The present invention relates to an ATX power supply and a housing thereof, and particularly to a power supply implemented based on the ATX specification and including a hot-pluggable power module, and a housing for disposing the power module.
Current ATX power supplies are mainly applied in computers assembled or purchased by consumers, and are quite different from redundant power supplies applied to servers. For example, the Taiwan Patents No. M289211, M265701, M262961, M423290, I348606 and M507575 disclose some of the ATX power supplies.
From the above disclosures, it is known that a current ATX power supply includes only one single housing. That is to say, with respect to a consumer, apart from an electrical connecting wire of the ATX power supply revealed outside the housing, the remaining structure of the ATX power supply is disposed in the housing. Accordingly, to perform maintenance after such conventional ATX power supply is installed to a computer housing, the ATX power supply needs to be removed from the computer housing, and the housing can then be disassembled for further maintenance.
Further, when a current ATX power supply is completely manufactured, the rated power and supply voltage of the ATX power supply are restricted by circuits in the ATX power supply. In the event of a need for adjustment, the user can only discard the existing ATX power supply, resulting in resource waste.
It is a primary object of the present invention to solve maintenance issues of a conventional ATX power supply. That is, in a conventional ATX power supply, electrical connections from the ATX power supply to a motherboard and a hard drive need to be first disconnected before maintenance can be performed.
It is another object of the present invention to solve the issue of a fixed and unadjustable powering specification after a conventional ATX power supply is completely manufactured.
To achieve the above objects, the present invention provides a housing of an ATX power supply. The housing includes a lower plate, two side plates, a back plate and a power bridge plate. The two side plates are respectively connected at two parallel sides of the lower plate, and jointly with the lower plate define an installation space and a first end opening and a second end opening respectively located at two parallel sides of the lower plate that are not installed with the two side plates. The back plate is connected to the lower plate and disposed at the second end opening, and is provided with a plurality of through holes. The power bridge plate is installed at one side of the back plate facing the installation space, and includes a plurality of power output port facing the back plate and respectively insertingly disposed in the through holes, and at least one bridge port facing the installation space. The housing allows a power module to be selectively placed in the installation space, so as to generate an electrical connection between an output end of the power module and the bridge port. The housing further includes at the other side of the lower plate an opening defined by the back plate and the two side plates. The opening is in communication with the installation space.
In one embodiment, each of the two side plates includes a limiting rib extending from its one edge that is not connected with the lower plate towards a direction of the other opposite side plate.
In one embodiment, at least one of the two side plates includes at least one positioning hole operable to be assembled with an elastic limiting member of the power module.
In one embodiment, the length of the lower plate is greater than the length of the power module.
The present invention further provides an ATX power supply. The ATX power supply includes a power module and a housing. The power module includes a casing, a circuit board distributed with a plurality of electronic components and disposed in the casing, a cooling fan disposed in the casing and electrically connected to the circuit board so as to obtain electric power, and an external power input port connected to the circuit board and revealed at one side of the casing. The circuit board includes an output end at its one other side opposite the external power input port. The casing is provided with at least one first ventilation hole at one other side opposite the side provided with the circuit board. The cooling fan is disposed correspondingly to the first ventilation hole. The housing includes comprising a lower plate, two side plates respectively connected to two parallel sides of the lower plate and jointly defining with the lower plate an installation space, a back plate connected to the lower plate and the two side plates and provided with a plurality of through holes, and a power bridge plate disposed on the back plate and located in the installation space. The power bridge plate includes a plurality of power output ports facing the back plate and respectively insertingly disposed in the through holes, and at least one bridge port facing the installation space so as be connected to the output end. The housing includes at one other side of the lower plate an opening defined by the back plate and the two side plates. The opening is in communication with the installation space. The housing allows the power module to be selectively placed in the installation space. After the power module is placed in the installation space, the output end is connected to the bridge port, and the cooling fan is disposed correspondingly to the opening and hence not covered by the housing.
In one embodiment, each of the two side plates includes a limiting rib extending from its one edge that is not connected with the lower plate towards a direction of the other opposite side plate.
In one embodiment, at least one of the two side plates of the housing includes at least one positioning hole. The casing of the power module includes at least one through hole that corresponds to the positioning hole after the power module is placed in the installation space. The power module includes an elastic limiting member. The elastic limiting member includes a connecting portion disposed in the casing, a force receiving portion and at least one limiting portion. The force receiving portion extends from the connecting portion, protrudes out of the casing and is operable to receive a force to deform the connecting portion. The at least one limiting portion extends from the connecting portion, is disposed correspondingly to the through hole and the positioning hole, and comprises a locked state in which it is penetrated through the through hole and the limiting hole to restrict the movement of the power module and a lock released state in which it is driven by the connecting portion to at least disengage from the positioning hole.
In one embodiment, one side of the casing that reveals the external power input port is provided with a plurality of second ventilation holes and a handle.
With the above disclosed embodiments of the present invention, the present invention provides following features compared to the prior art. In the ATX power supply of the present invention, maintenance of the ATX power supply can be performed or the power module can be replaced in a situation where the ATX power supply is not removed from the computer housing. Further, one side of the housing of the installation space opposite the lower plate of the housing is in a hollow form, allowing the cooling fan to dissipate heat through the hollow after the power module and the housing are assembled.
Details and technical contents of the present invention are given with the accompanying drawings below.
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Further, the other side of the installation space 200 of the housing 20 opposite the lower plate 21 is in a hollow form. Further, the housing 20 includes at the other side of the lower plate 21 an opening 203 defined by the back plate 24 and the two side plates (22 and 23) of the housing 20. The opening 203 is in communication with the installation space 200.
The back plate 24 is connected to the lower plate 21 and is disposed at one side of the lower plate 21 that is not provided with the two side plates (22 and 23). In this embodiment, the back plate 24 is installed at the second end opening 202. Further, the back plate 24 is provided with a plurality of through hole 241. The power bridge plate 25 is installed on the back plate 24, and more particularly, the power bridge plate 25 is installed at one side of the back plate 24 facing the installation space 200. The power bridge plate 25 may be distributed with electrical lines or electronic components. More specifically, the power bridge plate 25 at least includes a plurality of electrical output ports 251 facing the back plate 24 and respectively insertingly disposed in the through holes 241, and at least one bridge port 252 facing the installation space 200. The electrical output ports 251 are electrically connected to the bridge port 252 respectively via the electrical lines distributed on the power bridge plate 25. Further, the electrical output ports 251 may be in different forms, in which the numbers of pins may be adjusted according to targets of power to be outputted. Details for adjusting the numbers of pins are general knowledge in the art and shall be omitted herein. In the present invention, the form of each through hole 241 corresponds to the form of one of the electrical output ports 251 that is to be insertingly disposed in the through hole 241.
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Further, the length of the power module 30 can be designed with the consideration of the lengths of the back plate 24 and the bridge port 252 on the housing 20 to prevent the power module 30 from noticeably and excessively protruding from the housing 20. In one embodiment, the length of the lower plate 21 is greater than the length of the power module 30, wherein the length of the lower plate 21 is 26 denoted in