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Dokument US000009559636B2 (Seiten: 74)

Bibliografische Daten Dokument US000009559636B2 (Seiten: 74)
INID Kriterium Feld Inhalt
54 Titel TI [EN] Thyristor-based optoelectronic oscillator with tunable frequency and optical phase lock loop employing same
71/73 Anmelder/Inhaber PA OPEL SOLAR INC, US ; UNIV CONNECTICUT, US
72 Erfinder IN TAYLOR GEOFF W, US
22/96 Anmeldedatum AD 22.12.2014
21 Anmeldenummer AN 201414579404
Anmeldeland AC US
Veröffentlichungsdatum PUB 31.01.2017
33
31
32
Priorität PRC
PRN
PRD


51 IPC-Hauptklasse ICM H01L 29/66 (2006.01)
51 IPC-Nebenklasse ICS H01L 31/111 (2006.01)
H03B 17/00 (2006.01)
H03K 17/687 (2006.01)
H03K 17/78 (2006.01)
H04B 10/63 (2013.01)
IPC-Zusatzklasse ICA
IPC-Indexklasse ICI
Gemeinsame Patentklassifikation CPC G02B 6/42
H03B 17/00
H03K 17/687
H03K 17/78
H04B 10/63
H10F 30/263
H10F 30/2877
MCD-Hauptklasse MCM H01L 29/66 (2006.01)
MCD-Nebenklasse MCS H01L 31/111 (2006.01)
H03B 17/00 (2006.01)
H03K 17/687 (2006.01)
H03K 17/78 (2006.01)
H04B 10/63 (2013.01)
MCD-Zusatzklasse MCA
57 Zusammenfassung AB [EN] An optoelectronic circuit for producing an optical clock signal that includes an optical thyristor, a waveguide structure and control circuitry. The waveguide structure is configured to split an optical pulse produced by the optical thyristor such that a first portion of such optical pulse is output as part of the optical clock signal and a second portion of such optical pulse is guided back to the optical thyristor to produce another optical pulse that is output as part of the optical clock signal. The control circuitry is operably coupled to terminals of the optical thyristor and receives first and second control signal inputs. The control circuitry is configured to selectively decrease frequency of the optical clock signal based on the first control signal input and to selectively increase frequency of the optical clock signal based on the second control signal input.
56 Entgegengehaltene Patentdokumente/Zitate,
in Recherche ermittelt
CT US000006995407B2
US000008592745B2
US000009188798B2
US020040081467A1
56 Entgegengehaltene Patentdokumente/Zitate,
vom Anmelder genannt
CT US000005355243A
US000006031243A
US000006479844B2
US000006841795B2
US000006870207B2
US000006873273B2
US000006954473B2
US000006841806B1
US000006849866B2
US000006853014B2
US000007332752B2
US000007333731B2
US020140050242A1
WO002002071490A1
WO002013025964A1
56 Entgegengehaltene Nichtpatentliteratur/Zitate,
in Recherche ermittelt
CTNP
56 Entgegengehaltene Nichtpatentliteratur/Zitate,
vom Anmelder genannt
CTNP "Tunable Bragg reflectors on silicon-on-insulator rib waveguides", Ivano Giutoni et al., Oct. 12, 2009 / vol. 17, No. 21, Optics Express 18518-18524. 1;
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GaAs-based long-wavelength InAs quantum dots on multi-step-graded InGaAs metamorphic buffer grown by molecular beam epitaxy, He Ji-Fang et al., Journal of Physics D: Applied Physics, J.Phyus. D: Appl.Phys. 44(2011) 335102 (5pp). 1;
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Integrated-Optics Directional Couplers for Optical Coherence Tomography (Chapter 4), D.V. Nguyen, Dissertation, UVA-DARE, 2013. 1;
International Search Report dated Apr. 15, 2016. 1;
K. Hara et al., Optical flip-flop based on parallel-connected AIGaAs/GaAs pnpn structures, In: Optics letters, Jul. 1, 1990, vol. 5, Issue 13, pp. 749-751. 1;
U.S. Appl. No. 08/949,504, Geoff W. Taylor, filed Oct. 19, 1997. 1;
U.S. Appl. No. 09/710,217, Geoff W. Taylor, filed Nov. 11, 2000. 1
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Sequenzprotokoll
Prüfstoff-IPC ICP H03B 17/00
H03K 17/687
H03K 17/78
H04B 10/63