201241752 六、發明說明: 【發::屬之技術領域】 關於-種旋轉式資=別方法’且特别是有 條碼讀取裝置資訊讀取方法γ軛轉式條碣讀取方法以及 【先前技術】 條碼是做為商σ 常見的條碼如物體等物品的快速辨識機制。 面來進行讀取,一條喝是設置於這些物品的表 碼(如脳⑺掃‘式時,則條碼的二維條 一維的方向進行掃瞄來讀取。’-,、、、視取裝置以一個 二果條碼是設置於旋轉的物體上,舉例來談 藉由㈣達到離心效果的器材上,則一維的 =’ ^走轉時,讀取傳統矩形條⑽碼編線外側與内側ί = 度不同,而使内外側的讀取速度不一致。讀取速度f速 使讀取裝置無法正確地讀取條碼,而將產生錯誤的^ 果,甚至完全無法判斷所讀取的資訊為何。 、、’。 因此,如何設計一個旋轉式條碼製作方法、旋轉 碼讀取方法以及條碼讀取裝置資訊讀取方法,乃為此二= 界亟待解決的問題。 【發明内容】 因此,本揭示内容之-態樣是在提供一種旋轉式條碼 201241752 製作方法,包含下列步驟:提供方形條碼, 具有沿讀取方向伸展之橫向邊界以及垂直、2中方形條碼 向邊界;於>横向邊界其中之一之外側定義,取方向之縱 據圓心展開π形條碼’以使二橫向邊界二^、;以及根 形邊界,使;縱向邊界成為分別連接—二、圓心之二弧 界,且各二側邊界之虛擬延伸線交合 迓界之二側邊 式條碼。 S 、心’俾形成旋轉 依據本揭系内容-實施例,方形條碼於 二縱向邊界間包含條碼圖樣’於根據圓心2向邊界及 後,條碼圖棒成為弧形條碼圖樣。 3方形條碼 依據本揭杀内容另一實施例,旋轉 對旋轉中心軸旋轉時,藉由條碼讀取裴碼於平面上相 中心軸位於該圓心上。條碼讀取裝置相距^取。其中旋轉 以藉由與二弧形邊界共圓心之弧形讀取方向^適當距離, 碼。條碼讀取裝置自二側邊界其中 D讀取旋轉式條 碼。 轉式條 依據本揭示内容又一實施例’其中旋 式一維條碼或旋轉式二維條碼。 式條碼為旋; 本^内容之另—㈣是在提供—種 方法,包含下列步驟··提供旋轉式飞条馬讀写 邊界分别ίΐ ’ 弧形邊界相對圓"為共圓心,二侧 會於圓心形邊界’且各二侧邊界之虛擬延伸線交 含弧开々I讀式條碼於二弧形邊界以及二側邊界間更包 之r鐘1、碼11樣,使旋轉式條碼於平面上相對垂直於平面 疋轉中心轴旋轉,其中旋轉中心軸位於圓心上;以及使 201241752 相距平面適當距離之條碼讀取裴置藉由與一 心之弧形讀取方向讀取旋轉式條碼之弧形:::界共圓 依據本揭示内容一實施例,其中條,。 邊界其中之一起始讀取旋轉式條碼。、'、5裝置自二側 依據本揭示内容另一實施例,其中 式一維條碼或旋轉式二維條碼。 式條碼為旋轉 依據本揭示内容又一實施例,其中 疑轉物件之承載面上,當旋轉物件相;^固疋於 係帶動旋轉式條碼旋轉。 ^轉中心轴旋轉’ 置資態樣是在提供-種旋轉條碼㈣ 上2ΠΓ:提供弧形一 心,二側邊界;別ί接:::形邊界相對圓 评線交會於圓心,弧形條碼於續 間更包含弧形條碼圖樣,其中弧邊界以及二側邊界 直於之條碼讀取裝置作動,以相對於垂 上’·使條碼‘裝置轉,厂其中旋轉中心軸位於圓心 方向讀取_式二“二形邊界共圓心之弧形讀取 形條碼圖樣解碼:、乂條碼圖樣;以及根據讀取之弧 依據本揭示内容另―眘 式-維條碼或旋轉式二維條碼。彳、令旋轉式條碼為旋轉 旋轉揭!:穴優點係在於藉由將方形條碼轉換為 物體之資1 旋轉的物體上由旋轉式條瑪直接讀取 之貝況,而輕易地達到上述之目的。 201241752 【實施方式】 請同時參照第1圖、第2A圖及第2B圖。第1圖為本 揭示内容一實施例中,旋轉式條碼製作方法之流程圖。第 2A圖為本揭示内容一實施例中,一種方形條碼2之示意 圖。第2B圖為本揭示内容一實施例中,一種旋轉式條碼2’ 之示意圖。旋轉式條碼製作方法包含下列步驟。(應暸解 到,在本實施方式中所提及的步驟,除特別敘明其順序者 外,均可依實際需要調整其前後順序,甚至可同時或部分 同時執行)。 於步驟101,提供如第2A圖所示之方形條碼2。方形 條碼2具有沿此方形條碼2原本之讀取方向21伸展之兩個 橫向邊界23a、23b,以及垂直於讀取方向21之縱向邊界 25a、25b。 方形條碼2於其橫向邊界23a、23b及縱向邊界25a、 25b間具有條碼圖樣22。於不同實施例中,此條碼圖樣22 可為一維條碼、二維條碼或是其他類型的條碼圖樣。條碼 圖樣可依其排列順序及編碼方式而包含不同的資訊。當此 方形條碼2欲進行讀取時,於一實施例可由縱向邊界25a 起始,使條碼讀取裝置(未繪示於第2A圖)沿著讀取方 向21與方形條碼2間產生相對一維運動,以依序掃瞄至縱 向邊界25b。然而,如果方形條碼2與條碼讀取裝置間產 生的是旋轉式的移動,則由於外侧與内側的角速度不同, 而使内外側的讀取速度不一致。舉例來說,如橫向邊界23a 距方形條碼2之旋轉中心軸較遠,而橫向邊界23b距方形 201241752 條碼2之旋轉中心軸較近,則靠近橫向邊界23a之條碼圖 樣22部份將具有較高的旋轉速度,而靠近橫向邊界23b之 條碼圖樣22部份將具有較低的旋轉速度。讀取速度不一致 使條碼讀取裝置無法正確地讀取條碼,而將產生錯誤的讀 取結果,甚至完全無法判斷所讀取的資訊為何。 因此於步驟102,於二橫向邊界23a及23b其中之一 之外側定義一個圓心24。此圓心24可依條碼欲進行旋轉 之旋轉中心軸而定。接著,於步驟103,根據圓心24展開 方形條碼2,以使二橫向邊界23a及23b成為共圓心之二 弧形邊界23a’及23b’。並且,二縱向邊界25a及25b將成 為分別連接二橫向邊界23a’及23b’之二側邊界25a’及 25b’。如第2B圖所示,二側邊界25a’及25b’之虛擬延伸線 27a及27b將交會於圓心24。因此,於原先之方形條碼2 的橫向邊界23a、23b及縱向邊界25a、25b間的條碼圖樣 22,將由於步驟103的展開,而成為弧形條碼圖樣22’。第 2A圖中的方形條碼2將因此而展開為第2B圖中的旋轉式 條碼2’。 請同時參照第3圖及第4圖。第3圖為本揭示内容之 一實施例中,一種旋轉式條碼讀取方法之流程圖。第4圖 為本揭示内容一實施例中,位於一旋轉物件4上之旋轉式 條碼2’之示意圖。旋轉式條碼讀取方法包含下列步驟。(應 暸解到,在本實施方式中所提及的步驟,除特別敘明其順 序者外,均可依實際需要調整其前後順序,甚至可同時或 部分同時執行)。 於步驟301,提供旋轉物件4以及旋轉式條碼2’。旋 201241752 轉物件4於不同實施例中 ^ 4圖中,旋轉物件4為〜:、不同形狀之物體,然而於第 施例中,可為用以容置流。盤狀物件。旋轉物件4於一實 來說,旋轉物件4可容^體於其中的流體容置卡匣。舉例 要經過旋轉離心處理的物^液、液狀藥物、流體食物等需 藉由離心力進行離心處理,以在旋轉物件4進行旋轉時 旋轉物件4具有承栽 ^ 面40上。於不同實施例中 旋轉式條碼2’固定於承載 等不同之方式黏著固定於,旋轉式條碼2,可以黏膠、膠帶 式形成於承載面40上。載面上,或是以其他不同之方 敘述,因此不再此贅$。疋 <條碼2’之製作方法已於先前 旋轉式條碼2,之弧形 件4之識別資訊。舉例來^圖# 22’可包含對應旋轉物 本身的旋轉物件資訊、旋訊可包含旋轉物件4 所容納的物體(如前述的== 編號或是旋轉物件4 其排列組合。舉例來說1 體_容物資訊等等,或是 轉物件資訊可如旋轉物…身的的大 旋祕r 彳了簡的轉速料。編制可在以數個 =物件4進行多個不同樣本的離心處理時,辨別其中之 一為何。内容物資訊則可為流體的難、重量或是其他相 關的資訊等等。 接著於步驟302,使旋轉物件4相對垂直於承載面4〇 之旋轉中心軸41旋轉,俾帶動旋轉式條碼2,旋轉。於本實 施例中,旋轉中心軸41是位於第2A圖及第2B圖繪示的 圓、24上並且位於圓盤狀的旋轉物件4的中心。於其他 201241752 實施例中,旋轉中心軸41之位置亦可能 他的設計方f本實施觸述為限。 有、 ^驟3使相距承載面4〇適當距離之條碼讀取裝 曰厂叙轉式條碼2,的二弧形邊界23a,及23b,共圓心 形讀取方向51,自二側邊界25a,及25b,其中之-起始 ^取旋轉式條碼2’之弧形條樣22,。於本實施例中, 物件4是沿順時針的方向進行旋轉’因此孤形讀 亩將為逆時針之方向,將由側邊界25b,S始讀取, 直至側邊界25a,為止。 條碼⑼取裝置5可為—般用以讀取如第Μ圖所繪示 :條馬2之裝置。然而’由於旋轉式條碼之設計方 1 : 24較遠—側的弧形條碼圖樣22,(角速度較 速m 心24較近—側的弧形條碼圖樣2r (角 度為寬,因此可使條碼讀取ϋ 5以與= 弧形邊界23a’及23b,itFi 碼2,時,使旋轉切;^心之弧形讀取方向讀取旋轉式條 可不h 轉式條碼各位置的讀取速度相同,因此將 因此L對旋轉式條碼2’的弧形條碼圖樣22,進行讀取。 旋轉式條碼2,之設計方式,可以輕易地在旋轉 ί,的譆敌。仃^轉時’由條碼讀取裝置5進行旋轉式條碼 主機\未*於二實施例/,條碼讀取裝置5將連接至-個 攄讀夕二不欠以將讀取的結果傳送至主機進行解碼。根 俾二…糾、碼圖樣22’,條碼讀取裝置5可進行解碼’ 俾獲得對應_物件4之識別資訊。 -實二同丨t參:第5圖及第6圖。第5圖為本揭示内容之 種條瑪讀取裝置資訊讀取方法之流程圖。 10 201241752 第6圖為本揭示内容一實施例 你石民?,> _立 位於一平面上之旋轉式 條碼2之不意圖。條碼讀取裝 驟。Γ廄瞌初L & 夏貝机%取方法包含下列步 鄉(應瞭解到,在本實施方式中 ^ 同時或:=r需要調整其前後順序,甚至可 於步驟501,提供旋轉式條 於始喆录馬2。於本實施例中,由 、旋轉式條碼2’本身並不旋轉, 蹕。β姑a 〃 W 因此亦可稱之為弧形條 碼。方疋轉式條碼2,可依附於一平而L ^ 式條石馬r相同不進行旋轉。+面上’㈣此平面與旋轉 於步驟502,使相距旋轉式攸 適各㈣& * 轉式條碼2,(即狐形條碼)- 過田距離之條碼讀取裝置5,作叙 條碼m T _ ’ W目對於垂直於旋轉式 保碼2所在之平面之旋轉中心 41位於圓心24上。 軸41疑轉,其中叙轉中心軸 於步驟503,使條碼讀取择番 的_ ’買取衷置5藉由與旋轉式條碼2, 的一弧形邊界23a,及23b,乒圓心夕丄 相丨丨、息田 ,、131〜之弧形讀取方向51,自- 抓其中之—起始讀取旋轉式條碼 _ :方向進行旋轉,因此弧形讀取方向5"字為逆時斜2 向,將由側邊界25b,起始讀取,直至侧邊界❿,為止之方 〜於步驟504 ’根據讀取之弧形條碼圖樣22,解碼。於— 貫施例中,條碼讀取裝置5將連接至一個主機(未繪示= 以將蟥取的結果傳送至主機進行解碼。因此,藉由旋轉 條石馬2’之設計$式,彳以輕易地在條碼讀取裝置5進行^ 轉時’進行旋轉式條碼2,的讀取。 應用本揭示内容之優點係在於藉由將方形條螞轉換為 201241752 旋轉式條碼,能夠使固定的讀取裝置在旋轉的物體上直接 讀取物體之資訊亦或以旋轉的讀取裝置上讀取固定的物體 之資訊,而輕易地達到上述之目的。 雖然本揭示内容已以實施方式揭露如上,然其並非用 以限定本揭示内容,任何熟習此技藝者,在不脫離本揭示 内容之精神和範圍内,當可作各種之更動與潤飾,因此本 揭示内容之保護範圍當視後附之申請專利範圍所界定者為 準。 【圖式簡單說明】 為讓本揭示内容之上述和其他目的、特徵、優點與實 施例能更明顯易懂,所附圖式之說明如下: 第1圖為本揭示内容一實施例中,旋轉式條碼製作方 法之流程圖; 第2A圖為本揭示内容一實施例中,一種方形條碼之 示意圖; 第2B圖為本揭示内容一實施例中,一種旋轉式條碼之 示意圖; 第3圖為本揭示内容之一實施例中,一種旋轉式條碼 讀取方法之流程圖; 第4圖為本揭示内容一實施例中,位於一旋轉物件上 之旋轉式條碼之示意圖; 第5圖為本揭示内容之一實施例中,一種條碼讀取裝 置資訊讀取方法之流程圖;以及 第6圖為本揭示内容一實施例中,位於一平面上之旋 12 201241752 轉式條碼之不意圖。 【主要元件符號說明】 101-103 :步驟 2’ :旋轉式條碼 22 :條碼圖樣 23a、23b :橫向邊界 24 :圓心 25a’、25b’ :側邊界 301-303 :步驟 40 :承載面 5:條碼讀取裝置 501-504 :步驟 2 :方形條碼 21 :讀取方向 22’ :弧形條碼圖樣 23a’、23b’ :弧形邊界 25a、25b :縱向邊界 27a、27b :虛擬延伸線 4 :旋轉物件 41 :旋轉中心軸 51 :弧形讀取方向 13201241752 Sixth, invention description: [fam:: the technical field of the genus] - a kind of rotary type of money = other methods 'and especially the bar code reading device information reading method γ yoke-type bar reading method and [previous technology 】 Bar code is a quick identification mechanism for items such as objects that are common to σ. The face is read, and a drink is set in the table code of these items (for example, when the 脳(7) sweeps the type, the two-dimensional bar of the bar code is scanned in one dimension to read. '-,,,, The device is arranged on a rotating object with a two-bar code. For example, by means of (4) the equipment that achieves the centrifugal effect, when one-dimensional = ' ^ is turned, the outer side and the inner side of the conventional rectangular strip (10) code line are read. ί = the degree is different, and the reading speeds of the inner and outer sides are inconsistent. The reading speed f speed makes the reading device unable to read the barcode correctly, and will produce an error, or even completely unable to judge the information read. Therefore, how to design a rotary bar code making method, a rotating code reading method, and a bar code reading device information reading method is a problem to be solved. [Invention content] Therefore, the present disclosure The aspect is to provide a method for manufacturing a rotary bar code 201241752, comprising the steps of: providing a square bar code having a lateral boundary extending in the reading direction and a vertical, 2 square bar code to the boundary; One of the boundaries is defined on the outer side, and the direction of the direction is expanded according to the center of the circle to make the two horizontal boundaries two; and the root boundary, so that the longitudinal boundary becomes the two arc boundaries respectively connecting the second and the center of the circle, and The virtual extension lines of the two side boundaries intersect the two side barcodes of the boundary. S, the heart '俾 forms a rotation according to the content of the disclosure - the embodiment, the square bar code includes a bar code pattern between the two longitudinal boundaries. After the boundary and the bar code bar becomes an arc bar code pattern. 3 Square bar code According to another embodiment of the present disclosure, when the rotation rotates on the central axis of rotation, the bar code reads the weight on the plane, and the center axis is located at the center of the circle. The bar code reading device is spaced apart, wherein the rotation is performed by an arc-shaped reading direction of the arc center with the two arc-shaped boundaries, and the bar code reading device reads the rotary bar code from the two side boundaries D. The translating strip according to still another embodiment of the present disclosure, wherein the rotary one-dimensional barcode or the rotary two-dimensional barcode is used. The barcode is rotated; the other content of the content is provided in the method, including Step ·· Providing a rotating fly-strip horse reading and writing boundary respectively ΐ ΐ 'Arc-shaped boundary relative to the circle' is a total center of the circle, the two sides will be at the center of the circle-shaped boundary and the virtual extension lines of the two sides of the boundary intersect with the arc opening I read The bar code is rotated between the two curved boundaries and the two sides of the r clock 1 and the code 11 so that the rotary bar code is rotated on the plane relative to the plane rotation center axis, wherein the rotation center axis is located on the center of the circle; 201241752 The bar code reading device at an appropriate distance from the plane reads the arc of the rotary bar code by reading the direction with the arc of one heart::: the circle is in accordance with an embodiment of the present disclosure, wherein the bar, the boundary thereof The first reading of the rotary bar code, the ', 5 device from the two sides according to another embodiment of the present disclosure, wherein the one-dimensional bar code or the rotating two-dimensional bar code. The bar code is rotated according to another embodiment of the present disclosure, The bearing surface of the suspected object is rotated when the object phase is rotated; ^ Turning the central axis to rotate 'The capital situation is on the provided - type of rotating bar code (4) 2 ΠΓ: provide a curved center, two sides of the boundary; do not : :::: the shape of the boundary relative to the circle of the line is at the center of the circle, the curved bar code The continuation further includes an arc bar code pattern, wherein the arc boundary and the two side boundaries are directly actuated by the bar code reading device to rotate with respect to the hanging '·bar code ' device, wherein the rotation center axis is located in the center of the circle. The second "two-shaped boundary common circle arc-shaped reading bar code pattern decoding: 乂 bar code pattern; and according to the reading arc according to the disclosure of the other - cautious - dimensional bar code or rotating two-dimensional bar code. 彳, rotate The bar code is a rotary rotation! The advantage of the hole is that it can easily achieve the above purpose by converting the square bar code into the object of the object 1 and rotating it directly by the rotary bar. 201241752 MODES: Please refer to FIG. 1 , FIG. 2A and FIG. 2B simultaneously. FIG. 1 is a flowchart of a method for manufacturing a rotary bar code according to an embodiment of the disclosure. FIG. 2A is an embodiment of the disclosure. One side Figure 2B is a schematic diagram of a rotary bar code 2' in an embodiment of the disclosure. The rotary bar code making method comprises the following steps. (It should be understood that the steps mentioned in the embodiment are as follows. Unless otherwise specified, the order may be adjusted according to actual needs, and may even be performed simultaneously or partially.) In step 101, a square bar code 2 as shown in Fig. 2A is provided. Square bar code 2 has along The square bar code 2 originally has two lateral boundaries 23a, 23b extending in the reading direction 21, and longitudinal boundaries 25a, 25b perpendicular to the reading direction 21. The square bar code 2 is at its lateral boundaries 23a, 23b and the longitudinal boundaries 25a, 25b There is a bar code pattern 22. In different embodiments, the bar code pattern 22 can be a one-dimensional bar code, a two-dimensional bar code or other types of bar code patterns. The bar code pattern can contain different information according to its arrangement order and coding mode. When the square bar code 2 is to be read, in an embodiment, the vertical boundary 25a can be started, so that the bar code reading device (not shown in FIG. 2A) is along the reading direction 21 and the square. The bar code 2 generates a relative one-dimensional motion to sequentially scan to the longitudinal boundary 25b. However, if the square bar code 2 and the bar code reading device generate a rotary movement, the angular velocity of the outer side and the inner side are different. The reading speeds of the inner and outer sides are inconsistent. For example, if the lateral boundary 23a is far from the central axis of rotation of the square bar code 2, and the lateral boundary 23b is closer to the central axis of rotation of the square 201241752 bar code 2, the bar code near the lateral boundary 23a Part 22 of the pattern 22 will have a higher rotational speed, while the portion of the bar code pattern 22 near the lateral boundary 23b will have a lower rotational speed. The inconsistent reading speed prevents the bar code reading device from correctly reading the bar code, which will result in The result of the erroneous reading is even impossible to judge the information read. Thus, at step 102, a center 24 is defined outside one of the two lateral boundaries 23a and 23b. This center 24 can be determined by the center axis of rotation of the bar to be rotated. Next, in step 103, the square bar code 2 is developed based on the center 24 such that the two lateral boundaries 23a and 23b become the two arcuate boundaries 23a' and 23b' of the common center. Further, the two longitudinal boundaries 25a and 25b will be joined to the two side boundaries 25a' and 25b' of the two lateral boundaries 23a' and 23b', respectively. As shown in Fig. 2B, the virtual extension lines 27a and 27b of the two side borders 25a' and 25b' will intersect the center 24. Therefore, the bar code pattern 22 between the lateral boundaries 23a, 23b of the original square bar code 2 and the longitudinal boundaries 25a, 25b will become the arc bar code pattern 22' due to the expansion of the step 103. The square bar code 2 in Fig. 2A will thus be expanded into the rotary bar code 2' in Fig. 2B. Please refer to Figures 3 and 4 at the same time. Figure 3 is a flow chart of a method for reading a rotary bar code in an embodiment of the present disclosure. Figure 4 is a schematic illustration of a rotary bar code 2' located on a rotating object 4 in accordance with an embodiment of the present disclosure. The rotary bar code reading method includes the following steps. (It should be understood that the steps mentioned in the present embodiment can be adjusted according to actual needs, except for the order in which they are specifically described, and may be performed simultaneously or partially simultaneously). In step 301, a rotating object 4 and a rotary bar code 2' are provided. In the fourth embodiment, the rotating object 4 is a ~:, differently shaped object, but in the embodiment, it can be used to accommodate the flow. Disk-shaped parts. The rotating object 4, in fact, the rotating object 4 can accommodate the fluid containing the cassette therein. For example, the liquid, the liquid medicine, the fluid food, and the like which are subjected to the rotary centrifugation are subjected to centrifugal treatment by centrifugal force so that the rotating object 4 has the bearing surface 40 when the rotary object 4 is rotated. In different embodiments, the rotary bar code 2' is fixedly attached to the carrier or the like, and is fixed to the rotary bar code 2, and can be formed on the bearing surface 40 by adhesive or tape. On the carrier, or in a different way, it is no longer the same.疋 <Barcode 2' has been created by the previously rotated bar code 2, the identification information of the arc 4. For example, the image #22' may include the rotating object information corresponding to the rotating object itself, and the rotating information may include the object accommodated by the rotating object 4 (such as the above == number or the rotating object 4 in its arrangement and combination. For example, 1 body _ 容物信息, etc., or the object information can be like a rotating object... The body's big whirlpool r 彳 的 的 的 的 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 Identifying one of them. The content information may be the difficulty, weight or other related information of the fluid, etc. Next, in step 302, the rotating object 4 is rotated relative to the central axis of rotation 41 perpendicular to the bearing surface 4〇, The rotary bar code 2 is rotated and rotated. In the present embodiment, the central axis of rotation 41 is located on the circle 24, which is shown in Figs. 2A and 2B, and is located at the center of the disk-shaped rotating object 4. It is implemented in other 201241752. In the example, the position of the central axis of rotation 41 may also be limited by the design of the design. The method of reading the bar code of the appropriate distance from the bearing surface 4 is read by the manufacturer. Two curved boundaries 23a, and 23b, common circle The shape reading direction 51, from the two side borders 25a, and 25b, wherein the start-up takes the arc-shaped strip 22 of the rotary barcode 2'. In the present embodiment, the object 4 is in the clockwise direction. Rotating 'so the solitary read acre will be in the counterclockwise direction, will be read from the side boundary 25b, S until the side boundary 25a. Bar code (9) take device 5 can be used to read as shown in the figure Show: the device of the strip horse 2. However, because the design of the rotary bar code is 1:24 far away - the curved bar code pattern 22 on the side, (the angular velocity is faster than the m heart 24 is closer - the curved bar code pattern 2r on the side (angle It is wide, so the bar code can be read ϋ 5 with = arc borders 23a' and 23b, itFi code 2, when the rotation is cut; ^ heart arc reading direction can read the rotary bar can not h bar code The reading speed of each position is the same, so L will be read on the curved bar code pattern 22 of the rotary bar code 2'. The rotating bar code 2, the design method, can easily be rotated in the enemy. ^ at the time of 'rotation bar code host by the bar code reading device 5 \ not * in the second embodiment /, the bar code reading device 5 will be connected Connected to - 摅 夕 二 不 以 以 以 以 以 以 以 以 以 以 以 以 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 ... ... ... ... 纠 纠 纠 纠 纠 纠 纠 纠 纠Information. - Real two-in-one t-parameters: Figure 5 and Figure 6. Figure 5 is a flow chart of the information reading method of the stripe reading device of the present disclosure. 10 201241752 Figure 6 is a disclosure of the present disclosure The embodiment of your Shimin?,> _ is not intended to rotate the bar code 2 on a plane. The bar code reading device. The initial L & Xibe machine % method includes the following steps (should know In the present embodiment, the simultaneous or:=r needs to adjust the sequence before and after, and even in step 501, the rotary bar is provided at the beginning. In the present embodiment, the rotary bar code 2' itself does not rotate, 跸. β a a 〃 W can therefore also be called a curved bar code. Fang Wei's rotary bar code 2 can be attached to a flat and L ^ type stone horse r is the same without rotation. + face '(4) this plane and rotation in step 502, so that the distance between the rotation type is appropriate (four) & * rotary bar code 2, (ie, the vox bar code) - the bar code reading device 5 of the field distance, for the bar code m T The _ 'W mesh is located on the center 24 of the center of rotation 41 perpendicular to the plane in which the rotary code 2 is located. The axis 41 is suspected to rotate, wherein the center axis is rotated in step 503, so that the barcode reading is selected _ 'buy the heart 5 by a curved boundary 23a with the rotary bar code 2, and 23b, the ping is in the heart丨丨, interest field, 131~ arc reading direction 51, from - grasping it - start reading rotary bar code _: direction to rotate, so the arc reading direction 5 " word is inverse time oblique 2 The direction will be read from the side boundary 25b, until the side boundary ❿, until the step 504' is decoded according to the read arc bar code pattern 22. In the embodiment, the bar code reading device 5 will be connected to a host (not shown = to transfer the captured result to the host for decoding. Therefore, by rotating the stone horse 2' design, 彳The reading of the rotary bar code 2 is performed by easily performing the rotation of the bar code reading device 5. The advantage of applying the disclosure is that a fixed reading can be achieved by converting a square bar to a 201241752 rotary bar code. The device can easily achieve the above purpose by directly reading the information of the object on the rotating object or reading the information of the fixed object on the rotating reading device. Although the disclosure has been disclosed in the above embodiments, It is not intended to limit the disclosure, and any person skilled in the art can make various changes and refinements without departing from the spirit and scope of the present disclosure. The above and other objects, features, advantages and embodiments of the present disclosure will become more apparent and understood. 1 is a flowchart of a method for manufacturing a rotary barcode in an embodiment of the disclosure; FIG. 2A is a schematic diagram of a square barcode in an embodiment of the disclosure; FIG. 2B is an implementation of the disclosure For example, a schematic diagram of a rotary bar code; FIG. 3 is a flowchart of a method for reading a rotary bar code according to an embodiment of the disclosure; FIG. 4 is a rotating object according to an embodiment of the disclosure FIG. 5 is a flowchart of a method for reading information of a barcode reading device according to an embodiment of the disclosure; and FIG. 6 is a plane in an embodiment of the disclosure.上旋旋 12 201241752 Rotary bar code is not intended. [Main component symbol description] 101-103: Step 2': Rotary bar code 22: Bar code pattern 23a, 23b: Horizontal boundary 24: Center 25a', 25b': Side boundary 301-303: Step 40: Carrying surface 5: Bar code reading device 501-504: Step 2: Square bar code 21: Reading direction 22': Curved bar code pattern 23a', 23b': Curved borders 25a, 25b: Arcuate direction 13 reads: the boundaries 27a, 27b: 4 virtual extension line: 41 rotates objects: the rotation center shaft 51