About Stepper
| TECHNOVISION STEPPER MOTORS |
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| NEMA Standards | Frame Size | Torque ( Kgcm ) | Number of Leads |
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| NEMA17 | 42 mm | 1.6 | 4 , 6 , 8 |
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| 4.4 | 4 , 6 , 8 |
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| 5.7 | 4 , 6 , 8 |
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| NEMA23 | 57 mm | 7 | 4 , 6 , 8 |
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| 10 | 4 , 6 , 8 |
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| 18 | 4 , 6 , 8 |
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| 28 | 4 , 6 , 8 |
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| NEMA24 | 60 mm | 10 | 4 , 8 |
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| 18 | 4 , 8 |
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| 32 | 4 , 8 |
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| NEMA34 | 85 mm | 34 | 4 , 8 |
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| 46 | 4 , 8 |
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| 68 | 4 , 8 |
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| 85 | 4 , 8 |
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| 120 | 4 , 8 |
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| NEMA42 | 110 mm | 150 | 4 , 8 |
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| 220 | 4 , 8 |
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| 300 | 4 , 8 |
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| ForDetails Contact : +91-9867528528 / 9619312807 / 9869279756 / 022-27464402 |
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- High Precision
- Low Motor Heating
- Smooth Movement
- Low Movement Noise
| Customized Stepper Motor Models |
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| Frame Size | 28 mm to 130 mm |
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| Torque | 0.5 Kgcm to 300 Kgcm |
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| Current | 0.3A to 8.5A |
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| RPM | Load dependent upto 800 RPM |
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| Connections | Series / Parallel / Unipolar Bipolar |
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| Leads | 8 Lead / 4 Leads / 6 Leads |
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| Shaft | Single / Double with Keyway / Dcut / Round |
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| Step Angle | 1.8 degree , 0.9 degree , 0.72 degree |
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| Motor Length | 25 mm to 250 mm |
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| Shaft Diameter | 4 mm to 22mm |
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Allied Accessories :
Pulse Generators , Motion Controller , PLC , HMI , DC Drives , Servo motors , Servo Drives , Design , Programming , Installation , Commissioning , Wiring , circuit Diagram , Documentation, Production Trials
Superior Protection and DurabilityEngineered for tough industrial settings, this stepper provides IP54 ingress protection, with a rugged mild steel cabinet and polycarbonate cover. Its resistance to vibration and shock, coupled with a powder-coated finish, ensure longevity and reliable performance, even under challenging conditions.
Precision Control and SpeedUtilizing a microcontroller-based platform and stepper motor driver, this unit guarantees rapid response times of less than 5 ms. Its digital input compatibility and LED indicators deliver instant feedback and system status, enhancing user confidence and control for various automation applications.
Efficient, Safe, and Environmentally FriendlyMeet safety and regulatory standards with RoHS compliance, IS 694 adherence, and Class I protection. The air-cooled cooling system, overload protection, and compact design promote energy efficiency and operational reliability, minimizing downtime and maximizing productivity.
FAQs of Stepper:
Q: How do I install the surface mount stepper unit in my automation setup?
A: Begin by selecting a suitable wall panel or mounting surface that can support the units dimensions (250 x 120 x 90 mm) and weight. Ensure its within the specified operating temperature range (0C to 50C). Use the provided mounting points and follow wiring instructions for 220V AC, adhering to local safety codes.
Q: What are the primary benefits of using this stepper unit for industrial automation?
A: This stepper offers fast response times (<5 ms), high efficiency, overload protection, and robust construction with vibration and shock resistance. Its compact size and IP54 protection make it suitable for challenging industrial environments, ensuring reliability and reduced maintenance.
Q: When is it ideal to use this stepper with a digital input signal?
A: Deploy this stepper in scenarios requiring precise, digitally controlled automation such as manufacturing lines, robotics, or process control, especially where rapid response and low noise levels (<45 dB) are crucial for operational performance.
Q: Where can this stepper unit be mounted within an industrial facility?
A: Designed for wall mounting, this panel is suited for workshops, control rooms, or production lines where surface mounting enables efficient space utilization and easy access for monitoring and maintenance.
Q: What is the process for connecting this stepper unit to a control system?
A: Connect the control systems digital output to the steppers input terminals as per circuit diagrams. Ensure the power supply is 220V AC and all wiring complies with IS 694 standards. Secure connections and check LED indicators for proper system status before operation.
Q: How does the built-in overload protection enhance operational safety?
A: Overload protection prevents damage from excessive current draw, safeguarding internal components such as the microprocessor and stepper driver. This feature ensures longevity and continuous safe operation even during electrical anomalies.