IP Library Granted Patent US 12,159,955
Granted Patent B2
US 12,159,955 · App. 17/409,617 · Granted Dec 3, 2024

Roll-to-roll metallization of solar cells

Inventors: Richard Hamilton Sewell (Los Altos, CA); Gabriela Elena Bunea (San Jose, CA)
Assignee: Maxeon Solar Pte. Ltd.
H01L31/1876H01L31/022441H01L31/0488H01L31/0512H01L31/0516H01L31/0682H01L31/18H01L31/188Y02E10/547Y02P70/50
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Quick Facts
Patent No.
US 12,159,955
App. No.
17/409,617
Granted
Dec 3, 2024
Kind
B2
Abstract

Disclosed herein are approaches to fabricating solar cells, solar cell strings and solar modules using roll-to-roll foil-based metallization approaches. Methods disclosed herein can comprise the steps of providing at least one solar cell wafer on a first roll unit and conveying a metal foil to the first roll unit. The metal foil can be coupled to the solar cell wafer on the first roll unit to produce a unified pairing of the metal foil and the solar cell wafer. We disclose solar energy collection devices and manufacturing methods thereof enabling reduction of manufacturing costs due to simplification of the manufacturing process by a high throughput foil metallization process.

Claims (29)

1. A method of fabricating a solar cell, the method comprising:

providing a solar cell comprising a plurality of alternating semiconductor regions on a back surface of the solar cell;

placing a metal foil directly on the semiconductor regions of the solar cell such that the back surface of the solar cell is covered by the metal foil;

bonding the metal foil to the solar cell to provide a unified pairing of the metal foil and the solar cell; and

patterning the metal foil coupled to the solar cell such that the metal foil is separated into isolated regions corresponding to the alternating semiconductor regions.

2. The method of claim 1 , wherein bonding the metal foil to the solar cell comprises heating the metal foil or the solar cell.

3. The method of claim 1 , wherein bonding the metal foil to the solar cell comprises annealing the metal foil or the solar cell.

4. The method of claim 1 , wherein patterning the metal foil comprises forming strain relief features in the metal foil.

5. The method of claim 1 , wherein patterning the metal foil comprises patterning the metal foil during or substantially simultaneously as bonding the metal foil to the solar cell.

6. The method of claim 1 , wherein patterning the metal foil comprises patterning the metal foil during or subsequent to bonding the metal foil to the solar cell.

7. The method of claim 1 , wherein patterning the metal foil comprises cutting using cutting blades of a rotary die.

8. The method of claim 1 , wherein patterning the metal foil comprises retaining intact a portion of the metal foil between the solar cell and a second solar cell.

9. The method of claim 8 , wherein the portion of the metal foil is an electrically conductive interconnect between the solar cell and the second solar cell.

10. The method of claim 1 , further comprising:

subsequent to patterning the metal foil, passing the solar cell through at least one flattening roll unit.

11. An apparatus for fabricating a solar cell, the apparatus configured to perform a method comprising:

placing a metal foil directly on a plurality of alternating semiconductor regions on a back surface of a solar cell such that the back surface of the solar cell is covered by the metal foil;

bonding the metal foil to the solar cell to provide a unified pairing of the metal foil and the solar cell; and

patterning the metal foil coupled to the solar cell such that the metal foil is separated into isolated regions corresponding to the alternating semiconductor regions.

12. The apparatus of claim 11 , wherein bonding the metal foil to the solar cell comprises heating the metal foil or the solar cell.

13. The apparatus of claim 11 , wherein bonding the metal foil to the solar cell comprises annealing the metal foil or the solar cell.

14. The apparatus of claim 11 , wherein patterning the metal foil comprises forming strain relief features in the metal foil.

15. The apparatus of claim 11 , wherein patterning the metal foil comprises patterning the metal foil during or substantially simultaneously as bonding the metal foil to the solar cell.

16. The apparatus of claim 11 , wherein patterning the metal foil comprises patterning the metal foil during or subsequent to bonding the metal foil to the solar cell.

17. The apparatus of claim 11 , wherein patterning the metal foil comprises cutting using cutting blades of a rotary die.

18. The apparatus of claim 11 , wherein patterning the metal foil comprises retaining intact a portion of the metal foil between the solar cell and a second solar cell.

19. The apparatus of claim 18 , wherein the portion of the metal foil is an electrically conductive interconnect between the solar cell and the second solar cell.

20. The apparatus of claim 11 , the method further comprising:

subsequent to patterning the metal foil, passing the solar cell through at least one flattening roll unit.

Assignments (5)
SECURITY INTEREST Recorded Jun 27, 2024
From: MAXEON SOLAR PTE. LTD.
To: DB TRUSTEES (HONG KONG) LIMITED
Reel/Frame 067924/0062 →
SECOND LIEN SECURITY INTEREST AGREEMENT Recorded Jun 26, 2024
From: MAXEON SOLAR PTE. LTD
To: DB TRUSTEES (HONG KONG) LIMITED
Reel/Frame 071343/0553 →
SECURITY INTEREST Recorded Jun 5, 2024
From: MAXEON SOLAR PTE. LTD.
To: DB TRUSTEES (HONG KONG) LIMITED
Reel/Frame 067637/0598 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2023
From: SUNPOWER CORPORATION
To: MAXEON SOLAR PTE. LTD.
Reel/Frame 062699/0875 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 24, 2021
From: SEWELL, RICHARD HAMILTON; BUNEA, GABRIELA ELENA
To: SUNPOWER CORPORATION
Reel/Frame 057271/0666 →
Continuity (4)
Continuation 16818914 · Mar 13, 2020
Continuation 16233868 · Dec 27, 2018
Continuation 15154821 · May 13, 2016
Related Publication 20220020895A1 · Jan 20, 2022