TWM432161U - Flat cable module with light emitting element - Google Patents

Flat cable module with light emitting element Download PDF

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Publication number
TWM432161U
TWM432161U TW100223251U TW100223251U TWM432161U TW M432161 U TWM432161 U TW M432161U TW 100223251 U TW100223251 U TW 100223251U TW 100223251 U TW100223251 U TW 100223251U TW M432161 U TWM432161 U TW M432161U
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TW
Taiwan
Prior art keywords
cable
unit
transmission
metal
wire
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Application number
TW100223251U
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Chinese (zh)
Inventor
Cheng-I You
Original Assignee
P Two Ind Inc
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Publication date
Application filed by P Two Ind Inc filed Critical P Two Ind Inc
Priority to TW100223251U priority Critical patent/TWM432161U/en
Publication of TWM432161U publication Critical patent/TWM432161U/en

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M432161 五、新型說明: 【新型所屬之技術領域】 本創作是有關於一種設有發光元件之排線單元,斗寺 別是有關於一種設有發光元件之排線模組。 【先前技術】 現今隨著環保意識的高漲,具有省電與符合環保要 鲁 求之發光二極體(led)已逐漸應用於生活中的各項電 子產品中,例如聖誕燈飾、手電筒、車輛信號燈、交通 標誌、手機與顯示器等商品,且未來發展的趨勢也是利 用發光二極體來逐漸替代功能相近之傳統燈泡。 一般發光二極體之基本構造,係在一透明絕緣體之 内部設林同極性之導電端及—承載部,其承載部處係 固設有一晶片,其晶片之週邊係設有螢光材料,另設有 金線構成晶片之電極層與導電端之連接,而各導電端並 • 延伸出透明絕緣體外部成為電源接點。在導電端之通電 作訂,其晶片所產生之光源在穿過勞光材料時,即與 螢光材料之波長結合成為預期之可見光。 現今-般電子裝置(如筆記型電腦)中,需要局部發 光或扣示燈處,其一般做法係於鍵盤内之印刷電路板或 軟性電路板上,設置印刷線路以供發光二極體設置,當 通以電源時,發光二極體得以發光而產生指示作用。然 而,使用印刷電路板或軟性電路板之成本較高,且需視 3 發光二極體所設置之位置而設置印刷線路,其作法較為 複雜所以容易導致製作成本的增加。此外,印刷電路板 或軟性電路板在連接外界電源時一般是利用焊接電源 線纜於電路板上的方式來達成,由於焊接製程需要上錫 貧與加熱壓合等步驟,此種製程所花費的成本與時間較 多’不利於產品的競爭力。 【新型内容】 ^知之電子產〇口係使用印刷電路板或軟性電路板以 供發光一極體設置,且印刷電路板或軟性電路板在連接 外界電源時一般是利用焊接電源線纜的方式來達成,如 此容易導致製造成本增加的問題。 本創作提供一種設有發光元件之排線模組,包括一 排線單元、二傳輸線纜及二金屬件,其中排線單元包括 平行排列之複數金屬導線及包覆該些金屬導線之絕緣 層’複數發光元件設置於排線單元並與該些金屬導線形 成電性連接,於排線單元末端形成二導電接點。二傳輸 線繞對應於二導電接點設置於排線單元末端上,傳輸線 規没有一金屬導線。金屬件係設有至少一尖銳端以刺破 排線單元,且金屬件接觸於導電接點與金屬導線,使得 排線單元與傳輸線纜形成電性導通。 本創作所提供之設有發光元件的排線模組,其係利 用軟性排線來取代原先所使用的印刷電路板或軟性電 路板,且利用金屬件刺破干涉的結構來電性連接軟性排 線與傳輸線纜,如此不僅結構簡單且節省成本,即可解 決習知技術所造成之製造成本增加的問題。 【實施方式】 請參閱第一圖至第四圖所示之一較佳實施例,本創 作提供一種設有發光元件2之排線模組1,其主要部分 係由一排線單元3、二傳輸線纜4及二金屬件5所組成。 排線單元3包括平行排列之複數金屬導線31及包覆 該些金屬導線31之絕緣層32所組成,複數發光元件2 設置於排線單元3上並與該些金屬導線31形成電性連 接,於排線單元3末端形成二導電接點33,此二導電 接點3 3包括一正極接點及一負極接點。 二傳輸線纜4對應於二導電接點33設置於排線單元 3末端上,且傳輸線纜4的末端剛好位於導電接點33 上,其中傳輸線纜4内設有一金屬導線41。 如第三圖與第四圖所示,此金屬件5係先刺破排線 單疋3,接著彎折金屬件5 ,之後再刺破傳輸線纜4。 在本實施例中,金屬件5包括一本體部51、連接於本 體部51之複㈣破部52、連接於·刺破# 52之複 數折考部53及連接於該些折彎部53之該些尖銳端54, 其中本體杳Ρ 51抵典於排線單元3之一側φ 34,刺破部 52係從侧面34刺破排線單元3至另一側面%,折彎部 M432161 53延伸轉輪_ 4上’线端54係先刺破排線單元 後再刺破傳輸線規4並與金屬導線41以及導電接點 33形成接觸導通’使得排線單元3與傳輸線纜4形成 電性導通。 在本實施例中,此尖銳端54係同時刺破金屬導線 41以及導電接點33,然不限於此,尖銳端54係亦可選 擇只刺破金屬導線41並與導電接點33接觸。導電接點 33係位於排線單元3之另一側面35上,傳輸線纜4的 末端也是位於排線單元3之另一侧面35上且剛好相對 於導電接點33設置。 金屬件5之折彎部53係沿著傳輸線纜4的圓周外形 折彎延伸至接近於傳輸線纜4上距離排線單元3的最遠 處’折彎部53末端連接之尖銳端54係在鄰近於最遠處 刺破傳輸線纜4,且尖銳端54朝著導電接點33延伸並 刺破金屬導線41。此外,在金屬件5上還設有挾持部 55,此挾持部55係用以干涉固定傳輸線纜4使其不會 隨意移動或晃動。 在本實施例中,此排線模組1更包括二對接端子6 及一絕緣本體7,傳輸線纜4之一端設置於排線單元3 上,傳輸線纜4之另一端則延伸至遠離於排線單元3, 對接端子6設置於傳輸線纜4之另一端上並與傳輸線纜 4之間形成電性接觸。絕緣本體7設有插槽71可容置 對接端子6,對接端子6與絕緣本體7係形成一連接器 6 結構’如祕線單幻可㈣金屬件5、傳輸賴4與 對接端子6連接外界以獲得電源。 值得-提的是,在本實關巾,傳輸魏*的末端 係與導電接點33同樣位於排線單元3之另一側面%上 且傳輪線魔4剛好位於導電接點33上,然不限於此, 傳輸線境4的末端也可選擇位於背對於導電接點33之 側面34上,只要排線單元3之導電接點33❸正極接畔 與傳輸線纜4相互對應域由金屬件5而形成相互導 通’排線單it 3之導電接點33的負極接點與另一躲 、❸覽4相互對應且藉由另—金屬件5而形成相互導通, 1皆可以達到本創作的目的。此外,金屬件5之複數 尖銳端54亦可選擇直接麟單元3末端 末端且直接刺穿於導電接點33與金屬導線41,= 1金屬導線41以及導電接點33形成導通,所以其結構 外形也可以省略掉刺破部52的設計。 综上所述’本創作之設有發光元件的排線模組,复 係利用軟性排線來取代原先所使用的印刷電路板或軟 性電路板’且利用金屬件刺破干涉的結構來電性連接軟 性排線與傳輸線纜,如此不僅結構簡單M432161 V. New description: [New technical field] This creation is about a cable unit with a light-emitting component, and Douji is a cable module with a light-emitting component. [Prior Art] Nowadays, with the rising awareness of environmental protection, light-emitting diodes (LEDs) with power saving and environmental protection are gradually applied to various electronic products in life, such as Christmas lights, flashlights, vehicle signal lights. Products such as traffic signs, mobile phones and monitors, and the future development trend is to gradually replace traditional light bulbs with similar functions by using light-emitting diodes. The basic structure of a general light-emitting diode is a conductive end and a bearing portion of a transparent insulator, and a wafer is fixed at the bearing portion, and a fluorescent material is arranged around the wafer. A gold wire is formed to form a connection between the electrode layer of the wafer and the conductive end, and each of the conductive ends extends beyond the transparent insulator to become a power contact. When the conductive end is energized, the light source generated by the wafer is combined with the wavelength of the fluorescent material to become the visible visible light when passing through the working material. In today's general electronic devices (such as notebook computers), it is necessary to partially illuminate or light the lamp. The general practice is to place a printed circuit board on a printed circuit board or a flexible circuit board in the keyboard, and a printed circuit is provided for the light emitting diode. When the power is supplied, the light-emitting diode is illuminated to give an indication. However, the cost of using a printed circuit board or a flexible circuit board is high, and it is necessary to set a printed circuit depending on the position where the light-emitting diode is disposed, which is complicated in practice and thus tends to increase the manufacturing cost. In addition, the printed circuit board or the flexible circuit board is generally connected to the external power source by means of welding the power cable on the circuit board. Since the soldering process requires the steps of tin-suppression and heating, the process costs. More cost and time is not conducive to the competitiveness of the product. [New Content] ^Knowledge Electronic Products uses printed circuit boards or flexible circuit boards for light-emitting one-pole installation, and printed circuit boards or flexible circuit boards are generally connected by external power supply by means of welding power cables. Achieving such problems easily leads to an increase in manufacturing costs. The present invention provides a cable module with a light-emitting component, comprising a wire unit, two transmission cables and two metal parts, wherein the wire unit comprises a plurality of metal wires arranged in parallel and an insulating layer covering the metal wires. The plurality of light-emitting elements are disposed on the wire arranging unit and electrically connected to the metal wires, and two conductive contacts are formed at the ends of the wire arranging unit. The two transmission wires are disposed on the end of the cable unit corresponding to the two conductive contacts, and the transmission wire gauge does not have a metal wire. The metal member is provided with at least one sharp end to pierce the wire arranging unit, and the metal member contacts the conductive contact and the metal wire, so that the wire arranging unit is electrically connected to the transmission cable. The cable module provided with the light-emitting component provided by the present invention uses a flexible cable to replace the printed circuit board or the flexible circuit board which is originally used, and uses a metal member to pierce the interference structure to electrically connect the flexible cable. With the transmission cable, the structure is not only simple in structure but also cost-effective, so that the problem of increased manufacturing cost caused by the prior art can be solved. [Embodiment] Please refer to a preferred embodiment shown in the first to fourth embodiments. The present invention provides a cable module 1 provided with a light-emitting element 2, the main part of which is a row of line units 3 and 2 The transmission cable 4 and the two metal members 5 are composed. The wire arranging unit 3 is composed of a plurality of metal wires 31 arranged in parallel and an insulating layer 32 covering the metal wires 31. The plurality of light-emitting elements 2 are disposed on the wire arranging unit 3 and electrically connected to the metal wires 31. Two conductive contacts 33 are formed at the end of the cable unit 3, and the two conductive contacts 33 include a positive contact and a negative contact. The two transmission cables 4 are disposed on the end of the cable unit 3 corresponding to the two conductive contacts 33, and the end of the transmission cable 4 is located on the conductive contact 33. The metal cable 41 is disposed in the transmission cable 4. As shown in the third and fourth figures, the metal member 5 first pierces the cable unit 3, and then bends the metal member 5, and then pierces the transmission cable 4. In the present embodiment, the metal member 5 includes a main body portion 51, a plurality of (four) broken portions 52 connected to the main body portion 51, a plurality of folding portions 53 connected to the puncture #52, and connected to the bent portions 53. The sharp ends 54 are disposed, wherein the body 杳Ρ 51 is offset from one side φ 34 of the wire arranging unit 3, and the puncturing portion 52 pierces the wire arranging unit 3 from the side surface 34 to the other side %, and the bent portion M432161 53 extends. The upper end 54 of the runner _ 4 first pierces the cable arranging unit and then pierces the transmission wire gauge 4 and forms a contact conduction with the metal wire 41 and the conductive contact 33, so that the wire arranging unit 3 and the transmission cable 4 are electrically connected. . In the present embodiment, the sharp end 54 pierces the metal wire 41 and the conductive contact 33 at the same time. However, the sharp end 54 is also selected to pierce the metal wire 41 and contact the conductive contact 33. The conductive contact 33 is located on the other side 35 of the cable unit 3, and the end of the transmission cable 4 is also located on the other side 35 of the cable unit 3 and is disposed just opposite to the conductive contact 33. The bent portion 53 of the metal member 5 is bent along the circumferential shape of the transmission cable 4 to be close to the farthest point on the transmission cable 4 from the cable unit 3. The sharp end 54 of the end of the bent portion 53 is adjacent to the end. The transmission cable 4 is pierced at the farthest point, and the sharp end 54 extends toward the conductive contact 33 and pierces the metal wire 41. Further, the metal member 5 is further provided with a holding portion 55 for interfering with fixing the transmission cable 4 so as not to be freely moved or shaken. In this embodiment, the cable module 1 further includes two docking terminals 6 and an insulative housing 7. One end of the transmission cable 4 is disposed on the cable unit 3, and the other end of the transmission cable 4 extends away from the cable. Unit 3, the docking terminal 6 is disposed on the other end of the transmission cable 4 and makes electrical contact with the transmission cable 4. The insulative housing 7 is provided with a slot 71 for accommodating the mating terminal 6. The mating terminal 6 and the insulative housing 7 form a connector 6 structure, such as a secret line (4) metal member 5, a transmission base 4 and a docking terminal 6 connected to the outside. Get the power. It is worth mentioning that, in the actual cover towel, the end of the transmission Wei* and the conductive contact 33 are also located on the other side % of the cable unit 3 and the transmission line 4 is located on the conductive contact 33, In addition, the end of the transmission line 4 may also be located on the side 34 opposite to the conductive contact 33, as long as the conductive contact 33 of the cable unit 3 and the corresponding line of the transmission cable 4 are formed by the metal member 5. The negative contact of the conductive contact 33 of the single-wire single-it 3 is mutually corresponding to the other hiding and browsing 4, and the mutual conduction is formed by the other metal member 5, and the purpose of the present invention can be achieved. In addition, the plurality of sharp ends 54 of the metal member 5 can also be selected from the end of the direct unit 3 and directly pierced to the conductive contacts 33 and the metal wires 41, and the metal wires 41 and the conductive contacts 33 are electrically connected, so that the structural shape thereof is The design of the puncturing portion 52 can also be omitted. In summary, the present invention has a cable module with a light-emitting component, a system that uses a flexible cable to replace a printed circuit board or a flexible circuit board that is used, and a structure that uses a metal member to pierce the interference. Flexible cable and transmission cable, so not only simple structure

可解決習知技術所造成之製造成本增加的問題。P 為針對柄作-贿佳之可行實施例 1 惟5亥貫施例並非用以限定本創作之申請專利 靶圍’凡其它未脫離本釗作所揭示之技藝精神下所完成 M432161 之均等變化與修飾變更,均應包含於本創作所涵蓋之專 利範圍中。 【圖式簡單說明】 第一圖係本創作之設有發光元件之排線模組的立體示 意圖。 第二圖係第一圖之設有發光元件之排線模組的立體分 解示意圖。 • 第三圖係第二圖之設有發光元件之排線模組於組裝時 的局部放大示意圖。 第四圖係第一圖之設有發光元件之排線模組沿著A A線 段的剖面示意圖。 【主要元件符號說明】 1 排線模組 $ 2 發光元件 3 排線單元 31 金屬導線 32 絕緣層 33 導電接點 34 側面 35 另一側面 傳輸線纜 8 4 M432161 金屬導線 金屬件 本體部 刺破部 折彎部 尖銳端 對接端子 絕緣本體 插槽The problem of increased manufacturing costs caused by the prior art can be solved. P is a feasible example for the handle-bribe. The only example is that it is not intended to limit the scope of the patent application of this creation. Modifications should be included in the scope of the patent covered by this creation. [Simple description of the drawings] The first figure is a perspective view of the cable module with the light-emitting elements of the present invention. The second figure is a three-dimensional decomposition diagram of the cable module with the light-emitting elements in the first figure. • The third figure is a partially enlarged schematic view of the cable module with the light-emitting elements in the second figure during assembly. The fourth figure is a schematic cross-sectional view of the cable module with the light-emitting elements in the first figure along the A A line. [Main component symbol description] 1 Cable module $ 2 Light-emitting element 3 Cable unit 31 Metal wire 32 Insulation layer 33 Conductive contact 34 Side 35 Other side transmission cable 8 4 M432161 Metal wire metal part body piercing Bent sharp end butt terminal insulation body slot

Claims (1)

^ 101/3孝申請補充修正 ^、申請專利範圍: 1〜種設有發光元件之排線模組,包括: 〜排線單元,該排線單元包括平行排列之複數第一金屬 導線及包覆該些第一金屬導線之絕緣層,複數發光元件 A置於該排線單元並與該些第一金屬導線形成電性連 接,於該排線單元末端形成二導電接點; 〜傳輸線纔,對應於該二導電接點設置於該排線單元末 &amp;上,該傳輸線纜設有一第二金屬導線;及 二金屬件,該金屬件係設有至少一尖銳端以刺破該排線 單兀,且該金屬件接觸於該導電接點與該第二金屬導 線,使得該排線單元與該傳輸線纜形成電性導通。 2、 如請求項1所述之設有發光元件之排線模組,其中該金 屬件包括一本體部、連接於該本體部之複數刺破部 接於該些刺破部之複數折彎部及連接於該些折彎部之= 些尖銳端,該本體部抵靠於該排線單元之一側面,= 破部係從該側面刺破該排線單元至另一側面,兮4 L利 喝折彎部 延伸至該傳輸線纜上,該尖銳端係刺破該傳輸線纜並邀 該第二金屬導線以及該導電接點形成接觸導通。 、 3、 如請求項2所述之設有發光元件之排線模組,其中1小 銳端係刺破該第二金屬導線以及該導電接點。 次 4、 如請求項2所述之設有發光元件之排線模、组,其中&gt; 銳端係刺破該第二金屬導線並且接觸該導電接點。&quot;次 101/;3/J申請補充修正 、如請求項2所述之設有發光元件之排線模組,其中該導 電接點係位於該排線單元之該另一側面上,該傳輸線纔 位於該導電接點上。 、如請求項5所述之設有發光元件之排線模組,其中該折 彎部係沿著該傳輸線纜的圓周外形折彎延伸至接近於該 傳輸線纜上距離該排線單元的最遠處,該折彎部末端連 接之該尖銳端係在鄰近於該最遠處刺破該傳輸線纔且 該尖銳端朝著該導電接點延伸並刺破該第二金屬導線。 、如請求項丨所述之設有發光元件之排線模組,其中該二 導電接點包括一正極接點及一負極接點,該排線單元之 該正極接點與該傳輸線纜相互對應且藉由該金屬件而形 成相互導通,該排線單元之該負極接點與另一該傳輸線 纜相互對應且藉由另一該金屬件而形成相互導通。月】、 、如睛求項1所述之設有發光元件之排線模組,其中哕此 尖銳端係刺破該排線單元末端與該傳輸線纜末端且直接 刺穿於該導電接點與該第二金屬導線,使得該第_金屬 導線以及該導電接點形成導通。 、如請求項1所述之設有發光元件之排線模組,更包括. 二對接端手,該傳輸線纜之一端設置於該排線單元上 該傳輸線麓之另一端延伸至遠離於該排線單元 該對接 端子設置於該傳輸線纜之該另一端上且電性連接該傳 線纜;及 輸 M432161 一絕緣本體,該絕緣本體設有插槽可容置該對接端子, 該對接端子與該絕緣本體係形成一連接器結構。 10、如請求項1至請求項9中任一項所述之設有發光元件之 排線模組,其中該金屬件更包括一挾持部,該挾持部係 干涉固定該傳輸線纜。^ 101/3 filial application supplementary correction ^, the scope of application for patents: 1 ~ a cable module with light-emitting components, including: ~ cable unit, the cable unit includes a plurality of first metal wires and coatings arranged in parallel The insulating layer of the first metal wires, the plurality of light-emitting elements A are disposed in the cable unit and electrically connected to the first metal wires, and two conductive contacts are formed at the ends of the wire-connecting unit; The two conductive contacts are disposed at the end of the cable unit &amp; the transmission cable is provided with a second metal wire; and two metal members are provided with at least one sharp end to pierce the cable And the metal member contacts the conductive contact and the second metal wire, so that the cable unit is electrically connected to the transmission cable. 2. The cable module of claim 1, wherein the metal member comprises a body portion, and the plurality of piercing portions connected to the body portion are connected to the plurality of bend portions of the piercing portions. And some sharp ends connected to the bent portions, the body portion abuts against one side of the wire arranging unit, and the broken portion pierces the wire arranging unit from the side to the other side, The drinking bend extends to the transmission cable, the sharp end pierces the transmission cable and invites the second metal wire and the conductive contact to form a contact conduction. 3. The cable module of claim 2, wherein a small sharp end pierces the second metal wire and the conductive contact. The wiring die and the group provided with the light-emitting element according to claim 2, wherein the sharp end pierces the second metal wire and contacts the conductive contact. &lt; </ RTI> <RTIgt; </ RTI> <RTIgt; </ RTI> <RTIgt; </ RTI> <RTIgt; </ RTI> <RTIgt; </ RTI> <RTIgt; </ RTI> <RTIgt; </ RTI> <RTIgt; It is located on the conductive contact. The cable module of claim 5, wherein the bent portion is bent along a circumferential shape of the transmission cable to be close to a distance from the transmission cable to the farthest from the cable unit. Wherein the sharp end of the end of the bend is pierced by the transmission line adjacent to the farthest point and the sharp end extends toward the conductive joint and pierces the second metal wire. The cable module of the present invention, wherein the two conductive contacts comprise a positive contact and a negative contact, and the positive contact of the cable unit and the transmission cable correspond to each other. And forming a mutual conduction by the metal member, the negative electrode contact of the wire arranging unit and the other of the transmission cables are mutually corresponding and formed to be electrically connected to each other by the other metal member. The cable module having the light-emitting element according to Item 1, wherein the sharp end pierces the end of the cable unit and the end of the transmission cable and directly penetrates the conductive contact The second metal wire is such that the first metal wire and the conductive contact form a conduction. The cable module having the light-emitting component according to claim 1, further comprising: a two-butt end, one end of the transmission cable is disposed on the cable unit, and the other end of the transmission wire extends away from the row The docking terminal is disposed on the other end of the transmission cable and electrically connected to the transmission cable; and the M432161 is an insulative housing, the insulative housing is provided with a slot for receiving the mating terminal, the mating terminal and the The insulating system forms a connector structure. The cable module provided with the light-emitting element according to any one of claims 1 to 9, wherein the metal member further comprises a holding portion that interferes with fixing the transmission cable.
TW100223251U 2011-12-08 2011-12-08 Flat cable module with light emitting element TWM432161U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI586057B (en) * 2016-04-08 2017-06-01 安費諾亮泰企業股份有限公司 Connector structure for flexible light strip

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI586057B (en) * 2016-04-08 2017-06-01 安費諾亮泰企業股份有限公司 Connector structure for flexible light strip
US9685720B1 (en) 2016-04-08 2017-06-20 Amphenol Ltw Technology Co., Ltd. Connector structure for flexible light strip

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