1. Field of the Invention
The invention relates to a connector structure and a computer system with grounding function, and more particularly, to a connector structure and a computer system capable of grounding a docking station with a host device.
2. Description of the Prior Art
For expanding functions of a notebook computer in the market, a conventional docking station for docking with the notebook computer is available to provide various interfaces to connect to peripheral devices. The notebook computer can apply the peripheral devices as a desktop computer when connecting to the docking station; and the notebook computer can be a portable device when separating from the docking station. However, electrostatic discharging protection of a computer device is an important issue in use of some areas with dry weather. For example, when a notebook computer is used in a dry surrounding, static electricity is easily transmitted from hands of a user to electronic components disposed inside the notebook computer. As the notebook computer does not have electrostatic protecting function, the electronic components may be damaged by the static electricity. In the prior art, some electrostatic discharging components are disposed on the notebook computer and its docking station, and some holes are formed on the covering components to make electrostatic discharging components protrude out for enhancing effect of electrostatic discharging protection. It has drawbacks of long labor hours, large assembly tolerance, expensive manufacturing cost, and affecting preferable aesthetic appearance. Thus, design of a grounding mechanism with a simple structure for providing grounding function and electrostatic discharge protection preferably is an important issue in the mechanical design industry.
The present invention provides a connector structure and a computer system capable of grounding a docking station with a host device to solve the problems mentioned above.
According to the claimed invention, a connector structure includes a first connector and a second connector. The first connector is installed on a host device. The first connector includes a first base; a first terminal set installed on the first base; and a first grounding component installed on the first base. The second connector is installed on a docking station for connecting with the first connector. The second connector includes a second base; a second terminal set installed on the second base for contacting with the first terminal set so as to transmit signals between the host device and the docking station with the first terminal set when the host device is docked in the docking station; and a second grounding component installed on the second base for contacting with the first grounding component so as to ground with the first grounding component when the host device is docked in the docking station.
According to the claimed invention, the first grounding component is a plate-shaped structure made of metal material for engaging with the first base.
According to the claimed invention, the second grounding component includes a plurality of metal clip structures protruding out of the second base for abutting against the first grounding component.
According to the claimed invention, the first connector further includes a circuit board installed on the first base, a grounding end of the circuit board electrically connected to the first connecting component; and a cable electrically connected to the grounding end of the circuit board and a grounding end of the host device so as to ground the first grounding component with the grounding end of the host device.
According to the claimed invention, the second connector further includes a circuit board installed on the second base, a grounding end of the circuit board electrically connected to the second connecting component; and a cable electrically connected to the grounding end of the circuit board and a grounding end of the docking station so as to ground the second grounding component with the grounding end of the docking station.
According to the claimed invention, the second terminal set is a pogo pin set.
According to the claimed invention, at least one positioning hole is formed on the first base and at least one positioning post is formed on the second base for inserting inside the positioning hole of the first base so as to fix the first connector with the second connector.
According to the claimed invention, a computer system includes a docking station, a host device and a connector structure. The docking station includes a grounding end. The host device is docked in the docking station in a detachable manner. The host device includes a grounding end. The connector structure is for transmitting signals between the docking station and the host device. The connector structure includes a first connector and a second connector. The first connector is installed on the host device. The first connector includes a first base; a first terminal set installed on the first base; and a first grounding component installed on the first base. The second connector is installed on the docking station for connecting with the first connector. The second connector includes a second base; a second terminal set installed on the second base for contacting with the first terminal set so as to transmit signals between the host device and the docking station with the first terminal set when the host device is docked in the docking station; and a second grounding component installed on the second base for contacting with the first grounding component so as to ground with the first grounding component when the host device is docked in the docking station.
The present invention utilizes the grounding components contacting with each other so as to ground the host device with the docking station when the host device is docked in the docking station, such that an extra electrostatic discharging component is not needed, and there is no need to form holes on the covering components to make electrostatic discharging components protrude out, resulting in affecting preferable aesthetic appearance. Furthermore, the host device and the docking station are grounded with each other to improve the issue of electromagnetic interference and to protect the connector structure from electrostatic interference, such that the grounding mechanism of the present invention provides the preferable electrostatic discharge protection and electromagnetic interference protection without drawbacks of long labor hours, large assembly tolerance, expensive manufacturing cost, and affecting preferable aesthetic appearance.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
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On the other hand, the second connector 60 installed on the docking station 52 includes a second base 72, a second terminal set 74, and at least one second grounding component 76. The second terminal set 74 is installed on the second base 72. The second grounding component 76 is installed on the second base 72. The positioning post 721 is formed on the second base 72 for inserting inside the positioning hole 621 of the first base 62 so as to fix the first connector 58 with the second connector 60. The second terminal set 74 contacts with the first terminal set 64 so as to transmit signals between the host device 54 and the docking station 52 with the first terminal set 64 when the host device 54 is docked in the docking station 52. The second terminal set 74 can be a pogo pin set and so on. The second grounding component 76 contacts with the first grounding component 66 so as to ground with the first grounding component 66 when the host device 54 is docked in the docking station 52. Besides, the second grounding component 76 is engaged with the second base 72. The second grounding component 76 can include a plurality of metal clip structures 761 protruding out of the second base 72 for abutting against the first grounding component 66 so as to enhance contacting effect between the first grounding component 66 and the second grounding component 76. Furthermore, the second connector 60 includes a circuit board 78 installed on the second base 72. A grounding end of the circuit board 78 is electrically connected to the second grounding component 76. For example, the circuit board 78 can be a multilayer printed circuit board, and the second grounding component 76 is electrically connected to a grounding layer of the circuit board 78. The second connector 60 includes a cable 80 electrically connected to the grounding end of the circuit board 78 and a grounding end of the docking station 52 so as to ground the second grounding component 76 with the grounding end of the docking station 52. The grounding mechanism between the second grounding component 76 and the docking station 52 is not limited to wires. For example, the grounding layer of the circuit board 78 can be designed to ground with the grounding terminal of the second terminal set 74, the grounding terminal of the second terminal set 74 is electrically connected to the grounding end of the docking station 52, and the second grounding component 76 is electrically connected to the grounding layer of the circuit board 78, such that the effect of the second grounding component 76 grounding with the grounding end of the docking station 52 can be achieved as well.
When the host device 54 is docked in the docking station 52, the first connector 58 is engaged with the second connector 60, as shown in
In contrast to the prior art, the present invention utilizes the grounding components contacting with each other so as to ground the host device with the docking station when the host device is docked in the docking station, such that an extra electrostatic discharging component is not needed, and there is no need to form holes on the covering components to make electrostatic discharging components protrude out, resulting in affecting preferable aesthetic appearance. Furthermore, the host device and the docking station are grounded with each other to improve the issue of electromagnetic interference and to protect the connector structure from electrostatic interference, such that the grounding mechanism of the present invention provides the preferable electrostatic discharge protection and electromagnetic interference protection without drawbacks of long labor hours, large assembly tolerance, expensive manufacturing cost, and affecting preferable aesthetic appearance.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention.
Number | Date | Country | Kind |
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099217945 | Sep 2010 | TW | national |