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High-Temperature Stepper Motors from China Suppliers | KH Series for Dashboard Button Life Testing, Factory Direct
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High-Temperature Stepper Motors from China Suppliers | KH Series for Dashboard Button Life Testing, Factory Direct

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  • Operating Temperature: Ranges from -45℃ to 100℃, ensuring reliable performance in extreme conditions.
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  • Motor Flange: Compatible with 28/42mm sizes (Nema 11/17), suitable for various applications.
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  • Holding Torque: Available options of 0.1Nm and 0.5Nm, providing excellent stability and control.
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  • Optional Features: Customize your motor with optional feedback devices, safety brakes, modified shafts, and integrated drives to meet specific needs.
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  • Manufactured in China: Our high-quality motors are produced in state-of-the-art factories, ensuring durability and reliability.
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  • Trusted Suppliers: As one of the leading suppliers in the industry, we deliver top-notch products to clients worldwide.
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    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

    Dashboard button life testing is typically conducted in high-temperature environments (up to +100°C) to simulate the long-term reliability of vehicle components under conditions such as summer sun exposure or radiant heat from the engine compartment. In this scenario, high-temperature stepper motors are responsible for driving the repeated pressing of buttons, and their heat resistance directly determines the validity of the test. The KH Series high-temperature stepper motors are specifically designed for continuous operation at +100°C. They incorporate high-temperature-resistant magnets, an H-class insulation system, and Teflon lead wires, preventing the magnetic field decay or insulation breakdown that occurs in standard motors under high-temperature conditions. In dashboard button testing, high-temperature stepper motors are typically mounted on multi-axis test modules with 42mm or 57mm flange sizes, converting rotational motion into linear pressing force via custom output shafts (such as camshafts or lead screw ends). Holding torques ranging from 1.5 Nm to 12 Nm are available, enabling the high-temperature stepper motor to accommodate varying actuation force requirements, from light-touch membrane switches to hard mechanical buttons. To accurately record force decay over the switch’s lifespan, the high-temperature stepper motor can be equipped with position feedback to monitor switch travel and rebound position in real time. A safety brake option maintains the output shaft position during unexpected power outages, preventing damage to the instrument panel. Designed for prolonged operation at +100°C, the high-temperature stepper motor utilizes low-loss silicon steel laminations and an optimized heat dissipation structure to ensure controllable surface temperatures. The integrated driver option allows the drive circuitry to be mounted directly on the motor’s rear, enabling communication with the host computer via RS485 or CAN bus, which significantly reduces the number of wiring harnesses required within the high-temperature chamber. Notably, the high-temperature stepper motor’s shaft is made of high-temperature alloy steel and is paired with specially formulated high-temperature bearing grease, ensuring 8,000 hours of operation at 100°C without seizing. In dashboard button testing, high-temperature stepper motors must simulate varying press speeds and hold times; their microstep drive capability enables displacement resolution at the 0.01mm level. By coordinating multiple high-temperature stepper motors, tests can simultaneously cover steering wheel buttons, center console buttons, and air conditioning panel buttons. The KH series high-temperature stepper motors also offer 86mm and 110mm large-flange versions for high-torque multi-button linkage testing. Every cycle of high-temperature aging testing relies on the precise, repeatable positioning provided by high-temperature stepper motors. It has been proven that button testing systems equipped with high-temperature stepper motors can reduce human testing errors to less than 1%. Choosing the KH series of high-temperature stepper motors ensures the most reliable thermal environment drive support for dashboard durability certification.

    General Automation
    dashboard-button-life-testing-is-typically-conducted-in-high-temperature-environments
    Frequently Asked Questions
    What is the maximum operating temperature for the KH Series stepper motors?
    The KH Series high-temperature stepper motors are specifically designed and constructed for continuous operation in environments up to +100°C. They feature high-temperature-resistant magnets, H-class insulation, and Teflon lead wires to ensure reliable operation under extreme heat.
    Can I configure a single KH motor with both a brake and an encoder?
    No, it is not possible to install both a brake and position feedback devices (such as encoders) on a single motor configuration. You must choose either the brake option or the feedback device option.
    What integrated driver configurations are available?
    The KH Series offers two integrated stepper drive options: the DRC option (driver mounted on the side of the motor) and the DRH option (driver mounted at the rear end of the motor). This integration simplifies wiring inside testing chambers.
    What types of encoders and feedback signals are supported?
    We support Incremental Encoders (IE) requiring 5V differential signals with a maximum resolution of 2500PPR, and Absolute Encoders (AE) supporting RS485 and Modbus RTU communication protocols.
    How does the KH Series motor maintain durability in long-term testing?
    The motor shafts are manufactured from high-temperature alloy steel and paired with specialized high-temperature bearing grease. This design allows the motors to operate for up to 8,000 hours at 100°C without risk of bearing seizure.
    What flange sizes and holding torques are available for these motors?
    The KH Series is available in standard flange sizes of 28mm, 42mm, 57mm, and 86mm, with holding torques ranging from 1.5 Nm to 12 Nm to support various actuation force requirements.

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