IP Library Granted Patent US 12,148,971
Granted Patent B2
US 12,148,971 · App. 17/761,120 · Granted Nov 19, 2024

Radio frequency device

Inventor: Alexander Gäbler (Darmstadt, DE)
Assignee: BEIJING BOE SENSOR TECHNOLOGY CO., LTD.
H01P5/107H01P3/081H01P3/12
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Quick Facts
Patent No.
US 12,148,971
App. No.
17/761,120
Granted
Nov 19, 2024
Kind
B2
Abstract

A transition unit providing a radio frequency signal transition between a radio frequency hollow waveguide system and a planar transmission line comprises two or more transition sections of transmission line arranged adjacent to each other at a first surface of the first substrate layer of a substrate layer arrangement. The hollow waveguide system comprises a distribution section. One input waveguide is separated into one dedicated output waveguide for each of the transition sections. For each of the transition sections of the transmission lines a corresponding end section of a respective output waveguide is directed perpendicular to the first surface of the first substrate layer. For each end section an open end of the end section of the waveguide system superposes the corresponding transition section. The two or more end sections are arranged adjacent to each other in order to provide for favorable boundary conditions for electromagnetic wave propagation.

Claims (67)

1. A radio frequency device with a transition unit ( 1 ) providing a radio frequency signal transition between a radio frequency hollow waveguide system ( 2 ) and a planar transmission line ( 3 ), the radio frequency device comprising

a substrate layer arrangement ( 15 ) with the planar transmission line ( 3 ) arranged on a first surface ( 14 ) of a first substrate layer ( 4 ) of the substrate layer arrangement ( 15 ),

wherein the transition unit ( 1 ) comprises a transition section ( 22 ) of the transmission line ( 3 ) that is configured as a radio frequency signal transition pattern, and

wherein the transition unit ( 1 ) further comprises an end section ( 11 , 20 ) of the waveguide system ( 2 ) for radio frequency electromagnetic waves that is attached to the substrate layer arrangement ( 15 ) and that superposes the radio frequency signal transition pattern,

wherein the transition unit ( 1 ) comprises two or more transition sections ( 22 ) of a corresponding number of transmission lines ( 3 ) that are arranged adjacent to each other,

wherein the hollow waveguide system ( 2 ) comprises a distribution section wherein one input waveguide ( 5 , 8 ) is separated into one dedicated output waveguide ( 10 , 19 ) for each of the transition sections ( 22 ),

wherein for each of the transition sections ( 22 ) of the transmission lines ( 3 ) a corresponding end section ( 11 , 20 ) of a respective output waveguide ( 10 , 19 ) is directed perpendicular to the first surface ( 14 ) of the first substrate layer ( 4 ) of the substrate layer arrangement ( 15 ),

wherein for each end section ( 11 , 20 ) an open end of the end section ( 11 , 20 ) of the waveguide system ( 2 ) superposes the corresponding transition section ( 22 ), and

wherein the two or more end sections ( 11 , 20 ) of the waveguide system ( 2 ) are arranged adjacent to each other in order to provide for favorable boundary conditions for electromagnetic wave propagation that result in reduced radio frequency signal power leakage from the transition unit ( 1 ) when compared to a transition unit with only one end section ( 11 , 20 ) of the waveguide system ( 2 );

several or all end sections ( 11 , 20 ) of the output waveguides ( 10 , 19 ) that are attached to the substrate layer arrangement ( 15 ) are arranged along a straight line; and

the transition unit ( 1 ) comprises for each end of a row ( 21 ) one waveguide section element ( 25 ) arranged adjacent to the last output waveguide ( 19 ) within the row ( 21 ).

2. The radio frequency device according to claim 1 ,

wherein the waveguide section element ( 25 ) is identical to the end section ( 20 ) of the last output waveguide ( 19 ) within the row ( 21 ).

3. A radio frequency device with a transition unit ( 1 ) providing a radio frequency signal transition between a radio frequency hollow waveguide system ( 2 ) and a planar transmission line ( 3 ), the radio frequency device comprising

a substrate layer arrangement ( 15 ) with the planar transmission line ( 3 ) arranged on a first surface ( 14 ) of a first substrate layer ( 4 ) of the substrate layer arrangement ( 15 ),

wherein the transition unit ( 1 ) comprises a transition section ( 22 ) of the transmission line ( 3 ) that is configured as a radio frequency signal transition pattern, and

wherein the transition unit ( 1 ) further comprises an end section ( 11 , 20 ) of the waveguide system ( 2 ) for radio frequency electromagnetic waves that is attached to the substrate layer arrangement ( 15 ) and that superposes the radio frequency signal transition pattern,

wherein the transition unit ( 1 ) comprises two or more transition sections ( 22 ) of a corresponding number of transmission lines ( 3 ) that are arranged adjacent to each other,

wherein the hollow waveguide system ( 2 ) comprises a distribution section wherein one input waveguide ( 5 , 8 ) is separated into one dedicated output waveguide ( 10 , 19 ) for each of the transition sections ( 22 ),

wherein for each of the transition sections ( 22 ) of the transmission lines ( 3 ) a corresponding end section ( 11 , 20 ) of a respective output waveguide ( 10 , 19 ) is directed perpendicular to the first surface ( 14 ) of the first substrate layer ( 4 ) of the substrate layer arrangement ( 15 ),

wherein for each end section ( 11 , 20 ) an open end of the end section ( 11 , 20 ) of the waveguide system ( 2 ) superposes the corresponding transition section ( 22 ), and

wherein the two or more end sections ( 11 , 20 ) of the waveguide system ( 2 ) are arranged adjacent to each other in order to provide for favorable boundary conditions for electromagnetic wave propagation that result in reduced radio frequency signal power leakage from the transition unit ( 1 ) when compared to a transition unit with only one end section ( 11 , 20 ) of the waveguide system ( 2 );

wherein the transition unit ( 1 ) comprises at least one or more back cavities ( 24 ),

wherein each back cavity ( 24 ) is arranged opposite to a corresponding end section ( 20 ) of an output waveguide ( 19 ) that is attached to the substrate layer arrangement ( 15 ) with an open end of the back cavity ( 24 ) directed towards the first substrate layer ( 4 ),

wherein the back cavity ( 24 ) prevents a part of a radio frequency signal emission that is emitted from the emission pattern from leaking outside of the end section ( 20 ) of the output waveguide ( 19 ).

4. The radio frequency device according to claim 1 ,

wherein the hollow waveguide system ( 2 ) comprises N output waveguides ( 10 , 19 ) and N−1 corresponding waveguide splitting units ( 6 , 9 , 18 ) that each split-up one input waveguide ( 5 , 8 , 17 ) into two output waveguides ( 7 , 10 , 19 ), with N being an even integer number.

5. The radio frequency device according to claim 1 ,

wherein the hollow waveguide system ( 2 ) comprises 2N output waveguides ( 7 , 10 , 19 ), with N being an integer number and with N>1.

6. The radio frequency device according to claim 1 ,

wherein the end sections ( 11 , 20 ) of the output waveguides ( 10 , 19 ) that are attached to the substrate layer arrangement ( 15 ) are symmetric in shape.

7. The radio frequency device according to claim 1 ,

wherein the end sections ( 11 , 20 ) of the output waveguides ( 10 , 19 ) that are attached to the substrate layer arrangement ( 15 ) are of rectangular shape.

8. The radio frequency device according to claim 1 ,

wherein the end sections ( 11 , 20 ) of the output waveguides ( 10 , 19 ) that are attached to the substrate layer arrangement ( 15 ) are arranged in two or more rows ( 21 ) running parallel and at a distance towards each other.

9. A radio frequency device with a transition unit ( 1 ) providing a radio frequency signal transition between a radio frequency hollow waveguide system ( 2 ) and a planar transmission line ( 3 ), the radio frequency device comprising

a substrate layer arrangement ( 15 ) with the planar transmission line ( 3 ) arranged on a first surface ( 14 ) of a first substrate layer ( 4 ) of the substrate layer arrangement ( 15 ),

wherein the transition unit ( 1 ) comprises a transition section ( 22 ) of the transmission line ( 3 ) that is configured as a radio frequency signal transition pattern, and

wherein the transition unit ( 1 ) further comprises an end section ( 11 , 20 ) of the waveguide system ( 2 ) for radio frequency electromagnetic waves that is attached to the substrate layer arrangement ( 15 ) and that superposes the radio frequency signal transition pattern,

wherein the transition unit ( 1 ) comprises two or more transition sections ( 22 ) of a corresponding number of transmission lines ( 3 ) that are arranged adjacent to each other,

wherein the hollow waveguide system ( 2 ) comprises a distribution section wherein one input waveguide ( 5 , 8 ) is separated into one dedicated output waveguide ( 10 , 19 ) for each of the transition sections ( 22 ),

wherein for each of the transition sections ( 22 ) of the transmission lines ( 3 ) a corresponding end section ( 11 , 20 ) of a respective output waveguide ( 10 , 19 ) is directed perpendicular to the first surface ( 14 ) of the first substrate layer ( 4 ) of the substrate layer arrangement ( 15 ),

wherein for each end section ( 11 , 20 ) an open end of the end section ( 11 , 20 ) of the waveguide system ( 2 ) superposes the corresponding transition section ( 22 ), and

wherein the two or more end sections ( 11 , 20 ) of the waveguide system ( 2 ) are arranged adjacent to each other in order to provide for favorable boundary conditions for electromagnetic wave propagation that result in reduced radio frequency signal power leakage from the transition unit ( 1 ) when compared to a transition unit with only one end section ( 11 , 20 ) of the waveguide system ( 2 );

wherein at least two adjacent transmission lines ( 3 ) each comprise a transmission section ( 27 ) that runs into the transition section ( 22 ),

wherein the transition section ( 22 ) is superposed by the end section ( 11 , 20 ) of the corresponding output waveguide ( 10 , 19 ) and

wherein the transmission section ( 27 ) is arranged outside of a surface area on the first surface ( 14 ) of the first substrate layer ( 4 ) that is superposed by this end section ( 11 , 20 ) of the corresponding output waveguide ( 10 , 19 ).

10. The radio frequency device according to claim 3 ,

wherein the hollow waveguide system ( 2 ) comprises N output waveguides ( 10 , 19 ) and N−1 corresponding waveguide splitting units ( 6 , 9 , 18 ) that each split-up one input waveguide ( 5 , 8 , 17 ) into two output waveguides ( 7 , 10 , 19 ), with N being an even integer number.

11. The radio frequency device according to claim 3 ,

wherein the hollow waveguide system ( 2 ) comprises 2N output waveguides ( 7 , 10 , 19 ), with N being an integer number and with N>1.

12. The radio frequency device according to claim 3 ,

wherein the end sections ( 11 , 20 ) of the output waveguides ( 10 , 19 ) that are attached to the substrate layer arrangement ( 15 ) are symmetric in shape.

13. The radio frequency device according to claim 3 ,

wherein the end sections ( 11 , 20 ) of the output waveguides ( 10 , 19 ) that are attached to the substrate layer arrangement ( 15 ) are of rectangular shape.

14. The radio frequency device according to claim 3 ,

wherein the end sections ( 11 , 20 ) of the output waveguides ( 10 , 19 ) that are attached to the substrate layer arrangement ( 15 ) are arranged in two or more rows ( 21 ) running parallel and at a distance towards each other.

15. The radio frequency device according to claim 9 ,

wherein the hollow waveguide system ( 2 ) comprises N output waveguides ( 10 , 19 ) and N−1 corresponding waveguide splitting units ( 6 , 9 , 18 ) that each split-up one input waveguide ( 5 , 8 , 17 ) into two output waveguides ( 7 , 10 , 19 ), with N being an even integer number.

16. The radio frequency device according to claim 9 ,

wherein the hollow waveguide system ( 2 ) comprises 2N output waveguides ( 7 , 10 , 19 ), with N being an integer number and with N>1.

17. The radio frequency device according to claim 9 ,

wherein the end sections ( 11 , 20 ) of the output waveguides ( 10 , 19 ) that are attached to the substrate layer arrangement ( 15 ) are symmetric in shape.

18. The radio frequency device according to claim 9 ,

wherein the end sections ( 11 , 20 ) of the output waveguides ( 10 , 19 ) that are attached to the substrate layer arrangement ( 15 ) are of rectangular shape.

19. The radio frequency device according to claim 9 ,

wherein the end sections ( 11 , 20 ) of the output waveguides ( 10 , 19 ) that are attached to the substrate layer arrangement ( 15 ) are arranged in two or more rows ( 21 ) running parallel and at a distance towards each other.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 25, 2024
From: ALCAN SYSTEMS GMBH
To: BEIJING BOE SENSOR TECHNOLOGY CO., LTD.
Reel/Frame 069237/0325 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 8, 2024
From: ALCAN SYSTEMS GMBH
To: BEIJING BOE SENSOR TECHNOLOGY CO., LTD.
Reel/Frame 066416/0630 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2022
From: GÄBLER, ALEXANDER
To: ALCAN SYSTEMS GMBH
Reel/Frame 059492/0067 →
Priority Claims (1)
EP 19198156 · Sep 18, 2019 · regional
Continuity (1)
Related Publication 20220407208A1 · Dec 22, 2022