IP Library › Granted Patent US 10,225,044
Granted Patent B2
US 10,225,044 · App. 16/011,328 · Granted Mar 5, 2019

Launcher and coupling system to support desired guided wave mode

Inventors: Paul Shala Henry (Holmdel, NJ); Donald J. Barnickel (Flemington, NJ); Farhad Barzegar (Branchburg, NJ); Robert Bennett (Southold, NY); Irwin Gerszberg (Kendall Park, NJ); Thomas M. Willis, III (Tinton Falls, NJ)
Assignee: AT&T Intellectual Property I, L.P.
H04L1/0025H04B3/52H04B3/54
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,225,044
App. No.
16/011,328
Granted
Mar 5, 2019
Kind
B2
Abstract

Aspects of the subject disclosure may include, for example, a launcher that includes a hollow waveguide that guides a first electromagnetic wave conveying data from a transmitting device. A dielectric stub coupler receives the first electromagnetic wave from the hollow waveguide to form a second electromagnetic wave that propagates along a portion of the dielectric stub coupler adjacent to a transmission medium, wherein second electromagnetic wave propagates along the dielectric stub coupler via a first guided wave mode and a second guided wave mode, and wherein the portion has a length that supports a coupling of the second guided wave mode for propagation along an outer surface of the transmission medium.

Claims (28)

1. A launcher comprising:

a hollow waveguide that guides a first electromagnetic wave conveying data from a transmitting device; and

a dielectric stub coupler that receives the first electromagnetic wave from the hollow waveguide to form a second electromagnetic wave that propagates along a portion of the dielectric stub coupler adjacent to a transmission medium, wherein the second electromagnetic wave has a first guided wave mode and a second guided wave mode, and wherein the portion of the dielectric stub coupler has a length that supports suppression of the first guided wave mode in a third electromagnetic wave that propagates along a surface the transmission medium via the second guided wave mode.

2. The launcher of claim 1 , wherein the dielectric stub coupler is conductorless.

3. The launcher of claim 1 , wherein the portion of the dielectric stub coupler is separated from the transmission medium by a gap.

4. The launcher of claim 1 , wherein the portion of the dielectric stub coupler is aligned parallel to a longitudinal axis of the transmission medium.

5. The launcher of claim 1 , further comprising a reflective plate aligned parallel to the portion of the dielectric stub coupler, wherein the dielectric stub coupler is between the reflective plate and the transmission medium.

6. The launcher of claim 1 , wherein the dielectric stub coupler guides the second guided wave mode at a second speed that is higher than a first speed of the first guided wave mode.

7. The launcher of claim 1 , wherein the dielectric stub coupler includes a tapered, rounded or beveled end that terminates adjacent to the transmission medium.

8. The launcher of claim 7 , wherein the dielectric stub coupler includes a receiving end, opposite from the tapered, rounded or beveled end, that is within the hollow waveguide.

9. A coupling module comprising:

a hollow waveguide that guides a first electromagnetic wave conveying data from a transmitting device;

a dielectric stub coupler that receives the first electromagnetic wave from the hollow waveguide to form a second electromagnetic wave, that guides the second electromagnetic wave along a portion of the dielectric stub coupler adjacent to a transmission medium, wherein the second electromagnetic wave propagates along the dielectric stub coupler, wherein the second electromagnetic wave has a first guided wave mode and a second guided wave mode, and wherein the portion of the dielectric stub coupler supports suppression of the first guided wave mode in a third electromagnetic wave that propagates along a surface the transmission medium via the second guided wave mode without requiring an electrical return path; and

a reflective surface aligned parallel to the portion of the dielectric stub coupler, wherein the portion of the dielectric stub coupler is between the reflective surface and the transmission medium.

10. The coupling module of claim 9 , wherein the dielectric stub coupler is conductorless.

11. The coupling module of claim 9 , wherein the portion of the dielectric stub coupler is separated from the transmission medium by a gap.

12. The coupling module of claim 9 , wherein the portion of the dielectric stub coupler is aligned parallel to a longitudinal axis of the transmission medium.

13. The coupling module of claim 9 , wherein the dielectric stub coupler guides the second guided wave mode at a second speed that is higher than a first speed of the first guided wave mode.

14. The coupling module of claim 9 , wherein the dielectric stub coupler includes a tapered, rounded or beveled end that terminates adjacent to the transmission medium.

15. A coupling system comprising:

waveguide means for guiding a first electromagnetic wave conveying data from a transmitting device; and

conductorless coupling means for receiving the first electromagnetic wave from the waveguide means and for forming a second electromagnetic wave that propagates along a portion of the conductorless coupling means adjacent to a transmission medium, wherein the second electromagnetic wave has a first guided wave mode and a second guided wave mode, and wherein the portion of the conductorless coupling means has a length that supports suppression of the first guided wave mode in a third electromagnetic wave that propagates along a surface the transmission medium via the second guided wave mode without requiring an electrical return path.

16. The coupling system of claim 15 , further comprising:

reflecting means for enhancing coupling of the second guided wave mode to the transmission medium.

17. The coupling system of claim 15 , wherein the portion of the conductorless coupling means is separated from the transmission medium by a gap.

18. The coupling system of claim 15 , wherein the portion of the conductorless coupling means is aligned parallel to a longitudinal axis of the transmission medium.

19. The coupling system of claim 15 , wherein the conductorless coupling means includes a tapered, rounded or beveled end that terminates adjacent to the transmission medium.

20. The coupling system of claim 19 , wherein the conductorless coupling means includes a receiving end, opposite from the tapered, rounded or beveled end, that is within the waveguide means and has a length that enhances the receiving of the first electromagnetic wave from the waveguide means.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 19, 2018
From: HENRY, PAUL SHALA; BARNICKEL, DONALD J.; BARZEGAR, FARHAD; BENNETT, ROBERT; GERSZBERG, IRWIN; WILLIS, THOMAS M., III
To: AT&T INTELLECTUAL PROPERTY I, L.P.
Reel/Frame 046125/0183 →
Continuity (3)
Continuation 15861323 · Jan 3, 2018
Continuation 15331388 · Oct 21, 2016
Related Publication 20180302184A1 · Oct 18, 2018