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Hair Dryer Motor 36V 99.7g.Cm 21280RPM 18W DC Brush Motor For Hair Dryers
  • Hair Dryer Motor 36V 99.7g.Cm 21280RPM 18W DC Brush Motor For Hair Dryers
  • Hair Dryer Motor 36V 99.7g.Cm 21280RPM 18W DC Brush Motor For Hair Dryers

Hair Dryer Motor 36V 99.7g.Cm 21280RPM 18W DC Brush Motor For Hair Dryers

Place of Origin China
Brand Name Go-Gold
Certification ISO
Model Number KG-380DC36
Product Details
Warranty:
3 Years
Place Of Origin:
Guangdong, China
Usage:
Home Appliance, Hair Dryer
Type:
DC Motor
Commutation:
Brush
Rated Voltage:
36V
Payment & Shipping Terms
Minimum Order Quantity
1000 pieces
Price
Negotiation
Packaging Details
Packing in boxes
Delivery Time
7days for samples
Payment Terms
L/C, T/T, Paypal
Supply Ability
10000 pcs-30 days
Product Description

Hair Dryer Motor 36V 99.7g.Cm 21280RPM 18W DC Brush Motor For Hair Dryers

 

Performance Specification

 

Performance specification

Rated Voltage 36V Speed 21280RPM
Torque 99.7g.cm Continuous Current 0.15A

 

 

Packaging & Delivery

 

Port: SHENZHEN

Lead time:

Quantity(pieces) 1 - 1000 1001 - 10000 >10000
Lead time (days) 15 30 To be negotiated

 

 

Major Details

 

Warranty: 1-3 Years

Place of Origin: Guangdong, China

Brand Name: Go-Gold

Model Number: KG-380DC36

Usage: Home Appliance, Hair Dryer

Type: DC Motor

Commutation: DC

Protect Feature: Permanent Magnet

Feature: High Speed

Product Name: Hair Dryer Motor DC Motor

 

Motor type: DC Motor

Certification: CCC Ce RoHS

Rated Voltage: 36V/Custom Made

Keywords: Home Appliance, Hair Dryer

Noise: Low

Material: Cooper Wire

 

 

Sample

Hair Dryer Motor 36V 99.7g.Cm 21280RPM 18W DC Brush Motor For Hair Dryers 0

 

 

Drawings

Hair Dryer Motor 36V 99.7g.Cm 21280RPM 18W DC Brush Motor For Hair Dryers 1
 

 

Introduction

 

Hair dryer DC motor, providing the best air flow, long life, high efficiency, light weight, customizable. Shenzhen Go-Gold Motor Company has a mature customized platform for hair dryer motor, which can provide a large sample data as a reference.

 

 

Working Principle of DC Hair Dryer Motor


The principle of the DC hair dryer fan motor mainly includes the following parts:


Motor driven fan blade rotation: The main motor of the hair dryer is a DC motor, which can convert electrical energy into mechanical energy. When the motor starts, the magnetic field inside the motor rotor interacts with the magnetic field in the motor stator, forming a torque. This torque drives the rotor to rotate, thereby driving the blades to rotate. 


The hot end generates heat energy: The hot end of a hair dryer refers to the heat energy generated through electrical components. Most modern hair dryers use electric tungsten wire, also known as electric heating wire. Electric heating wire is an electronic device made of tungsten specifically designed to generate thermal energy. When the current passes through the electric heating wire, electrons continuously collide in the wire, converting their energy into heat and forming a high-temperature region. These high-temperature areas will directly output thermal energy, heating the airflow blown out by the hair dryer.


Air flow generation: The rotation of the blades drives the flow of surrounding air, causing the airflow to accelerate with the rotation of the blades, ultimately generating a strong airflow.


Cold and hot air switching control: Hair dryers usually have an independent temperature control system to switch between hot and cold air. When the user selects the cold air function, the electric fan will rotate without using an electric heater to blow out cold air. When the user selects the hot air function, the electric heater will heat the air, causing the airflow to heat up, and simultaneously rotate the fan blades to blow out the hot air.
The working principle of a DC fan: The working principle of a DC fan is based on the principle of electromagnetic induction, which achieves energy conversion through the interaction of electric and magnetic fields. Specifically, when direct current passes through the armature of a motor, a rotating magnetic field is generated within the armature. At the same time, the permanent magnet inside the motor will also generate a stable magnetic field. The interaction between these two magnetic fields causes the armature of the motor to start rotating, driving the impeller to rotate and generating airflow. 


The working characteristics of DC motors: DC motors can change the direction of rotation by changing the current direction of the armature. This is also why DC fans can achieve forward and reverse rotation.

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86-0755-27595912
No. 2 Funing, Zhengcheng 1st Road, Xintian Community, Fuhai Street, Baoan District, Shenzhen City, China
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