TW201202988A - Data transformation device, cad system, method for dividing shape data, and recording medium - Google Patents

Data transformation device, cad system, method for dividing shape data, and recording medium Download PDF

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Publication number
TW201202988A
TW201202988A TW100100991A TW100100991A TW201202988A TW 201202988 A TW201202988 A TW 201202988A TW 100100991 A TW100100991 A TW 100100991A TW 100100991 A TW100100991 A TW 100100991A TW 201202988 A TW201202988 A TW 201202988A
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Taiwan
Prior art keywords
data
line
shape
hollow
shape data
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TW100100991A
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Chinese (zh)
Inventor
Masakazu Asakawa
Seiji Imamura
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Nec Corp
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Publication of TW201202988A publication Critical patent/TW201202988A/en

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T19/00Manipulating 3D models or images for computer graphics
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F30/00Computer-aided design [CAD]

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Computer Hardware Design (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Evolutionary Computation (AREA)
  • Geometry (AREA)
  • Computer Graphics (AREA)
  • Software Systems (AREA)
  • General Factory Administration (AREA)
  • Numerical Control (AREA)

Abstract

With respect to each of a plurality of blank data included in a shape data, a connecting sequence upon connecting, via dividing lines, between an outer profile line and a profile line of a blank portion, and between profile lines of two blank portions is setup by means of a sequence setup section (13). Following the setup connecting sequence, and starting from any point of the outer profile line to another point, a dividing line setup section (14) conducts connection between the outer profile line and the profile line of the blank portion, and also between the profile lines of (adjacent) blank portions by means of noncrossing dividing lines. A shape data dividing section (15) divides the shape data into two shape data bordering on a dividing line.

Description

201202988 六、發明說明: 【發明所屬之技術領域】 本發明係關於一種資料轉換裝置、CAD (Computer Aided Design,電腦輔助設計)系統、形狀資料分割方法、及記錄媒體, 詳言之,係關於一種處理包含中空部分之形狀資料的資料轉換裴 置、CAD系統、形狀資料分割方法、及記錄媒體。 【先前技術】 IDF (Intermediate Data Format,中間資料格式)係一為了將三 次元CAJD之資料與基板設計CAD裝置之資料互相轉換而開發出 的中間檔案(請參考例如非專利文獻1)。設計者在設計基板之時, 利用3次元CAD進行構造設計’其設計之構造設計中,將外形大 小或配線禁止區、零件安裝高度限制等之資訊轉換為IDF資料 後,輸入至基板設計CAD裝置。 [習知技#f文獻] [非專利文獻] [非專利文獻 1] : Intermediate Data Format,Mechanical Data Exchange Specification for the Design and Analysis of Printed Wiring201202988 VI. Description of the Invention: [Technical Field] The present invention relates to a data conversion device, a CAD (Computer Aided Design) system, a shape data segmentation method, and a recording medium, in particular, a A data conversion device, a CAD system, a shape data segmentation method, and a recording medium that process shape data including a hollow portion. [Prior Art] IDF (Intermediate Data Format) is an intermediate file developed to convert the data of the three-dimensional CAJD and the data of the substrate design CAD device (see, for example, Non-Patent Document 1). When designing the substrate, the designer uses 3-dimensional CAD for structural design. In the design of the design, the information such as the external size, the wiring prohibited area, and the height limit of the part is converted into IDF data, and then input to the substrate design CAD device. . [History Technology #f Literature] [Non-Patent Document] [Non-Patent Document 1] : Intermediate Data Format, Mechanical Data Exchange Specification for the Design and Analysis of Printed Wiring

Assemblies,Version 3.0, Revision 1,October 31, 1996,網路資料 (URL: http://www.aertia.com/docs/priware/IDF V30 Spec.pdf) 【發明内容】 [發明所欲解決的問題] 一般而s,3次元CAD中雖有施行包括中空之構造設計,但 在IDF的部分’則是以一條連續線段所包圍之輪磨資料或面狀資 料來表達形狀,在IDF Veir.3裡,其在傳送配線禁止區或零件安 裝高度限制之形狀的資料中,並無中空這樣的概念。因此,構造 者Γϊ利用3次元CAD ’設計作為包含中空部分的一個面形 資料之構以设計’亦必須特別編輯成不含中 將構造設計轉換為肪_,傳送資料至基板Assemblies, Version 3.0, Revision 1, October 31, 1996, Network Information (URL: http://www.aertia.com/docs/priware/IDF V30 Spec.pdf) [Summary of the Invention] [Problems to be Solved by the Invention] In general, s, 3 dimensional CAD has a hollow structural design, but the IDF part is expressed by a round line of rounded data or surface data, in IDF Veir.3 In the data of the shape of the transmission wiring prohibited area or the height limit of the component mounting, there is no such concept. Therefore, the constructor uses the 3-dimensional CAD ' design as a configuration of the surface data containing the hollow portion to design 'and must be specially edited to convert the structural design into a fat _, and transfer the data to the substrate.

S 4 201202988 中顯資料的-例。而圖14 料401〜403,係以由一i連4輪#丄所®^⑻〜(C)所示之面形資 閉^輪廓線所包圍之區域。被内側之_輪棘包圍2之ζ分子4ΐι 置時,其面形資料 圖15顯示一面形資料之分割之一例。 四個面形資料。在進行如圖14所示形狀之基板時 利用3次元⑽設計之如圖14所示的面形資料H圖 方式加以分割,編輯成不含中空部之資料後,必須 ^ 將=傳送予基板設計裝置。並沒有將包含中空部之面形:’ 部ί複?的面形資料之自動化作業機制。因此, 基板5又精如㈣人工麵行分割之健,產生多 。 -般而言,由實際的構造設計所獲得之面料 14所不之形狀更加複雜。圖16巾顯示包 ^ = α -例子。卻6中,以粗線來標示將 面料圖16之上方將由區=以 ===:増多’可能發生忘記分割而無法將資 資料題=人形狀 =定形狀資料的分割形態,人ς 割為不含中空部的2個以上之形狀資料。 ^狀貝枓 201202988 [解決問題之技術手段] 含:’、成^目的’依本發明之第1態樣之資料轉換裝置,包 狀資之資料,該外形資料包含表示形 料分其輸人複數之中空資料,該複數之中空資 線it;:狀貝料之外側輪廊線内部所包含的中空部分 順序設定部,其分別針對該複數 刀的輪廓線彼此間時,設定其連結順序;、有連…亥中空部 分割線設定部,其自該外側輪廓線之任 線之另外-處止,依照該連結順序, 丨:卜側輪廟 與該中空部分的輪摩線之間,以及連結線 間,該分割線不互相交叉.。二邛刀9輪廓線彼此 形’其以該分割線’將該一 ^料輸出部’其將該被分割之2個形 本發明之第2態樣的CAD系統,包含: 依本發明之第1態樣之資料轉換裝置; 構造設計CAD裝置,其將該外形資料盥 輪出至該資料轉換裝置;以及 、中二資料, 基板没計CAD裝置,其輸入該資料轉換裝置之 =獅峨,細細輸 本發明之第3態樣的資料轉換裝置,包含: 外形㈣輸人部,其輸人外形資料,該外形資料 ^ 狀資料的外側輪廓線之形狀的資料; 表不形 中空浦輪人部,其輸人複數之+空資料,該複數之 枓勿別包含該形狀資料之外側輪廓線内部所包含的中空部分二= 201202988 線之形狀的貢料; 定;將分;ί 1個以上的群組; ^處,至該外側輪廓線之另-處止,貫則輪廓線之 分的分割、,,該分割線不與其他分縣。独之中空部 ====之=料輪出。 中空資料輸入步驟,輸入複數 =;r料之外繼線内部二 連結順序設定步驟,分別針對該複數之 空部分的輪廓線之間,以及連吟巾心β/、Α“」輪職與δ亥中 分割線不互相交叉;以及科以分的輪廓線彼此間,該 明將該形狀資料分割為2個形狀資料。 儲存有时使電職行下淋處理之記錄程式:。永己錄媒脰 示形狀資i的:侧輪:線之=二卜:Τ枓’該外形資料包含表 中空資料輸入之處理,其輸入複數之中空資料, 狀資料之外側輪廊線内部所包含的中空部分 連結順序設定之處理,分別針對該複數之中空資料,在以分 201202988 線與該中空部分的輪靡線之間,還有連結該 鱼i的輪廉線彼此間時,設定其連結順序; 外-處!處側輪廓線之任—處,至該外側輪廓線之另 間以f連結該中__線彼此間,該 該分雜賴雜練分辦2娜狀資料。 及記置、cad系統、形狀資料分割方法、以 [實二ΐ】 刀割為不含中空的2個以上之形狀資料。 在祝明本發明之實施態樣之前,先就本發明 馳謂成。轉換裝 iil _之中空㈣分別包含形狀資料之外側u 線内部所包含財空部分輪廓線之形狀的射[ 卜側輪廓 順序設定部13,係分別針對複數之中空資料 二形狀資料之外側輪廓線射空部分的輪廟線二在 j分的輪廓線彼此間時,設定其連結順序。分割線設$了中 '、自外侧輪廓線之任一處,至外側輪廓線之另外—户^ ;, ^員序,以分割線連結外侧輪廓線與中空部分的輪雜之^連 ,結中空部分的輪舰彼關,4難不互相交又 ^以 3部15,係以分割線將形狀資料分割為2個形狀料 出。P16係將被分割之2個形狀資料輸出。 ’、貝料輸 本發明(第1發明)中,分割線設定部Μ將外側 工。吩的輪廓線UWX及巾空部分的輪廓線彼此^依中 201202988 定部13設定之連結順序以分割線連結。此時, 係以分割線不與其他分割線交又的方式,來讯乂、、’ °又疋邵14 料分割部K藉著以所設定之分割線為 1¾二二。形狀資 ,操作者不必以人工將包含中空部之升; ΐ以人工來紗雜侧之相職,仍可便 貝料,分割為不含中空部之2個形狀資料。 之形狀 圖2顯示第2發明之資料轉換裝置的 :欠 置2〇具備有外形資料輸入部21 貝=轉換裂 23、分割線設定部24、形狀資 =輸入^22、鮮組化部 外形資料輸入部21輸入外形資^斗,^卜形資輸出部26。 的外側輪廓、線之形狀的資料。中 二、不幵&gt; 狀資料 資料,該複數之中空資斜八心入入。ρ 22輸入複數之中空 中所包含的中空部;輪之:的'》:料之外側輪#線其内部 分割: 1個以上的群組。 止,設定貫穿屬於同—群處至外側輪靡線之另一處 μ以分m之祕。辦,糾線設定部 =咖⑺以分騎。形狀資 料。而資料輸出部26 貝科刀割為2個以上之形狀資 本發明(第2的個以上之形狀資料輸出。 版線之任-處至外設定部^割線,自外側輪 與其他分割線G的^線。此時,分割線設定部Μ以分割線不 以所設定之分餐 ^ :來設定分割線。形狀資料分割部25藉 上的形狀資料料分割,可獲得不含中空部之2個以 以人工將包含中==本發明之資料轉換裝置的使用,操作者不必 肤資料。亦即,二=形^資料,分割為不含中空部之複數個形 Λ之貧料轉換裝置,即便不以人工來決定形 201202988 狀資料之分割形態,仍可將包含中空部之形狀資料,分割為不含 中空部之2個以上的形狀資料。 以下參考附圖,對本發明之實施態樣加以詳細說明。圖3顯 示本發明第1實施態樣之CAD系統。CAD系統具備有資料轉換 裝置1(Π、3次元CAD裝置102、以及基板設計CAD裝置103。3 次元CAD裝置1〇2為一被使用於構造設計之CAD。基板設計CAD 裝置103為一施行基板設計之CAD裝置。3次元CAD裝置102 輸出包含中空部之形狀資料。此時’ 3次元CAD裝置1〇2將包含 中空部之形狀資料,分為外形部分之形狀資料,與1個以上之中 空部分之形狀資料輸出。資料轉換裝置101將包含中空部之形狀 資料分割為不含中空的2個形狀資料。而資料轉換裝置將 透過分割所獲彳于之2個形狀資料’輸出至基板設計caq裝置103。 圖4顯示資料轉換裝置ιοί之構成。資料轉換裝置ι〇1具有 資料輸入部111、形狀資料演算部112、資料輸出部113、顯示部 114、以及連結指示輸入部115。資料轉換裝置1〇1,以例如cpu (CentralProcessingUnit,中央處理器)為中心,由以程式控制來動 作之習知的電腦系統所構成,具備RAM (Rand〇m Access Mem〇ry, h機存取5己憶體)或ROM (Read Only Vtemory,唯讀記憶體)等 記錄媒體101m。資料轉換裝置ιοί内之各部機能,可藉由依照事 先&amp;己錄於δ己錄媒體101m之既定程式使電腦系統動作的方式,予以 實現。另外,記憶有此既定程式之記錄媒體1〇lm,可於資 裝置101之外部設置,亦可經由通信線路將既定之程式 、 料轉換裝置101,使資料轉換裝置101動作。 貝 貢料輸入部111輸入3次元CAD裝置102所輪出之形狀資 料。資料輸入部111包含外形資料輸入部116與中空資料輪A m。外形資料輸入部116輸入包含形狀資料之外部輪氣線的外 資料。而中空資料輸入部117係輸入形狀資料中所含的H / 之中空部分之輪廓線(内側輪廓線)的中空資料。在此,士 料與中㈣料皆包含形狀資料的位置為已知之祕,及表^ 資料與中线料各自之絕對位置錢此之姆位置的:祕。卜开7 55 10 201202988 含中部3將包含中空部分之形狀資料,分判S 4 201202988 - The case of the data. On the other hand, the materials 401 to 403 in Fig. 14 are surrounded by the contours of the contours shown by the i-connected 4-wheels®(^) to (C). When the inside of the _ wheel spine is surrounded by 2 ζ molecules 4 ΐ ι, its surface data Figure 15 shows an example of the segmentation of the shape data. Four faceted materials. When the substrate of the shape shown in FIG. 14 is used, the three-dimensional (10) design is used to divide the surface data as shown in FIG. 14 and edited into the data without the hollow portion, and then the substrate design must be transferred to the substrate design. Device. There is no automated working mechanism that will include the shape of the hollow part: the part of the surface. Therefore, the substrate 5 is as fine as (4) artificial face segmentation, resulting in a large number. In general, the shape of the fabric obtained from the actual structural design is more complicated. Figure 16 shows the package ^ = α - example. However, in 6th, the thick line is used to mark the upper part of the fabric. Figure 16 will be divided by the area = ===: ' 'may be forgotten to divide and can not be the information file = human shape = shape data segmentation form, people cut It is a shape of two or more shapes without a hollow portion. ^状贝枓201202988 [Technical means to solve the problem] Contains: ', the purpose of the purpose of the invention according to the first aspect of the data conversion device, the information of the package, the shape data contains the representation of the input of the input a plurality of hollow materials, the plurality of hollow line lines;: a hollow portion sequence setting portion included in the outer side of the outer wheel corridor line, wherein the connection order is set for each of the contour lines of the plurality of blades; a hollow portion dividing line setting portion that is different from the line of the outer contour line, according to the connecting sequence, between the side wheel temple and the hollow portion of the wheel, and The dividing lines do not cross each other between the connecting lines. The second knives 9 contour lines are shaped like each other, and the two-part CAD system of the second aspect of the present invention is divided into two according to the present invention. 1 aspect data conversion device; structural design CAD device, which rotates the shape data to the data conversion device; and, the second data, the substrate does not count the CAD device, and the input data conversion device = Griffin, The data conversion device of the third aspect of the present invention is characterized in that: the shape (4) input part, the shape information of the input body, the shape of the shape of the outer contour line of the shape data; the intangible hollow wheel The Ministry of Humans, the input of the plural + empty data, the plural should not include the hollow part of the shape of the outer contour of the shape of the outer contour = 201202988 line of the tribute; fixed; will be divided; ί 1 The above group; ^, to the other side of the outer contour line, the division of the contour line, the division line is not with other divisions. The only hollow part =====The material is rounded out. Hollow data input step, input complex number =; r material outside the line internal two connection order setting steps, respectively, for the outline of the empty part of the complex number, and even the towel heart β /, Α "" rotation and δ hai The middle dividing lines do not cross each other; and the contour lines of the divisions are separated from each other, and the shape data is divided into two shape data. Store the recording program that sometimes causes the electric job to be treated. Formerly recorded media shows the shape of i: side wheel: line = two b: Τ枓 'The shape data contains the processing of the hollow data input, the input of the plural hollow data, the data inside the outer side of the corridor line contains The processing of setting the connection order of the hollow portions is set for the hollow data of the plural number, and between the line of the 201202988 line and the rim line of the hollow portion, and the line connecting the fish i, Sequence; outside - at the position of the side contour line, to the other side of the outer contour line with f connecting the middle __ line between each other, the point is mixed with 2 points of data. And the recording, the cad system, the shape data segmentation method, and the [real two] knife cut into two or more shapes without hollow. Prior to the description of the embodiments of the present invention, the present invention was first described. The hollow (4) of the conversion device iil contains the shape of the outline of the financial portion contained in the outer u line outside the shape data. [The outline of the outline of the marginal contour is set to the outer contour of the hollow data of the plural data. The round temple line 2 of the shooting section is set in the order of connection when the outlines of the j points are between each other. The dividing line is set to "in the middle", from any one of the outer contour lines, to the other side of the outer contour line, and the household order is connected by the dividing line to the outer contour line and the hollow part. The hollow part of the ship and the other side, 4 difficult to cross each other and ^ 3 parts 15, the shape line data is divided into two shapes by the dividing line. The P16 system outputs the two shape data divided. In the present invention (first invention), the dividing line setting unit Μ operates outside. The contour line UWX of the quotation and the outline of the empty portion of the towel are connected to each other by the dividing line in the order of connection set by the 201202988 fixed portion 13. At this time, the dividing line is not intersected with the other dividing lines, and the dividing line K is set by the dividing line of the set by 13⁄2 22. The shape of the capital, the operator does not have to manually include the hollow part of the rise; ΐ artificially to the side of the yarn side of the job, can still be used to separate the material into two shapes without the hollow part. FIG. 2 shows the data conversion device according to the second aspect of the present invention: the undersized data unit 21 includes a shape data input unit 21, a conversion split 23, a dividing line setting unit 24, a shape input=input 22, and an outline data input. The part 21 inputs the shape factor, and the shape output unit 26. The outer contour and the shape of the line. In the second, no 幵 </ gt> data, the plural of the hollow slanting into the heart. ρ 22 inputs the hollow portion included in the hollow of the complex number; the wheel: "": the outer side wheel # line is internally divided: one or more groups. Stop, set the other part of the same-group to the outer rim line μ to divide the secret of m. Do, set the line correction department = coffee (7) to ride. Shape information. The data output unit 26 is cut into two or more shape capital inventions (the second or more shape data is output. The line is from the outside to the outside setting unit ^ secant, from the outer wheel and the other dividing line G In this case, the dividing line setting unit sets the dividing line so that the dividing line does not set the divided meal. The shape data dividing unit 25 divides the shape data, and two of the hollow portions are obtained. By manually using the data conversion device of the present invention == the operator does not need the skin material. That is, the two data is divided into a plurality of defective materials conversion devices without hollow portions, even if not By manually determining the shape of the shape of the 201202988 data, the shape data including the hollow portion can be divided into two or more shape data without the hollow portion. Hereinafter, the embodiment of the present invention will be described in detail with reference to the accompanying drawings. Fig. 3 shows a CAD system according to a first embodiment of the present invention. The CAD system is provided with a data conversion device 1 (Π, a 3 dimensional CAD device 102, and a substrate design CAD device 103. The 3 dimensional CAD device 1〇2 is used as one. In construction The CAD design of the substrate design CAD device 103 is a CAD device for designing a substrate. The 3-dimensional CAD device 102 outputs the shape data including the hollow portion. At this time, the '3 dimensional CAD device 1〇2 will contain the shape data of the hollow portion and is divided into The shape data of the outer shape portion is outputted with the shape data of one or more hollow portions. The data conversion device 101 divides the shape data including the hollow portion into two shape data without hollow, and the data conversion device is obtained by the division. The two shape data 'output to the substrate design caq device 103. Fig. 4 shows the configuration of the data conversion device ιοί. The data conversion device ι〇1 has a data input unit 111, a shape data calculation unit 112, a data output unit 113, and a display unit. 114. The connection instruction input unit 115. The data conversion device 1〇1 is constituted by a computer system known as a cpu (Central Processing Unit) and operated by a program control, and has a RAM (Rand〇m). Recording medium 101m such as Access Mem〇ry, h machine access 5 memory) or ROM (Read Only Vtemory). The functions of the various parts of οί can be realized by the method of pre- &amp; recording the computer system by the established program of 103m recorded media. In addition, the recording medium with the established program is 1〇lm. The external device of the resource device 101 can also operate the data conversion device 101 by a predetermined program and material conversion device 101 via a communication line. The squash input unit 111 inputs the shape data rotated by the three-dimensional CAD device 102. The portion 111 includes an outline data input unit 116 and a hollow data wheel A m. The shape data input unit 116 inputs the external data of the outer wheel line including the shape data. The hollow data input unit 117 is a hollow data input to the outline (inner outline) of the hollow portion of H/H contained in the shape data. Here, the position of the material and the middle (four) materials all contain the shape data is the known secret, and the absolute position of the table ^ data and the center line material is the position of the money: secret.卜开7 55 10 201202988 The middle part 3 will contain the shape information of the hollow part, sub-judgment

112 J 的輪廓線彼此間的分割線結中空部分 ;2 ::剌料。而資料輸出部i 13將不貧料分 貝枓,輸出至基板設計CAD裝置1〇3 邛之2個形狀 形狀資料演算部112具備有順序設定部ιΐ8 之中割部120。順序設定部m係分 貝# ’相分躲連結糊輪廓線 =複數 ί’Γί連結中空部分的輪廓線彼此間時,設線之 f不於顯示部出,催促操作者指示連0視f知的形式, 部分之連結順序指示給順序設+定 曰;:m,將中空 者之指示來設定連結順序。 、序°又疋部1丨8依照操作 ϊ -ί J;-^ · 疋連結外側輪廓線與中空部分之^線之另處止,設 與其他分割線交又⑺9以分割線不 分割線連結複數之中办邻八由刀。']線。分剎線设定部119,以 線彼此間。此外定中順序相鄰之中空部分的簡 結順序在最前頭的中空部分 ’將^側輪靡線之任-處與連 序在最後方的中空部分線以分割線連結,並將連結順 連結。U刀之輪鱗與外侧輪祕之另一處以分割線 著將形狀杨,資料分割為二。藉 可獲得不含巾空資料的2卿=技分縣為界分割為二, 割所得之2個形狀資料輸^ 形狀資料分割部120將分 將 201202988 圖5顯示第}實施態樣中資料轉換裝置之動作的一例。 剧邛111將开》狀資料自3次元裝置輸入(步驟A 。 CAD裝置102 ’舉例來說’以外形資料之形狀、1個以上 :工部分的形狀之順序,將形狀資料以服資料輸出 ?入=6由3次元CAD裝置1〇2將表示外形資料之跡資S ΓΑΤ^存於兄錄媒體1〇lm中。而中空資料輸入部117由3次元則 ;置=將料f roF #料輸人,館存於記錄媒體 別號碼等,做成中空 =$|。117針對各中空部分分別分, -序,定部118將形狀資料輸出至顯示部114,催促摔作去 蔣。操作者利用連結指示輸入部115,指示ίίΐ =序。順序設定部118將被指示之連結順序的連 •-口P分(步驟A2)。而順序設定邱u俨索0又疋於各中 之清單排序。亦即,順序 σ =據連…順序將中空部分 連結順序排列的清單。、σ 生依照複數之中空資料的 为割線设定部119由中空部分的、、主 =分割線設定部119,將外側輪廓i之I壬二i最主前Λ的中空 =部119,在以分割線連結對象時,舉lA3)。分割線 式,來設定分割線。另外,依IDF 乂象之角t特徵點連結的方 順時鐘或逆時鐘方向來表*。故ϋ形_寅料之線段,係以 與中空資料之輪靡線的資料,宜先 ^止’表示外形輪靡線 時鐘中之任一方向。 田|方向統—為順時鐘或逆 分割線设定部119,由中空部分主时 出中空部分,於連結順序相鄰之中办^八早中,依連結順序逐—取 依次以分割線連結(步驟A4)。此輪摩線之任一處間, 已設定之分割線與新設定之分割線不刀割線設定部119按照使 線。形狀資料演算部112,在分割 ^^的方式,設定分割 交叉的方式將中空部彼此連結時 。p 無法以分割線不相 ^驟八2,重新設定連結 201202988 ^。^分赚設定部m _執行以分割線將中空部分之輪廟 線彼巧結的動作,直至中空部分之清單的最後—個為止。 副線設定部119 —旦設定好連結順序最後—個中空部分之 二:丄二=以分㈤線連結清單之最後—個中空部分的任一點與外 卜圍輪氧線之任一點(步驟A5)。分割線設定部119在 宝二’二以Λ割線彼此不相交又的方式來設定分割線。形狀 二ΐ,i2^巴步驟A1輸入之形狀資料,以在步驟A3〜Α5中 以二’分剎為二(步驟A6)。形狀資料分割部120 耩由以为告·為界將形狀資料分割為二,獲得 113 ’將形狀資料分割部12工Q分割好之 2们形狀責枓,分別以roF檔案輪出(步驟A7)。 圖6顯示包含中空部分之形狀資 資料,對上述動作加以説明。圖6上6所不之形狀 中空部分。外形資料輸入部116於步包έ 201〜=四個 外形資料。而中空資料輸人部117,冑 =以=义不之 空部分,輸入中空部分各自之位置」Ύ針對201〜204四個中 料輸入部U7各自對201資料/空資 中空部分之清單。 1UT工邛/刀賦予識別號碼,產生 順序設定部118在步驟A2中,於顯 2狀資料,催促操作者指示連結順序。^老H圖,示 中空部分之形狀與位置時,亦;、者在事先已旱握 利用連結指示輸出部出,指示_ 6 之顯示。操作者 達的連結轉。轉奴部118 ^^攸之數字所表 示之連結順序排序。 二。卩刀之4單,依操作者指 分割線設定部119在步驟A3中,將外 的任-點’與連結順序為!號的之賴輪廓線上 ,部分加之輪廓線上的任一點,以^二1’』卩清單最前方之中 外形育料之面向紙面左上方的頂點處作。圖6裡’係以 起直至清單最前方之中空部分 ^二‘、'、的起點,從該處 割線观。分割線無須為一條直線,’以直線拉出分 々喂數之直線連結而成 33 201202988 者。或者分吾彳線亦可以為曲線。 分割線設定部119於步驟A4中,將連結 分2〇2取出,自連結順序1號之中空部分2(ηί至m空部 號之中空部分搬,以不與其他分割線交叉之H序2 部分之間的分割線302。之後,分割線設定部^依^士^中空 取出,重複進行連結中空部分。的^ 線之5又疋處理’重稷進订之次數為中空部分之數 刀d 處理以而設定分割線3()3、綱。亦即,設定將四個咸中 〜204依次連結之三條分割線搬、3〇3、3〇4 == 201 一旦將分割線拉至連結順序中最後—個連結刀為$又疋=9 分,則於步驟A5 *,將連結順序4號之中空部 料之外圍輪廓線上和分割線起點相異之任一點,二 始、卜形資 Ϊ點ί…分割線的終點位置在外形資料面向紙二 形狀資料分割部120於步驟Α6中, =3\〇1〜305為界,將形狀資料分割為二。Ξ 7 界破分割為二之2個形狀資料。形狀資 二不/刀乂線為 線為界將形狀資料分割為二,將圖6所示^4皆=藉交以分割 狀資料Α210與形狀資料咖。參照圖’7、二割為形 生之2個形狀資料Α210鱼形狀資料Β? α ^破为。彳為二所產 部分。資料輸出部113於步驟Α7中,將^無:空 資料,輸出至基板設計= 裝置t依腳格式轉為前述卿 圖8顯示使用本實施態樣之資料 __ 之形狀資料分割的例子。形狀資料將圖16所示形狀 空部分的連結順序為附記於中空 15G_x15〇mm。中 線設定部119自外形資料之外側於二,子所J達的順序。分割 依照連結順序,奴:任-處起’至另-處止, 分割線為界來分娜狀:#料目交叉°藉_此設定之 卞戈®1 8所不之例,在形狀資料包含 14 201202988 多個中空部分,即使於形狀複雜之情況下,&amp; 料之2個形狀資料。 兄下,仍可獲得不含中空資 本實施態樣中,分割線設定部丨19儀 — ^ 定之順序’設定連結外側輪祕與巾空部八^=奴部118設 空部分的輪廓線彼此間之分割線。、;:又、结郛線間’以及中 割線不與其他分齡交叉之H 線設定部id以分 t „形狀部分包含之中空“ 形狀浦依所設定之分割線分割為二,即可 獲付不含中空貧料之2個形狀資料。 出之ΐΐΐΐί中轉換裝置101將3次元CAD裝置Η)2輸 輸出料’分割為不含中空的2個形狀資料並 二二順裝ί1〇3。依本實施態樣,因可將傳予基板 S 中空部分的形狀資料設為2個,故例如 二Γ μ 線將形狀資料分割使形狀資料數量為多數之情 $目1&quot; ’ ; 土板设計CAD裝置l〇3t的形狀資料之處理變得容 易。此夕’即便中空部分之數量為多數,因可將形狀資料之個數 控制在2個’故可抑姻形狀資料之個數增加而造成之基板設計 CAD裝置103表現惡化之情況。 本實施態樣巾’因㈣轉換裝置1G1,可將形狀⑽分割為不 含中空部之开》狀資料並傳予基板設計CAD装置1〇3,故構造設計 表不必在3次凡CAD裝置1〇2中進行形狀資料之分割編輯,由構 造設計之觀點進行設計即可。依本實施態樣,構造設計者不必以 人工將形狀資料^割,可以減少構造設計及基板作業的作業工 時。此外,依本實施態樣,可防止以人工分割形狀資料時造成之 分割錯誤問題(例如,漏看了中空部分之分割等),謀求品質之 提升。 圖9頒示本發明第2實施態樣之資料轉換裝置。資料轉換裝 置101a具備有資料輸入部m、形狀資料演算部u2a、以及資料 輸出部113。本實施態樣之資料轉換裝置1〇'1&amp;與圖4所示的第1 15 201202988 實施態樣之資料轉換裝置101其不同處在於形狀資料演管 更增設群組化部m。其他部分顺第丨實絲樣之&amp; 皿相同,故於與第!實施態樣構成中具有相同功能 同一符號,省略重複之說明。 冉坎上附‘ 群組化部121 ’將所輸人之複數的中空部分,分組為i個以上 的群組。群組化部121例如因應中空部位之坐標(顯示位 料)’將坐標相近的多數之中空資料分屬至同—群組 &amp; =121亦可催促操作者輸人分組的指示,並依操作者之指示進 t組。順序設定部118,針對屬於群組之中空資料,設定自外形 :料^^卜側輪廓線的任-點至外側輪猶的另—點為止之分割 二2中空部分之順序。順序設定部118於各個群組内,i定 刀割線貫穿中空部分之順序。 另—^線設定部119,設定由外形資料之外側輪廓線之任-點至 定止,貝牙屬於相同群組之中空部分的分割線。分割線設 S ^各個群組内,設定貫穿屬於群組之中空部分的分割線。 定。彳線設定部119以分割線彼此間不互相交叉之方式,設 綠i =、束。形狀貧料分割部120以分割線設定部119設定之分割 形狀#料分割為不含中空倾的2個社之形狀資料。 例如貝^的分割數為’分麟設定部119設定之分齡數目+1。 部119 2-組?部121分組產生之群組數為2個’若分割線設定 料八疋之分割線為兩條時,則形狀資料分割部120將形狀資 刀刳為3個形狀資料。 輪入$ ^ m實施態樣之資料轉換裝置其動作之—例。資料 資料^入^自3次元CAD裝置102 (圖3)輪入形狀資料。外形 資料4/116自3次元CAD裝置102輸入表示外形資料之IDF CAD存於記錄媒體101m中。中空資料輸入部117自3次元 l〇lm ;。1〇2中輪入表示中空資料之1DF資料,儲存於記錄媒體 料’ 部121,將中空資料輸入部117輸入的複數之中空資 刀、、且為1個以上的群組(步驟B1)。群组化部121亦可將形The dividing line of 112 J is separated from each other by a hollow part; 2::剌. On the other hand, the data output unit i 13 outputs the unshaped material to the two substrate shape data calculation units 112 of the substrate design CAD device 1 to 3, and includes the cut portion 120 among the order setting units ι 8 . The sequence setting unit m is a decibel # 'phase-divided link paste outline=plural ί'Γί When the contour lines of the hollow portion are connected to each other, the line f is not displayed on the display portion, prompting the operator to instruct the user to The form, the part of the connection order is indicated to the order setting +: m;, the hollower's instruction is used to set the connection order. , order ° and the top part 1丨8 according to the operation ϊ -ί J;-^ · 疋 link the outer contour line and the hollow part of the ^ line of another stop, set the intersection with other division lines and (7) 9 with the division line undivided line connection In the plural, the eight-way knife is set up. ']line. The divided brake line setting unit 119 is lined with each other. In addition, the order of the hollow portions adjacent to each other in the order of the middle is connected at the foremost hollow portion 'to the side of the rim line' with the dividing line at the last hollow part line, and the link is spliced . The other side of the U-knife wheel scale and the outer wheel is divided into lines to shape the shape of Yang, and the data is divided into two. By dividing the 2nd = technical divisions that do not contain the towel data into two, the two shape data obtained by cutting the shape data division part 120 will divide the data in the 201202988 An example of the operation of the device. The drama 111 inputs the data from the 3-dimensional device (step A. The CAD device 102', for example, outputs the shape data in the order of the shape data, one or more: the shape of the work part. Enter=6 from the 3D CAD device 1〇2, the trace information S ΓΑΤ^ representing the shape data is stored in the sequel media 1 〇lm, and the hollow data input unit 117 is made up of 3 dimensions; set = the material f roF #料In the case of the input, the library is stored in the recording medium number, etc., and is made hollow = $|. 117 for each hollow portion, respectively, the order, the fixed portion 118 outputs the shape data to the display portion 114, urging the fall to go to Chiang. The connection instruction input unit 115 instructs ίίΐ = order. The sequence setting unit 118 divides the connected port of the instructed connection order (step A2), and sequentially sets the order of the 俨u俨索0 in each list. That is, the sequence σ = the list in which the hollow portions are sequentially connected in order. The σ is in accordance with the plural hollow data, and the secant setting unit 119 is composed of the hollow portion and the main = dividing line setting unit 119. The outer contour i of the I 壬 i i the main front Λ hollow = part 119, in the points When the line connecting the subject, for lA3). Split the line to set the split line. In addition, according to the direction of the IDF artifact, the characteristic point of the t-point is connected to the clock or the counterclockwise direction. Therefore, the line segment of the ϋ 寅 寅 , , , , , , , 线 线 线 线 线 线 线 线 线 线 线 线 线 线 线 线 线 线 线 线 线 线 线 线 线 线Field|Direction--for the clockwise or inverse dividing line setting unit 119, the hollow portion is mainly hollow when the hollow portion is in the middle of the connection order, and is connected in the order of the connection, and is sequentially connected by the dividing line. (Step A4). Between any of the wheel lines, the set dividing line and the newly set dividing line are not lined by the setting line 119. The shape data calculation unit 112 sets the divisional intersection to connect the hollow portions to each other in a manner of dividing the ^^. p Cannot re-set the link 201202988 ^ without dividing the line by step #2. ^Dividing the setting part m _ Executes the movement of the round part of the hollow part by the dividing line until the last one of the list of hollow parts. The secondary line setting unit 119 sets up the last connection order of the hollow part: the second part: the second part of the list is connected to any point of the hollow part of the list and the outer circumference of the oxygen line (step A5). ). The dividing line setting unit 119 sets the dividing line so that the cutting lines do not intersect each other in the second two. The shape of the shape is i2, and the shape data input by the step A1 is set to be two in the steps A3 to Α5 (step A6). The shape data dividing unit 120 divides the shape data into two by the singularity, and obtains 113 ”. The shape data dividing unit 12 is divided into two shapes, and is rotated by the roF file (step A7). Fig. 6 shows the shape information including the hollow portion, and the above operation will be described. Figure 6 shows the shape of the hollow part. The shape data input unit 116 is in the form of a package 201 to = four shape data. The hollow data input unit 117, 胄 = the position of the hollow part is input to the empty part of the 义 Ύ Ύ Ύ Ύ Ύ 201 201 201 201 201 201 201 201 201 201 201 201 201 201 201 201 201 201 201 201 201 201 201 201 201 201 201 201 201 201 201 201 The 1UT process/knife gives the identification number, and the generation sequence setting unit 118 prompts the operator to instruct the connection order in step A2. ^The old H picture shows the shape and position of the hollow part, and the display is indicated by the connection indication output unit. The operator's connection turns. The order of the links indicated by the number of the slaves 118 ^ ^ 排序 is sorted. two. According to the operator, the dividing line setting unit 119 sets the outer-point' and the connecting order to be in the step A3! On the contour line of the number, the part is added to any point on the contour line, and the top of the list is in the forefront of the top of the list. In Fig. 6, the starting point of the hollow part ^2, ', which is at the forefront of the list, is taken from the secant line. The dividing line does not need to be a straight line, and the straight line that pulls out the number of feeds is connected to a line 33 201202988. Or the dividing line can also be a curve. In step A4, the dividing line setting unit 119 takes out the connecting portion 2〇2, and moves the hollow portion 2 of the connecting order No. 1 (the hollow portion of the ηί to the m empty portion number to the H-order 2 which does not intersect with the other dividing line). The dividing line 302 between the parts. After that, the dividing line setting unit is taken out in a hollow manner, and the hollow portion is repeatedly connected. The line 5 is processed again. The number of times of the heavy-duty ordering is the number of the hollow portion. The processing is to set the dividing line 3 () 3, the outline. That is, set the three dividing lines to which the four salty to the 204 are sequentially connected, 3〇3, 3〇4 == 201. Once the dividing line is pulled to the joining order In the last - the connecting knife is $ 疋 = 9 points, then in step A5 *, the outer contour line connecting the hollow part of the order No. 4 and the starting point of the dividing line are different, Ershi, Bu-shaped The position of the end point of the dividing line is divided into two by the shape data blank-shaped data dividing unit 120 in step Α6, =3\〇1 to 305, and the shape data is divided into two. Shape data. The shape of the capital is not / the knife line is the line to divide the shape data into two, as shown in Figure 6. ^4 = = borrowed with the split data Α 210 and shape data coffee. Refer to the figure '7, two cut into the shape of the two shape data Α 210 fish shape data α? α ^ broken for. 彳 is the second part of the production. In step Α7, the output unit 113 outputs ^n: null data to the substrate design=device t according to the foot format to the above. FIG. 8 shows an example of shape data division using the data___ of the present embodiment. The order of joining the empty portions shown in Fig. 16 is attached to the hollow 15G_x15〇mm. The center line setting unit 119 is in the order from the outer side of the outer shape data to the second and the sub-station J. The division is in accordance with the connection order, and the slave: 'To the other - stop, the dividing line is bounded by the line: #料目°° Borrowing _This setting of the 卞戈®1 8 is not the case, in the shape data contains 14 201202988 multiple hollow parts, even in shape In the complicated case, the 2 shape data of the &amp; material. Under the brother, still can be obtained without hollow capital implementation, the dividing line setting part 丨19 instrument - ^ the order of the order 'set the outer wheel secret and the empty space Eight ^ = slaves 118 set the outline of the empty part of each other The line setting portion id of the "and the knot line" and the middle cut line that does not intersect with other ages is divided into two by the dividing line set by the hollow "shape Puyi" included in the shape part. The two shape data without the hollow poor material are obtained. The conversion device 101 divides the 3-dimensional CAD device Η) 2 output material into two shapes without hollow and two shuns ί1〇3 . According to the embodiment, since the shape data transmitted to the hollow portion of the substrate S can be set to two, for example, the two-dimensional μ line divides the shape data so that the number of shape data is a majority of the number of items 1 &quot;'; It is easy to handle the shape data of the CAD device l〇3t. On the other hand, even if the number of the hollow portions is large, the number of shape data can be controlled to two, so that the number of the shape data can be deteriorated, and the substrate design CAD device 103 is deteriorated. According to the (four) conversion device 1G1, the shape (10) can be divided into the open-type data without the hollow portion and transmitted to the substrate design CAD device 1〇3, so the structural design table does not have to be 3 times. In Section 2, the shape data is divided and edited, and it is designed from the viewpoint of structural design. According to the embodiment, the structure designer does not have to manually cut the shape data, thereby reducing the number of man-hours for structural design and substrate work. Further, according to the present embodiment, it is possible to prevent the problem of division errors caused by manually dividing the shape data (for example, the division of the hollow portion is missed), and the quality is improved. Fig. 9 is a view showing a data conversion device according to a second embodiment of the present invention. The data conversion device 101a includes a data input unit m, a shape data calculation unit u2a, and a data output unit 113. The data conversion device 1'' of the present embodiment differs from the data conversion device 101 of the first embodiment of the first 15 201202988 shown in Fig. 4 in that the shape data unit is further provided with a grouping unit m. The other parts are the same as the silky &amp; The same reference numerals are given to the same components in the embodiment, and the description of the duplicates is omitted. The grouping unit 121 is attached to the hollow portion of the plurality of people to be grouped into i or more groups. The grouping unit 121, for example, according to the coordinates of the hollow portion (displaying the bit material)', assigns a plurality of hollow data with similar coordinates to the same group -amp; =121 can also prompt the operator to input the grouping indication, and according to the operation The instructions of the person enter the t group. The sequence setting unit 118 sets the order of the two hollow portions from the outer shape of the hollow data belonging to the group to the other point of the outline of the material to the other side of the outer wheel. The order setting unit 118, in each group, determines the order in which the secant line passes through the hollow portion. Further, the line setting unit 119 sets a dividing line from the point where the outline of the outer side of the outer shape data is fixed to the fixed portion, and the teeth belong to the hollow portion of the same group. The dividing line is set to S ^ in each group, and the dividing line passing through the hollow portion belonging to the group is set. set. The twist line setting unit 119 sets green i = and bundle so that the division lines do not cross each other. The shape-deficient division unit 120 is divided into two pieces of shape data of the two bodies which are not hollowed out by the division shape # which is set by the division line setting unit 119. For example, the number of divisions of the squares is the number of divisions +1 set by the divisional setting unit 119. The number of groups generated by the grouping of the group 119 2-group 121 is two. If the dividing line setting is two in the dividing line setting, the shape data dividing unit 120 converts the shape of the shape into three pieces of shape data. The rotation of the $^m implementation of the data conversion device is an example of its action. The data is entered into the shape data from the 3-dimensional CAD device 102 (Fig. 3). The shape data 4/116 is input from the 3-dimensional CAD device 102 to the IDF CAD indicating the shape data stored in the recording medium 101m. The hollow data input unit 117 is from the 3 dimensional l〇lm; In the case of 1〇2, the 1DF data indicating the hollow data is stored in the recording medium unit 121, and the plurality of hollow tools input from the hollow data input unit 117 are one or more groups (step B1). The grouping unit 121 can also be shaped

S 16 .201202988 狀貧料,以可以視覺認知之形式顯示於 促知作者輪人分組的指示。順序設定部、。 ® 4)中’催 的群組巾卿射—個(麵Β2)。轉巾空部分 之中空部分,設定分躲在貫穿中群組内 輪廓绫之另^ L -n. 、之外側輪廣線的任一處至外側 中 如刀割線為朝-方向延伸之一條直線等情況:卜在·# 與終點的位置關係,自動決定貫穿屬於同 線之起點 工此-情況下,會_讀料演算部此中略工丨員 118,亦可以省略步驟83之連結順序設定。 '序。又疋邛 若分===== 步巧。 ,回到步細’順序設定部118自未處理在之 、·且。其後,順序設定部118於步驟B3中設定分 * ^ :口;;於=B4,設定貫穿屬;被選擇= 甲工邛刀之刀口j線。此蚪,分割線設定部ιΐ9以几 $與已^定之侧線交又的方式,設定分割線。而 ^ 112a重複進行步驟B2〜B4的動作,重複次數等於群組^數 若分告彳線攻疋部119判斷未處理之群組不存在(+ Ν〇),則形狀資料分割部120將形狀資料以步驟B4 &amp; 八 ΪΪ”來°形狀㈣分割部12G藉由以分割線為ΐ將形ί大 貝^割’獲付2個以上不含中空部分之形狀資料 113將形狀資料分割部12〇分割出的2個以、^ _槽案輸出(步驟Β7)。 城貝枓’各自以 圖11顯示包含中空部分之形狀資料,兹使用圖 狀貧料對上述動作加以說明。圖η之形狀f料與圖6相同,具^ 201202988 2空分嚼組化部121在步驟B1中,將四個中 21Λ 为組為1個以上之群組。群組化部121孽如以中 二,3 y座標為基準,將y座標相近的中空部分2〇1、皿分為 所ΐ之雜r=n〇3、204分為另一組。以下’中空部分20卜202 Β斤屬之_础為群組A,中空部分2〇3、2〇4所屬之群組稱為群組 之中ΪίϊίΠ於f _中’設定分割線在貫穿屬於群組A 於n刀八202夕=之順序。在此’中空部分201之順序為1 ^中^ 為2號。分割線設定部119於步驟m中, 二 ==線之_形資料面向紙面之左側= ί與向紙面之右側邊上之處。此外,分割線係 咖ΐίϊ設㈣119 ’若在步驟奶中判斷未處理之群組存在, _序5又疋部118回到步驟拉,選擇群組Β。其後,盘群组 動作,順序财部118將中空部分期奴為二1號 hi ί 為順序2號’由分割線奴部119依此順序i 出貝穿中工部分203、204之分割線311。 若,處理之群組不存在,則形狀資料 將形,料分割成3個形狀資料。若參照圖, 被刀割為二而產生之3個形狀資料,無論何者皆 ^刀=料輸出部113於步驟B7中,將3個形狀#料各自之g盾 土而=述的則述IDF資料,輸出至基板設計CAJ)裝置脱。 外制祕巾’分麟設定部119自外侧輪廓線之至 =輪廟線之另-點止,奴貫穿由群組化部121所分έ且之中^ =的分聽。此時,分割線奴部119以分割線不錄^ ^又的方式,設定分割線。形狀資料分割部m,藉由/以刀j 。刀割線為界分娜狀資料,獲得2個以上不含中 料。特別疋在分鱗為朝既定方向延伸之直線時,隨著形^資二 .201202988 態=料之分割在實行上得以更簡單。其他的效 另外,上述各實施態樣中,形狀資料雖為咖格式 ^此並無特別限定。形狀資料可為任意形式之資料,例如可為_ fmwmg Interchange File,圖形轉換檔)格式。上述各實施能 中,雖已就構成面形資料之形狀資料的分割加以說明,但形狀 定是面形資料。例如同圖6所示形狀之形狀資料而^厚 態樣中,順序設定部118雖依據連結指示輸入部ιΐ5 =之^來設疋,但順序設定部118亦可自動設定連 =沾:隨著形㈣料所含之中空部分的個數增多,則 序之組合並重新處理,故處ί所 ΐίί 11由操作者辨識形狀資料,並以人工作 業未私:連結順序時,處理得以於短時間内結束。 ㈣依=實施祕,在圖11巾,雖設想分齡方向平行 特標相近的中空部分分為同—群組,但此並益 :之的中空部分分為同-群組。分割線不=ί 抖之靶,内互相父叉即可,不必為互相平行。 、 以古ίϊ2實施態樣,分割線不必為—條直線,分割線之中途可 ,,外’分割線中亦可以有曲線部分。圖12顯示分 。線有2弯部分之-例。群組化部121所分組 為&quot; 四個中空部分201〜204全部屬於 外C定且 U8以與圖6同樣之順序,設定各中、八为^響汉疋口P 以外形資料面向紙面之左上的頂點為起刀線蚊部119 ’ g所設定,序拉出貫穿中空部分 猎由以分割線312為界分割形狀資料,得以 …樣相同,將包含中空部分之开;壯:欠社 ’、第只方&amp; 分之形狀^ 之械分割成2個不含中空部 201202988 發明之較佳實施態樣為基礎進行說明 以上 明之貧料轉魏置、c氣魏、微倾’但本發 β不僅对’上述實施紐,由上 (附記1;) 修正與變更,亦包含於本·之範、樣之構成做出_ 一種資料轉換裝置,包含: 示形狀 資料m輸人部’輸人外形資料,該外师料包含夺 貝枓的外側輪鱗之形狀的資料;^ 中空資料輸入部,輸入複數之中 分別包含該形狀刺之外側料貝;數之中空資料 線之形狀的:#料;輪#1、内稍包含的巾空部分輪扉 結該複數之中空資料,在以分_ 分,二間’還辦 之另夕刀卜1]ί=σ,ρ依日線之任—處,至該外側輪腐線 與該中空部分的料序’以分魏連結料側輪靡線 間,該分歸不ϋ交J ’以及連結該中空部分的輪暮線彼此 狀^狀割部’以該分難,形狀資料分割為2個形 duf部’其將該被分割之2個形狀資料輸出。 如附5己1記載之資料轉換農置,其中, 該連之中㈣分之中,以分割線連結 ⑽記3;) U77的同類輪廊線。 =附記2記叙資料轉縣置,宜中, 空部=外側輪舰之任—點,與《數之中 結,再將的中空部分之輪廓線,以分割線連 亥複數之巾线分裡連結餐為最後方的巾空部分之輪S 16 .201202988 The poor material is displayed in the form of visual cognition in the direction of the author's group of people. Sequence setting unit. ® 4) In the group reminder of the group, it is shot (face 2). The hollow portion of the empty portion of the towel is set to be separated from the other side of the inner group of the middle group, and any one of the outer side wheel lines to the outer side, such as the knife cutting line extending in a straight line toward the - direction Etc.: The positional relationship between Bu and # and the end point is automatically determined to be the starting point of the same line. In the case of this, the meeting operator 118 will be omitted, and the connection order setting of step 83 may be omitted. 'sequence. Also, if the score ===== step by step. The step back to the step sequence setting unit 118 is not processed yet. Thereafter, the sequence setting unit 118 sets the division * ^ : port in step B3; sets the penetration genus at =B4; and selects the blade line j of the knives. In this case, the dividing line setting unit ιΐ9 sets the dividing line so that the number of lines intersects with the fixed side line. And ^ 112a repeats the operations of steps B2 to B4, and the number of repetitions is equal to the group number. If the segmentation tapping unit 119 determines that the unprocessed group does not exist (+ Ν〇), the shape data dividing unit 120 shapes the shape. In the case of the step B4 & gossip, the shape (four) division unit 12G obtains the shape data 113 of the shape information 113 which does not contain the hollow portion by the division line ΐ. The two divided pieces are outputted by the ^ _ slot (step Β 7). Each of the slabs 'shows the shape data including the hollow portion, and the above-mentioned action is explained using the pattern-like lean material. In the same manner as in Fig. 6, the air bubble grouping unit 121 of the 201202988 2 group has two groups of 21 Λ as one or more groups in the step B1. The grouping unit 121 is, for example, two, three y. The coordinate is the reference, and the hollow part 2〇1, which is similar to the y coordinate, is divided into the other group. The following is the group of the hollow part 20b 202. Group A, the group to which the hollow part 2〇3, 2〇4 belongs is called the group ΪίϊίΠ in f _中'Setting the dividing line in the penetrating genus The order of the group A is in the order of n knives and octagons 202. Here, the order of the hollow portion 201 is 1 ^ 中 ^ is 2. The dividing line setting unit 119 is in step m, and the data of the second == line is oriented to the paper surface. The left side = ί and the right side of the paper side. In addition, the dividing line is the curry ϊ ϊ (4) 119 'If the unprocessed group is judged in the step milk, the _ sequence 5 and the 疋 part 118 return to the step pull, select Group Β. After that, the group action, the order finance department 118 will be the hollow part of the slave to the second 1st hi ί for the order 2nd 'by the dividing line slave 119 in this order i out to wear the middle part 203, The dividing line 311 of 204. If the group of processing does not exist, the shape data is shaped into three shapes of data. If the figure is cut, the three shape data generated by the knife is cut into two, no matter whichever ^ In step B7, the knife-material output unit 113 outputs the IDF data of each of the three shapes and the output of the IDF data to the substrate design CAJ). The outer mask is set. From the outer contour line to the other point of the round temple line, the slave runs through the grouping unit 121 and the ^= is heard. The secant slave unit 119 sets the dividing line so that the dividing line does not record ^^. The shape data dividing unit m is obtained by dividing the knives with the knives. In particular, when the scale is a straight line extending in a predetermined direction, it is easier to implement the division according to the shape of the figure. 201202988 = other effects. In the above embodiments, the shape data is The coffee format ^ is not particularly limited. The shape data can be any form of information, such as _fmwmg Interchange File, graphic conversion file format. In the above various embodiments, although the division of the shape data constituting the face shape data has been described, the shape is a face shape data. For example, in the case of the shape data of the shape shown in Fig. 6, the order setting unit 118 is provided according to the connection instruction input unit ιΐ5 = ^, but the sequence setting unit 118 can also automatically set the connection = The number of hollow parts contained in the shape (four) material is increased, and the order is combined and reprocessed. Therefore, the shape data is recognized by the operator, and the manual operation is not private: the connection order can be processed in a short time. Ended inside. (4) According to the implementation secret, in Figure 11, the hollow part of the similarity of the parallel age and the special standard is divided into the same group, but the hollow part is divided into the same group. The dividing line is not = ί shaking the target, the parent can be crossed, not necessarily parallel to each other. In the implementation of the ancient ϊ 2, the dividing line does not have to be a straight line, the dividing line can be halfway, and the outer dividing line can also have a curved part. Figure 12 shows the points. The line has 2 bends - for example. The grouping unit 121 is grouped into &quot; four hollow portions 201 to 204 all belong to the outer C setting and U8 is set in the same order as in Fig. 6, and the middle and the eighth are set to the sound of the Hankou P. The upper left apex is set for the squid mosquito 119 'g, and the sequence is pulled out through the hollow part. The stalk is divided by the dividing line 312 to form the shape data, so that it will contain the hollow part; Zhuang: owe society' The first party &amp; the shape of the machine is divided into two non-hollow parts 201202988. The preferred embodiment of the invention is based on the above description of the poor material transfer, the c gas Wei, the micro tilt 'but the hair β is not only for the above-mentioned implementation of the New Zealand, but also by the above (attachment 1;) amendments and changes, but also included in the scope of this model, the composition of the sample _ a data conversion device, including: display shape information m input department 'input Shape data, the foreign teacher material contains the shape of the shape of the outer wheel scale of the shellfish; ^ hollow data input part, the input complex number contains the outer side of the shape of the shape of the shell; the shape of the hollow data line: # Material; wheel #1, inside the towel part of the wheel The hollow data of the plural is divided into two parts: the other two are still in the eve of the eve of the knife. 1] ί = σ, ρ according to the line of the daily line, to the outer round of the rot line and the hollow part of the material The order 'is divided into two sides, the shape of the material is divided into two shapes, the shape of the material is divided into two shapes, the shape of the data is divided into two shapes. The part 'outputs the two shape data divided. If the information recorded in the 5th 1 is converted to the farm, among them, among the four (4) points, the dividing line is connected (10) 3;) The similar round line of the U77. = Attachment 2 Narrative information transferred to the county, Yizhong, the empty part = the outer wheel of the ship - point, and the "number of knots, and then the outline of the hollow part, with the dividing line even the number of the towel line The connection meal is the round of the last part of the towel

S 20 201202988 靡線,與該外侧輪廓線之另一點,以分割 。 (附記 4) 。、 、'、σ。 中項記载之資料轉換裝置,发中 的清Ϊ順序奴部’產生將該複數之中空資料依該連^序排列 該分割線設定部,將該令空資料自該、、主 —取出,以分割線連結該外側輪廣線之g二點,開始依次遂 ^中空部分之輪廓線,再以分崎連結該連結序:單中最前 ,單最後方的中空部分之輪齡,與該G㈡’並將 从分割線連結。 卩線之另一點, (附記5) 如附記1至4中任-項記载之資料轉宜 該順序設定部,以該外形資料與該中空^中, :資料以視覺方式顯示於顯示部,催促操;者:二,形 、、順序,並依操作者之指示設定連結順序。 中二邛为之連S 20 201202988 靡 line, with another point of the outer contour line to divide. (Note 4). , , ', σ. In the data conversion device described in the middle item, the clearing order slave unit in the sending unit generates the hollow data of the plurality of numbers in the order of the dividing line setting unit, and extracts the empty data from the and the main items. The two points of the outer wheel wide line are connected by a dividing line, and the contour line of the hollow portion is sequentially started, and then the connecting sequence is connected by the dividing line: the front of the single middle, the hollow part of the single last square, and the G (two) 'will be linked from the dividing line. Another point of the squall line, (Supplementary Note 5), the data described in any of the items 1 to 4 is adapted to the order setting unit, and the shape data and the hollow data are displayed visually on the display unit. To urge the operator; two: shape, order, and according to the operator's instructions to set the connection order. Zhong Eryi

(附記6) a J 如附記1至5中任一項記載之資料 該資料輸出部,將該2個形狀資料,各“j j料 (附記7) 1L)t貝枓輪出。 一種CAD糸統裝置,包含: 資料轉換裝置,如附記!至6中任一項 構造設計CAD裝置,i將琴外彡次 ’ 輪出至該資料職裝置;以及料讀_複數之中空資料, 基板設計CAD裝置,其輸入該資 輪出的2個形狀資料,並分別使用於入裝置之貧料輪出部戶;i 。 ⑽酬认的2個形㈣料來蛛^ (附記8) &gt; 一種形狀資料分割方法,包含如下步驟. 外形資料輸入步驟,輪入外形資料,該外形資料包含表示形 21 201202988 狀資廓線之形狀的資料; 料分別以之=之中空資料,該複數之中空資 廓線之形狀的資料;4之外側輪廓線其内部所包含的中空部分輪 割緣定步驟’其分別針對該複數之中空資手4 ^、 輪廓線彼此間時,設定其連以及連結該 外—ΪΓ步驟’自該外侧輪輕之處,至今 卜處為止,依日g兮造纟士 、 处至。亥外側輪廓線之另 中空部分的輪廓線^間連結該外側輪廓線與該 分割、^互相交又;以及及連'纟。5钟空部分的輪#線彼此間,該 (附記9),、人心割線將該形狀資料分割為2個形狀資料。 理的記ίίΪ可項取記錄媒體,儲存有用來使電腦執行下列各處 外形資料輸入之處理,輪入 ,狀資,的外側輪廓線之形狀的資。外形資料包含表示 二备制^工資料輸入之處理,輸入複數之中允眘极&amp; 之外侧輪“: 酬,在以 部分的輪廓線彼„時,設定間,還有連結 :卜—處為:,依線J連j該外側輪廓線之另 (附記处10) 7、靖刀雜將獅狀讀分割為2個形狀資料。 一種資料轉換裝置,包含:(Supplementary Note 6) a J The data output unit of any one of the attached documents 1 to 5, the two shape data, each "jj material (attachment 7) 1L) t. The device comprises: a data conversion device, such as an attached note! Any one of the structural design CAD devices of the 6th, i will take the piano out to the data device; and read the hollow data of the plural, the substrate design CAD device , input the two shape data of the capital round, and use them separately in the poor material round of the device; i. (10) Two forms of the reward (four) to the spider ^ (Note 8) &gt; A shape data The segmentation method comprises the following steps: the shape data input step, the wheel shape data is included, the shape data includes the data indicating the shape of the shape 21 201202988; the hollow data of the material = the hollow data profile of the plural The shape of the data; 4 the outer side contour line contains the hollow part of the hollow edge of the cutting edge step 'for the plural hollow hand 4 ^, when the contour line between each other, set the connection and link the outside - ΪΓ Step 'from the outer wheel light, so far As far as the Bu is concerned, according to the day, the gentleman is made to go to the place. The outline of the other hollow part of the outline of the outer side of the sea connects the outer outline with the division, and the intersection of each other; and the connection of '纟. 5 The empty part of the wheel # line between each other, (Note 9), the human heart secant divides the shape data into two shape data. The 记 ί ί Ϊ Ϊ Ϊ 项 项 Ϊ Ϊ Ϊ Ϊ Ϊ Ϊ Ϊ Ϊ Ϊ Ϊ Ϊ Ϊ Ϊ Ϊ Ϊ Ϊ Ϊ Ϊ Ϊ Ϊ Ϊ Ϊ Ϊ Input processing, rounding, shape, and the shape of the outer contour of the shape. The shape data contains the processing of inputting the data of the two preparations, and the input of the plural is the outer wheel of the "precaution" &amp; When the partial contours are different, the setting, and the connection: the bu-location is:, according to the line J, j, the outer contour line (the attached note 10) 7. The Jingdao miscellaneous divides the lion-like reading into 2 Shape data. A data conversion device comprising:

S 22 201202988 外形資料輸人部,輸人外形資料,該外形 主_ 資料的外側輪廓線之形狀的資料; 、’、匕3表示形狀 中空資料輸入部,輸入複數之中空資料, 一 分別包含該形狀資料之外側輪廓線其内心 空貪料 線之形狀的資料; 丨所已3的中空部分輪廓 群組化部,其將該複數之中空資料 分割線設定部’其於齡個群組中,設定=上的群組; 任一處,至該外側輪廓娘之另—處為止,;^側輪廓線之 部分的分割線,該分割線不與其他分宝彳嗖六屬於。群組之中空 上之以該分割線,將^狀資料分割為2個以 糧侧2細如狀資料輸出。 如附記10記載之資料轉換裝置,其中, 該分割線設定部,設定貫穿屬於 平行的分割線。 鮮、、且之中空部分,並互相 (附記12) 如附記11記載之資料轉換裝置,其中, 該分割線為朝既定方向延伸之直線。 (附記 13) 、·' ° 如附t己10至12巾任—項記載之#料轉 該順序設定部,其針對屬於該群植二^中, 側分輪斜之任-點至該外侧輪廓線設◎該外 部分之分割線的順序;以及 砧為止,貫穿該中空 該分割線設定部,自該外側分麵線 廓線之另一點為止,依照該順序設 ^,至该外側輪 中空部分之分割線。 〇卩°又疋之順序,設定貫穿該 (附記14) -獅狀频分财法,岭如下步驟, 外形資料輸入步驟,輸入外形資 7十°亥外形貧料包含表示形 23 201202988 狀資料的外侧輪廓線之形狀的資料; 中空育料輸入步驟,輸入複數之中空資料,該複數之二欠 料分別包含S亥升严資料之外側輪磨線其内部所包含的中空部分二 靡線之形狀的資料; w 分組步驟’其將該複數之巾空:聽分組為丨個以 · 分,線設定步驟’於該各個該群組中,奴自該外側輪廊線 ^任-處,至斜侧輪廓線之另—處為止,貫穿屬於各群包之 工部分的分赚,該分躲不與其他分躲交叉;以及 ,其崎分齡將該形崎料分縣2 _狀資料。 理的可讀取記錄媒體,儲存有用來使電腦執行下列各處 /夕^形^料輸入之處王里,輸入外形資料,該外形資料 形狀資料的外側輪廓線之形狀的資料; m ^空輸人之處理,輸入複數之中空㈣,該複數 刀別包含該形狀資料之外側輪鱗其内部所包 ^艾 輪廓線之形狀的資料; ]τ4刀 分組處理’將該複數之中空㈣分組為丨個以上且. 綠夕設定之處理,於該各個該群組中,設定自該外側輪廊 處,至斜側輪雜之另—處止,貫㈣於各群虹t 工。P刀的$鱗,該分騎不與其他分魏交叉;以及 ίΐίί據is f Ϊ線將該形狀㈣分割為2個形狀資料。 係依據方;2010年1月22日所提出之日本專利申往安 1865说。日本發明專利申請案2Q1(K)11865號之巾 乾圍及關整體均納人本說明書中作為參考。 曱明專利 【圖式簡單說明】 [圖1]顯示第1發明之資料轉換裝置的概略組成 =顯不第2發明之資料轉換裝置 ^ [圖3]顯示本發明第1實施態樣之⑽系統白H圖 24 201202988 [圖4]顯示資料轉換裝置之方塊圖。 [圖5]顯示第1實施態樣中資料轉換裝置之動作之一例的流 程圖。 [圖6]顯不包含中空部分之形狀貢料的圖不。 [圖7]顯不以分割線為界被分成兩部分之2形狀貧料的圖 式。 [圖8]顯示形狀資料分割例之圖示。 [圖9]顯示本發明第2實施態樣之資料轉換裝置的方塊圖。 [圖10]顯示第2實施態樣中資料轉換裝置之動作之一例的 流程圖。 [圖11]顯示包含中空部分之形狀資料的圖示。 [圖12]顯示分割線包含折彎部之一例之圖示。 [圖13]⑻〜(c)為顯示不含中空部之面形資料的圖示。 [圖14]顯示包含中空部之面形資料之圖示。 [圖15]顯示面形資料之分割例的圖示。 [圖16]顯示包含中空部之面形資料的另一例之圖示。 【主要元件符號說明】 10、 20資料轉換裝置 11、 21 外形資料輸入部 12、 22中空資料輸入部 13順序設定部 14、 24 分割線設定部 15、 25形狀資料分割部 16、 26資料輸出部 23 群組化部S 22 201202988 Profile data input department, input shape data, the shape of the main _ data of the shape of the outer contour line; , ', 匕 3 indicates the shape of the hollow data input part, input the plural hollow data, one contains the The shape of the outer contour of the shape data, the shape of the inner corrugated line; the hollow portion of the contour portion of the hollow portion, the hollow data dividing line setting portion of the plural number is in the group of ages, Set = upper group; anywhere, up to the outer contour of the other side of the line,; ^ part of the side of the contour line, the dividing line does not belong to other points. On the hollow of the group, the dividing line is divided into two pieces, and the grain side 2 is output as fine data. The data conversion device according to the tenth aspect, wherein the dividing line setting unit sets the dividing line that runs through the parallel. The data conversion device described in the supplementary item 11, wherein the dividing line is a straight line extending in a predetermined direction. (Supplementary Note 13), · ° ° ° 至 至 至 至 至 至 至 至 至 至 至 至 ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ The contour line is set to the order of the dividing line of the outer portion; and the anvil is inserted through the hollow dividing line setting portion, and is set in accordance with the order from the other point of the outer dividing line profile to the outer wheel hollow Part of the dividing line. 〇卩° and 疋 疋 , , , ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( The data of the shape of the outer contour line; the hollow feeding input step, inputting a plurality of hollow materials, the second of which includes the shape of the hollow portion of the hollow portion included in the outer wheel grinding line of the S. Information of the group; w grouping step 'the empty number of the towel: listening to grouping is divided into one points, the line setting step' in the respective groups, slaves from the outer wheel line ^ where - to, oblique The other side of the side contours, through the division of the work belonging to each group of packages, the points do not hide with other points; and, the age of the Kawasaki classification of the shape of the county 2 _ information. The readable recordable medium stores data for the purpose of causing the computer to execute the following places/inputs, inputting shape data, and shape of the outer contour of the shape data; m ^air loss For human processing, input a complex hollow (four), the complex knife contains the data of the shape of the outer contour of the outer wheel scale of the shape data; ] τ4 knife group processing 'groups the hollow (four) of the complex number into 丨The processing of more than one and the green eve setting is set in the respective groups from the outer side of the rim to the side of the slanting side wheel, and is (four) to each group. The $scale of the P-knife does not cross the other points; and ίΐίί divides the shape (four) into two shape data according to the is f line. It is based on the party; the Japanese patent application filed on January 22, 2010, said to An. 1865. Japanese Invention Patent Application No. 2Q1(K) No. 11865 The dry and closed articles are referred to in this specification for reference. BRIEF DESCRIPTION OF THE DRAWINGS [FIG. 1] A schematic composition of a data conversion device according to a first aspect of the invention, a data conversion device of the second invention, and a system of the first embodiment of the present invention (FIG. 3) White H Figure 24 201202988 [Figure 4] shows a block diagram of the data conversion device. Fig. 5 is a flow chart showing an example of the operation of the data conversion device in the first embodiment. [Fig. 6] A diagram showing the shape of the hollow portion. [Fig. 7] A pattern in which two shapes of lean materials are divided into two parts by a dividing line. [Fig. 8] A diagram showing an example of division of shape data. Fig. 9 is a block diagram showing a data conversion device according to a second embodiment of the present invention. Fig. 10 is a flow chart showing an example of the operation of the data conversion device in the second embodiment. [Fig. 11] A diagram showing the shape data including the hollow portion. Fig. 12 is a view showing an example in which a dividing line includes a bent portion. [Fig. 13] (8) to (c) are diagrams showing the surface data without the hollow portion. Fig. 14 is a view showing a face shape data including a hollow portion. [Fig. 15] A diagram showing an example of division of the face shape data. Fig. 16 is a view showing another example of the profile data including the hollow portion. [Description of main component symbols] 10, 20 data conversion devices 11, 21 Outline data input unit 12, 22 Hollow data input unit 13 sequence setting unit 14, 24 dividing line setting unit 15, 25 shape data dividing unit 16, 26 data output unit 23 Grouping Department

101、101a資料轉換裝置 101m記錄媒體 102 3 次元 CAD 103基板設計CAD裝置 . 201202988 111資料輸入部 112、112a形狀資料演算部 113資料輸出部 114 顯示部 115 連結指示輸入部 116外形資料輸入部 117中空資料輸入部 118 順序設定部 119分割線設定部 120形狀資料分割部 121 群組化部 201〜204 中空部分101, 101a data conversion device 101m recording medium 102 3 dimensional CAD 103 substrate design CAD device. 201202988 111 data input unit 112, 112a shape data calculation unit 113 data output unit 114 display unit 115 connection instruction input unit 116 shape data input unit 117 hollow Data input unit 118 sequence setting unit 119 dividing line setting unit 120 shape data dividing unit 121 grouping unit 201 to 204 hollow portion

210形狀資料A210 shape data A

211形狀資料B 301〜305、310〜312 分割線 401〜403、410、421〜424 面形資料 411〜414 内側閉鎖輪廓線包圍之部分 501、502 區域211 shape data B 301~305, 310~312 dividing line 401~403, 410, 421~424 Shape data 411~414 Inner part of the closed contour line 501, 502 area

SS

Claims (1)

-201202988 七、申請專利範圍: 1、一種資料轉換裝置,包含 示形狀 資料=2=形資料’該外形資料· 分別,該複數之中空資料 線之形狀的資料:靡線其内部所包含的中空部分輪廓 順序設定部,其分別針對該複數 力 線之ir;T.其自該⑽線之任-處,至細^ s 該 ΗΕΞ===線 形狀部’其以該分割線,將該形狀資料分割為2個 貧料輸出部,其被分割之2細彡狀資料輸出。 置,其中, 連結順序相鄰之中空部分的“線彼中’以分割線將該 3 2項之資料轉換裝置,其中, 空部d结最ΐ:外:輪廓線之任-點,與該複數之中 、如申請專利範圍第]5 1 τ5 + 該順序設定部,吝/1員中任—項之資料轉換裝置 、 產生將該複數之中空資料依照連結順 27 4 201202988 的/月單,《玄分告丨j線設定部,將該中空資 '主田 線連結該外側輪 取刖方中空部分之輪廓線,重複施行以 二忒,月早中 點以分割 後中空部分之輪祕與該外側輪摩線之$ 線連結。 5、 如1至3項中任-項之資料轉換裝置,复中, 結順序,並依_者之指示設定連作者^巾空部分之連 6、 如範圍第1至3項中任—項之資料轉換裝置,其中, 该育料輸出部將該2個形狀資料各自以㈣晴恤 Format,中間資料格式)資料輸出。 7、一種電腦輔助設計(CAD, Computer AidedDesign)系统,包含. 如專利範圍第1至3項中任一項之資料轉換裝置; 構造設計CAD裝置,將該外形資料與該複數之中空資料,輸 出至該資料轉換裝置;以及 基板设计CAD裝置’輸入該資料轉換裝置之資料輸出部所輸 出的2個形狀資料,並分別使用輸入的2個形狀來進行基板 設計。 、 8、一種資料轉換裝置,包含: 外形資料輸入部’輸入外形資料,該外形資料包含表示形狀 資料的外側輪廓線之形狀的資料; 中空資料輸入部’輸入複數之中空資料,該複數之中空資料 分別包含該形狀資料之外側輪廓線内部所包含的中空部分之輪廓 線之形狀的資料; S 28 201202988 二ll化邛,將該複數之中空資料分w 刀割線設定部,其針對於該夂個f為1個以上的群組; 該外側輪該外側麵線 π m該分割線不與其他分割中空部 上之^^貝料分割部,以該分割線’將兮开^ -欠粗\ 之形狀資料;以及 4狀貝料分割為2個以 資料輪出部,將該被分割的2個以上之形狀資料輪出。 分割方法,包含如下步驟: 妝眘%貝料輸入步驟,輸入外形資料,哕外拟次上丨 卜側麵線之形狀的資料;卜^料包含表示形 料分別’輸入複數之中空資料,复數之中μ 線之形狀貧料之外側輪廊線内部所包含的中空以 割線定步驟,其分別針對該複數之中空資十4 i 、 中外側輪暮線與該中空部分的輪料之= 分 二輪廓線彼此間時,設定其連結順序M及連結該 ;;中空部分的輪氧線之間:還J連 間’ ^分割線不互相交又;;^運…亥中空部分的輪#線彼此 岣步驟,以該分割線將該形狀資料分割為2個形狀資料。 10、〜絲承 理的可讀取記錄媒體,儲存有用來使電腦執行下列各處 形狀芬形=資料’該外形資料包含表示 29 201202988 序設权處理,分別針對該複數 =結該外側輪廓線與該中空部分:;輪廓線之間,以及連結該 之中空資料,在以分 中工分的輪廟線彼此間時,設定其連έ士順^之 連結處理,姑从九丨从士 逆、,、口負序, 另外-處為止=線之任—處,至該外側輪廓線之 間 =中空部分的輪廟線』間了還有連;結該外側輪廓線與 ’=割線不互相交叉;^也。斜空部分的麵線彼此 分割處理’赠物峨_蝴2 、圖式: ' Ο 30-201202988 VII. Patent application scope: 1. A data conversion device, including shape data = 2 = shape data 'this shape data · respectively, the shape of the plural hollow data line: the hollow inside the 靡 line a partial contour order setting portion for the ir of the complex force line; T. from the position of the (10) line, to the thin line s = = = line shape portion 'which is the shape of the dividing line The data is divided into two lean output units, which are divided into two fine-shaped data outputs. Positioning, wherein the "line" of the hollow portion adjacent to the sequence is the data conversion device of the 32 item by the dividing line, wherein the empty portion d is the most ΐ: the outer: the line of the contour line, and the In the plural, such as the scope of application for patents] 5 1 τ5 + the order setting unit, the data conversion device of the —/1 member, the hollow data of the plural is generated according to the monthly order of the link 顺 27 4 201202988, "Xuanfen admonishes the j-line setting department, and connects the hollow capital' main line to the outer wheel to take the outline of the hollow part of the square, repeating the implementation of the second line, the mid-month and the mid-point to divide the hollow part of the hollow part. The line of the outer wheel is connected by a line. 5. The data conversion device of any one of items 1 to 3, the middle, the sequence of the knot, and the setting of the author's empty part according to the instructions of the _, such as The data conversion device of any one of the items 1 to 3, wherein the feed output unit outputs the two shape data in (4) Clear Format, intermediate data format. 7. A computer-aided design (CAD) , Computer AidedDesign) system, including. a data conversion device according to any one of items 1 to 3; a structural design CAD device, outputting the shape data and the plurality of hollow data to the data conversion device; and a substrate design CAD device 'inputting the data output of the data conversion device The two shape data output by the department are used to design the substrate by using the two shapes input. 8. A data conversion device includes: a shape data input unit 'input shape data, the shape data includes an outer side indicating shape data The data of the shape of the contour line; the hollow data input portion inputs a plurality of hollow data, and the hollow data of the plurality includes the shape of the shape of the outline of the hollow portion included in the outer contour of the shape data; S 28 201202988 II Ll 邛 , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , On the upper part of the ^^ bedding section, the dividing line 'will be opened ^ - under thick \ shape data; and 4 shaped beading For the two data rounds, the divided two or more shapes of data are rotated. The segmentation method includes the following steps: The makeup step is input, and the shape data is input, and the outline is used. The shape of the shape of the upper thread; the material includes a hollow material indicating that the shaped material is 'input plural', and the hollow of the shape of the outer line of the outer line of the μ line in the plural is determined by a secant step, which respectively When the plurality of hollow shovel 4 4 i, the middle outer rim line and the hollow part of the wheel material are divided into two contour lines, the connection order M is set and the connection is made; the hollow part of the oxygen line is between: J joints '^ split lines do not intersect each other;; ^ transport... rounds of the round part of the hollow line #岣 each step, the shape data is divided into two shape data by the dividing line. 10, ~ silk-manageable readable recording medium, stored to enable the computer to perform the following shapes of shape = data 'this shape data contains the representation 29 201202988 sequence right processing, respectively for the complex number = knot the outer contour Between the hollow part: the contour line, and the hollow data that is connected to the hollow line, when the wheel temple line is divided into two parts, the connection between the gentleman and the sorrow is set, and the 丨 丨 士 士 、 , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , ;^ also. The upper lines of the slanted part are divided into one another. 'Gifts 峨 _ _ 2, pattern: ' Ο 30
TW100100991A 2010-01-22 2011-01-11 Data transformation device, cad system, method for dividing shape data, and recording medium TW201202988A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104462671A (en) * 2014-11-24 2015-03-25 英业达科技有限公司 Method and device for generating light printed circuit assembly file and recording medium

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JPH10162041A (en) * 1996-11-29 1998-06-19 Fujitsu Ten Ltd System for data conversion from two-dimensional cad to three-dimensional cad, and interference checking method for mounted component

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104462671A (en) * 2014-11-24 2015-03-25 英业达科技有限公司 Method and device for generating light printed circuit assembly file and recording medium
CN104462671B (en) * 2014-11-24 2017-10-27 英业达科技有限公司 The method and device of lightweight printed circuit assembly archives

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