IP Library Granted Patent US 9,756,431
Granted Patent B2
US 9,756,431 · App. 14/997,533 · Granted Sep 5, 2017

Laser-based device utilizing multiple laser beams

Inventors: Alexander Blumkin (Nazareth Illit, IL); Amir Ganani (Zikhron Ya'kov, IL); Tal Fishman (Haifa, IL); Tal Bakish (Modi'in, IL)
Assignee: VOCALZOOM SYSTEMS LTD.
H04R23/008H04B10/503H04B10/506H04B10/564
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Quick Facts
Patent No.
US 9,756,431
App. No.
14/997,533
Granted
Sep 5, 2017
Kind
B2
Abstract

A laser-based device or sensor includes: a first laser transmitter having a first self-mix carrier frequency; a second laser transmitter having a second, different, self-mix carrier frequency; a first monitor photodiode to receive a first optical signal from the first laser transmitter, and to output a first electric signal; a second monitor photodiode to receive a first optical signal from the second laser transmitter, and to output a second electric signal; an electric connection to connect together the first electric signal and the second electric signal, forming a combined electric signal; a single laser receiver to receive the combined electric signal and to generate from it a spectrum that corresponds to both (i) optical feedback of the first laser transmitter, and (ii) optical feedback of the second laser transmitter. Alternatively, a single monitor photodiode is used, receiving optical signals from multiple laser transmitters, and outputting a single electric signal to a single laser receiver.

Claims (18)

1. An apparatus comprising:

a first laser transmitter having a first self-mix carrier frequency;

a second laser transmitter having a second, different, self-mix carrier frequency;

a first monitor photodiode to receive a first optical signal from the first laser transmitter, and to output a first electric signal;

a second monitor photodiode to receive a first optical signal from the second laser transmitter, and to output a second electric signal;

an electric connection to connect together the first electric signal and the second electric signal, forming a combined electric signal;

a single laser receiver to receive the combined electric signal and to generate from it a spectrum that corresponds to both (i) optical feedback of the first laser transmitter, and (ii) optical feedback of the second laser transmitter;

a laser usefulness estimator to estimate self-mix usefulness of optical feedback received by the first laser transmitter;

a selective activation module (a) to selectively reduce a level of power provided to the first laser transmitter, while maintaining the first laser transmitter activated, and (b) to maintain a level of power provided to the second laser transmitter, if an estimated self-mix usefulness value of the first laser transmitter is below a pre-defined threshold value.

2. An apparatus comprising:

a first laser transmitter having a first self-mix carrier frequency;

a second laser transmitter having a second, different, self-mix carrier frequency;

a first monitor photodiode to receive a first optical signal from the first laser transmitter, and to output a first electric signal;

a second monitor photodiode to receive a first optical signal from the second laser transmitter, and to output a second electric signal;

an electric connection to connect together the first electric signal and the second electric signal, forming a combined electric signal;

a single laser receiver to receive the combined electric signal and to generate from it a spectrum that corresponds to both (i) optical feedback of the first laser transmitter, and (ii) optical feedback of the second laser transmitter;

a laser usefulness estimator (i) to estimate self-mix usefulness of optical feedback received by the first laser transmitter, and (ii) to estimate self-mix usefulness of optical feedback received by the second laser transmitter;

a selective activation module (a) to selectively reduce a level of power provided to the first laser transmitter, while maintaining the first laser transmitter activated, and (b) to maintain a level of power provided to the second laser transmitter, if an estimated self-mix usefulness value of the first laser transmitter is smaller by at least a pre-defined ratio from an estimated self-mix usefulness value of the second laser transmitter.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 9, 2016
From: BLUMKIN, ALEXANDER; GANANI, AMIR; FISHMAN, TAL; BAKISH, TAL
To: VOCALZOOM SYSTEMS LTD.
Reel/Frame 037688/0603 →
Continuity (1)
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