IP Library Granted Patent US 7,694,574
Granted Patent B2
US 7,694,574 · App. 12/425,454 · Granted Apr 13, 2010

Pirani vacuum gauge

Assignee: Canon ANELVA Technix Corporation
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Quick Facts
Patent No.
US 7,694,574
App. No.
12/425,454
Granted
Apr 13, 2010
Kind
B2
Abstract

A Pirani vacuum gauge in which a response to a rapid pressure rise is improved and restrictions on a mounting direction of a container on a chamber to be measured for pressure are eliminated is provided. The Pirani vacuum gauge includes a heat filament of metal wire and a support unit for supporting the heat filament in a container, wherein a gas pressure is measured based on an amount of heat conducted away from the heat filament by gas molecules colliding with the heat filament, characterized in that a body of the container is filled with metal material, but a first cylindrical bore and a second cylindrical bore extend through the body, the heat filament being inserted into the first cylindrical bore and the support unit being inserted into the second cylindrical bore.

Claims (15)

1. A Pirani vacuum gauge comprising a heat filament of metal wire, a support unit for supporting said heat filament and an elongated container for defining an air sealed space when the gauge is coupled to a chamber to be measured for pressure and accommodating said heat filament and said support unit in the air sealed space, wherein one end of said container is provided with a coupling end which couples the gauge to a chamber to be measured for pressure and the other end of said container is provided with a means which electrically connects said heat filament and said support unit to an external control circuit with holding said heat filament and said support unit in an air sealing to an atmosphere, and said heat filament and said support unit extend within said elongated container in a longitudinal direction from the one end to the other end of said container,

wherein a body of said container is formed of metal material,

a first bore and a second bore longitudinally extend through the body of said container, the first bore and second bore accommodating respectively said heat filament and said support unit,

the coupling end of said container to the chamber to be measured for pressure has a recess space dented toward the inside of said container and one end of said heat filament and one end of said support unit are jointed in the recess space, and

a thickness of the metal material body around the first bore except for a part facing the second bore is larger than or equal to 2 mm.

2. The Pirani vacuum gauge according to claim 1 , wherein the first and second bores are in a cylindrical shape.

3. The Pirani vacuum gauge according to claim 1 , wherein the first and second bores communicate to each other with a longitudinal slit the thickness of which is less than or equal to 2 mm.

4. The Pirani vacuum gauge according to claim 1 , a distance between a wall surface of the first bore and the heat filament is less than or equal to 3 mm.

5. The Pirani vacuum gauge according to claim 1 , wherein a part over 80% of a longitudinal whole length of the heat filament is accommodated within the first bore.

6. The Pirani vacuum gauge according to claim 1 further comprising a temperature sensor contacted to a recess provided at an outside wall surface of said container.

7. A Pirani vacuum gauge comprising a heat filament of metal wire, a support unit for supporting said heat filament and an elongated container which defines an air sealed space when the gauge is coupled to a chamber to be measured for pressure and accommodates said heat filament and said support unit is the air sealed space wherein one end of the gauge is provided with a coupling end which couples the gauge to the chamber to be measured for pressure and the other end of the gauge is provided with a means which electrically connects said heat filament and said support unit to an external control circuit with holding said heat filament and said support unit in an air sealing to an atmosphere, and said heat filament and said support unit extend within said elongated container in a longitudinal direction from the one end to the other end of said container, wherein

said elongated container comprises a rod body made of metal material wherein a first bore and a second bore longitudinally extend through the rod body, the first bore accommodating said heat filament and the second bore accommodating said support unit,

a distance between a wall surface of the first bore and the heat filament is less than or equal to 3 mm, and

a thickness of the rod body around the first bore except for a part facing the second bore is larger than or equal to 2 mm.

8. The Pirani vacuum gauge according to claim 7 , wherein the first and second bores communicate to each other with a longitudinal slit the thickness of which is less than or equal to 2 mm.

Assignments (2)
MERGER Recorded Apr 9, 2010
From: CANON ANELVA ENGINEERING CORPORATION; CANON ANELVA TECHNIX CORPORATION
To: CANON ANELVA CORPORATION
Reel/Frame 024210/0942 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 28, 2009
From: KAWASAKI, YOHSUKE
To: CANON ANELVA TECHNIX CORPORATION
Reel/Frame 022602/0904 →
Priority Claims (1)
JP 2007-238040 · Sep 13, 2007 · national
Continuity (2)
Continuation PCTJP200806666000 · Sep 16, 2008
Related Publication 20090199649A1 · Aug 13, 2009