1. Field of the Invention
The present invention relates to an electric connector, and in particular to a stacked electric connector.
2. Description of Related Art
In the developed electronic industry, a wide variety of electronic apparatus are ubiquitous in life. In order to operate the electronic apparatus by inputting commands, or transmit data between the electronic apparatus, a plurality of connectors are disposed on main board of most electronic apparatus.
As the periphery products of the electronic apparatus become diverse, the demand of the electric connector grows. Therefore, the electric connectors applied, in a single electronic apparatus are demanded with increased number. However, too many electric connectors will occupy disposing space of the main board of the electronic apparatus, and thus the volume of the electronic apparatus is difficult to reduce.
In order to solve the problem mentioned above, a stacked electric connector is invented. The staked electric connector includes a plurality of connecting ports staked in a vertical direction and has area of only one connector. This is, the staked electric connector provides the space of vertical direction at the expense of the space of the horizontal direction. For the main board of the electronic apparatus, the stacked electric connector includes multiple connectors and only occupies the area of one connector, therefore, considerable disposing space can be saved to dispose other component or the area of the main board can be reduced.
However, when the amount of the connector of the stacked electric connected is increased, or the amount of the terminals included by the connecting ports is increased, the excessive outputting terminals are includes by the stacked electric connector. The stacked electric connector is disposed on the main board by the area of only one electric connector with limited space, therefore when excessive outputting terminals are arranged in the stacked electric connector, soldering holes disposed on the main board will become close, and this causes difficulty in manufacture and slows the speed of manufacture. Moreover, the amount of the soldering holes disposed on the area of only one electric connector increases the complexity of the circuit patterns.
It is an object to provide a stacked electric connector having built-in hub integrated circuit (IC), the stacked electric connector has multiple connecting ports stacked in a housing and controlled by the hub IC, and the amount of the pins of stacked electric connector connected to external is equal to the pins of only one connecting port.
Accordingly, the stacked electric connector having built-in hub IC according to the present invention is connected to a main board of an external electronic device and includes an insulating body, a plurality of electrically conductive terminals, a circuit board, a hub integrated circuit (IC), and a plurality of outputting terminals. A plurality of tongues portions extend forwards from a front-end surface of the insulating body, and a plurality of terminal slots are disposed within the tongue portions. The electrically conductive terminals are respectively disposed within the terminal slots of the tongue portions. One end of each electrically conductive terminal extends out of the insulating body and electrically connected to the circuit board. The electrically conductive terminals and the tongue portions together construct a plurality of connecting ports having the same interface. The hub IC is disposed on the circuit board and electrically connected to the electrically conductive terminals via the circuit board. The outputting terminals are disposed on the circuit board and electrically connected to the hub IC via the circuit board. An amount of the outputting terminals is equal to an amount of the electrically conductive terminals of each connecting port.
In generally, the stacked electric connector includes a plurality of connecting ports stacked thereon, and the amount of the outputting terminals is equal to the amount of the electrically conductive terminals of the connecting ports. Such that, the more the connecting ports are stacked, the more the outputting terminals are included. The effect of the stacked electric connector having built-in hub IC according to the present invention is that the amount of the outputting terminals is equal to the amount of the electrically conductive terminals of each connecting port, and no matter the stacked electric connector having bub IC includes how many stacked electric connecting ports. Therefore, the circuit patterns of the main board using the stacked electric connector having built-in hub IC according to the present invention can be effectively simplified.
The features of the invention believed to be novel are set forth with particularity in the appended claims. The invention itself, however, may be best understood by reference to the following detailed description of the invention, which describes an exemplary embodiment of the invention, taken in conjunction with the accompanying drawings, in which:
A preferred embodiment of the present invention will be described with reference to the drawings.
Reference is made to
A plurality of tongue portions 111 extend forwards from a front-end surface of the insulating body 11. The tongue portions 111 are perpendicular to the insulating body 11. A plurality of terminal slots 112 are respectively disposed within the tongue portions 111 for accommodating the electrically conductive terminals 12 therein. The electrically conductive terminals 12 are respectively disposed within the terminal slots 112, thereby a plurality of connecting ports are constructed by the electrically conductive terminals 12 and the tongue portions 111. In particularly, the connecting ports have (but are not limited to have) the same interface. As shown in
In this embodiment, the circuit board 13 is disposed on another end surface of the insulating body 11, the end surface is far away from the tongue portions 111. The electrically conductive terminals 12 are respectively extending out of the insulating body 11 and electrically connected to the circuit board 13 disposed on another end surface of the insulating body 11. The hub IC 14 is disposed on the circuit board 13 and electrically connected to the electrically conductive terminals 12 via the circuit board 13. The outputting terminals 15 are disposed on the circuit board 13 and electrically connected to the hub IC 14 via the circuit board 13.
In generally, the amount of terminals disposed on an inputting end of a stacked electric connector must be equal to the amount of terminals disposed on an outputting end. For example, the amount of outputting terminals of a stacked electric connector having two USB 2.0 connecting ports is eight, and another amount of outputting terminals of a stacked electric connector having two external serial advanced technology attachment (e-SATA) connecting ports is fourteen. However, the stacked electric connector having built-in hub IC 1 according to the present invention can reduce the amount of the outputting terminals 15 via the hub IC 14, as describe below.
The hub IC 14 is simultaneously and electrically connected to the connecting ports for controlling and integrating signals and electronic power of the connecting ports, and then transmitting the controlled and integrated signals outsides via a single passageway. Therefore, in a supported amount of the hub IC 14, no matter the amount of the connecting ports is connected to the inputting end, the amount of the outputting terminals is only equal to the electrically conductive terminals of each connecting port for outputting. As shown in
The stacked electric connector having built-in hub IC 1 further includes a metallic shell 16 for covering the insulating body 11, the electrically conductive terminals 12, the circuit board 13, the hub IC 14, and the outputting terminals 15. Therefore, the stacked electric connector having built-in hub IC 1 has metal-shielding effect to prevent signal interference when transmitting signals.
Reference is made to
Reference is made to
The stacked electric connector having built-in hub IC 3 integrates and controls the electrically conductive terminals 32 via the hub IC 34, thus the manufacturing cost can be reduced and the circuit patterns of the main board 2 can be simplified because the stacked electric connector having built-in hub IC 3 only uses four outputting terminals 35 to electrically connect the soldering holes 21 of the main board 2.
As shown in the
Reference is made to
The circuit board 42 is horizontally disposed within the stacked electric connector having built-in hub IC 4, and is perpendicular to the insulating body 41. In particularly, the insulating body 41 is perpendicular to an end surface of the circuit board 43, the end surface is far away from the tongue portions 411. One end of each electrically conductive terminal 42 extends out of the insulating body 41 and is bent downwards for electrically connected to the circuit board 43. The electrically conductive terminals 42 are also electrically connected to the hub IC 44 via the circuit board 43. The advantage of the stacked electric connector having built-in hub IC 4 according to the third embodiment of the present invention is that the contacts of the electrically conductive terminal 42 and the circuit board 43 are concentrated on the front end of the circuit board 43, such that the rear end of the circuit board 43 has large space for facilitating the designing of circuit patterns.
Reference is made to
The connecting ports of the stacked electric connector having built-in hub IC 5 are USB 3.0 connecting pots, and each connecting port includes nine electrically conductive terminals 52. In the
To sum up, the stacked electric connector having built-in hub IC of the present invention effectively reduces the amount of outputting terminals, such that the amount of the soldering holes 21 disposed on the main board 2 can be reduced and the circuit patterns placed on the main board 2 can be simplified. The manufacturing speed of the main board 2 is effectively improved and the manufacturing cost is effectively reduced.
Although the present invention has been described with reference to the foregoing preferred embodiment, it will be understood that the invention is not limited to the details thereof. Various equivalent variations and modifications can still occur to those skilled in this art in view of the teachings of the present invention. Thus, all such variations and equivalent modifications are also embraced within the scope of the invention as defined in the appended claims.
Number | Date | Country | Kind |
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101209228 U | May 2012 | TW | national |
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Number | Date | Country | |
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20130309909 A1 | Nov 2013 | US |