IP Library Granted Patent US 9,660,350
Granted Patent B2
US 9,660,350 · App. 14/400,382 · Granted May 23, 2017

Method for creating a slot-line on a multilayer substrate and multilayer printed circuit comprising at least one slot-line realized according to said method and used as an isolating slot or antenna

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Quick Facts
Patent No.
US 9,660,350
App. No.
14/400,382
Granted
May 23, 2017
Kind
B2
Abstract

The present invention relates to a method for realizing a short-circuited slot-line on a multilayer substrate comprising at least a first conductive layer, a dielectric layer and a second conductive layer, the method comprising the following steps: etching in the first conductive layer a slot-line having an electrical length L, etching in the first conductive layer, around the slot-line, a first portion of a first band having an electrical length L 1 ≦L, etching in the first conductive layer, around the slot-line, a second portion of said first band, having an electrical length L 2 ≦L, etching in the second conductive layer, a second band in the form of a loop having an electrical length L 3, one end of the second band being connected to the first part of the first band and the other end of the second band being connected to the second part of the first band so as to form a conductive loop. The method is used notably to realize isolating slot-lines and slot-antennae.

Claims (28)

1. Method for realizing a slot antenna in a multilayer substrate of a printed circuit comprising at least a first conductive layer, a dielectric layer and a second conductive layer, the method comprising:

etching in the edge of the first conductive layer a short-circuited slot-line having an electrical length L,

etching in the first conductive layer a slot surrounding the slot-line and an opening at the short-circuited part of the slot-line so as to realize, a first portion of a first conductive band having an electrical length L 1 ≦L

and a second portion of said first conductive band having an electrical length L 2 ≦L,

etching in the second conductive layer, of a second conductive band in the form of a loop having an electrical length L 3 ,

one end of the second conductive band being connected to the first portion of the first conductive band and the other end of the second conductive band being connected to the second portion of the first conductive band so as to form a conductive loop

wherein the sum of the electrical lengths L 3 +L 1 +L 2 is substantially equal to 180°.

2. Method according to claim 1 , wherein the slot-line is a line of electrical length L<90°.

3. Method according to claim 2 , wherein the slot-line has an electrical length L=45°.

4. Method according to claim 1 , wherein the electrical lengths L 1 and L 2 of the first and second portions of the first conductive band are identical.

5. Method according to claim 4 , wherein the electrical lengths of the first and second portions of the first conductive band are equal to 45°.

6. Method according to claim 1 , wherein the electrical length L 3 of the second conductive band is substantially equal to the sum of the electrical lengths L 1 and L 2 of the first and second portions of the first conductive band.

7. Multilayer printed circuit comprising at least one slot-line realized according to claim 1 .

8. A slot antenna, comprising

a multilayer substrate including at least a first conductive layer, a dielectric layer and a second conductive layer:

a short-circuited slot-line having an electrical length L, etched in the edge of the first conductive layer,

a first portion of a first conductive band having an electrical length L 1 ≦L and a second portion of said first conductive band having an electrical length L 2 ≦L, etched in the first conductive layer a slot surrounding the slot-line and an opening at the short circuit part of the slot-line,

a second conductive band in the form of a loop having an electrical length L 3 , etched in the second conductive layer,

one end of the second conductive band being connected to the first portion of the first conductive band and the other end of the second conductive band being connected to the second portion of the first conductive band so as to form a conductive loop,

wherein the sum of the electrical lengths L 3 +L 1 +L 2 is substantially equal to 180°.

9. The slot antenna according to claim 8 , wherein the slot-line is a line of electrical length L<90°.

10. The slot antenna according to claim 8 , wherein that the slot-line has an electrical length L=45°.

11. The slot antenna according to claim 8 , wherein the electrical lengths L 1 and L 2 of the first and second portions of the first conductive band are identical.

12. The slot antenna according to claim 8 , wherein the electrical lengths of the first and second portions of the first conductive band are equal to 45°.

13. The slot antenna according to claim 8 , wherein the electrical length L 3 of the second conductive band is substantially equal to the sum of the electrical lengths L 1 and L 2 of the first and second portions of the first conductive band.

14. The slot antenna according to claim 8 , wherein the slot-line is an isolating slot.

15. The slot antenna according to claim 8 , wherein the slot-line extending on the side opposite the feed side by a slot-line terminating in an open circuit.

16. Terminal incorporating at least a slot antenna according to claim 8 .

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 20, 2020
From: THOMSON LICENSING S.A.S.
To: MAGNOLIA LICENSING LLC
Reel/Frame 053570/0237 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 1, 2017
From: TONG, DOMINIQUE LO HINE; MINARD, PHILIPPE; ROBERT, JEAN-LUC
To: THOMSON LICENSING
Reel/Frame 041428/0168 →