IMAGE FORMING APPARATUS HAVING SORTING MODULE
20170337454 ยท 2017-11-23
Inventors
Cpc classification
G06K15/404
PHYSICS
B65H31/26
PERFORMING OPERATIONS; TRANSPORTING
H04N1/0032
ELECTRICITY
B65H2403/41
PERFORMING OPERATIONS; TRANSPORTING
B65H2404/612
PERFORMING OPERATIONS; TRANSPORTING
B65H2301/42192
PERFORMING OPERATIONS; TRANSPORTING
B65H2404/1424
PERFORMING OPERATIONS; TRANSPORTING
B65H2301/4219
PERFORMING OPERATIONS; TRANSPORTING
International classification
G06K15/00
PHYSICS
H04N1/00
ELECTRICITY
Abstract
An image forming apparatus comprises a printing module, a transporting mechanism and a sorting module. The printing module prints data on media in order. The transporting mechanism transports the media past the printing module. The sorting module is disposed downstream of the transporting mechanism, and comprises an output mechanism, a rack and a driving pinion. The output mechanism transports the media out in a first direction. The rack is connected to the output mechanism. The driving pinion meshing with the rack drives the rack and the output mechanism to reciprocate in a second direction, different from the first direction, to sort the media into stacks. Thus, the sorting function can be achieved without providing a larger space and moving a discharge tray, and this is advantageous to the miniaturization of the image forming apparatus.
Claims
1. An image forming apparatus, comprising: a printing module printing data on media in order; a transporting mechanism transporting the media past the printing module; and a sorting module disposed downstream of the transporting mechanism, the sorting module comprising: an output mechanism transporting the media out in a first direction; a rack connected to the output mechanism; and a driving pinion, which meshes with the rack and drives the rack and the output mechanism to reciprocate in a second direction and to sort the media into stacks, wherein the second direction is different from the first direction.
2. The image forming apparatus according to claim 1, further comprising: a base, wherein the driving pinion is rotatably disposed on the base.
3. The image forming apparatus according to claim 2, wherein the output mechanism comprises: a rotating assembly comprising a rotating shaft assembly and first rollers mounted on the rotating shaft assembly; and a stage assembly comprising a stage and second rollers disposed on the stage, wherein the first rollers cooperate with the second rollers to transport the media out, and the rack is mounted on the stage assembly.
4. The image forming apparatus according to claim 3, wherein the rotating shaft assembly comprises: a driving shaft rotatably disposed; and a sleeve movably mounted on the driving shaft, wherein the first rollers are mounted on the sleeve so that the first rollers reciprocate in the second direction.
5. The image forming apparatus according to claim 4, further comprising: a sensor, which is disposed on the base and senses a relative position between the base and the stage assembly to generate a sensing signal.
6. The image forming apparatus according to claim 5, further comprising: a controller, which is electrically connected to the sensor and controls a rotating angle of the driving pinion according to the sensing signal of the sensor to make the stage assembly return to a home position.
7. The image forming apparatus according to claim 4, further comprising: a connecting element having a first end fastened to the stage assembly, and a second end rotatably fastened to the sleeve.
8. The image forming apparatus according to claim 4, wherein the stage assembly has a first guiding structure, the base has a second guiding structure, the first guiding structure and the second guiding structure cooperate with each other to guide the stage assembly to move relatively to the base.
9. The image forming apparatus according to claim 4, further comprising: a pressing roller, which is mounted on the sleeve and presses the media to level the media.
10. The image forming apparatus according to claim 4, wherein the transporting mechanism comprises a transporting roller rotatably disposed on the base.
11. The image forming apparatus according to claim 4, wherein the base has a plurality of ribs guiding the media into a passage between the first roller and the second roller, each of the ribs has an inclined surface, an angle is formed between the inclined surface and the passage, and the inclined surfaces of the ribs are mirrored about a middle portion of the base.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
DETAILED DESCRIPTION OF THE INVENTION
[0016]
[0017] The printing module 10 may be a printer and prints data on media M in order. The transporting mechanism 20 transports the media M past the printing module 10. In this embodiment, the transporting mechanism 20 comprises transporting rollers 21, 22, 23 and 24. In this embodiment, a laser printing module of a laser printer is described as an example, which does not intend to restrict this disclosure. In another embodiment, an ink-jet printing module of an ink-jet printer, a thermal induction printing module of a thermal induction printer, a dot matrix printing module or a dot matrix printer, or the like.
[0018] In the printing module 10, toner C is accommodated in a toner cartridge 11, and a supply roller 17 is rotatably disposed on the toner cartridge 11 to supply the toner C to a rotatable development roller 16. A charger 13 uniformly charges a surface of a rotatable drum 15, and a laser scanning unit 12 outputs a laser beam to form an electrostatic charge pattern on the drum 15. A transfer roller 14 and the drum 15 are rotatably disposed upstream of a heater roller 19, and nip each of the media M, transported from the rollers 23 and 24, therebetween. The transfer roller 14 transfers the electrostatic charge pattern of the drum 15 onto the medium M. Next, the medium M is processed by a pressure roller 18 and the heater roller 19 so that the toner C is fixated onto the medium M. The fixated medium M enters a passage P.
[0019] The sorting module 30 is a sorter disposed downstream of the transporting mechanism 20, and sorts the media M into multiple stacks, such as stacks ST1 and ST2, as shown in
[0020]
[0021] The output mechanism 31 transports the media M out in a first direction D1. The output mechanism 31 comprises a rotating assembly 32 and a stage assembly 35. The rotating assembly 32 comprises a rotating shaft assembly 33 and first rollers 34 mounted on the rotating shaft assembly 33. The rotating shaft assembly 33 comprises a driving shaft 33A and a sleeve 33B. In this non-restrictive embodiment, the sleeve 33B has three segments combined together. The driving shaft 33A is rotatably disposed on a housing (not shown) of the image forming apparatus 100. The sleeve 33B is movably mounted on the driving shaft 33A. The first rollers 34 are mounted on the sleeve 33B so that the first rollers 34 can reciprocate in a second direction D2.
[0022] The stage assembly 35 comprises a stage 36 and second rollers 37 disposed on the stage 36. The first rollers 34 cooperate with the second rollers 37 to transport the media M out. The rack 38 is connected to the output mechanism 31, and is more particularly mounted on the stage assembly 35. In one example, the rack 38 and the stage assembly 35 are integrally formed by way of injection molding, so that the assembling cost and error can be reduced.
[0023] The driving pinion 39 meshes with the rack 38, and drives the rack 38 and the output mechanism 31 to reciprocate in the second direction D2 to sort the media M into multiple stacks. It is worth noting that the second direction D2 is different from the first direction D1. For example, the second direction D2 is perpendicular to the first direction D1.
[0024] The driving pinion 39 is rotatably disposed on a base 40 of the image forming apparatus 100. The base 40 may be a housing or a portion of the housing mounted on the image forming apparatus 100. The driving pinion 39 may be driven by a gear (not shown) of a motor 90 (see
[0025] Referring to
[0026] The image forming apparatus 100 may further comprise a pressing roller 80, which is mounted on the sleeve 33B and presses the media M to level the media M. In addition, the transporting roller 22 of the transporting mechanism 20 is rotatably disposed on the base 40 to constitute a modularized design for the sake of maintenance and replacement.
[0027] In addition, the image forming apparatus 100 may further comprise a sensor 50 and a controller 60, as shown in
[0028]
[0029]
[0030] With the above-mentioned image forming apparatus, the pinion and the rack can be used to achieve the sorting function. Because the pinion and the rack can achieve the continuous transmission, the sorted number of stacks can be automatically adjusted according to the design or usage requirement. In addition, the sorting function can be achieved without providing a larger space and moving a discharge tray, and this is advantageous to the miniaturization of the image forming apparatus. Furthermore, because the calibration of the home position of the output mechanism can be performed when the image forming apparatus boots up, no manufacturing and accumulated errors are obtained.
[0031] While this disclosure has been described by way of examples and in terms of preferred embodiments, it is to be understood that this disclosure is not limited thereto. To the contrary, it is intended to cover various modifications. Therefore, the scope of the appended claims should be accorded the broadest interpretation so as to encompass all such modifications.