TWI360149B - Flat light source and electrode structure thereof - Google Patents

Flat light source and electrode structure thereof Download PDF

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TWI360149B
TWI360149B TW96132413A TW96132413A TWI360149B TW I360149 B TWI360149 B TW I360149B TW 96132413 A TW96132413 A TW 96132413A TW 96132413 A TW96132413 A TW 96132413A TW I360149 B TWI360149 B TW I360149B
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electrode
light source
electrode structure
planar light
substrate
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TW96132413A
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Chinese (zh)
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TW200910409A (en
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mei hui Huang
Wei Chung Cheng
Kung Tung Pan
Shih Hsien Lin
chao wei Yang
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Delta Electronics Inc
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1360149 六、發明說明: 【發明所屬之技術領域】 [0001] 本發明係關於一種光源及其電極锋構 面光源及其電極結構。 特別關於一種平 100年10月19日後正1360149 VI. Description of the Invention: [Technical Field of the Invention] [0001] The present invention relates to a light source and an electrode front surface light source thereof and an electrode structure thereof. Especially about a kind of flat after October 19, 100

[0002] [0003] [0004] [0005] .096132413 【先前技術】 近年來,電視的顯示榮幕漸以液晶顯示面板(lcd卿_ ⑴為主流。由於液晶_面板本身並不具有發光的功 f·;故在液晶顯“板下方,設置-背光模組(baCk- llght—le)以提供光躁,進而達到顯示的功能。 因液晶顯示面板尺寸日漸抛女 句度要求讀來愈高,”以料背祕組發光的均 。其中該平面光源之平面鸯光^之光源屬於平面光源Lamp,FFL)是-種電毁發光=Flat fluorescent 效率及均勻性,可符合背光榲:具有良好的發光 俜組對於光均勻性的要求。 平面螢光燈係主要是利用介電層放電原理,產生二次電 子’與氣體放電腔中的惰性氣體產生碰撞,—部分氣體 離子化,—部分形絲發態的原子。待激«原子放射 紫外光回到基態時,所放射之紫外光會進—步激發平面 螢光燈申的螢光體,轉而產生可見光。 請參照第1圖所示,-種習知之平面螢光燈1〇之結構係主 要包括一第-基板11、一第二基板12、一氣體放電腔13 以及-電極層14。第-基板^係具有一第一螢光層⑴, 第二基板12係具有-第二螢光層121與第—螢光層U1相 對而設。第二基板12係具有-反射層122設置於第二基板 12與第二螢光層121之間《氣體玫電腔13係夾置於第一螢 表單編號A0101 第3頁/共18頁 1003384235-0 1360149 _._— loo年.10月19日梭正替換π 光層111與第二螢光層121之間,並填充有惰性氣體。另 外,至少一支撐柱15設置於第一基板11與第二基板12之 間。電極層14係至少包括一對電極14a及14b,並以網印 方式塗佈含金屬材料之玻璃膏藉由蒸鍍方式設置於第二 基板12上,再將一介電層16覆蓋電極層14以為保護之用[0002] [0003] [0005] [096] .096132413 [Prior Art] In recent years, the display screen of television has gradually become a liquid crystal display panel (lcdqing _ (1) is the mainstream. Since the liquid crystal _ panel itself does not have the work of illuminating f·; Therefore, under the LCD display panel, the backlight module (baCk-llght-le) is provided to provide the aperture to achieve the display function. The higher the size of the liquid crystal display panel is, the higher the reading is required. "The light of the plane back light group is light. The light source of the plane light source belongs to the plane light source Lamp, FFL) is a type of electric light ray = Flat fluorescent efficiency and uniformity, can meet the backlight 榲: has a good The requirement of light uniformity for the luminescent group. The planar fluorescent lamp system mainly utilizes the dielectric layer discharge principle to generate a collision between the secondary electron 'and the inert gas in the gas discharge chamber, - part of the gas ionization, and a part of the filament-shaped atom. When the atomic radiation returns to the ground state, the emitted ultraviolet light will inject the phosphor of the planar fluorescent lamp to produce visible light. Referring to Fig. 1, a conventional planar fluorescent lamp has a structure including a first substrate 11, a second substrate 12, a gas discharge chamber 13, and an electrode layer 14. The first substrate has a first phosphor layer (1), and the second substrate 12 has a second phosphor layer 121 opposite to the first phosphor layer U1. The second substrate 12 has a reflective layer 122 disposed between the second substrate 12 and the second phosphor layer 121. The gas chamber 13 is sandwiched between the first and second forms of the form A0101, page 3 / page 18, 1003384235- 0 1360149 _._— loo year. On October 19, the shuttle is replacing between the π-light layer 111 and the second phosphor layer 121, and is filled with an inert gas. In addition, at least one support post 15 is disposed between the first substrate 11 and the second substrate 12. The electrode layer 14 includes at least a pair of electrodes 14a and 14b, and the glass paste containing the metal material is screen-printed on the second substrate 12 by vapor deposition, and the dielectric layer 16 is covered by the dielectric layer 16. Thought of protection

[0006] 在平面螢光燈的點亮過程中,主要是藉由該對電極14a及 14b發射電子與氣體放電腔13内部的惰性氣體產生碰撞, 並將惰性氣體離子化或激發以形成電漿。之後,電漿中 被激發的激態原子會以放射紫外光的方式回到基態,且 所放射之紫外光會進一步激發第一螢光層111及第二螢光 層121,以產生可見光。 [0007] 然而,習知平面螢光燈的電極層14為層狀構造,且電極 圖案線條較細,不僅可放電之面積受到限制,且電極層 14發熱快,導致其與第二基板12之密合處易產生裂縫。 另一方面,含金屬材料之玻璃膏,以網印方式塗佈的製 程易產生多孔隙現象造成電阻值增加及易吸濕現象而減 少使用壽命β [0008] 因此,如何提供一種平面光源及其電極結構,使平面光 源能夠提高電極放電效率,使發光均勻化,並增加電極 之散熱功能,實為當前重要課題之一。 【發明内容】 [0009] 有鑑於上述課題,本發明之目的為提供一種平面光源及 其電極結構,藉由改變電極結構以提升發光之均勻效果 ,提升電極放電效率,增加電極之散熱功能,並減低功 096132413 表單编號 Α0101 第 4 頁/共 18 頁 1003384235-0 1360149 100年10月19日按正替換頁 率損耗。 [0010] 緣是,為達上述目的,依據本發明之一種平面光源的電 極結構,平面光源依序具有一第一基板、一氣體放電腔 及一第二基板。第一基板具有一第一螢光層,第二基板 具有一第二螢光層與第一螢光層相對而設。氣體放電腔 係位於第一螢光層與第二螢光層之間且填充有惰性氣體[0006] In the lighting process of the planar fluorescent lamp, the electrons emitted from the pair of electrodes 14a and 14b are mainly collided with the inert gas inside the gas discharge chamber 13, and the inert gas is ionized or excited to form a plasma. . Thereafter, the excited excited atoms in the plasma return to the ground state by emitting ultraviolet light, and the emitted ultraviolet light further excites the first phosphor layer 111 and the second phosphor layer 121 to generate visible light. [0007] However, the electrode layer 14 of the conventional planar fluorescent lamp has a layered structure, and the electrode pattern lines are thinner, not only the area where the discharge can be discharged is limited, but also the electrode layer 14 generates heat quickly, resulting in its connection with the second substrate 12. The joint is prone to cracks. On the other hand, the glass paste containing metal materials, the process of screen printing is easy to produce multi-porosity, which causes an increase in resistance value and a hygroscopic phenomenon to reduce the service life β [0008] Therefore, how to provide a planar light source and The electrode structure makes the planar light source improve the discharge efficiency of the electrode, homogenizes the luminescence, and increases the heat dissipation function of the electrode, which is one of the current important topics. SUMMARY OF THE INVENTION [0009] In view of the above problems, the object of the present invention is to provide a planar light source and its electrode structure, by changing the electrode structure to enhance the uniform effect of light emission, improve electrode discharge efficiency, increase the heat dissipation function of the electrode, and Reduced work 096132413 Form number Α 0101 Page 4 of 18 1003384235-0 1360149 October 19, 100, according to the positive replacement page rate loss. [0010] The edge is that, in order to achieve the above object, according to the electrode structure of the planar light source of the present invention, the planar light source sequentially has a first substrate, a gas discharge chamber and a second substrate. The first substrate has a first phosphor layer, and the second substrate has a second phosphor layer opposite to the first phosphor layer. The gas discharge chamber is located between the first phosphor layer and the second phosphor layer and is filled with an inert gas

。電極結構係設置於氣體放電腔内且包括至少一對電極 管,各電極管包括一絕緣管體以及一導電溶液,導電溶 液係容置於絕緣管體内。 [0011] 承上所述,依據本發明之一種平面光源及其電極結構藉 由將導電溶液容置於絕緣管體内,並改變該對電極之形 狀,以形成平面光源之導電電極。與習知技術相較,本 發明之電極結構能增加電極與放電氣體之放電區域,提 升電極之放電效率,並使發光更均勻,且能增加電極之 散熱功能,延長平面光源之使用壽命。 【實施方式】 [0012] 以下將參照相關圖式,說明依據本發明較佳實施例之平 面光源及其電極結構,其中相同的元件將以相同的符號 加以說明。 [0013] 第2A圖為依據本發明一較佳實施例之平面光源的示意圖. The electrode structure is disposed in the gas discharge chamber and includes at least one pair of electrode tubes, each electrode tube includes an insulating tube body and a conductive solution, and the conductive solution is housed in the insulating tube body. [0011] As described above, a planar light source and an electrode structure thereof according to the present invention are formed by accommodating a conductive solution in an insulating tube and changing the shape of the pair of electrodes to form a conductive electrode of a planar light source. Compared with the prior art, the electrode structure of the present invention can increase the discharge area of the electrode and the discharge gas, improve the discharge efficiency of the electrode, and make the light emission more uniform, and can increase the heat dissipation function of the electrode and prolong the service life of the planar light source. [Embodiment] A planar light source and an electrode structure thereof according to a preferred embodiment of the present invention will be described with reference to the accompanying drawings, wherein the same elements will be described with the same reference numerals. 2A is a schematic diagram of a planar light source in accordance with a preferred embodiment of the present invention.

,以及第2B圖為第2A圖的部分放大截面圖。如第2A及2B 圖所示,該平面光源20包括一第一基板21、一第二基板 22、一氣體放電腔23以及一電極結構24。其中第一基板 21係具有一第一螢光層211,第二基板22係具有一第二螢 光層221,並與第一螢光層211相對而設。第二基板22係 096132413 表單編號 A0101 第 5 頁/共 18 頁 1003384235-0 1360149 100年10月19日核正替^頁 更具有一反射層222,其係設置於第二螢光層221與第二 基板22之間。其中第一基板21與第二基板22之間係為一 密封結構。氣體放電腔23係位於第一螢光層211與第二螢 光層221之間,並填充惰性氣體,例如氤氣(xenon, Xe )或氖氣(neon, Ne )。 [0014] 電極結構24係設置於氣體放電腔23内,並具有至少一對 電極管24a及24b,各電極管24a及24b包括一絕緣管體 241及一導電溶液242,導電溶液242係可為水溶液或電 解質溶液,並容置於絕緣管體241内。絕緣管體241係可 為透明或非透明。其中若絕緣管體241係以如玻璃管的透 明材料所構成,則可增加平面光源20的光穿透率與及光 均勻性;若為非透明材料,則可選擇將一螢光粉(圖未 顯示)塗佈於絕緣管體241的外表面。第二基板22更具有 至少一條狀凸起26與該對電極管24a及24b相互垂直;條 狀凸起26之材質可為氧化鎂、氧化鋁或硫酸鋇等具反射 光線之材料。 [0015] 平面光源20更包括一電源供應器27及另一對電極管24a’ 及24b’,且設置於第一基板21及第二基板22之外,以各 別形成單一回路(如圖中箭號所示)。經電源供應器27 電性連接後,使該對電極管24a’及24b’通電。 [0016] 在本實施例中,由於電極管24a及24b在氣體放電腔23為 呈相對分布,其管狀對應之表面積大於層狀對應之表面 積,因此管狀電極之放電區域大於習用之層狀電極之放 電區域。And FIG. 2B is a partially enlarged cross-sectional view of FIG. 2A. As shown in FIGS. 2A and 2B, the planar light source 20 includes a first substrate 21, a second substrate 22, a gas discharge chamber 23, and an electrode structure 24. The first substrate 21 has a first phosphor layer 211, and the second substrate 22 has a second phosphor layer 221 opposite to the first phosphor layer 211. The second substrate 22 is 096132413 Form No. A0101 Page 5 of 18 1003384235-0 1360149 On October 19, 100, the core has a reflective layer 222 which is disposed on the second phosphor layer 221 and the first Between the two substrates 22. The first substrate 21 and the second substrate 22 are sealed together. The gas discharge chamber 23 is located between the first phosphor layer 211 and the second phosphor layer 221 and is filled with an inert gas such as xenon (Xe) or xenon (Ne). [0014] The electrode structure 24 is disposed in the gas discharge chamber 23, and has at least one pair of electrode tubes 24a and 24b. Each of the electrode tubes 24a and 24b includes an insulating tube body 241 and a conductive solution 242. The conductive solution 242 can be An aqueous solution or an electrolyte solution is accommodated in the insulating tube body 241. The insulating tube body 241 can be transparent or non-transparent. Wherein, if the insulating tube body 241 is formed of a transparent material such as a glass tube, the light transmittance and the light uniformity of the planar light source 20 can be increased; if it is a non-transparent material, a fluorescent powder can be selected (Fig. Not shown) applied to the outer surface of the insulating tube body 241. The second substrate 22 further has at least one strip-shaped protrusion 26 perpendicular to the pair of electrode tubes 24a and 24b; the strip-shaped protrusion 26 may be made of a material having reflected light such as magnesium oxide, aluminum oxide or barium sulfate. [0015] The planar light source 20 further includes a power supply 27 and another pair of electrode tubes 24a' and 24b', and is disposed outside the first substrate 21 and the second substrate 22 to form a single loop respectively (as shown in the figure). The arrow is shown). After the power supply 27 is electrically connected, the pair of electrode tubes 24a' and 24b' are energized. [0016] In the present embodiment, since the electrode tubes 24a and 24b are relatively distributed in the gas discharge chamber 23, and the tubular corresponding surface area is larger than the layered corresponding surface area, the discharge area of the tubular electrode is larger than the conventional layered electrode. Discharge area.

096132413 表單編號A0101 1003384235-0 1360149 100年.10月19日修正替換頁 [0017] 復參照第3A至3C圖所示,一對電極管34a及34b係可呈蜿 蜒狀平行設置(如第3A圖所示),需注意的是,該對電 極管34a及34b之凸部需對應凸部相對而設置。如第3B圖 所示,一對電極管44a及44b或可呈竹節狀設置,其係增 設至少一透明玻璃管G,且各電極管44a及44b之玻璃管G 係相對應設置。如第3C圖所示,一對電極管54a及54b亦 可相互捲繞呈一螺旋狀排列。096132413 Form No. A0101 1003384235-0 1360149 100. October 19th Revision Replacement Page [0017] Referring to Figures 3A to 3C, a pair of electrode tubes 34a and 34b may be arranged in parallel in a meandering manner (e.g., 3A). As shown in the figure, it should be noted that the convex portions of the pair of electrode tubes 34a and 34b are disposed corresponding to the convex portions. As shown in Fig. 3B, a pair of electrode tubes 44a and 44b may be provided in a bamboo-like shape, and at least one transparent glass tube G is added, and the glass tubes G of the electrode tubes 44a and 44b are disposed correspondingly. As shown in Fig. 3C, the pair of electrode tubes 54a and 54b may be wound around each other in a spiral shape.

[0018] 請參照第4圖所示,平面光源20之電極結構24之複數對電 極管24a及24b的配置及其電性連接方式。其中二對相鄰 之電極管24a及24b各自與該對電極管24a’及24b’形成單 一回路,再成對並聯配置,並由電源供應器27電性連接 。需注意的是,因電極結構24具有導電溶液流動循環, 故可將電極通電後所產生之熱能帶出(如圖中箭號所示 ),兼具散熱之功效。[0018] Referring to FIG. 4, the arrangement of the plurality of electrode structures 24 of the planar light source 20 to the electrodes 24a and 24b and their electrical connection. Two pairs of adjacent electrode tubes 24a and 24b are formed in a single circuit with the pair of electrode tubes 24a' and 24b', and are arranged in parallel in pairs, and are electrically connected by a power supply unit 27. It should be noted that since the electrode structure 24 has a conductive solution flow cycle, the heat energy generated by energizing the electrode can be taken out (as indicated by an arrow in the figure), and has the effect of dissipating heat.

請參照第5圖所示,平面光源20之電極結構24之各對電極 24a及24b之另一種電性連接方式。當複數對電極24a及 24b排列設置後,各電極管24a及各電極管24b係相互連 接形成串聯配置。再藉由電極管24a’及24b’與電源供應 器27電性連接。如此設計可減少電極管24a’及24b’之數 量配置,更增加電極結構設計之彈性。 綜上所述,本發明之平面光源及其電極結構藉由將導電 溶液容置於絕緣管體内,並改變該對電極之形狀,以形 成平面光源之導電電極。相較於習知技術,本發明之電 極結構能增加電極與放電氣體之放電區域,提升電極之 放電效率,並使發光更均勻,且能增加電極之散熱功能 096132413 表單編號A0101 第7頁/共18頁 1003384235-0 1360149 100年10月19日按正替換頁 ,延長平面光源之使用壽命。 以上所述僅為舉例性,而非為限制性者。任何未脫離本 發明之精神與範疇,而對其進行之等效修改或變更,均 應包含於後附之申請專利範圍中。 【圖式簡單說明】 [0019] 第1圖為一種習知平面螢光燈及其電極結構之示意圖; 第2 A圖為本發明較佳實施例之一種平面光源及其電極結 構之示意圖;Referring to Fig. 5, another type of electrical connection of the pair of electrodes 24a and 24b of the electrode structure 24 of the planar light source 20 is shown. When the plurality of counter electrodes 24a and 24b are arranged in series, the electrode tubes 24a and the electrode tubes 24b are connected to each other to form a series arrangement. Further, the electrode tubes 24a' and 24b' are electrically connected to the power supply unit 27. Such a design can reduce the number of configurations of the electrode tubes 24a' and 24b', and further increase the flexibility of the electrode structure design. In summary, the planar light source of the present invention and its electrode structure form a conductive electrode of a planar light source by accommodating a conductive solution in the insulating tube body and changing the shape of the pair of electrodes. Compared with the prior art, the electrode structure of the invention can increase the discharge area of the electrode and the discharge gas, improve the discharge efficiency of the electrode, and make the illumination more uniform, and can increase the heat dissipation function of the electrode 096132413 Form No. A0101 Page 7 / Total Page 18, 1003384235-0 1360149 On October 19, 100, according to the replacement page, the service life of the planar light source is extended. The above is intended to be illustrative only and not limiting. Any equivalent modifications or alterations to the spirit and scope of the invention are intended to be included in the scope of the appended claims. BRIEF DESCRIPTION OF THE DRAWINGS [0019] FIG. 1 is a schematic view of a conventional planar fluorescent lamp and its electrode structure; FIG. 2A is a schematic view showing a planar light source and an electrode structure thereof according to a preferred embodiment of the present invention;

第2B圖為第2A圖之部分放大截面圖; 第3A至3C圖為本發明之電極結構具有不同變化態樣之示 意圖; 第4圖為本發明較佳實施例之電極結構之配置及電性連接 之示意圖;以及 第5圖為本發明較佳實施例之另一種電極結構之配置及電 性連接之示意圖。 【主要元件符號說明】 [0020] 10:平面螢光燈 20 :平面光源 11、 21 :第一基板 111、211 :第一螢光層 12、 22 :第二基板 121、 221 :第二螢光層 122、 222 :反射層 13、 23 :氣體放電腔 14 :電極層 096132413 表單编號A0101 第8頁/共18頁 1003384235-0 13601492B is a partial enlarged cross-sectional view of FIG. 2A; FIGS. 3A to 3C are schematic views showing different variations of the electrode structure of the present invention; FIG. 4 is a view showing the configuration and electrical properties of the electrode structure of the preferred embodiment of the present invention; FIG. 5 is a schematic view showing the arrangement and electrical connection of another electrode structure according to a preferred embodiment of the present invention. [Main component symbol description] [0020] 10: planar fluorescent lamp 20: planar light source 11, 21: first substrate 111, 211: first fluorescent layer 12, 22: second substrate 121, 221: second fluorescent Layers 122, 222: reflective layers 13, 23: gas discharge chamber 14: electrode layer 096132413 Form No. A0101 Page 8 of 18 1003384235-0 1360149

100年.10月19日修正替换頁 14a、14b :電極 15 :支撐枉 16 :介電層 24 :電極結構 24a ' 24b ' 24a* '241/、34a、34b、44a、44b、54a 、54b :電極管 241 :絕緣管體 242 :導電溶液 26 :條狀凸起 27 :電源供應器 G :玻璃管 1003384235-0 096132413 表單編號A0101 第9頁/共18頁100 years. October 19th revised replacement page 14a, 14b: electrode 15: support 枉 16: dielectric layer 24: electrode structure 24a ' 24b ' 24a * '241 /, 34a, 34b, 44a, 44b, 54a, 54b: Electrode tube 241: Insulating tube body 242: Conductive solution 26: Strip-like protrusion 27: Power supply G: Glass tube 1003384235-0 096132413 Form No. A0101 Page 9 of 18

Claims (1)

1360149 100年10月19日修正替换頁 七、申請專利範圍: 1 . 一種平面光源的電極結構,該平面光源依序具有一第一基 板、一氣體放電腔及一第二基板,該第一基板具有一第一 螢光層,該第二基板具有一第二螢光層與該第一螢光層相 對而設,該氣體放電腔係位於該第一螢光層與該第二螢光 層之間,該電極結構設置於該氣體放電腔内,該電極結構 包括: 至少一電極管對,各該電極管包括: 一絕緣管體;以及 一導電溶液,其係容置於該絕緣管體内。 :.如申請專利範圍第1項所述之電極結構,其中該電極管係 呈蜿蜒狀、竹節狀或螺旋狀配置。 其中該絕緣管體 其中該絕緣管體 其中該絕緣管體 其中該螢光粉係 •如申請專利範圍第1項所述之電極結構 係為透明或非透明β .如申請專利範圍第3項所述之電極結構 係為玻璃。 •如申明專利範圍第1項所述之電極結構 係包括一螢光粉。 .如申請專利範圍第5項所述之電極結構 塗佈於該絕緣管體的表面。 .如申請專利範圍第1項所述之電極結構,其中該電極管對 係與其他電極管對並聯或串聯。 利範圍第1項所述之電極結構,其中該導電溶液 係為水溶液或電解質溶液。 .如申請專利範圍第1項所述之· 屯極結構,其中該第二基板 096132413 表單編號A0101 1003384235-0 第10頁/共18頁 1360149 10 11 12 13 14 15 16 17 _32413 100年10月19日修正替换頁 係更具有至少一條狀凸起。 如申請專利範圍第9項所述之電極結構 狀凸起係與該電極管對相互垂直。 如申請專利範圍第9項所述之電極結構 狀凸起之材質為具反射光線之材料。 如申請專利範圍第11項所述之電極結構,其中該至少 狀凸起之材質為氧化鎂、氧化鋁或硫酸鋇。 如申請專利範圍第1項所述之電極結構,其中該第二基板 係更具有-反射層,其料置於該第二螢光層與該第二基 板之間》 如申請專利範圍第i項所述之電極結構,其中該氣體放電 腔填充有惰性氣體》 如申請專職圍第U項所述之電極結構,其中該惰性氣體 包括氙氣或氖氣。 如申請專利制第I摘述之電極結構,其中該平面光源 係為一平面榮光燈》 —種平面光源,包括: 第一基板,其係具有一第一榮光層;第'—基板’其係具有一第-卷& 弟一螢先層與該第一螢光層相對 而設; 一氣體放電腔,其係位於該第1光層與該第二螢光層之 間;以及—電極結構,其係設置於該氣體放電腔内,並具有至少— 第-電極管對,各該電極管包括—絕緣管體及—導電溶液 ,該導電溶液容置於該絕緣管體内。 如申請專利範圍第Π項所述之平面光源,其中該第一電極 表單編號Α0101 第11頁/共U百 其中該至少一條 其中該至少一條 條 1003384235-0 18 ^00149 ^00149 096132413 19 20 21 22 23 24 25 26 27 28 29 100年10月19日 1003384235-0 營對係呈蜿蜒狀、竹節狀或螺旋狀配置。 .2請專利範圍第17項所述之平面光源,其中該絕緣管體 係為透明或非透明。 • ^請專利翻錯項所述之平面光源,其中該絕緣管體 係為玻璃》 ’請專利範圍第17項所述之平面光源,其中該絕緣管體 係包括一螢光粉》 • ^請專利第21_叙平面切,其中該螢光粉係 塗佈於該絕緣管體的表面。 .^申請專利範圍第17項所述之平面光源,其中該第一電極 f對係與其他第一電極管對並聯或串聯。 .如申請專利第17項所述之平面光源,其中該導電溶液 係為水溶液或電解質溶液。 .如申請專利範圍第Π項所述之平面光源,其中該第二基板 係更具有至少一條狀凸起。 .如申請專利範圍第25項所述之平面光源,其中該至少一條 狀凸起係與該至少一第一電極管對相互垂直。 如申請專利範圍第25項所述之平面光源,其中該至少一條 狀凸起之材質為具反射光線之材料。 如申請專利範圍第27項所述之平面光源,其中該至少一條 狀凸起之材質為氧化鎮、氧化铭或硫酸钥。 如申請專利範圍第17項所述之平面光源,其中該第二基板 係更具有-反射層,其係設置於該第二螢光層與該第二基 板之間。 如申請專利範圍第17項所述之平面光源,其更包括一電源 供應器’其係與該至少-第—電極管對電性連接。 表單編號A0101 第12頁/共18頁 30 . 1360149 31 32 100年10月19日核正替換頁 如申請專利範圍第30項所述之平面光源,其更包括第二電 極管設置於該第一及第二基板之外,且與該電源供應器電 性連接。 如申請專利範圍第17項所述之平面光源,其係為一平面螢 光燈。1360149 October 19, 100 revised replacement page VII, the scope of application patent: 1. An electrode structure of a planar light source, the planar light source sequentially has a first substrate, a gas discharge chamber and a second substrate, the first substrate Having a first phosphor layer, the second substrate has a second phosphor layer opposite to the first phosphor layer, and the gas discharge chamber is located between the first phosphor layer and the second phosphor layer The electrode structure is disposed in the gas discharge chamber. The electrode structure comprises: at least one electrode tube pair, each of the electrode tubes comprises: an insulating tube body; and a conductive solution disposed in the insulating tube body . The electrode structure according to claim 1, wherein the electrode tube is in a braided, bamboo-like or spiral configuration. Wherein the insulating tube body is the insulating tube body, wherein the insulating tube body comprises the phosphor powder system. The electrode structure according to claim 1 is transparent or non-transparent β. As claimed in claim 3 The electrode structure described is glass. • The electrode structure as recited in claim 1 includes a phosphor. The electrode structure as described in claim 5 is applied to the surface of the insulating tube body. The electrode structure of claim 1, wherein the electrode tube pair is connected in parallel or in series with other electrode tube pairs. The electrode structure of item 1, wherein the conductive solution is an aqueous solution or an electrolyte solution. The dipole structure as described in claim 1, wherein the second substrate 096132413 form number A0101 1003384235-0 page 10 / total 18 pages 1360149 10 11 12 13 14 15 16 17 _32413 100 years October 19 The day correction replacement page has at least one piece of protrusion. The electrode structure-like projections as described in claim 9 are perpendicular to the pair of electrode tubes. The material of the electrode structure as described in claim 9 is a material having reflected light. The electrode structure according to claim 11, wherein the at least protrusion is made of magnesium oxide, aluminum oxide or barium sulfate. The electrode structure of claim 1, wherein the second substrate further has a reflective layer disposed between the second fluorescent layer and the second substrate. The electrode structure, wherein the gas discharge chamber is filled with an inert gas, such as the electrode structure described in the U.S. Patent Application Serial No. U, wherein the inert gas comprises helium or neon. For example, the electrode structure of the first aspect of the patent application system, wherein the planar light source is a planar glare lamp, a planar light source, comprising: a first substrate having a first glory layer; and a '-substrate' Having a first-volume-ample-first layer opposite to the first phosphor layer; a gas discharge chamber between the first light layer and the second phosphor layer; and - an electrode structure The system is disposed in the gas discharge chamber and has at least a first-electrode tube pair, each of the electrode tubes includes an insulating tube body and a conductive solution, and the conductive solution is received in the insulating tube body. The planar light source of claim 2, wherein the first electrode form number Α0101, page 11 / total U hundred, wherein the at least one of the at least one strip is 1003384235-0 18 ^00149 ^00149 096132413 19 20 21 22 23 24 25 26 27 28 29 October 19, 100 1003384235-0 The camp is in a braided, bamboo-like or spiral configuration. [2] The planar light source of claim 17, wherein the insulating tube body is transparent or non-transparent. • ^Please refer to the planar light source described in the patent, wherein the insulating tube system is glass. 'Please refer to the planar light source mentioned in Item 17 of the patent range, wherein the insulating tube system includes a fluorescent powder. 21_ The plane is cut, wherein the phosphor powder is applied to the surface of the insulating tube body. The planar light source of claim 17, wherein the first electrode f is in parallel or in series with other first electrode tube pairs. The planar light source of claim 17, wherein the conductive solution is an aqueous solution or an electrolyte solution. The planar light source of claim 2, wherein the second substrate further has at least one shape of protrusions. The planar light source of claim 25, wherein the at least one raised protrusion is perpendicular to the at least one first electrode tube pair. The planar light source of claim 25, wherein the material of the at least one protrusion is a material that reflects light. The planar light source of claim 27, wherein the material of the at least one protrusion is oxidized town, oxidized or sulfuric acid. The planar light source of claim 17, wherein the second substrate further has a reflective layer disposed between the second phosphor layer and the second substrate. The planar light source of claim 17, further comprising a power supply unit \\ electrically coupled to the at least - first electrode tube. Form No. A0101, page 12, a total of 18 pages 30. 1360149 31 32 October 19, 100, the nuclear light source of claim 30, further comprising a second electrode tube disposed at the first And outside the second substrate, and electrically connected to the power supply. A planar light source as described in claim 17 is a flat fluorescent lamp. 1003384235-0 096132413 表單編號A0101 第13頁/共18頁1003384235-0 096132413 Form No. A0101 Page 13 of 18
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