The present invention is related to a connecting structure for electronic device which is connected by an insertion into a housing.
Patent Document1 discloses a connecting structure for electronic device that assuredly electrically connects the electronic device to obtain a high reliability. As shown in
In a Zener diode 521, one lead part 523 is electrically connected to the one busbar 501 and the other lead part 525 is electrically connected to the other busbar 503 respectively, so that the Zener diode 521 is connected in parallel with the one pair of busbars 501 and 503 in the downstream side of a resistor 527. Thus, the Zener diode functions to protect the LED from a damage due to a sudden large voltage applied to a circuit by a static electricity in a direction where a forward electromotive force is supplied to the diode and to prevent a current from being supplied in a direction where a counter electromotive force is supplied to the diode and similarly protect the LED from the damage.
[Patent Document1] JP-A-2007-149762
However, in the conventional connecting structure of the electronic device, since the Zener diode 521 is pushed in to the press contact blades 517 and 519 and the resistor 527 is pushed in to the press contact blades 515 and 515 to be electrically connected, a partial inserted state of these electronic device is hardly detected. Further, since the above-described electronic device are held only by pushing in the lead parts to the press contact blades 517 and 519, and the press contact blades 515 and 515, a reliability of an electric contact is hardly sufficiently ensured.
It is therefore one advantageous aspect of the present invention to provide a connecting structure that can detect a partial inserted state of electronic device and prevent the electronic device from slipping out.
According to one advantage of the invention, there is provided a connecting structure for an electronic device, the connecting structure comprising:
a cover;
a housing, configured to be inserted into the cover; and
a terminal, accommodated in the housing, and configured to hold an electronic device,
wherein the housing allows the electronic device to be inserted from an outside of the housing into the housing in a state where the terminal is accommodated in the housing,
wherein the cover is configured to come in contact with the electronic device in a state where a part of the electronic device is inserted to the terminal,
wherein the cover is configured to allow the housing to be inserted into the cover in a state where whole part of the electronic device is inserted into the housing to be held at a normal position by the terminal, and
wherein the cover has an abutting face preventing the electronic device from slipping out from the housing in a state where the housing is inserted into the cover.
The connecting structure may be configured such that a direction in which the electronic device is inserted to the housing is orthogonal to a direction in which the housing is inserted to the cover.
The connecting structure may be configured such that the cover is formed with an opening through which the housing is inserted to the cover, and an inner edge part of the opening has at least one of a tapered face and a rounded face.
An embodiment of the present invention will be described below by referring to the drawings.
A connecting structure for electronic device according to the present embodiment is preferably used in, for example, an LED unit 13 shown in
The two terminals 23 form a first press contact part 27 in one end 25, a second press contact part 31 in the other end 29 and a third press contact part 33 in an intermediate part between the first press contact part 27 and the second press contact part 31, which are spaced from each other and arranged in parallel. In the first press contact part 27, at least one pair of main contact spring pieces 37 which can respectively come into resilient contact with pairs of contact parts of two electronic device 11 are arranged and opposed to each other. In the present embodiment, in one terminal 23, one pair of main contact spring pieces 37 are provided. Between the two terminals, the one pair of adjacent main contact spring pieces 37 are connected to one pair of contact parts of a semiconductor light emitting element 39 as the first electronic device 11. Further, the other pair of main contact spring pieces 37 located between the two terminals are connected to one pair of contact parts of a Zener diode 41 as the second electronic device 11.
A part of the terminal 23 protrudes to an external part of the housing 21 under a state that the terminal is attached to the housing 21. A rear end of the terminal 23 forms the above-described second press contact part 31. In the second press contact part 31, press contact blades 45 are provided that cut and tear a coating of a coated electric wire 43 (see
In a front part of the press contact blades 45, the third press contact part 33 is provided. Namely, in the intermediate part between the first press contact part 27 and the second press contact part 31, the third press contact part 33 is provided. The third press contact part 33 can come into press contact with other electronic device 11, for instance, a resistor 47 shown in FIG. 4. In the third press contact part 33, a rear part abutting piece 49, a rear part resilient leg 51, an auxiliary contact spring piece 53 and a front part abutting piece 55 are connected forward from the press contact blades 45.
To the front part abutting piece 55 of a back surface side in
In the one terminal 23, one pair of main contact spring pieces 37 are formed in parallel and ends which branch substantially in the shape of Y form the electric contact parts 61. The electric contact parts 61 are formed in triangular shapes having contacts as apex angles. As shown in
Between the rear parts seat parts 63 and the electric contact parts 61 at the four positions of the one side of the rear part, the semiconductor light emitting element 39 is mounted. Between the electric contact parts 61 at the four positions of the one side of the front part and the front parts seat parts 65, the Zener diode 41 is mounted. As shown in
In the semiconductor light emitting element 39, as shown in
In
In the connecting structure of the electronic device 11, the semiconductor light emitting element 39 and the Zener diode 41 are connected in parallel between an anode 67 and a cathode 69. In such a connecting structure of the electronic device 11, a circuit is supposed to have the resistor 47 provided between the semiconductor element 39 and the Zener diode 41 and the anode 67. In such a case, in the third press contact part 33 of this structure, as shown in
Into the housing 21, the resistor 47 can be inserted from an outside of the housing 21 under a state that the terminals 23 are accommodated therein. On a bottom plate 71 of the housing 21, a bottom plate opening part 73 is formed for attaching the resistor 47. On the bottom plate opening part 73, a pair of holding grooves are provided. Namely, the terminals 23 are inserted into the housing 21 from an upper side (an upper side of
An inserting direction of the resistor 47 into the housing 21 intersects at right angles to a fitting direction of the housing 21 to the lens cover 15. Thus, in the lens cover 15, the resistor 47 abuts on the housing inserting opening 17 under a state that a part of the resistor 47, for example a half of the resistor 47, is inserted into the terminals 23. On the other hand, under a state that whole part of the resistor 47 is inserted into the housing to be held in a normal position by the terminal 23, the lens cover 15 permits the housing 21 to be fitted. Further, the lens cover 15 has an abutting surface 77 opposed to the bottom plate opening part 73 that prevents the resistor 47 from slipping out.
Further, in an inner side edge part 79 of the housing inserting opening 17 of the lens cover 15, a tapered or rounded guide surface 81 is provided that is formed by removing an edge. The guide surface 81 serves to abut on an inserting rear part 83 of the resistor 47 slightly protruding from the bottom plate opening part 73.
Now, an attaching process of the connecting structure of the electronic device 11 having the above-described structure will be described below.
In order to assemble the LED unit 13, as shown in
As shown in
As shown in
As shown in
Here, as shown in
On the other hand, as shown in
Further, under a holding state that the inserting rear part 83 of the resistor 47 slightly protrudes, when the housing 21 is inserted into the lens cover 15, the inserting rear part 83 of the resistor 47 abuts on the guide surface 81 (see
The housing 21 inserted into the lens cover 15 has the press contact blades 45 protruding rearward in the lens cover 15.
Into the lens cover 15 to which the housing 21 is attached, the electric wire holder 19 is inserted from the housing inserting opening 17 as shown in
In the electric wire holder 19 inserted into the lens cover 15, an engaging pawl 101 protruding in a side surface is engaged with an engaging hole 99 formed in a side part of the lens cover 15 to regulate the disengagement of the housing 21 and the electric wire holder itself from the lens cover 15. When the housing 21 and the electric wire holder 19 are attached to the lens cover 15, the assembly of the LED unit 13 shown in
As described above, in the connecting structure of the electronic device 11, under a state that the resistor 47 is half inserted into the housing, when the housing 21 is to be fitted to the lens cover 15, the inserting rear part 83 of the resistor 47 protruding from the housing 21 abuts on the housing inserting opening 17 of the lens cover 15. Thus, the housing 21 cannot be fitted to the cover to detect that the resistor 47 is not in a normally held state. On the other hand, when the resistor 47 is held in the housing 21 under a normally held state, the housing 21 is fitted to the lens cover 15. Further, after the housing 21 is fitted to the lens cover 15, the inserting rear part 83 of the resistor 47 abuts on the abutting surface 77 of the lens cover 15 to prevent the resistor 47 from slipping out from the housing 21.
Accordingly, in the connecting structure of the electronic device 11 according to the present embodiment, the partial inserted state of the resistor 47 can be detected and the resistor 47 can be prevented from slipping out.
According to the connecting structure according to the present invention, under the state that the electronic device is half inserted into the housing, when the housing is to be fitted to the cover, an inserting rear part of the electronic device protruding from the housing abuts on a housing inserting opening of the cover. Thus, the housing cannot be fitted to the cover to detect that the electronic device is not in a normally held state. On the other hand, when the electronic device is held in the housing under a normally held state, the housing is fitted to the cover. Further, after the housing is fitted to the cover, the inserting rear part of the electronic device abuts on an abutting surface of the cover to prevent the electronic device from slipping out from the housing.
According to the connecting structure according to the present invention, since the fitting direction of the housing to the cover intersects at right angles to the inserting direction of the electronic device to the housing, when the housing inserting opening of the cover abuts on the electronic device which is half inserted and protrudes from the housing, the electronic device is not moved forward or backward in the inserting direction, so that an insertion of the housing can be assuredly prevented. In other words, a partial inserted state can be detected.
According to the connecting structure according to the present invention, under a holding state that the inserting rear part of the electronic device slightly protrudes, when the housing is inserted into the cover, the inserting rear part of the electronic device abuts on the guide surface provided in the inner side edge part of the housing inserting opening. Then, when the housing is more inserted, the electronic device is pushed in to a normally held state by a reaction force from the guide surface. Thus, the electronic device can be assuredly attached under a normally held state to ensure an electric connection.
The present application is based on Japanese Patent Application No. 2010-258231 filed on Nov. 18, 2010, the contents of which are incorporated herein for reference.
The present invention is extremely useful in providing a connecting structure in which the partial inserted state of the electronic device can be detected and the electronic device can be prevented from slipping out.
Number | Date | Country | Kind |
---|---|---|---|
2010-258231 | Nov 2010 | JP | national |
Number | Name | Date | Kind |
---|---|---|---|
4679885 | Nestor et al. | Jul 1987 | A |
6109973 | Gronowicz et al. | Aug 2000 | A |
20030133302 | Kamiya et al. | Jul 2003 | A1 |
20070127216 | Kamiya et al. | Jun 2007 | A1 |
20080014783 | Shimirak | Jan 2008 | A1 |
20090305561 | Yao et al. | Dec 2009 | A1 |
Number | Date | Country |
---|---|---|
63-56578 | Apr 1988 | JP |
63-150483 | Oct 1988 | JP |
2003-258314 | Sep 2003 | JP |
2007-149762 | Jun 2007 | JP |
2009-021616 | Jan 2009 | JP |
Entry |
---|
International Search Report and Written Opinion of the International Search Report for PCT/JP2011/077279 dated Feb. 23, 2012. |
Office Action from Korean Patent App. No. 10-2013-7012547 (May 27, 2014) with English translation thereof. |
Office Action from Japanese Patent App. No. 2010-258231 (Nov. 13, 2014) with English translation thereof. |
Office Action from Chinese Patent App. No. 201180055735.9 (Jan. 30, 2015) with English translation thereof. |
Office Action from Korean Patent App. No. 10-2013-7012547(Apr. 16, 2015) with English translation thereof. |
Japanese Office Action for the related Japanese Patent Application No. 2010-258231 dated Sep. 3, 2014. |
Korean Office Action for the related Korean Patent Application No. 10-2013-7012547 dated Nov. 28, 2014. |
Japanese Office Action, Notification of Reasons for Refusal for the related Japanese Patent Application No. 2010-258231 dated Aug. 11, 2015. |
Office Action from Chinese Patent App. No. 201180055735.9 (Sep. 14, 2015) with English language translation thereof. |
Number | Date | Country | |
---|---|---|---|
20130252476 A1 | Sep 2013 | US |
Number | Date | Country | |
---|---|---|---|
Parent | PCT/JP2011/077279 | Nov 2011 | US |
Child | 13895120 | US |