China factory High Performance Capacitor Range Hood AC Fan Motor vacuum pump and compressor

Product Description

high performance capacitor range hood ac fan motor

range hood features
 

Product Type Control Fan Speed Grease filter(s) Lamp Type
Range hood       Touch          2   2*SS 2*1.5W LED

 

Max noise level       (dBA) Illumination power (W) Max wind pressure  (Pa) Max extraction rate (m3/h) Motor rating (W)
          ≤57        2×1.5          ≥280          12 hours lifespa

 

-Safety: low temperatue rise less than 30K.

– Large Air delivery:the suction power can be arrival at 1200(m3/h)

– Wide voltage option: Performance keep the same voltage form 160 to 270V and frequeny from 45Hz to 60Hz.
 Environment-friendly: less energy consuption (on 50% o normal motor) and less copper wires used on BLDC motors.

– Low loss high efficiency: motor efficiency at around 70%, saving energy 50% on high speed and 80-90% on low speed.
 

Range hood Description 4

a1.)2 pcs round Charcoal filters would be recirculated ones.

a2.)The best charcoal fitlers supplier for range hood in China

a3.)The cleaning of the carbon filters should be based on the instruction manual of the rang hood.

Range hood quality control    

1)Our products range hood  have achieved CE approval

2)Every product range hood will be tested in  the factory line before packed

3)Sample of gas range hood can be offered for you inspection

4)Carton packaging, built-in batten, ensure products in good transportation to your port

Range hood certificate

Range hood have CE certificate,SASO,COC,CCC,CB,can be optional.

 

Range  hood Packing & shipping

1)sample of electric water heater can be prepared in 1 week

2)20’GP/20’GP/40’HQ goods can able to prepared in 25days

             

          Model

         Range hood Dismension
Body Size Packing Size
HCC-43 900×460×670 955*725*500
HCC-35 900*760*290 955*725*500
HCC-26 900*760*290 955*725*500
HCC-34 900*760*290 955*725*500
HCC-23 900*760*290 955*725*500

 

 

 Our Service                                                                

1.1 year warranty for finish products

2.The motor have 5 years warranty.

3.1%-2%Spare Parts based on the order

4.OEM & ODM are welcome

5.CkD anfd SKD are available.

6.tried orders are available

7.sample of range hood can be supplied in 7days 

During the warrnty years once there is some spares parts needed, we will send the spare parts of the range hood to you by air.

 Company Information                                               

 Our company has equipped with hundreds of advanced production equipment and a number of modern high-tech production lines. We have an independent technology research and development center, a testing center and a laboratory. Our company has metal stamping, molding, spraying and electronics workshops and strictly controls product quality. 

  Adhering to the business principle of mutual benefits, we have built up a good reputation among our customers due to our perfect services, quality products and competitive prices.

FAQ:                                                                            

1. What is your main product line is made?                                                           

We mainly produce Built-in Stove (stainless & glass), Built-in Ceramic Stove, Built-in Induction Stove, Range Hood, gas heater,gas water heater,electric water heater

2.Your factory or trading company?

We are a factory, we provide OEM&ODM services.

3.What is your main market?

Our main market is Middle East, South America, Europe, Russia, Africa and Some of regional.

4.You have the ability to do independent research and development?

Our engineering department has 10 people, we have the research and development capabilities. We also collect regularly each customer feedback, product improvement and new product development. We also hold monthly new product launches.

5.If I have a question I would like advice on how to contact you?

You can SNS platform or directly through major inquiry and send e-mail to  consult us.

6.What will you provide services?

If you do not mind, you can tell us the following information, you are factories, wholesalers, purchasing, dealers, consumers or do engineering, design, or home. We can provide a detailed explanation to you. You will also patiently answered every question. We have established a customer complaint side, if you are not satisfied with our service, you can directly tell us via e-mail or telephone. We answer all questions for you. Thank you

 

 

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Housing: Tempered Glass
Shape: Shallow-cover Type
Exhaust: ≥17(m3/min)
Noise: 41-50dB
Venting: Ducted
Installation: Wall Mounted
Customization:
Available

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induction motor

Are there environmental considerations associated with the use of AC motors?

Yes, there are several environmental considerations associated with the use of AC motors. These considerations are primarily related to energy consumption, greenhouse gas emissions, and the disposal of motors at the end of their life cycle. Let’s explore these environmental considerations in detail:

  • Energy Efficiency: AC motors can have varying levels of energy efficiency, which directly impacts their environmental impact. Motors with higher efficiency convert a larger percentage of electrical energy into useful mechanical work, resulting in reduced energy consumption. By selecting and using high-efficiency AC motors, energy usage can be minimized, leading to lower greenhouse gas emissions and reduced reliance on fossil fuels for electricity generation.
  • Greenhouse Gas Emissions: The electricity consumed by AC motors is often produced by power plants that burn fossil fuels, such as coal, natural gas, or oil. The generation of electricity from these fossil fuels releases greenhouse gases, contributing to climate change. By employing energy-efficient motors and optimizing motor systems, businesses and individuals can reduce their electricity demand, leading to lower greenhouse gas emissions and a smaller carbon footprint.
  • Motor Disposal and Recycling: AC motors contain various materials, including metals, plastics, and electrical components. At the end of their life cycle, proper disposal or recycling is important to minimize their environmental impact. Some components, such as copper windings and steel casings, can be recycled, reducing the need for new raw materials and energy-intensive manufacturing processes. It is crucial to follow local regulations and guidelines for the disposal and recycling of motors to prevent environmental pollution and promote resource conservation.
  • Manufacturing and Production: The manufacturing and production processes associated with AC motors can have environmental implications. The extraction and processing of raw materials, such as metals and plastics, can result in habitat destruction, energy consumption, and greenhouse gas emissions. Additionally, the manufacturing processes themselves can generate waste and pollutants. Motor manufacturers can mitigate these environmental impacts by adopting sustainable practices, using recycled materials, reducing waste generation, and implementing energy-efficient production methods.
  • Life Cycle Assessment: Conducting a life cycle assessment (LCA) of AC motors can provide a holistic view of their environmental impact. An LCA considers the environmental aspects associated with the entire life cycle of the motor, including raw material extraction, manufacturing, transportation, use, and end-of-life disposal or recycling. By analyzing the different stages of the motor’s life cycle, stakeholders can identify opportunities for improvement, such as optimizing energy efficiency, reducing emissions, and implementing sustainable practices.

To address these environmental considerations, governments, organizations, and industry standards bodies have developed regulations and guidelines to promote energy efficiency and reduce the environmental impact of AC motors. These include efficiency standards, labeling programs, and incentives for the use of high-efficiency motors. Additionally, initiatives promoting motor system optimization, such as proper motor sizing, maintenance, and control, can further enhance energy efficiency and minimize environmental impact.

In summary, the environmental considerations associated with the use of AC motors include energy efficiency, greenhouse gas emissions, motor disposal and recycling, manufacturing processes, and life cycle assessment. By prioritizing energy efficiency, proper disposal, recycling, and sustainable manufacturing practices, the environmental impact of AC motors can be minimized, contributing to a more sustainable and environmentally conscious approach to motor usage.

induction motor

What are the common signs of AC motor failure, and how can they be addressed?

AC motor failure can lead to disruptions in various industrial and commercial applications. Recognizing the common signs of motor failure is crucial for timely intervention and preventing further damage. Here are some typical signs of AC motor failure and potential ways to address them:

  • Excessive Heat: Excessive heat is a common indicator of motor failure. If a motor feels excessively hot to the touch or emits a burning smell, it could signify issues such as overloaded windings, poor ventilation, or bearing problems. To address this, first, ensure that the motor is properly sized for the application. Check for obstructions around the motor that may be impeding airflow and causing overheating. Clean or replace dirty or clogged ventilation systems. If the issue persists, consult a qualified technician to inspect the motor windings and bearings and make any necessary repairs or replacements.
  • Abnormal Noise or Vibration: Unusual noises or vibrations coming from an AC motor can indicate various problems. Excessive noise may be caused by loose or damaged components, misaligned shafts, or worn bearings. Excessive vibration can result from imbalanced rotors, misalignment, or worn-out motor parts. Addressing these issues involves inspecting and adjusting motor components, ensuring proper alignment, and replacing damaged or worn-out parts. Regular maintenance, including lubrication of bearings, can help prevent excessive noise and vibration and extend the motor’s lifespan.
  • Intermittent Operation: Intermittent motor operation, where the motor starts and stops unexpectedly or fails to start consistently, can be a sign of motor failure. This can be caused by issues such as faulty wiring connections, damaged or worn motor brushes, or problems with the motor’s control circuitry. Check for loose or damaged wiring connections and make any necessary repairs. Inspect and replace worn or damaged motor brushes. If the motor still exhibits intermittent operation, it may require professional troubleshooting and repair by a qualified technician.
  • Overheating or Tripping of Circuit Breakers: If an AC motor consistently causes circuit breakers to trip or if it repeatedly overheats, it indicates a problem that needs attention. Possible causes include high starting currents, excessive loads, or insulation breakdown. Verify that the motor is not overloaded and that the load is within the motor’s rated capacity. Check the motor’s insulation resistance to ensure it is within acceptable limits. If these measures do not resolve the issue, consult a professional to assess the motor and its electrical connections for any faults or insulation breakdown that may require repair or replacement.
  • Decreased Performance or Efficiency: A decline in motor performance or efficiency can be an indication of impending failure. This may manifest as reduced speed, decreased torque, increased energy consumption, or inadequate power output. Factors contributing to decreased performance can include worn bearings, damaged windings, or deteriorated insulation. Regular maintenance, including lubrication and cleaning, can help prevent these issues. If performance continues to decline, consult a qualified technician to inspect the motor and perform any necessary repairs or replacements.
  • Inoperative Motor: If an AC motor fails to operate entirely, there may be an issue with the power supply, control circuitry, or internal motor components. Check the power supply and connections for any faults or interruptions. Inspect control circuitry, such as motor starters or contactors, for any damage or malfunction. If no external faults are found, it may be necessary to dismantle the motor and inspect internal components, such as windings or brushes, for any faults or failures that require repair or replacement.

It’s important to note that motor failure causes can vary depending on factors such as motor type, operating conditions, and maintenance practices. Regular motor maintenance, including inspections, lubrication, and cleaning, is essential for early detection of potential failure signs and for addressing issues promptly. When in doubt, it is advisable to consult a qualified electrician, motor technician, or manufacturer’s guidelines for appropriate troubleshooting and repair procedures specific to the motor model and application.

induction motor

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:

  1. 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.
  2. 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.
  3. 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:

  1. 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.
  2. 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.
  3. 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.

China factory High Performance Capacitor Range Hood AC Fan Motor   vacuum pump and compressor	China factory High Performance Capacitor Range Hood AC Fan Motor   vacuum pump and compressor
editor by CX 2024-05-10