This application is based upon and claims the benefit of priority from prior Japanese Patent Application No. 2011-061541, filed Mar. 18, 2011, the entire contents of which are incorporated herein by reference.
Embodiments described herein relate generally to electronic apparatuses.
In some electronic apparatuses, a housing is divided into a lower cover and an upper cover. The lower cover includes a bottom wall and a peripheral wall rising from the periphery of the bottom wall and has a box shape with an open top. The upper cover has a plate shape and forms the upper wall of the housing.
A general architecture that implements the various features of the embodiments will now be described with reference to the drawings. The drawings and the associated descriptions are provided to illustrate the embodiments and not to limit the scope of the invention.
Various embodiments will be described hereinafter with reference to the accompanying drawings.
In general, according to one embodiment, an electronic apparatus comprises a circuit board, a first member, and a second member. The circuit board comprises a connector. The first member comprises a first wall, a second wall, and a third wall. The first wall comprises an operation surface, a first end, and a second end opposite to the first end. The second wall extends from the first end and comprises an area configured to expose the connector. The third wall extends from the second end and faces the second wall. The second member comprises a fourth wall and fifth wall. The fourth wall faces the first wall. The fifth wall extends from an end of the fourth wall toward the first wall. The circuit board is between the first wall and the fourth wall.
Hereinafter, embodiments will be described with reference to the drawings.
As shown in
The lower wall 12 faces a desk surface S when the electronic apparatus 1 is placed on a desk. For example, a plurality of leg portions 14 that comes into contact with the desk surface S is provided on the lower wall 12. The upper wall 11 is opposite to the lower wall 12 with a space therebetween and extends substantially in parallel to the lower wall 12. An input portion 15 (i.e., input receiving portion) is provided on the upper wall 11. An example of the input portion 15 is a keyboard. The input portion 15 is not limited thereto, and it may be a touch panel or other input devices.
The peripheral wall 13 connects the peripheral edge of the lower wall 12 and the peripheral edge of the upper wall 11. One or both of the lower wall 12 and the upper wall 11 may be curved toward the peripheral wall 13 and may be connected in a substantially arc shape to the peripheral wall 13.
As shown in
The second housing 17 is rotatably (openably) connected to the first housing 5 by the hinge portions 4a and 4b. In this way, the second unit 3 can be rotated between a first position where the first unit 2 and the second unit 3 overlap each other and a second position where the first unit 2 and the second unit 3 are opened. At the second position, the input portion 15 of the first unit 2 and the display screen 18a of the second unit 3 are exposed to the outside of the electronic apparatus 1.
Next, the first unit 2 will be described in detail. For convenience of explanation, hereinafter, the “first housing 5” is simply referred to as a “housing 5”.
As shown in
The peripheral wall 13 includes a front wall 21, a rear wall 22, a first side wall 23 (for example, a left wall), and a second side wall 24 (for example, a right wall). The front wall 21 is disposed in the front end 5a of the housing 5 and extends in the lateral direction (left-right direction) of the housing 5. The rear wall 22 is disposed in the rear end 5b of the housing 5 and extends in the lateral direction of the housing 5 so as to be substantially parallel to the front wall 21. Each of the first and second side walls 23 and 24 extends in the depth direction (front-rear direction) of the housing 5. The first side wall 23 connects the left end of the front wall 21 and the left end of the rear wall 22. The second side wall 24 connects the right end of the front wall 21 and the right end of the rear wall 22.
The first circuit board 31 is, for example, a main board and is provided in the left end portion of the housing 5. The first circuit board 31 includes a plurality of electronic components including a heating body 36 (i.e., heat-generating component) and a first connector 37. The heating body 36 is, for example, a CPU. The first connector 37 is, for example, an RGB serial connector.
The second circuit board 32 is provided in the right end portion of the housing 5. The second circuit board 32 includes a plurality of second connectors 38. The connector 38 is, for example, any one of a USB connector, a LAN connector (for example, an RJ45 connector), a voice input connector, and a voice output connector.
The third circuit board 33 is provided in the left end portion of the housing 5. The third circuit board 33 includes a plurality of third connectors 39. The connector 38 is, for example, a USB connector or an external serial ATA (eSATA) connector. The heating body and the connectors mounted on the first to third circuit boards 31, 32, and 33 are not limited to the above.
The plurality of units 34 and 35 include, for example, a hard disk drive 34 (HDD 34) and an optical disk drive 35 (ODD 35). The “units” provided in the housing 5 are not limited to the above, and other components may be provided in the housing 5.
Next, the structure of the housing 5 will be described in detail.
As shown in
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As shown in
The front end 11c and the rear end 11d extend in a direction (for example, a direction substantially perpendicular to) intersecting the left end 11a and the right end 11b. The front end 11c is an example of a “third end” and extends between the front edge of the left end 11a and the front edge of the right end 11b. The rear end 11d is an example of a “fourth end” and is opposite to the front end 11c. The rear end 11d extends between the rear edge of the left end 11a and the rear edge of the right end 11b.
The upper wall 11 has a substantially rectangular shape. The left end 11a and the right end 11b are arranged along the short sides of the upper wall 11. The front end 11c and the rear end 11d are arranged in the longitudinal direction of the upper wall 11. The leading end of each of the left end 11a, the right end 11b, the front end 11c, and the rear end 11d of the upper wall 11 is bent toward the lower wall 12 in order to improve, for example, the appearance of the peripheral edge of the upper wall 11.
As shown in
The first side wall 23 is an example of a “second wall”. The first side wall 23 extends from the left end 11a of the upper wall 11 to a left end 12a of the lower wall 12 and is adjacent (for example, connected) to the left end 12a of the lower wall 12. The first side wall 23 extends in a direction crossing (for example, substantially perpendicular to) the upper wall 11, for example. For example, the first side wall 23 is provided over substantially the entire length of the left end 11a of the upper wall 11.
The first side wall 23 includes a lower end 23a adjacent to the lower wall 12 and a front end 23b that extends between the lower wall 12 and the upper wall 11. The front end 23b extends in the direction crossing the lower end 23a. The lower end 23a is an example of the first end of the first side wall 23. The front end 23b is an example of the second end of the first side wall 23.
The second side wall 24 is an example of a “third wall”. The second side wall 24 extends from the right end 11b of the upper wall 11 to a right end 12b of the lower wall 12 and is adjacent (for example, connected) to the right end 12b of the lower wall 12. For example, the second side wall 24 extends in a direction crossing (for example, substantially perpendicular to) the upper wall 11. For example, the second side wall 24 is provided over substantially the entire length of the right end 11b of the upper wall 11.
The second side wall 24 includes a lower end 24a adjacent to the lower wall 12 and a front end 24b that extends between the lower wall 12 and the upper wall 11. The front end 24b extends in a direction crossing the lower end 24a. The lower end 24a is an example of the first end of the second side wall 24. The front end 24b is an example of the second end of the second side wall 24. The first and second side walls 23 and 24 extend substantially in parallel and face each other.
As shown in
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The third openings 53 are provided in the first side wall 23 so as to correspond to the third connectors 39. The third connector 39 is inserted into the third opening 53 and is exposed from the third opening 53 to the outside of the housing 5. The exhaust holes 54 are provided in, for example, the first side wall 23. The exhaust holes 54 are openings for exhausting heated air in the housing 5 to the outside of the housing 5. The exhaust holes 54 may be provided in the second side wall 24.
As shown in
As shown in
In the case of a rectangular product, the molten metal flows in a direction substantially parallel to the short side of the product such that inflow resistance is reduced. As shown in
In this way, the molten metal is injected from the rear end 11d toward the front end 11c of the upper wall 11 and flows substantially in parallel to the first and second side walls 23 and 24. The overflow 63 is provided substantially on the extension line of a region of the product portion 61 in which the upper wall 11 will be formed. In this way, the molten metal flowing into the region for forming the upper wall 11 can flow into the overflow 63 with low flow resistance.
As shown in
The lower wall 12 includes the left end 12a, the right end 12b, a front end 12c, and a rear end 12d. The left end 12a is an example of a “first end”. The right end 12b is an example of a “second end” and is opposite to the left end 12a. The left end 12a and the right end 12b extend substantially in parallel to each other.
The front end 12c and the rear end 12d extend in a direction crossing (for example, substantially perpendicular to) the left end 12a and the right end 12b. The front end 12c is an example of a “third end” and extends between the front edge of the left end 12a and the front edge of the right end 12b. The rear end 12d is an example of a “fourth end” and is opposite to the front end 12c. The rear end 12d extends between the rear edge of the left end 12a and the rear edge of the right end 12b.
As shown in
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The front wall 21 is an example of a “fifth wall”. As shown in
The front wall 21 is provided in at least a portion of the space between the front end 23b of the first side wall 23 and the front end 24b of the second side wall 24. In this embodiment, the front wall 21 is provided over the entire region between the front end 23b of the first side wall 23 and the front end 24b of the second side wall 24 and covers the gap between the first side wall 23 and the second side wall 24.
As shown in
In the structure shown in
Next, the assembly of the first unit 2 will be described.
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Similarly, the second circuit board 32 is combined with the second side wall 24 from the upper side in the oblique direction and the second connectors 38 are inserted into the second openings 52. After or at the same time as the second connectors 38 are inserted into the second openings 52, the second circuit board 32 is substantially parallel to the upper wall 11 and is fixed to the bosses 44 of the upper wall 11 by, for example, the screws 45.
Similarly, the third circuit board 33 is combined with the first side wall 23 from the upper side in the oblique direction and the third connectors 39 are inserted into the third openings 53. After or at the same time as the third connectors 39 are inserted into the third openings 53, the third circuit board 33 is substantially parallel to the upper wall 11 and is fixed to the bosses 44 of the upper wall 11 by the screws 45. The units 34 and 35 are combined with the upper wall 11 from the upper side and are fixed to the bosses 44 of the upper wall 11 by, for example, the screws 45.
Finally, the lower cover 42 is attached to the upper cover 41. Specifically, the lower cover 42 turned upside down is combined with the upper cover 41 from the upper side and is fixed to the upper cover 41 by, for example, screws. In this way, the assembly of main parts of the first unit 2 is completed.
According to the above-mentioned structure, it is possible to improve assemblability.
For comparison,
In the assembly of the electronic apparatus 101, the first to third circuit boards 31, 32, and 33 and the units 34 and 35 are sequentially attached to the inner surface of the upper cover 102 turned upside down. The first to third circuit boards 31, 32, and 33 and the units 34 and 35 are mounted and fixed to the inner surface of the upper wall 11 from the upper side.
After the first to third circuit boards 31, 32, and 33 and the units 34 and 35 are fixed to the upper wall 11, the lower cover 103 is attached to the upper cover 102. In the electronic apparatus 101, since the openings 51, 52, and 53 for connectors are provided in the lower cover 42, it is not possible to simply attach the lower cover 103 to the upper cover 102 from the upper side. Therefore, as represented by a black arrow in
In the electronic apparatus 101, the second connector 38 is provided in the right end portion of the housing 5 and the opening 52 for the connector 38 is provided in the second side wall 24 which is formed integrally with the lower cover 42. As such, the connectors 37, 38, and 39 are separately provided in the left and right portions of the housing 5 and the openings 51, 52, and 53 are separately provided in the left and right side walls 23 and 24 of the lower cover 103. In this case, it is necessary to insert the connector 38 into the opening 52 of the second side wall 24 after the connectors 37 and 39 are inserted into the openings 51 and 53 of the first side wall 23. This operation is very difficult. It is necessary to form the housing with separate components corresponding to the left and right connectors, if required.
As shown in
Therefore, the openings 51, 52, and 53 for connectors or the exhaust holes 54 need to be disposed below the parting line P. For example, when a tall connector, such as an RGB connector or a RJ45 connector, is provided, the connector protrudes from the lower surface of the product, which is not preferable in terms of the design. In addition, the size of the exhaust hole 54 is limited by the parting line P and it is difficult to provide a large exhaust hole 54.
In contrast, in the electronic apparatus 1 according to this embodiment, the upper cover 41 includes the upper wall 11 and the side wall 23 that extends from the end of the upper wall 11 and is provided with the opening 51 through which the connector 37 is exposed. According to this structure, since the opening 51 of the side wall 23 is provided in the upper cover 41, it is possible to simply insert the connector 37 into the opening 51 by turning the upper cover 41 upside down. Therefore, it is possible to improve the assemblability of the electronic apparatus 1.
In addition, according to this embodiment, as shown in
According to this embodiment, as shown in
In this embodiment, the first and second side walls 23 and 24 are provided integrally with the upper wall 11. According to this structure, the first and second side walls 23 and 24 function as beams and the high strength (rigidity) of the upper cover 41 is ensured. Therefore, even when the lower cover 42 is made of a material, such as plastic with a rigidity less than that of metal, it is possible to ensure a sufficient strength of the housing 5. When the lower cover 42 can be made of plastic, it is possible to reduce the costs of the electronic apparatus 1.
The electronic apparatus 1 according to this embodiment includes the upper cover 41 and the lower cover 42. The upper cover 41 includes the upper wall 11, the first side wall 23 that extends from one end of the upper wall 11 and is provided with a region in which the connector 37 is exposed, and the second side wall 24 that extends from the other end of the upper wall 11 and is opposite to the first side wall 23. The lower cover 42 includes the lower wall 12 opposite to the upper wall 11 and the front wall 21 that extends from the end of the lower wall 12 toward the upper wall 11 and is disposed in at least a portion of the space between the first side wall 23 and the second side wall 24. According to this structure, since the front wall 21 rising from the lower wall 12 functions as a beam for reinforcing the lower wall 12, the strength of the lower cover 42 is improved.
In this embodiment, the connectors 37, 38, and 39 are mounted on the circuit boards 31, 32, and 33 smaller than the lower wall 12. In the assembly of the first unit 2, the circuit boards 31, 32, and 33 are obliquely inclined and the connectors 37, 38, and 39 are inserted into the openings 51, 52, and 53 provided in the side walls 23 and 24. Since the circuit boards 31, 32, and 33 are relatively small, it is possible to simply incline and attach the circuit boards 31, 32, 33. Therefore, it is possible to improve the assemblability of the electronic apparatus 1.
In this embodiment, the upper cover 41 is opened between the first side wall 23 and the second side wall 24 in the direction along the upper wall 11. Then, the front wall 21 of the lower cover 42 covers the space between the first side wall 23 and the second side wall 24. According to this structure, it is possible to simplify the structure of the upper cover 41 and thus improve the manufacturability of the housing 5.
In this embodiment, the upper wall 11 includes the bosses 44 that protrude from the inner surface of the upper wall 11 to the lower wall 12. The circuit board 31 is attached to the bosses 44. According to this structure, it is possible to easily attach the circuit board 31 to the upper wall 11.
In this embodiment, the second opening 52 is provided in the second side wall 24. The second connector 38 mounted on the second circuit board 32 is inserted into the second opening 52. In this structure, since the first and second connectors 37 and 38 are mounted on different members, it is possible to separately perform an operation of inserting the first connector 37 into the opening 51 of the first side wall 23 and an operation of inserting the second connector 38 into the opening 52 of the second side wall 24.
Therefore, it is possible to smoothly insert the first and second connectors 37 and 38 into the first and second openings 51 and 53, respectively. As a result, it is possible to improve the assemblability of the electronic apparatus 1.
In this embodiment, the upper cover 41 is manufactured by die casting. Molten metal is injected from the rear end 11d toward the front end 11c of the upper wall 11 and flows substantially in parallel to the first and second side walls 23 and 24. According to this structure, the first and second side walls 23 and 24 rising from the upper wall 11 are less likely to hinder the flow of the molten metal and castability is improved.
In this embodiment, no rising wall is provided in the front end 11c of the upper wall 11 and the overflow 63 is provided on the extension line of a region of the product portion 61 in which the upper wall 11 will be formed. Therefore, for example, a flow obstacle is less likely to occur during casting and the flow of molten metal is not curved. As a result, the quality of casting is improved.
Next, an electronic apparatus 1 according to a second embodiment will be described with reference to
As shown in
An opening 91 through which a display screen 18a of the display device 18 is exposed is provided in the front wall 11. A touch panel that receives an input from the user is provided on the display device 18. The display screen 18a is an example of an “input portion” (i.e., input receiving portion). A front surface 11u of the front wall 11 from which the display screen 18a is exposed is an example of an “operation surface”. The peripheral wall 13 includes an upper wall 21, a lower wall 22, a first side wall 23, and a second side wall 24. A first cover 41 includes a front wall 11, a first side wall 23, and a second side wall 24. A second cover 42 includes a rear wall 12, an upper wall 21, and a lower wall 22. The front wall 11, the first side wall 23, the second side wall 24, the rear wall 12, and the upper wall 21 (or the lower wall 22) are examples of a “first wall”, a “second wall”, a “third wall”, a “fourth wall”, and a “fifth wall”, respectively.
According to this structure, similarly to the first embodiment, it is possible to improve the assemblability of the electronic apparatus 1.
Next, a television 95 according to a third embodiment will be described with reference to
As shown in
According to this structure, similarly to the first embodiment, it is possible to improve the assemblability of the television 95 as an electronic apparatus.
The embodiments are not limited to the above-described embodiments, and the components of the above-described embodiments may be changed without departing from the scope and spirit of the invention. In addition, a plurality of components according to the above-described embodiments may be appropriately combined with each other to form various structures. For example, some of the components according to the above-described embodiments may be removed. Components according to different embodiments may be appropriately combined with each other.
While certain embodiments have been described, these embodiments have been presented by way of example only, and are not intended to limit the scope of the inventions. Indeed, the novel embodiments described herein may be embodied in a variety of other forms; furthermore, various omissions, substitutions and changes in the form of the embodiments described herein may be made without departing from the spirit of the inventions. The accompanying claims and their equivalents are intended to cover such forms or modifications as would fall within the scope and spirit of the inventions.
Number | Date | Country | Kind |
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2011-061541 | Mar 2011 | JP | national |