201246086 六、發明說明: 【發明所屬之技術領域】 本發明係關於無線射頻辨識產品之結構及製法, 與無線射頻辨識標籤皆設罝定位孔,使無線 織叹置於基板之方向具有—致性,再以包覆層 二= 於無線射麵識標籤與基板之上方,使無線 【先前技術】 f ’習知以作為身分;或文件;或物品之辨識銘牌 ί3或3純的於銘牌上印刷有辨識碼’必須經由人力: 以辨識,如此,不但造成辨識上之困難,更易被 , 誤或失誤,因此目前無線射頻辨識系統‘ 目前之無線射頻辨識晶片皆以表面黏著技 於膠ίίίΐΐ面’並將該膠膜層貼合於商品上方,而後再 “不C一膠材貼合之,用以保護該無線射頻辨識 ί、ίίΐ破壞絲損;然而,該f知之⑽材黏合方式貼 二:線射頻觸晶丨之方法其顧範較馳大之限制,亦 小形之物品上,如耳標、茶標,蓋内膜、識別 ,其雜容易受外力影響峨落,使無線 射頻辨識晶片剝落或損毀。 S 新型專利中請第酬328號之「耳標結構改良」’係 該扣件1和—母扣件2中間夾設一無線射頻辨識單元3,使 ^ :具有無線射頻辨識之功能,然而該耳標僅以扣合方式 射頻辨識單元夾固於公、母扣件之間,當該耳標被牲 堪仰父,’耳標之扣合結構則容易被咬壞’造成無線射頻辨 識早々修或損毁而無法使用。 201246086 明本案 【發明内容】 成產品,得 之定位孔’使玆:頻 辨識產品之結構,係將無線射頻辨識户籤 並以㈣.置之方向具有一致性, 万向具有一致性,藉以方便物品之辨識者。 Ϊ以ίί::體成型設置於無線射頻辨識標籤與基板之上 3使無線射頻辨識標籤得以完整包覆於上 頻辨識產品a之〜合更為緊密’即可製成無線射 之無 本發明之無線射頻辨識產品之製法 線射頻辨識標籤設置於-預^:有定位孔之某二=位孔 射頻辨識標籤之定位孔使無線射 覆層與基板之結合更為緊密,即可完成無線射包 實施方式】 ϋ貴ίίί可充Γ了解本發明,茲依附圖式解說如下: 基板1,得_膠材成,灿魏材雜成,均無不可, 201246086 惟本發明係以塑膠材質製成者為說明依據;前述基板1設内表 面10及外表面11 ’且基板1可於適當位置設定位孔12,利用定 位孔12可使無線射頻辨識標籤2之設置方向具有一致性,以提 高無線射頻辨識標籤2讀取的正確率與設置方向性。或如圖3 所示,前述基板1可依使用者之需求或無線射頻辨識標籤2之 形狀而設置複數個定位孔12 ’均無不可。前述基板丨得為各種 形狀,如圖1、4A —4D所示之圓板狀,或如圖4 e所示 之圓板狀基板1之内表面10設置凹槽13以容設無線射頻辨識 標籤2 ’端視使用者之需求或無線射頻辨識標藏2之形狀而 定,且如圖4 B及4 D所示’前述基板1可預先於外表面丨卜 體成型有印刷文字或圖案之印刷層或標籤層14。 無線射頻辨識標籤2,設定位孔20,前述定位孔2〇係配合基板 1之定位孔12而設,使前述無線射頻辨識標籤2設置於前述基 板1之内表面10時具有方向的一致性(如圖1),再於前述無 線射頻辨識標籤2之一側設置膠合層21,使無線射頻辨識標g 2得以黏合於基板1之内表面1〇上。 包覆層3 ’主要係利用與前述基板1相同材質,或其它可與基 板1結合之材質,於模具内以射出成型、中空成型、或真空成 型方式一體成型設置於無線射頻辨識標籤2與基板丨之内=面 10上方及側邊(如圖4 A-4 D),或設置於無線射頻辨識標 籤2與基板1之内表面10上方之凹槽13中(如圖4E),使無 射頻辨識標籤2得以完整包覆於基板1及包覆層3之間,且;霜 層3-體麵時可覆蓋基板1及無線射賴識標籤2之定^ 12、20,使基板1與包覆層3之結合更為緊密,因此本發明 無線射頻辨識產品不易因外力而損毀;如圖4 c及4 d所 示’亦可於包覆層3-體成型製成時同時成型—有印刷 圖案之印刷層或標籤獅’使本發明更具美觀及辨識效果: 構與製 法之實施例( 如圖5〜7所示,為本發明之無線射頻辨識產品之結 至少包含 201246086 tL’J:以塑膠材質製成,或以其他材質製成,均無不可, 以轉材質製成者為制依據;前述基祀設内表 if11,且基板1可於適當位置設定位孔12,利用定 1妨21使”,、線射頻辨識標籤2之設置方向具有—致性,以提 1線射頻辨識標籤2讀取的正確率,或如圖2所示,前述基201246086 VI. Description of the Invention: [Technical Field] The present invention relates to a structure and a method for manufacturing a radio frequency identification product, and a radio frequency identification tag is provided with a positioning hole, so that the wireless sag is placed in the direction of the substrate. And then with the cladding layer 2 = on the wireless surface to identify the label and the top of the substrate, so that the wireless [prior art] f 'known as an identity; or the document; or the identification name of the article ί3 or 3 pure on the nameplate There is an identification code 'must be manpower: to identify, so, not only cause identification difficulties, more easily, mistakes or mistakes, so the current RFID system 'the current RFID chip is surface-adhesive technology glue ίίίΐΐ' And the film layer is attached to the top of the product, and then "not a C-adhesive material is adhered to protect the radio frequency identification ί, ίίΐ to damage the silk loss; however, the f-zhi (10) material bonding method is two: The method of line radio frequency touch crystal 其 其 其 其 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 顾 小 小 小 小 小The radio frequency identification chip is peeled off or damaged. In the new patent, please refer to the "ear tag structure improvement" of No. 328, which is a radio frequency identification unit 3 interposed between the fastener 1 and the female fastener 2, so that ^ : With the function of radio frequency identification, however, the ear tag is only clamped between the male and female fasteners by the snap-fit type radio frequency identification unit. When the ear tag is used by the father, the ear tag fastening structure is Easy to be bitten' caused the RFID to be repaired or damaged and could not be used. 201246086 Ming Ben case [invention content] into a product, the positioning hole 'to make: frequency identification product structure, the wireless RF identification household sign and (4). The direction is consistent, universal consistency, so that convenient The identifier of the item. ί ίί:: Body shaping is placed on the RFID tag and the substrate 3, so that the RFID tag can be completely covered in the upper frequency identification product a. The radio frequency identification tag of the radio frequency identification product is set in the pre-^: the positioning hole of the RFID tag of the two-position hole with the positioning hole enables the combination of the radio-emitter layer and the substrate to be closer, and the radio shot can be completed. Package implementation method ϋ ί ί ί 可 可 可 可 可 可 可 可 可 可 可 ί ί ί ί ί ί ί ί ί ί ί ί ί ί ί ί ί ί ί ί ί ί : : : : : : : : : : : : : : : : : : : The substrate 1 is provided with an inner surface 10 and an outer surface 11 ′, and the substrate 1 can be configured with a bit hole 12 at an appropriate position, and the positioning hole 12 can be used to make the setting direction of the RFID tag 2 uniform to improve wireless. The correct rate and setting directivity of the RFID tag 2 reading. Or as shown in FIG. 3, the substrate 1 can be provided with a plurality of positioning holes 12' depending on the needs of the user or the shape of the RFID tag 2. The substrate is formed into various shapes, such as a disk shape as shown in FIG. 1, 4A-4D, or a groove 13 is provided on the inner surface 10 of the disk-shaped substrate 1 as shown in FIG. 4e to accommodate a radio frequency identification tag. 2' depends on the user's needs or the shape of the RFID tag 2, and as shown in FIGS. 4B and 4D, the substrate 1 can be printed with printed characters or patterns in advance on the outer surface. Layer or label layer 14. The radio frequency identification tag 2 is provided with a positioning hole 2, and the positioning hole 2 is provided in cooperation with the positioning hole 12 of the substrate 1, so that the radio frequency identification tag 2 is disposed on the inner surface 10 of the substrate 1 with a direction consistency ( As shown in FIG. 1), a glue layer 21 is disposed on one side of the aforementioned radio frequency identification tag 2, so that the radio frequency identification target g 2 is adhered to the inner surface 1 of the substrate 1. The cladding layer 3 ′ is mainly formed of the same material as the substrate 1 or other material that can be combined with the substrate 1 , and is integrally formed in the mold by injection molding, hollow molding, or vacuum molding on the RFID tag 2 and the substrate. Inside the = = face 10 and the side (as shown in Figure 4 A-4 D), or in the groove 13 above the radio frequency identification tag 2 and the inner surface 10 of the substrate 1 (as shown in Figure 4E), so that no radio frequency The identification tag 2 is completely wrapped between the substrate 1 and the cladding layer 3, and the frost layer 3-faced can cover the substrate 1 and the wireless identification tag 2, 12, 20, so that the substrate 1 and the package The combination of the cladding 3 is more compact, so the radio frequency identification product of the present invention is not easily damaged by external force; as shown in Figures 4 c and 4 d, 'the same can be formed when the cladding layer 3-body is formed. The printed layer of the pattern or the label lion' makes the invention more aesthetically pleasing and recognizable: Embodiments of the construction method (as shown in Figures 5 to 7, the junction of the radio frequency identification product of the present invention includes at least 201246086 tL'J: Made of plastic material or made of other materials, it is impossible to turn The material is made by the manufacturer; the base is provided with the inner table if11, and the substrate 1 can be set at a suitable position, and the position of the line radio frequency identification tag 2 is made to be "," To improve the accuracy of reading the 1 line RF identification tag 2, or as shown in Figure 2, the aforementioned base
Ui朗者之需求或無線賴觸標籤2之形狀而設置 i n位孔12,均無柯;前述基板1之喊面驗置凹槽 ,谷设無線射頻辨識標籤2,且如圖46及4〇所示,前述 於外表面u—體成财印刷文字錢案之印刷 層或標戴層14。 無線严頻辨識標籤2,設定位孔别,前述定位孔難配合基板 ,疋位孔I2而設,使前述無線射頻辨識標籤2設置於前述基 板1之内表面10時具有方向的一致性(如圖5),且前述益線 射頻辨識標籤2之雜及大小魏讀述基板丨_面^凹 槽13之形狀及大小缝’使無線射綱識標齡得以穩固的設 置於基板1之凹槽13内。 包覆層3,主要係利用與前述基板丨相同材質,或 板1結合之材質,於模制崎出成型、中空成型、'或 型方式一體成型設置於無線射頻辨識標籤2與基板丨之内表面 10上方及侧邊(如圖7) ’使無線射頻辨識標籤2得以完整包覆 於基板1及包覆層3之間,且包覆層3—體成型時可覆蓋其板1 及無線射頻辨識標籤2之定位孔12、20,使基板丨與包覆^3之 結合更為緊密’因此本發明之無線射細識產品不易因曰 而損毁;如圖4 C及4 D所示’亦可於包覆層3—體成型 時同時成型-有印刷文字·案之印刷層或標籤層3 發明更具美觀及辨識效果。 因此’本發明之無線射頻_1產品之製法,係先於基板k 表面10設置無線射頻辨識標籤2 ’利用基板!及無線射頻 標籤2之定位孔12、20使無線射頻辨識標籤2設置之方向具有 201246086 一致性,之後,以模内成型技術(〗ML),將包覆層3—體成型 設置於無線射頻標藏2與基板1之内表面1〇上方,並利用基板i 之定位孔12使包覆層3與基板1之結合更為緊密,即可完成無 線射頻辨識產品者;再者,本發明之無線射頻辨識產品亦可 依使用者之需求而製成薄形結構,其厚度可小於12_以下, 使無線射頻辨識產品之運用更為廣泛。 如圖8所示,係為本發明之運用例(一),該運用例(一) 係將無線射頻辨識產品製成茶標使用,使不同時期及不同品 種的茶葉得以辨識及分類。 如圖9所示,係為本發明之運用例(二),該運用例(二) 係將無線射頻辨識產品製成項圈吊部使用,此項圈吊飾得以 應用於寵物項圈中,或其它特殊用途上,以便於身份辨識。 如圖10A及1〇B所示,係為本發明之運用例(三),該 運用例(三)係將無線射頻辨識產品製成耳標使用,因此g 依使用者之需求將無線射頻辨識標籤2一體成型於耳標中(如 圖10A),或將無線射頻辨識標籤2一體成型於耳標'之扣件 中(如圖10 B) ’均無不可,且利用基板i及包覆層3緊密 結合之優點,即使本發明之無線射頻辨識產品受到牲畜亂咬 亦不易被破壞而失去辨識魏,讀於動物識別與管理。 如圖11 a—nc所示,係為本發明之運用例(四),該 運用例(四)係將無線射頻辨識產品運用於瓶罐中使用,因 此可依使时^需求將無騎頻賴標籤2_體成型於瓶蓋 内巧中’製賴職構,或將無線賴觸贼卩—體成型於 瓶蓋中’或將無線㈣職標籤2—體成型 或 特殊物品之流通得以更方便管理或分類。 _使樂°口次 如圖12所示,係為本發明之運用例(五),該運用 與手環—體成型製成識別手環,使人 員在進出特疋讀時*以湘該識辭環來辨識身份。 201246086 線射頻辨職之_細綱物,找無 ίΐ產=====產Γ、轉鄕法,具備提供 效i與使能’亦具有輕㈣識產品來源之 易破壞之優點,可納基板1及包覆層3所具備之不 效笟點’力死伤保護無線射 壞;因此,本發明之無線射頻辨 ° 了織2免於被不备破 且不受物品大小之限制,可提但運用層面廣泛, 為本案之域。 τ㈣無線射_識產品之價值, 【圖式簡單說明】 圖1是本發明實施例(一 圖。 之基板與騎軸_錢之結合視 圖2是本發明實施例(一)之立體視圖(一 " 圖3是本發明實施例(一)之立體視圖f 一、。 圖4A是圖2M-A剖視圖(_^(一)° 圖4B是圖2之A-A剖視圖(二)。 圖4C是圖2之A —A剖視圖(三)。 圖4D是圖2之A — A剖視圖(四)。 圖4E是圖2之A — A剖視圖(五)。 之基板與無線射頻辨識標籤之結合視 圖5是本發明實施例(二) 圖。 圖6是本發明實施例(二)之立體視圖。 圖7是圖6之B — B剖視圖。 圖8是本發明運用例(一)之立體視圖。 圖9是本發明運用例(二)之立體視圖。 圖10A是本發明運用例(三)之結合視圖(― 圖10 B是本發明運用例(三)之結合视圖( 圖11A是本發明運用例(四)之立體視圖(= 201246086 圖1 1B是本發明運用例(四)之立體視圖(二)。 圖1 1C是本發明運用例(四)之立體視圖(三)。 圖12是本發明運用例(五)之立體視圖。 圖13是本發明運用例(六)之立體視圖。 【主要元件符號說明】 基板1、内表面10、外表面11、定位孔12、凹槽13、標籤層14 無線射頻辨識標籤2、定位孔20、膠合層21 包覆層3、標籤層30The Ui Langer's demand or the shape of the wireless touch tab 2 is set in the in-hole 12, and there is no Ke; the shim surface of the substrate 1 is inspected, and the radio frequency identification tag 2 is set, and as shown in FIGS. 46 and 4〇 As shown, the outer surface u is formed into a printed layer or a layer 14 of a printed money case. The radio frequency identification tag 2 is configured to set a bit hole, and the positioning hole is difficult to be matched with the substrate and the clamping hole I2, so that the radio frequency identification tag 2 is disposed on the inner surface 10 of the substrate 1 with a direction consistency (eg, FIG. 5), and the shape and size of the above-mentioned benefit line radio frequency identification tag 2 are described in the shape of the substrate 丨 _ _ groove 13 and the size of the slit ′ to enable the wireless stencil to be firmly set in the groove 13 of the substrate 1 . The coating layer 3 is mainly formed by the same material as the substrate , or the material of the board 1 , and is integrally formed in the RFID tag 2 and the substrate 模 in the molding, the hollow molding, or the molding. Above and to the side of the surface 10 (Fig. 7) 'The RFID tag 2 is completely covered between the substrate 1 and the cladding layer 3, and the cladding layer 3 can be formed to cover the panel 1 and the radio frequency The positioning holes 12 and 20 of the tag 2 are identified to make the combination of the substrate 丨 and the cover ^3 closer together. Therefore, the wireless illuminating product of the present invention is not easily damaged by defects; as shown in FIG. 4 C and FIG. It can be formed at the same time when the cladding layer is formed into a body - a printing layer or a label layer 3 having a printed text, and the invention is more aesthetically pleasing and recognizable. Therefore, the method for manufacturing the radio frequency_1 product of the present invention is to set the direction of the radio frequency identification tag 2 by using the radio frequency identification tag 2 'the substrate and the positioning holes 12 and 20 of the radio frequency tag 2 before the substrate k is disposed on the surface 10 of the substrate k. Having the consistency of 201246086, after that, the cladding layer is formed on the radio frequency standard 2 and the inner surface 1 of the substrate 1 by the in-mold molding technology (〗 ML), and the positioning hole 12 of the substrate i is utilized. The combination of the cladding layer 3 and the substrate 1 can be completed to complete the radio frequency identification product. Furthermore, the radio frequency identification product of the present invention can also be made into a thin structure according to the needs of the user, and the thickness thereof can be Less than 12_, the use of RFID products is more extensive. As shown in Fig. 8, it is an application example (1) of the present invention. The application example (1) is to make a radio frequency identification product into a tea standard, so that tea leaves of different periods and different varieties can be identified and classified. As shown in FIG. 9, it is an application example (2) of the present invention. The application example (2) is to use a radio frequency identification product as a collar hanging part, and the ring charm can be applied to a pet collar or other special. In use, to facilitate identification. 10A and 1B are the application examples (3) of the present invention. The application example (3) uses the radio frequency identification product as an ear tag, so that the radio frequency identification is performed according to the needs of the user. The label 2 is integrally formed in the ear tag (as shown in FIG. 10A), or the radio frequency identification tag 2 is integrally formed in the ear tag's fastener (as shown in FIG. 10B), and the substrate i and the cladding layer are utilized. 3 The advantage of tight integration, even if the radio frequency identification product of the invention is not easily damaged by the bite of the livestock, the identification of Wei is lost, and the animal identification and management are read. As shown in Fig. 11 a-nc, it is an application example (4) of the present invention. The application example (4) applies the radio frequency identification product to the bottle and can be used, so that it can be used without any frequency. Lai label 2_ body is formed in the inside of the bottle cap, and it can be used to make the wireless (4) job labeling into the bottle cap or to make the wireless (four) job label 2-body molding or the circulation of special items. Easy to manage or categorize. _ _ 乐 ° mouth as shown in Figure 12, is the application of the invention (5), the application and the bracelet - body shaping to create a bracelet, so that when people enter and exit special reading * to understand Resign the ring to identify the identity. 201246086 Line radio frequency identification _ fine structure, find no ΐ ΐ production ===== calving, transfer method, with the effect of providing i and enabling 'also has light (four) knowledge of the source of the product is easy to destroy, can be The substrate 1 and the cladding layer 3 have an ineffective point to prevent damage to the wireless radiation; therefore, the radio frequency discrimination of the present invention is free from being unprepared and is not limited by the size of the article. However, the application level is extensive and is the domain of the case. τ (4) wireless _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ Fig. 3 is a perspective view of a first embodiment of the present invention (a). Fig. 4A is a cross-sectional view of Fig. 2M-A (_^(1)° Fig. 4B is a cross-sectional view (II) of Fig. 2A. Fig. 4C is a view 2A-A cross-sectional view (3) Figure 4D is a cross-sectional view (A) of A-A of Figure 2. Figure 4E is a cross-sectional view (5) of A-A of Figure 2. The combination of the substrate and the RFID tag is shown in Figure 5 Figure 2 is a perspective view of a second embodiment of the present invention. Figure 7 is a cross-sectional view taken along line B-B of Figure 6. Figure 8 is a perspective view of the application (a) of the present invention. Fig. 10A is a perspective view of the application example (3) of the present invention (Fig. 10B is a combined view of the application example (3) of the present invention (Fig. 11A is an application example of the present invention). (4) Stereoscopic view (= 201246086 Fig. 1 1B is a perspective view (II) of the application example (4) of the present invention. 1 1C is a perspective view (3) of the application example (4) of the present invention. Fig. 12 is a perspective view of the application example (5) of the present invention. Fig. 13 is a perspective view of the application example (6) of the present invention. 】 substrate 1, inner surface 10, outer surface 11, positioning hole 12, groove 13, label layer 14 radio frequency identification tag 2, positioning hole 20, glue layer 21 cladding layer 3, label layer 30