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PB Series Vacuum High-Low Temperature Radiation-Resistant Reducer | China Suppliers and Factory for Space Rotary Tables
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PB Series Vacuum High-Low Temperature Radiation-Resistant Reducer | China Suppliers and Factory for Space Rotary Tables

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    Vacuum Performance: Achieves vacuum levels down to 10-7Pa, making it ideal for high-precision applications.

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    Operating Temperature Range: Capable of functioning in extreme environments with temperatures as low as -80°C and as high as 200°C.

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    Radiation Resistance: Designed to withstand radiation exposure up to 106Gy, suitable for challenging applications.

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    Frame Sizes: Available in various sizes including 42, 60, 90, 115, 142, and 180mm to meet diverse installation requirements.

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    Rated Torque Load: Supports a wide range of torque loads from 5 to 1200Nm, ensuring reliability in heavy-duty operations.

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    Gear Ratio: Offers gear ratios from 3 to 100 for enhanced versatility in speed and torque applications.

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    Output Shaft Options: Choose between an in-line configuration (PB series) or a 90° rectangular output (PBR series) for flexible integration.

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As a leading factory in China, we are proud suppliers of high-quality vacuum and torque solutions, designed to meet the demanding needs of various industries.

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    Options

    • Side Handwheel

    Ordering Information

    pb product structure diagram
    1 Product series

    PB series: In-line planetary gearbox

    PBR series: 90° rectangle planetary gearbox

    2 Flange size

    42 / 60 / 90 / 115 / 142 / 180 mm

    3 Reduction stage

    L1: 1 stage

    L2: 2 stages

    4 Reduction ratio

    1 stage: 3, 4, 5, 6, 7, 8, 10

    2 stages: 12, 15, 16, 20, 25, 30, 32, 35, 36, 40, 50, 60, 64, 70, 80, 100

    5 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 10-3 / 10-5 -
    NTL2 -40~+100 - -
    NTL3 -65~+125 10-3 -
    NTL4 -80~+40 10-3 -
    NTL5 -55~+150 - -
    6 Vacuum class code

    Blank: Non-vacuum

    V3: Low pressure or vacuum to 10-3Pa

    V5: Vacuum to 10-5Pa

    V7: Vacuum to 10-7Pa

    7 Radiation resistance code

    Blank: No radiation resistance

    RH: Radiation resistance (total dose 106Gy)

    8 Designator of mounted motor

    e.g.

    KH86: KH series 86mm stepper motor

    KVM57: KVM series 57mm stepper motor

    KECM750: KECM series 750W servo motor

    KSSM400: KSSM series 400W servo motor

    Description

    The space rotary table is a core moving component of aerospace satellites, deep space exploration equipment, and ground space simulation chambers. It operates long-term under extreme composite working conditions including ultra-high vacuum, severe temperature difference, and cosmic ray radiation. Ordinary reducers are prone to lubrication failure, structural jamming, material aging and other faults. In contrast, the vacuum high-low temperature radiation-resistant reducer is customized for extreme aerospace working conditions and serves as the core guarantee for stable and precise transmission of space rotary tables. The vacuum high-low temperature radiation-resistant reducer achieves an ultra-high vacuum resistance of 10⁻⁷ Pa, fully adapts to the space vacuum environment without gas precipitation or cavity pollution, and ensures the internal cleanliness of aerospace equipment. Adopting an ultra-wide temperature adaptation performance, the vacuum high-low temperature radiation-resistant reducer stably withstands drastic temperature fluctuations from -196℃ ultra-low temperature to +200℃ high temperature, perfectly matching the complex space environment of high temperature on the sun-facing side and extreme low temperature on the back-facing side. Meanwhile, the vacuum high-low temperature radiation-resistant reducer resists high-intensity radiation of 1×10⁷ Gy, effectively preventing the aging and failure of transmission components caused by long-term erosion of cosmic high-energy rays.

    To adapt to space rotary table equipment of various specifications, the vacuum high-low temperature radiation-resistant reducer is equipped with complete standardized flange sizes, covering 42/60/90/100/115/140/180/200/220/255 mm, fully meeting the installation requirements of small cloud platform rotary tables, medium-load rotary tables and large space simulation rotary tables. The vacuum high-low temperature radiation-resistant reducer features a gear ratio ranging from 3 to 100, satisfying diverse transmission demands including high-precision fine adjustment and high-torque heavy-duty driving; its rated torque ranges from 5 to 1200 Nm, adapting to all types of light and heavy space rotary table equipment. In terms of output structure, the vacuum high-low temperature radiation-resistant reducer supports shaft output and flange plate output to match different transmission connection structures. Motors can be connected in linear or 90° angle types, enabling flexible adaptation to the narrow and compact installation space of aerospace equipment.

    Aerospace space rotary tables require long-term maintenance-free continuous operation, imposing extremely high requirements on the stability, durability and environmental adaptability of transmission components. The vacuum high-low temperature radiation-resistant reducer adopts special radiation-resistant alloy materials, wide-temperature resistant sealing structure and non-volatile special lubricating medium, fully adapting to extreme space working conditions in structure and material. Whether for attitude adjustment rotary tables of in-orbit satellites, rotating bases of deep space exploration manipulators, or ground space environment simulation test rotary tables, the vacuum high-low temperature radiation-resistant reducer maintains precise transmission and stable operation without jamming, air leakage or performance attenuation. Compared with ordinary reducers, the vacuum high-low temperature radiation-resistant reducer integrates three core performances of vacuum resistance, high-low temperature resistance and radiation resistance without additional adaptation modification, greatly reducing the R&D and maintenance costs of aerospace equipment, and has become the preferred core accessory in the field of space rotary table transmission.

    the space rotary table is a core moving component of aerospace satellites

    Frequently Asked Questions (FAQ)

    What level of vacuum environment can this reducer operate in?

    This reducer is designed for extreme aerospace working conditions and can achieve an ultra-high vacuum resistance of up to 10⁻⁷ Pa. It fully adapts to the space vacuum environment without gas precipitation or cavity pollution, ensuring the internal cleanliness of aerospace equipment.

    What temperature range is supported by the vacuum planetary gearbox?

    It features an ultra-wide temperature adaptation performance, stably withstanding drastic temperature fluctuations from -196℃ ultra-low temperature to +200℃ high temperature, which perfectly matches the high temperature on the sun-facing side and extreme low temperature on the back-facing side of space environments.

    How does the reducer handle cosmic ray radiation?

    The reducer is built with special radiation-resistant alloy materials and design structures that allow it to resist high-intensity radiation of up to 1×10⁷ Gy, effectively preventing the aging and failure of transmission components caused by cosmic rays.

    What flange sizes and gear ratios are available?

    We offer standard flange sizes covering 42/60/90/100/115/140/180/200/220/255 mm. The gear ratios range from 3 to 100 across 1-stage and 2-stage configurations, supporting diverse transmission requirements.

    What are the motor mounting options for space rotary tables?

    It supports both inline (PB series) and 90° angle (PBR series) motor connection configurations. This enables flexible adaptation to the narrow and compact installation spaces typical of aerospace equipment.

    What output structures are supported by the reducer?

    To match different transmission connection configurations, the reducer supports both shaft output and flange plate output designs.

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