This application claims the priority benefit of Taiwan application serial no. 100129589, filed on Aug. 18, 2011. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
1. Field of the Invention
The invention relates to a multi-function printer, and more particularly to a multi-function printer having a door opening structure.
2. Description of Related Art
As the information society arrives, office automatic equipment such as scanners, photocopiers, or printers are disposed in offices, and users may perform secretarial processing operations using these office equipment. It should be noted that when the above plurality of office automatic equipment is simultaneously disposed in the office, a lot of space is consumed. As a result, a multi-function printer (MFP) integrated with functions such as copying, printing, and scanning is developed to resolve the above problem.
Furthermore, information is gradually entering a cloud computing stage, improving the processing speed and convenience when using information. Cloud computing uses the high computing and large storage capacity of a server group through the internet. This way, cloud computing replaces the original software installed on personal computers, or replaces the action of saving information on a personal hard disk. Instead, multiple actions are performed through the internet, and information is stored on the internet, a large virtual space. In other words, users can use cloud computing to perform MPF operations without the restrictions of time and location.
The invention provides a multi-function printer with an automatic door opening structure.
An embodiment of the invention provides a multi-function printer including a body, a door, a carriage and a pushing lever. The door is assembled to the body and is capable of being opened or closed. The carriage and the pushing lever are movably disposed in the body respectively. The pushing lever moves between a first position and a second position relative to the body. An end of the pushing lever located at the first position is located on a moving path of the carriage. And the door is located on a moving path of the other end of the pushing lever, so that when the carriage is located at a pushing segment of the moving path of the carriage, the carriage drives the pushing lever to move from the first position to the second position, and the pushing lever pushes the door to be opened relative to the body.
According to an embodiment of the present invention, a moving direction of the carriage is perpendicular to a moving direction of the pushing lever.
According to an embodiment of the present invention, the moving path of the carriage further comprises a printing segment. The pushing segment is located beside the printing segment and not overlapped with the printing segment.
According to an embodiment of the present invention, the carriage has at least one ink cartridge. An end of the pushing lever located at the first position is located on a moving path of the ink cartridge.
According to an embodiment of the present invention, a distance exists between the pushing lever located at the second position and the moving path of the carriage.
According to an embodiment of the present invention, the body has a sliding slot, and the pushing lever comprises a main body, a first pushing portion and a second pushing portion. The main body is disposed in the sliding slot and capable of moving between the first position and the second position. The first pushing portion is located at an end of the main body and faces the moving path of the carriage. The second pushing portion is located at the other end of the main body and faces the door.
According to an embodiment of the present invention, a profile of the first pushing portion is a curved surface or an inclined surface.
According to an embodiment of the present invention, the pushing lever further comprises a flexible arm disposed on the main body and located between the first pushing portion and the second pushing portion.
According to an embodiment of the present invention, a deformation direction of the flexible arm is perpendicular to a moving direction of the main body.
According to an embodiment of the present invention, the flexible arm has a protrusion. And the body has a first recess and a second recess which are located on the sliding slot. Both the first recess and the second recess are located on a moving path of the protrusion. When the protrusion is located at the first recess the pushing lever is located at the first position. When the protrusion is located at the second recess the pushing lever is located at the second position.
According to an embodiment of the present invention, the first recess has an orienting surface and a guiding surface which are connected to each other, and the second recess has an orienting surface and a guiding surface which are connected to each other. And the guiding surface has a surface profile inclined to the orienting surface.
In light of the above, in the embodiment of the present invention, through the pushing lever disposed between the carriage and the door, the pushing lever can be driven to push the door to be opened when the carriage of the multi-printer moves to the pushing segment. In such way, the user does not need to manually control the multi-function printer, but uses the moving mode of the original carriage of the moving mechanism to ensure the actuating of the door. And this allows the multi-function printer to satisfy the functional requirements of cloud equipment.
In order to make the aforementioned and other features and advantages of the invention more comprehensible, embodiments accompanying figures are described in detail below.
The accompanying drawings constituting a part of this specification are incorporated herein to provide a further understanding of the invention. Here, the drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention.
The carriage 130 is disposed within the body 110, has an ink cartridge 131 and an inkjet printhead 132 and connected to a transmitting mechanism 150. The carriage 130 is driven by the transmitting mechanism 150 and moves back and forth along a moving path R. Thus, the inkjet printhead 132 disposed upon the carriage 130 can be indirectly driven by the transmitting mechanism 150 to move and execute the inkjet printing operations. And the disposing of the pushing lever 140 of the embodiment can be on the moving path of the ink cartridge 131 so as to push the door 120 through the driving of the ink cartridge 131. However, the form of the carriage 130 is not limited thereby, and in another embodiment not shown in the figures, an image extracting module can also be disposed on the carriage so that the carriage can similarly move and execute the image scanning operations by using the transmitting mechanism 150.
Accordingly, when the carriage 130 is located at a pushing segment L1 which is located on the moving path, the carriage 130 drives the pushing lever 140 to move from the first position P1 to the second position P2. And the preparation before printing (or scanning) is completed after the pushing lever 140 pushes the door 120 to be opened relative to the body 110. On the contrary, when the multi-function printer 100 is not to be used and the door 120 has to be closed, the door 120 may drive the pushing lever 140 to move from the second position P2 to the first position P1. In this way the pushing lever 140 returns to its original state and ready to repeat the movement indicated above for the next time.
More specifically, the moving path R of the carriage 130 in the present embodiment includes a printing segment L2 and the pushing segment L1 which are not overlapped to each other and already in the multi-function printer 100. That is, regardless of the carriage 130 used in the scanning function or the printing function, the moving path R can be classified into the operating area which is located at the central area and the non-operating area located at the rest of the moving path R. For example, in the present embodiment, the moving area when the carriage 130 does not operate the printing process is defined as the pushing segment L1. When the carriage 130 does not operate the printing (or scanning) process, since the carriage 130 moves to the pushing segment L1 such that the pushing lever 140 can be driven. That is to say, as for the order of positions, the pushing segment L1 is located before the printing segment L2 relative to the carriage 130, so as to ensure the door 120 open before the carriage 130 moves into the printing segment L2. In addition, since the printing segment L2 and the pushing segment L1 are not overlapped to each other, it can avoid the two operations (printing and pushing) interfering with each other. However, the ranges of the printing segment L2 and the pushing segment L1 are not limited herein the present invention. In another embodiment not shown in the figure, the pushing segment L1 can be overlapped with the printing segment L2, i.e., the sliding range (the printing segment L2) of the carriage 130 can also be taken as the pushing segment L1 which is used in actuating the door 120.
More particularly, the profile of the first pushing portion 141 is a curved surface, so that a side of the ink cartridge 131 can push the first pushing portion 141 along the curved surface to further smooth the moving process of the pushing lever 140 and the carriage 130. The profile of the first pushing portion 141 is not limited in the present invention. In another embodiment not shown in figure, the profile of the first pushing portion 141 can also be an inclined surface which is inclined along the moving path R of the carriage 130. Furthermore, in order to avoid the condition of bumping the pushing lever 140 during the movement of the carriage 130, when the pushing lever 140 is pushed by the carriage 130 and moves to the second position P2, a distance D, taken as the safety distance, exists between the location where the first pushing portion 141 is located and the moving path R of the carriage 130.
Additionally, the pushing lever 140 further includes a flexible arm 144 disposed on the main body 143 and located between the first pushing portion 141 and the second pushing portion 142. The flexible arm 144 is formed by partially hollowing out the main body 143, for example. The deformation direction of the flexible arm 144 is perpendicular to the moving direction of the main body 143. The flexible arm 144 is symmetrically disposed on two opposite sides of the main body in the embodiment, but it is not limited in the present invention. More importantly, the flexible arm 144 has a protrusion 144a. And the body 110 has a first recess 115 and a second recess 116 which are located on the sliding slot 114. And both the first recess 115 and the second recess 116 are located on a moving path of the protrusion 144a. In this way, when the protrusion 144a is located at the first recess 115, then the pushing lever 140 is located at the first position P1. And when the protrusion 144a is located at the second recess 116, then the pushing lever 140 is located at the second position P2. In other words, the pushing lever 140 can be stopped at the first position P1 or the second position P2 to reach the purpose of positioning the pushing lever 140 due to the collocation of the protrusion 144a and the recesses 115, 116.
In light of the above, when the multi-function printer 100 is in the state of
In addition,
Accordingly, the guiding surfaces 115b, 116b are located between the orienting surfaces 115a, 116a and back to back with each other, as shown in
In other words, regardless of the carriage 130 driving the pushing lever 140 or closing the door 120 to driving the pushing lever 140, it is unnecessary to completely run the whole path between the first recess 115 and the second recess 116, instead the existing of the guiding surfaces 115b, 116b ensures the movement of the pushing lever 140 moving within the sliding slot 114. In addition, the guiding surface 116b of the second recess 116 can consequently increase the moving distance of the main body 143 moving toward the second position P2, so as to ensure the first pushing portion 141 of the pushing lever 140 to keep the safety distance with the moving path R of the carriage 130.
Furthermore, referring to
In addition it should be noted that, the guiding surface 217 disposed on the sliding slot 214 and located between the first recess 215 and the second recess 216 is also a curved profile smoothly heading toward the two recesses 215, 216. Thus, the step height distance between the guiding surface 217 and the recesses 215, 216 can be reduced so as to provide a smoother sliding path for the pushing lever 240.
In light of the above, in the embodiment of the present invention, through the pushing lever disposed between the carriage and the door, when the carriage of the multi-function printer moves to the pushing segment, the pushing lever can be driven to push the door to be opened. In such way, the user does not need to manually control the multi-function printer, but uses the moving mode of the original carriage of the moving mechanism to ensure the actuating of the door. And this allows the multi-function printer to satisfy the functional requirements of cloud equipment.
Although the invention has been described with reference to the above embodiments, it will be apparent to one of the ordinary skill in the art that modifications to the described embodiment may be made without departing from the spirit of the invention. Accordingly, the scope of the invention will be defined by the attached claims not by the above detailed descriptions.
Number | Date | Country | Kind |
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100129589 | Aug 2011 | TW | national |