Claims
- 1. A method of manufacturing a display unit including a flat display substrate having on a surface thereof a plurality of scanning lines, a plurality of signal lines perpendicular to said scanning lines, and an input electrode connected to each of said scanning lines or said signal lines, a peripheral driver circuit substrate having on a surface thereof a peripheral driver circuit for energizing said scanning lines or said signal lines, and input and output electrodes electrically connected to said peripheral driver circuit, and a driver circuit board having on a surface thereof a driver circuit for supplying a power supply voltage and transmitting a control signal to said peripheral driver circuit on said peripheral driver circuit substrate, and an output electrode electrically connected to said driver circuit, said method comprising the steps of:
- simultaneously pressing and bonding said input electrode of each of said scanning lines or said signal lines and said input and output electrodes of said peripheral driver circuit substrate to a flexible printed circuit board thereby to electrically connect said input electrode of said flat display substrate to said output electrode of said driver circuit board through said flexible printed circuit board; and
- connecting said output electrode of said driver circuit board to said flexible printed circuit board thereby to electrically connect said input electrode of said peripheral driver circuit substrate to said output electrode of said driver circuit board through said flexible printed circuit board.
- 2. A method according to claim 1, further comprising the step of pressing and bonding said flexible printed circuit board and said output electrode of said driver circuit board to each other thereby to connect said flexible printed circuit board to said output electrode of said driver circuit board.
- 3. A method according to claim 1, further comprising the step of soldering said flexible printed circuit board and said output electrode of said driver circuit board to each other thereby to connect said flexible printed circuit board to said output electrode of said driver circuit board.
- 4. A method according to claim 1, further comprising the step of bonding a side of said flat display substrate to a side of said peripheral driver circuit substrate before said input electrode of each of said scanning lines or said signal lines and said input and output electrodes of said peripheral driver circuit substrate are pressed and bonded to said flexible printed circuit board.
- 5. A method according to claim 1, wherein said flat display substrate and said peripheral driver circuit substrate have respective thicknesses which are equal to each other, further comprising the step of placing said flat display substrate and said peripheral driver circuit substrate in a plane when said input electrode of each of said scanning lines or said signal lines and said input and output electrodes of said peripheral driver circuit substrate are pressed and bonded to said flexible printed circuit board.
- 6. A method of manufacturing a display unit including a flat display substrate having on a surface thereof a plurality of scanning lines, a plurality of signal lines perpendicular to said scanning lines, and an input electrode connected to each of said scanning lines or said signal lines, a peripheral driver circuit substrate having on a surface thereof a peripheral driver circuit for energizing said scanning lines or said signal lines, and input and output electrodes electrically connected to said peripheral driver circuit, and an insulative driver circuit board having on a surface thereof a driver circuit for supplying a power supply voltage and transmitting a control signal to said peripheral driver circuit on said peripheral driver circuit substrate, and an output electrode electrically connected to said driver circuit, said method comprising the steps of:
- simultaneously pressing and bonding said input electrode of each of said scanning lines or said signal lines and said input and output electrodes of said peripheral driver circuit substrate to a flexible printed circuit board thereby to electrically connect said input electrode of said flat display substrate to said output electrode of said insulative driver circuit board through said flexible printed circuit board; and
- connecting said output electrode of said insulative driver circuit board to said flexible printed circuit board thereby to electrically connect said input electrode of said peripheral driver circuit substrate to said output electrode of said insulative driver circuit board through said flexible printed circuit board.
- 7. A method according to claim 6, further comprising the step of pressing and bonding said flexible printed circuit board and said output electrode of said insulative driver circuit board to each other thereby to connect said flexible printed circuit board to said output electrode of said insulative driver circuit board.
- 8. A method according to claim 6, further comprising the step of soldering said flexible printed circuit board and said output electrode of said insulative driver circuit board to each other thereby to connect said flexible printed circuit board to said output electrode of said insulative driver circuit board.
- 9. A method according to claim 6, further comprising the step of bonding a side of said flat display substrate to a side of said peripheral driver circuit substrate before said input electrode of each of said scanning lines or said signal lines and said input and output electrodes of said peripheral driver circuit substrate are pressed and bonded to said flexible printed circuit board.
- 10. A method according to claim 6, wherein said flat display substrate and said peripheral driver circuit substrate have respective thicknesses which are equal to each other, further comprising the step of placing said flat display substrate and said peripheral driver circuit substrate in a plane when said input electrode of each of said scanning lines or said signal lines and said input and output electrodes of said peripheral driver circuit substrate are pressed and bonded to said flexible printed circuit board.
- 11. A method of manufacturing a display unit including a flat display substrate having on a surface thereof a plurality of scanning lines, a plurality of signal lines perpendicular to said scanning lines, and an input electrode connected to each of said scanning lines or said signal lines, a peripheral driver circuit substrate having on a surface thereof a peripheral driver circuit for energizing said scanning lines or said signal lines, and input and output electrodes electrically connected to said peripheral driver circuit, and a driver circuit board having on a surface thereof a driver circuit for supplying a power supply voltage and transmitting a control signal to said peripheral driver circuit on said peripheral driver circuit substrate, and an output electrode electrically connected to said driver circuit, said method comprising the step of:
- simultaneously pressing and bonding said input electrode of each of said scanning lines or said signal lines, said input and output electrodes of said peripheral driver circuit substrate, and said output electrode of said driver circuit board to a flexible printed circuit board thereby to electrically connect said input electrode of said flat display substrate to said output electrode of said driver circuit board and electrically connect said input electrode of said peripheral driver circuit substrate to said output electrode of said driver circuit board through said flexible printed circuit board.
- 12. A method according to claim 11, further comprising the step of bonding a side of said flat display substrate to a side of said peripheral driver circuit substrate before said input electrode of each of said scanning lines or said signal lines, said input and output electrodes of said peripheral driver circuit substrate, and said output electrode of said driver circuit board are simultaneously pressed and bonded to said flexible printed circuit board.
- 13. A method according to claim 11, wherein said flat display substrate and said peripheral driver circuit substrate have respective thicknesses which are equal to each other, further comprising the step of placing said flat display substrate and said peripheral driver circuit substrate in a plane when said input electrode of each of said scanning lines or said signal lines, and said input and output electrodes of said peripheral driver circuit substrate are simultaneously pressed and bonded to said flexible printed circuit board.
- 14. A method of manufacturing a display unit including a flat display substrate having on a surface thereof a plurality of scanning lines, a plurality of signal lines perpendicular to said scanning lines, and an input electrode connected to each of said scanning lines or said signal lines, an insulative peripheral driver circuit substrate having on a surface thereof a peripheral driver circuit for energizing said scanning lines or said signal lines, and input and output electrodes electrically connected to said peripheral driver circuit, and a driver circuit board having on a surface thereof a driver circuit for supplying a power supply voltage and transmitting a control signal to said peripheral driver circuit on said insulative peripheral driver circuit substrate, and an output electrode electrically connected to said driver circuit, said method comprising the step of:
- simultaneously pressing and bonding said input. electrode of each of said scanning lines or said signal lines, said input and output electrodes of said insulative peripheral driver circuit substrate, and said output electrode of said driver circuit board to a flexible printed circuit board thereby to electrically connect said input electrode of said flat display substrate to said output electrode of said driver circuit board and electrically connect said input electrode of said insulative peripheral driver circuit substrate to said output electrode of said driver circuit board through said flexible printed circuit board.
- 15. A method according to claim 14, further comprising the step of bonding a side of said flat display substrate to a side of said insulative peripheral driver circuit substrate before said input electrode of each of said scanning lines or said signal lines, said input and output electrodes of said insulative peripheral driver circuit substrate, and said output electrode of said driver circuit board are simultaneously pressed and bonded to said flexible printed circuit board.
- 16. A method according to claim 14, wherein said flat display substrate and said insulative peripheral driver circuit substrate have respective thicknesses which are equal to each other, further comprising the step of placing said flat display substrate and said insulative peripheral driver circuit substrate in a plane when said input electrode of each of said scanning lines or said signal lines, and said input and output electrodes of said insulative peripheral driver circuit substrate are simultaneously pressed and bonded to said flexible printed circuit board.
Priority Claims (1)
Number |
Date |
Country |
Kind |
9-216404 |
Aug 1997 |
JPX |
|
Parent Case Info
This is a divisional of application Ser. No. 09/129,540 filed Aug. 5, 1998, the disclosure of which is incorporated herein by reference.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
5668700 |
Tagusa et al. |
Sep 1997 |
|
Foreign Referenced Citations (2)
Number |
Date |
Country |
A 6-85004 |
Mar 1994 |
JPX |
A 6152192 |
May 1994 |
JPX |
Divisions (1)
|
Number |
Date |
Country |
Parent |
129540 |
Aug 1998 |
|