TWM298238U - Device for producing electrically conductive antenna - Google Patents

Device for producing electrically conductive antenna Download PDF

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Publication number
TWM298238U
TWM298238U TW95203284U TW95203284U TWM298238U TW M298238 U TWM298238 U TW M298238U TW 95203284 U TW95203284 U TW 95203284U TW 95203284 U TW95203284 U TW 95203284U TW M298238 U TWM298238 U TW M298238U
Authority
TW
Taiwan
Prior art keywords
substrate
printed
manufacturing
washed
plastic film
Prior art date
Application number
TW95203284U
Other languages
Chinese (zh)
Inventor
Yung-Shun Chen
Original Assignee
Taiwan Lamination Ind Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Taiwan Lamination Ind Inc filed Critical Taiwan Lamination Ind Inc
Priority to TW95203284U priority Critical patent/TWM298238U/en
Priority to JP2006006504U priority patent/JP3126334U/en
Publication of TWM298238U publication Critical patent/TWM298238U/en
Priority to DE200720000582 priority patent/DE202007000582U1/en

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Classifications

    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K3/00Apparatus or processes for manufacturing printed circuits
    • H05K3/02Apparatus or processes for manufacturing printed circuits in which the conductive material is applied to the surface of the insulating support and is thereafter removed from such areas of the surface which are not intended for current conducting or shielding
    • H05K3/04Apparatus or processes for manufacturing printed circuits in which the conductive material is applied to the surface of the insulating support and is thereafter removed from such areas of the surface which are not intended for current conducting or shielding the conductive material being removed mechanically, e.g. by punching
    • H05K3/046Apparatus or processes for manufacturing printed circuits in which the conductive material is applied to the surface of the insulating support and is thereafter removed from such areas of the surface which are not intended for current conducting or shielding the conductive material being removed mechanically, e.g. by punching by selective transfer or selective detachment of a conductive layer
    • H05K3/048Apparatus or processes for manufacturing printed circuits in which the conductive material is applied to the surface of the insulating support and is thereafter removed from such areas of the surface which are not intended for current conducting or shielding the conductive material being removed mechanically, e.g. by punching by selective transfer or selective detachment of a conductive layer using a lift-off resist pattern or a release layer pattern
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/12Supports; Mounting means
    • H01Q1/22Supports; Mounting means by structural association with other equipment or articles
    • H01Q1/2208Supports; Mounting means by structural association with other equipment or articles associated with components used in interrogation type services, i.e. in systems for information exchange between an interrogator/reader and a tag/transponder, e.g. in Radio Frequency Identification [RFID] systems
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/36Structural form of radiating elements, e.g. cone, spiral, umbrella; Particular materials used therewith
    • H01Q1/38Structural form of radiating elements, e.g. cone, spiral, umbrella; Particular materials used therewith formed by a conductive layer on an insulating support
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K1/00Printed circuits
    • H05K1/02Details
    • H05K1/03Use of materials for the substrate
    • H05K1/0393Flexible materials

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  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Details Of Aerials (AREA)
  • Manufacturing Of Printed Wiring (AREA)

Description

M298238 八、新型說明: 【新型所屬之技術領域】 本創作有關在-種製造天線震置,特別是指一種提供聚 (PET)基材進行無線射頻(RF)天線的製造裝置。 蚪 【先前技術】 無線射頻觸魏Radio Ffequeney版紐—⑽吗此為利 無線電,來傳送酬資料的系統,其朗非常廣泛,其具有下列優點: 1. 貝料可更新:條碼印刷之後就無法更改,处1〇 TAG則可不限 次數地新增、修改、刪除RFID TAG内儲存的資料。 又 2. 方便貧料辨讀:條碼職n需在近距離而且沒有物體阻播下, 使掃描光賴射在條碼上才能_。咖)TAG只要在無線電波 圍内,即可傳遞訊號。 3·儲存資料的容量大:一維條碼的容量是5〇Bytes;二維條碼最大的 容量可儲存2至3_字元;rfID TAG最大量可達數⑽神卿。 4.可重覆性使用·條碼常隨著商品的壽命結束而結束; 因為本身資料可更新,因此可以重覆不斷地使用。 • 5·可同時讀取數個資料:條碼閱讀器一次只能讀取單一條碼資 料;RFID TAG的辨識器可同時間辨識讀取數個处仍丁他。 6·安全性:RFID TAG讀取方面皆有密碼保護,高度第一厚度安全 性的保護措施使之不易被偽造及變造。 因此全世界最大的零售業龍頭沃爾瑪(Wal-Mart)從2005年1月 1曰開始,正式啟動無線辨識系統(RFID)先導型試驗;美國國防部、 Metro (德國最大連鎖超市)、Best buy (美國電子產品零售巨擘),也 紛紛要求旗下供應商導入或進行RFID相關試驗,也預估到20〇8年 RFID可達30億美元以上規模,到2006年將會使用價值22億美元以 5 M298238 上的標籤。 (FCC°i!rH’請相第1 _示,其絲料難㈣基板 _1為賴。1知軟性銅絲板係以祕亞胺啊恤 芦銅落1’ —侧面分職佈有接著劑(Adhesive)12後,各貼上一 =ΐ 方式製作傳統高成本之軟性銅絲板(FCO0, 本偏高加上狀結構。社雜作姆於原料成 ί相3:ΐ的廢水也會對環境造成很大危害,而處理廢水也會花 降低尸蕕志太因而製程成本、產能效率及彈性往往無法兼顧,在 錄料接受度的_主導下,取代傳_料及製ί _版所發展之印職^饰风场技術,能大 田-成本且符合市場需求與趨勢,這將是取 塑料主要目的,在提供—種製造可導鼓線之織,並係以 有效降低、產能效率提昇外,更具生產彈性。$除μ成本可以 工辈=r次要目的’在提供一種製造可導電天線之裝置,其適合 υ14佳、1m、小且用料符合環保規定。 迻出ίίΐ㈣—目的,在提供—難造可導電天線U,且所製 ,電路圖形’可運用於無線射頻Radi〇F 樣M298238 VIII. New description: [New technical field] This creation is related to the manufacture of antennas, especially a device for manufacturing radio frequency (RF) antennas that provide poly (PET) substrates.蚪[Prior Art] Radio Frequency Touching Radio Ffequeney Edition - (10) This is a system for transmitting radio data, which is very extensive and has the following advantages: 1. The material can be updated: the barcode can not be printed after printing Change, at 1 TAG, you can add, modify, and delete data stored in the RFID TAG as many times as you want. 2. Convenient for poor material reading: The bar code job needs to be at a close distance and there is no object blocking, so that the scanning light can be reflected on the bar code. Coffee) TAG can transmit signals as long as it is within the radio range. 3. The capacity of the stored data is large: the capacity of the one-dimensional barcode is 5 〇 Bytes; the maximum capacity of the two-dimensional barcode can be stored 2 to 3 _ characters; the maximum amount of the rfID TAG is up to the number (10) Shen Qing. 4. Reusable use · Bar codes often end with the end of the life of the product; because the data itself can be updated, it can be used repeatedly. • 5· can read several data at the same time: the bar code reader can only read a single bar code data at a time; the RFID TAG recognizer can recognize and read several places at the same time. 6. Security: RFID TAG reading has password protection, and the protection of the first thickness security is not easy to be forged and altered. Therefore, Wal-Mart, the world's largest retail leader, has officially launched the wireless identification system (RFID) pilot test since January 1, 2005; the US Department of Defense, Metro (Germany's largest supermarket chain), Best buy ( US electronics retail giants have also asked their suppliers to introduce or conduct RFID-related tests. It is also estimated that RFID will reach more than US$3 billion in 20-8 years. By 2006, it will use US$2.2 billion to 5 M298238. The label on it. (FCC°i!rH' please see the first _, the silk material is difficult (four) substrate_1 is Lai. 1 Know the soft copper wire plate with the secret imine 啊 芦 芦 落 落 落 1 ' ' ' 侧面 侧面After the Adhesive 12, each of them is coated with a == method to make a traditional high-cost soft copper wire plate (FCO0, this high and the structure is added. The mixture is made of raw materials into the ί phase 3: ΐ wastewater will also It is very harmful to the environment, and the treatment of wastewater will also reduce the cost of the corpse. Therefore, the cost of the process, the efficiency of the production capacity and the flexibility are often not taken into consideration. Under the guidance of the acceptance of the materials, the development of the ___ Printing and selling the wind field technology, can Daejeon - cost and meet the market demand and trend, this will be the main purpose of taking plastics, in the provision of a kind of manufacturing drum can be woven, and to effectively reduce, productivity efficiency, More production flexibility. In addition to the μ cost, it can be used for the purpose of manufacturing a conductive antenna. It is suitable for υ14, 1m, small and the materials comply with environmental regulations. Move out ίίΐ (4) - purpose, in Provided - difficult to make conductive antenna U, and made, circuit graphics 'applicable Like radio frequency Radi〇F

Flexible Printed Circuit(FPC)^^ 為達上述的目的,本創作提供―種製造可導電天線之裝置,並係 6 M298238 '包括有·一凹版印刷塗佈機、一蒸錄機以及-清洗機。該凹版印刷塗 佈機其係可接收-麵絲材,且職鋪膜紐碱_ [印基材, 該已印基材係具有水洗塗料位於該塑料絲材上,且呈現有預定的一 天線圖案。該蒸鑛機接收該已印基材,且將該已印基材之表面上蒸鑛 有-導電層。該清洗機接收蒸鑛有該導電層之該已印基材,將該已印 基材形成一水洗基材,該水洗基材係將該已印基材去除設置在水洗塗 料上之導電層。 為使貴審查委員能對本創作的特徵、目的及功能有更進一步的 認知與瞭解,茲配合圖式詳細說明如後·· *【實施方式】 請參閱第2圖所示,其係為本創作製造可導電天線之裝置較佳實 施例位置配置示意圖。本創作之製造可導電天線之裝置6其係包括 有:-凹版印刷塗佈機6卜-蒸鍍機62以及一清洗機63。該凹版印 刷塗佈機61其係可接收一塑料膜基材71,該塑料膜基材71其係為聚 醋材料Polyethylene Terephthalate(PET)所製成,由對苯二曱酸和乙二醇 化δ後產生的t合物。由於该pet塑膠具有以下特性,因此選用作為 鲁底材:1.耐用性及透明度高:耐熱性及絕緣性良好,同時具有高透明 度。2.利於環保:PET為環保塑膠材質,,取代安全性上堪慮的pvc(聚 氯乙烯)塑膠。3.可回收再利用:PET塑膠可以回收加工製成人造纖維, 或二次加工的塑膠製品,是塑膠中最具再生價值的。4•質輕、耐衝擊、 不易碎裂。而該塑料膜基材71具有一第二厚度t,該第二厚度t約在6 微米至188微米(6μιη至188μιη)之間。該凹版印刷塗佈機61將該塑 料膜基材71形成一已印基材72,請再參閱第3圖所示,其係為本創 作之已印基材較佳實施例側視結構示意圖,該已印基材72係具有水洗 塗料75位於該塑料膜基材71上,且呈現有預定的一天線圖案74,因 7 M298238 ^此會使該天細案74之位置呈現為射狀H,該水洗塗料75之厚产 約略在1微米至3微米(ιμηι至3μη〇之間。 又 請加參閱第4圖所示,其係為本創作之已印基材蒸鑛有導電層較 佳實施例側視結構示意圖,而該蒸鑛機62接收該已印基材^,且將 該已印基材72之表面上蒸鑛有一導電層76,該導電層%為銅材質或 鋁材質所製成。本創作較佳實施例中,欲進行上該導電層%前,先將 該塑料膜基材71進行電暈處理(c_a),使該天線_ %及水洗塗料 75表面產生極化。所謂電暈處理是—種「電擊」處理,它造成被印體 籲的表面具有更高的附著性。電暈處理的產生是利用高賴高周波,分 別為接地與誘電空氣喷嘴產生電擊,它們之間沒有電流通過,直至電 壓高達^00至5_伏特/平方厘米。之後,電擊分子從空氣喷嘴噴 出’帶著高能量的游離電子加速衝向正極,電暈處理就是由這密集且 高能量噴出軒所產生的個。這些離顿由電擊和滲透進入被^體 的表面破壞其分子結構,_紐處理的表面分子氧化和極化,藉著 離子電擊侵蝕表面,以至於增加被印體表面的附著能力。 曰 最後’該清洗機63接收蒸鍍有該導電層之該已印基材72,將該 •,印基材72形成-水洗基材73,該水洗基材73係將該已印基材去= 設置在水洗塗料上之導電層76。請再參閱第5圖所示,其係為本創作 之水洗基材較佳實施例側視結構示意圖,本創作之該導電層%位於嗜 天線圖案74上形成具有預定之一第一厚μ之導電天線曰77,其中^ 佳者,該第一厚度衍在〇·〗微米(〇1μπ1)以上。 於本創作較佳實施例中,該製造可導電天線之裝置6更包括有一 第-乾燥機64及-第二乾職65,該第一乾燥機64位於該凹版印刷 塗佈機61與該蒸鍍機62間,可接收該已印基材乃,將去除該已印美 材W之溶劑液分。而該第二乾燥機65位於與該清洗機&相°對應^ 接收5亥水洗基材73,將去除該水洗基材73之溶劑液分。 8 .M298238 以上所述利用較佳實施例詳細說明本創作,而非限制本 圍脾大凡熟知此類技藝人士皆能明瞭,適#而作些微的改變及調=乾 鬚要騎在,亦视_彳作_和細。综上所 ^本^作實巧具離,誠已符合專利法巾所規定_作專利要件, 5堇Μ貝審查委員惠予審視,並賜准專利為禱。 【圖式簡單說明】 21圖其係為習知軟性銅箔基板結構側視示意圖。 • 第2 ®其係為本解製造可導電天線之裝置難實施例位置配置 示意圖。 第3圖其係為本創作之已印基材較佳實施例側視結構示意圖。 第4圖其係為本創作之已印基材蒸鍍有導電層較佳實施例側視結 構示意圖。 第5圖其係為本創作之水洗基材較佳實施例側視結構示意圖。 【主要元件符號說明】 鲁 11〜聚醯亞胺 12〜接著劑 13〜銅箔 6〜製造可導電天線之裝置 61〜凹版印刷塗饰機 62〜蒸鑛機 63〜清洗機 64〜第一乾燥機 05〜第二乾燥機 9 M298238 71〜塑料膜基材 72〜已印基材 73〜水洗基材 74〜天線圖案 75〜水洗塗料 76〜導電層 77〜導電天線 t〜第二厚度 tl〜第一厚度Flexible Printed Circuit (FPC)^^ For the above purposes, this creation provides a device for manufacturing a conductive antenna, and the system 6 M298238 'includes a gravure coater, a steamer and a washer. The gravure coating machine is capable of receiving a - surface wire, and the film is coated with a base _ [printed substrate, the printed substrate has a water-washing paint on the plastic wire, and presents a predetermined antenna pattern. The smelting machine receives the printed substrate and vaporizes the surface of the printed substrate with a conductive layer. The cleaning machine receives the printed substrate from which the conductive layer is vaporized, and forms the printed substrate into a water-washable substrate which removes the printed substrate from the conductive layer disposed on the water-washable coating. In order to enable your review committee to have a further understanding and understanding of the features, purposes and functions of this creation, please refer to the detailed description of the drawings as follows. * [Implementation] Please refer to Figure 2 for the creation of this creation. A schematic diagram of a positional arrangement of a preferred embodiment of a device for fabricating a conductive antenna. The apparatus 6 for manufacturing a conductive antenna of the present invention comprises: a gravure coater 6 - an evaporator 62 and a washer 63. The gravure coater 61 can receive a plastic film substrate 71 made of polyvinyl terephthalate (PET), which is composed of terephthalic acid and PEGylated δ. The resulting t compound. Since the pet plastic has the following characteristics, it is selected as a Lu substrate: 1. Durability and transparency: good heat resistance and insulation, and high transparency. 2. Conducive to environmental protection: PET is an environmentally friendly plastic material, replacing the pvc (polyvinyl chloride) plastic with safety concerns. 3. Recyclable and reusable: PET plastic can be recycled into man-made fiber, or secondary processed plastic products, which is the most regenerative value in plastics. 4• Light weight, impact resistance, and not easy to break. The plastic film substrate 71 has a second thickness t which is between about 6 microns and 188 microns (6 μm to 188 μm). The gravure coater 61 forms the plastic film substrate 71 into a printed substrate 72. Please refer to FIG. 3, which is a schematic side view of a preferred embodiment of the printed substrate of the present invention. The printed substrate 72 has a water-washing paint 75 on the plastic film substrate 71, and presents a predetermined antenna pattern 74, because 7 M298238 ^ this will make the position of the fine film 74 appear as a shot H, The thickness of the washcoat 75 is approximately between 1 micrometer and 3 micrometers (between ιμηι and 3μη〇. Please also refer to Fig. 4, which is a preferred implementation of the conductive layer of the printed substrate for the printed substrate. For example, the steaming machine 62 receives the printed substrate, and the surface of the printed substrate 72 is vaporized to have a conductive layer 76. The conductive layer is made of copper or aluminum. In the preferred embodiment of the present invention, the plastic film substrate 71 is subjected to corona treatment (c_a) before the conductive layer % is applied, so that the antenna_% and the surface of the water-washed paint 75 are polarized. Corona treatment is a kind of "shock" treatment, which causes the surface of the body to be printed to have higher adhesion. The halo treatment is generated by using high-frequency and high-frequency waves, respectively, to generate electric shocks between the grounding and the induced air nozzles, and no current flows between them until the voltage is as high as ^00 to 5 volts/cm 2 . After that, the shock molecules are ejected from the air nozzles. The high-energy free electrons accelerate toward the positive electrode, and the corona treatment is produced by this dense and high-energy squirting. These detachments are destroyed by electric shock and penetration into the surface of the body, destroying its molecular structure. The surface molecules are oxidized and polarized, and the surface is eroded by ion shock so as to increase the adhesion of the surface of the printed body. Finally, the cleaning machine 63 receives the printed substrate 72 on which the conductive layer is evaporated, and The printing substrate 72 forms a water-washing substrate 73 which is used to remove the printed substrate from the conductive layer 76 on the water-washed coating. Please refer to Figure 5 for the creation of the substrate. A schematic view of a side view of a preferred embodiment of the water-washed substrate. The conductive layer % of the present invention is located on the antenna pattern 74 to form a conductive antenna 曰 77 having a predetermined first thickness μ, wherein the first thickness is In the preferred embodiment of the present invention, the apparatus 6 for manufacturing a conductive antenna further includes a first dryer 64 and a second dry 65, the first drying The machine 64 is located between the gravure coater 61 and the vapor deposition machine 62, and can receive the printed substrate, and remove the solvent liquid of the printed US material W. The second dryer 65 is located therewith. The washing machine & phase corresponds to ^ receiving 5 sea washed substrate 73, and the solvent liquid portion of the water washing substrate 73 is removed. 8. M298238 The above description is used to explain the present invention in detail, instead of limiting the spleen Anyone who knows this kind of skill can understand it. It is necessary to make some minor changes and adjustments. It is necessary to ride on it. It also depends on _ _ _ and _ _ _ _ _ _ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ The patent law towel stipulates that it is a patent requirement, and the 5 mussel reviewers will review it and grant the patent as a prayer. [Simplified description of the drawings] Fig. 21 is a side view showing the structure of a conventional soft copper foil substrate. • The 2nd ® is a schematic diagram of the positional configuration of a difficult embodiment of a device for manufacturing a conductive antenna. Figure 3 is a side view showing a preferred embodiment of the printed substrate of the present invention. Fig. 4 is a side elevational view showing a preferred embodiment of a printed substrate having a conductive layer deposited thereon. Figure 5 is a schematic side view showing a preferred embodiment of the water-washed substrate of the present invention. [Description of main component symbols] Lu 11~ Polyimine 12~Adhesive 13~ Copper foil 6~ Device for manufacturing conductive antenna 61~Gravure coating machine 62~Steamer 63~Washing machine 64~First dry Machine 05 ~ second dryer 9 M298238 71 ~ plastic film substrate 72 ~ printed substrate 73 ~ washed substrate 74 ~ antenna pattern 75 ~ water wash paint 76 ~ conductive layer 77 ~ conductive antenna t ~ second thickness t1 ~ Thickness

Claims (1)

M298238 九、申請專利範圍: ι· 一種製造可導電天線之裝置,其係包括有: 一凹版印刷塗佈機,其係可接收一塑料膜基材,且將該塑料膜基材 形成一已印基材,該已印基材係具有水洗塗料位於該塑料膜基材 上,且呈現有預定的一天線圖案; 一蒸鍍機,接收該已印基材,且將該已印基材之表面上蒸鍍有一導 電層; Φ —清洗機’接收蒸鏟有該#電層之該已印基材,將該已印基材形成 -水洗基材,該水絲材係_已印紐去除水洗塗料以及設置 在水洗塗料上之導電層。 2·如申请專利範㈣1項所述之製造可導電天線之裝置,其中該裝置 更包括有至少-乾燥機,該乾燥機可接收該已印基材,將去除該已 印基材之溶劑液分。 3. 如申晴專她ij第丨項所述之製造可導電天線之裝置,其中該裝置 # S包括有至少-乾燥機,該乾燥機可接收該水洗基材,將去除該水 洗基材之溶劑液分。 4. 如申請專利範圍第丨項所狀製造可導電天線之裝置,其中該塑料 膜基材係為聚酯材料(PET)所製成。 5·如申w專利域第丨項所述之製造可導電天線之裝置,其中該塑料 膜基材第二厚度約在6微米至⑽微米(6卿至188厚)之間。 6.如申睛專利範圍第j項所述之製造可導電天線之裝置,其令該導電 層之第一厚度在0.1微米(o.l/zm)以上。M298238 IX. Patent Application Range: ι· A device for manufacturing a conductive antenna, comprising: a gravure coating machine capable of receiving a plastic film substrate and forming the plastic film substrate into a printed a substrate having a water-washing paint on the plastic film substrate and exhibiting a predetermined antenna pattern; an evaporation machine receiving the printed substrate and surface of the printed substrate Depositing a conductive layer thereon; Φ-cleaner' receives the printed substrate of the steaming shovel having the #Electrical layer, and forming the printed substrate into a water-washed substrate, which is washed and washed A coating and a conductive layer disposed on the washcoat. 2. The apparatus for manufacturing a conductive antenna according to claim 1, wherein the apparatus further comprises at least a dryer that receives the printed substrate and removes the solvent solution of the printed substrate. Minute. 3. The device for manufacturing a conductive antenna according to the invention, wherein the device #S comprises at least a dryer, the dryer can receive the water-washed substrate, and the water-washed substrate is removed. Solvent fraction. 4. The apparatus for manufacturing a conductive antenna according to the scope of the patent application, wherein the plastic film substrate is made of polyester material (PET). 5. The device of claim 4, wherein the second thickness of the plastic film substrate is between about 6 microns and (10) microns (6 to 188 thick). 6. The apparatus for manufacturing a conductive antenna according to claim j, wherein the first thickness of the conductive layer is 0.1 micrometers (o.l/zm) or more.
TW95203284U 2006-02-27 2006-02-27 Device for producing electrically conductive antenna TWM298238U (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
TW95203284U TWM298238U (en) 2006-02-27 2006-02-27 Device for producing electrically conductive antenna
JP2006006504U JP3126334U (en) 2006-02-27 2006-08-10 Conductive antenna manufacturing equipment
DE200720000582 DE202007000582U1 (en) 2006-02-27 2007-01-15 Device for fabricating conductive antenna e.g. for RFID system, includes vapor deposition installation for processing printed substrate

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW95203284U TWM298238U (en) 2006-02-27 2006-02-27 Device for producing electrically conductive antenna

Publications (1)

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TWM298238U true TWM298238U (en) 2006-09-21

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DE (1) DE202007000582U1 (en)
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JP2009111233A (en) * 2007-10-31 2009-05-21 Yuri Kagi Kofun Yugenkoshi Flexible circuit board

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DE202007000582U1 (en) 2007-03-22

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