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PANDA/PUMA

Vacuum boosters

panda_puma

PANDA/PUMA vacuum boosters increase the pumping speed and ultimate pressure of vacuum pumps. They can boost the performance of vacuum systems by up to a factor of ten.

In combination with backing pumps, PANDA/PUMA are perfectly suited for all applications that require high pumping speeds at a defined working pressure.

Busch vacuum boosters are available in a large number of sizes. This allows pumping speed and ultimate pressure to be tailored exactly to the process conditions.

In contrast to PUMA vacuum boosters, PANDA vacuum boosters come with a bypass valve as standard. Both PUMA/PANDA series are compatible with a variable speed drive.

Operating principle

Within the housing of PANDA/PUMA vacuum boosters, two lobes rotate synchronously. Due to the special profile of the lobes and their precise manufacturing, they do not come in contact with each other or the housing. Thus, no lubricants or operating fluids are required in the process chamber.

During the rotation of the lobes, gas is transported between the lobes and the housing into the backing pump.

Discover our PANDA/PUMA series

  • panda_wz_2400_a
    PANDA WZ

    The leak-tight performance optimizers for medium and high vacuum applications

    Learn more
  • panda_wv_1000_c
    PANDA WV

    The performance optimizers for industrial applications with bypass valve

    Learn more
  • puma_wy_0500_c
    PUMA WY

    The leak-tight performance optimizers for medium and high vacuum applications

    Learn more
  • puma_wp0500_d
    PUMA WP/WPA

    The performance optimizers for industrial vacuum applications

    Learn more

PANDA WV

panda_wv_1000_c
The performance optimizers for industrial applications with bypass valve

  • High volumetric efficiency
  • Integrated bypass valve
  • Dry and contact-free compression
  • Minimal maintenance
  • Adaptable to all types of backing pumps

Benefits of the PANDA WV series

PANDA WV significantly increase the performance of all types of backing pumps in the rough, medium and high vacuum range.

They are equipped with a bypass valve as standard. It reliably protects the vacuum boosters against overloading or overheating and allows them to be used for high differential pressures.

PANDA WV vacuum boosters operate completely contact-free and without any operating fluids in the process chamber. Maintenance is therefore limited to a minimum. Additionally, PANDA WV vacuum boosters have an exceptional volumetric efficiency and low energy consumption. All this leads to low operating costs.

PANDA WV can be flanged directly onto the backing pump or at any other position in the system. They are also compatible with a variable speed drive.

All PANDA WV products

  • PANDA WV 0250/0500 C
    PANDA WV 0250/0500 C

    Nominal pumping speed:
    Min. 250 m³/h Max. 600 m³/h
    Max. differential pressure:
    85 hPa (mbar)

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  • PANDA WV 1200–2400 A
    PANDA WV 1200–2400 A

    Nominal pumping speed:
    Min. 1050 m³/h Max. 2540 m³/h
    Max. differential pressure:
    53 hPa (mbar)

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  • PANDA WV 4500 B
    PANDA WV 4500 B

    Nominal pumping speed:
    Min. 4500 m³/h Max. 5400 m³/h
    Max. differential pressure:
    25 hPa (mbar)

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PUMA WY

puma_wy_0500_c
The leak-tight performance optimizers for medium and high vacuum applications

  • Variable speed drive available
  • Dry and contact-free compression
  • Adaptable to all types of backing pumps
  • Minimal maintenance
  • High volumetric efficiency
  • Leak-tightness (> 1x10-6 mbar x l/s)
  • GGG40 housing for high mechanical and chemical resistance

Benefits of the PUMA WY series

PUMA WY significantly increase the performance of all types of backing pumps in the medium and high vacuum range. They have been specially designed for semiconductor processes.

Thanks to a directly flange-mounted water-cooled motor, PUMA WY vacuum boosters are leak-tight to the atmosphere. They are perfectly suited to handle aggressive or toxic gases.

PUMA WY vacuum boosters operate completely contact-free and without any operating fluids in the process chamber. Maintenance is therefore limited to a minimum. Additionally, PUMA WY vacuum boosters have an exceptional volumetric efficiency and low energy consumption. All this leads to low operating costs.

PUMA WY can be controlled using a pressure switch. The pressure switch activates the vacuum booster when it has achieved the optimum working pressure. Alternatively, PUMA WY are available in versions with variable speed drive.

Having no coupling between motor and housing, PUMA WY are compact. They can be flanged directly onto the backing pump or at any other position in the system.

All PUMA WY products

  • PUMA WY 0500–2000 C
    PUMA WY 0500–2000 C

    Nominal pumping speed:
    Min. 700 m³/h Max. 1200 m³/h
    Max. differential pressure:
    80–50 hPa (mbar)

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  • PUMA WY 3600 A
    PUMA WY 3600 A

    Nominal pumping speed:
    3600 m³/h
    Max. differential pressure:
    30 hPa (mbar)

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  • PUMA WY 8000 A
    PUMA WY 8000 A

    Nominal pumping speed:
    8100 m³/h
    Max. differential pressure:
    15 hPa (mbar)

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PANDA WZ

panda_wz_2400_a
The leak-tight performance optimizers for medium and high vacuum applications

  • High volumetric efficiency
  • Integrated bypass valve
  • Leak-tightness (> 1x10-6 mbar x l/s)
  • Dry and contact-free compression
  • Adaptable to all types of backing pumps
  • Minimal maintenance

Benefits of the PANDA WZ series

PANDA WZ significantly increase the performance of all types of backing pumps in the medium and high vacuum range. They have been specially designed for semiconductor processes.

Thanks to a directly flange-mounted water-cooled motor, PANDA WZ vacuum boosters are leak-tight to the atmosphere. They are perfectly suited to handle aggressive or toxic gases.

Having no coupling between motor and housing, PANDA WZ are compact. They can be flanged directly onto the backing pump or at any other position in the system.


PANDA WZ vacuum boosters operate completely contact-free and without any operating fluids in the process chamber. Maintenance is therefore limited to a minimum. Additionally, PANDA WZ vacuum boosters have an exceptional volumetric efficiency and low energy consumption. All this leads to low operating costs.

PANDA vacuum boosters are equipped with a bypass valve as standard. It reliably protects the vacuum boosters against overloading or overheating and allows them to be used for high differential pressures. Additionally, PANDA WZ are compatible with a variable speed drive.

All PANDA WZ products

  • PANDA WZ 0250–2400 A/B
    PANDA WZ 0250–2400 A/B

    Nominal pumping speed:
    Min. 263 m³/h Max. 2540 m³/h
    Max. differential pressure:
    100–30 hPa (mbar)

    Learn more

PUMA WP

puma_wp0500_d
The performance optimizers for industrial vacuum applications

  • Variable speed drive available
  • Dry and contact-free compression
  • Adaptable to all types of backing pumps
  • Minimal maintenance
  • High volumetric efficiency
  • GGG40 housing for high mechanical and chemical resistance

Benefits of the PUMA WP series

PUMA WP significantly increase the performance of all types of backing pumps in the rough and medium vacuum range.

PUMA WP can be controlled using a pressure switch. The pressure switch activates the vacuum booster when it has achieved the optimum working pressure. Alternatively, PUMA WP are available in versions with variable speed drive.

PUMA WP vacuum boosters operate completely contact-free and without any operating fluids in the process chamber. Maintenance is therefore limited to a minimum. Additionally, PUMA WP vacuum boosters have an exceptional volumetric efficiency and low energy consumption. All this leads to low operating costs.

PUMA WP can be flanged directly onto the backing pump or at any other position in the system.

All PUMA WP products

  • PUMA WP 0250/0500 D2/D4
    PUMA WP 0250/0500 D2/D4

    Nominal pumping speed:
    Min. 260 m³/h Max. 620 m³/h
    Max. differential pressure:
    80–50 hPa (mbar)

    Learn more
  • PUMA WP 0700/1000 D/D2/D4
    PUMA WP 0700/1000 D/D2/D4

    Nominal pumping speed:
    Min. 700 m³/h Max. 1200 m³/h
    Max. differential pressure:
    80–50 hPa (mbar)

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  • PUMA WP 1250–4500 B2/D2
    PUMA WP 1250–4500 B2/D2

    Nominal pumping speed:
    Min. 1295 m³/h Max. 5400 m³/h
    Max. differential pressure:
    50–25 hPa (mbar)

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