IP Library Granted Patent US 8,986,569
Granted Patent B2
US 8,986,569 · App. 11/884,640 · Granted Mar 24, 2015

Flexible multi-layered getter

Inventors: Richard Kullberg (Colorado Springs, CO); Tim Armstrong (Colorado Springs, CO); Andrea Conte (Milan, IT); Enea Rizzi (Milan, IT)
Assignee: SAES Getters, S.p.A.
F16L59/08C01B3/0026C01B3/0031C01B3/0084C01B3/505F17C1/00F17C3/08H01J7/183C01B2203/041C01B2203/048F17C2203/0395F17C2221/01F17C2221/05F17C2223/0123F17C2223/0153F17C2223/0161F17C2223/033F17C2223/035Y02E60/327
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Quick Facts
Patent No.
US 8,986,569
App. No.
11/884,640
Granted
Mar 24, 2015
Kind
B2
Abstract

A flexible multi-layer getter with a gas-permeable layer covering a gas reservoir layer. In an embodiment, the gas-permeable layer covers part of the gas reservoir layer. In another embodiment, a barrier covers part of the gas reservoir layer. The barrier may include a foil substrate, a passivation layer, or a gas-permeable layer.

Claims (21)

1. A multi-layer getter foil comprising: a gas reservoir layer comprising titanium having a first surface and a second surface; a gas-permeable layer comprising palladium bonded to the first surface of the gas reservoir layer; and a barrier comprising titanium oxide on the second surface of the gas reservoir layer, whereby the titanium oxide barrier is at least partially self-healing when exposed to an oxygen containing atmosphere.

2. The getter of claim 1 wherein the gas-permeable layer includes an alloy of palladium and an element selected from the group consisting of tin, gold, boron, lead, silver, and combinations thereof.

3. The getter of claim 1 wherein the gas-permeable layer is less than about 10 micrometers thick.

4. The getter of claim 1 wherein the gas reservoir layer is monolithic.

5. The getter of claim 1 wherein the gas reservoir layer includes an alloy of titanium with one or more elements selected from the group consisting of transition metals, Rare Earths, and aluminum.

6. The getter of claim 1 wherein the gas reservoir layer is less than about 20 micrometers thick.

7. The getter of claim 1 wherein the barrier is formed when material at the second surface of the gas reservoir layer chemically reacts with a substance.

8. A multi-layer getter foil comprising;

a gas reservoir layer comprising titanium having a first surface and a second surface;

a gas-permeable layer comprising palladium bonded to the first surface of the gas reservoir layer; and

a barrier comprising titanium oxide on the second surface of the gas reservoir layer, wherein said barrier was formed by exposing the second surface of the gas reservoir to an oxygen containing atmosphere.

9. The getter of claim 8 wherein the gas-permeable layer includes an alloy of palladium and an element selected from the group consisting of tin, gold, boron, lead, silver, and combinations thereof.

10. The getter of claim 8 wherein the gas-permeable layer is less than about 10 micrometers thick.

11. The getter of claim 8 wherein the gas reservoir layer is monolithic.

12. The getter of claim 8 wherein the gas reservoir layer includes an alloy of titanium with one or more elements selected from the group consisting of transition metals, Rare Earths, and aluminum.

13. The getter of claim 8 wherein the gas reservoir layer is less than about 20 micrometers thick.

14. A multi-layer getter foil comprising:

a gas reservoir layer less than about 20 micrometers thick and having a first surface and a second surface, the gas reservoir layer including an alloy of titanium with one or more elements selected from the group consisting of transition metals, Rare Earths, and aluminum;

a gas-permeable layer less than about 10 micrometers thick, the gas-permeable layer comprising an alloy of palladium and an element selected from the group consisting of tin, gold, boron, lead, silver, and combinations thereof, said alloy of palladium bonded to the first surface of the gas reservoir layer; and

a barrier comprising titanium oxide on the second surface of the gas reservoir layer, wherein said barrier was formed by an oxidation of the second surface of the gas reservoir layer.

15. The getter of claim 14 wherein the gas reservoir layer is monolithic.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 19, 2008
From: KULLBERG, RICHARD; ARMSTRONG, TIM; CONTE, ANDREA; RIZZI, ENEA
To: SAES GETTERS, S.P.A.
Reel/Frame 021700/0105 →
Continuity (2)
Provisional Application 60654170 · Feb 17, 2005
Related Publication 20090215610A1 · Aug 27, 2009