The present invention is related to a connecting structure of electronic devices which can connect electronic devices having different pitches between contacts.
Patent Document 1 discloses a connecting structure of electronic devices that assuredly electrically connects the electronic devices 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 the direction where a forward electromotive force is supplied to the diode and to prevent a current from being supplied in the direction where a counter electromotive force is supplied to the diode and similarly protect the LED from the damage.
[Patent Document 1] JP-A-2007-149762
However, in the related connecting structure of the electronic devices, the two kinds of busbars 501 and 503 are necessary in which connecting parts of different dimensions are formed so as to meet the forms and sizes of the electronic devices. Here, the connecting parts correspond to including the press contact blades 515, 515, the press contact blade 517, and the press contact blade 519. Further, a problem arises that only the electronic devices for through holes having the lead parts such as the Zener diode 521 and the resistor 527 can be mounted and electronic devices to be mounted on a surface that are recently increasingly required and inexpensive cannot be connected. In addition thereto, in order to allow a connecting structure to meet the presence or absence of specific electronic devices, a resistor for example, are necessary two kinds of terminals. That is, a terminal required when the resistor is mounted and a terminal required when the resistor is not mounted are necessary.
It is therefore one advantageous aspect of the present invention to provide a connecting structure for electronic devices that can connect electronic devices to be mounted on a surface which have different pitches between contacts by using one kind of terminal and can use one kind of terminal irrespective of the presence or absence of the electronic devices.
According to one advantage of the invention, there is provided a connecting structure for electronic devices, the connecting structure comprising:
a terminal, including:
The connecting structure may comprise a pair of the terminals, and may be configured such that one of the terminal is connected to an anode, the other of the terminal is connected to a cathode, and the connecting portion is separated thereby the pair of the auxiliary contact pieces are series-connected with each other through the second electronic device.
The connecting structure may be configured such that in a state where the terminal is inserted into a housing, the connecting portion is disposed on a surface of the terminal facing in a direction opposite to an inserting direction of the terminal.
The connecting structure may be configured such that the pair of contacts of the second electronic device are provided on a same surface of the second electronic device.
An embodiment of the present invention will be described below by referring to the drawings.
A connecting structure for electronic devices 11 according to the present embodiment has two terminals 13 of the same form shown in
Each of the two terminals 13 includes a first press contact part 19 in one end 17, a second press contact part 23 in the other end 21 and a third press contact part 25 in an intermediate part between the first press contact part 19 and the second press contact part 23. The two terminals 13 are spaced from each other and arranged in parallel. In the first press contact part 19, at least one pair of main contact spring pieces 29 which can respectively come into resilient contact with pairs of contact parts 27 of two electronic devices 11 are arranged and opposed to each other. In the present embodiment, in one terminal 13, one pair of main contact spring pieces 29 are provided. Between the two terminals, the one pair of adjacent main contact spring pieces 29 are connected to one pair of contact parts of a semiconductor light emitting element 31 as a first one of the electronic devices 11. Further, the other pair of main contact spring pieces 29 located between the two terminals are connected to one pair of contact parts of a Zener diode 33 as a second one of the electronic devices 11.
A part of the terminal 13 protrudes to an external part of a housing 15 under a state that the terminal is attached to the housing 15. In the present embodiment, a side to which a part of the terminal 13 protrudes from the housing 15 is referred to as a “rear” and an opposite side thereto is referred to as a “front”. A rear end of the terminal 13 forms the above-described second press contact part 23. In the second press contact part 23, press contact blades 37 are provided that cut and tear a coating of a coated electric wire 35 to come into electric contact with a conductor.
In a front part of the press contact blades 37, the third press contact part 25 is provided. Namely, in the intermediate part between the first press contact part 19 and the second press contact part 23, the third press contact part 25 is provided. The third press contact part 25 can come into press contact with other electronic devices 11, for instance, a resistor 39 shown in
To the front part abutting piece 47 of a back surface side in
In the one terminal 13, one pair of main contact spring pieces 29 are formed in parallel and ends which branch substantially in the shape of Y form the electric contact parts 53. The electric contact parts 53 are formed in triangular shapes having contacts as apex angles. As shown in
Between the upper seat parts 55 and the electric contact parts 53 at the four positions of the rear one side, the semiconductor light emitting element 31 is mounted. Between the electric contact parts 53 at the four positions of the lower one side and the lower seat parts 57, the Zener diode 33 is mounted.
As shown in
In the semiconductor light emitting element 31, as shown in
As shown in
In the connecting structure of the electronic devices 11, the semiconductor light emitting element 31 and the Zener diode 33 are connected in parallel between an anode 59 and a cathode 61. In such a connecting structure of the electronic devices 11, a circuit is supposed to have the resistor 39 provided between the semiconductor element 31 and the Zener diode 33 and the anode 59. In such a case, in the third press contact part 25 of this structure, as shown in
The terminal 13 is obtained by bending a metal plate of a developed form shown in
The resistor 39 is the electronic devices 11 to be mounted on a surface that has the two contact parts 27 on one surface. Thus, the connecting structure of the electronic devices 11 can be compactly formed which can allow the resistor 39 selectively to be mounted or not to be mounted.
Now, an attaching process of the connecting structure of the electronic devices 11 having the above-described structure will be described below.
The above-described connecting structure of the electronic devices 11 can be preferably used in, for instance, the LED unit 63. When the connecting structure of the electronic devices 11 is applied to the LED unit 63, as shown in
In the housing 15, two terminal accommodating chambers 65 are formed. The terminal accommodating chambers 65 have rear ends as rear walls 67. On inner wall surfaces of front parts of the rear walls 67, one pair of holding grooves 69 are respectively formed in the terminal accommodating chambers 65. The terminal 13 inserted into the terminal accommodating chamber 65 holds the rear wall 67 between the rear part abutting piece 41 and the rear part resilient leg 43 to restrain the terminal from slipping out from the housing 15 and complete the attachment of the terminal 13.
When the terminals 13 are attached to the housing 15, the connecting portion 49 of the one terminal 13 is cut. The terminal 13 inserted into the terminal accommodating chamber 65 has the connecting portion 49 located in a front surface 73 in an inserting direction. In other words, the connecting portion 49 is disposed on a surface of the terminal 13 facing in a direction opposite to an inserting direction of the terminal 13. Thus, whether or not the connecting portion 49 is cut in a cut area 71 can be easily recognized by visually recognizing the front surface 73 in the inserting direction from an inserting side of the terminal accommodating chamber 65. Further, as shown in
As shown in
As shown in
As shown in
As shown in
In the electric wire holder 89 inserted into the lens cover 83, an engaging pawl 97 protruding in a side surface is engaged with an engaging hole 95 formed in a side part of the lens cover 83 to regulate the disengagement of the housing 15 and the electric wire holder itself from the lens cover 83. When the housing 15 and the electric wire holder 89 are attached to the lens cover 83, an LED unit 63 shown in
As described above, in the connecting structure of the electronic devices 11, as shown in
Since the two terminals 13 having the one pair of parallel main contact spring pieces 29 which branch substantially in the shapes of Y are spaced from each other and arranged in parallel, the electric contact parts 53 provided at four positions in one side are arranged at eight positions in both sides. Thus, to the electric contact parts 53 of the two terminals 13 adjacent in one side, the semiconductor light emitting element 31 having the small pitch between the contacts can be connected. In the other side, to the electric contact parts 53 of the two terminals 13, the Zener diode 33 having the large pitch between the contacts can be connected by striding over at least one electric contact part 53.
In addition thereto, when the resistor 39 is not connected in series to the one terminal 13, the connecting portion 49 of the one terminal 13 is not cut and used. When the resistor 39 is connected in series to the terminal 13, since the connecting portion 49 of the one terminal 13 is cut as shown in
In the connecting structure of the electronic devices 11 according to the present embodiment, the electronic devices 11 to be mounted on a surface which have the different pitches between the contacts can be connected together by using the one kind of terminal 13. Further, the number of kinds of terminals can be set to the one kind of terminal 13 irrespective of the presence or absence of the electronic devices 11.
According to the connecting structure of the electronic devices, the two terminals having the one pair of main contact spring pieces arranged to be opposed to each other are spaced from each other and arranged in parallel. Between the two terminals, the one pair of contact parts of the first electronic devices are connected to the one pair of adjacent main contact spring pieces. Further, the other pair of main contact spring pieces located between the two terminals are connected to the one pair of contact parts of the second electronic devices. Thus, the electronic devices having different pitches between contacts can be connected together.
In addition thereto, when other electronic devices is not connected in series to the one terminal, the connecting portion of the one terminal is not cut and used. When other electronic devices is connected in series to the terminal, since the connecting portion of the one terminal is cut, the one kind of terminal can meet the presence or absence of attachment of other electronic devices.
According to the connecting structure of the electronic devices, when the connecting part of the one terminal is separated, the one pair of auxiliary contact spring pieces are separated from each other in the third press contact part of the one terminal. Accordingly, the one separated auxiliary contact spring piece is connected to the second press contact part and the other auxiliary contact spring piece is connected to the first press contact part. When the one pair of separated auxiliary contact spring pieces are connected in series through the resistor, the second press contact part is connected in series to the first press contact part through the resistor.
According to the connecting structure of electronic devices, whether or not the connecting portion is cut can be easily recognized by visually recognizing the front surface in the inserting direction from an inserting side of the terminal accommodating chamber.
According to the connecting structure of electronic devices, the connecting structure of the electronic devices can be compactly formed which can allow other electronic devices selectively to be mounted or not to be mounted.
The present application is based on Japanese Patent Application No. 2010-258230 filed on Nov. 18, 2010, the contents of which are incorporated herein by way of reference.
The present invention is extremely useful in providing the connecting structure for the electronic devices in which just one kind of the terminal is necessary for the electronic devices to be mounted on a surface which have different pitches between contacts and irrespective of the presence or absence of the electronic devices.
Number | Date | Country | Kind |
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2010-258230 | Nov 2010 | JP | national |
Number | Date | Country | |
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Parent | PCT/JP2011/077280 | Nov 2011 | US |
Child | 13895092 | US |