IP Library Granted Patent US 10,637,582
Granted Patent B1
US 10,637,582 · App. 16/408,162 · Granted Apr 28, 2020

Optical laser communication apparatus with etalon-based optical phase demodulation and associated methods

Inventor: Paul Searcy (Niwot, CO)
Assignee: BridgeSat, Inc.
H04B10/676H04B10/25H04B10/40
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Quick Facts
Patent No.
US 10,637,582
App. No.
16/408,162
Granted
Apr 28, 2020
Kind
B1
Abstract

An optical receiver for use in free space communication from a transmitter to the optical receiver is configured for receiving optical signals from the transmitter. The optical receiver includes optics for collecting the optical signals, a demodulator for converting the optical signals so collected into a data stream, a signal processing unit for processing the data stream into an analog signal, and an analog-to-digital converter for converting the analog signal into a digital output. The demodulator includes a plurality of apertures, each one of the plurality of apertures being optically connected with an etalon of an optical path length that is different from the optical path length of another etalon optically connected with another one of the plurality of apertures.

Claims (54)

1. An optical receiver for use in free space communication from a transmitter to the optical receiver, the optical receiver being configured for receiving optical signals from the transmitter and comprising:

optics for collecting the optical signals;

a demodulator for converting the optical signals so collected into a data stream;

a signal processing unit for processing the data stream into an analog signal; and

an analog-to-digital converter for converting the analog signal into a digital output,

wherein the demodulator includes a plurality of apertures, each one of the plurality of apertures being optically connected with an etalon of an optical path length that is different from the optical path length of another etalon optically connected with another one of the plurality of apertures,

wherein at least one of the etalons is formed of a uniaxial material, and

wherein the demodulator accepts input signal over a larger range of incident angles than would be accepted by another demodulator in which all of the etalons are formed of isotropic materials.

2. An optical receiver for use in free space communication from a transmitter to the optical receiver the optical receiver being configured for receiving optical signals from the transmitter and comprising:

optics for collecting the optical signals;

a demodulator for converting the optical signals so collected into a data stream;

a signal processing unit for processing the data stream into an analog signal; and

an analog-to-digital converter for converting the analog signal into a digital output,

wherein the demodulator includes a plurality of apertures, each one of the plurality of apertures being optically connected with an etalon of an optical path length that is different from the optical path length of another etalon optically connected with another one of the plurality of apertures, and,

wherein the demodulator at least one of the etalons is formed of a biaxial material.

3. The optical receiver of claim 2 , wherein the demodulator accepts input signal over a larger range or incident angles than would be accepted by another modulator in which all of the etalons are formed of isotropic materials.

4. An optical receiver for use in free space communication from a transmitter to the optical receiver the optical receiver being configured for receiving optical signals from the transmitter and comprising:

optics for collecting the optical signals;

a demodulator for converting the optical signals so collected into a data stream;

a signal processing unit for processing the data stream into an analog signal; and

an analog-to-digital converter for converting the analog signal into a digital output,

wherein the demodulator includes a plurality of apertures, each one of the plurality of apertures being optically connected with an etalon of an optical path length that is different from the optical path length of another etalon optically connected with another one of the plurality of apertures, and

wherein the optics are configured for accepting optical signals from a plurality of transmitters over a range of incidence angles, the optical receiver further comprising a fiber bundle including a plurality of optical fibers, and wherein the combination of optics and demodulator is configured for directing each one of the optical signals accepted at the optics to a specific optical fiber depending on the incidence angle of that optical signal.

5. The optical receiver of claim 4 , wherein the demodulator includes at least three apertures.

6. The optical receiver of claim 4 , wherein at least one of the etalons is formed of a uniaxial material.

7. The optical receiver of claim 4 , wherein at least one of the etalons is formed of a biaxial material.

8. The optical receiver of claim 4 , wherein the optics and the demodulator are configured for simultaneously receiving optical signals from the plurality of transmitters.

9. An optical receiver for use in free space communication from a transmitter to the optical receiver, the optical receiver being configured for receiving optical signals from the transmitter and comprising:

optics for collecting the optical signals;

a demodulator for converting the optical signals so collected into a data stream;

a signal processing unit for processing the data stream into an analog signal; and

an analog-to-digital converter for converting the analog signal into a digital output,

wherein the demodulator includes a plurality of apertures, each one of the plurality of apertures being optically connected with an etalon of an optical path length that is different from the optical path length of another etalon optically connected with another one of the plurality of apertures,

wherein the optics are configured for accepting optical signals from a plurality of transmitters over a range of incidence angles, the optical receiver further comprising a fiber bundle including a plurality of optical fibers, and wherein the combination of optics and demodulator is configured for directing all of the optical signals accepted at the optics to a specific optical fiber to be combined at that specific optical fiber.

10. A receiver system for use in free space communication from a plurality of transmitters to the receiver system, the receiver system being configured for receiving optical signals from the plurality of transmitters and comprising:

a plurality of optical receivers, each optical receiver including:

optics for collecting at least a portion of the optical signals over a range of incident angles,

a demodulator for converting the optical signals so collected into a data stream,

a signal processing unit for processing the data stream into an analog signal,

an analog-to-digital converter for converting the analog signal into a digital output,

and a fiber bundle including a plurality of optical fibers,

wherein the demodulator includes a plurality of apertures, each one of the plurality of apertures being optically connected with an etalon of an optical path length that is different from the optical path length of another etalon optically connected with another one of the plurality of apertures,

wherein the combination of optics and demodulator is configured for directing each one of the optical signals accepted at the optics to a specific optical fiber depending on the incident angle of that optical signal, and

wherein each one of the plurality of optical receivers is configured for receiving a different portion of the optical signals from the portion received by every other one of the plurality of optical receivers.

11. A receiver system for use in free space communication from a plurality of transmitters to the receiver system, the receiver system being configured for receiving optical signals from the plurality of transmitters and comprising:

a plurality of optical receivers, each optical receiver including:

optics for collecting at least a portion of the optical signals over a range of incident angles,

a demodulator for converting the optical signals so collected into a data stream,

a signal processing unit for processing the data stream into an analog signal,

an analog-to-digital converter for converting the analog signal into a digital output,

and a fiber bundle including a plurality of optical fibers,

wherein the demodulator includes a plurality of apertures, each one of the plurality of apertures being optically connected with an etalon of an optical path length that is different from the optical path length of another etalon optically connected with another one of the plurality of apertures,

wherein the combination of optics and demodulator is configured for directing all of the optical signals accepted at the optics to a specific optical fiber to be combined at that specific optical fiber, and

wherein each one of the plurality of optical receivers is configured for receiving a different portion of the optical signals from the portion received by every other one of the plurality of optical receivers.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 16, 2020
From: SEARCY, PAUL
To: BRIDGECOMM, INC.
Reel/Frame 053785/0369 →
CHANGE OF NAME Recorded Sep 16, 2020
From: BRIDGESAT, INC.
To: BRIDGECOMM, INC.
Reel/Frame 053786/0896 →
Continuity (1)
Provisional Application 62671415 · May 14, 2018