IP Library Granted Patent US 10,263,146
Granted Patent B2
US 10,263,146 · App. 15/862,959 · Granted Apr 16, 2019

Ultra-wideband, free space optical communication apparatus

Inventors: Mohammad Ali Khatibzadeh (Raleigh, NC); Arunesh Goswami (Raleigh, NC)
Assignee: LUMEOVA, INC.
H01L33/14H01L31/167H01L33/0025H01L33/04H01L33/06H01L33/145H01L33/30H04B10/11H04B10/116H04B10/1143H04B10/1149H04B10/40H04B10/502H04B10/60H01L25/167H01L27/156H01L33/28H04H20/71
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 10,263,146
App. No.
15/862,959
Granted
Apr 16, 2019
Kind
B2
Abstract

Devices, systems, and methods for providing wireless personal area networks (PANs) and local area networks (LANs) using visible and near-visible optical spectrum. Various constructions and material selections are provided herein. According to one embodiment, a free space optical (FSO) communication apparatus includes a digital data port, an array of light-emitting diodes (LEDs) each configured to have a transient response time of less than 500 picoseconds (ps), and current drive circuitry coupled between the digital data port and the array of LEDs.

Claims (37)

1. A free space optical (FSO) communication apparatus, comprising:

a digital data port;

an array of light-emitting diodes (LEDs) each configured to have a transient response time of less than 500 picoseconds (ps); and

current drive circuitry coupled between the digital data port and the array of LEDs wherein each LED comprises:

a substrate; and

a carrier confinement (CC) region positioned over the substrate, the CC region defining:

a first CC layer comprising at least one of indium gallium phosphide, aluminum gallium arsenide, aluminum gallium nitride, or aluminum gallium antimonide; and

a second CC layer positioned over the first CC layer, the second CC layer comprising at least one of gallium arsenide phosphide, aluminum gallium arsenide, aluminum gallium nitride, or aluminum gallium antimonide.

2. The FSO communication apparatus of claim 1 , wherein the digital data port comprises an audio/video interface.

3. The FSO communication apparatus of claim 1 , wherein the digital data port comprises an uncompressed audio/video interface.

4. The FSO communication apparatus of claim 3 , wherein the digital data port is at least one of a High-Definition Multimedia Interface (HDMI) port, a DisplayPort interface port, and a Digital Visual Interface (DVI) port.

5. The FSO communication apparatus of claim 1 , wherein the digital data port is at least one of a Universal Serial Bus (USB) port, Serial ATA (SATA) interface port, and an Ethernet port.

6. The FSO communication apparatus of claim 1 , wherein the digital data port is an optical data port.

7. The FSO communication apparatus of claim 1 , wherein the digital data port is at least one of a gigabit interface converter (GB IC) interfact port, a small form-factor pluggable (SFP) interface port and a 10 Gigabit Small Form Factor Pluggable (XFP) interface port.

8. The FSO communication apparatus of claim 1 , further comprising a Wilkinson power divider coupled between the digital data port and the array of LEDs.

9. The FSO communication apparatus of claim 1 , further comprising a plurality of electrical line segments which together with the array of LEDs form a traveling wave optical transmitter.

10. The FSO communication apparatus of claim 1 , further comprising

an array of optical detectors, wherein each optical detector is configured to have a bandwidth of a least 10 gigahertz (GHz); and

transimpedance amplifier circuitry coupled between the digital data port and the array of optical detectors.

11. The FSO communication apparatus of claim 10 , further comprising a Wilkinson power combiner coupled between the digital data port and the array of optical detectors.

12. The FSO communication apparatus of claim 10 , further comprising a plurality of electrical line segments which together with the array of optical detectors form a traveling wave optical receiver.

13. The FSO communication apparatus of claim 10 , wherein the FSO communication apparatus is implemented in at least one of a smart watch, a smart phone, a tablet, a laptop, a digital camera, a digital camcorder, a computer monitor, a TV, a projector, and a wireless access point.

14. The FSO communication apparatus of claim 10 , wherein:

a first LED within the array of LEDs is configured to transmit at a first wavelength;

a second LED within the array of LEDs is configured to transmit at a second wavelength;

a first optical detector within the array of optical detectors is configured to receive at the first wavelength; and

a second optical detector within the array of optical detectors is configured to receive at the second wavelength.

15. The FSO communication apparatus of claim 10 , wherein the FSO communication apparatus is implemented within at least one of an Unmanned Air System (UAS) and an automotive system.

16. The FSO communication apparatus of claim 10 , wherein the FSO communication apparatus is implemented within a high definition video interface.

17. The FSO communication apparatus of claim 10 , wherein the FSO communication apparatus is implemented within a high speed computer interface.

18. The FSO communication apparatus of claim 1 , wherein the FSO communication apparatus is implemented in at least one of a smart watch, a smart phone, a tablet, a laptop, a digital camera, a digital camcorder, a computer monitor, a TV, a projector, and a wireless access point.

19. The FSO communication apparatus of claim 1 , wherein at least one LED within the array of LEDs is implemented in a flip-chip package.

20. The FSO communication apparatus of claim 1 , wherein a first LED within the array of LEDs is configured to transmit at a first wavelength and a second LED within the array of LEDs is configured to transmit at a second wavelength.

21. The FSO communication apparatus of claim 1 , wherein a first LED within the array of LEDs is configured for wavelength modulation.

22. The FSO communication apparatus of claim 1 , wherein the FSO communication apparatus is implemented within at least one of an Unmanned Air System (UAS) and an automotive system.

23. The FSO communication apparatus of claim 1 , wherein the FSO communication apparatus is implemented within a high definition video interface.

24. The FSO communication apparatus of claim 1 , wherein the FSO communication apparatus is implemented within a high speed computer interface.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE SECOND ASSIGNORS NAME PREVIOUSLY RECORDED AT REEL: 044556 FRAME: 0024. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Feb 14, 2018
From: KHATIBZADEH, MOHAMMAD ALI; GOSWAMI, ARUNESH
To: LUMEOVA, INC.
Reel/Frame 045337/0257 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2018
From: KHATIBZADEH, MOHAMMAD ALI; GOWAMI, ARUNESH
To: LUMEOVA, INC.
Reel/Frame 044556/0024 →
Continuity (3)
Continuation PCTUS2017016916 · Feb 8, 2017
Provisional Application 62293291 · Feb 9, 2016
Related Publication 20180227055A1 · Aug 9, 2018
Cited By (2)
US 12,244,342 US 12,310,149