1. Field of the Invention
The present invention relates to an electrical connector having a shield, in which two connectors (a receptacle connector and a plug connector) are respectively shielded and mounted on a different printed circuit board so as to connect those printed circuit boards to each other.
2. Description of the Related Art
Conventionally, an electrical connector, which connects flat printed circuit boards to each other, is widely used. This type of electrical connector is respectively mounted on a different printed circuit board, and comprised of a receptacle connector and a plug connector, which connect to each other. By connecting the receptacle connector with the plug connector, the printed circuit boards are connected to each other.
The receptacle connector and the plug connector respectively have a connector fitting section on the respective connector housings, and each connector fitting section has a plurality of contact terminals, which are arranged thereon by a specified pitch. Usually, the contact terminals arranged on the connector housing of the receptacle connector have spring-like characteristics. Once the receptacle connector is connected to the plug connector, the contact terminals arranged on the respective connector housings are electrically connected to each other by contacting through pressure by the spring-like characteristics. The above-described receptacle connector and plug connector are connectors having a shield, and a shielding member is attached to the respective connector housings.
As shown in
The shielding member of the plug connector is described in the patent reference 1. As shown in
In addition, in order to attach each of the side shielding plates 100 and 102 to both side surfaces of the connector housing, the side shielding plates 100 and 102 have a inverted U-shaped contact tongue section. By hooking the contact tongue sections to both side surfaces of the connector housing, those side shielding plates are attached to the connector housing. Moreover, in order to contact the contact tongue sections with the connector housing, the side shielding plates 100 and 102 have protrusions (not illustrated). In order to generate elastic force to press the protrusions to the connector housing, the side shielding plates 100 and 102 have a windows (not illustrated) near the protrusions. Patent Reference: Unexamined Japan Patent Application Publication H11-233201
As for the shielding member of the receptacle connector, the side shielding plates 100 are not connected to the end shielding plates 101, and there are unshielded portions between the side shielding plates 100 and the end shielding plates 101. Accordingly, when the receptacle connector is jointed to the plug connector, although the shielding members of the plug connector surround the shielding members of the receptacle connector, there are unshielded portions, and there is a plurality of windows on the side shielding plates 100. Therefore, there are problems such as unstable data transmission or communication error in an electronic device due to noise leakage. Especially, since high-speed signal transmission has been advanced in these years, those problems become more obvious.
Furthermore, in the shielding member of the plug connector, the end shielding plates 103 are provided near the end surfaces of the connector housing. There is some space between the end surface and the connector fitting section, which is not efficiently used and makes difficult to reduce the size of the connector.
Accordingly, it is an object of the invention to provide an electrical connector having a shield, whereby problems such as unstable data transmission or communication error in an electronic device due to noise leakage can be solved and smaller electrical connector having a shield can be provided.
In order to solve the above problems, the electrical connector having a shield according to this invention is comprised of a pair of connectors. One connector has a connector fitting section on the connector housing, a plurality of contact terminals on the connector fitting section, and a shielding member on the connector housing. The other connector has a counter connector fitting section on the connector housing, a plurality of counter contact terminals on the counter connector fitting section, and a counter shielding member on the connector housing. In the above electrical connector having a shield, when those connectors are connected by fitting and jointing the connector fitting section to the counter connector fitting section, the contact terminals and the counter contact terminals, and shielding member and the counter shielding member are respectively contacted and connected to each other. The shielding member is designed to form a shielding structure that surrounds the connector fitting section, and the counter shielding member is designed to have a shielding structure that surrounds the counter connector fitting section.
According to the above-described constitution, a complete shielding structure, in which the shielding member surrounds the connector fitting section, is formed, and another complete shielding structure, in which the counter shielding members surround the counter connector fitting section, is formed. Therefore, when the pair of the connectors are jointed by fitting the connector fitting section to the counter connector fitting section, doubled shielding structure is formed. Therefore, problems such as unstable data transmission or communication error in the electronic device due to noise leakage can be solved.
In addition, in the electrical connector having a shield according to this invention, the shielding member is comprised of side shields that cover the connector fitting section from both sides in the longitudinal direction of the connector, and end shields that covers the connector fitting section from both ends in the lateral direction of the connector. On the other hand, the counter shielding member is comprised of counter side shields that cover the counter connector fitting section from both sides in the longitudinal direction of the connector, and counter end shields that cover the counter connector fitting section from both ends in the lateral direction of the connector.
According to the above-described constitution, the connector fitting section is shielded by the side shields and end shields, while the counter connector fitting section is shielded by the counter side shields and the counter end shields. When the pair of the connectors are jointed by fitting the connector fitting section to the counter fitting section, double shielding structure is formed, and therefore problems such as unstable data transmission or communication error in an electronic device due to noise leakage can be solved.
Furthermore, in the electrical connector having a shield according to this invention, one connector has a side shield attaching section on both side surfaces of the connector housing in the longitudinal direction of the connector, and has an end shield attaching section between both end surfaces and the connector fitting section of the connector housing in the lateral direction of the connector. The side shields are attached to the side shield attaching sections, and the end shields are attached to the end shield attaching sections. On the other hand, the other connector has a counter side shield attaching sections on both side surfaces of the connector housing in the longitudinal direction of the connector, and a counter end shield attaching section in the connector lateral direction between both end surfaces and the counter connector fitting section. The counter side shields are attached to the counter side shield attaching sections, while the counter end shields are attached to the counter end shield attaching sections.
According to the above constitution, one connector has end shield attaching section along the connector lateral direction of the connector between both end surfaces housing and the connector fitting section, and the end shields are attached to the end shield attaching sections. The other connector has counter end shield attaching sections in the lateral direction of the connector between both end surfaces and the counter connector fitting section, and the counter end shields are attached to the counter end shield attaching sections. Therefore, the space can be effectively used, and therefore the size of the electrical connector having a shield can be reduced.
Furthermore, in the above-described electrical connector having a shield according to this invention, the contact between the shielding member and the counter shielding member is made by contacting between the side shields and the counter side shields and between the end shields and the counter end shields. In addition, side shields or counter side shields have protrusions, and the other (counter side shields or side shields) have hole, so that clicking feeling can be generated at the time of the contact by inserting the protrusions in the holes.
According to the above-described constitution, in one or the other connector, when the connector fitting section is fitted and jointed to the counter connector fitting section, shielding members contact to each other. At this time, the protrusions are inserted into the holes, so that the clicking feeling is generated. The worker can feel the clicking feeling, and can confirm the contact of the shielding member with the counter shielding member.
Furthermore, in the electrical connector having a shield according to this invention, each of the end shield attaching sections has an end shield insertion groove along the connector lateral direction, and each of the side shield attaching sections has a side shield groove along the longitudinal direction of the connector. The connector housing has one connecting section, which connects the side shield groove to the side shield insertion groove. End shield has one contact point section, and each side shield has one contact point contact section. By inserting the end shield in the end shield insertion groove, one contact point section is protruded from one connecting section toward the side shield groove. In addition, side shields are attached to the side shield grooves, and one contact point contact section is contacted with one contact point section. Each counter end shield attaching section has a counter end shield insertion groove along the connector lateral direction. The connector housing has the other connecting section, which connects the counter shield insertion groove to the counter shield attaching section. Each counter end shield has the other contact point section, and the counter side shield has the other connecting section. By inserting the counter end shield in the counter end shield insertion groove, the other contact point section is protruded from the other connecting section toward the counter side shield attaching section. By attaching the counter side shield to the counter side shield attaching section, the other contact point section is contacted with the other contact point contact section.
According to the above-described constitution, the shielding member of one connector can be designed as a complete shielding structure that surrounds the connector fitting section. Also, the counter shielding member of the other connector can be designed as a complete shielding structure that surrounds the counter connector fitting section.
In the above-described electrical connector having a shield according to this invention, the connector fitting section and the counter connecter fitting section respectively have a guiding section. Therefore, at the time of fitting the connector fitting section to the counter connector fitting section, the connector fitting section is guided to the counter connector fitting sections so as to fit thereto by contacting the guiding sections to each other.
According to the above-described constitution, when the connector fitting section is fitted into the counter connector fitting section, the guiding section of the connector fitting section contacts with the guiding section of the counter connector fitting section, so that the connector fitting section is guided to the counter connector fitting section so as to fitted thereto, and dislocation of the centers of the connectors is corrected.
In the above-described electrical connector having a shield according to this invention, the counter connector fitting section has a number of terminal attaching grooves, and mold stopper sections that protrude from the base portion of both side wall of the terminal attaching grooves, so as to form a structure to hold each terminal. Each counter contact terminal is comprised of a attaching section, a terminal lead section provided at the end of the attaching section, a securing section that is curved opposite to the terminal lead section, curved connecting section that is curved so as to form generally U-shape and provided at the end of the securing section, and a contact section formed at the end of the curved connecting section. The width L1 of the contact section is set larger than the width L2 of the curved connecting section. The width L3 of the securing section is set smaller than the width L1 of the contact section, but larger than the width L2 of the curved connecting section. By attaching each counter contact terminal to the corresponding terminal attaching section, the securing section is secured being pressed by the mold stopper sections.
According to the above-described constitution, since the width L3 of the securing section is set smaller than the width L1 of the contact section, even if the pitch P between the contact terminals is small, e.g. 0.4 mm, the mold section between the adjacent terminal attaching grooves can be made large, so that generation of cracks of the mold sections can be prevented.
According to the electrical connector having a shield of this invention, the shielding member is designed as a complete shielding structure, which surrounds the outer perimeter of the connector fitting section, and the counter shielding member has a complete shielding structure, which surrounds the outer perimeter of the counter connector fitting section. Therefore, when one connector is fitted to the other connector by fitting and jointing the connector fitting section to the counter connector fitting section, shielding is doubled, so that problems such as unstable data transmission or communication error in an electronic device due to noise leakage can be solved.
Furthermore, according to the electrical connector having a shield of this invention, one connector has end shield attaching sections in the connector lateral direction between the end surfaces of the connector housing and the connector fitting section, and the end shields are attached to the end shield attaching sections. On the other hand, the other connector has counter end shield attaching sections in the connector lateral direction between both end surfaces of the connector housing and the counter connector fitting sections, and the counter end shields are attached to the counter end shield attaching sections. Therefore, space can be effectively used, and the size of the electrical connector having a shield can be reduced.
According to the electrical connector having a shield of this invention, when the connector fitting sections are fitted to the counter connector fitting sections, the guiding sections of the connector fitting section contact with the guiding sections of the counter connector fitting sections, and the connector fitting section is guided to the counter connector fitting sections so as to fit thereto. Accordingly, the dislocation of the centers of the connectors is corrected.
According to the electrical connector having a shield of this invention, since the width L3 of the securing section is set smaller than the width L1 of the contact section, even if the pitch P between the contact terminals is as small as 0.4 mm, for example, the mold sections between adjacent terminal attaching grooves can be made large, and generation of cracks of the mold sections can be prevented.
Embodiments of the invention will now be fully described with reference to the accompanying drawings.
As shown in
More specifically, the connector housing 1 has a convex shape, and is comprised of wall sections 3 and 4 provided along the longitudinal direction of the connector housing 1, and wall sections 6 and 7 provided along the lateral direction of the connector housing 1. In addition, space 5 is formed being surrounded by the wall sections 3, 4, 6 and 7, and a counter connector fitting section 2 is formed by the outer surfaces of the wall sections 3, 4, 6 and 7. Guiding sections 2A are formed at the edges at the outer surface sides of respective wall sections 3, 4, 6 and 7 by beveling.
As shown in
End shield attaching sections 12 are provided on the surface of the connector housing 1 at both ends in the longitudinal direction of the connector being close to the ends of the connector fitting sections 2. As shown in
A side shield attaching section 15 is formed at both side surfaces of the connector housing 1. As shown in
As shown in
As shown in
Each contact terminal 29 is attached to or pressed in the terminal attaching section 9 being inserted from each terminal insertion opening of the connector housing 1. More specifically, each contact terminal 29 is inserted in the terminal attaching section 9 between the dividing sections 8, by pressing therein, so that the terminal lead section 24 protrudes outward from the terminal insertion opening 10, and the contact section 27 faces the center part of the connector fitting section 2.
The shielding member 30 is comprised of end shields 31 and side shields 40. As shown in
Each side shield 40 has a strip-like main shielding section 41. As shown in
As shown in
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As shown in
In the receptacle connector A having the above constitution, a positioning pin (not illustrated) provided on the bottom of the connector housing 1 is inserted in a positioning hole (not illustrated) of a printed circuit board. The terminal lead section 24 of each contact terminal 29 is soldered to a contact point pattern section by reflow soldering with solder cream, contacting the terminal lead section 24 to solder cream applied on the contact point pattern section (not illustrated) of the printed circuit board. In addition, as for a pair of the end shields 31 and a pair of the side shields 40, respective shielding terminals 37A and 47 are contacted to solder cream applied on the shielding pattern section of the printed circuit board and soldered thereto by reflow soldering.
As shown in
More specifically, as shown in
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As shown in
Each end shield 81 is attached to the end shield attaching section 60 of the connector housing 51. More specifically, as shown in
Each side shield 82 is attached to the side shield attaching section 60 of the connector housing 51. More specifically, as shown in
Each contact point section 85 of the end shields 81 contacts with the contact point contacting section 90a on both sides of the main shielding section 90 in the longitudinal direction of the connector. As shown in
In the plug connector B having the above-described constitution, the positioning pin (not illustrated) provided on the bottom of the connector housing 51 is inserted in the positioning hole of the printed circuit board (not illustrated), the terminal lead section 72 of each contact terminal 70 contacts with the solder cream applied on the contact pattern section (not illustrated) of the printed circuit board, and the terminal lead section 72 is soldered to the contact point pattern section of the printed circuit board by reflow soldering. On the other hand, as for the pair of the end shields 81 and the pair of the side shields 82, respective shield terminals 89 and 94 are contacted with solder cream applied on the shield pattern section (not illustrated) of the printed circuit board, and then soldered to the shielding pattern section by reflow soldering.
The connection between the receptacle connector A and the plug connector B, which respectively have the above constitutions, will be described below. By fitting the connector fitting section 2 of the receptacle connector A to the connector fitting section 54 of the plug connector B, the contact section 27 of each contact terminal 29 provided on the connector fitting section 2 of the receptacle connector A is contacted with the contact section 75 of a number of contact terminals 70 provided on the connector fitting section 54 of the plug connector B, and the plug connector B is connected to the receptacle connector A.
In this case, the end shields 31 of the receptacle connector A and the end shields 81 of the plug connector B are connected by inserting the protrusions 37 of the shield contact bars 36 into the holes 88 of the shield contact bars 87 and contacting the shield contact bars 36 and 87 as shown in
When the protrusion 37 of each shield contact bar 36 is inserted in the hole 88 of each shield contact bar 87, and the protrusions 93 of the shield contact bar 92 of each side shield 82 is inserted in the holes 44 of each side shield 40, clicking feeling is generated. With this clicking feeling, it can be confirmed that the shielding member 30 of the receptacle connector A is contacted with the shielding member 80 of the plug connector B.
In addition, when the counter connector fitting section 2 of the receptacle connector A is fitted in the connector fitting section 54 of the plug connector B, the guiding sections 2A of the counter connector fitting section 2 contact with the guiding sections 54A of the connector fitting section 54, and are then guided so as to fit the connector fitting section 54 of the counter connector fitting section 2, so that the dislocation of the centers of the receptacle connector A and the plug connector B are corrected.
According to the above-described embodiment of this invention, the shielding member 30 for the receptacle connector A can be designed as a complete shielding structure that surrounds the connector fitting section 2. In addition, the shielding member 80 for the plug connector B can be designed as a complete shielding structure that surrounds the connector fitting section 54. When the receptacle connector A and the plug connector B are connected to each other by fitting the connector fitting sections 2 and 54 to each other, shielding is doubled, so that problems, such as unstable data transmission or a communication error in an electronic device due to noise leakage, can be solved.
Furthermore, according to the above-described embodiment of this invention, in the receptacle connector A, the end shield attaching section 12 is formed between the both end surfaces 6 and 7 of the connector housing in the lateral direction of the connector and the connector fitting section 2, and the end shield is attached to each end shielding attaching section 12. On the other hand, in the plug connector B, the end shield attaching section 57 is formed between the both ends of the connector housing 51 in the lateral direction of the connector and the connector fitting section 54, and the end shield is attached to each end shield attaching section 57. Therefore, space can be effectively used, and the whole size of the connector can be reduced.
According to the above-described embodiment of this invention, when the receptacle connector A is connected to the plug connector B by fitting the connector fitting sections 2 and 54 to each other, the shielding members 30 and 80 contact with each other. At this time, protrusions 37 and 93 are respectively inserted into the holes 88 and 80, and make clicking feeling. With this clicking feeling, it can be confirmed that the shielding members 30 and 80 are contacted to each other. Moreover, according to the above-described embodiment of this invention, when the connector fitting section 2 of the receptacle connector A is fitted into the connector fitting section 54 of the plug connector B, the guiding sections 2A of the connector fitting section 2 contacts with the guiding sections 54A of the connector fitting section 54, and the connector fitting section 2 is guided to fit into the connector fitting section 54, so that the displacement of centers of the receptacle connector A and the plug connector B is corrected.
According to the above-described embodiment of this invention, a number of terminal attaching grooves 55 are formed on the connector fitting section 54, and mold stopper sections 55A are protruded from base portion of both side walls of the terminal attaching grooves 55, so as to form structures to hold the terminals. As for the contact terminals 70, the width L1 of each contact section 75 is set larger than the width L2 of each curved connecting section 74. The width L3 of the securing section 73 is set smaller than the width L1 of the contact section 75, but larger than the width L2 of the curved connecting section 74. By attaching the contact terminals 70 to the terminal attaching sections 55, each securing section 73 is secured being pressed at the mold stopper section 55A. Since the width L3 of each securing section 73 is set smaller than the width L1 of the contact section 75, even if the pitch P between the contact terminals 70 is as small as 0.4 mm, the mold section M between adjacent terminal attaching grooves 55 can be made large, so that generation of cracks of the mold sections M can be prevented.
According to this invention, the shielding member has a complete shielding structure that surrounds the connector fitting section, and the counter shielding member has a complete shielding structure that surrounds the counter connector fitting section. Therefore, when the connectors are fitted and jointed to each other by fitting and jointing the connector fitting sections to the counter connector fitting sections, shielding structure is doubled. Therefore, problems such as unstable data transmission or communication errors in an electronic device due to noise leakage can be solved. In addition, the connector of this invention is useful as an electrical connector to connect between flat-type printed circuit boards.
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2004-238205 | Aug 2004 | JP | national |
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