Circuit assembly and electric junction box
10117322 ยท 2018-10-30
Assignee
- AutoNetworks Technologies, Ltd. (Yokkaichi, Mie, JP)
- Sumitomo Wiring Systems, Ltd. (Yokkaichi, Mie, JP)
- Sumitomo Electric Industries, Ltd. (Osaka, JP)
Inventors
Cpc classification
B60R16/02
PERFORMING OPERATIONS; TRANSPORTING
H05K2201/10272
ELECTRICITY
H02G3/16
ELECTRICITY
H05K2201/066
ELECTRICITY
H05K1/0209
ELECTRICITY
H05K1/0204
ELECTRICITY
H05K7/20854
ELECTRICITY
International classification
B60R16/02
PERFORMING OPERATIONS; TRANSPORTING
H05K1/18
ELECTRICITY
Abstract
Provided is a circuit assembly including a heatsink, an insulating sheet that is placed on the heatsink, and a circuit board that is placed on the heatsink via the insulating sheet. The circuit board is fixed to the heatsink by screwing, and a heat conductive member is arranged between insulating sheet and the circuit board.
Claims
1. A circuit assembly comprising: a heatsink; an insulating sheet disposed on the heatsink; and a circuit board spaced apart from the heat sink, wherein the insulating sheet is disposed between the circuit board and the heat sink, wherein the circuit board is fixed to the heatsink by a fixing member, and a plurality of heat conductive members formed of viscous material and is disposed on the insulating sheet so as to be pressed between the insulating sheet and the circuit board and form a continuous planar surface, each of the plurality of heat conductive members being spaced a part from each other so as to form a gap.
2. The circuit assembly according to claim 1, wherein a plurality of electronic components are mounted on a surface of the circuit board that faces away from a side on which the heatsink is arranged, and wherein each of the plurality of the heat conductive members is provided in a region that corresponds to a region of the circuit board on which a corresponding one of the plurality the electronic components is mounted.
3. The circuit assembly according to claim 2, wherein the region of the circuit board on which the corresponding one of the plurality of electronic components is mounted is provided between one and another of lead terminals of the plurality of electronic components.
4. An electric junction box in which the circuit assembly according to claim 3 is accommodated in a case.
5. An electric junction box in which the circuit assembly according to claim 2 is accommodated in a case.
6. An electric junction box in which the circuit assembly according to claim 1 is accommodated in a case.
7. The circuit assembly according to claim 1, wherein the plurality of heat conductive members is an adhesive.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(9) An embodiment will be described with reference to
(10) An electric junction box 10 of the present embodiment is provided with a circuit assembly 11 including a circuit board 12 and a heatsink 25, and a synthetic resin case 40 that accommodates the circuit assembly 11 (see
(11) As shown in
(12) As shown in
(13) The electronic components 20 such as relays are arranged on the front surface of the circuit board 12. As shown in
(14) The heatsink 25 is arranged on the lower surface side (rear surface side) of the busbars 16 of the circuit board 12 (see
(15) An insulating sheet 30 for insulating the heatsink 25 from the circuit board 12 (busbars 16) is overlapped with the upper surface of the heatsink 25. The insulating sheet 30 has a size that is somewhat smaller than the upper surface of the heatsink 25, and has such adhesion that it is fixable to the heatsink 25. Furthermore, the insulating sheet 30 has, at positions thereof that correspond to the heatsink fixing holes 26, sheet fixing holes 31 that penetrate the insulating sheet 30.
(16) Furthermore, heat conductive members 35 (see
(17) The following will describe an example of processes for manufacturing an electric junction box 10 according to the present embodiment. First, solder is applied by screen printing to predetermined positions on the upper surface of the circuit board 12, which has a front surface on which the conductive circuit is formed by printed wiring and a rear surface on which the busbars 16 are arranged in a predetermined pattern. Then, the electronic components 20 are placed at the predetermined positions, and reflow soldering is carried out. Accordingly, a state is achieved in which the electronic components 20 are mounted on the front surface side of the circuit board 12 (see
(18) Then, the insulating sheet 30 is placed on the upper surface of the heatsink 25, and the insulating sheet 30 and the heatsink 25 are entirely pressed against each other so as to be in intimate contact with and fixed to each other (see
(19) Then, the bolts 38 are passed through the substrate fixing holes 15, the sheet fixing holes 31, and the heatsink fixing holes 26 that are in communication with each other, and are fastened with nuts 39 (an example of the fixing member). Accordingly, the circuit assembly 11 in which the circuit board 12 and the heatsink 25 are fixed to each other is achieved (see
(20) Lastly, the circuit assembly 11 is accommodated in the case 40, and the electric junction box 10 is obtained.
(21) The following will describe the functions and effects of the circuit assembly 11 and the electric junction box 10 according to the present embodiment. According to the circuit assembly 11 and the electric junction box 10 of the present embodiment, insulation between the heatsink 25 and the circuit board 12 (busbars 16) is ensured by the insulating sheet 30. Accordingly, it is possible to manufacture the circuit assembly 11 and the electric junction box 10 inexpensively as compared to the conventional configuration in which an insulating layer is made of a thermosetting resin and that incurs a manufacturing cost.
(22) Furthermore, the heatsink 25 and the circuit board 12 have a configuration in which they are fixed to each other by fastening the bolts 38 with the nuts 39. At this time, a gap may be created between the heatsink 25 and the circuit board 12, which are both plate-shaped, and in such a case, there is a risk that heat conductivity will decrease. However, according to the present embodiment, since the heat conductive members 35 are arranged between the heatsink 25 and the circuit board 12, and are in intimate contact with both the heatsink 25 and the circuit board 12, heat generated by the circuit board 12 is immediately transferred to the heatsink 25 by the heat conductive members 35, and is discharged.
(23) Moreover, as described above, since the heatsink 25 and the circuit board 12 are fixed to each other by fastening the bolts 38 with the nuts 39, the heat conductive members 35 do not necessarily have adhesion, and it is easy to select a material.
(24) Furthermore, since a configuration is realized in which the heat conductive members 35 are provided only in regions that correspond to the regions of the circuit board 12 on which the electronic components 20 are mounted, it is possible to immediately transfer heat generated by the electronic components 20 to the heatsink 25 while reducing the amount of use of the heat conductive members 35, achieving a high heat discharge effect.
(25) In other words, it is possible to achieve the circuit assembly 11 and the electric junction box 10 that have a low manufacturing cost, and are superior in heat discharge performance.
OTHER EMBODIMENTS
(26) The technique disclosed in the present description is not limited to the embodiment explained in the description with reference to the drawing, and encompasses various modifications as will be described below, for example.
(27) (1) The above-described embodiment has a configuration in which the heat conductive members 35 are provided only at the positions that correspond to the electronic components 20, but as shown in
(28) (2) In the above-described embodiment, the heat conductive members 35 are an adhesive that has adhesion, but another member (such as a gel-like sheet) may be used as long as it easily deforms and comes into intimate contact with the circuit board 12 (busbars 16) and the insulating sheet 30 so as to fill up a gap therebetween. Thus, the heat conductive members 35 are not limited to those of the above-described embodiment.
(29) (3) The positions of the bolts 38 for fixing the circuit board 12 to the heatsink 25 are not limited to those in the above-described embodiment, and the bolts 38 may be provided at other positions according to the rigidity of the circuit board 12. Furthermore, the number of bolts 38 is also not limited to that of the above-described embodiment.