The patent badge is an abbreviated version of the USPTO patent document. The patent badge does contain a link to the full patent document.
The patent badge is an abbreviated version of the USPTO patent document. The patent badge covers the following: Patent number, Date patent was issued, Date patent was filed, Title of the patent, Applicant, Inventor, Assignee, Attorney firm, Primary examiner, Assistant examiner, CPCs, and Abstract. The patent badge does contain a link to the full patent document (in Adobe Acrobat format, aka pdf). To download or print any patent click here.
Patent No.:
Date of Patent:
Nov. 13, 2012
Filed:
Feb. 16, 2006
Kenji Kawano, Atsugi, JP;
Masaya Nanami, Zama, JP;
Hiroaki Senda, Isehara, JP;
Takeshi Hondo, Atsugi, JP;
Seiji Uchida, Atsugi, JP;
Yuji Sato, Atsugi, JP;
Toru Nakahira, Atsugi, JP;
Kenji Kawano, Atsugi, JP;
Masaya Nanami, Zama, JP;
Hiroaki Senda, Isehara, JP;
Takeshi Hondo, Atsugi, JP;
Seiji Uchida, Atsugi, JP;
Yuji Sato, Atsugi, JP;
Toru Nakahira, Atsugi, JP;
Anritsu Corporation, Atsugi-shi, JP;
Abstract
Herein disclosed is an optical modulation device, comprising: a substratehaving a polarization non-reversal regionand a polarization reversal region; an optical waveguideincluding first and second branched optical waveguide portions; and a traveling waveguide including a center electrodeand a ground electrodeto have an electric signal applied thereto, said traveling waveguide and said first and second branched optical waveguide portions collectively forming an interaction portion to have said incident light interacted with said electric signal, said interaction portion being constituted by a first interaction sub-portionand a second interaction sub-portion, said first and second interaction sub-portions being respectively positioned in regions of said substrate having opposite polarization orientations with each other, in which said center electrode is positioned in face to face relationship with one of said first and second branched optical waveguide portions at said first and second interaction sub-portion to ensure that said incident light in said first and second branched optical waveguide portions are phase modulated, and in which said interaction portion includes an optical waveguide shift sub-portion sandwiched between said first and second interaction sub-portions to have positions of said first and second branched optical waveguide portions shifted therein in a transverse direction, ensuring that positions of said first and second optical waveguides relative to said center and ground electrodes are interchanged between said first and second interaction sub-portions.