IP Library › Granted Patent US 10,957,990
Granted Patent B2
US 10,957,990 · App. 16/305,804 · Granted Mar 23, 2021

Scanning antenna

Inventors: Katsunori Misaki (Yonago, JP); Satoshi Ueda (Yonago, JP)
Assignee: SHARP KABUSHIKI KAISHA
H01Q21/065G02F1/13G02F1/1333G02F1/1343H01L27/12H01L27/124H01L27/1255H01Q9/04H01Q9/0407H01Q21/06H01Q21/064
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Quick Facts
Patent No.
US 10,957,990
App. No.
16/305,804
Granted
Mar 23, 2021
Kind
B2
Abstract

A scanning antenna provided with an array of a plurality of antenna units includes a TFT substrate, a slot substrate, and a liquid crystal layer disposed between the TFT substrate and the slot substrate. The slot substrate includes a second dielectric substrate, a slot electrode supported on a first main surface of the second dielectric substrate, and a first dielectric layer disposed between the second dielectric substrate and the slot electrode. The slot electrode has tensile stress. The first dielectric layer has compressive stress.

Claims (33)

1. A scanning antenna provided with an array of a plurality of antenna units, the scanning antenna comprising:

a thin-film transistor (TFT) substrate including a first dielectric substrate, a plurality of TFTs supported on the first dielectric substrate, a plurality of gate bus lines, a plurality of source bus lines, and a plurality of patch electrodes;

a slot substrate including a second dielectric substrate, a slot electrode supported on a first main surface of the second dielectric substrate, and an insulating layer disposed between the second dielectric substrate and the slot electrode;

a liquid crystal layer provided between the TFT substrate and the slot substrate; and

a reflective conductive plate disposed to face via a dielectric layer a second main surface opposite the first main surface of the second dielectric substrate,

wherein the slot electrode comprises a plurality of slots disposed corresponding to the plurality of patch electrodes,

the plurality of patch electrodes are each connected to a drain of a corresponding TFT,

the slot electrode has tensile stress, and

the insulating layer has compressive stress.

2. The scanning antenna according to claim 1 ,

wherein the slot electrode comprises a Cu layer, and has a thickness of from approximately 2 μm to approximately 6 μm, inclusive.

3. The scanning antenna according to claim 1 ,

wherein the insulating layer comprises a silicon nitride layer, and has a thickness of from approximately 200 nm to approximately 900 nm, inclusive.

4. The scanning antenna according to claim 3 ,

wherein the silicon nitride layer has a hydrogen removal amount of approximately 3×10 16 /cm 2 or less.

5. The scanning antenna according to claim 3 ,

wherein the silicon nitride layer has a refractive index of approximately 1.805 or greater.

6. The scanning antenna according to claim 1 ,

wherein the insulating layer comprises a silicon oxide layer, and has a thickness of from approximately 200 nm to approximately 900 nm, inclusive.

7. The scanning antenna according to claim 6 ,

wherein the silicon oxide layer has a refractive index of from approximately 1.4 to approximately 1.6, inclusive.

8. The scanning antenna according to claim 1 ,

wherein the insulating layer comprises a silicon nitride layer and a silicon oxide layer,

the silicon nitride layer is closer to the slot electrode than the silicon oxide layer, and

the insulating layer has a thickness of from approximately 200 nm to approximately 900 nm, inclusive.

9. The scanning antenna according to claim 1 ,

wherein the insulating layer comprises a silicon nitride layer and a silicon oxide layer,

the silicon oxide layer is closer to the slot electrode than the silicon nitride layer, and

the insulating layer has a thickness of from approximately 200 nm to approximately 900 nm, inclusive.

10. The scanning antenna according to claim 1 ,

wherein the second dielectric substrate is a glass substrate, and has a thickness of from approximately 0.65 mm to approximately 0.74 mm, inclusive.

11. The scanning antenna according to claim 1 ,

wherein the slot substrate further comprises a conductive layer covering a surface of the slot electrode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 29, 2018
From: MISAKI, KATSUNORI; UEDA, SATOSHI
To: SHARP KABUSHIKI KAISHA
Reel/Frame 047751/0608 →
Priority Claims (1)
JP JP2016-107369 · May 30, 2016 · national
Continuity (1)
Related Publication 20200328528A1 · Oct 15, 2020