Claims
- 1. A stacker apparatus which includes a plurality of trays (7A to 7F) for receiving sheet-like media (20) discharged from two or more medium exits (4A to 4F) disposed in upward and downward directions separately and individually for said medium exits (4) in a stacked state, characterized in that,between two upper and lower medium exits (4C, 4D) included in said two or more medium exits (4A to 4F), a tray holder (8C) on which the upper side tray (7C) for receiving the sheet-like media (20) discharged from the upper side medium exit (4C) of the two upper and lower medium exits (4C, 4D) in a stacked state can be removably and securely held is disposed, and that said tray holder (8C) is selectively changed over to one of a first state wherein said tray holder (8C) securely holds said upper side tray (7C) when said upper side tray (7C) is mounted thereon and a second state wherein said tray holder (8C) releases said upper side tray (7C) and operates integrally with the lower side tray (7D) provided for receiving the sheet-like media (20) discharged from the lower side medium exit (4D) of said two upper and lower medium exits (4C, 4D) in a stacked state to function as part of a tray for receiving the sheet-like media (20) from the upper side medium exit (4C) in a stacked state together with said lower side tray (7D).
- 2. The stacker apparatus as set forth in claim 1, characterized in that said tray holder (8C) is supported for pivotal motion around an axis (8b, 8c) extending horizontally and perpendicularly to the discharging direction of the sheet-like media (20) on a body (9, 10) of said stacker apparatus such that said tray holder (8C) is changed over between the first state and the second state by pivotal motion of said tray holder (8C) around said axis.
- 3. The stacker apparatus as set forth claim 2, characterized in that a recess (8d) for fitting with said lower side tray (7D) when said tray holder (8C) is in the second state is formed on said tray holder (8C) such that, in a state wherein said lower side tray (7D) is fitted in said recess (8d), an inner face of said lower side tray (7D) adjacent said medium exits (4) and an outer face of said tray holder (8C) adjacent said side trays (7) are in register with each other and the outer face of said tray holder (8C) adjacent said side trays (7) functions, together with the inner face of said lower side tray (7D) adjacent said medium exits (4), as a guide for guiding a sheet-like medium (20) from said upper side medium exit (4C) and arranging the position of an end portion of the sheet-like medium (20) adjacent said medium exits (4).
- 4. The stacker apparatus as set forth claim 2 or 3, characterized in thatsaid tray holder (8C) in the second state closes up said lower side medium exit (4D) and said stacker apparatus further comprises a detection element for detecting that said tray holder (8C) is in the second state, and that said detection element outputs, when it is detected that said tray holder (8C) is in the second state, a detection signal as an instruction signal for urging to stop the discharging of a sheet-like medium (20) from said lower side medium exit (4D) and discharge a sheet-like medium (20) from said upper side medium exit (4C).
- 5. The stacker apparatus as set forth claim 4, characterized in that a tray full sensor (15D) mounted on said tray holder (8C) for detecting a fully stacked state of the sheet-like media (20) on said lower side tray (7D) when said tray holder (8C) is in the first state is used as said detection element.
- 6. The stacker apparatus as set forth claim 5, characterized in thatsaid tray full sensor (15D) includes a lever member (16) mounted on a lower face of said tray holder (8C) in the first state above said lower side tray (7D) and supported at one end side thereof for pivotal motion on said tray holder (8C), and a sensor element (17) for detecting the other end side of said lever member (16), and that, when said tray holder (8C) is in the first state, if the sheet-like media (20) stacked in said lower side tray (7D) are not in a fully stacked state, then the other end side of said lever member (16) is positioned spaced away from said sensor element (17) by the weight of said lever member (16) itself, but if the sheet-like media (20) are stacked in a fully stacked state in said lower side tray (7D), then the other end side of said lever member (16) is pushed up to said sensor element (17) by the sheet-like media (20) and detected by said sensor element (17), whereby said tray full sensor (15D) detects the fully stacked state of the sheet-like media (20).
- 7. The stacker apparatus as set forth in claim 6, characterized in that, when said tray holder (8C) is in the second state, upon the pivotal motion of said tray holder (8C) from the first state to the second state, the other end side of said lever member (16) is moved to the position of said sensor element (17) by the weight of said lever member (16) itself and detected by said sensor element (17), whereby said tray full sensor (15D) detects that said tray holder (8C) is in the second position.
- 8. The stacker apparatus as set forth in claim 7, characterized in thatthe detection signal outputted from said tray full sensor (15D) as a result of detection of the other end side of said lever member (16) after discharging of a sheet-like medium (20) from said lower side medium exit (4D) is detected is used as an instruction signal for urging to stop the discharging of a sheet-like medium (20) from said lower side medium exit (4D) and issue a tray full alarm, and that the detection signal outputted from said tray full sensor (15D) as a result of detection of the other end side of said lever member (16) although discharging of a sheet-like medium (20) from said lower side medium exit (4D) is not detected is used as an instruction signal for urging to stop the discharging of a sheet-like medium (20) from said lower side medium exit (4D) and discharge a sheet-like medium (20) from said upper side medium exit (4C).
- 9. The stacker apparatus as set forth in claim 6, characterized in that said sensor element (17) is formed from an optical sensor which detects the other end side of said lever member (16) through a light intercepting movement of the other end side of said lever member (16).
- 10. The stacker apparatus according to any one of claims 1 to 3, characterized in that the distance between said upper side tray (7C) and said lower side tray (7D) and the installation angle (θ) of each of said trays (7) are set so that, before a trailing end of a sheet-like medium (20) discharged from said upper side medium exit (4C) is released from discharge rollers (5, 5) at said upper side medium exit (4C), a leading end of the sheet-like medium (20) arrives at said lower side tray (7D).
- 11. A printing apparatus, characterized in that it comprisesa printing station for printing a sheet-like medium (20) and discharging the sheet-like medium (20) from one of two or more medium exits (4A to 4F) disposed in upward and downward directions, and a stacker station (2) including a plurality of trays (7A to 7F) for receiving sheet-like media (20) discharged from said two or more medium exits (4A to 4F) of said printing station separately and individually for said medium exits (4) in a stacked state, that in said stacker station (2), between two upper and lower medium exits (4C, 4D) included in said two or more medium exits (4A to 4F), a tray holder (8C) on which the upper side tray (7C) for receiving the sheet-like media (20) discharged from the upper side medium exit (4C) of the two upper and lower medium exits (4C, 4D) in a stacked state can be removably and securely held is disposed, and that said tray holder (8C) is selectively changed over to one of a first state wherein said tray holder (8C) securely holds said upper side tray (7C) when said upper side tray (7C) is mounted thereon and a second state wherein said tray holder (8C) releases said upper side tray (7C) and operates integrally with the lower side tray (7D) provided for receiving the sheet-like media (20) discharged from the lower side medium exit (4D) of said two upper and lower medium exits (4C, 4D) in a stacked state to function as part of a tray (7) for receiving the sheet-like media (20) from the upper side medium exit (4C) in a stacked state together with said lower side tray (7D).
- 12. The printing apparatus as set forth in claim 11, characterized in that said tray holder (8C) is supported for pivotal motion around an axis extending horizontally and perpendicularly to the discharging direction of the sheet-like media (20) on a body of said stacker station such that said tray holder (8C) is changed over between the first state and the second state by pivotal motion of said tray holder (8C) around said axis.
- 13. The printing apparatus as set forth claim 12, characterized in that a recess (8d) for fitting with said lower side tray (7D) when said tray holder (8C) is in the second state is formed on said tray holder (8C) such that, in a state wherein said lower side tray (7D) is fitted in said recess (8d), an inner face of said lower side tray (7D) adjacent said medium exits (4) and an outer face of said tray holder (8C) adjacent said side trays (7) are in register with each other and the outer face of said tray holder (8C) adjacent said side trays (7) functions, together with the inner face of said lower side tray (7D) adjacent said medium exits (4), as a guide for guiding a sheet-like medium (20) from said upper side medium exit (4C) and arranging the position of an end portion of the sheet-like medium (20) adjacent said medium exits (4).
- 14. The printing apparatus as set forth in claim 12 or 13, characterized in thatsaid tray holder (8C) in the second state closes up said lower side medium exit (4D) and said stacker station further includes a detection element for detecting that said tray holder (8C) is in the second state, that said printing station includes a control section for controlling operation of said printing station including discharging operations of the sheet-like media (20) from said two or more medium exits (4A to 4F), that said detection section outputs, when it is detected that said tray holder (8C) is in the second station, a detection signal to said control station, and that, upon reception of the detection signal from said detection section, said control station controls to stop the discharging of a sheet-like medium (20) from said lower side medium exit (4D) and discharge a sheet-like medium (20) from said upper side medium exit (4C).
- 15. The printing apparatus as set forth claim 14, characterized in that a tray full sensor (15D) mounted on said tray holder (8C) for detecting a fully stacked state of the sheet-like media (20) on said lower side tray (7D) when said tray holder (8C) is in the first state is used as said detection element.
- 16. The printing apparatus as set forth claim 15, characterized in thatsaid tray full sensor (15D) includes a lever member (16) mounted on a lower face of said tray holder (8C) in the first state above said lower side tray (7D) and supported at one end side thereof for pivotal motion on said tray holder (8C), and a sensor element (17) for detecting the other end side of said lever member (16), and that, when said tray holder (8C) is in the first state, if the sheet-like media (20) stacked in said lower side tray (7D) are not in a fully stacked state, then the other end side of said lever member (16) is positioned spaced away from said sensor element (17) by the weight of said lever member (16) itself, but if the sheet-like media (20) are stacked in a fully stacked state in said lower side tray (7D), then the other end side of said lever member (16) is pushed up to said sensor element (17) by the sheet-like media (20) and detected by said sensor element (17), whereby said tray full sensor (15D) detects the fully stacked state of the sheet-like media (20).
- 17. The printing apparatus as set forth in claim 16, characterized in that, when said tray holder (8C) is in the second state, upon the pivotal motion of said tray holder (8C) from the first state to the second state, the other end side of said lever member (16) is moved to the position of said sensor element (17) by the weight of said lever member (16) itself and detected by said sensor element (17), whereby said tray full sensor (15D) detects that said tray holder (8C) is in the second position.
- 18. The printing apparatus as set forth in claim 17, characterized in thata discharge sensor is provided for outputting a discharge detection signal to said control section when said discharge sensor detects that a sheet-like medium (20) is discharged to each of said two or more medium exits (4A to 4F), and said control section controls, when the detection signal is received form said tray full sensor (15D) after the discharge detection signal is received from the discharge sensor for said lower side medium exit (4D), to stop the discharging of a sheet-like medium (20) from the lower side medium exit (4D) and urges to issue a tray full alarm, but controls, when the detection signal is received from said tray full sensor (15D) although no discharge detection signal is received from said discharge sensor for said lower side medium exit (4D), to stop the discharging of a sheet-like medium (20) from said lower side medium exit (4D) and discharge a sheet-like medium (20) from said upper side medium exit (4C).
- 19. The printing apparatus as set forth in claim 16, characterized in that said sensor element (17) is formed from an optical sensor which detects the other end side of said lever member (16) through a light intercepting movement of the other end side of said lever member (16).
- 20. The printing apparatus according to any one of claims 11 to 13, characterized in that the distance between said upper side tray (7C) and said lower side tray (7D) and the installation angle (θ) of each of said trays (7) are set so that, before a trailing end of a sheet-like medium (20) discharged from said upper side medium exit (4C) is released from discharge rollers (5, 5) at said upper side medium exit (4C), a leading end of the sheet-like medium (20) arrives at said lower side tray (7D).
- 21. The printing apparatus as set forth in claim 14, characterized in that, when said control section recognizes that, while it is detected by said detection section that said tray holder (8C) is in the second state, the length in the discharging direction of a sheet-like medium (20) designated as a printing object from the outside is shorter than the length of a discharge line for the sheet-like medium (20) from discharge rollers (5, 5) of said upper side medium exit (4C) to said lower side tray (7D), said control section controls to stop the discharging of a sheet-like medium (20) from said upper side medium exit (4C) and urges to issue an alarm.
Parent Case Info
This application is a continuation of international application PCT/JP99/06212 filed on Nov. 8, 1999.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
4569586 |
Koyama |
Feb 1986 |
A |
Foreign Referenced Citations (5)
Number |
Date |
Country |
59-190129 |
Oct 1984 |
JP |
63-106267 |
May 1988 |
JP |
3-249034 |
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JP |
6-286933 |
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Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/JP99/06212 |
Nov 1999 |
US |
Child |
10/119684 |
|
US |