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27mm Customized Brush Spur Gear Motor 6V Micro DC Geared Motor For Coffee Machine

Shenzhen Secore Technology Co.,Ltd
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Address: Building 2, Chaoloft Cultural Creative Park, Liukou Community, Dalang Street, Longhua District, Shenzhen

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Shenzhen Secore Technology Co.,Ltd

27mm Customized Brush Spur Gear Motor 6V Micro DC Geared Motor For Coffee Machine

Country/Region china
City & Province shenzhen
Categories Toy Parts
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Product Details

27mm Customized Brush Spur Gear Motor For Coffee Machine 6V Micro Dc Geared Motor

 

Secore DC Gear Motor DC2418-27GB Main features:  

 

Size: Φ27*L33/36mm;

Voltage: 12V, 24V input 

Speed: 47rpm, 277rpm or as per request

Application: coffee machine, electric door, automatic lock

 

MODELVOLTAGENO LOADAT MAXIMUM EFFICIENCYSTALLGear length (L)Matching motorMotor length (L1)
SPEED
RPM
CURRENT
mA
SPEED
RPM
TORQUE
mN.m
CURRENT
mA
POWER
W
TORQUE
mN.m
CURRENT
mA
mmModelmm
DC2418-27GB243750.0827739.11900.79119.545014.931018.6
DC2418-27GB12600.12647191.23000.96745.29301831018.6

 


 

 

 

Secore Technology mainly engaged in Brush, brushless motor, Gear motor, with ODM, OEM service. Customizable for speed, torque, housing, motor type, gear type, encoder, brake etc. 

 

 

Motor Construction

 

Brushed DC motors rely on a mechanical system to transmit current, while AC and brushless DC gear motors use electronic mechanisms to control the current. Brushed motors have a wound armature attached to the center and permanent magnets attached to steel rings around the rotor. When the brushes are in contact with the commutator, current flows through the armature coils.
AC induction motors and BLDC motors do not rely on a mechanical system (brushes) to control the current. AC and BLDC motors deliver current through the stator (electromagnet), which is connected to the AC power source either directly or through a solid-state circuit.
In an AC induction motor, the rotor turns in response to the "induction" of a rotating magnetic field within the stator when current is passed through it. Instead of inducing the rotor in a brushless DC motor, the permanent magnets are directly combined with the rotor, and when current is passed through the stator, the magnetic poles on the rotor rotate relative to the electromagnetic poles generated in the stator, creating motion
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