IP Library › Granted Patent US 10,309,401
Granted Patent B2
US 10,309,401 · App. 15/541,085 · Granted Jun 4, 2019

Vacuum exhaust system and channel-switching valve used in this vacuum exhaust system

Inventors: Nigel Paul Schofield (Burgess Hill, GB); Andrew Seeley (Clevedon, GB); Katsumi Nishimura (Chiba, JP); Katsunori Takahashi (Chiba, JP)
Assignee: Edwards Limited
F04C25/02C23C16/4405C23C16/4412F04C23/001F04C23/003H01L21/205H01L21/67155F04C2220/30F16K15/00
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Quick Facts
Patent No.
US 10,309,401
App. No.
15/541,085
Granted
Jun 4, 2019
Kind
B2
Abstract

A vacuum exhaust system which exhausts gas from chambers and which comprises a plurality of branch channels for the exhaustion of the gas from the chambers, a main pipeline in the form of a confluence of the plurality of branch channels, channel open-close valves fitted to correspond with each of the said plurality of branch channels, a channel-switching valve connecting the main channel and a plurality of selection channels and allowing flow between the main channel and any one of the plurality of selection channels, a first pump which functions as a gas exhaust means in the molecular flow region of the gas and is fitted to one of the plurality of branch channels, and second pumps which function as gas exhaust means in the viscous flow region of the gas and are fitted to the plurality of selection channels.

Claims (23)

1. A vacuum exhaust system that exhausts gas from a chamber, the vacuum exhaust system comprising:

a plurality of branch channels for the exhaustion of the gas from the chamber,

a main channel formed from a confluence of the plurality of branch channels and connected to a plurality of selection channels by a channel-switching valve, wherein the channel-switching valve is configured to connect the main channel to any one of the plurality of selection channels,

a respective channel open-close valve fitted to each branch channel of the plurality of branch channels,

a first pump which functions as a gas exhaustion means in the molecular flow region of the gas and is fitted to any of the plurality of branch channels, and

second pumps which function as gas exhaustion means in the viscous flow region of the gas, the second pumps fitted to the plurality of selection channels;

wherein the selection channels comprise three selection channels and a respective one of the second pumps is fitted to each of the selection channels, and wherein one of the respective second pumps fitted to one selection channel of the plurality of selection channels is used for rough pumping of the chamber when the gas is exhausted, and wherein, apart from rough pumping, the one of the respective second pumps is otherwise kept in an immediately-usable standby state to be used as a backup pump for the other two respective second pumps respectively fitted to the other two selection channels.

2. The vacuum exhaust system according to claim 1 , further comprising a third pump which functions as a means of increasing the exhaustion rate in a pressure region in which the exhaustion rate of the second pump is lower, and the third pump is fitted to any one of the plurality of branch channels.

3. The vacuum exhaust system according to claim 2 , wherein

the third pump is fitted in the same branch channel as the first pump and a pipe from the first pump to the third pump is of greater diameter than other pipes in the plurality of branch channels.

4. A vacuum exhaust system for exhausting gas from a first chamber and from at least one further chamber, the vacuum exhaust system comprising:

a vacuum exhaust system for evacuating said first chamber, the vacuum exhaust system comprising:

a plurality of branch channels for the exhaustion of the gas from the chamber,

a main channel formed from a confluence of the plurality of branch channels and connected to a plurality of selection channels by a channel-switching valve, wherein the channel switching valve is configured to connect the main channel to any one of the plurality of selection channels,

a respective channel open-close valve fitted to each branch channel of the plurality of branch channels,

a first pump which functions as a gas exhaustion means in the molecular flow region of the gas and is fitted to any of the plurality of branch channels, and

second pumps which function as gas exhaustion means in the viscous flow region of the gas, the second pumps fitted to the plurality of selection channels,

at least one further plurality of branch channels for the exhaustion of the gas from the at least one further chamber,

at least one further main channel formed from the confluence of the at least one further plurality of branch channels,

a respective channel open-close valve fitted to each of the at least one further plurality of branch channels,

at least one further channel switching valve, wherein the at least one further main channel is connected to one of the plurality of selection channels via a respective at least one further channel switching valve, the respective at least one respective channel switching valve being configured to connect the at least one further main channel to any one of the plurality of selection channels,

at least one further first pump which functions as a gas exhaustion means in the molecular flow region of the gas for exhausting said at least one further chamber, and

at least one further first pump fitted to a respective any of the at least one further plurality of branch channels; wherein the selection channels comprise three selection channels and a respective one of the second pumps is fitted to each of the selection channels, and wherein one of the respective second pumps fitted to one selection channel of the plurality of selection channels is used for rough pumping of the chamber when the gas is exhausted, and wherein, apart from rough pumping, the one of the respective second pumps is otherwise kept in an immediately-usable standby state to be used as a backup pump for the other two respective second pumps respectively fitted to the other two selection channels.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2017
From: SCHOFIELD, NIGEL PAUL; SEELEY, ANDREW JAMES; NISHIMURA, KATSUMI; TAKAHASHI, KATSUNORI
To: EDWARDS LIMITED
Reel/Frame 043953/0116 →
Priority Claims (1)
GB 1500133.2 · Jan 6, 2015 · national
Continuity (1)
Related Publication 20180003178A1 · Jan 4, 2018