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KVM Series Vacuum Stepper Motors for Coating Equipment | China Suppliers & Factory for High-Performance Motors
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KVM Series Vacuum Stepper Motors for Coating Equipment | China Suppliers & Factory for High-Performance Motors

Discover our advanced stepper motors designed for extreme conditions, including vacuum, cryogenic environments, high temperatures, and radiation applications. As a leading supplier and factory based in China, we provide high-quality motors that meet rigorous performance standards, - **Vacuum Performance:** Operate efficiently in vacuums up to 10-7Pa, - **Temperature Range:** Our motors function flawlessly in temperatures as low as -196℃ and can withstand up to 200℃, - **Radiation Resistance:** They are built to endure radiation levels of up to 106Gy, making them ideal for a variety of critical applications, - **Motor Flange Options:** Available in various sizes, including 28mm, 42mm, 57mm, and 86mm (Nema 11/17/23/34), to suit your specific needs, - **Holding Torque:** Choose from a range of holding torques from 0.04 to 4.4Nm for optimal performance, - **Step Angle Precision:** Our motors feature a basic step angle of 1.8° with an accuracy of 5%, ensuring precise control for your applications, - **Lubrication Options:** Compatible with either grease or dry lubrication, allowing for adaptable maintenance solutions, - **Customizable Features:** Optional enhancements such as resolver feedback, safe brakes, double shafts, and modified shafts are available to meet unique project requirements, Trust our China-based suppliers and factory for reliable stepper motors engineered for the most demanding operating conditions. Choose quality and innovation to elevate your projects

    Options

    • Safe brake
    • Resolver feedback
    • Screw output shaft
    • Handwheel
    • Rear shaft

    Ordering Information

    kvm
    Product series

    KVM series stepper motors

    Flange size

    20/28/35/42/57/60/86mm

    Motor length

    30/32/38/42/48/51/53/60/70/84/86/128mm

    Output shaft

    D = single shaft
    SZ = double shaft

    *Brake

    Blank = without brake
    B = with brake

    *Feedback devices

    Blank = without feedback
    **R = with resolver feedback

    Environmental temperature ratings
    Environmental temperature rating code Temperature range (℃) Vacuum class
    (Pa, optional)
    Radiation resistance
    (Gy, optional)
    RHT -20~+200 10-3 106
    SHT -20~+200 10-3/10-5/10-7 -
    HT -20~+150 10-3/10-5/10-7 -
    NTL1 -40~+85 10-1 -
    NTL2 -60~+120 10-3/10-5 -
    NTL3 -65~+125 10-3 -
    NTL4 -80~+40 10-3 -
    NTL5 -60~+150 - -
    LT -100~+40 10-3 -
    SLT -196~+40
    (Non-condensing)
    10-3/10-5/10-7 -
    L*H* customized customized customized
    Vacuum class

    Blank = Non-vacuum
    V3 = Low pressure or vacuum to 10-3Pa
    V5 = Vacuum to 10-5Pa
    V7 = Vacuum to 10-7Pa

    Radiation resistance code

    Blank = No radiation resistance
    RH = Radiation resistance (total dose 106Gy)

    *It is not possible to install both brake and position feedback devices on one single motor.

    **Kingsni can provide signal converter to convert resolver signals to RS485 output or A/B incremental pulse output.

    Description

    The core operational stages of vacuum coating equipment require the sustained maintenance of an ultra-high vacuum environment. As the coating process involves temperature fluctuations and trace levels of process radiation, it imposes extremely stringent requirements on the sealing, cleanliness, and positioning accuracy of the drive motors. The KVM Series vacuum stepper motors are precisely tailored to the needs of the coating industry. With their low outgassing, high sealing performance, and temperature stability, they are widely used in various production lines, including optical coating, metal coating, and roll-to-roll coating. These vacuum stepper motors have become the core drive components of coating equipment. Vacuum stepper motors meet ultra-high vacuum standards of 10⁻⁷ Pa. They utilize specialized high-vacuum grease that does not release volatile impurities, thereby preventing film contamination and ensuring the purity and quality of the final coating products. The high-seal design of vacuum stepper motors effectively prevents external gases from entering the chamber, further enhancing the cleanliness of the coating environment. Their low outgassing characteristics also make them a top choice in the coating industry.

    Coating processes involve a wide temperature range. Vacuum stepper motors can operate stably within a broad temperature range of -196°C to +200°C, withstanding the alternating challenges of high-temperature baking and low-temperature cooling within the chamber without experiencing stuttering, loss of synchronization, or performance degradation due to sudden temperature changes. In the low-level radiation environments encountered during coating processes, the internal components of vacuum stepper motors possess excellent radiation resistance, enabling them to withstand long-term radiation exposure and effectively extending the service life of the equipment. Vacuum stepper motors are available in multiple flange sizes—28, 42, 57, and 86 mm—with torque ranges spanning 0.04 to 6 Nm. They can be precisely matched to various load stations, such as target drive, substrate stage transmission, and vacuum chamber door operation, meeting the drive requirements of all types of coating equipment. The stable torque output of vacuum stepper motors ensures smooth movement of workpieces during the coating process, enhancing coating uniformity. The multi-specification design of these motors also improves equipment adaptability.

    To meet the automation needs of coating production lines, vacuum stepper motors support functional options such as ball screw shafts and position feedback, enabling micron-level precise positioning to ensure consistent and uniform coating thickness. In continuous web coating equipment, vacuum stepper motors precisely regulate material feed tension; in optical lens coating equipment, they drive workpieces to rotate at a constant speed and align accurately; in metal coating equipment, they control the oscillation amplitude of the target material to improve coating uniformity. Stable operational performance and high adaptability make vacuum stepper motors suitable for all types of vacuum coating equipment. With their clean, non-leaching properties and resistance to high temperatures and radiation, they optimize coating production processes and reduce defect rates. The high reliability of vacuum stepper motors minimizes production line downtime and boosts production efficiency, making them the core power solution for high-precision mass production in the vacuum coating industry.

    the-core-operational-stages-of-vacuum-coating-equipment-require

    Frequently Asked Questions

    What configuration options are available for KVM series stepper motors?
    KVM series stepper motors offer several configuration options, including a safe brake, resolver feedback, screw output shaft, handwheel, and rear shaft.
    Can I install both a brake and feedback devices on a single KVM stepper motor?
    No, it is not possible to install both a brake and position feedback devices on the same single motor.
    What temperature ranges can these vacuum stepper motors operate in?
    Depending on the temperature rating code selected (such as SLT or SHT), the motors can operate in temperatures ranging from as low as -196°C up to +200°C.
    What vacuum classes do the KVM series motors support?
    The KVM series supports various levels: V3 (low pressure/vacuum to 10-3Pa), V5 (vacuum to 10-5Pa), and V7 (ultra-high vacuum to 10-7Pa), as well as a non-vacuum option.
    Do KVM stepper motors offer radiation resistance?
    Yes, models configured with the "RH" radiation resistance code can withstand a total radiation dose of up to 106Gy.

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