CHANGZHOU JKONGMOTOR CO.,LTD

Changzhou Jkongmotor Co., Ltd. Professional Stepper & Bldc Motor Manufacture in China with 15+ Years Experience. Certification: CE Rohs Reach ISO9001 ISO14001

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High Torque Hybrid Stepper Motor , 3 Phase Stepper Motor 208OZ.IN 15Kg.Cm

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Province/State:jiangsu
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High Torque Hybrid Stepper Motor , 3 Phase Stepper Motor 208OZ.IN 15Kg.Cm

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Place of Origin :Jiangsu, China (Mainland)
Brand Name :Jkongmotor
Model Number :JK
Certification :CE, ROHS,ISO9001
Price :US $10 -16 / Pieces
MOQ :3-10pcs
Packaging Details :with export carton . big quantity with pallet
Delivery Time :For samples , 7-15 days / For batch , 15-25days
Payment Terms :T/T , paypal , Western Union, L/C
Supply Ability :30000pcs / month
Phase :3
Type :Hybrid
Step Angle(degrees) :1.2 Degree
Holding Torque :15Kg.cm
Current / Phase :5.2A
Dielectric strength :500VDC for 1 minute
Max. radial force :75N (20mm from the flange)
Max axial force :15N
MOQ :10pcs
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View Product Description

High Torque 3 Phase 208OZ.IN 15Kg.cm Hybird Stepper Motor Nema23

A hybrid stepper motor is a combination of the variable reluctance and permanent magnet type motors. The rotor of a hybrid stepper motor is axially magnetized like a permanent magnet stepper motor, and the stator is electromagnetically energized like a variable reluctance stepper motor. Both the stator and rotor are multi-toothed.

Stepper motor is a kind of induction motor. Its working principle is to use electronic circuit to convert direct current into time-sharing power supply, multi-phase sequential control current, use this current to power the stepper motor, the stepper motor can work normally. The driver is a time-sharing power supply for the stepper motor, a multi-phase sequential controller.

Product Description:

Step Accuracy ----------------------------------------------------- ±5%
Resistance Accuracy
-------------------------------------------- ±10%
Inductance Accuracy
-------------------------------------------- ±20%
Temperature Rise
------------------------------------------------- 80°C MAX.
Ambient Temperature Range
--------------------------------- -20°C~ +50°C
Insulation Resistance ------------------------------------------ 100M Ω MIN. 500V DC
Dielectric Strength
----------------------------------------------- 500V AC 1min
Radial Play
--------------------------------------------------------- 0.02mm MAX. (450g Load)
End Play
------------------------------------------------------------ 0.08mm MAX. (450g Load)
Max. radial force
-------------------------------------------------- 75N
Max. axial force
--------------------------------------------------- 15N

Electrical Specification of 12v motor:

Model No.

Step Angle

Motor Length

Current

/Phase

Resistance

/Phase

Inductance

/Phase

Holding Torque

Detent Torque

Rotor Inertia

Mass

( °)

(L)mm

A

Ω

mH

kg.cm

g.cm

g.cm

Kg

JK57H3P79-001

1.2

78

5.8

1.05

2.4

15

680

480

1.01

Dimension:

High Torque Hybrid Stepper Motor , 3 Phase Stepper Motor  208OZ.IN 15Kg.Cm

High Torque Hybrid Stepper Motor , 3 Phase Stepper Motor  208OZ.IN 15Kg.Cm

High Torque Hybrid Stepper Motor , 3 Phase Stepper Motor  208OZ.IN 15Kg.CmHigh Torque Hybrid Stepper Motor , 3 Phase Stepper Motor  208OZ.IN 15Kg.Cm

Stepper Motor Advantages

  • Low cost for control achieved
  • High torque at startup and low speeds
  • Ruggedness
  • Simplicity of construction
  • Can operate in an open loop control system
  • Low maintenance
  • Less likely to stall or slip
  • Will work in any environment
  • Can be used in robotics in a wide scale.
  • High reliability
  • The rotation angle of the motor is proportional to the input pulse.
  • The motor has full torque at standstill (if the windings are energized)
  • Precise positioning and repeatability of movement since good stepper motors have an accuracy of 3–5% of a step and this error is non-cumulative from one step to the next.
  • Excellent response to starting/stopping/reversing.
  • Very reliable since there are no contact brushes in the motor. Therefore, the life of the motor is simply dependent on the life of the bearing.
  • The motors response to digital input pulses provides open-loop control, making the motor simpler and less costly to control.
  • It is possible to achieve very low-speed synchronous rotation with a load that is directly coupled to the shaft.
  • A wide range of rotational speeds can be realized as the speed is proportional to the frequency of the input pulses.
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