The present application is based on, and claims priority form, Taiwan Patent Application No. 106218458, filed Dec. 13, 2017, the disclosure of which is hereby incorporated by reference herein in its entirety.
The present invention generally relates to a transmission device, and more particularly to a transmission device assembled to an automatic sheet feeder.
With improvements of softwares and hardwares, a conventional scanner has become one of basic equipments of many computer users. The conventional scanner is capable of scanning and inputting character and image materials into a computer, and processing the character and image materials. The character and image materials include paper type documents, magazines, books, pictures and cards. The conventional scanner includes an automatic sheet feeder. The automatic sheet feeder includes a transmission device. The transmission device assembled to the automatic sheet feeder, includes a plurality of rollers, and a driving element for driving the plurality of the rollers. Generally, a motor is used as the driving element for driving the plurality of the rollers in design. If each of the plurality of the rollers needs controlling independently, two controlling ways are usually provided. One controlling way is to use a one-way clutch for achieving a purpose of controlling the plurality of the rollers. The other controlling way is to equip a new independent motor on the transmission device for achieving the purpose of controlling the plurality of the rollers. When the one-way clutch is used, the one-way clutch usually cooperates with a speed difference among the plurality of the rollers and a mechanism design of an idling angle to reach the purpose of controlling the plurality of the rollers. The mechanism design of the idling angle is capable of making the plurality of the rollers keep static statues in a short time. The idling angle is capable of returning to an original position by virtue of the one-way clutch cooperating with the speed difference among the plurality of the rollers.
However, though a cost of using the one-way clutch in design is lower and the transmission device occupies less space, limitations of the controlling way of the plurality of the rollers by use of the one-way clutch are more and an application elasticity of the controlling way of the plurality of the rollers by use of the one-way clutch is smaller. When the new independent motor is equipped on the transmission device, the new independent motor will usually collocate with a sensor, the new independent motor is controlled to work or stop working by use of switching on or switching off the sensor, through an application elasticity of the other controlling way of the plurality of the rollers is greater, a cost of using the new independent motor in design is higher and the transmission device needs more space to make the new independent motor have enough space to be able to be equipped on the transmission device. So the above-mentioned two controlling ways of the plurality of the rollers are both incapable of furthest realizing needs of the greater application elasticity, the lower cost and saving space.
In order to overcome the shortcomings described above, it is essential to improve the transmission device assembled to the automatic sheet feeder, so the transmission device is in urgent need of being modulated to design a new controlling way, and correspondingly an innovative transmission device assembled to an innovative automatic sheet feeder need be designed.
An object of the present invention is to provide a transmission device assembled to an automatic sheet feeder. The transmission device includes a driving motor mounted to the automatic sheet feeder, a separation roller module, a correction roller module, a discharging roller module, a first clutch, a second clutch, a third clutch and a plurality of sensors. The separation roller module is mounted to the automatic sheet feeder. The separation roller module includes a separation shaft, a separation roller mounted to one end of the separation shaft, and a separation gear mounted to the other end of the separation shaft. The correction roller module is mounted to the automatic sheet feeder. The correction roller module includes a correction shaft, and a correction roller mounted around the correction shaft. The discharging roller module is mounted to the automatic sheet feeder. The discharging roller module includes a discharging shaft, and a discharging roller mounted around the discharging shaft. The first clutch is disposed between the driving motor and the separation roller module. The first clutch is connected with the separation roller module and controls the separation roller module to rotate or stop rotating to control a distance between each two documents fed by the automatic sheet feeder. The second clutch is disposed between the driving motor and the correction roller module. The second clutch is connected with the correction roller module and controls the correction roller module to rotate or stop rotating to correct a skew of each of the documents. The third clutch is disposed between the driving motor and the discharging roller module. The third clutch is connected with the discharging roller module and controls the discharging roller module to rotate or stop rotating to improve a stacked condition of the documents at the time of the documents being discharged. The plurality of the sensors are mounted to the automatic sheet feeder. The plurality of the sensors sense signal variations at the time of a leading end or a tail end of each of the documents passing through the plurality of the sensors, and the plurality of the sensors transmit the signal variations to the first clutch, the second clutch and the third clutch so as to control the separation roller module, the correction roller module and the discharging roller module to rotate or stop rotating.
As described above, the first clutch is disposed between the driving motor and the separation roller module, the first clutch of the transmission device is connected with the separation roller module, and controls the separation roller module to rotate or stop rotating to control the distance between each two documents, the second clutch is disposed between the driving motor and the correction roller module, the second clutch is connected with the correction roller module, and controls the correction roller module to rotate or stop rotating to correct the skew of each of the documents, the third clutch is disposed between the driving motor and the discharging roller module, the third clutch is connected with the discharging roller module, and controls the discharging roller module to rotate or stop rotating to improve the stacked condition of the documents at the time of the documents being discharged, so that the transmission device assembled to the automatic sheet feeder has an above-mentioned controlling way, the above-mentioned controlling way of the transmission device is capable of realizing needs of a greater application elasticity, a lower cost and saving space.
The present invention will be apparent to those skilled in the art by reading the following description, with reference to the attached drawings, in which:
With reference to
With reference to
The correction roller module 20 is mounted to the automatic sheet feeder 200. The correction roller module 20 includes a correction shaft 22, and a correction roller 21 mounted around the correction shaft 22. In the preferred embodiment, the correction roller module 20 includes a plurality of the correction rollers 21. The plurality of the correction rollers 21 are mounted around the correction shaft 22.
The discharging roller module 30 is assembled to the automatic sheet feeder 200. The discharging roller module 30 includes a discharging shaft 32, and a discharging roller 31 mounted around the discharging shaft 32. In the preferred embodiment, the discharging roller module 30 includes two discharging rollers 31. The two discharging rollers 31 are mounted around two sides of the discharging shaft 32.
With reference to
In the preferred embodiment, each of the plurality of the clutches 40 is an electromagnetic type clutch. Each of the first clutch 41, the second clutch 42 and the third clutch 43 is the electromagnetic type clutch. When the plurality of the clutches 40 are in engagement statuses, the separation roller 11, the correction roller 21 and the discharging roller 31 rotate; when the plurality of the clutches 40 are in loosened statuses, the separation roller 11, the correction roller 21 and the discharging roller 31 stop rotating. The transmission device 100 further includes a fastening shaft 70, a driving gear module 80, a transmission gear module 90 and a plurality of transmission belts 110. The first clutch 41, the second clutch 42 and the third clutch 43 are mounted to and fastened to the fastening shaft 70. The plurality of the transmission belts 110 include a first transmission belt 101, a second transmission belt 102, a third transmission belt 103, a fourth transmission belt 104 and a fifth transmission belt 105.
Specifically, each of the plurality of the clutches 40 includes a driving element 44, a driven component 45, a first attracting element 46 fastened to and sleeved around the driving element 44, a second attracting element 47 mounted to and fastened to the driven component 45, and a hollow sleeving component 48. Each of the first clutch 41, the second clutch 42 and the third clutch 43 includes the driving element 44, the driven component 45, the first attracting element 46 fastened to and sleeved around the driving element 44, the second attracting element 47 mounted to and fastened to the driven component 45, and the hollow sleeving component 48. The driving element 44 is of a hollow shape. The driven component 45 is of a hollow shape. The first attracting element 46 is of a hollow shape. The second attracting element 47 is of a ring shape. The driving element 44 is mounted around and fastened to the fastening shaft 70. The driven component 45 is sleeved around a lower portion of the driving element 44. The sleeving component 48 is sleeved around an upper portion of the driving element 44. When each of the first clutch 41, the second clutch 42 and the third clutch 43 is in the engagement status, the first attracting element 46 and the second attracting element 47 are in a combination status due to an effect of a magnetic field of currents, the fastening shaft 70 drives the driving element 44 to rotate so as to drive the driven component 45 to rotate together with the fastening shaft 70 and the driving element 44. When each of the first clutch 41, the second clutch 42 and the third clutch 43 is in the loosened statuses, the first attracting element 46 and the second attracting element 47 are in a separated status due to the effect of the magnetic field of currents, the driving element 44 and the fastening shaft 70 rotate together, and the driven component 45 stops rotating. In the preferred embodiment, the driven component 45 is a pulley.
The driving gear module 80 includes a first driving gear 81 and a second driving gear 82. The first driving gear 81 is mounted to and fastened to one end of the driving motor 50. The second driving gear 82 is mounted to and fastened to the fastening shaft 70. The first transmission belt 101 is looped around the first driving gear 81 and the second driving gear 82, so the first driving gear 81 and the second driving gear 82 are connected by the first transmission belt 101.
The transmission gear module 90 includes a transmission gear shaft 91, two first transmission gears 92, a second transmission gear 93, a third transmission gear 94 and a fourth transmission gear 95. The two first transmission gears 92 are mounted to and fastened to two opposite ends of the transmission gear shaft 91. The second transmission gear 93 is mounted to and fastened to the correction shaft 22. The third transmission gear 94 is mounted to and fastened to the discharging shaft 32. Specifically, the second transmission belt 102 is looped around the driven component 45 of the first clutch 41 and one of the two first transmission gears 92, so the driven component 45 of the first clutch 41 is connected with and drives the one of the two first transmission gears 92 by the second transmission belt 102. The third transmission belt 103 is looped around the fourth transmission gear 95 and the other first transmission gear 92, so the other first transmission gear 92 is connected with and drives the fourth transmission gear 95 by the third transmission belt 103. The fourth transmission gear 95 is engaged with the separation gear 13. So the fastening shaft 70 drives the separation roller 11 of the separation roller module 10 to rotate by virtue of the transmission gear shaft 91, the two first transmission gears 92 and the fourth transmission gear 95 of the transmission gear module 90, the second transmission belt 102, the third transmission belt 103 and the separation gear 13.
The fourth transmission belt 104 is looped around the driven component 45 of the second clutch 42 and the second transmission gear 93. The driven component 45 of the second clutch 42 is connected with and drives the second transmission gear 93 by the fourth transmission belt 104.
The fifth transmission belt 105 is looped around the driven component 45 of the third clutch 43 and the third transmission gear 94. The driven component 45 of the third clutch 43 is connected with and drives the third transmission gear 94 by the fifth transmission belt 105. So the third clutch 43 drives the discharging roller 31 to rotate by virtue of the discharging shaft 32, the third transmission gear 94 and the fifth transmission belt 105.
The plurality of the sensors 60 are mounted to and fastened to the automatic sheet feeder 200. The plurality of the sensors 60 include a first sensor 61, a second sensor 62 and a third sensor 63. The plurality of the sensors 60 sense signal variations at the time of a leading end or a tail end of each of the documents 300 passing through the plurality of the sensors 60, and the plurality of the sensors 60 transmit the signal variations to the first clutch 41, the second clutch 42 and the third clutch 43 of the plurality of the clutches 40 so as to control the separation roller module 10, the correction roller module 20 and the discharging roller module 30 to rotate or stop rotating.
With reference to
With reference to
With reference to
With reference to
As described above, the first clutch 41 is disposed between the driving motor 50 and the separation roller module 10, the first clutch 41 of the transmission device 100 is connected with the separation roller module 10, and controls the separation roller module 10 to rotate or stop rotating to control the distance between each two documents 300, the second clutch 42 is disposed between the driving motor 50 and the correction roller module 20, the second clutch 42 is connected with the correction roller module 20, and controls the correction roller module 20 to rotate or stop rotating to correct the skew of each of the documents 300, the third clutch 43 is disposed between the driving motor 50 and the discharging roller module 30, the third clutch 43 is connected with the discharging roller module 30, and controls the discharging roller module 30 to rotate or stop rotating to improve the stacked condition of the documents 300 at the time of the documents 300 being discharged, so that the transmission device 100 assembled to the automatic sheet feeder 200 has an above-mentioned controlling way, the above-mentioned controlling way of the transmission device 100 is capable of realizing needs of a greater application elasticity, a lower cost and saving space.
Number | Date | Country | Kind |
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106218458 U | Dec 2017 | TW | national |
Number | Name | Date | Kind |
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20020101025 | Lee | Aug 2002 | A1 |
20170022018 | Koda | Jan 2017 | A1 |
Number | Date | Country | |
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20190177100 A1 | Jun 2019 | US |