Printer module having print-head moving mechanism
10409216 ยท 2019-09-10
Assignee
Inventors
Cpc classification
G03G21/1842
PHYSICS
International classification
G03G21/18
PHYSICS
G03G21/16
PHYSICS
G03G15/04
PHYSICS
Abstract
A printer module includes a frame body, a drum, a print head and a print-head moving mechanism. The drum is detachably connected to the frame body. The print-head moving mechanism movably connected to the frame body moves the print head in a horizontal direction substantially perpendicular to a direction of gravity exerted on the print-head moving mechanism. The print-head moving mechanism includes: a shaft rotatably connected to the frame body; an actuating rod connected to the shaft and rotated to rotate the shaft; and an actuating member connected to shaft and rotated with rotation of the shaft, so that the print head is moved between a first position and a second position. Thus, the volume occupied by the printer module can be reduced, the user's operation can be simplified, the influence and interference of the gravity can further be eliminated to simplify the design of the print-head moving mechanism.
Claims
1. A printer module, comprising: a frame body; a drum detachably connected to the frame body; a print head movably connected to the frame body; and a print-head moving mechanism, which is movably connected to the frame body, and moves the print head in a horizontal direction perpendicular to a direction of gravity exerted on the print-head moving mechanism, wherein the print head before being moved from a first position closest to the drum and the print head after being moved to a second position further from the drum are directed in the same horizontal direction with no change in a perpendicular direction and are disposed at the same horizontal level.
2. The printer module according to claim 1, wherein the print-head moving mechanism comprises: a shaft rotatably connected to the frame body; an actuating rod connected to the shaft and rotated to rotate the shaft; and an actuating member, which is connected to the shaft and rotated with rotation of the shaft, so that the print head is moved between the first position and the second position.
3. The printer module according to claim 2, wherein the print-head moving mechanism further comprises a slider, which is movably connected to the frame body, connected to the actuating rod, and has a resilient locking structure capable of resiliently locking with the frame body and unlocking from the frame body.
4. The printer module according to claim 3, further comprising a cover rotatably connected to the frame body, when the cover is rotated to a closed position relatively to the frame body, the cover pushes the slider to a position where the slider locks with the frame body.
5. The printer module according to claim 3, wherein the slider is moved in a direction opposite to a direction, in which the print head is moved.
6. The printer module according to claim 2, further comprising an elastic member, connecting the frame body to the print head, wherein the elastic member receives a force of the print-head moving mechanism to save energy, and then releases the energy to push the print head to the second position.
7. The printer module according to claim 1, further comprising a cover rotatably connected to the frame body, wherein when the cover is rotated to a closed position relatively to the frame body, the cover pushes the print-head moving mechanism to a position where the slider locks with the frame body.
8. The printer module according to claim 1, wherein a disassembling direction of disassembling the drum from the frame body is an axial direction of the drum substantially perpendicular to the horizontal direction.
9. The printer module according to claim 1, wherein the drum is a part of a processing cartridge, and the processing cartridge further comprises a toner cartridge, a transfer roller and a development roller connected to the drum.
10. A printer module, comprising: a frame body; a drum detachably connected to the frame body; a print head movably connected to the frame body; and a print-head moving mechanism, which is movably connected to the frame body to move the print head, the print-head moving mechanism comprising: a shaft rotatably connected to the frame body; an actuating rod connected to the shaft and rotated to rotate the shaft; and an actuating member connected to the shaft and rotated with rotation of the shaft, so that the print head is moved between a first position and a second position, wherein the print head before being moved from the first position closest to the drum and the print head after being moved to the second position further from the drum are directed in the same horizontal direction with no change in a perpendicular direction and are disposed at the same horizontal level.
11. The printer module according to claim 10, wherein the print-head moving mechanism further comprises a slider movably connected to the frame body and connected to the actuating rod, wherein the slider has a resilient locking structure capable of resiliently locking with the frame body and unlocking from the frame body.
12. The printer module according to claim 11, wherein the slider is moved in a direction opposite to a direction, in which the print head is moved.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(8) An embodiment of this disclosure provides a printer module which can be used in printers, copiers, multi-function peripherals and so on. The printer module has a proximity-type print head, such as a light-emitting diode print head (referred to as LPH). Therefore, the print head needs to be close to the drum upon printing, and needs to be kept away from the drum during maintenance so as to avoid damage caused by the collision with the drum.
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(10) The printer module 1 may be a part of a printer or multi-function peripheral. The side surface of the printer module 1 has a cavity 2, a cover 60 (not shown in
(11) In response to the movement of the processing cartridge 70, the print-head moving mechanism 40 of the printer module 1 needs to move the print head 30 in the positive and negative X-axis directions to prevent the print head 30 from colliding with the processing cartridge 70.
(12) The processing cartridge 70 is detachably connected to the frame body 10. Because the drum 20 is a part of the processing cartridge 70, the drum 20 is also detachably connected to the frame body 10.
(13) The print head 30 is movably connected to the frame body 10. In this embodiment, the print head 30 is movable in the positive and negative X directions as well as the positive and negative Y directions. The movement range of the print head 30 in the positive and negative Y directions can be defined by the processing cartridge 70 and the frame body 10. That is, the processing cartridge 70 and the frame body 10 commonly position the print head 30 in the Y direction.
(14) The print-head moving mechanism 40 is movably connected to the frame body 10 and moves the print head 30 in a horizontal direction (X-axis direction), and the horizontal direction is substantially perpendicular to a direction of gravity (Z-axis direction) exerted on the print-head moving mechanism 40. In this embodiment, the print head 30 before being moved from a first position P1 closest to the drum 20 (see also
(15) The printer module 1 may further have a medium tray 4, which is connected to the frame body 10 and carries or supports the printed media. A medium supply tray (not shown) may be disposed below the medium tray 4.
(16) It is worth noting that the drum 20 in
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(18) The shaft 41 is rotatably connected to the frame body 10. The actuating rod 42 is connected to the shaft 41, and is rotated to rotate the shaft 41. The actuating rod 42 has a long slot 42A. The actuating member 43 is connected to the shaft 41, and rotated with rotation of the shaft 41, so that the print head 30 is moved between the first position P1 and the second position P2, wherein the first position P1 is closer to the drum 20 than the second position P2. That is, the user rotates the actuating rod 42 to rotate the shaft 41 and the actuating member 43, and the actuating member 43 is in sliding contact with the print head 30, so that the print head 30 is controlled to move in only the positive and negative X directions and positioned at the first position P1 and the second position P2, respectively.
(19) In addition, the print-head moving mechanism 40 may further include a slider 44, which is movably connected to the frame body 10, connected to the actuating rod 42 and has a resilient locking structure 44A capable of resiliently locking with the frame body 10 and unlocking from the frame body 10. The resilient locking structure 44A is hooked onto a positioning pin 46 disposed on the frame body 10. The slider 44 also has a sliding slot 44B, and the sliding slot 44B is guided by a guide pin 48 so that the slider 44 can slide along a straight line. The guide pin 48 is also disposed on the frame body 10. A combination pin 47 combines the slider 44 with the actuating rod 42, and is movable along the long slot 42A of the actuating rod 42.
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(23) Although the above-mentioned embodiment of this disclosure provides a print head that can be moved in the horizontal direction, the print-head moving mechanism 40 of this disclosure is also applied to a print head that can be moved in a non-horizontal direction. With the arrangements of the shaft 41, the actuating rod 42 and the actuating member 43, the effect of this disclosure can be achieved as long as the print head 30 can be moved between the first position P1 and the second position P2.
(24) With the above-mentioned embodiment, the volume occupied by the printer module is quite small, the up-lifting type upper cover is no longer needed, and there is also no need to move the print head in a substantially vertical direction. Therefore, it is considerably helpful to the reduction of the volume and simplification of the user's operation. Furthermore, because the movement direction of the print head is substantially horizontal, the influence of gravity can be eliminated, and the design of the print-head moving mechanism can be simplified. Meanwhile, the good positioning effect is provided.
(25) 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.