This application claims priority to Taiwan Application Serial Number 107101586, filed Jan. 16, 2018, which is herein incorporated by reference in its entirety.
The present disclosure relates to an electrical connector, and more particularly, to a processor socket assembly.
With the advancement of semiconductor manufacturing processes, processors have moved toward low-power and multi-core needs while a number of processor signal pins is increased at the same time, e.g., for computation servers.
Therefore, the processor socket on the motherboard also needs a large number of electrical connector pins to mount a corresponding processor such that the area occupied by the processor socket is continuously enlarged, and the risk for the electrical connector pins being deformed due to external forces is relatively high.
How to reduce the exposure time of pins in a processor socket and reduce the chance of external force intrusion is one of the concerns for associated manufacturers in this field.
In one or more embodiments, a carrier used with a processor has a positioning member configured to be detachably coupled with a guide member of a processor socket assembly, and the positioning member includes a latch.
In one or more embodiments, the carrier further includes a metal inner frame and an insulation coating.
In one or more embodiments, the positioning member is located on the insulation coating.
In one or more embodiments, the metal inner frame includes a pair of corners each of which has a fastener.
In one or more embodiments, a processor socket assembly includes a processor socket disposed on a circuit board, a base frame surrounding the processor socket and disposed on the circuit board, a guide member pivotally connected to an edge of the base frame and configured to swivel relative to the processor socket, and a carrier assembled with a processor and detachably coupled with a slot of the guide member, and configured to swivel together with the guide member.
In one or more embodiments, the base frame includes a pair of extension parts, and the guide member is pivotally connected between the pair of extension parts.
In one or more embodiments, the processor socket assembly further includes a shaft and torsion spring, at least part of the torsion spring is arranged around the shaft, and a middle part of the torsion spring contacts the guide member.
In one or more embodiments, the guide member includes a concave section to be contacted by the middle part of the torsion spring.
In one or more embodiments, each extension part has a vertical rib, the guide member has two block members at two side edges respectively, each block member is in contact with each vertical rib when the guide member is swiveled to an upright position relative to the circuit board.
In one or more embodiments, the processor socket assembly further includes a protection lid which has first corners that have at least a position hole, the base frame has second corners that have at least a position pin, and the position pin engages the position hole when the protection lid is covered over the processor socket.
In sum, the processor socket assembly herein has a guide member which is pivotally connected to the base frame and rotatable relative to processor socket. The processor socket assembly further includes a processor carrier to hold the processor as a combination, which can be detachably coupled to a slot of the guide member. After removing a protection lid to expose a processor socket, a combination of the processor carrier, the processor and the guide member can be swiveled down onto the processor socket rapidly and accurately such that the signal pins within the processor socket are exposed within a very short time to avoid deforming or damaging risks due to an external force intrusion.
It is to be understood that both the foregoing general description and the following detailed description are by examples, and are intended to provide further explanation of the invention as claimed.
The invention can be more fully understood by reading the following detailed description of the embodiment, with reference made to the accompanying drawings as follows:
Reference will now be made in detail to the present embodiments of the invention, examples of which are illustrated in the accompanying drawings. Wherever possible, the same reference numbers are used in the drawings and the description to refer to the same or like parts.
The present invention provides a solder manufacturing method that uses a temperature curve to determine solder quality and improve solder quality. The soldering process method includes a pre-training method and a subsequent inspection or soldering improvement method.
The present invention provides a processor socket assembly to be mounted onto a circuit board so as to carry and secure an associated processor and provides an electrical connection between the circuit board and the processor. Embodiments and usages for the processor socket assembly are discussed with
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An edge of the base frame 104 has a pair of extension parts 104a allowing the guide member 106 to be pivotally between two extension parts 104a. A pivot shaft 105 is inserted through the two extension parts 104 via their pivot holes 104c such that the guide member 106 can be pivotally coupled between extension parts 104a. In other embodiments, the extension part may be single one instead of two, and the guide member may be pivotally coupled to an end portion of the extension part.
The processor socket assembly 100 further includes a torsion spring 107, and part of the torsion spring 107 is arranged around the pivot shaft 105 and a middle part 107a of the torsion spring 107 is in contact with a sidewall of the guide member 106. The guide member 106 further includes a concave section 106c to accommodate the middle part 107a of the torsion spring 107. In other embodiments, at least a potion (not limited to the middle part) of the torsion spring contacts the guide member 106, but the guide member 106 does not include a concave section to receive the torsion spring.
An end portion of each extension part 104a has a vertical rib 104b, and the guide member 106 has block members 106b at two opposite sides. When the guide member 106 is swiveled to an upright position relative to the circuit board 102, a bottom surface of the block member 106b contacts a top surface of the vertical rib 104b so as to prevent the guide member 106 with a combination of a processor carrier 150 and a processor 160 falling away from the processor socket 103. The guide member 106 supported by the vertical ribs 104b of the two extension parts 104a and a torsion force of the torsion spring 107 maintain the upright position relative to the circuit board 102. The upright position of the guide member 106 may not be perpendicular to the circuit board 102, but forms an included angle, e.g., 45 or 60 degrees, with the circuit board 102.
Before removing the protection lid 108 covered over the processor socket, its position holes (108a, 108b) at corners are engaged by position pins 104e of the base frame 104 to secure protection lid 108.
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In sum, the processor socket assembly herein has a guide member which is pivotally connected to the base frame and rotatable relative to processor socket. The processor socket assembly further includes a processor carrier to hold the processor as a combination, which can be detachably coupled to a slot of the guide member. After removing a protection lid to expose a processor socket, a combination of the processor carrier, the processor and the guide member can be swiveled down onto the processor socket rapidly and accurately such that the signal pins within the processor socket are exposed within a very short time to avoid deforming or damaging risks due to an external force intrusion.
Although the present invention has been described in considerable detail with reference to certain embodiments thereof, other embodiments are possible. Therefore, the spirit and scope of the appended claims should not be limited to the description of the embodiments contained herein.
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the present invention without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the present invention cover modifications and variations of this invention provided they fall within the scope of the following claims.
Number | Date | Country | Kind |
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107101586 | Jan 2018 | TW | national |