IP Library Patent Application 14210487
Patent Application
App. No. 14/210,487

WASHING ASSEMBLY AND METHOD FOR MONITORING THE PROCESS OF FABRICATING SOLAR CELLS

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Patent No.
US None
App. No.
14/210,487
Abstract

A method for monitoring the process of fabricating solar cells includes delivering at least one solar cell substructure to a wash chamber having a wash solution therein, such that the solar cell substructure is at least partially immersed within the wash solution. A residual material is removed from the solar cell substructure using the wash solution. A pH value of the wash solution is detected automatically while the solar cell substructure is at least partially immersed within the wash solution, via a control apparatus. The method also includes determining whether the detected pH value is at a predefined threshold pH level or within a predefined pH range for the wash solution, via the control apparatus. The pH value of the wash solution is modified automatically if the detected pH value is different from the predefined threshold pH level or different from the predefined pH range.

Claims (35)

1 . A method comprising:

delivering at least one solar cell substructure to a wash chamber having a wash solution therein, such that the at least one solar cell substructure is at least partially immersed within the wash solution;

removing a residual material from the at least one solar cell substructure using the wash solution;

detecting a pH value of the wash solution automatically while the at least one solar cell substructure is at least partially immersed within the wash solution, via a control apparatus;

determining whether the detected pH value is at a predefined threshold pH level or within a predefined pH range for the wash solution, via the control apparatus; and

modifying the pH value of the wash solution automatically if the detected pH value is different from the predefined threshold pH level or different from the predefined pH range.

2 . The method of claim 1 , further comprising positioning a plurality of pipes spaced apart from each other at an end portion of the wash chamber, wherein each of the plurality of pipes includes a plurality of apertures.

3 . The method of claim 2 , further comprising channeling a fluid through each of the plurality of pipes such that the fluid is channeled through the plurality of apertures.

4 . The method of claim 3 , wherein channeling a fluid comprises channeling an air flow through each of the plurality of pipes.

5 . The method of claim 1 , wherein adding a wash solution comprises adding deionized water into the wash chamber.

6 . The method of claim 1 , wherein modifying the pH value of the wash solution comprises removing at least a portion of the wash solution from the wash chamber.

7 . The method of claim 1 , wherein modifying the pH value of the wash solution comprises adding additional wash solution from a storage tank to the wash chamber.

8 . A washing assembly comprising:

a wash chamber adapted to contain a wash solution therein, said wash chamber configured to receive and contain at least one solar cell substructure therein, such that the at least one solar substructure is at least partially immersed within the wash solution, for removing a residual material from the at least one solar cell substructure; and

a control apparatus coupled to said wash chamber, said control apparatus comprising:

a pH meter positioned at least partially within said wash chamber for positioning within the wash solution, said pH meter configured to detect a pH value of the wash solution while the at least one solar cell substructure is at least partially immersed within the wash solution; and

a controller coupled to said pH meter, said controller configured to determine whether the detected pH value is at a predefined threshold pH level or within a predefined pH range for the wash solution and to initiate modification of the pH value of the wash solution if the detected pH value is different from the predefined threshold pH level or different from the predefined pH range.

9 . The washing assembly of claim 8 , wherein said wash chamber comprises a plurality of pipes that are spaced apart from each other at an end portion of said wash chamber, wherein each of said plurality of pipes comprises a plurality of apertures.

10 . The washing assembly of claim 9 , wherein said wash chamber is further configured to channel a fluid through each of said plurality of pipes such that the fluid is channeled through said plurality of apertures.

11 . The washing assembly of claim 10 , wherein the fluid is air.

12 . The washing assembly of claim 8 , further comprising a storage tank positioned proximate to said wash chamber, said storage tank is configured to channel the wash solution to said wash chamber.

13 . The washing assembly of claim 12 , wherein said controller is configured to initiate the addition of at least a portion of the wash solution in said storage tank to said wash chamber.

14 . The washing assembly of claim 8 , wherein the wash solution includes deionized water.

15 . The washing assembly of claim 8 , wherein said controller is configured to initiate the removal of at least a portion of the wash solution from said wash chamber.

16 . A solar cell fabrication system comprising:

a deposition chamber configured to receive at least one solar cell substructure and to perform a reaction process on the at least one solar cell substructure; and

a washing assembly coupled to said deposition chamber, said washing assembly comprises:

a wash chamber adapted to contain a wash solution therein, said wash chamber configured to receive and contain the at least one solar cell substructure therein, such that the at least one solar substructure is at least partially immersed within the wash solution, for removing a residual material from the at least one solar cell substructure; and

a control apparatus coupled to said wash chamber, said control apparatus comprising:

a pH meter positioned at least partially within said wash chamber for positioning within the wash solution, said pH meter configured to detect a pH value of the wash solution while the at least one solar cell substructure is at least partially immersed within the wash solution; and

a controller coupled to said pH meter, said controller configured to determine whether the detected pH value is at a predefined threshold pH level or within a predefined pH range for the wash solution and to initiate modification of the pH value of the wash solution if the detected pH value is different from the predefined threshold pH level or different from the predefined pH range.

17 . The solar cell fabrication system of claim 16 , wherein said wash chamber comprises a plurality of pipes that are spaced apart from each other at an end portion of said wash chamber, wherein each of said plurality of pipes comprises a plurality of apertures.

18 . The solar cell fabrication system of claim 17 , wherein said wash chamber is further configured to channel a fluid through each of said plurality of pipes such that the fluid is channeled through said plurality of apertures.

19 . The solar cell fabrication system of claim 16 , wherein said controller is configured to initiate the removal of at least a portion of the wash solution from said wash chamber.

20 . The solar cell fabrication system of claim 16 , wherein said controller is configured to initiate the addition of at least a portion of the wash solution from a storage tank to said wash chamber.

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 Mar 14, 2014
From: CHEN, SHIH-WEI
To: TSMC SOLAR LTD.
Reel/Frame 032435/0507 →