
Rated Current (A) |
0.9 |
Rated Power (W) |
10.8 |
Rated Torque (Nm) |
1.1 |
Rated Speed(rpm) |
20-28 |
Running Noise (dB) |
<38 |
Running Time (min) |
6 |
RF frequency(MHz) |
433.92 |
Protection Grade |
IP40 |
Insulation Grade |
B |
Length L1 (mm) |
587/579 |
Advantage :
1) With remote control, TuyaAPP can connect to Wifi, Google and Alexa
2) 25mm, 28mm, 35mm lithium battery motor stock is sufficient, quality assurance for 5 years.
3) Quite Operation , Customized service , Multi type control , Electronic limit , Obstacel detection , Aging test more than 10000 times .
Detailed Photos
Application
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After-sales Service: | 24 Hours After-Sales Service |
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Warranty: | 3 Years |
Kind: | Roman |
Samples: |
US$ 50/Piece
1 Piece(Min.Order) | Order Sample |
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Customization: |
Available
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Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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Payment Method: |
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Initial Payment Full Payment |
Currency: | US$ |
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Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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How do variable frequency drives (VFDs) impact the performance of AC motors?
Variable frequency drives (VFDs) have a significant impact on the performance of AC motors. A VFD, also known as a variable speed drive or adjustable frequency drive, is an electronic device that controls the speed and torque of an AC motor by varying the frequency and voltage of the power supplied to the motor. Let’s explore how VFDs impact AC motor performance:
- Speed Control: One of the primary benefits of using VFDs is the ability to control the speed of AC motors. By adjusting the frequency and voltage supplied to the motor, VFDs enable precise speed control over a wide range. This speed control capability allows for more efficient operation of the motor, as it can be operated at the optimal speed for the specific application. It also enables variable speed operation, where the motor speed can be adjusted based on the load requirements, resulting in energy savings and enhanced process control.
- Energy Efficiency: VFDs contribute to improved energy efficiency of AC motors. By controlling the motor speed based on the load demand, VFDs eliminate the energy wastage that occurs when motors run at full speed even when the load is light. The ability to match the motor speed to the required load reduces energy consumption and results in significant energy savings. In applications where the load varies widely, such as HVAC systems, pumps, and fans, VFDs can provide substantial energy efficiency improvements.
- Soft Start and Stop: VFDs offer soft start and stop capabilities for AC motors. Instead of abruptly starting or stopping the motor, which can cause mechanical stress and electrical disturbances, VFDs gradually ramp up or down the motor speed. This soft start and stop feature reduces mechanical wear and tear, extends the motor’s lifespan, and minimizes voltage dips or spikes in the electrical system. It also eliminates the need for additional mechanical devices, such as motor starters or brakes, improving overall system reliability and performance.
- Precision Control and Process Optimization: VFDs enable precise control over AC motor performance, allowing for optimized process control in various applications. The ability to adjust motor speed and torque with high accuracy enables fine-tuning of system parameters, such as flow rates, pressure, or temperature. This precision control enhances overall system performance, improves product quality, and can result in energy savings by eliminating inefficiencies or overcompensation.
- Motor Protection and Diagnostic Capabilities: VFDs provide advanced motor protection features and diagnostic capabilities. They can monitor motor operating conditions, such as temperature, current, and voltage, and detect abnormalities or faults in real-time. VFDs can then respond by adjusting motor parameters, issuing alerts, or triggering shutdowns to protect the motor from damage. These protection and diagnostic features help prevent motor failures, reduce downtime, and enable predictive maintenance, resulting in improved motor reliability and performance.
- Harmonics and Power Quality: VFDs can introduce harmonics into the electrical system due to the switching nature of their operation. Harmonics are undesirable voltage and current distortions that can impact power quality and cause issues in the electrical distribution network. However, modern VFDs often include built-in harmonic mitigation measures, such as line reactors or harmonic filters, to minimize harmonics and ensure compliance with power quality standards.
In summary, VFDs have a profound impact on the performance of AC motors. They enable speed control, enhance energy efficiency, provide soft start and stop capabilities, enable precision control and process optimization, offer motor protection and diagnostic features, and address power quality considerations. The use of VFDs in AC motor applications can lead to improved system performance, energy savings, increased reliability, and enhanced control over various industrial and commercial processes.
Can you explain the difference between single-phase and three-phase AC motors?
In the realm of AC motors, there are two primary types: single-phase and three-phase motors. These motors differ in their construction, operation, and applications. Let’s explore the differences between single-phase and three-phase AC motors:
- Number of Power Phases: The fundamental distinction between single-phase and three-phase motors lies in the number of power phases they require. Single-phase motors operate using a single alternating current (AC) power phase, while three-phase motors require three distinct AC power phases, typically referred to as phase A, phase B, and phase C.
- Power Supply: Single-phase motors are commonly connected to standard residential or commercial single-phase power supplies. These power supplies deliver a voltage with a sinusoidal waveform, oscillating between positive and negative cycles. In contrast, three-phase motors require a dedicated three-phase power supply, typically found in industrial or commercial settings. Three-phase power supplies deliver three separate sinusoidal waveforms with a specific phase shift between them, resulting in a more balanced and efficient power delivery system.
- Starting Mechanism: Single-phase motors often rely on auxiliary components, such as capacitors or starting windings, to initiate rotation. These components help create a rotating magnetic field necessary for motor startup. Once the motor reaches a certain speed, these auxiliary components may be disconnected or deactivated. Three-phase motors, on the other hand, typically do not require additional starting mechanisms. The three-phase power supply inherently generates a rotating magnetic field, enabling self-starting capability.
- Power and Torque Output: Three-phase motors generally offer higher power and torque output compared to single-phase motors. The balanced nature of three-phase power supply allows for a more efficient distribution of power across the motor windings, resulting in increased performance capabilities. Three-phase motors are commonly used in applications requiring high power demands, such as industrial machinery, pumps, compressors, and heavy-duty equipment. Single-phase motors, with their lower power output, are often used in residential appliances, small commercial applications, and light-duty machinery.
- Efficiency and Smoothness of Operation: Three-phase motors typically exhibit higher efficiency and smoother operation than single-phase motors. The balanced three-phase power supply helps reduce electrical losses and provides a more constant and uniform torque output. This results in improved motor efficiency, reduced vibration, and smoother rotation. Single-phase motors, due to their unbalanced power supply, may experience more pronounced torque variations and slightly lower efficiency.
- Application Suitability: The choice between single-phase and three-phase motors depends on the specific application requirements. Single-phase motors are suitable for powering smaller appliances, such as fans, pumps, household appliances, and small tools. They are commonly used in residential settings where single-phase power is readily available. Three-phase motors are well-suited for industrial and commercial applications that demand higher power levels and continuous operation, including large machinery, conveyors, elevators, air conditioning systems, and industrial pumps.
It’s important to note that while single-phase and three-phase motors have distinct characteristics, there are also hybrid motor designs, such as dual-voltage motors or capacitor-start induction-run (CSIR) motors, which aim to bridge the gap between the two types and offer flexibility in certain applications.
When selecting an AC motor, it is crucial to consider the specific power requirements, available power supply, and intended application to determine whether a single-phase or three-phase motor is most suitable for the task at hand.
How does the speed control mechanism work in AC motors?
The speed control mechanism in AC motors varies depending on the type of motor. Here, we will discuss the speed control methods used in two common types of AC motors: induction motors and synchronous motors.
Speed Control in Induction Motors:
Induction motors are typically designed to operate at a constant speed determined by the frequency of the AC power supply and the number of motor poles. However, there are several methods for controlling the speed of induction motors:
- Varying the Frequency: By varying the frequency of the AC power supply, the speed of an induction motor can be adjusted. This method is known as variable frequency drive (VFD) control. VFDs convert the incoming AC power supply into a variable frequency and voltage output, allowing precise control of motor speed. This method is commonly used in industrial applications where speed control is crucial, such as conveyors, pumps, and fans.
- Changing the Number of Stator Poles: The speed of an induction motor is inversely proportional to the number of stator poles. By changing the connections of the stator windings or using a motor with a different pole configuration, the speed can be adjusted. However, this method is less commonly used and is typically employed in specialized applications.
- Adding External Resistance: In some cases, external resistance can be added to the rotor circuit of an induction motor to control its speed. This method, known as rotor resistance control, involves inserting resistors in series with the rotor windings. By varying the resistance, the rotor current and torque can be adjusted, resulting in speed control. However, this method is less efficient and is mainly used in specific applications where precise control is not required.
Speed Control in Synchronous Motors:
Synchronous motors offer more precise speed control compared to induction motors due to their inherent synchronous operation. The following methods are commonly used for speed control in synchronous motors:
- Adjusting the AC Power Frequency: Similar to induction motors, changing the frequency of the AC power supply can control the speed of synchronous motors. By adjusting the power frequency, the synchronous speed of the motor can be altered. This method is often used in applications where precise speed control is required, such as industrial machinery and processes.
- Using a Variable Frequency Drive: Variable frequency drives (VFDs) can also be used to control the speed of synchronous motors. By converting the incoming AC power supply into a variable frequency and voltage output, VFDs can adjust the motor speed with high accuracy and efficiency.
- DC Field Control: In some synchronous motors, the rotor field is supplied by a direct current (DC) source, allowing for precise control over the motor’s speed. By adjusting the DC field current, the magnetic field strength and speed of the motor can be controlled. This method is commonly used in applications that require fine-tuned speed control, such as industrial processes and high-performance machinery.
These methods provide different ways to control the speed of AC motors, allowing for flexibility and adaptability in various applications. The choice of speed control mechanism depends on factors such as the motor type, desired speed range, accuracy requirements, efficiency considerations, and cost constraints.
editor by CX 2024-04-24
China factory Low Price Made In China electric servo fan Small tubular Ac Motor vacuum pump booster
Product Description
Product Description
Our Motor Company is specialized in Mini AC Gear Motor. At present, our main products are: Gear Motor, Three phase Motor, Speed Control Motor, Brake Motor, Damping Motor, Torque Motor, DC Gear Motor and so on. They spreadly use for Machine Tools, Textile Machinery, Medical Appliance, Conveying Machine, Printing Mechanism, Food Machinery, Vending Machine, Packing Machinery, Gumming Machine and so on.
Our term is: Quality as foundation, reputation first, seeking for outstanding
Position. Excellent equipment, advanced procedure, scientific management, modern
Test method. We provide all customers both at home and abroad. With our top quality products, favorable price and sincere service. We hope that we have a good Cooperation with you to develop both sides business together.
Model | Power | Voltage | Frequency | Current | Rated Torque | Rated Speed |
3IK15GN-C | 15W | 220V | 50Hz | 0.18 | 0.125N.m | 1200rpm |
Other Related Products
Click here to find what you are looking for:
Company Profile
FAQ
Q: What’re your main products?
A: We currently produce Brushed Dc Motors, Brushed Dc Gear Motors, Planetary Dc Gear Motors, Brushless Dc Motors, Stepper motors, Ac Motors and High Precision Planetary Gear Box etc. You can check the specifications for above motors on our website and you can email us to recommend needed motors per your specification too.
Q: How to select a suitable motor?
A:If you have motor pictures or drawings to show us, or you have detailed specs like voltage, speed, torque, motor size, working mode of the motor, needed lifetime and noise level etc, please do not hesitate to let us know, then we can recommend suitable motor per your request accordingly.
Q: Do you have a customized service for your standard motors?
A: Yes, we can customize per your request for the voltage, speed, torque and shaft size/shape. If you need additional wires/cables soldered on the terminal or need to add connectors, or capacitors or EMC we can make it too.
Q: Do you have an individual design service for motors?
A: Yes, we would like to design motors individually for our customers, but it may need some mold developing cost and design charge.
Q: What’s your lead time?
A: Generally speaking, our regular standard product will need 15-30days, a bit longer for customized products. But we are very flexible on the lead time, it will depend on the specific orders.
Please contact us if you have detailed requests, thank you !
/* 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: | Machine Tool |
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Speed: | Variable Speed |
Number of Stator: | Single-Phase |
Function: | Driving |
Casing Protection: | Closed Type |
Number of Poles: | 2 |
Customization: |
Available
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What role does the controller play in the overall performance of a servo motor?
The controller plays a crucial role in the overall performance of a servo motor system. It is responsible for monitoring and regulating the motor’s operation to achieve the desired motion and maintain system stability. Let’s explore in detail the role of the controller in the performance of a servo motor:
1. Motion Control:
The controller is responsible for generating precise control signals that dictate the motor’s speed, torque, and position. It receives input commands from the user or higher-level control system and translates them into appropriate control signals for the servo motor. By accurately controlling the motor’s motion, the controller enables precise positioning, smooth acceleration and deceleration, and the ability to follow complex trajectories. The controller’s effectiveness in generating accurate and responsive control signals directly impacts the motor’s motion control capabilities.
2. Feedback Control:
The controller utilizes feedback from position sensors, such as encoders, to monitor the motor’s actual position, speed, and other parameters. It compares the desired motion profile with the actual motor behavior and continuously adjusts the control signals to minimize any deviations or errors. This closed-loop feedback control mechanism allows the controller to compensate for disturbances, variations in load conditions, and other factors that may affect the motor’s performance. By continuously monitoring and adjusting the control signals based on feedback, the controller helps maintain accurate and stable motor operation.
3. PID Control:
Many servo motor controllers employ Proportional-Integral-Derivative (PID) control algorithms to regulate the motor’s behavior. PID control calculates control signals based on the error between the desired setpoint and the actual motor response. The proportional term responds to the present error, the integral term accounts for accumulated past errors, and the derivative term considers the rate of change of the error. By tuning the PID parameters, the controller can achieve optimal performance in terms of response time, stability, and steady-state accuracy. Properly configured and tuned PID control greatly influences the servo motor’s ability to follow commands accurately and efficiently.
4. Trajectory Planning:
In applications requiring complex motion profiles or trajectories, the controller plays a vital role in trajectory planning. It determines the optimal path and speed profile for the motor to follow, taking into account constraints such as acceleration limits, jerk limits, and mechanical limitations. The controller generates the required control signals to achieve the desired trajectory, ensuring smooth and precise motion. Effective trajectory planning by the controller enhances the motor’s performance in applications that involve intricate or high-speed movements.
5. System Monitoring and Protection:
The controller monitors various parameters of the servo motor system, including temperature, current, voltage, and other diagnostic information. It incorporates protective measures to prevent damage or excessive stress on the motor. The controller can implement safety features such as overcurrent protection, over-temperature protection, and fault detection mechanisms. By actively monitoring and safeguarding the motor and the system, the controller helps prevent failures, prolongs the motor’s lifespan, and ensures safe and reliable operation.
6. Communication and Integration:
The controller facilitates communication and integration with other components or systems within the overall automation setup. It may support various communication protocols, such as Ethernet, CAN bus, or fieldbus protocols, enabling seamless integration with higher-level control systems, human-machine interfaces (HMIs), or other peripheral devices. The controller’s ability to efficiently exchange data and commands with other system components allows for coordinated and synchronized operation, enhancing the overall performance and functionality of the servo motor system.
In summary, the controller plays a vital role in the overall performance of a servo motor system. It enables precise motion control, utilizes feedback for closed-loop control, implements PID control algorithms, plans complex trajectories, monitors system parameters, and facilitates communication and integration. The controller’s capabilities and effectiveness directly impact the motor’s performance in terms of accuracy, responsiveness, stability, and overall system efficiency.
Can you explain the concept of torque and speed in relation to servo motors?
Torque and speed are two essential parameters in understanding the performance characteristics of servo motors. Let’s explore these concepts in relation to servo motors:
Torque:
Torque refers to the rotational force produced by a servo motor. It determines the motor’s ability to generate rotational motion and overcome resistance or load. Torque is typically measured in units of force multiplied by distance, such as Nm (Newton-meter) or oz-in (ounce-inch).
The torque output of a servo motor is crucial in applications where the motor needs to move or control a load. The motor must provide enough torque to overcome the resistance or friction in the system and maintain the desired position or motion. Higher torque allows the motor to handle heavier loads or more challenging operating conditions.
It is important to note that the torque characteristics of a servo motor may vary depending on the speed or position of the motor. Manufacturers often provide torque-speed curves or torque-position curves, which illustrate the motor’s torque capabilities at different operating points. Understanding these curves helps in selecting a servo motor that can deliver the required torque for a specific application.
Speed:
Speed refers to the rotational velocity at which a servo motor operates. It indicates how fast the motor can rotate and how quickly it can achieve the desired position or motion. Speed is typically measured in units of revolutions per minute (RPM) or radians per second (rad/s).
The speed of a servo motor is crucial in applications that require rapid movements or high-speed operations. It determines the motor’s responsiveness and the system’s overall performance. Different servo motors have different speed capabilities, and the maximum achievable speed is often specified by the manufacturer.
It is worth noting that the speed of a servo motor may also affect its torque output. Some servo motors exhibit a phenomenon known as “speed-torque curve,” where the motor’s torque decreases as the speed increases. This behavior is influenced by factors such as motor design, winding resistance, and control algorithms. Understanding the speed-torque characteristics of a servo motor is important for selecting a motor that can meet the speed requirements of the application while maintaining sufficient torque.
Overall, torque and speed are interrelated parameters that determine the performance capabilities of a servo motor. The torque capability determines the motor’s ability to handle loads, while the speed capability determines how quickly the motor can achieve the desired motion. When selecting a servo motor, it is essential to consider both the torque and speed requirements of the application to ensure that the motor can deliver the desired performance.
What are the key advantages of using servo motors in industrial applications?
Servo motors offer several key advantages that make them highly beneficial for a wide range of industrial applications. Here are some of the main advantages of using servo motors:
1. Precise Positioning:
Servo motors excel at precise positioning control. They can accurately move to specific angles or positions with high repeatability. This level of precision is crucial in applications where accurate and consistent positioning is required, such as robotics, CNC machining, and assembly lines.
2. High Torque at Various Speeds:
Servo motors are designed to deliver high torque output across a range of speeds. They can generate significant torque even at low speeds, enabling efficient operation in applications that require both high torque and precise control, such as lifting heavy loads or performing intricate movements.
3. Fast Response Times:
Servo motors have fast response times, meaning they can quickly accelerate, decelerate, and change direction in response to control signals. This responsiveness is essential in applications where rapid and dynamic motion control is needed, such as industrial automation, robotics, and production line equipment.
4. Closed-Loop Control:
Servo motors operate in a closed-loop control system, where feedback from position sensors is continuously used to adjust the motor’s behavior. This feedback control mechanism enables accurate tracking of the desired position and compensates for any disturbances or variations that may occur during operation. It enhances the motor’s accuracy, stability, and performance.
5. Wide Range of Sizes and Power Ratings:
Servo motors are available in a wide range of sizes and power ratings, making them suitable for diverse industrial applications. Whether it’s a small motor for precision tasks or a large motor for heavy-duty operations, there are servo motor options to meet various requirements.
6. Energy Efficiency:
Servo motors are designed to be energy-efficient. They typically have high power density, which means they can deliver a significant amount of torque per unit of size and weight. This efficiency helps reduce power consumption, lowers operating costs, and contributes to a greener and more sustainable industrial environment.
7. Flexibility and Adaptability:
Due to their versatility, servo motors can be easily integrated into different systems and applications. They can be combined with various control systems, sensors, and communication protocols to provide seamless integration and compatibility with existing industrial setups. This flexibility allows for customized and scalable solutions tailored to specific industrial requirements.
8. Durability and Reliability:
Servo motors are known for their durability and reliability, even in demanding industrial environments. They are built to withstand harsh conditions such as high temperatures, vibrations, and dust. This robust construction ensures long-term operation and minimizes downtime, contributing to increased productivity and reduced maintenance costs.
In summary, the key advantages of using servo motors in industrial applications include precise positioning, high torque at various speeds, fast response times, closed-loop control for accuracy and stability, a wide range of sizes and power ratings, energy efficiency, flexibility, and durability. These advantages make servo motors highly valuable for industries that require precise motion control, such as robotics, manufacturing, automation, CNC machining, and many others.
editor by CX 2024-03-28
China supplier 92mm Tubular Motor, AC Motor for Roller Door, Garage Door, Industry Door. vacuum pump design
Product Description
Tubular motor 92mm
Code: | Type: | |
RS-RM92 | Standard type | Manual type |
Rollmax shutter component Co.,Ltd estabalised in 2012, is a professional roller shutter component manufacturer specialized in innovation,developing,designing and producing all kinds of the roller shutter,roller door,garage door,awnings,roller blinds accessories and other related products for manual and motorized system.
Main products like aluminium side frame,cover box,handles,cardan joint,plastic and metal caps,galvanized tube,crank wheel,coiler,switch also the complete roller shutter set.
Our workshop line introduced advanced technology, imported advanced equipment,with the plastic injection machine,aluminium die casting machine,galvanized
tube machine and punching machine.all products with high quality and competitive price.
Employs experienced technical and management personnel,features high technical capabilities and strictly quality control procedures.
Goods sell well in Europe,Middle east,Australia,North and South America market with good reputation.
We located in HangZhou,China,an important economic hub and port city
,convenient for sea and air transportation from HangZhou or ZheJiang .
Which is a a fast-growing city.as well the center of the mechanical and electronic industry,has the big advantage for the home automation system.
With the efforts and supports of all our employees, we will do our best to provide our customers with more high-quality products and more efficient service.
We stick to the principle of “quality first, service first, continuous improvement and innovation to meet the customers” for the management and “zero defect, zero complaints” as the quality objective.
Our mission is “Integrity and innovation are the soul and spirit.”
Welcome to visit us CHINAMFG shutter component!
Application: | Universal |
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Speed: | High Speed |
Number of Stator: | Single-Phase |
Samples: |
US$ 85/Piece
1 Piece(Min.Order) | Order Sample |
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Customization: |
Available
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Estimated freight per unit. |
about shipping cost and estimated delivery time. |
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Payment Method: |
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Initial Payment Full Payment |
Currency: | US$ |
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Return&refunds: | You can apply for a refund up to 30 days after receipt of the products. |
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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.
Where can individuals or businesses find reliable information on selecting, installing, and maintaining AC motors?
When seeking information on selecting, installing, and maintaining AC motors, individuals and businesses can refer to various reliable sources. These sources provide valuable guidance, recommendations, and best practices related to AC motors. Here are some places where one can find reliable information:
- Manufacturer’s Documentation: AC motor manufacturers often provide detailed documentation, including product catalogs, technical specifications, installation guides, and maintenance manuals. These documents offer specific information about their motors, such as performance characteristics, electrical requirements, mounting instructions, and recommended maintenance procedures. Manufacturers’ websites are a common source for accessing these resources.
- Industry Associations: Industry associations related to electrical engineering, motor manufacturing, or specific applications (e.g., HVAC, pumps, or industrial machinery) can be excellent resources for reliable information. These associations often publish technical articles, guidelines, and standards that cover a wide range of topics, including motor selection, installation practices, efficiency standards, and maintenance recommendations. Examples of such associations include the National Electrical Manufacturers Association (NEMA), the Institute of Electrical and Electronics Engineers (IEEE), and the Air Conditioning, Heating, and Refrigeration Institute (AHRI).
- Professional Electricians and Engineers: Consulting with professional electricians or electrical engineers who specialize in motor applications can provide valuable insights. These professionals possess practical knowledge and experience in selecting, installing, and maintaining AC motors. They can offer personalized advice based on specific project requirements and industry best practices.
- Energy Efficiency Programs and Agencies: Energy efficiency programs and agencies, such as government departments, utility companies, or environmental organizations, often provide resources and guidance on energy-efficient motor selection and operation. These programs may offer information on motor efficiency standards, rebate programs for high-efficiency motors, and energy-saving practices. Examples include the U.S. Department of Energy (DOE) and its Energy Star program.
- Online Technical Forums and Communities: Online forums and communities focused on electrical engineering, motor applications, or specific industries can be valuable sources of information. Participating in these forums allows individuals and businesses to interact with experts, discuss motor-related topics, and seek advice from professionals and enthusiasts who have firsthand experience with AC motors.
- Books and Publications: Books and technical publications dedicated to electrical engineering, motor technology, or specific applications can provide comprehensive information on AC motors. These resources cover topics ranging from motor theory and design principles to practical installation techniques and maintenance procedures. Libraries, bookstores, and online retailers offer a wide selection of relevant publications.
When accessing information from these sources, it is important to ensure that the information is up-to-date, reliable, and relevant to the specific application or requirements. Consulting multiple sources and cross-referencing information can help verify accuracy and establish a well-rounded understanding of AC motor selection, installation, and maintenance.
Are there different types of AC motors, and what are their specific applications?
Yes, there are different types of AC motors, each with its own design, characteristics, and applications. The main types of AC motors include:
- Induction Motors: Induction motors are the most commonly used type of AC motor. They are robust, reliable, and suitable for a wide range of applications. Induction motors operate based on the principle of electromagnetic induction. They consist of a stator with stator windings and a rotor with short-circuited conductive bars or coils. The rotating magnetic field produced by the stator windings induces currents in the rotor, creating a magnetic field that interacts with the stator field and generates torque. Induction motors are widely used in industries such as manufacturing, HVAC systems, pumps, fans, compressors, and conveyor systems.
- Synchronous Motors: Synchronous motors are another type of AC motor commonly used in applications that require precise speed control. They operate at synchronous speed, which is determined by the frequency of the AC power supply and the number of motor poles. Synchronous motors have a rotor with electromagnets that are magnetized by direct current, allowing the rotor to lock onto the rotating magnetic field of the stator and rotate at the same speed. Synchronous motors are often used in applications such as industrial machinery, generators, compressors, and large HVAC systems.
- Brushless DC Motors: While the name suggests “DC,” brushless DC motors are actually driven by AC power. They utilize electronic commutation instead of mechanical brushes for switching the current in the motor windings. Brushless DC motors offer high efficiency, low maintenance, and precise control over speed and torque. They are commonly used in applications such as electric vehicles, robotics, computer disk drives, aerospace systems, and consumer electronics.
- Universal Motors: Universal motors are versatile motors that can operate on both AC and DC power. They are designed with a wound stator and a commutator rotor. Universal motors offer high starting torque and can achieve high speeds. They are commonly used in applications such as portable power tools, vacuum cleaners, food mixers, and small appliances.
- Shaded Pole Motors: Shaded pole motors are simple and inexpensive AC motors. They have a single-phase stator and a squirrel cage rotor. Shaded pole motors are characterized by low starting torque and relatively low efficiency. Due to their simple design and low cost, they are commonly used in applications such as small fans, refrigeration equipment, and appliances.
These are some of the main types of AC motors, each with its unique features and applications. The selection of an AC motor type depends on factors such as the required torque, speed control requirements, efficiency, cost, and environmental conditions. Understanding the specific characteristics and applications of each type allows for choosing the most suitable motor for a given application.
editor by CX 2023-12-07
China Tubular Motor 45mm Standard 45S 10Nm for Control Internal and External Roller Blinds Shutters Sunblinds Screens Motores Tubulare ac motor
Guarantee: 5 several years
Product Variety: YH45
Type: Tubular motor
Frequency: 50/60HZ, 50Hz or 60Hz
Shield Attribute: IP44
AC Voltage: 110V 120V or 220V 230V, 110V 120V or 220V 230V
Colour: Purple, Grey or OEM
Diamater: 45mm
Restrict: Mechanic Limit
Torque: 10N.m
Application: Roller Shutter, Blinds, Shades, projection screen, Awning
Keywords: forty five Tubular Motor
Motor sort: 45mm Normal
Defense class: IP44
Packaging Information: Standard export carton packing
Items Description Specifications
Motor tube diameter | 45mm tubular motor | Voltage/Frequency | 230V/50Hz 120V/60Hz |
Motor model | YH45 | ||
Rated torque | 10N.m 20N.m 30N.m 40N.m 50N.m | Motor variety | Standard Mechanic Suport Brief Handbook Radio Radio Manual Really Radio Wifi Electronic Digital Wifi DC Created-in Battery |
Motor Velocity | 15RPM 18RPM 13RPM 12RPM 13RPM | ||
Protection Rating | IP44 | Frequency(MHz) | 433 |
How to Assemble a Planetary Motor
A Planetary Motor uses multiple planetary surfaces to produce torque and rotational speed. The planetary system allows for a wide range of gear reductions. Planetary systems are particularly effective in applications where higher torques and torque density are needed. As such, they are a popular choice for electric vehicles and other applications where high-speed mobility is required. Nevertheless, there are many benefits associated with using a planetary motor. Read on to learn more about these motors.
VPLite
If you’re looking to replace the original VP, the VPLite has a similar output shaft as the original. This means that you can mix and match your original gear sets, including the input and output shafts. You can even mix metal inputs with plastic outputs. Moreover, if you decide to replace the gearbox, you can easily disassemble the entire unit and replace it with a new one without losing any output torque.
Compared to a planetary motor, a spur gear motor uses fewer gears and is therefore cheaper to produce. However, the latter isn’t suitable for high-torque applications. The torque produced by a planetary gearmotor is evenly distributed, which makes it ideal for applications that require higher torque. However, you may have to compromise on the torque output if you’re looking for a lightweight option.
The VersaPlanetary Lite gearbox replaces the aluminum ring gear with a 30% glass-filled nylon gear. This gearbox is available in two sizes, which means you can mix and match parts to get a better gear ratio. The VPLite gearbox also has a female 5mm hex output shaft. You can mix and match different gearboxes and planetary gearboxes for maximum efficiency.
VersaPlanetary
The VersaPlanetary is a highly versatile planetary motor that can be mounted in a variety of ways. Its unique design includes a removable shaft coupler system that makes it simple to swap out the motor with another. This planetary motor mounts in any position where a CIM motor mounts. Here’s how to assemble the motor. First, remove the hex output shaft from the VersaPlanetary output stage. Its single ring clip holds it in place. You can use a drill press to drill a hole into the output shaft.
After mounting the gearbox, you can then mount the motor. The mounting hardware included with the VersaPlanetary Planetary Motor comes with four 10-32 threaded holes on a two-inch bolt circle. You can use these holes to mount your VersaPlanetary on a CIM motor or a CIM-compatible motor. Once assembled, the VersaPlanetary gearbox has 72 different gear ratios.
The VersaPlanetary gearbox is interchangeable with regular planetary gearboxes. However, it does require additional parts. You can purchase a gearbox without the motor but you’ll need a pinion. The pinion attaches to the shaft of the motor. The gearbox is very sturdy and durable, so you won’t have to worry about it breaking or wearing out.
Self-centering planetary gears
A planetary motor is a simple mechanical device that rotates around a axis, with the planets moving around the shaft in a radial direction. The planets are positioned so that they mesh with both the sun gear and the output gears. The carrier 48 is flexibly connected to the drive shaft and can move depending on the forces exerted by the planet gears. In this way, the planets can always be in the optimal mesh with the output gears and sun gear.
The first step in developing a planetary gear motor is to identify the number of teeth in each planet. The number of teeth should be an integer. The tooth diameters of the planets should mesh with each other and the ring. Typically, the teeth of one planet must mesh with each other, but the spacing between them must be equal or greater than the other. This can be achieved by considering the tooth count of each planet, as well as the spacing between planets.
A second step is to align the planet gears with the output gears. In a planetary motor, self-centering planetary gears must be aligned with both input and output gears to provide maximum torque. For this to be possible, the planet gears must be connected with the output shaft and the input shaft. Similarly, the output shaft should also be able to align with the input gear.
Encoders
A planetary geared motor is a DC motor with a planetary gearbox. The motor can be used to drive heavy loads and has a ratio of 104:1. The shaft speed is 116rpm when it is unloaded. A planetary gearbox has a low backlash and is often used in applications that need high torque. Planetary Motor encoders can help you keep track of your robot’s position or speed.
They are also able to control motor position and speed with precision. Most of them feature high resolution. A 0.18-degree resolution encoder will give you a minimum of 2000 transitions per rotation between outputs A and B. The encoder is built to industrial standards and has a sturdy gearbox to avoid damage. The encoder’s robust design means it will not stall when the motor reaches its maximum speed.
There are many advantages to a planetary motor encoder. A high-quality one will not lose its position or speed even if it’s subject to shocks. A good quality planetary motor will also last a long time. Planetary motors are great for resale or for your own project. If you’re considering buying a planetary motor, consider this information. It’ll help you decide if a particular model is right for your needs.
Cost
There are several advantages of planetary motors. One of the biggest is their cost, but they can also be used in many different applications. They can be combined with a variety of gearboxes, and are ideal for various types of robots, laboratory automation, and production applications. Planetary gearboxes are available in many different materials, and plastic planetary gearboxes are an economical alternative. Plastic gearboxes reduce noise at higher speeds, and steel input stage gears are available for high torques. A modified lubrication system can help with difficult operating conditions.
In addition to being more durable, planetary motors are much more efficient. They use fewer gears, which lowers the overall cost of production. Depending on the application, a planetary motor can be used to move a heavy object, but is generally less expensive than its counterpart. It is a better choice for situations where the load is relatively low and the motor is not used frequently. If you need a very high torque output, a planetary motor may be the better option.
Planetary gear units are a good choice for applications requiring high precision, high dynamics, and high torque density. They can be designed and built using TwinCAT and TC Motion Designer, and are delivered as complete motor and gear unit assemblies. In a few simple steps, you can calculate the torque required and compare the costs of different planetary gear units. You can then choose the best model for your application. And because planetary gear units are so efficient, they are a great option for high-end industrial applications.
Applications
There are several different applications of the planetary motor. One such application is in motion control. Planetary gearboxes have many benefits, including high torque, low backlash, and torsional stiffness. They also have an extremely compact design, and can be used for a variety of applications, from rack and pinion drives to delta robotics. In many cases, they are less expensive to manufacture and use than other types of motors.
Another application for planetary gear units is in rotary tables. These machines require high precision and low backlash for their precise positioning. Planetary gears are also necessary for noise reduction, which is a common feature in rotary tables. High precision planetary gears can make the height adjustment of OP tables a breeze. And because they are extremely durable and require low noise, they are a great choice for this application. In this case, the planetary gear is matched with an AM8000 series servomotor, which gives a wide range of choices.
The planetary gear transmission is also widely used in helicopters, automobiles, and marine applications. It is more advanced than a countershaft drive, and is capable of higher torque to weight ratios. Other advantages include its compact design and reduced noise. A key concern in the development of this type of transmission is to minimize vibration. If the output of a planetary gear transmission system is loud, the vibration caused by this type of drive system may be too loud for comfort.
editor by czh 2023-02-21
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Quality and credit score are the bases that make a corporation alive. In 2008, it was awarded with “National Export Commodity Inspection-free of charge Company”. a specialised provider of a entire range of chains, sprockets, gears, gear racks, V-belts, couplings and reducers. AC 50nm tubular motor 12rpm 45mm for awnings
Characteristic
1. Higher EPT
two. Risk-free, reliable, reduced noise, very good starting, EPT daily life
3. Sturdy EPT
Rated voltage 220~240V-fifty/60Hz
Common used: foodstuff process,EPT tools ,EPT appliances
Thermal protector with a single shot fuse or multi shot fuse
Tubular Motor | |||||||||||
Item Features | |||||||||||
Exquisite blue apprearance,straightforward installation | |||||||||||
Easy running, DEPT level is minimal | |||||||||||
SmtXiHu (West Lake) Dis.Hu (West Lake) Dis.rd electric powered restrict change with salient on the restrict head. | |||||||||||
With developed-in EPTr, wireless manage | |||||||||||
Use: Roller EPTs, venetian EPTs, Honeycomb EPTs, Pleated EPTs | |||||||||||
Model | Torque(N.m) | Rotating(RPM) | Rated Voltage(v) | Rated Frequency(Hz) | Rated EPT(w) | Rated Present(A) | Restrict Tums(tum) | Protection Index(IP) | Working Time(min) | Web Weight(kg) | |
230V/50Hz | SF35-3R | three | 28 | 230 | fifty | 139 | .sixty one | forty two | IP44 | gt4 | 1.7 |
SF35-6R | six | seventeen | 230 | fifty | a hundred and fifty five | .sixty eight | 42 | IP44 | gt4 | one.seven | |
SF35-10R | ten | 17 | 230 | 50 | 161 | .71 | 42 | IP44 | gt4 | one.7 | |
SF35-12R | 12 | 17 | 230 | 50 | a hundred and seventy | .75 | forty two | IP44 | gt4 | 1.7 | |
110V/60Hz | SF35-3R | 3 | 33 | a hundred and ten | sixty | 141 | one.29 | forty two | IP44 | gt4 | one.seven |
SF35-6R | six | 20 | 110 | 60 | 154 | one.41 | forty two | IP44 | gt4 | 1.7 | |
SF35-10R | ten | 20 | a hundred and ten | sixty | 162 | 1.48 | forty two | IP44 | gt4 | one.7 | |
SF35-12R | twelve | 20 | one hundred ten | sixty | 173 | 1.58 | 42 | IP44 | gt4 | one.7 | |
Model | Torque(N.m) | Rotating(RPM) | Rated Voltage(v) | Rated Frequency(Hz) | Rated EPT(w) | Rated Existing(A) | Limit Tums(tum) | Security Index(IP) | Managing Time(min) | Net Fat(kg) | |
230V/50Hz | SF45-10R | 10 | fifteen | 230 | fifty | 162 | .71 | 22 | IP44 | gt4 | 2.3 |
SF45-20R | 20 | 15 | 230 | 50 | 178 | .seventy eight | 22 | IP44 | gt4 | two.five | |
SF45-30R | 30 | 15 | 230 | fifty | 253 | one.03 | 22 | IP44 | gt4 | three | |
SF45-40R | forty | twelve | 230 | fifty | 275 | one.two | 22 | IP44 | gt4 | three.two | |
SF45-50R | fifty | twelve | 230 | fifty | 282 | one.23 | 22 | IP44 | gt4 | 3.four | |
230V/50Hz | SF45-10R | ten | eighteen | one hundred ten | 60 | 166 | one.fifty one | 22 | IP44 | gt4 | two.three |
SF45-20R | twenty | 18 | one hundred ten | 60 | 179 | one.sixty two | 22 | IP44 | gt4 | two.five | |
SF45-30R | 30 | eighteen | one hundred ten | sixty | 244 | 2.23 | 22 | IP44 | gt4 | 3 | |
SF45-40R | 40 | 14 | one hundred ten | 60 | 280 | two.fifty five | 22 | IP44 | gt4 | 3.two | |
SF45-50R | 50 | 14 | a hundred and ten | 60 | 296 | two.forty five | 22 | IP44 | gt4 | three.four | |
AEPTOUT US
Ritscher team was set up in 2006.we alwaEPTfocus on micro-motors for EPT electrical equipment and business equipment given that setting up.currently we have two professional micro-motor factories in EPT which severally located in HangZhou metropolis and HangZhou town.it has an spot of twenty five,000 sq. meters EPTs and much more than 300 staff, yearly output is three million pcs and has five million pcs annual making ability.soon after a number of several years deveXiHu (West Lake) Dis.Hu (West Lake) Dis.ment,we had developed a excellent popularity in the industry and received more and more customers’ EPT in the globe.
We began from shaded pole motors at starting, up to now,our item incEPTd of shaded pole motors,synchronous motors,stepping motors ,capacitor motors, EPTLDC motors, DC motors and compressors. Our solution are broadly utilised for making refrigerators, freezers, micro-wave ovens, air heaters, air exhausters, ventilators,ovens, air filter, massage EPTs and many other equipments.
As a realiable good quality guaranty,Ritscher has full R ampD departement,QC department,making office,purchase division and many others. has excellent creating tools like Aluminum diecasting, Zinc diecasting, Sheet steel stamping, Plastic injection molding and so on. also examination/ detection system like multiplex temp measuring unit, overall performance parameter inspection unit, Phenol peptide remedy pinhole tester,Anechoic room and many others.
Endeavoring to offer the very best merchandise and service to clients,we alwaEPTdo the most hard work to turn into an outstXiHu (West Lake) Dis.Hu (West Lake) Dis. manufacturer of micro motors.
Ritscher is alwaEPTwilling to establish honest organization relationship with pals from all in excess of the globe.
Welcome speak to with us!
EPTke ritscher ,enEPT modern daily life!
Our company FAQ for you
(one) Q: What kind motors you can offer?
A:For now,we largely provide Kitchen Hood Motor,DC Motor,Equipment Motor,Fan Motor Refrigerator Motor,Hair Dryer Motor EPTlenEPTMotor Mixer Motor,
Shade Pole Motor,Capacitor Motor,EPTLDC Motor PMDC Motor,Synchronous Motor,Stepping Motor and many others.
(2) Q: Is it attainable to go to your manufacturing unit
A: Confident. EPTut remember to kindly keep us posted a couple of daEPTEPT. We want to check out our
timetable to see if we are accessible then.
(3) Q: Can I get some samples
A: It relies upon. If only a number of samples for personal use or replacement, I am frightened it will
be challenging for us to supply, due to the fact all of our motors are EPT and no stock
available if there is no more needs. If just sample tests ahead of the formal orEPTand
our MOQ, price and other phrases are satisfactory, we would really like to offer samples.
(4) Q: Is there a MOQ for your motors?
A: Indeed. The MOQ is between one thousand~ten,000pcs for distinct types right after sample approval.
EPTut it really is also alright for us to take smaller sized plenty like a couple of dozens, hundreds or thousands
For the first three orders right after sample approval.For samples, there is no MOQ necessity. EPTut the significantly less the better (like no a lot more than 5pcs) on issue that the amount is ample in case any alterations needed right after initial testing.
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AC220-3A360KG Tube Roller Shutter Motor
1) The latest patent merchandise, dependent on the worldwide innovative EPT
two) Ideal wide of door: unEPT4.5m
3) Mounted collectively with the big tube, replace a single element of tube
four) The dimensions of motor diameter: 4 inch five inch is optional
Primary Characteristics:
one. Hidden style, integration of motor and reel , lovely look with tiny area
two. XiHu (West Lake) Dis.hu (West Lake) Dis. slot bracket into the installation, convinient and basic
three. Tube installation, reinforce the reel stiffness, lessen the deflection price, reduce the motor purpose loss
four. Sleek operation, uniform power, large performance, ideal for higher-EPT and large torque motor
5. Hand chain layout, can open up and shut the doorway when EPT off
six. Individual from manage technique for simple servicing.
3A Tube Roller Doorway Motor Purpose Introduction:
1) Hand operation: This motor could be put in handbook switch exterior in scenario of employing remote management inconvenient.
two) Crisis devices: if the motor breaks down and couldn’t open up or close generally, you can use the hand products to open up and close the doorway unEPTthe unexpected emergency scenario.
HangZhou XiHu (West Lake) Dis.hu (West Lake) Dis. EPT EPTlin EPT Co., Ltd is a professional company of electric powered rolling door motors and tubular motors. Soon after above sixteen many years deveXiHu (West Lake) Dis.Hu (West Lake) Dis.ment, our organization has turn out to be one of chief in roller shutter motor market in EPT. Our items are offered effectively at property and overseas this sort of as Europe, The united states, South The us, Africa, Southeast Asia and so on. Up to now, our company has obtain popular trademark of EPTn province in EPT and a fantastic credit score EPTrprise from EPT Entry-EXiHu (West Lake) Dis.t Inspection and Quarantine.
Carton One particular: Motor
Carton Two: Controller 2 pcs of square plate bearing 2pcs of assist plate mandrel
FAQ:
Q: Do you provide OEM support?
A: Of course
Q: What is your payment expression?
A: thirty% deposit ahead of produciton, 70% balance when getting EPT/L copy.Or irrevocable L/C.
Q: What is your lead time?
A: About 15-twenty daEPTafter getting deposit or first L/C.
Q: What certificates do you have?
A: We have CE, CCC and ISO
Our Advantage:
one. Excellent EPT: Delta We only use good content to maintain our motor uselife with 10 many years.
Delta With a full skilled manufacturing line
DeltaWe have strick top quality control method. 100% test right after every single approach and last examination just before EPT
2. Excellent Provider: DeltaWe will give skilled and productive provider
Delta We can do the EPT accent dimensions as customer’s request.
three. Warranty: 1 yr, we will give perfect soon after-income services.