Claims
- 1. A screen printing method for printing, with use of a screen printing apparatus, solder paste on an electrode of a board to be printed, by positioning a screen mask onto the board and by printing the solder paste supplied onto the screen mask into the screen mask with a squeegee of a print head which moves parallel to the screen mask while being kept in contact with the screen mask, wherein
the board is classified into a first area where a value of each of opening sizes of the mask along a direction in which the squeegee moves is smaller than a specified threshold, and a second area where a value of each opening sizes of the mask is not smaller than the threshold, and a speed of the squeegee at the first area is made slower than a speed of the squeegee at the second area.
- 2. The screen printing method according to claim 1, further comprising steps of:
entering data of the first area and the second area as well as data of the squeegee speeds corresponding to the first area and the second area, into the screen printing apparatus by an operator or from a higher-order computer that controls the screen printing apparatus; and switching the squeegee speed between the first and second areas based on the entered data of the first area and the second area as well as the data of the squeegee speeds corresponding to the first area and the second area.
- 3. The screen printing method according to claim 1, further comprising steps of:
entering data of the first area and the second area into the screen printing apparatus by recognizing the opening sizes of the mask by a visual recognition camera, and entering into the screen printing apparatus data of the squeegee speeds corresponding to the first area and the second area by an operator or a higher-order computer that controls the screen printing apparatus; and switching the squeegee speed between the first and second areas based on the entered data of the first area and the second area by the recognition of the visual recognition camera and the entered data of the squeegee speeds corresponding to the first area and the second area by the operator or the higher-order computer.
- 4. The screen printing method according to claim 1, wherein when openings where a value of each of opening sizes of the mask along the squeegee's moving direction is smaller than a specified threshold and openings where a value of each of opening sizes of the mask along the squeegee's moving direction is not smaller than the specified threshold are mixedly present along a direction intersecting the squeegee's moving direction, the squeegee is moved at the speed corresponding to the first area by assuming as the first area based on the smaller opening sizes.
- 5. The screen printing method according to claim 1, wherein when external terminals of components to be mounted to the board are placed on the solder paste formed by the printing, the threshold is a pitch between the external terminals.
- 6. A screen printing apparatus for printing solder paste on an electrode of a board to be printed, by positioning a screen mask onto the board and by printing the solder paste supplied onto the screen mask into the screen mask with a squeegee of a print head which moves parallel to the screen mask while being kept in contact with the screen mask, the screen printing apparatus comprising:
a controller for executing control process in such a way that the board is classified into a first area where a value of each of opening sizes of the mask along a direction in which the squeegee moves is smaller than a specified threshold, and a second area where a value of each of opening sizes is not smaller than the threshold, and that a speed of the squeegee at the first area is made slower than a speed of the squeegee at the second area.
- 7. The screen printing apparatus according to claim 6, wherein data of the first area and the second area as well as data of the squeegee speeds corresponding to the first area and the second area are entered into the controller by an operator or a higher-order computer that controls the controller, and wherein the squeegee speed is switched between the first and second areas by the controller based on these entered data.
- 8. The screen printing apparatus according to claim 6, further comprising a visual recognition camera for recognizing a state of openings of the mask, wherein data of the first area and the second area are entered into the controller by the visual recognition camera recognizing the openings of the mask, and data of the squeegee speeds corresponding to the first area and the second area are entered by an operator or a higher-order computer that controls the controller, and wherein the squeegee speed is switched between the first and second areas by the controller based on these entered data.
- 9. The screen printing apparatus according to claim 6, wherein when openings where a value of each of opening sizes of the mask along the squeegee's moving direction is smaller than a specified threshold and openings where a value of each of opening sizes of the mask along the squeegee's moving direction is not smaller than the specified threshold are mixedly present along a direction intersecting the squeegee's moving direction, the controller makes the squeegee move at the speed corresponding to the first area by assuming as the first area based on the smaller opening sizes.
- 10. The screen printing apparatus according to claim 6, wherein when external terminals of components to be mounted to the board are placed on the solder paste formed by the printing, the threshold is a pitch between the external terminals.
- 11. The screen printing apparatus according to claim 6, further comprising:
a loader for carrying in a board on which the solder paste is to be printed; a stage for holding the board, which has been carried in by the loader, to perform screen printing on the board; and an unloader for carrying out the board, on which the solder paste has been printed, from the stage, the controller comprising:
storage means for storing data for classifying the board into the first area where the value of each of the opening sizes of the mask along the direction in which the squeegee moves is smaller than the specified threshold, and the second area where the value of each of the opening sizes is not smaller than the threshold, data of the squeegee speed at the first area, and data of the squeegee speed at the second area slower than the squeegee speed at the first area; and program generating means for generating a program by which the squeegee speed of the print head is switched on the way of a printing process based on the data stored in the storage means, and the print head comprising squeegee-speed on-process switching means for switching the squeegee speed on the way of the printing process based on control of the controller in accordance with the program.
- 12. A screen printing method for screen printing solder paste at a reference print speed by using a squeegee, the screen printing method comprising:
a step for, upon an occurrence of print standby time during a printing operation, measuring the print standby time; and a step for, at a resumption of printing with the print standby canceled, screen-printing the solder paste placed on a screen mask during the standby time, by moving the squeegee at an adjusted print speed lower than the reference print speed based on a relationship between the print standby time and a print time due to the adjusted print speed after the resumption of printing.
- 13. The screen printing method according to claim 12, wherein a time for which the screen printing is executed at the adjusted print speed is set according to a resupply amount of the solder paste.
- 14. The screen printing method according to claim 12, wherein over a specified time elapse after the screen printing is started at the adjusted print speed, the screen printing is executed at the reference print speed.
- 15. The screen printing method according to claim 12, wherein upon completion of the screen printing of a specified number of boards after the screen printing is started at the adjusted print speed, the screen printing is executed at the reference print speed.
- 16. The screen printing method according to claim 12, wherein the adjusted print speed until the print speed is returned to the reference print speed is set into a plurality of steps.
- 17. A screen printing apparatus for screen printing solder paste at a reference print speed by using a squeegee, the screen printing apparatus comprising:
a controller for, upon an occurrence of print standby time during a printing operation, measuring the print standby time, and for, at a resumption of printing with the print standby canceled, screen-printing the solder paste placed on a screen mask during the standby time, by moving the squeegee at an adjusted print speed lower than the reference print speed based on a relationship between the print standby time and a print time due to the adjusted print speed after the resumption of printing.
- 18. The screen printing apparatus according to claim 17, wherein, by the controller, a time for which the screen printing is executed at the adjusted print speed is set according to a resupply amount of the solder paste.
- 19. The screen printing apparatus according to claim 17, wherein, by the controller, over a specified time elapse after the screen printing is started at the adjusted print speed, the screen printing is executed at the reference print speed.
- 20. The screen printing apparatus according to claim 17, wherein, by the controller, upon completion of the screen printing of a specified number of boards after the screen printing is started at the adjusted print speed, the screen printing is executed at the reference print speed.
- 21. The screen printing apparatus according to claim 17, wherein, by the controller, the adjusted print speed until the print speed is returned to the reference print speed is set into a plurality of steps.
- 22. The screen printing method according claim 2, wherein when openings where a value of each of opening sizes of the mask along the squeegee's moving direction is smaller than a specified threshold and openings where a value of each of opening sizes of the mask along the squeegee's moving direction is not smaller than the specified threshold are mixedly present along a direction intersecting the squeegee's moving direction, the squeegee is moved at the speed corresponding to the first area by assuming as the first area based on the smaller opening sizes.
- 23. The screen printing method according claim 3, wherein when openings where a value of each of opening sizes of the mask along the squeegee's moving direction is smaller than a specified threshold and openings where a value of each of opening sizes of the mask along the squeegee's moving direction is not smaller than the specified threshold are mixedly present along a direction intersecting the squeegee's moving direction, the squeegee is moved at the speed corresponding to the first area by assuming as the first area based on the smaller opening sizes.
- 24. The screen printing method according to claim 2, wherein when external terminals of components to be mounted to the board are placed on the solder paste formed by the printing, the threshold is a pitch between the external terminals.
- 25. The screen printing method according to claim 3, wherein when external terminals of components to be mounted to the board are placed on the solder paste formed by the printing, the threshold is a pitch between the external terminals.
- 26. The screen printing method according to claim 4, wherein when external terminals of components to be mounted to the board are placed on the solder paste formed by the printing, the threshold is a pitch between the external terminals.
- 27. The screen printing apparatus according to claim 7, wherein when openings where a value of each of opening sizes of the mask along the squeegee's moving direction is smaller than a specified threshold and openings where a value of each of opening sizes of the mask along the squeegee's moving direction is not smaller than the specified threshold are mixedly present along a direction intersecting the squeegee's moving direction, the controller makes the squeegee move at the speed corresponding to the first area by assuming as the first area based on the smaller opening sizes.
- 28. The screen printing apparatus according to claim 8, wherein when openings where a value of each of opening sizes of the mask along the squeegee's moving direction is smaller than a specified threshold and openings where a value of each of opening sizes of the mask along the squeegee's moving direction is not smaller than the specified threshold are mixedly present along a direction intersecting the squeegee's moving direction, the controller makes the squeegee move at the speed corresponding to the first area by assuming as the first area based on the smaller opening sizes.
- 29. The screen printing apparatus according to claim 7, wherein when external terminals of components to be mounted to the board are placed on the solder paste formed by the printing, the threshold is a pitch between the external terminals.
- 30. The screen printing apparatus according to claim 8, wherein when external terminals of components to be mounted to the board are placed on the solder paste formed by the printing, the threshold is a pitch between the external terminals.
- 31. The screen printing apparatus according to claim 9, wherein when external terminals of components to be mounted to the board are placed on the solder paste formed by the printing, the threshold is a pitch between the external terminals.
- 32. The screen printing apparatus according to claim 7, further comprising:
a loader for carrying in a board on which the solder paste is to be printed; a stage for holding the board, which has been carried in by the loader, to perform screen printing on the board; and an unloader for carrying out the board, on which the solder paste has been printed, from the stage, the controller comprising:
storage means for storing data for classifying the board into the first area where the value of each of the opening sizes of the mask along the direction in which the squeegee moves is smaller than the specified threshold, and the second area where the value of each of the opening sizes is not smaller than the threshold, data of the squeegee speed at the first area, and data of the squeegee speed at the second area slower than the squeegee speed at the first area; and program generating means for generating a program by which the squeegee speed of the print head is switched on the way of a printing process based on the data stored in the storage means, and the print head comprising squeegee-speed on-process switching means for switching the squeegee speed on the way of the printing process based on the control of the controller in accordance with the program.
- 33. The screen printing apparatus according to claim 8, further comprising:
a loader for carrying in a board on which the solder paste is to be printed; a stage for holding the board, which has been carried in by the loader, to perform screen printing on the board; and an unloader for carrying out the board, on which the solder paste has been printed, from the stage, the controller comprising:
storage means for storing data for classifying the board into the first area where the value of each of the opening sizes of the mask along the direction in which the squeegee moves is smaller than the specified threshold, and the second area where the value of each of the opening sizes is not smaller than the threshold, data of the squeegee speed at the first area, and data of the squeegee speed at the second area slower than the squeegee speed at the first area; and program generating means for generating a program by which the squeegee speed of the print head is switched on the way of a printing process based on the data stored in the storage means, and the print head comprising squeegee-speed on-process switching means for switching the squeegee speed on the way of the printing process based on the control of the controller in accordance with the program.
- 34. The screen printing apparatus according to claim 9, further comprising:
a loader for carrying in a board on which the solder paste is to be printed; a stage for holding the board, which has been carried in by the loader, to perform screen printing on the board; and an unloader for carrying out the board, on which the solder paste has been printed, from the stage, the controller comprising:
storage means for storing data for classifying the board into the first area where the value of each of the opening sizes of the mask along the direction in which the squeegee moves is smaller than the specified threshold, and the second area where the value of each of the opening sizes is not smaller than the threshold, data of the squeegee speed at the first area, and data of the squeegee speed at the second area slower than the squeegee speed at the first area; and program generating means for generating a program by which the squeegee speed of the print head is switched on the way of a printing process based on the data stored in the storage means, and the print head comprising squeegee-speed on-process switching means for switching the squeegee speed on the way of the printing process based on the control of the controller in accordance with the program.
- 35. The screen printing apparatus according to claim 10, further comprising:
a loader for carrying in a board on which the solder paste is to be printed; a stage for holding the board, which has been carried in by the loader, to perform screen printing on the board; and an unloader for carrying out the board, on which the solder paste has been printed, from the stage, the controller comprising:
storage means for storing data for classifying the board into the first area where the value of each of the opening sizes of the mask along the direction in which the squeegee moves is smaller than the specified threshold, and the second area where the value of each of the opening sizes is not smaller than the threshold, data of the squeegee speed at the first area, and data of the squeegee speed at the second area slower than the squeegee speed at the first area; and program generating means for generating a program by which the squeegee speed of the print head is switched on the way of a printing process based on the data stored in the storage means, and the print head comprising squeegee-speed on-process switching means for switching the squeegee speed on the way of the printing process based on the control of the controller in accordance with the program.
- 36. The screen printing method according to claim 13, wherein over a specified time elapse after the screen printing is started at the adjusted print speed, the screen printing is executed at the reference print speed.
- 37. The screen printing method according to claim 13, wherein upon completion of the screen printing of a specified number of boards after the screen printing is started at the adjusted print speed, the screen printing is executed at the reference print speed.
- 38. The screen printing method according to claim 13, wherein the adjusted print speed until the print speed is returned to the reference print speed is set into a plurality of steps.
- 39. The screen printing method according to claim 14, wherein the adjusted print speed until the print speed is returned to the reference print speed is set into a plurality of steps.
- 40. The screen printing method according to claim 15, wherein the adjusted print speed until the print speed is returned to the reference print speed is set into a plurality of steps.
- 41. The screen printing apparatus according to claim 18, wherein, by the controller, over a specified time elapse after the screen printing is started at the adjusted print speed, the screen printing is executed at the reference print speed.
- 42. The screen printing apparatus according to claim 18, wherein, by the controller, upon completion of the screen printing of a specified number of boards after the screen printing is started at the adjusted print speed, the screen printing is executed at the reference print speed.
- 43. The screen printing apparatus according to claim 18, wherein, by the controller, the adjusted print speed until the print speed is returned to the reference print speed is set into a plurality of steps.
- 44. The screen printing apparatus according to claim 19, wherein, by the controller, the adjusted print speed until the print speed is returned to the reference print speed is set into a plurality of steps.
- 45. The screen printing apparatus according to claim 20, wherein, by the controller, the adjusted print speed until the print speed is returned to the reference print speed is set into a plurality of steps.
Priority Claims (3)
Number |
Date |
Country |
Kind |
7-220947 |
Aug 1995 |
JP |
|
7-244847 |
Sep 1995 |
JP |
|
7-298448 |
Nov 1995 |
JP |
|
Parent Case Info
[0001] This is a divisional application of Ser. No. 09/011,979, filed Feb. 20, 1998, which is a 371 of PCT/JP96/02432, filed on Aug. 30, 1996.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09011979 |
Feb 1998 |
US |
Child |
09829998 |
Apr 2001 |
US |