IP Library Granted Patent US 10,647,611
Granted Patent B2
US 10,647,611 · App. 15/917,909 · Granted May 12, 2020

IG window unit having triple silver coating and dielectric coating on opposite sides of glass substrate

Inventors: Guowen Ding (San Jose, CA); Willem Den Boer (Brighton, MI); Yiwei Lu (Ann Arbor, MI); Cesar Clavero (San Jose, CA); Daniel Schweigert (San Jose, CA); Sang Lee (San Jose, CA)
Assignee: GUARDIAN GLASS, LLC
C03C17/3639C03C17/36C03C17/3602C03C17/366C03C17/3613C03C17/3626C03C17/3636C03C17/3642C03C17/3644C03C17/3681E06B3/6715E06B9/24B60J1/001B60J1/02C03C17/23C03C2217/211C03C2217/212C03C2217/213C03C2217/216C03C2217/23C03C2217/256C03C2217/281C03C2218/156E06B2009/2417Y02A30/25Y02B80/22
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Quick Facts
Patent No.
US 10,647,611
App. No.
15/917,909
Granted
May 12, 2020
Kind
B2
Abstract

An insulating glass (IG) window unit including first and second glass substrates that are spaced apart from each other. At least one of the glass substrate has a triple silver low-emissivity (low-E) coating on one major side thereof, and a dielectric coating for improving angular stability on the other major side thereof.

Claims (25)

1. An insulating glass (IG) widow unit comprising:

first and second glass substrates;

wherein the first glass substrate supports a low-E coating and an angular reduction dielectric coating on respective opposite major surfaces thereof;

wherein the low-E coating comprises first, second, and third infrared (IR) reflecting layers comprising silver, wherein at least a first dielectric layer of the low-E coating is provide between at least the first and second IR reflecting layers comprising silver, and at least a second dielectric layer of the low-E coating is provide between at least the second and third IR reflecting layers comprising silver;

wherein the angular reduction dielectric coating, which is on a side of the first glass substrate opposite the low-E coating, comprises a plurality of alternating high index and low index layers; and

wherein the low-E coating and the angular reduction dielectric coating are configured so that the IG window unit has an LSG value of at least 2.0, and a ΔC value of no greater than 3.0 as viewed from an exterior of a building in which the IG window unit is to be mounted across a range of angles of at least 85 degrees from a normal viewing angle which is perpendicular to the IG window unit, and

wherein ΔC is defined as

Δ C =[( a−a o ) 2 +[( b−b o ) 2 ] 1/2

where “a” is an a* color value at the normal viewing angle, and “a o ” is an a* color viewing angle at the off-axis viewing angle, “b” is a b* color value at the normal viewing angle, and “b o ” is a b* color viewing angle at the off-axis viewing angle.

2. The IG window unit of claim 1 , wherein the low-E coating and the angular reduction dielectric coating are configured so that the IG window unit has an LSG value of at least 2.2, and a ΔC value of no greater than 2.5 as viewed from an exterior of a building in which the IG window unit is to be mounted across a range of angles of at least 85 degrees from the normal viewing angle.

3. The IG window unit of claim 1 , wherein the low-E coating and the angular reduction dielectric coating are configured so that the IG window unit has an LSG value of at least 2.3, and a ΔC value of no greater than 2.0 as viewed from an exterior of a building in which the IG window unit is to be mounted across a range of angles of at least 85 degrees from the normal viewing angle.

4. The IG window unit of claim 1 , wherein the low-E coating and the angular reduction dielectric coating are configured so that the IG window unit has an LSG value of at least 2.3, and a ΔC value of no greater than 1.5 as viewed from an exterior of a building in which the IG window unit is to be mounted across a range of angles of at least 85 degrees from the normal viewing angle.

5. The IG window unit of claim 1 , wherein the low-E coating has a sheet resistance (R s ) of no greater than 2.0 ohms/square.

6. The IG window unit of claim 1 , wherein the high index layers comprise an oxide of titanium.

7. The IG window unit of claim 1 , wherein the high index layers comprise an oxide of niobium.

8. The IG window unit of claim 1 , wherein the low index layers comprise an oxide of silicon.

9. A window unit comprising:

first and second glass substrates;

wherein the first glass substrate supports a low-E coating and an angular reduction dielectric coating on respective opposite major surfaces thereof;

wherein the low-E coating comprises first and second infrared (IR) reflecting layers comprising silver, wherein at least a first dielectric layer of the low-E coating is provide between at least the first and second IR reflecting layers comprising silver;

wherein the angular reduction dielectric coating, which is on a side of the first glass substrate opposite the low-E coating, comprises a plurality of alternating high index and low index layers;

wherein the low-E coating and the angular reduction dielectric coating are configured so that the window unit has an LSG value of at least 2.0, and a ΔC value of no greater than 3.0 as viewed from an exterior of a building in which the IG window unit is to be mounted across a range of angles of at least 85 degrees from a normal viewing angle which is perpendicular to the window unit, and

wherein ΔC is defined as

Δ C =[( a−a o ) 2 +[( b−b o ) 2 ] 1/2

where “a” is an a* color value at the normal viewing angle, and “a o ” is an a* color viewing angle at the off-axis viewing angle, “b” is a b* color value at the normal viewing angle, and “b o ” is a b* color viewing angle at the off-axis viewing angle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 2, 2018
From: DING, GUOWEN; DEN BOER, WILLEM; LU, YIWEI; CLAVERO, CESAR; SCHWEIGERT, DANIEL; LEE, SANG
To: GUARDIAN GLASS, LLC
Reel/Frame 047398/0208 →