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KH Series Low-Temperature Stepper Motors - Reliable China Suppliers & Factory for Smartphone Durability Testing
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KH Series Low-Temperature Stepper Motors - Reliable China Suppliers & Factory for Smartphone Durability Testing

Discover our high-performance motors designed to operate in extreme conditions, with an impressive temperature range from -45℃ to 100℃. Our motors feature a motor flange available in 28/42mm sizes (Nema 11/17), making them adaptable for various applications. With holding torque options of 0.1Nm and 0.5Nm, these motors deliver reliable performance for your projects, As a leading China supplier and factory, we offer additional options to customize your motor solutions, including feedback devices, safe brakes, modified shafts, and integrated drives. Partner with us for innovative motor technologies that meet your specific needs

    Options

    Safe brake
    Encoder feedback
    Integrated stepper drives
    Rear shaft

    Ordering Information

    kh
    ① Product series

    KH series stepper motors

    ② Flange size

    28 / 42 / 57 / 86mm

    ③ Motor length

    48 / 51 / 56 / 58 / 60 / 65 / 76 / 80 / 84 / 118 / 156 / 165 / 201mm

    ④ Output shaft

    D = single shaft
    SZ = double shaft

    ⑤ *Brake

    Blank = without brake
    B = with brake

    ⑥ *Feedback devices

    Blank = without feedback
    **IE = Incremental encoder
    ***AE = Absolute encoder (RS485, Modbus RTU)

    ⑦ Integrated drives mounting

    Blank = Without integrated mounted stepper drive
    DRC = stepper driver mounted on the side of the motor
    DRH = stepper driver mounted at the rear end of the motor

    * It is not possible to install both brake and position feedback devices on one single motor.
    ** In order for the incremental encoder signal to be received and processed by the closed-loop stepper drive, the encoder output signals must be 5V differential signals with a maximum resolution of 2500PPR.
    *** The absolute encoder feedback signals need to be received and processed by the user′s controller.

    Description

    Foldable smartphone screen durability testing requires long-term, high-frequency, and stable folding operations in low-temperature environments (as low as -45°C), which demands motors with excellent low-temperature startup and operational characteristics. Low-temperature stepper motors are drive components specifically tailored for this application. The KH Series low-temperature stepper motors have been specially optimized for cold environments and can start directly at -45°C without preheating. Their use of low-temperature-resistant lubricants and flexible cables eliminates issues common in standard motors at sub-zero temperatures, such as grease solidification and cable insulation cracking. In foldable screen testing, low-temperature stepper motors are typically mounted within compact test frames using small flange sizes of 28 mm or 42 mm, precisely simulating the force of manual folding with a holding torque of 0.12–2.5 Nm. To accurately replicate the user experience across varying temperatures, these motors must withstand tens of thousands of reciprocating cycles daily. With a step angle accuracy of ±0.09°, they ensure consistent folding angles with every operation. Additionally, low-temperature stepper motors can be equipped with position feedback (such as magnetic or optical encoders) to monitor folding angles and speeds in real time, providing the basis for closed-loop control within the testing system. During continuous operation, the low-temperature stepper motor generates minimal heat, ensuring it does not disrupt the low-temperature environment within the test chamber. To address potential power outages during extended testing, the motor can be integrated with a safety brake that instantly locks the output shaft upon power loss, preventing the foldable screen from being accidentally stretched or twisted. Notably, the KH series offers custom shaft-offset options to accommodate specific eccentric load mounting requirements. The integrated driver option allows the low-temperature stepper motor to be controlled directly via I/O or bus interfaces, reducing the space required for external drivers. In the harsh environment of -45°C, the rotor inertia of the low-temperature stepper motor is optimized to prevent loss of synchronization caused by low-temperature viscosity. Testing has verified that a folding screen durability test rig using KH Series low-temperature stepper motors operated continuously for 3 million cycles without failure. Whether in single-fold or dual-fold smartphone designs, these motors deliver a smooth and quiet driving experience. Behind every qualified foldable smartphone lies the silent, millions-of-cycles contribution of a low-temperature stepper motor. Choosing a low-temperature stepper motor means choosing the ultimate pursuit of product quality.
    General Automation

    Frequently Asked Questions

    What is the lowest operating temperature for the KH Series stepper motors?

    The KH Series stepper motors are specially designed for cold environments and can start directly at temperatures as low as -45°C without any preheating.

    Can I install both a safety brake and feedback encoder on the same motor?

    No, it is not possible to install both a safety brake and position feedback devices on one single motor configuration.

    What flange sizes and motor lengths are available for ordering?

    The KH series offers flange sizes of 28, 42, 57, and 86 mm. Available motor lengths range from 48 mm up to 201 mm depending on your torque and space requirements.

    What type of feedback devices can be integrated with these motors?

    You can configure the motor with either an incremental encoder (**IE) requiring 5V differential signals up to 2500PPR, or an absolute encoder (***AE) supporting RS485 and Modbus RTU protocols.

    How long is the verified operational lifespan under durability testing conditions?

    Testing has verified that a folding screen durability test rig using KH Series low-temperature stepper motors operated continuously for over 3 million cycles without experiencing failure.

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