IMAGE READING APPARATUS
20200329172 ยท 2020-10-15
Inventors
Cpc classification
H04N1/1017
ELECTRICITY
International classification
Abstract
An image reading apparatus including: a reading unit configured to read an image of an original in a main scanning direction; a housing configured to accommodate the reading unit; a guide member configured to guide a movement of the reading unit in a sub-scanning direction orthogonal to the main scanning direction; and a restricting member configured to restrict the movement of the reading unit in the sub-scanning direction and a movement of the reading unit in a vertical direction orthogonal to the main scanning direction and the sub-scanning direction.
Claims
1. An image reading apparatus comprising: a reading unit configured to read an image of an original in a main scanning direction; a housing configured to accommodate the reading unit; a guide member configured to guide a movement of the reading unit in a sub-scanning direction orthogonal to the main scanning direction; and a restricting member configured to restrict the movement of the reading unit in the sub-scanning direction and a movement of the reading unit in a vertical direction orthogonal to the main scanning direction and the sub-scanning direction.
2. The image reading apparatus according to claim 1, wherein the restricting member includes an extending portion extending in the main scanning direction, wherein the extending portion has a region overlapping with the guide member as viewed along the vertical direction, and wherein the extending portion is engaged with the guide member so that the movement of the reading unit in the vertical direction is restricted.
3. The image reading apparatus according to claim 1, further comprising a fixing member to be fixed to the housing, wherein the restricting member is provided with a hole, and wherein the fixing member is engaged with the hole of the restricting member so that the movement of the reading unit in the sub-scanning direction is restricted.
4. The image reading apparatus according to claim 1, wherein the guide member is provided to the housing at one end of the reading unit in the main scanning direction, and wherein the restricting member is arranged at the one end of the reading unit.
5. The image reading apparatus according to claim 1, wherein a width of the restricting member in the sub-scanning direction is equal to a width of the reading unit in the sub-scanning direction.
6. The image reading apparatus according to claim 1, further comprising a sliding member, which is provided to one end of the reading unit in the main scanning direction, and configured to slide on the guide member, wherein the restricting member is arranged on a side opposite to the sliding member with respect to the guide member.
7. The image reading apparatus according to claim 1, wherein the restricting member is formed with a material different from a material of the reading unit.
8. The image reading apparatus according to claim 1, further comprising a second restricting member mounted to the housing at another end of the restricting member in the main scanning direction.
9. The image reading apparatus according to claim 8, wherein the second restricting member is caused to slide in the main scanning direction to be inserted into a gap between a lower surface of the housing and an upper surface of the reading unit.
10. The image reading apparatus according to claim 8, wherein the second restricting member includes a projecting portion configured to be engaged with a hole provided in the housing to determine a position of the second restricting member in the main scanning direction.
11. The image reading apparatus according to claim 1, wherein the guide member is a shaft.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0006]
[0007]
[0008]
[0009]
[0010]
[0011]
DESCRIPTION OF THE EMBODIMENTS
[0012] (Image Reading Apparatus)
[0013] Now, an image reading apparatus 10 according to this embodiment is described.
[0014] When the image reading apparatus 10 receives a reading start signal from a user, the image reading apparatus 10 causes the light source 21 to emit light, and reads the image of the original D placed on the platen glass 12 while moving the reading unit 15 in the sub-scanning direction SS by the drive mechanism 17. A printed circuit board 28 to which the image sensor 27 is mounted is provided to the reading unit 15. One end of a flexible flat cable (hereinafter referred to as FFC) (not shown) is connected to the printed circuit board 28. The FFC (not shown) is arranged so as to slide on a rear side plate of a frame body of the image reading apparatus 10. The FFC (not shown) extends from an opening (not shown) of the rear side plate of the frame body toward the outside of the image reading apparatus 10. Another end of the FFC (not shown) is connected to a controller circuit board (not shown). The image of the original D read by the reading unit 15 is transmitted as image information (image signal) to the controller circuit board (not shown) by the FFC (not shown). The controller circuit board (not shown) is configured to file the image information, or transmit the image information to an image forming unit (not shown) so as to form an image on a recording medium based on the image information.
[0015] In logistics in which the image reading apparatus 10 is conveyed, the reading unit 15 is moved with respect to the housing 14 due to dropping off of the image reading apparatus 10 or vibration transmitted to the image reading apparatus 10 in some cases. The movement of the reading unit 15 with respect to the housing 14 in the logistics may lead to breakage of the reading unit 15. Therefore, in order to restrict the movement of the reading unit 15 with respect to the housing 14 in the logistics, a restricting member 31 is provided to the reading unit 15.
[0016]
[0017]
[0018] Further, in this embodiment, the reading unit 15 and the restricting member 31 are formed as separate members. The restricting member 31 is made of a material different from that of the reading unit 15. However, the restricting member 31 may be formed integrally with the reading unit 15. For example, protruding portions protruding from the reading unit 15 in the main scanning direction MS may be formed integrally on both ends of the reading unit 15 in the sub-scanning direction SS, respectively. The restricting member 31 may be made of the same material as the reading unit 15.
[0019] Depending on a situation of a packing form or a conveyance path of the image reading apparatus 10, an impact of dropping off of the image reading apparatus 10 or vibration transmitted to the image reading apparatus 10 may become larger in the logistics. Therefore, a fixing member 63 is inserted into the restricting member 31 to restrict the movement of the reading unit 15 in the sub-scanning direction SS.
[0020] A width of the fixing member 63 in the sub-scanning direction SS and a width of the hole 31c of the restricting member 31 in the sub-scanning direction SS are set so that the movement of the reading unit 15 in the sub-scanning direction SS falls within an allowable range. In this embodiment, the hole 31c of the restricting member 31 is formed into a U shape. However, the hole 31c of the restricting member 31 is not limited to the U shape, but may have a square shape. The distal end of the fixing member 63 is inserted into the hole having a square shape of the restricting member 31 to restrict the movement of the reading unit 15 in the vertical direction VD and the sub-scanning direction SS. As described above, the restricting member 31 of this embodiment is provided to the one end 15a of the reading unit 15 in the main scanning direction MS, and restricts the movement of the reading unit 15 in the vertical direction VD and the movement of the reading unit 15 in the sub-scanning direction SS.
[0021] A second restricting member 51 may be mounted to the image reading apparatus 10 in addition to the restricting member 31 serving as a first restricting member.
[0022] As illustrated in
[0023] Further, the hole 18 of the housing 14 has a hole 18a having a smaller width in the sub-scanning direction SS. The second restricting member 51 includes the projecting portion 53 configured to be engaged to the hole 18a of the housing 14 to determine a position of the second restricting member 51 in the sub-scanning direction SS. The projecting portion 53 of the second restricting member 51 is engaged to the hole 18a to restrict the movement of the second restricting member 51 in the sub-scanning direction SS with respect to the housing 14. The protruding portions 52 provided on both sides of the second restricting member 51 in the sub-scanning direction SS are held in abutment against the walls 71 formed on both sides of the hole 70 in the sub-scanning direction SS of the reading unit 15, respectively. With this, the second restricting member 51 restricts the movement of the reading unit 15 in the sub-scanning direction SS.
[0024] According to this embodiment, the movement of the reading unit 15 in the vertical direction VD and the sub-scanning direction SS in the logistics can be restricted. As a result, breakage of the reading unit can be prevented.
[0025] While the present invention has been described with reference to exemplary embodiments, it is to be understood that the invention is not limited to the disclosed exemplary embodiments. The scope of the following claims is to be accorded the broadest interpretation so as to encompass all such modifications and equivalent structures and functions.
[0026] This application claims the benefit of Japanese Patent Application No. 2019-074197, filed Apr. 9, 2019, which is hereby incorporated by reference herein in its entirety.