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Nema 17 Hybrid Stepper Motor

Nema 17 Hybrid Stepper Motors Optimized for Your Application, high precision, high efficiency, high reliabiity, step angle: 0.9°、NEMA17、42x42mm,2 phases 1.8°  hybrid stepper motor is the most popular in market and has the most extensive product coverage .
  • 42H 1.8° High Torque Hybrid Stepping Motor

  • 17 mm

  • 2

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Product Description

Nema 17 (42mm) 1.8° Hybrid Stepper Motor

stepper motor, high precision, high efficiency, high reliabiity, step angle: 1.8°、NEMA17、42x42mm


Nema 17 Hybrid Stepper Motor Description



电机特性描述


High Torque

    High torque is mainly attributed to many factors including rare earth magnets, optimized rotors, Stators with maximum winding fill and laminatins, all of which are combined together to realize maximum torque. Henghe Motor high torque stepper motors provide 15% to 25% more torque across the entire speed than conventional motors. The increased torque is a result of higher motor efficiency, and is available without increasing the drive voltage or current.

high_torque




Lower Heat

    The design of Henghe Motor selected with new materials gets a lower resistance value when compared with motors of the same thickness and the same torque, this makes a greater degree of improvement for the thermal conductivity performance of the motor, thus greatly reduces the temperature rise of the motor.



Long Life Time


    long_life_time

    Step motor life is usually determined by the life of the bearings. Henghe Motor large ball bearing is optimized for short repatitive moves to ensure long life - generally 5 times longer than conventional motors, which means future huge cost saving of the replacement or repair of conventional motors. In typical industrial application, the MTBF (Mean Time Between Failures) of Henghe Motor was up to 406,500 hours and lp (Failure Rate) was 3.44 hours per 1000,000 hours, In typical commercial application, the MTBF (Mean Time Between Failures) of Henghe Motor was up to 1,123,600 hours and lp (Failure Rate) was 1.21 hours per 1000,000 hours, which significantly ahead of competitor's motors.


Low Noise & Smooth

    Improved manufacturing processes enable all components of  Henghe stepper motors to achieve better matching precision and more stable internal structures. This reduces vibration and noise effectively when the motor operates, which makes Henghe stepper motors stand out by providing quieter and smoother operation.


Nema 17 Hybrid Stepper Motor Features

two_phase_stepper_motor

Precise Positioning Control

    A stepper motor rotates with a fixed step angle, just like the second hand of a clock.  This angle is called "basic step angle."  Henghe Motor offers several types of "basic step angle" as standard motors: 2-phase stepping motors with a basic step angle of 0.9° and 1.8° and 3-phase stepping motors with a basic step angle of 1.2°.

Besides the standard motor, Henghe Motor also has stepper motors avalible with other "basic step angle."  They are 0.72°, 1.5°, 3.6° and 3.75°, these motors are not listed in this catalogue, please contact Henghe Motor for details.





Easy Control with Pulse Signals


    A system configuration for high accuracy positioning is shown below.  The rotation angle and speed of the stepping motor can be controlled accurately using pulse signals from the controller.


zt042606






What is a Pulse Signal?

A pulse signal is an electrical signal whose voltage level changes repeatedly between ON and OFF. Each ON/OFF cycle is counted as one pulse. A command with onepulse causes the motor output shaft to turn by one step. The signal levels corresponding to voltage ON and OFF conditions are referred to as "H" and "L," respectively.

zt042609



The length of Rotation is Proportional to the Number of Pulses

The length of rotation of the stepping motor is proportional to the number of pulse signal (pulse number) given to the driver.The relationship of the stepper motor's rotation (rotation angle of themotor output shaft) and pulse number is expressed as follows:

zt042607 (1)zt042610


The Speed is Proportional to the Pulse Frequency

The speed of the stepper motor is proportional to the frequency of pulse signals given to the driver. The relationship of the pulse frequency [Hz] and motor speed [r/min] is expressed as follows:

zt042607 (1)

zt042611


Generating High Torque with a Compact Size

Stepper motors generate high torque with a compact size. These features give them excellent acceleration and response, which in turn makes these motors well-suited for torque-demanding applications where the motor must be started and stopped frequently. To meet the need for greater torque at low speed, Henghe Motor also has geared motors option.


Frequent Starting/Stopping is Possible        

  zt042614   


Speed VS Torque Characteristics comparetion between servo and stepper with same motor size

zt042615



The Motor Holds Itself at a Stopped Position

Stepper motor has full torque at stand-still as long as the windings are energized. This means that the motor can be held at a stopped position without using a mechanical brake.

zt042616


Motor with Electromagnetic Brake

Once the power is cut off, the self-holding torque of the motor is lost and the motor can no longer be held at the stopped position in vertical operations or when an external force is applied. In lift and similar applications, an electromagnetic brake type motor is required.

zt042617

Nema 17 Hybrid Stepper Motor Data Sheet

Nema 17(42mm) Hybrid Stepper Motor
Big size stepper motor, NEMA 17 Step Angle : 1.8°、42x42mm,low inertia、low noise, high torque.

Electrical Specifications:

Model Voltage Current Resistance Inductance Maximum static torque Leader Weight Body length
Single shaft A, double shaft B V A Ω mH Oz- in g.cm
Kg L(mm)
42H33-0956A(B) 4 0.95 4.2 2.5 22 1580 6 0.22 33
42H33-0406A(B) 9.6 0.4 24 15 22 1580 6 0.22 33
42H33-0316A(B) 12 0.31 38.5 21 22 1580 6 0.22 33
42H33-1334A(B) 2.8 1.33 2.1 2.5 30 2200 4 0.22 33
42H39-1206A(B) 4 1.2 3.3 3.2 36 2590 6 0.28 39
42H39-0806A(B) 6 0.8 7.5 6.7 36 2590 6 0.28 39
42H39-0406A(B) 12 0.4 30 30 36 2590 6 0.28 39
42H39-1684A(B) 2.8 1.68 1.65 3.2 50 3600 4 0.28 39
42H47-1206A(B) 4 1.2 3.3 2.8 44 3170 6 0.35 47
42H47-0806A(B) 6 0.8 7.5 6.3 44 3170 6 0.35 47
42H47-0406A(B) 12 0.4 30 25 44 3170 6 0.35 47
42H47-1684A(B) 2.8 1.68 1.65 2.8 62 4400 4 0.35 47



General Specifications:


Item Spec
Step Angle 1.8° +/-5%(full step,no   load)
Resistance Accuracy +/-10%
Inductance Accuracy +/-20%
Temperature Rise 80℃Max.(rated current,2   phase on)
Ambient Temperature -10℃-+50℃
Insulation   Resistance 100MΩMin.500 VDC
Dielectric Strength 500VAC for one minute
Shaft Radial Play 0.06Max.(450g- load)
Shaft Axial Play 0.08Max.(450g- load)
Insulation class Class B 130℃



Dimension:

42H 1.8°-5


Wiring diagram:

42H 1.8°-6


Customized Design

    If this motor do not match with your request. Please feel free to contact with us,We can make customized shaft / winding / mounting flange / cable / connector.We will works side-by-side with you and your team to design a motor that will fit the precise needs of your application. All Engineering and Support is done in-house.

Unbeatable Value

    Henghe stepper motor is our best-selling stepper motor for numerous reasons: it delivers unbeatable balance between high performance and low price; it offers a high range of customizations; and its wide performance range makes it ideal for many applications.

Versatile performance

    Henghe stepper motor is a good fit for wide range of applications. The series is available in many stator lengths, from 1.34” (34mm) to 2.34” (59.4mm). Holding torque ranges from 44 oz-in (0.3 Nm), up to 115 oz-in (0.88 Nm). High range of dynamic torque with speed up to 1200 RPM. And a large selection of windings to meet your specific requirements.


Industry Applications

Henghe stepping motors are widely used to create the motion needed in many types of equipment. Examples include:

Office automation:

printers, scanners, copy machines

Stage lighting:

pointing, focus, color changes, spot size, special effects

Banking:

check processing, credit card manufacturing, money scanners & counters

Medical:

body scanning, blood analyzers, chemical analysis

Industrial:

textile, packaging, robotics, conveyors, assembly, labeling

Telecommunication:

phase shift, Tuning, mobile antenna positioning

Security:

camera movement

Automotive:

fuel metering, steering control


FAQ

1.What are the advantages of using stepper motors?

●   Speed can be easily determined and controlled by remembering that speed equals steps per revolution divided by pulse rate.

●   A stepper motor can make fine incremental moves.

●   A stepper motor doesn’t require encoder feed back (Open loop).

●   Non-cumulative positioning error.

●   Excellent low speed/high torque characteristics without gear reduction.

●   Holding torque of the stepper motor can be used to hold loads in stationary position without over heating.

●   Ability to operate on a wide speed range.

2.What factors affect motor noise?

Our motors are designed for quiet operation. This is achieved through our proprietary motor design techniques and material selection. There are many factors to consider, such as how the motor is mounted in the application and the load and speed at which the motor will operate. Another consideration is the type of bearings selected for the motor and/or gearmotor. Before making a final selection, the motor/gearmotor being considered should be thoroughly tested in the design for audible noise levels if this is a concern for the application.

3.What is the difference between a closed loop stepper motor controller and an open loop stepper motor controller?

A closed loop controller provides feedback from the motor response after a command is issued to ensure that the motor conducts the desired response, and an open loop controller issues commands with no feedback.

4.My stepper motor is running hot to the touch, is there something wrong?

Our stepper motors are rated for a case temperature of 80 degrees C, which will be hot to the touch, but will not hurt the motor.

5.How much torque safety margin should I use when sizing a motor?

We recommend a torque safety margin of at least 30%.

6.How fast can I run my step motor?

Most stepper motors are designed for low speed (3000 rpm or less) operation. Once you get into higher speeds, servo motors are typically used.

7.What do brakes do on a stepper motor?

Brakes hold the motor shaft in place by locking its position around the motor shaft. A brake cannot be used to slow the motor shaft.

8. How can we know the product quality?

We suggest you to order a sample. Also, you can send us email for detail photos for checking if you cannot get enough information in the product page.

9. Is this your final price? May i have the discount?

Our price is the factory price, and if your quantity is larger, we will allow the discount for you.

10. Can we visit your factory?

Yes ,welcome warmly.


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