Nova Patents
USH1702H

Wideband fiber-optic signal processor

Abstract

In the transmission electrical signals using an optical carrier the signal power carried by an optical carrier is proportional to the optical power. High optical power levels are desired for optical carriers that are modulated by weak electrical signals, however, significant unmodulated power is left in the original carrier after processing. To maximize the radio frequency (RF) signal power generated by a given (maximized) photodetector current (for a given input power), in this invention, the optical carrier power is reduced. This is accomplished by the addition of a narrowband optical filter, such as a Fabry-Perot filter, to reduce the average optical carrier power without reducing the modulation sidebands, which results in an increased modulation depth. Therefore, greater RF and microwave power is generated by a photodetector with the same photocurrent. With a laser source exhibiting a beam whose linewidth is narrow compared to the filter bandwidth, the filter is tuned, or frequency locked, to match the filtering resonance with the optical carrier wavelength. With the high finesse filter and narrow-linewidth laser beam, the frequency range of operation is extended from the filter half-bandwidth to the next resonance of the filter. Thus, broadband effective gain results without introducing additional noise.

Term

Term ended

Projected expiry passed 6 January 2015, 11.7 years ago.

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Citations
DocumentRelationOfficeCited during
US2003025971A1Cited byUnited States of AmericaPre-grant
US2013188957A1Cited byUnited States of AmericaPre-grant
CN102263596ACited byChinaSearch report
US2005286905A1Cited byUnited States of AmericaPre-grant
US7526201B2Cited byUnited States of AmericaApplicant
EP1435699A3Cited byEuropean Patent Office (EPO)Search report
WO03019258A1Cited byWorld Intellectual Property Organization (WIPO)International search
US6704511B1Cited byUnited States of AmericaSearch report
US8989594B2Cited byUnited States of AmericaSearch report
EP1435699A2Cited byEuropean Patent Office (EPO)Search report
US10598769B2Cited byUnited States of AmericaSearch report
US6594056B1Cited byUnited States of AmericaSearch report
US7340183B2Cited byUnited States of AmericaApplicant
US7881611B2Cited byUnited States of AmericaApplicant
US2009214214A1Cited byUnited States of AmericaPre-grant
US4498179ACitesUnited States of AmericaSearch report
US4588255ACitesUnited States of AmericaSearch report
US5227908ACitesUnited States of AmericaSearch report
US5287212ACitesUnited States of AmericaSearch report
US5361155ACitesUnited States of AmericaSearch report
US5373383ACitesUnited States of AmericaSearch report