Claims
- 1. An ink jet recording apparatus comprising:ink jet recording heads for discharging ink droplets in accordance with print data; a capping unit which seals said recording heads and for receiving a negative pressure from a suction pump; a cleaning member for wiping a nozzle opening surface of said recording heads; a platen-gap regulating means for adjusting a space between the recording heads and a printing medium in proportion to the thickness of the printing medium; and a control means for driving said platen-gap regulating means to hold a fixed relative position between the recording heads and said capping means and the recording heads and said cleaning member when said recording heads are located in a cleaning position.
- 2. An ink jet recording apparatus as claimed in claim 1, wherein said platen gap regulating means includes a pair of guide members rotatably mounted on the printer via an eccentric portion, said regulating means moves a carriage having the recording heads back-and-forth, and said control means provides rotating power to said guide members.
- 3. A head cleaning control method in the ink head recording apparatus which comprises ink jet recording heads for discharging ink droplets onto a printing medium in accordance with print data, a capping unit for sealing said recording heads and for receiving a negative pressure from a suction pump, and a cleaning member for wiping the nozzle opening surface of said recording heads, said head cleaning control method comprising the steps of:judging a gap between said nozzle opening surface and said capping unit upon receiving a cleaning instruction for said recording heads; controlling said gap to be a predetermined distance in proportion to the thickness of the printing medium; and cleaning said recording heads with one of said capping means and said cleaning member upon completing said gap control step.
- 4. The head cleaning control method in the ink jet recording apparatus as claimed in claim 3, wherein said gap judging step judges as to whether or not the paten-gap is in a minimum state, and when the platen-gap is judged not to be in the minimum state, the platen-gap is controlled to become the minimum state in said gap control step.
- 5. A platen-gap regulating apparatus for regulating a carriage with respect to a platen of a printer, the platen-gap regulating apparatus comprising;a pair of guide members rotatably mounted on the printer via an eccentric portion, wherein the guide members guide the carriage, and regulating means for imparting a same rotational displacement quantity to the guide members, wherein the carriage is separated from and drawn near to a printing reference plane in parallel thereto.
- 6. The platen-gap regulating apparatus as claimed in claim 5, wherein the regulating means regulates both the guide members forwardly and reversely by the same quantity in the same direction in response to the forward and reverse rolling of a paper-feed driver, and the regulating means engages with or detaches form both the guide members in response to moving of the carriage.
- 7. A platen-gap regulating apparatus in a printer in which a carriage is moved along a pair of guide rods, the platen-gap regulating apparatus comprising:eccentric pins, each eccentrically supporting a respective one of said guide rods; and a linking portion linking the eccentric pins, for moving the eccentric pins such that the guide members are moved in parallel by the eccentric pins; wherein the linking portion comprises: small fan-shaped gears, each fixed to a respective eccentric pin; and an airfoil sector gear having sector gear portions engaging with the small fan-shaped gears of the eccentric pins.
- 8. The platen-gap regulating apparatus according to claim 7 further comprising:a sector gear pivotable with one of the eccentric pins; an intermediate gear engaging with the sector gear; and a switch lever selectively driving the intermediate gear.
- 9. A platen gap regulator comprising:a carriage on which a recording head is mounted; a pair of guide rods for supporting both side end portions of the carriage, along which the carriage reciprocally moves; a first eccentric pin provided with one of the guide rods and rotated by a predetermined angle so as to move one side end portion of the carriage in a direction perpendicularly to a plane defined by the pair of guide rods; a second eccentric pin provided with the other one of the guide rods and subsequently rotated by the predetermined angle when the first eccentric pin is rotated, so as to move the other side end portion in the same direction as the direction in which the one end portion of the carriage is moved; and a linking portion linking the first and second eccentric pins, for moving the eccentric pins such that the guide members are moved in parallel by the eccentric pins; wherein the linking portion comprises: fan-shaped gears, each fixed to a respective eccentric pin; and an airfoil sector gear having sector gear portions engaging with the fan-shaped gears of the eccentric pins.
- 10. The platen gap regulator as claimed in claim 9, wherein the first and second eccentric pins are adapted to rotate by the predetermined angle to permit the carriage to compensate for varying thicknesses of recording medium on which information is recorded by the recording head.
- 11. The platen gap regulator as claimed in claim 9, further comprising a gear mechanism for transmitting the rotation force of the first eccentric pin to the second eccentric pin.
- 12. The platen gap regulator as claimed in claim 11, wherein the rotation of the first eccentric pin is effected by a drive mechanism for feeding a recording medium on which information is recorded by the recording head.
- 13. A platen gap regulator comprising:a carriage on which a recording head is mounted; a pair of guide rods for supporting both side end portions of the carriage, along which the carriage reciprocally moves; a first eccentric pin provided with one of the guide rods and rotated by a predetermined angle so as to move one side end portion of the carriage in a direction perpendicularly to a plane defined by the pair of guide rods; a second eccentric pin provided with the other one of the guide rods and subsequently rotated by the predetermined angle when the first eccentric pin is rotated, so as to move the other side end portion in the same direction as the direction in which the one end portion of the carriage is moved; and a gear mechanism for transmitting the rotation force of the first eccentric pin to the second eccentric pin, wherein the rotation of the first eccentric pin is effected by a drive mechanism for feeding a recording medium on which information is recorded by the recording head.
- 14. The platen gap regulator as claimed in claim 13, wherein the first and second eccentric pins are adapted to rotate by the predetermined angle to permit the carriage to compensate for varying thicknesses of recording medium on which information is recorded by the recording head.
Priority Claims (2)
Number |
Date |
Country |
Kind |
9-31115 |
Jan 1997 |
JP |
|
9-285475 |
Oct 1997 |
JP |
|
Parent Case Info
This application is a continuation-in-part of application Ser. No. 09/016,263, filed on Jan. 30, 1998, now abandoned.
US Referenced Citations (8)
Foreign Referenced Citations (5)
Number |
Date |
Country |
0-450-748 A1 |
Oct 1991 |
EP |
0-556-066 A2 |
Aug 1993 |
EP |
2-300-155 A |
Oct 1996 |
GB |
62-242544 |
Oct 1987 |
JP |
4-142966 |
May 1992 |
JP |
Non-Patent Literature Citations (1)
Entry |
Patent Abstracts of Japan, vol. 012, No. 302 (M-732), Aug. 17, 1998. JP 63-078783 A, (Silver Seiko Ltd.) Apr. 8, 1998. |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09/016263 |
Jan 1998 |
US |
Child |
09/173744 |
|
US |