Invention Grant
- Patent Title: Photovoltaic module having printed PV cells connected in series by printed conductors
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Application No.: US15359514Application Date: 2016-11-22
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Publication No.: US10020417B2Publication Date: 2018-07-10
- Inventor: Tricia Youngbull , Bradley Steven Oraw , William Johnstone Ray
- Applicant: Printed Energy Pty. Ltd.
- Applicant Address: AU Brisbane
- Assignee: Printed Energy Pty Ltd
- Current Assignee: Printed Energy Pty Ltd
- Current Assignee Address: AU Brisbane
- Agency: Patent Law Group LLP
- Agent Brian D. Ogonowsky
- Main IPC: H01L31/0443
- IPC: H01L31/0443 ; H01L31/0463 ; H01L31/0465 ; H01L31/0352 ; H01L31/18 ; H01L31/046 ; H01L27/142

Abstract:
A PV module is formed having an array of PV cells, where the cells are separated by gaps. Each cell contains an array of small silicon sphere diodes (10-300 microns in diameter) connected in parallel. The diodes and conductor layers may be patterned by printing. A continuous metal substrate supports the diodes and conductor layers in all the cells. A dielectric substrate is laminated to the metal substrate. Trenches are then formed by laser ablation around the cells to sever the metal substrate to form electrically isolated PV cells. A metallization step is then performed to connect the cells in series to increase the voltage output of the PV module. An electrically isolated bypass diode for each cell is also formed by the trenching step. The metallization step connects the bypass diode and its associated cell in a reverse-parallel relationship.
Public/Granted literature
- US20170077344A1 PHOTOVOLTAIC MODULE HAVING PRINTED PV CELLS CONNECTED IN SERIES BY PRINTED CONDUCTORS Public/Granted day:2017-03-16
Information query
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