IP Library Granted Patent US 7,356,261
Granted Patent B2
US 7,356,261 · App. 10/770,281 · Granted Apr 8, 2008

Optical wireless communications system

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Quick Facts
Patent No.
US 7,356,261
App. No.
10/770,281
Granted
Apr 8, 2008
Kind
B2
Abstract

An optical wireless communications system has a first optical wireless communications apparatus for transmitting a pilot beam and a second optical wireless communications apparatus for receiving the pilot beam to have a match for an optical axis of the first optical wireless communications apparatus and another optical axis of the second optical wireless communications apparatus. The first optical wireless communications apparatus has a modulator for modulating the pilot beam with a specific signal. The second optical wireless communications apparatus has a demodulator for demodulating the modulated and transmitted pilot beam to reproduce the specific signal and sending the reproduced specific signal to at least either the second optical wireless communications apparatus or an apparatus connected to the second optical wireless communications apparatus.

Claims (22)

1. An optical wireless communications system comprising:

a first optical wireless communications apparatus for transmitting a pilot beam to be used for optical-axis matching; and

a second optical wireless communications apparatus having an optical transmitter for converting a video signal into an optical signal and transmitting the optical signal and an optical receiver with optical receiving areas for receiving the pilot beam the optical receiver being adjusted in directions of pan and tilt so that amounts of light of the pilot beam received at the optical receiving areas are equal to each other to have a match for an optical axis of the first optical wireless communications apparatus and another optical axis of the second optical wireless communications apparatus, wherein

the first optical wireless communications apparatus includes an optical receiver for receiving the optical signal transmitted by the optical transmitter of the second optical wireless communications apparatus, a control-signal receiver for receiving an external remote control signal for controlling at least either the second optical wireless communications apparatus or an apparatus connected to the second optical wireless communications apparatus and a modulator for modulating the pilot beam with the external remote control signal, the pilot beam being different from the optical signal and used for optical-axis matching between the first and second optical wireless communications apparatuses, the first optical communications apparatus further includes an optical transmitter for transmitting the modulated pilot beam to the optical receiver of the second optical wireless communications apparatus, and

the second optical wireless communications apparatus includes a demodulator for demodulating the modulated and transmitted pilot beam to reproduce the external remote control signal, whereby

the first optical wireless communications apparatus and the second optical wireless communications apparatus perform optical communication using the optical signal along the optical axes that are matched based on the pilot signal.

2. An optical wireless communications system to be used for a video system having a video supply apparatus and a video display apparatus placed apart from each other comprising:

a first optical wireless communications apparatus, provided for the video display apparatus, for transmitting a pilot beam to be used for optical-axis matching; and

a second optical wireless communications apparatus, provided for the video supply apparatus, having an optical transmitter for converting a video signal into an optical signal and transmitting the optical signal to the video display apparatus via the first optical wireless communications apparatus, and having an optical receiver with optical receiving areas for receiving the pilot beam, the optical receiver being adjusted in directions of pan and tilt so that amounts of light of the pilot beam received at the optical receiving areas are equal to each other to have a match for an optical axis of the first optical wireless communications apparatus and another optical axis of the second optical wireless communications apparatus, wherein

the first optical wireless communications apparatus includes an optical receiver for receiving the optical signal transmitted by the optical transmitter of the second optical wireless communications apparatus, a control-signal receiver for receiving an external remote control signal for controlling at least either the second optical wireless communications apparatus or an apparatus connected to the second optical wireless communications apparatus and a modulator for modulating the pilot beam with the external remote control signal, the pilot beam being different from the optical signal and used for optical-axis matching between the first and second optical wireless communications apparatuses, the first optical communications apparatus further includes an optical transmitter for transmitting the modulated pilot beam to the optical receiver of the second optical wireless communications apparatus, and

the second optical wireless communications apparatus includes a demodulator for demodulating the modulated and transmitted pilot beam to reproduce the external remote control signal, whereby

the first optical wireless communications apparatus and the second optical wireless communications apparatus perform optical communication using the optical signal along the optical axes that are matched based on the pilot signal.

3. An optical wireless communications system comprising:

a first optical wireless communications apparatus for transmitting a pilot beam to be used for optical-axis matching; and

a second optical wireless communications apparatus having an optical transmitter for converting a video signal into an optical signal and transmitting the optical signal and an optical receiver with optical receiving areas for receiving the pilot beam, the optical receiver being adjusted in directions of pan and tilt so that amounts of light of the pilot beam received at the optical receiving areas are equal to each other to have a match for an optical axis of the first optical wireless communications apparatus and another optical axis of the second optical wireless communications apparatus, wherein

the first optical wireless communications apparatus including an optical receiver for receiving the optical signal transmitted by the optical transmitter of the second optical wireless communications apparatus, modulates the pilot beam with a specific signal that carries information on conditions of a least either the first optical wireless communications apparatus or an apparatus connected to the first optical wireless communications apparatus, and the second optical wireless communications apparatus demodulates the modulated and transmitted pilot beam to reproduce the specific signal, whereby

the first optical wireless communications apparatus the second optical wireless communications apparatus perform optical communication using the optical signal along the optical axes that are matched based on the pilot signal.

4. An optical wireless communications system to be used for a video system having a video supply apparatus and a video display apparatus placed apart from each other comprising:

a first optical wireless communications apparatus, provided for the video display apparatus, having an optical transmitter for transmitting a pilot beam to be used for optical-axis matching; and

a second optical wireless communications apparatus, provided for the video supply apparatus, having an optical transmitter for converting a video signal into an optical signal and transmitting the optical signal to the video display apparatus via the first optical wireless communications apparatus, and having an optical receiver with optical receiving areas for receiving the pilot beam, the optical receiver being adjusted in directions of pan and tilt so that amounts of light of the pilot beam received at the optical receiving areas are equal to each other to have a match for an optical axis of the first optical wireless communications apparatus and another optical axis of the second optical wireless communications apparatus, wherein

the first optical wireless communications apparatus including an optical receiver for receiving the optical signal transmitted by the optical transmitter of the second optical wireless communications apparatus, modulates the pilot beam with a specific signal that carries information on conditions of at least either the first optical wireless communications apparatus or an apparatus connected to the first optical wireless communications apparatus, and the second optical wireless communications apparatus demodulates the modulated and transmitted pilot beam to reproduce the specific signal, whereby

the first optical wireless communications apparatus and the second optical wireless communications apparatus perform optical communication using the optical signal along the optical axes that are matched based on the pilot signal.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE PATENT NUMBERS 10342096;10671117; 10716375; 10716376;10795407;10795408; AND 10827591 PREVIOUSLY RECORDED AT REEL: 58314 FRAME: 657. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Feb 29, 2024
From: RAKUTEN, INC.
To: RAKUTEN GROUP, INC.
Reel/Frame 068066/0103 →
CHANGE OF NAME Recorded Dec 6, 2021
From: RAKUTEN, INC.
To: RAKUTEN GROUP, INC.
Reel/Frame 058314/0657 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2016
From: JVC KENWOOD CORPORATION
To: RAKUTEN, INC
Reel/Frame 039200/0104 →
MERGER Recorded Apr 10, 2012
From: VICTOR COMPANY OF JAPAN, LTD.
To: JVC KENWOOD CORPORATION
Reel/Frame 028023/0145 →