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Turbovac and mag - Ideal Vacuum Products

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Mechanical Rotor Suspension<br />

without integrated Frequency Converter<br />

with Compound Stage<br />

TURBOVAC TW 250 S<br />

Typical Applications<br />

- Analytical Instruments<br />

- Coating<br />

- R & D<br />

- Transfer chambers<br />

b b 1 d d 1 h<br />

DN 100 ISO-K 20 22 160 146.6 175<br />

DN 100 CF 20 22 160 146.6 175<br />

h 1 h 2 h 3 h 4 h 5<br />

DN 100 ISO-K 37 14 4 20 40<br />

DN 100 CF 37 14 4 20 40<br />

h<br />

120°<br />

M4<br />

Upper view<br />

7,5°<br />

d1<br />

DN<br />

105°<br />

Technical Features<br />

- High gas throughput<br />

Oil free pump<br />

- Insensitive to impact <strong>and</strong> movement<br />

due to the mechanical bearing concept-<br />

Installation in any orientation<br />

- Small footprint<br />

- Integrated fan<br />

- Purge gas/venting connection<br />

h1<br />

h2<br />

b b 1<br />

d<br />

h3<br />

h4 h5<br />

Dimensional drawing for the TURBOVAC TW 250 S without frequency converter<br />

10 2<br />

-1<br />

Advantages to the User<br />

- Highest throughput for N 2 <strong>and</strong> Ar<br />

10<br />

- Highest reliability in operation<br />

1<br />

- Space-saving<br />

Throughput<br />

10 -1<br />

10 -2<br />

10 -3<br />

TURBOVAC TW 250 S<br />

TRIVAC D 16 B<br />

TRIVAC D 8 B<br />

- High reliability due to self-monitoring<br />

- Easy to integrate into complex<br />

vacuum systems<br />

10 -4<br />

ECODRY M<br />

50 Hz<br />

10 -5 10 -5 10 -4 10 -3<br />

10 -2 10 -1 1 10<br />

mbar<br />

Inlet pressure<br />

Operation diagram for nitrogen for TURBOVAC TW 250 S<br />

C09 56<br />

Oerlikon Leybold <strong>Vacuum</strong> Full Line Catalog

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