Claims
- 1. In a sheet transport system comprising:
- a. a support tray for supporting a stack of sheets,
- b. an inlet operably connected to said support tray through which each sheet passes prior to entering into the stack of sheets on said tray,
- c. an outlet operably connected to said support tray through which each sheet passes upon being discharged from the stack of sheets on said tray,
- d. an inlet sensor at said inlet for sensing the thickness of a sheet passing through said inlet,
- e. an outlet sensor at said outlet for sensing the thickness of a sheet passing through said outlet, and
- f. means for comparing the thickness value sensed at the inlet sensor with the thickness value sensed at the outlet sensor of the same sheet and generating a signal indicating a misfeed if the values differ by a predetermined amount.
- 2. In a sheet transport system recited in claim 1 further comprising means for feeding sheets to said support tray and for feeding sheets from said support tray to said outlet, and means responsive to said signal for making inoperative said means for feeding sheets to said support tray and for feeding sheets from said support tray to said outlet.
- 3. In a sheet transport system recited in claim 1 wherein said inlet sensor and said outlet sensor each comprises an infrared emitter located on one side of a sheet passing through a respective sensor and a phototransistor located on the opposite side of a sheet passing through a respective sensor and arranged to receive rays emitted by said infrared emitter.
- 4. In a sheet transport system recited in claim 3, wherein each said phototransistor has a collector referenced to ground and the sheet thickness value is sensed by said sensors by detecting a potential between ground and said collector as a sheet passes between said infrared emitter and said phototransistor.
- 5. In a sheet transport system comprising:
- a. a support tray for supporting a stack of sheets,
- b. an inlet operably connected to said support tray through which each sheet passes prior to entering into the stack of sheets on said tray,
- c. an outlet operably connected to said support tray through which each sheet passes upon being fed from the stack of sheets on said tray,
- d. an inlet sensor at said inlet for sensing the thickness of a sheet passing through said inlet and storing the thickness value sensed,
- e. an outlet sensor at said outlet for sensing the thickness value of a sheet passing through said outlet,
- f. means for keeping track of a sheet after it passes through said inlet sensor until it passes through said outlet sensor; and
- g. means for comparing the thickness value sensed at the outlet sensor with the stored thickness value sensed at the inlet sensor of the same sheet and generating a signal indicating a misfeed if the values differ by a predetermined amount.
- 6. In a sheet transport system recited in claim 5 further comprising means for feeding sheets to said support tray and for feeding sheets from said support tray to said outlet, and means responsive to said signal for making inoperative said means for feeding sheets to said support tray and for feeding sheets from said support tray to said outlet.
- 7. In a sheet transport system recited in claim 5 wherein the value of the thickness of a sheet sensed at the outlet sensor is stored and said means for comparing compares the stored thickness value sensed at the inlet sensor with the stored thickness value sensed at the outlet sensor of the same sheet.
- 8. In a sheet transport system recited in claim 7 further comprising means for feeding sheets to said support tray and for discharging sheets from said support tray to said outlet, and means responsive to said signal for making inoperative said means for feeding sheets to said support tray and for feeding sheets from said support tray to said outlet.
- 9. In a sheet transport system recited in claim 5 wherein said inlet sensor and said outlet sensor each comprises an infrared emitter located on one side of a sheet passing through a respective sensor and a phototransistor located on the opposite side of a sheet passing through a respective sensor and arranged to receive rays emitted by said infrared emitter.
- 10. In a sheet transport system recited in claim 9, wherein each said phototransistor has a collector referenced to ground and the sheet thickness value is sensed by said sensors by detecting a potential between ground and said collector as a sheet passes between said infrared emitter and said phototransistor.
- 11. In a sheet transport system comprising:
- a. at least two trays of sheets stacked thereon with the sheets on one tray being of a different thickness than the sheets on the other tray,
- b. an intermediate tray for receiving sheets from said at least two trays,
- c. an inlet operably connected to said intermediate tray through which each sheet of said at least two trays passes prior to entering onto a stack of sheets on said intermediate tray,
- d. an outlet operably connected to said intermediate tray through which each sheet passes upon being discharged from the stack of sheets on said intermediate tray,
- e. means for selectively feeding sheets from each of said at least two trays to said intermediate tray,
- f. an inlet sensor at said inlet for sensing the thickness of a sheet passing through said inlet,
- g. an outlet sensor at said outlet for sensing the thickness of a sheet passing through said outlet, and
- h. means for comparing the thickness value sensed at the inlet sensor with the thickness value sensed at the outlet sensor of the same sheet and generating a signal indicating a misfeed if the values differ by a predetermined amount.
- 12. In a sheet transport system recited in claim 11 further comprising means responsive to said signal for making inoperative said means for selectively feeding sheets from each of said at least two trays to said intermediate tray.
- 13. In a sheet transport system recited in claim 11 wherein said inlet sensor and said outlet sensor each comprises an infrared emitter located on one side of a sheet passing through a respective sensor and a phototransistor located on the opposite side of a sheet passing through a respective sensor and arranged to receive rays emitted by said infrared emitter.
- 14. In a sheet transport system recited in claim 13, wherein each said phototransistor has a collector referenced to ground and the sheet thickness value is sensed by said sensors by detecting a potential between ground and said collector as a sheet passes between said infrared emitter and said phototransistor.
- 15. In a sheet transport system comprising:
- a. at least two trays of sheets stacked thereon with the sheets on one tray being of a different thickness than the sheets on the other tray,
- b. an intermediate tray for receiving sheets from said at least two trays,
- c. an inlet operably connected to said intermediate tray through which each sheet of said at least two trays passes prior to entering onto a stack of sheets on said intermediate tray,
- d. an outlet operably connected to said intermediate tray through which each sheet passes upon being fed from the stack of sheets on said intermediate tray,
- e. means for selectively feeding sheets from each of said at least two trays to said intermediate tray,
- f. an inlet sensor at said inlet for sensing the thickness of a sheet passing through said inlet and storing the thickness value sensed,
- g. an outlet sensor at said outlet for sensing the thickness of a sheet passing through said outlet,
- h. means for keeping track of a sheet after it passes through said inlet sensor until it passes through said outlet sensor; and
- i. means for comparing the thickness value sensed at the outlet sensor with the stored thickness value sensed at the inlet sensor of the same sheet and generating a signal indicating a misfeed if the values differ by a predetermined amount.
- 16. In a sheet transport system recited in claim 15 further comprising means responsive to said signal for making inoperative said means for selectively feeding sheets from each of said at least two trays to said intermediate tray.
- 17. In a sheet transport system recited in claim 15 wherein the value of the thickness of a sheet sensed at the outlet sensor is stored and said means for comparing compares the stored thickness value sensed at the inlet sensor with the stored thickness value sensed at the outlet sensor of the same sheet.
- 18. In a sheet transport system recited in claim 17 further comprising means for feeding sheets to said support tray and for feeding sheets from said support tray to said outlet, and means responsive to said signal for making inoperative said means for feeding sheets to said support tray and for feeding sheets from said support tray to said outlet.
- 19. In a sheet transport system recited in claim 15 wherein said inlet sensor and said outlet sensor each comprises an infrared emitter located on one side of a sheet passing through a respective sensor and a phototransistor located on the opposite side of a sheet passing through a respective sensor and arranged to receive rays emitted by said infrared emitter.
- 20. In a sheet transport system recited in claim 19 wherein each said phototransistor has a collector referenced to ground and the sheet thickness value is sensed by said sensors by detecting a potential between ground and said collector as a sheet passes between said infrared emitter and said phototransistor.
Parent Case Info
This application is related to U.S. application Ser. No. 08/387,672, now U.S. Pat. No. 5,503,382, entitled Misfeed Detector For Multi-Tray And Intermediate Tray Sheet Feeders, filed Feb. 13, 1995, and to U.S. application Ser. No. 08/387,673, entitled Misfeed Detector For Multi-Tray Sheet Feeders, filed Feb. 13, 1995. Each of these applications is assigned to the assignee of this application.
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