Image reading apparatus and image forming apparatus including the same
Provided is an image reading apparatus, including: a placing member on which an original is to be placed; a reading section arranged so as to be opposed to the original across the placing member and reading an image of the original placed on the placing member; a casing which supports an outer peripheral edge portion of the placing member; and a support member supporting a portion other than the outer peripheral edge portion of the placing member, the support member including an abutment portion abutting against the casing, the support member being capable of supporting the placing member under a state in which the abutment portion abuts against the casing.
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1. Field of the Invention
The present invention relates to an image reading apparatus, and an image forming apparatus including the image reading apparatus.
2. Description of the Related Art
Referring to
A signal line bundle 108 is connected to the image sensor section 107. In order not to interrupt the movement of the image sensor section 107, the signal line bundle 108 is provided so as to be movable in association with the movement of the image sensor section 107 while being curved in parallel to the arrow “e” direction of
The original placing glass 106 is supported at its outer peripheral edges by the casing 103. The original placing glass 106 and the image sensor section 107 are arranged in proximity. When the image reading apparatus 102 receives a force by a drop impact in the arrow “F” direction of
As a result, there is a problem in that the image reading apparatus 102 and the image forming apparatus 101 including the image reading apparatus 102 cannot be reduced in size and weight. Further, there is a problem in that a packaging volume is increased and accordingly the cost of distribution is increased.
Japanese Patent Application Laid-Open No. 2010-034787 describes a configuration in which a dust removing member including a contact cleaning section for cleaning the back surface side of the original placing glass is mounted to a carriage which is provided so as to be capable of traveling along the back surface side of the original placing glass. The contact cleaning section of this configuration may be brought into contact with the back surface of the original placing glass, but cannot sufficiently support the original placing glass which receives a force by a drop impact.
SUMMARY OF THE INVENTIONIt is therefore an object of the present invention to provide an image reading apparatus capable of preventing damage to an original placing glass due to a shock in distribution without increasing the thickness of a packaging material, and capable of reducing the size and weight of the image reading apparatus through reduction in thickness of the original placing glass.
Further, it is another object of the present invention to provide an image reading apparatus, including: a placing member on which an original is to be placed; a reading section arranged so as to be opposed to the original across the placing member and reading an image of the original placed on the placing member; a casing which supports an outer peripheral edge portion of the placing member; and a support member supporting a portion other than the outer peripheral edge portion of the placing member, the support member having an abutment portion abutting against the casing, the support member being capable of supporting the placing member under a state in which the abutment portion abuts against the casing.
Further features of the present invention will become apparent from the following description of exemplary embodiments with reference to the attached drawings.
In the following, image forming apparatuses each including an image reading apparatus according to exemplary embodiments of the present invention are described with reference to the attached drawings. Note that, dimensions, materials, shapes, relative positions of components, and the like to be described in the following embodiments may be changed as appropriate depending on a configuration of an apparatus to which the present invention is applied, or various conditions. The scope of the present invention is not limited to the following embodiments.
(First Embodiment)
Referring to
The image reading apparatus 2 includes an original placing glass 6 serving as a placing member on which a book (not shown) or a sheet-like original (not shown) is to be placed, a casing 3 for supporting an outer peripheral edge portion 6b of the original placing glass 6, and a cover 4. A pressure plate 5 aligns the original placed on the original placing glass 6 (on the original placing glass) with a surface of the original placing glass 6 (an original placing glass surface). An image sensor section 7 serves as an image reading unit, which is opposed to the original placed on the original placing glass 6 at a position below the original placing glass 6, and is provided so as to be movable along the original placing glass 6 inside the casing 3 (within the casing). Specifically, abutment portions 7e situated at both ends of the image sensor section 7 abut against the casing 3 and are supported movably. The image sensor section 7 includes a light emitting element (not shown) and a light receiving element (not shown). As illustrated in
Next, an overview of a reading operation to be performed by the image sensor section 7 is described. In
In
The support members 9 and 10 of this embodiment include a shaft portion 95, which is rotatably held by a bearing portion 31 provided so as to pass through a side surface 3a of the casing 3 and a bearing portion 32 provided on a bottom surface 3b of the casing 3, and pivot integrally with the shaft portion 95. One end portion of the shaft portion 95 passes through the side surface 3a of the casing 3 and protrudes to an outside, and at the protruding portion, there is provided a tab portion 91 for a pivot operation. When the tab portion 91 is pivoted, the support members 9 and 10 integrally pivot about the shaft portion 95. Accordingly, the support members 9 and 10 are movable between a support position of
As illustrated in
One end portion (left end portion of
As illustrated in
It is assumed that “a” represents a separation distance between an upper surface 7b of the image sensor section 7 and the lower surface 6a of the original placing glass 6, and “b” represents a separation distance between the support member 10 and the lower surface 6a of the original placing glass 6. As illustrated in
The original placing glass 6 indicated by the broken lines of
As long as the separation distance “b” between the support member 10 and the original placing glass 6 is smaller than the separation distance “a” between the image sensor section 7 and the original placing glass 6, even when the original placing glass 6 is distorted downward, the original placing glass 6 abuts against the support member 10 and is supported by the support member 10 before the original placing glass 6 comes into contact with the image sensor section 7. Accordingly, even when the original placing glass 6 is distorted downward, the original placing glass 6 does not come into contact with the image sensor section 7, and hence the image sensor section 7 can be protected at the same time as well.
Next, a method of supporting the original placing glass 6 and canceling the support thereof is described with reference to
By configuring the tip end portion of the support member 10 with the elastic member 10a, the shock can be absorbed when the original placing glass 6 is distorted downward and comes into contact with the elastic member 10a as illustrated in
Next, a method of restraining the image sensor section 7 and canceling the restraint thereof is described with reference to
As indicated by the solid lines of
Accordingly, when the image reading apparatus 2 is transported, the original placing glass 6 is supported by the support members 9 and 10, and the image sensor section 7 is restrained and fixed by the support member 9. When the image reading apparatus 2 is operated, the original placing glass 6 and the image sensor section 7 can be released at the same time. In other words, the support member 10 is set at the support position as illustrated in
The bearing portion 31, which is provided at the side surface 3a of the casing 3, and the shaft portion 95 are maintained in a freely slidable, gapless state by a seal member (not shown), and hence dust does not enter the casing 3. As a result, the image reading operation can be performed satisfactorily by the image sensor section 7.
The abutment area of the support members 9 and 10 abutting against the lower surface 6a of the original placing glass 6, and the number of the support members 9 and 10 may be increased as appropriate depending on the area and thickness of the original placing glass 6. For example, the support member 9 may further be extended in an axial direction of the shaft portion 95, and the number of the support members 10 may be increased so that the vicinity of the center of the original placing glass 6 is supported.
The tab portion 91 is pivoted and the support members 9 and 10 move between the support position illustrated in
The image sensor section 7 automatically performs a sequence of returning to the left end portion of
The rigidity of the shaft portion 95 is sufficiently high, and the support member 10 and the bearing portion 32 are situated in proximity in the axial direction. Therefore, when the support member 10 receives the force from the lower surface of the original placing glass 6, the shaft portion 95 that receives the force via the support member 10 is not distorted substantially. Alternatively, when the support member 10 receives the force from the lower surface of the original placing glass 6, the shaft portion 95 may be distorted downward and abut against the bottom surface 3b of the casing 3, to thereby transfer the force to the casing 3. In this case, a lower surface of the shaft portion 95 functions as the abutment portions of the support members 9 and 10. When it is assumed that “c” represents a separation distance between the lower surface of the shaft portion 95 and the bottom surface 3b, and when a relationship of b+c<d is satisfied, the original placing glass 6 is supported through an intermediation of the support member 10 before the original placing glass 6 is damaged. Further, when a relationship of b+c<a is satisfied, even in a case where the original placing glass 6 is distorted downward, the original placing glass 6 does not come into contact with the image sensor section 7, and hence the image sensor section 7 can be protected at the same time as well.
Further, the abutment portions 7e of the image sensor 7 and the abutment portion 95a of the support member 9 are different from each other, and the force transferred from the original placing glass 6 to the support member 9 is not transferred substantially to the image sensor 7, but is transferred to the casing 3 via the abutment portion 95a of the support member 9. Therefore, it is also possible to prevent damage to the image sensor 7.
(Second Embodiment)
Next, referring to
(Third Embodiment)
Next, referring to
(Fourth Embodiment)
Next, referring to
A guide rail 33 is provided at substantially a center portion of the bottom surface 3b of the casing 3 along a moving direction of the image sensor section 7 (lateral direction of
The slider 13 is L-shaped in plain view. A protruding portion 13b having a rectangular prism shape is provided at one end portion of the slider 13, and the protruding portion 13b passes through a long hole 36 formed in a side surface 3c of the casing 3 along a lateral direction of
A pair of opposing guide rails 34 having a C-shaped cross section is provided upright in a vertical direction of
A spring-supported portion 14c is provided at a tip end portion of the fitting portion 14a, which is provided at the one end portion of the support member 14. A lower piece 16b of a pressurization bracket 16 having a Z-shaped cross section is fixed with a screw 17 on the bottom surface 3b of the casing 3. A coil-like pressurization spring 18 is locked between an upper piece 16a of the pressurization bracket 16 and the spring-supported portion 14c of the support member 14. The support member 14 is constantly biased in a downward direction of
As illustrated in
Then, the inclined surface 14b of the support member 14 slides in abutment against the inclined surface 13a of the slider 13, and in this state, the support member 14 is raised along the guide rails 34 against the biasing force of the pressurization spring 18. Then, as illustrated in
The support member 14 is movable at a predetermined separation distance between the support member 14 and the lower surface 6a of the original placing glass 6. As illustrated in
The side surface 14a1 of the fitting portion 14a provided at the one end portion of the support member 14, which protrudes from upper end portions of the guide rails 34, is caused to face the side surface 7c of the image sensor section 7 situated at the left end portion of
The fitting portion 14a provided at the one end portion of the support member 14 serves also as the restraining unit for restraining the image sensor section 7 at the home position in association with the movement of the support member 14.
When the tab portion 35 coupled to the slider 13 is slid on the outer side of the side surface 3c of the casing 3 along the long hole 36 in a rightward direction of
Then, the inclined surface 13a of the slider 13 and the inclined surface 14b of the support member 14 slide in abutment against each other. The inclined surface 14b of the support member 14 slides in abutment against the inclined surface 13a of the slider 13, and in this state, the support member 14 is lowered along the guide rails 34 by a self-weight thereof and the biasing force of the pressurization spring 18. Then, as illustrated in
When the support member 14 is lowered to be set at the retracted position of
(Fifth Embodiment)
Next, referring to
The guide rail 33 is provided on the bottom surface 3b of the casing 3 and in the vicinity of the side surface 3c thereof along a moving direction of the image sensor section 7 (lateral direction of
The slider 13 is L-shaped in a plain view. The protruding portion 13b having a rectangular prism shape is provided at the one end portion of the slider 13, and this protruding portion 13b passes through the long hole 36 formed in the side surface 3c of the casing 3 along a lateral direction of
The guide rail 34 having a C-shaped cross section is provided upright at a position on the bottom surface 3b of the casing 3 and on the extension line of the guide rail 33. The fitting portion 14a having a T-shaped cross section is provided at the one end portion of the support member 14, and the fitting portion 14a is fitted in the guide rail 34a of the guide rail 34 so that the fitting portion 14a can be raised and lowered along the guide rail 34a. The inclined surface 14b corresponding to the inclined surface 13a of the slider 13 is provided at the other end portion of the support member 14. The elastic member 14d, which abuts against the lower surface 6a of the original placing glass 6 and supports the original placing glass 6, is provided above the inclined surface 14b.
The spring-supported portion 14c is provided at a tip end portion of the fitting portion 14a, which is provided at the one end portion of the support member 14. The lower piece 16b of the pressurization bracket 16 having a Z-shaped cross section is fixed with the screw 17 on the bottom surface 3b of the casing 3. The coil-like pressurization spring 18 is locked between the upper piece 16a of the pressurization bracket 16 and the spring-supported portion 14c of the support member 14. The support member 14 is constantly biased in a downward direction of
As illustrated in
Then, the inclined surface 14b of the support member 14 slides in abutment against the inclined surface 13a of the slider 13, and in this state, the support member 14 is raised along the guide rail 34 against the biasing force of the pressurization spring 18. Then, as illustrated in
The support member 14 is movable at a predetermined separation distance between the support member 14 and the lower surface 6a of the original placing glass 6. As illustrated in
Then, the side surface 14a1 of the fitting portion 14a provided at the one end portion of the support member 14, which protrudes from the upper end portion of the guide rail 34, is caused to face the side surface 7c of the image sensor section 7 situated at the left end portion of
The fitting portion 14a provided at the one end portion of the support member 14 serves also as the restraining unit for restraining the image sensor section 7 at the home position in association with the movement of the support member 14.
When the tab portion 35 coupled to the slider 13 is slid on the outer side of the side surface 3c of the casing 3 along the long hole 36 in a rightward direction of
Then, under the state illustrated in
When the support member 14 is lowered to be set at the retracted position of
(Sixth Embodiment)
Next, referring to
In this embodiment, the image reading apparatus 2 is transported under a state in which a packaging material 28 is set. In association with a user's operation of placing the packaging material 28 onto the image reading apparatus 2 at the time of packaging work, a support member 24 serving as the support unit supports the lower surface 6a of the original placing glass 6 at a portion other than the portion of the original placing glass 6 which is supported by the casing 3. Further, in association with a user's operation of removing the packaging material 28 from the image reading apparatus 2 at the time of unpackaging work, the support of the lower surface 6a of the original placing glass 6 is canceled.
The support member 24 is movable between the support position for supporting the lower surface 6a of the original placing glass 6 and the retracted position retracted from the lower surface 6a of the original placing glass 6.
In association with the operation of placing and removing the packaging material 28, a restraining member 23 serving as the restraining unit is movable between the restraining position for restraining the image sensor section 7 at the home position and the canceling position for canceling the restraint of the image sensor section 7.
In this embodiment, the restraining member 23 and the support member 24 are provided separately. The restraining member 23 is arranged in the vicinity of the home position of the image sensor section 7 and at substantially a center portion of the image sensor section 7 in its longitudinal direction. An elastic member 25 of the support member 24 is arranged at a position of substantially the center portion of the lower surface 6a of the original placing glass 6.
As illustrated in
The guide rails 45 for guiding the restraining member 23 so that the restraining member 23 can be raised and lowered are arranged in the vicinity of the home position of the image sensor section 7 and at substantially the center portion of the image sensor section 7 in its longitudinal direction. The guide rails 46 for guiding the support member 24 so that the support member 24 can be raised and lowered are arranged at a position of substantially the center portion of the lower surface 6a of the original placing glass 6.
In the guide rails 47, the restraining member 23 having a T-shaped cross section, which is movable along the guide rails 45 in the vertical direction of
In this embodiment, the guide rails 45 for holding the restraining member 23 so that the restraining member 23 can be raised and lowered are provided on the left end portion side of
A spring-supported portion 23a protruding from the guide rails 45 is provided at an intermediate portion of the restraining member 23 in the vertical direction. A spring-supported portion 24a protruding from the guide rails 46 is provided at an intermediate portion of the support member 24 in the vertical direction.
The lower pieces 16b of the pressurization brackets 16 each having a Z-shaped cross section are fixed with the screws 17, respectively, on the bottom surface 3b of the casing 3. The coil-like pressurization springs 18 are locked between the spring-supported portion 23a of the restraining member 23 and the upper piece 16a of the corresponding pressurization bracket 16, and between the spring-supported portion 24a of the support member 24 and the upper piece 16a of the corresponding pressurization bracket 16.
The restraining member 23 and the support member 24 are constantly biased in a downward direction of
A rocker arm 26 having an L-shaped cross section and pivotable about a support shaft 49 is provided at a lower end portion of each of the guide rails 45 and the guide rails 46 protruding from the bottom surface 3b of the casing 3 to the outside. A torsion coil spring 27 fitted onto the support shaft 49 is provided on a side surface of each rocker arm 26. One end portion of the torsion coil spring 27 is locked at a locking portion 26a provided on the side surface of the rocker arm 26. Another end portion of the torsion coil spring 27 abuts against one inner wall surface of each of the guide rails 45 and the guide rails 46.
The rocker arm 26 is constantly biased about the support shaft 49 in a clockwise direction of
A procedure of canceling the restraining state of the image sensor section 7 and the holding of the original placing glass 6 is described. Under a state in which the packaging material 28 is removed, as illustrated in
In the manner described above, the locking state of the restraining member 23 and the support member 24 is canceled, and the restraining member 23 and the support member 24 are lowered along the guide rails 45 and the guide rails 46, respectively. Through the above-mentioned series of operations, the restraining state of the image sensor section 7 and the holding of the original placing glass 6 are canceled.
A procedure of setting the image sensor section 7 into the restraining state and holding the original placing glass 6 is described.
When setting the image sensor section 7 into the restraining state and holding the original placing glass 6, it is assumed that the image sensor section 7 is moved in advance to the home position thereof.
At the time of unpackaging, the holding state of the image sensor section 7 and the original placing glass 6 can be canceled by only removing the packaging material 28. Therefore, such an operation is easy for the user, and further, packaging can be performed again.
As shown in
Accordingly, the restraining member 23 for restraining the image sensor section 7 at the home position and the support member 24 for supporting the original placing glass 6 are movable to the retracted positions below the trajectory 30, which are situated out of the movement trajectory of the image sensor section 7, and hence the image sensor section 7 is not interrupted at the time of the reading operation.
In this embodiment, the packaging material 28 restricts the rocker arm 26 to indirectly perform the operation of raising and lowering the restraining member 23 for restraining the image sensor section 7 and the support member 24 for supporting the lower surface 6a of the original placing glass 6. Alternatively, the rocker arm 26 may be omitted and a part of the packaging material 28 may directly abut against the restraining member 23 for restraining the image sensor section 7 and the support member 24 for supporting the lower surface 6a of the original placing glass 6, to thereby perform the operation of raising and lowering the restraining member 23 and the support member 24. Other components are similar to those in the above-mentioned embodiments, and similar effects can be obtained. According to this embodiment, at the time of unpackaging, the holding state of the original placing glass 6 and the restraining state of the image sensor section 7 can be canceled by only removing the packaging material. Therefore, the user does not need to carry out the canceling operation separately from the operation of removing the packaging material, and hence the usability is improved.
(Seventh Embodiment)
Next, referring to
In this embodiment, as illustrated in
The guide rails 45 and the guide rails 46 are provided upright in a vertical direction of
The guide rails 45 for guiding the restraining member 23 so that the restraining member 23 can be raised and lowered are arranged in the vicinity of the home position of the image sensor section 7 and in the vicinity of the side surface 3c of the casing 3. The guide rails 46 for guiding the support member 24 so that the support member 24 can be raised and lowered are arranged within the range of the lower surface 6a of the original placing glass 6 at the position in the vicinity of the side surface 3c of the casing 3 and adjacent to the guide rails 45.
Also in this embodiment, the image reading apparatus 2 is transported in a state of being packaged with use of the packaging material 28. After that, in association with the user's operation of placing the packaging material 28 for packaging the image reading apparatus 2 at the time of packaging work, the support member 24 serving as the support unit supports the lower surface 6a of the original placing glass 6. Further, in association with the user's operation of removing the packaging material 28 at the time of unpackaging work, the support of the lower surface 6a of the original placing glass 6 is canceled. The support member 24 supports the lower surface 6a of the original placing glass 6 at a portion other than the portion of the original placing glass 6 which is supported by the casing 3. The support member 24 is movable between the support position for supporting the lower surface 6a of the original placing glass 6 and the retracted position retracted from the lower surface 6a of the original placing glass 6.
In association with the operation of placing and removing the packaging material 28, the restraining member 23 serving as the restraining unit is movable between the restraining position for restraining the image sensor section 7 at the home position and the canceling position for canceling the restraint of the image sensor section 7. The restraining member 23 and the support member 24 are configured separately. Protruding portions 28a of the packaging material 28 are provided at positions corresponding to the respective rocker arms 26. When the packaging material 28 is fixed to a bottom portion of the image reading apparatus 2, the protruding portions 28a of the packaging material 28 enter the respective opening portions 12 and abut against the rocker arms 26. Other components are similar to those in the sixth embodiment. At the time of unpackaging, the holding state of the original placing glass 6 and the restraining state of the image sensor section 7 can be canceled by only removing the packaging material. Therefore, the user does not need to carry out the canceling operation separately from the operation of removing the packaging material, and hence the usability is improved.
(Eighth Embodiment)
Next, referring to
The image sensor section 7 is movable in the arrow “e” direction of
The image sensor section 7 moves by the drive unit (not shown) such as a motor. The position of the left end portion of the original placing glass 6 illustrated in
The support member 41 of this embodiment is formed into a columnar or cylindrical shape having a height corresponding to a separation distance between the bottom surface 3b of the casing 3 and the lower surface 6a of the original placing glass 6. An elastic member 41a, which abuts against the lower surface 6a of the original placing glass 6 and supports the original placing glass 6, is provided at an upper portion of the support member 41. The support member 41 is integrally fixed to the image sensor section 7, and moves in association with the movement of the image sensor section 7.
As illustrated in
When the image reading apparatus 2 is transported, as illustrated in
The broken lines in the sectional view of
Accordingly, as illustrated in
In this embodiment, the support member 41 is integrally fixed to the image sensor section 7. Accordingly, even when the original placing glass 6 is distorted inward of the casing 3, the separation distance “a” between the upper surface 7b of the image sensor section 7 and the lower surface 6a of the original placing glass 6 is larger than the separation distance “b” between the upper surface 41a1 of the elastic member 41a of the support member 41 and the lower surface 6a of the original placing glass 6. Accordingly, the lower surface 6a of the original placing glass 6 abuts against the upper surface 41a1 of the elastic member 41a of the support member 41 and is supported by the upper surface 41a1 before the lower surface 6a of the original placing glass 6 comes into contact with the image sensor section 7. Thus, even when the original placing glass 6 is distorted inward of the casing 3, the original placing glass 6 does not come into contact with the image sensor section 7. A lower surface 41b of the support member 41 functions as an abutment surface of the support member 41 which is supported by the casing 3.
The separation distance “a” between the upper surface 7b of the image sensor section 7 and the lower surface 6a of the original placing glass 6, and the separation distance “b” between the upper surface 41a1 of the elastic member 41a of the support member 41 and the lower surface 6a of the original placing glass 6 are set so as to satisfy a relationship of {a>b>0}. Accordingly, when the image sensor section 7 moves in the arrow “e” direction of
The lower surface 7a of the image sensor section 7 and the lower surface 41b of the support member 41 may be movable at the predetermined separation distance “c” from the bottom surface 3b of the casing 3 instead of being held in contact with the bottom surface 3b of the casing 3 at a distance of 0 mm. At this time, there is a condition that the separation distance “a” between the upper surface 7b of the image sensor section 7 and the lower surface 6a of the original placing glass 6, the separation distance between the upper surface 41a1 of the elastic member 41a of the support member 41 and the lower surface 6a of the original placing glass 6, and the separation distance “c” between the lower surface 41b of the support member 41 and the bottom surface 3b of the casing 3 satisfy a relationship of {a>b+c>0}. In this condition, under a state in which the original placing glass 6 is distorted inward of the casing 3 and the support member 41 supports the lower surface 6a of the original placing glass 6, the lower surface 6a of the original placing glass 6 abuts against the upper surface 41a1 of the elastic member 41a of the support member 41. When the image sensor section 7 is distorted, the support member 41 is lowered and the lower surface 41b of the support member 41 abuts against the bottom surface 3b of the casing 3. When the above-mentioned separation distances and the maximum flexure amount “d” of the original placing glass 6 satisfy a relationship of b+c<d at the position of the support member 41, it is possible to prevent the damage to the original placing glass 6. In the case described in this embodiment, “c” is zero, but “c” may be larger than zero.
The original placing glass 6 is distorted inward of the casing 3, and the lower surface 6a of the original placing glass 6 abuts against the elastic member 41a provided at the upper portion of the support member 41. Accordingly, a shock at the time when the lower surface 6a of the original placing glass 6 comes into contact with the support member 41 can be absorbed by the elasticity of the elastic member 41a, which is more effective in the protection of the original placing glass 6.
When the image reading apparatus 2 receives a shock in a period in which the image reading apparatus 2 is transported, or when the original placing glass 6 receives an external force and is distorted inward of the casing 3 at the time of the image reading operation, the support member 41 supports the lower surface 6a of the original placing glass 6. That is, a force for distorting the original placing glass 6 is transferred to the bottom surface 3b of the casing 3 via the support member 41. Accordingly, it is possible to protect the original placing glass 6 and the image sensor section 7.
The number of the support members 41 and the abutment area of the support member 41 abutting against the lower surface 6a of the original placing glass 6 may be set as appropriate depending on the area and thickness of the original placing glass 6.
When the image reading apparatus 2 is transported (when the image reading apparatus 2 does not perform the reading operation), as illustrated in
Accordingly, the image sensor section 7 automatically performs a sequence of returning to the position of the left end portion of the original placing glass 6 illustrated in
As described above, in this embodiment, the support member 41 is provided so as to move in association with the image sensor section 7. The support member 41 receives the force for distorting the original placing glass 6, and directly transfers the force to the casing 3. Accordingly, there is no need to move the support member 41 so as to operate (move) the image sensor 7, and the configuration for supporting the original placing glass 6 can be simplified and less complex. The support member 41 receives the force for distorting the original placing glass 6, and directly transfers the force to the casing 3. Accordingly, it is possible to reduce a ratio of the force for distorting the original placing glass 6, which is transferred to the image sensor section 7.
(Ninth Embodiment)
Next, referring to
The support member 41 is fixed to a tip end portion of an arm 42 provided so as to be pivotable about a pivot shaft 43, which is provided at a corner portion of the bottom surface 3b of the casing 3. A torsion coil spring 44 is fitted onto the pivot shaft 43. One end of the torsion coil spring 44 abuts against an inner wall surface of the side surface 3a of the casing 3, and another end of the torsion coil spring 44 is locked at the arm 42.
The arm 42 is constantly biased about the pivot shaft 43 in a clockwise direction of
The image sensor section 7 moves from the position in the vicinity of the center portion in a leftward direction of
As illustrated in
In this embodiment, the biasing force is constantly applied to the arm 42 with use of the torsion coil spring 44, but the torsion coil spring 44 may be replaced with a different elastic member such as a coil spring, and the elastic member may be arranged at a different position.
The number of the arms 42 and support members 41 may be increased as appropriate depending on the area and thickness of the original placing glass 6. Further, the method of moving the arm 42 and the support member 41 is not limited to the method in this embodiment, and various other methods may be employed instead. Other components are similar to those in the eighth embodiment. The support member 41 is provided so as to move in association with the image sensor section 7. The support member 41 receives the force for distorting the original placing glass 6, and directly transfers the force to the casing 3. Accordingly, there is no need to move the support member 41 so as to operate (move) the image sensor 7, and the configuration for supporting the original placing glass 6 can be simplified and less complex. The support member 41, which is movable independently of the image sensor section 7 in the normal direction to the lower surface 6a of the original placing glass 6, receives the force for distorting the original placing glass 6, and directly transfers the force to the casing 3. Accordingly, it is possible to reduce the ratio of the force for distorting the original placing glass 6, which is transferred to the image sensor section 7.
(Tenth Embodiment)
Next, referring to
The support member 52 is provided at substantially a center portion of a signal line bundle 51 in its longitudinal direction. The signal line bundle 51 is freely foldable between the bottom surface 3b of the casing 3 and the lower surface 6a of the original placing glass 6. The signal line bundle 51 connects the image sensor section 7 to a control section (not shown) of the image reading apparatus 2 so as to transmit an input/output signal. The support member 52 moves together with the signal line bundle 51, which expands and contracts in association with the movement of the image sensor section 7.
In
As illustrated in
The support member 52 moves between the bottom surface 3b of the casing 3 and the lower surface 6a of the original placing glass 6 in a floating manner under a state in which the support member 52 is held upright, together with the signal line bundle 51, which expands and contracts in association with the movement of the image sensor section 7. The support member 52 is movable at the predetermined separation distance “b” between the support member 52 and the lower surface 6a of the original placing glass 6.
Only when the original placing glass 6 receives a force in the arrow “F” direction of
Therefore, when the force in the arrow direction of
In this embodiment, there has been described an example in which only the single plate-like support member 52 is connected to the signal line bundle 51, but a plurality of support members 52 may be arranged. Other components are similar to those in the first to ninth embodiments, and similar effects can be obtained.
Further, the support member 52 is provided so as to move in association with the image sensor section 7. The support member 52 receives the force for distorting the original placing glass 6, and directly transfers the force to the casing 3. Accordingly, there is no need to move the support member 52 separately so as to operate (move) the image sensor 7, and the configuration for supporting the original placing glass 6 can be simplified and less complex. The support member 52, which is movable independently of the image sensor section 7 in the normal direction to the lower surface 6a of the original placing glass 6, receives the force for distorting the original placing glass 6, and directly transfers the force to the casing 3. Accordingly, it is possible to further suppress the transfer of the force for distorting the original placing glass 6 to the image sensor section 7 as compared to the ninth embodiment.
(Eleventh Embodiment)
Next, referring to
The support member 61 is formed by connecting a plurality of plate-like members into an accordion shape, and is freely foldable (bendable) between the bottom surface 3b of the casing 3 and the lower surface 6a of the original placing glass 6. Each of the plurality of plate-like members is arranged in a state of being held upright in a direction perpendicular to the original placing glass 6. One end portion of the support member 61 is coupled to the image sensor section 7, and another end portion of the support member 61 is coupled to an inner wall surface of a side surface 3d of the casing 3 on the right side of
In this embodiment, when the image reading apparatus 2 receives a shock in a period in which the image reading apparatus 2 is transported, or when the original placing glass 6 receives an external force and is distorted inward of the casing 3 at the time of the image reading operation, the lower surface 6a of the original placing glass 6 abuts against an elastic member 61a provided at an upper portion of the support member 61, and the support member 61 is lowered.
Then, a lower surface of the support member 61 abuts against the bottom surface 3b of the casing 3, and the lower surface 6a of the original placing glass 6 is supported by the support member 61.
Therefore, when the original placing glass 6 receives an external force and is distorted inward of the casing 3, the original placing glass 6 is supported by the support member 61 abutting against the bottom surface 3b of the casing 3, and the original placing glass 6 does not come into contact with the image sensor section 7. The support member 61 of this embodiment is structurally hard to buckle. Thus, the signal line bundle connected to the image sensor section 7 may serve also as the support member 61 that is freely foldable.
One end of the support member 61 formed of the signal line bundle is connected to the image sensor section 7, and another end of the support member 61 is connected to the control section (not shown) provided inside the casing 3. The signal line bundle forming the support member 61 connects the image sensor section 7 to the control section (not shown) of the image reading apparatus 2 so as to transmit the input/output signal.
The support member 61 for supporting the lower surface 6a of the original placing glass 6 only needs to expand and contract in a freely foldable manner in association with the image sensor section 7, and may be arranged so as to draw any trajectory of expansion and contraction such as a fan shape or the like.
As described above, in this embodiment, the support member 61 is provided so as to move in association with the image sensor section 7. The support member 61 receives the force for distorting the original placing glass 6, and directly transfers the force to the casing 3. Accordingly, there is no need to move the support member 61 separately so as to operate (move) the image sensor 7, and the configuration for supporting the original placing glass 6 can be simplified and less complex. The support member 61 receives the force for distorting the original placing glass 6, and directly transfers the force to the casing 3. Accordingly, it is possible to reduce the ratio of the force for distorting the original placing glass 6, which is transferred to the image sensor section 7.
(Twelfth Embodiment)
Next, referring to
The rollers 71a and 71b move in association with the movement of the image sensor section 7 while rolling on the bottom surface 3b of the casing 3. The rollers 71a and 71b are rotary members which are freely rotatable and movable in the moving direction of the image sensor section 7 at the predetermined separation distance “b” between the rollers 71a and 71b and the lower surface 6a of the original placing glass 6. At least a surface layer of each of the rollers 71a and 71b is an elastic member.
The rollers 71a and 71b maintain the predetermined separation distance “b” from the lower surface 6a of the original placing glass 6, and also maintain a constant separation distance from the image sensor section 7. In this state, the rollers 71a and 71b travel in the arrow “e” direction of
The rollers 71a and 71b are capable of traveling in association with the image sensor section 7 while constantly and actively supporting the lower surface 6a of the original placing glass 6. Further, a lower portion of each of the rollers 71a and 71b functions as an abutment surface abutting against the bottom surface 3b of the casing 3, to thereby transfer the force from the original placing glass 6 to the casing 3. Therefore, the lower surface 6a of the original placing glass 6 can be supported more actively. When the image reading apparatus 2 is transported, the position in the vicinity of the line E of
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.
This application claims the benefit of Japanese Patent Applications No. 2011-191221, filed Sep. 2, 2011, and 2012-178122, filed Aug. 10, 2012 which are hereby incorporated by reference herein in their entirety.
Claims
1. An image reading apparatus, comprising:
- a placing member on which an original is to be placed, the placing member including an opposite surface which is opposite to a surface of the placing member that contacts the original;
- a reading unit movable to a position opposed to the original across the placing member and constructed to read an image of the original placed on the placing member by receiving light reflected off the original via the placing member;
- a casing constructed to support an outer peripheral edge portion of the placing member;
- the opposite surface of the placing member includes a portion through which a light to be received by the reading unit passes when the reading unit reads the image of the original; and
- a support member that supports a portion of the opposite surface other than the outer peripheral edge portion of the placing member,
- the support member is further constructed to include an abutment portion abutting against the casing, such that the support member supports the placing member when the abutment portion abuts against the casing.
2. An image reading apparatus according to claim 1, wherein the reading unit has an abutment portion abutting against the casing so that the reading unit is supported by the casing, the abutment portion of the reading unit being different from the abutment portion of the support member.
3. An image reading apparatus according to claim 1, wherein the support member is movable between a support position capable of supporting the placing member and a retracted position retracted from the placing member relative to the support position.
4. An image reading apparatus according to claim 3, wherein
- the reading unit is configured to read the image of the original while moving, and
- when the support member is situated in the support position, the support member restricts movement of the reading unit, and when the support member is situated in the retracted position, the support member avoids restricting the movement of the reading unit.
5. An image reading apparatus according to claim 3, further comprising a restricting member movable between a restricting position for restricting movement of the reading unit and a restriction canceling position for canceling the restriction, the restricting member moving from the restricting position to the restriction canceling position in association with movement of the support member from the support position to the retracted position.
6. An image reading apparatus according to claim 5, wherein the support member and the restricting member are configured to move integrally.
7. An image reading apparatus according to claim 1, wherein the support member is configured to move in a direction parallel to a placing surface of the placing member, on which the original is to be placed, in association with movement of the reading unit.
8. An image reading apparatus according to claim 7, wherein the support member is movable relative to the reading unit in a normal direction to the placing surface.
9. An image reading apparatus according to claim 7, wherein the support member is separated from the placing member under a state in which the placing member is not distorted.
10. An image reading apparatus according to claim 7, wherein the support member is separated from the casing under a state in which the placing member is not distorted.
11. An image reading apparatus according to claim 1, wherein the reading unit is separated from the placing member under a state in which the support member supports the placing member.
12. An image reading apparatus according to claim 7, wherein the support member has a bending portion which is freely bendable, the bending portion having one end coupled to the reading unit, and having another end coupled to the casing, the bending portion being bendable in association with the movement of the reading unit.
13. An image reading apparatus according to claim 12, wherein the bending portion has a signal line bundle connected to the reading unit.
14. An image reading apparatus according to claim 1, wherein the support member is a rotary member which is rotatable and movable in a moving direction of the reading unit.
15. An image reading apparatus according to claim 3, wherein when the support member moves from the retracted position to the support position, a part of the support member which abuts against the placing member moves in a normal direction to a placing surface of the placing member, on which the original is to be placed.
16. An image reading apparatus according to claim 3, wherein when a power of the image reading apparatus is turned ON under a state in which the support member is situated at the support position, the support member moves to the retracted position.
17. An image reading apparatus according to claim 3, wherein the support member moves from the support position to the retracted position in association with an operation in which a protective member placed on a main body of the image reading apparatus and protecting the image reading apparatus is removed from the main body.
18. An image reading apparatus according to claim 1, wherein the support member supports a center portion of the opposite surface of the placing member in a moving direction of the reading unit and a direction orthogonal to the moving direction.
19. An image reading apparatus according to claim 1, wherein a part of the support member which abuts against the placing member is an elastic portion.
20. An image reading apparatus according to claim 1, further comprising an image forming unit for forming an image on a recording material based on information of an image of an original, which is read by the reading unit.
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Type: Grant
Filed: Aug 31, 2012
Date of Patent: Feb 23, 2016
Patent Publication Number: 20130057929
Assignee: CANON KABUSHIKI KAISHA (Tokyo)
Inventor: Takeshi Niimura (Yokohama)
Primary Examiner: Marivelisse Santiago Cordero
Assistant Examiner: Keara Harris
Application Number: 13/600,520
International Classification: H04N 1/10 (20060101);