IP Library › Granted Patent US 10,488,681
Granted Patent B2
US 10,488,681 · App. 15/671,982 · Granted Nov 26, 2019

GSG track-type radio-frequency electrode, silicon-based traveling-wave electrode light modulator, and preparation method

Inventors: Miaofeng Li (Wuhan, CN); Xi Xiao (Wuhan, CN); Lei Wang (Wuhan, CN); Daigao Chen (Wuhan, CN); Qi Yang (Wuhan, CN); Shaohua Yu (Wuhan, CN)
Assignee: WUHAN RESEARCH INSTITUTE OF POSTS AND TELECOMMUNICATIONS
G02F1/011G02F2201/122G02F2201/127
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Quick Facts
Patent No.
US 10,488,681
App. No.
15/671,982
Granted
Nov 26, 2019
Kind
B2
Abstract

The present invention discloses a GSG track-type radio-frequency electrode, a silicon-based traveling-wave electrode light modulator, and a preparation method, and relates to the field of high-speed electro-optical chips. The GSG track-type radio-frequency electrode includes a GSG-type planar electrode, where a track electrode used for delaying an electric field is periodically added to one side or dual sides of the GSG-type planar electrode, and the track electrode is connected to a ground electrode of the GSG-type planar electrode. The silicon-based traveling-wave electrode light modulator includes the GSG track-type radio-frequency electrode and a conventional silicon-based traveling-wave electrode light modulator, and the GSG track-type radio-frequency electrode is connected to an active region of the silicon-based traveling-wave electrode light modulator by using through holes between electrode layers. The present invention can improve parameter design freedom of an electrode and realize effective signal parameter matching.

Claims (8)

1. A GSG track-type radio-frequency electrode, comprising:

a GSG-type planar electrode; and

a plurality of track electrodes for delaying an electric field being formed separately on either side of ground electrodes or being formed simultaneously on dual sides of ground electrodes of the GSG-type planar electrode, and the plurality of track electrodes are connected to the ground electrodes of the GSG-type planar electrode, wherein an interval between each pair of adjacent track electrodes is 50 micrometers.

2. The GSG track-type radio-frequency electrode according to claim 1 , wherein the track electrode and the GSG-type planar electrode are made of a same material.

3. The GSG track-type radio-frequency electrode according to claim 1 , wherein a cross section of each track electrode is of a T-shaped structure.

4. The GSG track-type radio-frequency electrode according to claim 1 , wherein the track electrode and the GSG-type planar electrode are located in a same planar layer or in different planar layers of a multilayer planar electrode system.

5. The GSG track-type radio-frequency electrode according to claim 4 , wherein: when the track electrodes and the GSG-type planar electrode are located in different planar layers of a multilayer planar electrode system, the track electrodes are connected to the GSG-type planar electrode by using through holes between electrode layers.

6. A silicon-based traveling-wave electrode light modulator based on the GSG track-type radio-frequency electrode according to claim 1 , comprising a GSG track-type radio-frequency electrode and a conventional silicon-based traveling-wave electrode light modulator, wherein the GSG track-type radio-frequency electrode is connected to an active region of the silicon-based traveling-wave electrode light modulator by using through holes between electrode layers.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 8, 2017
From: LI, MIAOFENG; XIAO, XI; WANG, LEI; CHEN, DAIGAO; YANG, QI; YU, SHAOHUA
To: WUHAN RESEARCH INSTITUTE OF POSTS AND TELECOMMUNICATIONS
Reel/Frame 043234/0297 →
Priority Claims (1)
CN 2016 1 1195833 · Dec 21, 2016 · national
Continuity (1)
Related Publication 20180173018A1 · Jun 21, 2018