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Medical Equipment Motor 0.9-1.2A 7-470RPM DC Motor For Home Appliance
  • Medical Equipment Motor 0.9-1.2A 7-470RPM DC Motor For Home Appliance
  • Medical Equipment Motor 0.9-1.2A 7-470RPM DC Motor For Home Appliance
  • Medical Equipment Motor 0.9-1.2A 7-470RPM DC Motor For Home Appliance

Medical Equipment Motor 0.9-1.2A 7-470RPM DC Motor For Home Appliance

Place of Origin China
Brand Name GO-GOLD
Certification ISO
Model Number KG-2427DC6
Product Details
Rated Voltage:
1.5-6V
Rated Speed:
7-470RPM
Application:
Medical Equipment, Home Appliance
Continuous Current:
0.9-1.2A
Efficiency:
IE 2
Type:
DC Motor
Rated Torque:
1.6-70kg.cm
Payment & Shipping Terms
Minimum Order Quantity
1000PCS
Price
Negotiation
Packaging Details
Packing in boxes
Delivery Time
7days for samples
Payment Terms
L/C, T/T, Paypal
Supply Ability
10000pcs-30days
Product Description

Medical Equipment Motor 0.9-1.2A 7-470RPM DC Motor For Home Appliance

 

Product Description
 

Continuous Current 0.9-1.2A Rated Voltage 1.5-6V
Rated Speed 7-470RPM Rated Torque

1.6-70kg.cm

 

 

Lead Time

 

Quantity 1-1000 1001-10000 ≥10000
Lead days 15 30 To be negotation

 

 

Essential Details

 

Continuous Current: 0.9-1.2A

 

Place of Origin: Guangdong, China

 

Type: DC Motor


Application: Medical Equipment, Home Appliance

 

Size: 42.2*59.5MM


Rated Torque: 1.6-70kg.cm

 

Efficiency: IE 2

 

Warranty: 3 Years

 

Model Number: KG-2427DC6

 

Rated Voltage: 1.5-6V


Rated Speed: 7-470RPM


 

Drawing

 

Medical Equipment Motor 0.9-1.2A 7-470RPM DC Motor For Home Appliance 0

 

 

Sample

 

Medical Equipment Motor 0.9-1.2A 7-470RPM DC Motor For Home Appliance 1

 

Application

 

Medical Equipment Motor 0.9-1.2A 7-470RPM DC Motor For Home Appliance 2

 

A permanent magnet (PM) motor does not have a field winding on the stator frame, instead relying on PMs to provide the magnetic field against which the rotor field interacts to produce torque. Compensating windings in series with the armature may be used on large motors to improve commutation under load. Because this field is fixed, it cannot be adjusted for speed control.

 

PM fields (stators) are convenient in miniature motors to eliminate the power consumption of the field winding. Most larger DC motors are of the "dynamo" type, which have stator windings. Historically, PMs could not be made to retain high flux if they were disassembled; field windings were more practical to obtain the needed amount of flux. However, large PMs are costly, as well as dangerous and difficult to assemble; this favors wound fields for large machines.

 

To minimize overall weight and size, miniature PM motors may use high energy magnets made with neodymium or other strategic elements; most such are neodymium-iron-boron alloy. With their higher flux density, electric machines with high-energy PMs are at least competitive with all optimally designed singly fed synchronous and induction electric machines. Miniature motors resemble the structure in the illustration, except that they have at least three rotor poles (to ensure starting, regardless of rotor position) and their outer housing is a steel tube that magnetically links the exteriors of the curved field magnets.

 

A DC motor is an electrical motor that uses direct current (DC) to produce mechanical force. The most common types rely on magnetic forces produced by currents in the coils. Nearly all types of DC motors have some internal mechanism, either electromechanical or electronic, to periodically change the direction of current in part of the motor.

 

DC motors were the first form of motors widely used, as they could be powered from existing direct-current lighting power distribution systems. A DC motor's speed can be controlled over a wide range, using either a variable supply voltage or by changing the strength of current in its field windings. Small DC motors are used in tools, toys, and appliances.

 

The universal motor, a lightweight brushed motor used for portable power tools and appliances can operate on direct current and alternating current. Larger DC motors are currently used in propulsion of electric vehicles, elevator and hoists, and in drives for steel rolling mills. The advent of power electronics has made replacement of DC motors with AC motors possible in many applications.

 

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