Next, an embodiment of the present invention is explained.
The AC adaptor 20 includes the switching regulator circuit assembly 30, assembled in advance, having a substantially cube-shaped body, and housed within a case 21. In the drawings, X1-X2 direction denotes the width direction, Y1-Y2 direction denotes the depth direction, and the Z1-Z2 direction denotes the height direction.
The switching regulator circuit assembly 30 includes an insulator member 60, a first circuit board assembly 40, and a second circuit board assembly 50. The assemblies are to be disposed opposite to each other with the insulator member 60 disposed in between.
The case 21 is made up of two half cases 22 and 23 joined together. On the inner side of the half case 22, engaging parts 22a, 22b are formed for fixing the position of the switching regulator circuit assembly 30. On the inner side of the half case 23, engaging parts 23a through 23d, a hole 23f and a protruding part 23e are formed. The protruding part 23e has the hole formed for fixing a position of the switching regulator circuit assembly 30 in the case 21.
As shown in
At a substantially middle of the first circuit board 41, a slit 45 extending along the Y1-Y2 direction for shielding is formed. On the first circuit board 41, notch parts 46 and 47 are formed for engaging with foot parts formed on the insulator member 60.
As shown in
At a substantially middle of the second circuit board 51, a hole 55 is formed to be engaged with a protruding part of the insulator member 60. Also, at a corner of Z1 and Y2 of the second circuit board 51, an arc-shaped edge part 56 is formed to be engaged with an arc-shaped rib part of the insulator member 60.
Electronic parts mounted on each of the first circuit board assembly 40 and the second circuit board assembly 50 are arranged so that, when the electronic parts on each assembly are facing each other, the short (in height) electronic parts on the first circuit board assembly 40 and the tall electronic parts on the second circuit board assembly 50 are facing each other; in the same way, the tall electronic parts on the first circuit board assembly 40 and the short electronic parts on the second circuit board assembly 50 are facing each other.
The size of the first circuit board 41 and the second circuit board 51 is substantially half that of a circuit board used when a switching regulator circuit assembly includes only one circuit board assembly.
The insulator member 60, made of a material having electrical insulating properties and synthetic resin molding parts having a substantially cube-shaped body, includes a top panel part 61 on the X1 side, side panel parts 62,63 one on each side, a rear panel part 64, a partitioning panel part 65 for partitioning between the side panel parts 62 and 63, and an extended panel part 66 on the front (Y2 side), and has openings on front (Y2 side) and bottom (X2 side).
The side panel parts 62, the partitioning panel part 65, and the top panel part 61 form an enclosing part 67 for enclosing the USB connector 12. Similarly, the side panel part 63, the partitioning panel part 65, and the top panel part 61 form an enclosing part 68 for collectively enclosing the cutting capacitor 11, the coil 10, and the cutting capacitor 9. The enclosing parts 67 and 68 are adjacent to each other. The height of the enclosing part 68 on the rear panel side is lowered by one step due to a top panel part 69. On the upper side of the top panel part 69, another enclosing part 70 is formed for enclosing the line filter 1. Namely, the insulator member 60 includes an enclosing part on each of the X2 and X1 sides.
The extended panel part 66 extends from an end of the enclosing part 67 in the Z2 direction.
At an end of the side panel part 63 in X2 direction and at an end of the extended panel part 66 in X2 direction, foot parts 71 and 72, respectively, are formed.
A protruding part 73 is formed at substantially the middle of the top panel 61, and an arc-shaped rib part 74 is formed at a corner of Z1 and Y2 of the top panel 61.
Next, a method of assembling the switching regulator circuit assembly 30 and the like are explained with reference to
As shown in
As shown in
A first step: The insulator member 60 is put over the first circuit board assembly 40.
As shown in
A second step: The second circuit board assembly 50 is put over the first circuit board assembly.
As shown in
As shown in
The line filter 1 is housed within the enclosing part 70. The forming capacitor 4 and the transformer member 7 are disposed opposite to each other and the cutting capacitor 2 and the forming IC 5 are disposed opposite to each other.
By the above steps, the assembly of the switching regulator circuit board assembly 30 shown in
In addition, the insulator member 60 enables securing sufficient creepage distances between the USB connector 12 and the cutting capacitor 11, the coil 10, and the cutting capacitor 9; between the USB connector 12, the cutting capacitor 11, the coil 10 and the cutting capacitor 9 and the line filter 1; and between the USB connector 12 and the cutting capacitor 8, the forming capacitor 4, the transformer member 7, the cutting capacitor 2, and the forming IC 5. The extending panel part 66 is extended toward the transformer member 7 and encloses the cutting capacitor 8.
Next, a method of assembling the AC adaptor 20 is explained.
The assembly of the AC adaptor 20 is completed when the switching regulator circuit assembly 30 is housed into the half case 22 and the half case 23 is combined with the half case 22.
As shown in
In addition, the insulator member 60 may have a heat dissipation capability by selecting an appropriate material for the insulation member 60. In such a case, the switching regulator circuit board assembly 30 becomes compact and has better heat dissipation capability as well.
In addition, by changing the shape of the insulator member 60, a switching regulator circuit assembly may have a first, a second, and a third circuit board assemblies each engaged with an insulator member provided in between.
In addition, an insulator member may be made up by combining block parts.
Though an exemplary embodiment is described in detail above, the present invention is not limited to the specific embodiment described above, and variations and modification may be made without departing from the spirit and scope of the present invention.
The present invention is based on Japanese priority application No. 2006-236026 filed Aug. 31, 2006, the entire contents of which are hereby incorporated herein by reference.
Number | Date | Country | Kind |
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2006-236026 | Aug 2006 | JP | national |