非畫線版2011年12片曰修正替換頁 五、新型說明: 【新型所屬之技術領域】 本創作係一種機架伺服器及供電系統,尤指一種 設有電流匯流排以利電源供應模組供電之機架伺服 器。 【先前技術】 機架伺服器係為一多層之機箱結構,可依使用者 的需求於各層中放置各種不同之電子裝置,如伺服器 等;如第一圖所揭示,係為目前機架伺服器中電源供 應模組與各電子裝置連結之方式,該機架伺服器於下 方層的位置處設有一電源供應模組,而於該電源供應 模組之上方各層分別設有多個電子裝置,利用多條導 電線Β1及Β2分別連接該電源供應模組正極端Α1 及電源供應模組負極端Α2與各層之電子裝置,以使 該電源供應模組對各層之電子裝置進行供電。 上述的方式係為目前機架伺服器常用的電源供 應之方式,如此的方式雖簡單容易使用,但隨著電子 裝置的增加,機架伺服器之層數亦相對增加,不僅導 電線的數量越來越多,連接兩者的導電線也隨之越拉 越長,線路會變得非常的雜亂不易整理。 M427755 非廳版2〇n補鑫修正替類 【新型内容】 本創作係為一種機架伺服器,包括:一機架;複 數個電子裝置,係裝設於該機架上;一電源供應模 組,係裝設於該機架上,該電源供應模組具有一正極 端及一負極端;以及一對電流匯流排,分別連接於該 正極端及該負極端;其中,該電子裝置與該電源供應 模組係以層疊排列的方式裝設於該機架上,因此該電 子裝置與該電源供應模組係位於該機架上不同層的 位置,而該電流匯流排會通過該電子裝置所在的位置 層,該電子裝置電性連接至該對電流匯流排。 本創作之機架伺服器增加了電流匯流排的設 置,因該電流匯流排與該電源供應模組電性連接,使 得該電流匯流排就如同該電源供應模組之正極端及 負極端,且該電流匯流排會通過各電子裝置所在的位 置層,使得該電子裝置可直接於所在的位置層與電流 匯流排電性連接,即可獲得該電源供應模組之供電, 不需要再由每層的電子裝置拉導電線至電源供應模 組,去除大量使用導電線與線路雜亂等問題。 4 M427755 非蠆線版2011年12月S日修正替換頁 【實施方式】 本案將可由以下的實施例說明而得到充分瞭 解’使付热1本技藝之人士可以據以完成之,然本 案之實施並非可由下列實施案例而被限制其實施型 態。 實施例一,如第二圖至第九圖所示,一種機架 伺服器,包括: 一機架1,該機架1具有一前方11與一後方 12 ; 複數個電子裝置2,係裝設於該機架1上,該 電子裝置2具有一電源接收端22,該電源接收端22 係位於該電子裝置2之後部; 複數個框架3,該複數個框架3係設置於該機 架1内,該複數個電子裝置2係裝設於該複數個框 架3内,利用該框架3的設置使該電子裝置2穩固 的架設於該機架1内; 電源供應模組4,係裝設於該機架丨上,該 電源供應模組4具有一正極端41及-負極端42 ; 以及 5 非畫線版2011年12月茨S修正替換頁 一對電流匯流排5,分別連接於該正極端41 及該負極端42,該電流匯流排5藉由複數固定件6 固定安裝於該框架3上,且該電流匯流排5係位於 該機架1之後方12,該固定件6可為不導電之絕緣 材質;此外,該電流匯流排5可利用一導電材料7 進行串接,增加該電流匯流排5之長度。 另,該電子裝置2與該電源供應模組4係以層 疊排列的方式裝設於該機架1上,因此該電子裝置 2與該電源供應模組4係位在該機架1上不同層的 位置,而該電流匯流排5會通過該電子裝置2所在 的位置層,該電子裝置2電性連接至該對電流匯流 排5。 另,該電子裝置2係由前方11置入該框架3 中,因此當該電子裝置2置入該框架3後,該電子 裝置2之電源接收端22會位在該機架1之後方12。 另,該電子裝置2可為一伺服器、一存儲器或 一交換器。 另,該框架3亦可為直接設置於該機架1中的 形式。 另,該電子裝置2亦可直接裝設於該機架1中, 非畫線版2011年12月25曰修正替換頁 如此狀態下即可不需要該框架3。 本創作之機架伺服器增加了電流匯流排5的 設置,因該電流匯流排5與該電源供應模組4電性 連接,使得該電流匯流排5就如同該電源供應模組 4之正極端及負極端,且該電流匯流排5會通過各 電子裝置2所在的位置層,使得該電子裝置2可直 接於所在的位置層與電流匯流排5電性連接,即可 獲得該電源供應模組4之供電,不需要再由每層的 電子裝置2拉導電線至電源供應模組4,去除大量 使用導電線與線路雜亂等問題。 實施例二,如第二圖至第九圖所示,一種供電 系統,適用於一機架伺服器,該機架伺服器包括: 一機架1 ; 複數個電子裝置2,係裝設於該機架1上,該 電子裝置2具有一電源接收端22,該電源接收端22 係位於該電子裝置2之後部; 複數個框架3,該框架3具有一前方11與一後 方12,該複數個框架3係設置於該機架1内,該複 數個電子裝置2係裝設於該複數個框架3内,利用 非畫線版2011年12月^sa修正替換頁 該框架3的設置使該電子裝置2穩固的架設於該機 架1内; 該供電系統包括: 一電源供應模組4,係裝設於該機架1上,該 電源供應模組4具有一正極端41及一負極端42 ; 以及 一對電流匯流排5,分別連接於該正極端41 及該負極端42,該電流匯流排5藉由複數固定件6 固定安裝於該框架3上,且該電流匯流排5係位於 該框架3之後方12,該固定件6可為不導電之絕緣 材質;此外,該電流匯流排5可利用一導電材料7 進行串接,增加該電流匯流排5之長度; 另,該電子裝置2與該電源供應模組4係以層 疊排列的方式裝設於該機架1上,因此該電子裝置 2與該電源供應模組4係位在該機架1上不同層的 位置,而該電流匯流排5會通過該電子裝置2所在 的位置層,該電子裝置2電性連接至該對電流匯流 排5。 另,該電子裝置2係由前方11置入該框架3 中,因此當該電子裝置2置入該框架3後,該電子 非畫線版2011年12月M修正替換頁 裝置2之電源接收端22會位在該框架3之後方12。 另,該電子裝置2可為一伺服器、一存儲器或 一交換器。 另,該框架3亦可為直接設置於該機架1中的 形式。 另,該電子裝置2亦可直接裝設於該機架1中, 如此狀態下即可不需要該框架3。 本創作之供電系統增加了電流匯流排的設 置,因該電流匯流排與該電源供應模組電性連接, 使得該電流匯流排就如同該電源供應模組之正極 端及負極端,且該電流匯流排會通過各電子裝置所 在的位置層,使得該電子裝置可直接於所在的位置 層與電流匯流排電性連接,即可獲得該電源供應模 組之供電,不需要再由每層的電子裝置拉導電線至 電源供應模組,去除大量使用導電線與線路雜亂等 問題。 本創作雖以較佳實施例揭露如上,然其並非用 以限定本創作的範圍,任何熟習此項技藝者,在不 脫離本創作之精神和範圍内,當可做些許的更動與 潤飾,因此本創作之保護範圍當視後附之申請專利 M427755 非ffi線版2011年12月%8修正替換頁 範圍所界定。 10 M427755 繼版飾蠤圆換頁 【圖式簡單說明】 第—圖’係習式機架伺服器及供電系統之說明圖; $=圖’係本創作機架伺服器及電源供應模組之說明 圖; 第二圖’係本創作機架伺服器及電源供應模組之說明 圖; 第四圖’係本創作機架伺服器之說明圖; 第五圖’係本創作機架伺服器及電流匯流排之說明 圖; 第六圖’係本創作機架伺服器及電子裝置之說明圖; 第七圖’係本創作機架伺服器及電流匯流排之說明 圖; 第八圖’係本創作機架伺服器及電源供應模組之說明 圖; 第九圖,係本創作機架伺服器及電流匯流排之說明 11 M427755 非S線版2011年12月^修正替換頁 【主要元件符號說明】 1 機架 11前方 12後方 2 電子裝置 22電源接收端 3 框架 4 電源供應模組 41正極端 42負極端 5 電流匯流排 6 固定件 7 導電材料 A1電源供應模組正極端 A2電源供應模組負極端 B1導電線 B2導電線 12Non-line version 2011 12-piece 曰 correction replacement page 5, new description: [New technology field] This creation is a rack server and power supply system, especially a current bus bar for power supply module Powered rack server. [Prior Art] The rack server is a multi-layered chassis structure, and various electronic devices, such as servers, can be placed in each layer according to the needs of the user; as disclosed in the first figure, the current rack is The power supply module of the server is connected to each electronic device. The rack server is provided with a power supply module at a position of the lower layer, and a plurality of electronic devices are respectively disposed above the power supply module. The plurality of conductive wires Β1 and Β2 are respectively connected to the positive terminal Α1 of the power supply module and the negative terminal Α2 of the power supply module and the electronic devices of each layer, so that the power supply module supplies power to the electronic devices of each layer. The above method is a common method of power supply for the rack server. Although such a method is simple and easy to use, with the increase of the electronic device, the number of layers of the rack server is relatively increased, and the number of conductive wires is increased. The more the wires are connected, the more the wires are connected, and the wires become very messy and difficult to organize. M427755 Non-office version 2〇n Buxin correction type [new content] This creation is a rack server, including: a rack; a plurality of electronic devices, installed in the rack; a power supply module The power supply module has a positive terminal and a negative terminal; and a pair of current bus bars respectively connected to the positive terminal and the negative terminal; wherein the electronic device and the The power supply module is mounted on the frame in a stacked manner, so that the electronic device and the power supply module are located at different layers on the frame, and the current bus is passed through the electronic device. The location layer, the electronic device is electrically connected to the pair of current busbars. The rack server of the present invention increases the setting of the current busbar, and the current busbar is electrically connected to the power supply module, so that the current busbar is like the positive terminal and the negative terminal of the power supply module, and The current busbar can pass through the location layer where each electronic device is located, so that the electronic device can be electrically connected to the current busbar directly at the location layer where the electronic device can be connected, so that the power supply module can be powered by the power supply module. The electronic device pulls the conductive wire to the power supply module to remove a large number of problems such as the use of conductive wires and circuit clutter. 4 M427755 Non-虿版版 December 2011 S-Revision Replacement Page [Embodiment] This case will be fully explained by the following examples. 'The person who pays the heat 1 can complete it, but the implementation of this case It is not possible to limit its implementation by the following implementation cases. Embodiment 1 As shown in FIG. 2 to FIG. 9 , a rack server includes: a rack 1 having a front 11 and a rear 12 ; a plurality of electronic devices 2 The electronic device 2 has a power receiving end 22, and the power receiving end 22 is located at the rear of the electronic device 2; a plurality of frames 3, the plurality of frames 3 are disposed in the frame 1 The plurality of electronic devices 2 are mounted in the plurality of frames 3, and the electronic device 2 is stably mounted in the frame 1 by using the frame 3; the power supply module 4 is mounted on the frame In the rack, the power supply module 4 has a positive terminal 41 and a negative terminal 42; and a non-line version of the December 2011 s S correction replacement page pair of current bus bars 5, respectively connected to the positive terminal 41 and the negative terminal 42 , the current bus bar 5 is fixedly mounted on the frame 3 by a plurality of fixing members 6 , and the current bus bar 5 is located behind the frame 1 , and the fixing member 6 can be non-conductive. Insulating material; in addition, the current bus bar 5 can be connected in series by using a conductive material 7 The length 5 of the current busbars. In addition, the electronic device 2 and the power supply module 4 are mounted on the frame 1 in a stacked manner, so that the electronic device 2 and the power supply module 4 are tied to different layers on the frame 1. The current bus bar 5 passes through the location layer where the electronic device 2 is located, and the electronic device 2 is electrically connected to the pair of current bus bars 5. In addition, the electronic device 2 is placed in the frame 3 from the front portion 11, so that when the electronic device 2 is placed in the frame 3, the power receiving end 22 of the electronic device 2 is positioned behind the frame 12. Alternatively, the electronic device 2 can be a server, a memory or an exchanger. Alternatively, the frame 3 may be in the form of being directly disposed in the frame 1. In addition, the electronic device 2 can also be directly installed in the rack 1, and the non-line version can be modified on the December 25, 2011. The frame 3 can be omitted in this state. The rack server of the present invention increases the setting of the current busbar 5, because the current busbar 5 is electrically connected to the power supply module 4, so that the current busbar 5 is like the positive terminal of the power supply module 4. And the negative terminal, and the current busbar 5 passes through the location layer where the electronic device 2 is located, so that the electronic device 2 can be electrically connected to the current busbar 5 directly at the location layer where the electronic device 2 is located, thereby obtaining the power supply module. The power supply of 4 does not need to pull the conductive wire from each layer of the electronic device 2 to the power supply module 4, thereby removing a large number of problems such as the use of conductive wires and circuit clutter. Embodiment 2, as shown in FIG. 2 to FIG. 9 , a power supply system is applicable to a rack server, the rack server includes: a rack 1; and a plurality of electronic devices 2 mounted on the rack In the rack 1, the electronic device 2 has a power receiving end 22, which is located at the rear of the electronic device 2; a plurality of frames 3, the frame 3 has a front 11 and a rear 12, the plurality The frame 3 is disposed in the frame 1 , and the plurality of electronic devices 2 are installed in the plurality of frames 3 , and the frame is replaced by the non-line version of December 2011 The power supply system includes a power supply module 4, and the power supply module 4 has a positive terminal 41 and a negative terminal 42. The power supply module 4 is mounted on the chassis 1. And a pair of current bus bars 5 connected to the positive terminal 41 and the negative terminal 42 respectively, the current bus bar 5 is fixedly mounted on the frame 3 by a plurality of fixing members 6, and the current bus bar 5 is located at the same The rear side of the frame 3, the fixing member 6 can be a non-conductive insulating material; The current bus bar 5 can be connected in series by a conductive material 7 to increase the length of the current bus bar 5; in addition, the electronic device 2 and the power supply module 4 are mounted on the rack in a stacked arrangement. 1 , so the electronic device 2 and the power supply module 4 are located at different positions on the frame 1 , and the current bus 5 will pass through the position layer where the electronic device 2 is located, and the electronic device 2 The connection is made to the pair of current bus bars 5. In addition, the electronic device 2 is placed in the frame 3 from the front 11, so that when the electronic device 2 is placed in the frame 3, the electronic non-graphic version is revised in December 2011, and the power receiving end of the replacement page device 2 is corrected. 22 will be located after the frame 3 of the frame 12. Alternatively, the electronic device 2 can be a server, a memory or an exchanger. Alternatively, the frame 3 may be in the form of being directly disposed in the frame 1. In addition, the electronic device 2 can also be directly mounted in the frame 1, so that the frame 3 can be eliminated in this state. The power supply system of the present invention increases the setting of the current busbar, because the current busbar is electrically connected to the power supply module, so that the current busbar is like the positive terminal and the negative terminal of the power supply module, and the current is The busbar passes through the location layer where the electronic devices are located, so that the electronic device can be electrically connected to the current busbar directly at the location layer, so that the power supply module can be powered, and no electrons of each layer need to be used. The device pulls the conductive wire to the power supply module to remove a large number of problems such as the use of conductive wires and clutter. The present invention is disclosed in the above preferred embodiments, and is not intended to limit the scope of the present invention. Anyone skilled in the art can make some changes and refinements without departing from the spirit and scope of the present invention. The scope of protection of this creation is defined in the attached patent application M427755 non-ffi line version December 2011%8 revised replacement page range. 10 M427755 Following the edition of the engraving and changing the page [Simple description of the drawing] The first figure is the explanatory diagram of the substation rack server and the power supply system; $=图' is the description of the creation rack server and the power supply module Figure 2; Figure 2 is an explanatory diagram of the creation rack server and power supply module; the fourth picture is the explanatory diagram of the creation rack server; the fifth picture is the creation of the rack server and current The description of the busbar; the sixth diagram is the explanatory diagram of the server and the electronic device of the creation rack; the seventh diagram is the explanatory diagram of the server and the current busbar of the creation frame; Description of the rack server and power supply module; The ninth picture shows the description of the server and current bus of the creation rack. 11 M427755 Non-S-line version December 2011 ^Revision replacement page [Main component symbol description] 1 Rack 11 front 12 rear 2 electronic device 22 power receiving end 3 frame 4 power supply module 41 positive terminal 42 negative terminal 5 current bus 6 fixing member 7 conductive material A1 power supply module positive terminal A2 power supply module negative Extreme B1 conductive Line B2 conductive line 12