IP Library Patent Application 14256049
Patent Application
App. No. 14/256,049

INTERCONNECT FOR A THIN FILM PHOTOVOLTAIC SOLAR CELL, AND METHOD OF MAKING THE SAME

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Quick Facts
Patent No.
US None
App. No.
14/256,049
Abstract

A solar cell has a first back contact and a first absorber over the first back contact. The first absorber has a scribe line through it. A first front contact is provided over the first absorber. A first conductive material is provided over a portion of the first front contact. The first conductive material extends through the scribe line and connects to a second back contact of a second solar cell.

Claims (37)

1 . A solar cell comprising:

a first back contact;

a first absorber over the first back contact, the first absorber having a scribe line therethrough;

a first front contact over the first absorber; and

a first conductive material over a portion of the first front contact, the first conductive material extending through the scribe line and connecting to a second back contact of a second solar cell.

2 . The solar cell of claim 1 , wherein:

the scribe line has a second portion isolating the first absorber and first front contact from a second absorber and second front contact of the second solar cell, respectively.

3 . The solar cell of claim 2 , wherein the first conductive layer comprises a transparent conductive oxide (TCO) material covering a portion of the first front contact.

4 . The solar cell of claim 3 , wherein the TCO material is highly doped.

5 . The solar cell of claim 2 , wherein the first conductive layer comprises a metal material covering a portion of the front contact.

6 . The solar cell of claim 1 , wherein:

the solar cell has a collection area and an interconnect area; and

the first conductive layer has at least one opening above a majority of the collection area.

7 . A solar cell comprising:

a first back contact;

a first absorber over the first back contact, the first absorber having a single scribe line extending therethrough;

a first front contact over the first absorber; and

a first conductive layer on a portion of the first front contact, the first conductive layer comprising a material that extends through a first portion of the single scribe line and connects to a second back contact of a second solar cell.

8 . The solar cell of claim 7 , wherein the single scribe line has a second portion isolating the first absorber and first front contact from a second absorber and second front contact of the second solar cell, respectively.

9 . The solar cell of claim 8 , wherein:

the first back contact has a P 1 scribe line therethrough, separating the first back contact from a second back contact of the second solar cell; and

the first portion of the single scribe line is between the P 1 scribe line and the second portion of the single scribe line.

10 . The solar cell of claim 7 , wherein the first portion and second portion of the single scribe line are adjacent to each other.

11 . The solar cell of claim 7 , wherein the first conductive layer comprises a transparent conductive oxide (TCO) mesh covering a portion of the first front contact.

12 . The solar cell of claim 7 , wherein the first conductive layer comprises a metal mesh covering a portion of the front contact.

13 . The solar cell of claim 7 , wherein the solar cell has a hexagonal shape.

14 . The solar cell of claim 7 , further comprising a first buffer between the first absorber and the first front contact, wherein the single scribe line penetrates the first buffer, and the second portion of the single scribe line isolates the first buffer from a second buffer of the second solar cell.

15 . A method of fabricating a solar cell, comprising:

forming a first absorber over a first back contact of the solar cell;

forming a first front contact over the first absorber before forming any scribe line through the first absorber;

forming the scribe line through the first absorber; and

applying a conductive material that extends through the scribe line and connects the first front contact to a second back contact of a second solar cell.

16 . The method of claim 15 , wherein the conductive material is located in a first portion of the scribe line, and the scribe line has a second portion isolating the first absorber and first front contact from a second absorber and second front contact of the second solar cell, respectively.

17 . The method of claim 15 , further comprising applying a mask over a second portion of the scribe line before applying the conductive material in a first portion of the scribe line.

18 . The method of claim 17 , wherein the step of applying a conductive material includes applying a metal mesh over a second portion of the front contact layer, the metal mesh including a portion extending through the scribe line.

19 . The method of claim 17 , wherein the step of applying a conductive material includes providing a doped transparent conductive oxide (TCO) over a second portion of the front contact layer, the doped TCO including a portion extending through the scribe line.

20 . The method of claim 15 , wherein the method only forms a single scribe line penetrating through the first absorber.

Assignments (2)
MERGER Recorded Jun 16, 2016
From: TSMC SOLAR LTD.
To: TAIWAN SEMICONDUCTOR MANUFACTURING CO., LTD.
Reel/Frame 039050/0299 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 18, 2014
From: CHENG, TZU-HUAN
To: TSMC SOLAR LTD.
Reel/Frame 032705/0951 →