IP Library Granted Patent US 10,538,400
Granted Patent B2
US 10,538,400 · App. 16/007,063 · Granted Jan 21, 2020

Paper feeder and medium processing apparatus including the same

Inventors: Eiji Aoki (Suwon-si, KR); Jin-soo Lee (Yongin-si, KR)
Assignee: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.
B65H3/48B65H3/5261B65H2404/132B65H2406/12B65H2406/15B65H2801/06B65H2801/39
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Quick Facts
Patent No.
US 10,538,400
App. No.
16/007,063
Granted
Jan 21, 2020
Kind
B2
Abstract

A sheet-type medium transporter comprises separation rollers to separate a sheet-type medium from sheet-type media picked up from a load tray in which the sheet-type media are loaded to be transported out of the load tray in a transporting direction; and an air blower coupled to at least one separation roller of the separation rollers to be driven by the at least one separation roller, to supply air in a direction substantially opposite to the transporting direction of the load tray and toward the sheet-type media, to lift the sheet-type medium from the sheet-type media, which is to be separated by the separation rollers.

Claims (80)

1. A sheet-type medium transporter comprising:

separation rollers to separate a sheet-type medium from sheet-type media picked up from a load tray in which the sheet-type media are loaded to be transported out of the load tray in a transporting direction; and

a blowing unit coupled to at least one separation roller of the separation rollers to be driven by the at least one separation roller, to supply air in a direction substantially opposite to the transporting direction of the load tray and toward the sheet-type media, to lift the sheet-type medium from the sheet-type media, which is to be separated by the separation rollers.

2. The sheet-type medium transporter of claim 1 , wherein the blowing unit includes:

a pulsation member coupled to the at least one separation roller to be driven by the at least one separation roller, to control the air to pulsate, to supply a pulse of the air.

3. The sheet-type medium transporter of claim 2 , wherein the pulsation member includes:

a windmill including at least one wing and connected to the at least one separation roller to rotate; and

a guide member to guide the air to the windmill.

4. The sheet-type medium transporter of claim 3 , wherein the guide member includes:

an air chamber,

an air inlet to receive the air, and

an air outlet opened toward the load tray,

wherein the windmill is located in the air chamber.

5. The sheet-type medium transporter of claim 4 , wherein

the at least one wing divides the air chamber into a plurality of sub chambers.

6. The sheet-type medium transporter of claim 3 , wherein

at least one portion of a wall of the guide member is open,

the guide member includes

an air inlet to receive the air, and

an air outlet opened toward the load tray,

the windmill includes a blocking plate that corresponds to the at least one portion of the wall of the guide member being open and is to form an air chamber along with the guide member, and

the at least one wing divides the air chamber into a plurality of sub chambers.

7. The sheet-type medium transporter of claim 6 , wherein the air is guided to be compressed in at least one sub chamber of the plurality of sub chambers.

8. The sheet-type medium transporter of claim 3 , wherein

the separation rollers include:

a feed roller to rotate in a first direction to transport the sheet-type media in the transporting direction, and

a retard roller to be engaged with the feed roller; and

the sheet-type medium transporter includes:

a driving gear to provide a driving force to the retard roller in a second direction, to move a sheet-type medium contacted by the retard roller in an inverse direction inverse to the transporting direction, and

a torque limiter to limit the driving force in the second direction provided to the retard roller; and

the windmill is to rotate together with the retard roller.

9. The sheet-type medium transporter of claim 8 , wherein

the retard roller includes

a rotation axis, and

a roller portion coupled to the rotation axis, and

the windmill is coupled to

the rotation axis,

the roller portion, or

at least one gear coupled to the rotation axis.

10. The sheet-type medium transporter of claim 1 , further comprising:

a sensor to detect lifting of the sheet-type media.

11. The sheet-type medium transporter of claim 10 , wherein the blowing unit is to supply the air based on the lifting detected by the sensor.

12. A sheet-type medium processing apparatus comprising:

a load tray in which sheet-type media are loadable;

a sheet-type medium transporter including:

separation rollers to separate a sheet-type medium from the sheet-type media picked up from the load tray in which the sheet-type media are loaded to be transported out of the load tray in a transporting direction; and

a blowing unit coupled to at least one separation roller of the separation rollers to be driven by the at least one separation roller, to supply air in a direction substantially opposite to the transporting direction of the load tray and toward the sheet-type media, to lift the sheet-type medium from the sheet-type media, which is to be separated by the separation rollers; and

a sheet-type medium processor to process the sheet-type medium separated by the separation rollers.

13. The sheet-type medium processing apparatus of claim 12 , wherein the blowing unit includes:

a pulsation member coupled to the at least one separation roller to be driven by the at least one separation roller, to control the air to pulsate, to supply a pulse of the air,

the pulsation member including:

a windmill including at least one wing and connected to the at least one separation roller to rotate, and

a guide member to guide the air to the windmill.

14. The sheet-type medium processing apparatus of claim 13 , wherein

the guide member is to form an air chamber and includes

an air inlet to receive the air, and

an air outlet opened toward the load tray, and

the windmill is located in the air chamber.

15. The sheet-type medium processing apparatus of claim 13 , wherein

at least one portion of a wall of the guide member is open,

the guide member includes

an air inlet to receive the air, and

an air outlet opened toward the load tray,

the windmill includes a blocking plate that corresponds to the at least one portion of the wall of the guide member being open and is to form an air chamber along with the guide member, and

the at least one wing divides the air chamber into a plurality of sub chambers.

16. The sheet-type medium processing apparatus of claim 15 , wherein the air is guided to be compressed in at least one sub chamber of the plurality of sub chambers.

17. The sheet-type medium processing apparatus of claim 13 , wherein

the separation rollers include:

a feed roller to rotate in a first direction to transport the sheet-type media in the transporting direction, and

a retard roller to be engaged with the feed roller;

the sheet-type medium transporter includes:

a driving gear to provide a driving force to the retard roller in a second direction, to move a sheet-type medium contacted by the retard roller in an inverse direction inverse to the transporting direction, and

a torque limiter to limit the driving force in the second direction provided to the retard roller; and

the windmill is to rotate together with the retard roller.

18. The sheet-type medium processing apparatus of claim 12 , further comprising:

a sensor to detect excessive lifting of the sheet-type media.

19. The sheet-type medium processing apparatus of claim 18 , wherein the blowing unit is to supply the air based on the lifting detected by the sensor.

20. A sheet-type medium transporter comprising:

a separation unit to separate a sheet-type medium from sheet-type media picked up from a load tray in which the sheet-type media are loaded to be transported out of the load tray in a transporting direction; and

a blowing unit coupled to the separation unit to be driven by the separation unit, to supply air in a direction substantially opposite to the transporting direction of the load tray toward the sheet-type media, to lift the sheet-type medium from the sheet-type media, which is to be separated by the separation unit.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2020
From: AOKI, EIJI; LEE, JIN-SOO
To: S-PRINTING SOLUTION CO., LTD.
Reel/Frame 051409/0418 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2020
From: S-PRINTING SOLUTION CO., LTD.
To: HP PRINTING KOREA CO., LTD.
Reel/Frame 051465/0001 →
CONFIRMATORY ASSIGNMENT EFFECTIVE NOVEMBER 1, 2018 Recorded Oct 17, 2019
From: HP PRINTING KOREA CO., LTD.
To: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.
Reel/Frame 050747/0080 →
CHANGE OF LEGAL ENTITY EFFECTIVE AUG. 31, 2018 Recorded Oct 16, 2019
From: HP PRINTING KOREA CO., LTD.
To: HP PRINTING KOREA CO., LTD.
Reel/Frame 050938/0139 →
Priority Claims (1)
KR 10-2016-0057808 · May 11, 2016 · national
Continuity (2)
Continuation 15591840 · May 10, 2017
Related Publication 20180290846A1 · Oct 11, 2018