IP Library Granted Patent US 9,656,454
Granted Patent B2
US 9,656,454 · App. 14/903,339 · Granted May 23, 2017

Screen printing method and screen printing device

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Quick Facts
Patent No.
US 9,656,454
App. No.
14/903,339
Granted
May 23, 2017
Kind
B2
Abstract

A screen printing method includes performing a destaticizing action that removes static electricity with which a screen mask is charged, through a mask support member, which is positioned on a lateral side of a circuit board, before bringing the circuit board into contact with a lower surface of the screen mask, by bringing the conductive mask support member into contact with a lower surface of the screen mask as a result of raising the mask support member. The method includes subsequently performing screen printing by bringing the circuit board into contact with the lower surface of the screen mask as a result of raising the circuit board.

Claims (23)

1. A screen printing method that performs screen printing of a predetermined pattern on an upper surface of a circuit board, which is carried into an area below a screen mask, by raising the circuit board, holding the circuit board in a state of coming into contact with a lower surface of the screen mask, and moving a squeegee while the squeegee is in contact with an upper surface of the screen mask, the method comprising:

performing a destaticizing action that removes static electricity with which a screen mask is charged, through a conductive mask support member, which is positioned on a lateral side of the circuit board, before bringing the circuit board into contact with the lower surface of the screen mask, by bringing the mask support member into contact with the lower surface of the screen mask as a result of raising the mask support member; and

subsequently performing screen printing by bringing the circuit board into contact with the lower surface of the screen mask as a result of raising the circuit board.

2. The screen printing method according to claim 1 ,

wherein screen printing is performed after performing the destaticizing action in a case of performing screen printing on an upper surface of a circuit board on which an electronic component is mounted on a lower surface thereof, and

screen printing is performed by bringing the mask support member and the circuit board into contact with the lower surface of the screen mask as a result of simultaneously raising the mask support member and the circuit board in a state in which the heights of the respective upper surfaces of the mask support member and the circuit board are aligned without performing the destaticizing action in a case of performing screen printing on an upper surface of a circuit board on which an electronic component is not mounted on a lower surface thereof.

3. The screen printing method according to claim 1 ,

wherein the destaticizing action is performed each time that screen printing, which does not perform the destaticizing action, is performed a predetermined number of times.

4. The screen printing method according to claim 1 ,

wherein a vacuum hole, which vacuums the screen mask at a negative pressure during screen printing, is formed on an upper surface of the mask support member, and

when the destaticizing action is performed, the upper surface of the mask support member is brought into close contact with the lower surface of the screen mask using a negative pressure vacuuming force as a result of a negative pressure acting on the vacuum hole.

5. A screen printing device that performs screen printing of a predetermined pattern on an upper surface of a circuit board, which is carried into an area below a screen mask, by raising the circuit board, holding the circuit board in a state of coming into contact with a lower surface of the screen mask, and moving a squeegee while the squeegee is in contact with an upper surface of the screen mask, the screen printing device comprising:

a conductive mask support member that is positioned on a lateral side of the circuit board, is provided so as to be capable of ascending and descending, and supports and holds up the screen mask from below; and

control means for individually controlling an ascending and descending action of the circuit board, an ascending and descending action of the mask support member, and a movement action of a squeegee,

wherein the control means performs a destaticizing action that removes static electricity with which the screen mask is charged, through the mask support member before bringing the circuit board into contact with a lower surface of the screen mask, by bringing the conductive mask support member into contact with the lower surface of the screen mask as a result of raising the mask support member; and

subsequently performs screen printing by bringing the circuit board into contact with the lower surface of the screen mask as a result of raising the circuit board.

6. The screen printing device according to claim 5 ,

wherein the control means performs screen printing after performing the destaticizing action in a case of performing screen printing on an upper surface of a circuit board on which an electronic component is mounted on a lower surface thereof, and performs screen printing by bringing the mask support member and the circuit board into contact with the lower surface of the screen mask as a result of simultaneously raising the mask support member and the circuit board in a state in which the heights of the respective upper surfaces of the mask support member and the circuit board are aligned without performing the destaticizing action in a case of performing screen printing on an upper surface of a circuit board on which an electronic component is not mounted on a lower surface thereof.

7. The screen printing device according to claim 5 ,

wherein the control means performs the destaticizing action each time that screen printing, which does not perform the destaticizing action, is performed a predetermined number of times.

8. The screen printing device according to claim 5 ,

wherein a vacuum hole, which vacuums the screen mask at a negative pressure during screen printing, is formed on an upper surface of the mask support member, and

when the destaticizing action is performed, the control means brings the upper surface of the mask support member into close contact with the lower surface of the screen mask using a negative pressure vacuuming force as a result of a negative pressure acting on the vacuum hole.

Assignments (2)
CHANGE OF NAME Recorded Jul 19, 2018
From: FUJI MACHINE MFG. CO., LTD.
To: FUJI CORPORATION
Reel/Frame 046591/0109 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 7, 2016
From: MIZUKOSHI, TSUYOSHI
To: FUJI MACHINE MFG. CO., LTD.
Reel/Frame 037428/0753 →