The present invention relates to a pluggable power supply wire harness and, more particularly, to a pluggable PCI-E wire harness applied as a modularized power output wire harness.
PCI Express (Peripheral Component Interconnect Express, PCI-E for short) which is a crucial branch among computer buses inherits existing PCI programming concepts and communications standards for creation of higher-speed serial communications system standards. These serial standards are being enacted and maintained by the PCI Special Interest Group (PCI-SIG). PCI-E acclaimed for its higher speed has almost replaced other conventional internal buses, for example, AGP AGP (Accelerated Graphics Port) and PCI (Peripheral Component Interconnect). Additionally, a PCI-E device characteristic of hot plugging and swap supports three different voltages, that is, +3.3V, 3.3Vaux (auxiliary voltage), and +12V. In virtue of more and more power consumed by a graphics card, the subsequent specification for the limitation of power directly received from a PCI-E slot has been revised, for example, the maximum power, up to 75W, supplied for a PCI-E×16 slot has been upgraded compared with the AGP 8× interface. With compatibility of PCI-E guaranteed, the operating system that supports PCI also supports the PCI-E bus without any modification required. It is convenient for a user who intends to upgrade his/her computer. Accordingly, PCI-E with greatest significance of universality is used in connectivity with the south bridge chip and another device, expanded connectivity between chipsets or even connectivity with the graphics processing unit. As such, the whole I/O system is reunited for a computer system further simplified and computer hardware portable and modulaized.
For settlement of the above problem, a modularized pluggable power supply wire harness, which is more practical than ever, as the goal and the direction of the industry, deserves to be further researched.
Thus, an objective of the present invention is to provide a pluggable power supply wire harness, which can help with the problem of power receiving terminal interfaces/wires burnt and avoid hardware component damaged for good practical efficiency.
To achieve this and other objectives, a pluggable power supply wire harness according to an embodiment of the present invention is applied as a modularized power output wire harness and includes a pluggable wire harness. The pluggable wire harness has a power receiving terminal at an end thereof and a first power transmitting terminal as well as a second power transmitting terminal at the other end thereof. The power receiving terminal is connected with a power supply for power-taking, and each of the first and second power transmitting terminals is adapted to be plugged into a socket on a graphics card for power transmitting. The power receiving terminal is equipped with 8 pins, wherein pins 1, 2 and 3 thereof are prepared for supply of +12V and pins 5, 6, 7 and 8 thereof are defined as grounding pins. Each of the first and second power transmitting terminals is equipped with 8 pins, wherein pins 1, 2, and 3 thereof are prepared for supply of +12V and pins 4, 5, 6, 7 and 8 thereof are defined as grounding pins. The pluggable wire harness is characterized in that the pin 4 of the power receiving terminal of the pluggable wire harness is connected with one end of a leading wire, and another end of the leading wire is connected with one of the pins 1, 2 and 3 of the power receiving terminal, or connected with one of the pins 1, 2 and 3 of the first and second power transmitting terminals.
The present invention will become clearer in light of the following detailed description of an illustrative embodiment of this invention described in connection with the drawings.
The illustrative embodiment may best be described by reference to the accompanying drawings where:
All figures are drawn for ease of explanation of the basic teachings of the present invention only; the extensions of the figures with respect to number, position, relationship, and dimensions of the parts to form the preferred embodiments will be explained or will be within the skill of the art after the following teachings of the present invention have been read and understood. Where used in the various figures of the drawings, the same numerals designate the same or similar parts.
A pluggable power supply wire harness according to the preferred teachings of the present invention is shown in
The pluggable wire harness 20 of the present invention is equipped with the leading wire 24 in structural design, and the leading wire 24 features an end connected to the pin 4 of the power receiving terminal 21 and the other end connected to any one of the pins 1, 2 and 3 of the power receiving terminal 21, or connected to any one of the pins 1, 2 and 3 of the first power transmitting terminal 22 or any one of the pins 1, 2 and 3 of the second power transmitting terminal 23.
According to the above structural design, the pluggable wire harness 20 of the present invention is characteristic of the following advantages. In the pluggable wire harness 20 consisting of 9 wires (four wires for 12V and five wires for GND), the additional branch wire for +12V contributes to current distribution at each pin. As shown in a simulation test for the current of 24A, the current checked at each pin of the power receiving terminal 21 is 6A (25% lower than the load current detected at a traditional PCI wire) and smaller load resistance induces temperature rise reduced significantly (20% less than the load temperature detected at the traditional PCI wire) for lowered electric load and reduced wire/plastic material temperature that help with the problem of power receiving terminal interfaces/wires burnt and avoid hardware component damaged for good practical efficiency.
In summary, the structure of pluggable wire harness 20 of the present invention contributes to current distribution, temperature reduction, extension of service life and durability. Accordingly, the problem of power receiving terminal interfaces and wires burnt is avoided because of loads lowered and wire/plastic temperatures reduced.
The scope of the invention is to be indicated by the appended claims, rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are intended to be embraced therein.
Number | Date | Country | Kind |
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111208311 | Aug 2022 | TW | national |