Waterproof component-suppressing electronic control device
10238012 ยท 2019-03-19
Assignee
Inventors
- Yoshinori Wakana
- Masaru KAMOSHIDA (Hitachinaka, JP)
- Takeshi IGARASHI (Hitachinaka, JP)
- Kiyotaka Kanno (Hitachinaka, JP)
Cpc classification
H05K5/0039
ELECTRICITY
H01R13/5219
ELECTRICITY
H01R12/721
ELECTRICITY
International classification
H05K7/20
ELECTRICITY
H01R13/52
ELECTRICITY
H01R12/72
ELECTRICITY
Abstract
An electronic control device is provided with a resin base, a substrate, and a resin cover. The resin base has at least one opening part. The resin cover formed in a cylindrical shape with a bottom is fixed on an inner surface of the resin base forming the opening part. The resin cover has a slit. The substrate has a card edge connector to be inserted into the slit. An electronic component is mounted on the substrate.
Claims
1. An electronic control device, comprising: a base having at least one opening part; a first cover disposed on an inner surface of the base forming a first opening part and having a first slit; a substrate having a first connection pattern to be connected to outside, the first connection pattern being inserted into the first slit; and a sealing member disposed between the base and the first cover, wherein the first cover comprises a cylindrical portion and a planar bottom, the cylindrical portion sliding along the inner surface of the base, and a space being formed between an inner surface of the cylindrical portion of the first cover and the first connection pattern of the substrate, and wherein a stepped part contacts the sealing member which is provided on an external female connector, the stepped part being formed by a distal end of the cylindrical portion of the first cover and the inner surface of the base.
2. The electronic control device according to claim 1, wherein a distance D1 between a bottom part of the first cover and an edge of the first cover is shorter than a distance D2 between the bottom part of the first cover and an edge of the base.
3. The electronic control device according to claim 1, wherein the base is formed in a cylindrical shape having a bottom.
4. The electronic control device according to claim 1, further comprising a second cover fixed on an inner surface of the base forming a second opening part and having a second slit, wherein the substrate has a second connection pattern inserted into the second slit.
5. The electronic control device according to claim 4, wherein the first opening part and the second opening part are arranged to face each other.
6. The electronic control device according to claim 5, further comprising a third cover fixed on an inner surface of the base forming a third opening part and having a third slit, wherein the substrate has a third connection pattern inserted into the third slit.
7. The electronic control device according to claim 6, wherein the first opening part and the third opening part are arranged to be perpendicular to each other.
8. The electronic control device according to claim 6, further comprising a fourth cover fixed on an inner surface of the base forming a fourth opening part and having a fourth slit, wherein the substrate has a fourth connection pattern inserted into the fourth slit.
9. The electronic control device according to claim 8, wherein the third opening part and the fourth opening part are arranged to face each other.
10. The electronic control device according to claim 1, wherein the base further comprises a partition wall having a second slit, the partition wall being disposed on an inner surface of the base forming a second opening part, and the substrate has a second connection pattern inserted into the second slit.
11. The electronic control device according to claim 1, wherein the first cover is fixed on the inner surface of the base forming the first opening part by a snap fit.
12. The electronic control device according to claim 1, further comprising a heat radiation member having a projection, wherein the base has an opening part for the heat radiation member which communicates with an electronic component, and the projection of the heat radiation member is fitted with the opening part for the heat radiation member such that the projection is located adjacent to the electronic component.
13. The electronic control device according to claim 12, wherein the heat radiation member has a fixing part which fixes the heat radiation member onto a vehicle body.
14. The electronic control device according to claim 1, comprising a clip which fixes the base to a vehicle body.
15. The electronic control device according to claim 1, wherein the first connection pattern is served as a card edge connector.
16. An electronic control device, comprising: a base having at least one opening part; a first cover disposed on an inner surface of the base forming a first opening part and having a first slit; a substrate having a first connection pattern to be connected to outside, the first connection pattern being inserted into the first slit; and a sealing member disposed between the base and the first cover, the sealing member provided on an external female connector, wherein a stepped part with which the sealing member is contacted is formed by an edge of the first cover and the inner surface of the base forming the first opening part, and a distance D1 between a bottom part of the first cover and the edge of the first cover is shorter than a distance D2 between the bottom part of the first cover and an edge of the base.
17. An electronic control device, comprising: a base having at least one opening part; a first cover disposed on an inner surface of the base forming a first opening part and having a first slit; a substrate having a first connection pattern to be connected to outside, the first connection pattern being inserted into the first slit; a sealing member disposed between the base and the first cover; a second cover fixed on an inner surface of the base forming a second opening part and having a second slit, wherein the substrate has a second connection pattern inserted into the second slit; and a third cover fixed on an inner surface of the base forming a third opening part and having a third slit, wherein the substrate has a third connection pattern inserted into the third slit.
18. The electronic control device according to claim 17, wherein the first opening part and the third opening part are arranged to be perpendicular to each other.
19. The electronic control device according to claim 17, wherein the first opening part and the second opening part are arranged to face each other, and the first opening part and the third opening part are arranged to be perpendicular to each other.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DESCRIPTION OF EMBODIMENTS
(19) Hereinafter, an electronic control device according to first through seventh embodiments of the present invention is described with reference to drawings. The electronic control device is, for example, formed to control a device (fuel injection device, automatic transmission mechanism, or the like) mounted on a vehicle. Here, in each figure, the same reference numerals are assigned to the same parts.
First Embodiment
(20) First, a configuration of an electronic control device 100A is described with reference to
(21) The electronic control device 100A is provided with a resin base 11 (housing), a substrate 12, and a resin cover 13.
(22) The resin base 11 formed in a cylindrical shape with a bottom has an opening part OP1. An electronic component 14 is mounted on the substrate 12. The substrate 12 has a card edge connector 12a electrically connected to an external female connector. The card edge connector 12a is inserted into a slit 13a formed on the resin cover 13. The resin cover 13 is fixed on an inner surface of the resin base 11 forming the opening part OP1.
(23) Next, a configuration of the resin base 11 is described with reference to
(24) The resin base 11 is provided with a guide 11a (groove) on the inner surface forming the opening part OP1. The substrate 12 is slid along the guide 11a and inserted.
(25) Next, a configuration of the substrate 12 is described with reference to
(26) The substrate 12 has the card edge connector 12a protruding in a longitudinal direction (y-axis ()) of the substrate 12. The card edge connector 12a is electrically connected to the electronic component 14 via wiring mounted on the substrate 12.
(27) Next, a configuration of the resin cover 13 is described with reference to
(28) The resin cover 13 formed in a cylindrical shape with a bottom has the slit 13a at a bottom part thereof. The card edge connector 12a shown in
(29) Next, the configuration of the electronic control device 100A is described with reference to
(30) After the substrate 12 is slid and inserted into the resin base 11, the resin cover 13 is disposed to cover the opening part OP of the resin base 11 and fixed by an adhesive or the like. At this time, the card edge connector 12a mounted on the substrate 12 is inserted into the slit 13a formed on the resin cover 13. Thus, the card edge connector 12a is protruded from the slit 13a.
(31) In this way, the resin base 11 forming the opening part OP1, the resin cover 13 and the card edge connector 12a are served as a male connector. That is, the opening part OP1 is served as a connector frontage.
(32) Next, a function of the electronic control device 100A is described with reference to
(33) As shown in
(34) A stepped part is formed by an edge 13b of the resin cover 13 and the inner surface of the resin base 11 forming the opening part. A sealing member 15 (for example, an elastic member such as a rubber seal) provided on the external female connector 17 is contacted with the stepped part. A distance D1 between the bottom part of the resin cover 13 and the edge 13b of the resin cover 13 is shorter than a distance D2 between the bottom part of the resin cover 13 and an edge 11b of the resin base 11.
(35) The sealing member 15 waterproofs the card edge connector 12a. Further, the sealing member 15 prevents liquid such as water from entering the electronic control device 100A through a region where the slit 13a formed on the resin cover 13 and the substrate 12 are contacted with each other. Further, the sealing member 15 prevents water from entering the electronic control device 100A through a region where the resin cover 13 and the resin base 11 are contacted with each other.
(36) Further, covering the opening part OP1 by the resin cover 13 before the external female connector 17 is fitted makes it possible to prevent dust from entering from the outside.
(37) As described above, according to the present embodiment, it makes possible to ensure a waterproof property while suppressing a number of components. Further, less number of the components facilitates its assembling. Accordingly, the manufacturing cost can be reduced.
Second Embodiment
(38) Next, a configuration of an electronic control device 100B is described with reference to
(39) The electronic control device 100A is provided with a resin base 11, a substrate 12, and resin covers 13 (13.sub.1 and 13.sub.2).
(40) The resin base 11 has opening parts OP1 and OP2. In
(41) The substrate 12 has card edge connectors 12a (12a.sub.1 and 12a.sub.2) electrically connected to an external female connector. The card edge connector 12a.sub.1 is inserted into a slit 13a, formed on the resin cover 13.sub.1. The card edge connector 12a.sub.2 is inserted in to a slit 13a.sub.2 formed on the resin cover 13.sub.2.
(42) The resin cover 13.sub.1 is fixed on an inner surface of the resin base 11 forming the opening part OP1. The resin cover 13.sub.2 is fixed on an inner surface of the resin base 11 forming the opening part OP2. Here, the resin cover 13, and the resin cover 13.sub.2 are arranged to face each other.
(43) Next, a function of the electronic control device 100B is described with reference to
(44) As shown in
(45) A sealing member 15.sub.1 waterproofs the card edge connector 12a.sub.1. Further, the sealing member 15.sub.1 prevents liquid such as water from entering the electronic control device 100B through a region where the slit 13a.sub.1 formed on the resin cover 13.sub.1 and the substrate 12 are contacted with each other. Further, the sealing member 15.sub.1 prevents liquid such as water from entering the electronic control device 100B through a region where the resin cover 13.sub.1 and the resin base 11 are contacted with each other.
(46) A sealing member 15.sub.2 waterproofs the card edge connector 12a.sub.2. Further, the sealing member 15.sub.2 prevents liquid such as water from entering the electronic control device 100B through a region where the slit 13a.sub.2 formed on the resin cover 13.sub.2 and the substrate 12 are contacted with each other. Further, the sealing member 15.sub.2 prevents liquid such as water from entering the electronic control device 100B through a region where the resin cover 13.sub.2 and the resin base 11 are contacted with each other.
(47) As described above, according to the present embodiment, it makes possible to ensure a waterproof property while suppressing a number of components. Further, less number of the components facilitates its assembling. Accordingly, the manufacturing cost can be reduced.
Third Embodiment
(48) Next, a configuration of an electronic control device 100C is described with reference to
(49) The electronic control device 100C is provided with a resin base 11, a substrate 12, and four resin covers 13 (13.sub.1, 13.sub.2, . . . ).
(50) The resin base 11 has four opening parts OP (OP1, OP2, OP3, and OP4). In
(51) The substrate 12 (not shown) has four card edge connectors 12a formed in four directions, respectively, and each of the card edge connector is connected to an external connector.
(52) After the substrate 12 is slid and inserted into the resin base 11, the four resin covers 13 (13.sub.1, 13.sub.2, 13.sub.3, and 13.sub.4) are disposed and fixed to cover the four opening parts OP (OP1, OP2, OP3, and OP4), respectively.
(53) Here, the opening parts OP (OP1, OP2, OP3, and OP4) are formed at edge surfaces of the resin base 11 perpendicular to the substrate 12 on which an electronic component 14 is mounted. Four external female connectors 17 (not shown) are fitted with four opening parts OP (OP1, OP2, OP3, and OP4) served as connector frontages, respectively, by moving in respective directions shown by arrows 16.
(54) As described above, according to the present embodiment, it makes possible to ensure a waterproof property while suppressing a number of components. Further, less number of the components facilitates its assembling. Accordingly, the manufacturing cost can be reduced. Furthermore, a plurality of external female connectors 17 can be connected.
Fourth Embodiment
(55) Next, a configuration of an electronic control device 1000 is described with reference to
(56) The electronic control device 100D is provided with a resin base 11, a substrate 12, a resin cover 13, and a partition wall 31.
(57) A card edge connector 12a.sub.2 is inserted into a slit 31a formed on the partition wall 31. The partition wall 31 is integrally formed with an inner surface of the resin base 11 forming an opening part OP2.
(58) Next, a function of the electronic control device 100D is described with reference to
(59) A sealing member 27 (for example, an elastic member such as a rubber seal) disposed on the external female connector 26 waterproofs the card edge connector 12a.sub.2. Further, the sealing member 27 prevents liquid from entering the electronic control device 100D through a region where the slit 31a formed on the partition wall 31 and the substrate 12 are contacted with each other.
(60) As described above, according to the present embodiment, it makes possible to ensure a waterproof property while suppressing a number of components. Further, less number of the components facilitates its assembling. Accordingly, the manufacturing cost can be reduced.
Fifth Embodiment
(61) Next, a configuration of an electronic control device 100E is described with reference to
(62) The electronic control device 100E is provided with a resin base 11, a substrate 12, a resin cover 13, and a partition wall 31.
(63) The resin cover 13 has a snap fit 18 at a bottom part thereof. The snap fit 18 is engaged with a projection 11c formed on an inner surface of the resin base 11. With such a configuration, the resin cover 13 is fixed on the inner surface of the resin base 11 forming an opening part OP1. The variation in dimensions of the substrate 12 can be absorbed by the snap fit 18.
(64) Here, in
(65) As described above, according to the present embodiment, it makes possible to ensure a waterproof property while suppressing a number of components. Further, less number of the components facilitates its assembling. Accordingly, the manufacturing cost can be reduced. Furthermore, the variation in dimensions of the substrate 12 can be absorbed.
Variation of Fifth Embodiment
(66) Next, a configuration of a variation of the electronic control device 100E is described with reference to
(67) In
Sixth Embodiment
(68) Next, a configuration of an electronic control device 100F is described with reference to
(69) The electronic control device 100F is provided with a resin base 11, a substrate 12, a resin cover 13, a partition wall 31, and a heat radiation member 19.
(70) The heat radiation member 19 (for example, a metal member) has a projection 19a. The projection 19a is, for example, formed by drawing the center region of a metal plate. The resin base 11 has an opening part for the heat radiation member at a lower part (z-axis () side) of the resin base 11. The opening part is communicated with an electronic component 14. The projection 19a of the heat radiation member 19 is fitted with the opening part for the heat radiation member to be adjacent to the electronic component 14.
(71) The heat radiation member 19 and the electronic component 14 are fixed to each other by a heat radiating filler 20.sub.1 (heat radiating adhesive). With such a configuration, heat generated by the electronic component 14 is transferred to the heat radiation member 19 via the filler 20.sub.1 and radiated.
(72) Further, the heat radiation member 19 and the resin base 11 are fixed to each other by a non-heat radiating filler 20.sub.2. With such a configuration, an inner space of the electronic control device 100F is waterproofed. Here, the heat radiating filler 20.sub.1 may be used instead of the non-heat radiating filler 20.sub.2.
(73) As described above, according to the present embodiment, it makes possible to ensure a waterproof property while suppressing a number of components. Further, less number of the components facilitates its assembling. Accordingly, the manufacturing cost can be reduced. Furthermore, it makes possible to radiate heat of the electronic component while suppressing a number of components.
Variation of Sixth Embodiment
(74) Next, a configuration of a variation of the electronic control device 100F is described with reference to
(75) A heat radiation member 19 has a hole H2 into which a screw 22 is inserted. The screw 22 is inserted into the hole H2 and screwed with a female screw (screw hole) disposed on a vehicle body. The screw 22 and the hole H2 are served as a fixing part which fixes the heat radiation member 19 on the vehicle body. With such a configuration, the electronic control device 100F is fixed on the vehicle body.
(76) As described above, according to the present embodiment, it makes possible to ensure a waterproof property while suppressing a number of components. Further, less number of the components facilitates its assembling. Accordingly, the manufacturing cost can be reduced. Furthermore, it makes possible to radiate heat of the electronic component while suppressing a number of components.
Seventh Embodiment
(77) Next, a configuration of an electronic control device 100G is described with reference to
(78) The electronic control device 100G is provided with a resin base 11, a substrate 12, a resin cover 13, and a clip 23.
(79) The resin base 11 is held such that the resin base 11 is interposed by a pair of clips 23 fixed on a vehicle body. With such a configuration, fixation of the electronic control device 100F onto the vehicle body can be facilitated.
(80) As described above, according to the present embodiment, it makes possible to ensure a waterproof property while suppressing a number of components. Further, less number of the components facilitates its assembling. Accordingly, the manufacturing cost can be reduced.
(81) The present invention is not limited to the embodiments described above and may include various types of variations. The embodiments described above are merely described for easy understanding of the present invention, and are not necessarily limited to what includes all of the described configurations. Further, a part of a configuration of a certain embodiment can be substituted by a configuration of another embodiment, and a configuration of another embodiment can be added to a configuration of a certain embodiment. Addition, deletion, or substitution of other configurations can be carried out for parts of configurations of the respective embodiments.
(82) For example, in the electronic control device according to the first to seventh embodiments of the present invention, a connector mounted on the substrate 12 is formed as the card edge connector 12a, however a box-type connector 24 shown in
REFERENCE SIGNS LIST
(83) 11 . . . resin base (housing) 12 . . . substrate 12a . . . card edge connector 13 . . . resin cover 13a . . . slit 14 . . . electronic component 15, 27 . . . sealing member (packing) 16 . . . female connector fitting direction 17, 26 . . . female connector 18 . . . snap fit 19 . . . metal member 20 . . . filler 21 . . . substrate inserting direction 22 . . . screw 23 . . . clip 24 . . . connector 31 . . . partition wall 31a . . . slit 100A, 100B, 100C, 100D, 100E, 100F, 100G . . . electronic control device.