Invention Grant
- Patent Title: Three dimensional sub-mm wavelength sub-THz frequency antennas on flexible and UV-curable dielectric using printed electronic metal traces
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Application No.: US14964635Application Date: 2015-12-10
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Publication No.: US10086432B2Publication Date: 2018-10-02
- Inventor: Rahul Panat , Deuk Hyoun Heo
- Applicant: Rahul Panat , Deuk Hyoun Heo
- Applicant Address: US WA Pullman
- Assignee: WASHINGTON STATE UNIVERSITY
- Current Assignee: WASHINGTON STATE UNIVERSITY
- Current Assignee Address: US WA Pullman
- Agency: Witham & Cook, P.C.
- Main IPC: H01P11/00
- IPC: H01P11/00 ; B22F3/105 ; B22F1/00 ; G06F1/16 ; H01F27/24 ; H01F27/28 ; H01F41/02 ; H01F41/04 ; H05K1/02 ; H05K1/03 ; H05K3/14 ; H05K3/22 ; H05K3/46 ; B22F7/08 ; B29C70/88 ; B33Y80/00 ; H05K1/09 ; B33Y10/00 ; B33Y50/02 ; H01G4/12 ; H05K3/12

Abstract:
Novel methods for micro-additive manufacturing three dimensional sub-millimeter components are disclosed herein. The methods can include dispensing a dielectric at positions on a substrate so as to provide dielectric structures having an aspect ratio of up to 1:20. The methods can also include in-situ curing of the dielectric structure upon dispensing of the dielectric wherein the dispensing and curing steps provide for three dimensional configurations. Direct printing a metal nanoparticle solution on the dielectric to create conductive traces and thereafter sintering the printed nanoparticle solution so as to cure the conductive traces enables three dimensional conductive (antenna) elements having a length and width scale of down to 1 μm.
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