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High-Temperature Stepper Motors from China Suppliers | KVM Series for Extreme Environments and Factory Applications
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High-Temperature Stepper Motors from China Suppliers | KVM Series for Extreme Environments and Factory Applications

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    Our high-performance stepper motors are designed for demanding environments including vacuum, cryogenic, high-temperature, and radiation applications. As a leading manufacturer in China, we ensure our products meet the highest standards across various industries.

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    Vacuum Capability: Exceptional performance in vacuum conditions up to 10-7Pa.

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    Operating Temperature Range: From -196℃ to 200℃, suitable for extreme thermal environments.

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    Radiation Resistance: Robust design capable of withstanding radiation levels up to 106Gy.

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    Motor Flange Sizes: Available in various dimensions: 28mm, 42mm, 57mm, and 86mm (Nema 11/17/23/34).

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    Holding Torque: Ranges from 0.04 to 4.4Nm, providing versatility for different applications.

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    Basic Step Angle: Features a precise basic step angle of 1.8° with an accuracy of 5%.

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    Lubrication Options: Available with grease or dry lubrication for optimal performance.

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    Optional Features: Customization options include resolver feedback, safe brakes, double shafts, and modified shafts for enhanced functionality.

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    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
    Please refer to the specification table below.
    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

    In applications such as aerospace simulation, specialized scientific research, and extreme environment testing, equipment must operate continuously under harsh conditions—including ultra-high vacuum, wide temperature fluctuations, and high-energy radiation. Conventional stepper motors are prone to issues such as temperature-induced drift, loss of synchronization, seal failure, and radiation-induced aging. The KVM Series High-Temperature Stepper Motors are custom-engineered for demanding operating conditions. With core advantages including temperature resistance, radiation resistance, and superior sealing, they are the preferred choice for driving systems in extreme environments, perfectly meeting the demands of all extreme operational scenarios. These high-temperature stepper motors support ultra-high vacuum environments down to 10⁻⁷ Pa. They utilize high-vacuum grease or solid lubrication solutions to eliminate gas outgassing contamination, ensuring the cleanliness of the operating environment. The sealing structure of these motors has been specially optimized to effectively isolate them from harsh external environments, protecting internal components from damage and further enhancing operational stability.

    High-temperature stepper motors possess exceptional temperature resistance, operating stably within the extreme temperature range of -196°C to +200°C. They can withstand the rigorous challenges of high-temperature baking while resisting performance degradation in low-temperature environments. The winding structure has been optimized for temperature resistance, maintaining stable torque output throughout the entire operating range. For radiation-exposed applications, the core components of the high-temperature stepper motor have been modified to be radiation-resistant, capable of withstanding an irradiation dose of 1×10⁶ Gy, effectively preventing radiation from affecting motor performance. The high-temperature stepper motor is equipped with flanges in multiple sizes (28/42/57/86 mm), covering a torque range of 0.04–6 Nm, to meet the drive requirements of various loads and accommodate installation and use in all types of extreme-environment equipment. The high-temperature stepper motor’s lubrication system can be flexibly adjusted according to operating conditions, further adapting to extreme temperature ranges and vacuum environments to ensure long-term stable operation.

    To accommodate diverse extreme operating conditions, the high-temperature stepper motor supports various functional options, including dual-axis control, safety braking, and temperature sensors. Its integrated design enhances equipment compatibility and meets the personalized needs of different scenarios. In aerospace test chambers, high-temperature stepper motors achieve precise position control; within radiation testing equipment, they maintain continuous and smooth operation; and in high- and low-temperature simulation chambers, they handle temperature fluctuations with ease, demonstrating exceptional environmental adaptability. Rigorous operational testing has verified that these motors resist aging and deformation while maintaining low power loss, significantly reducing equipment maintenance frequency and operational costs. With their superior environmental adaptability and precise drive capabilities, high-temperature stepper motors break through the operational limitations of traditional motors. Their high reliability provides stable, dependable, and efficient power solutions for a wide range of extreme environmental applications.

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    Frequently Asked Questions

    What is the operating temperature range of the KVM Series stepper motors?
    The KVM Series motors are designed to operate stably within an extreme temperature range of -196°C to +200°C, making them highly suitable for both extreme cryogenic and high-temperature environments.
    What level of vacuum environment do these motors support?
    They support ultra-high vacuum environments down to 10⁻⁷ Pa. The motors utilize high-vacuum grease or solid lubrication to eliminate outgassing contamination.
    Can these stepper motors handle radiation-exposed environments?
    Yes, the core components are modified to be radiation-resistant and can withstand an irradiation dose of up to 1×10⁶ Gy without affecting operational performance.
    Is it possible to install both a brake and feedback devices on a single motor?
    No, it is not possible to install both a brake and position feedback devices on the same stepper motor.
    What flange sizes and torque outputs are available?
    The KVM Series high-temperature stepper motors are available in multiple flange sizes (28, 42, 57, and 86 mm) covering a torque range of 0.04 to 6 Nm.
    Does Kingsni provide signal conversion options for resolver feedback?
    Yes, Kingsni can provide signal converters to convert resolver signals to RS485 output or A/B incremental pulse output.

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