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Radiation-Resistant Stepper Motors from China Factory | High-Performance Motors for Nuclear Waste Processing Suppliers
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Radiation-Resistant Stepper Motors from China Factory | High-Performance Motors for Nuclear Waste Processing Suppliers

This high-performance stepper motor is designed for demanding applications in vacuum, cryogenic, high temperature, and radiation environments. Our motors can operate effectively in vacuum conditions as low as 10-7Pa, making them ideal for various industrial and scientific applications, **Key Features:**, - **Operating Temperature:** These stepper motors function seamlessly across a wide temperature range, from -196℃ to 200℃, ensuring reliability in extreme conditions, - **Radiation Resistance:** Built to withstand challenging environments, these motors can handle radiation levels of up to 106Gy, - **Motor Flange Options:** Available in multiple sizes, including 28mm, 42mm, 57mm, and 86mm (Nema 11/17/23/34), these motors provide versatility for different installation requirements, - **Holding Torque:** Our stepper motors offer impressive holding torque ranging from 0.04 to 4.4Nm, allowing for precise control in various applications, - **Basic Step Angle:** Feature a basic step angle of 1.8° with an accuracy of 5%, ensuring precise positioning and control, - **Lubrication Options:** Suitable for both grease and dry lubrication, these motors can be tailored to meet specific operational needs, - **Customization:** We offer optional features such as resolver feedback, safe brake, double shaft, and modified shaft to enhance performance tailored to your requirements, As a leading supplier and factory of stepper motors in China, we are committed to providing high-quality, reliable products that meet the unique needs of our customers. Whether for scientific research or industrial applications, our stepper motors ensure optimal performance and durability in even the most demanding environments

    Options

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

    Ordering Information

    kvm
    ① Product series

    KVM series stepper motors

    ② Flange size

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

    ③ Motor length

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

    ④ Output shaft

    D = single shaft

    SZ = double shaft

    ⑤ *Brake

    Blank = without brake

    B = with brake

    ⑥ *Feedback devices

    Blank = without feedback

    **R = with resolver feedback

    ⑦ 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
    ⑧ Vacuum class

    Blank = Non-vacuum

    V3 = Low pressure or vacuum to 10-3Pa

    V5 = Vacuum to 10-5Pa

    V7 = Vacuum to 10-7Pa

    ⑨ 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

    Nuclear waste processing equipment operates under harsh conditions characterized by high radiation levels, high vacuum, and alternating high and low temperatures. As a result, the requirements for radiation resistance, sealing, and reliability of the drive motors far exceed those of ordinary industrial applications. Conventional motors are prone to issues such as radiation-induced aging, structural corrosion, and power failure. The KVM Series radiation-resistant stepper motors are custom-designed for nuclear waste processing. With core advantages including strong radiation resistance, high sealing integrity, and a clean, non-leaching design, these radiation-resistant stepper motors have become the core drive components for nuclear waste processing equipment. These radiation-resistant clean-room stepper motors are compatible with ultra-high vacuum environments of 10⁻⁷ Pa. They utilize high-vacuum grease or solid lubrication solutions, ensuring no release of volatile impurities and preventing contamination of the waste treatment environment and equipment. The radiation-resistant design effectively withstands high-energy radiation damage, and the motors’ cleanliness characteristics fully comply with nuclear industry operational standards.

    These motors possess exceptional radiation resistance; their core components undergo special anti-radiation modification, enabling them to withstand high-energy radiation doses of up to 1×10⁶ Gy over extended periods. This effectively protects the motor coils and circuitry from radiation damage, ensuring long-term stable operation. Additionally, these motors are designed for a wide temperature range of -196°C to +200°C, enabling them to withstand temperature fluctuations during waste processing without experiencing performance degradation or structural damage due to alternating high and low temperatures. The radiation-hardened clean stepper motor is equipped with flanges in multiple sizes (28/42/57/86 mm) and offers a torque range of 0.04–6 Nm, meeting the drive requirements for various loads such as waste transfer, valve control, and detection equipment. The irradiation-clean stepper motor delivers stable torque output, ensuring smooth operation during the waste treatment process, while its multi-size design enhances compatibility with nuclear industry equipment.

    Nuclear waste processing demands extremely high standards for equipment cleanliness and safety. The irradiation-clean stepper motor features a fully sealed design that effectively prevents radioactive dust from entering the motor interior while also preventing impurities generated by wear on internal components, thereby ensuring a clean operating environment. To meet the automation needs of the nuclear industry, radiation-resistant clean stepper motors support functional options such as dual-axis control, position feedback, and safety braking, enabling precise positioning and safe start/stop operations to enhance operational safety and efficiency. These motors deliver stable power output in applications such as waste transfer robotic arms, vacuum-sealed valves, and radioactive detection equipment; in high-radiation work areas, they maintain low failure rates and long service life. With their superior radiation resistance and cleanliness characteristics, radiation-resistant clean stepper motors provide safe, stable, and reliable power support for nuclear waste processing. They also contribute to the safe and efficient development of the nuclear industry, making them the preferred choice for drive equipment in the sector.
    nuclear-waste-processing-equipment-operates-under-harsh-conditions-characterized-by-high-radiation-levels
    Frequently Asked Questions (FAQ)
    What applications are KVM Series radiation-resistant stepper motors designed for?
    They are custom-designed for demanding nuclear waste processing equipment applications, including waste transfer robotic arms, vacuum-sealed valves, and radioactive detection equipment.
    What is the radiation resistance capacity of these motors?
    The core components undergo special anti-radiation modification, allowing them to withstand high-energy radiation doses of up to 1×10⁶ Gy over extended operating periods.
    What temperature ranges can these stepper motors operate in?
    The motors are designed to withstand extreme temperature ranges from -196°C up to +200°C, ensuring stability during extreme temperature fluctuations.
    Are these motors compatible with high-vacuum environments?
    Yes, they are compatible with ultra-high vacuum environments up to 10⁻⁷ Pa. They utilize specialized high-vacuum grease or solid lubrication to prevent contamination.
    Can I install both a brake and feedback device on a single motor?
    No, it is not possible to install both a brake and position feedback devices simultaneously on a single motor.
    What torque ranges and flange sizes are available?
    They are available in multiple flange sizes (28, 42, 57, and 86 mm) and offer a torque range of 0.04 to 6 Nm to support various load requirements.

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