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JP4793758B2 - Inductance element - Google Patents

Inductance element Download PDF

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JP4793758B2
JP4793758B2 JP2007107288A JP2007107288A JP4793758B2 JP 4793758 B2 JP4793758 B2 JP 4793758B2 JP 2007107288 A JP2007107288 A JP 2007107288A JP 2007107288 A JP2007107288 A JP 2007107288A JP 4793758 B2 JP4793758 B2 JP 4793758B2
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inner peripheral
copper plate
copper
toroidal core
conductive member
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JP2008270272A (en
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浩一 崎田
洋光 武藤
素章 滝沢
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Tdkラムダ株式会社
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Description

本発明は、コアに導体を巻装してなるインダクタンス素子に関する。   The present invention relates to an inductance element formed by winding a conductor around a core.

安定化電源装置において、100Aを超える大電流出力を得ようとする場合、スイッチング方式の電源で小型軽量化を図るのが一般的である。こうしたスイッチング方式の電源では、スイッチング素子のスイッチングにより得られた方形波電圧を、チョークコイルおよび平滑コンデンサからなるLC回路で平滑して、所望の直流出力電圧を得るようにしている。   In a stabilized power supply device, in order to obtain a large current output exceeding 100 A, it is common to reduce the size and weight with a switching power supply. In such a switching type power supply, a square wave voltage obtained by switching of a switching element is smoothed by an LC circuit including a choke coil and a smoothing capacitor to obtain a desired DC output voltage.

こうした大電流用のチョークコイルであるインダクタンス素子は、トロイダル状コアに導体として太い銅線を巻いたり、あるいは細い銅線を束ねて巻いたりする構造が従来から採用されてきた。しかし、銅線が巻太って無駄なスペースが生じたり、太い銅線のために他の被接合体との端末処理が複雑となったり、コアの中心部で銅線が密になり、放熱が困難になったりする問題を有していた。   Inductance elements, which are choke coils for large currents, have conventionally employed a structure in which a thick copper wire is wound around a toroidal core, or a thin copper wire is bundled and wound. However, the copper wire is wound thickly, resulting in useless space, the thick copper wire complicates the end treatment with other objects, the copper wire becomes dense at the center of the core, and heat dissipation It had a problem that became difficult.

一方、例えば特許文献1には、磁性合金によるトロイダル状コアと、このトロイダル状コアを収納するケースとを貫通して、導体となるリードを配設し、リードの両端を回路基板などの被接合体に固定させたものが開示されている。しかし、単にリードが円筒状のトロイダル状コアを貫通しているだけなので、必要なリードのターン数が得られない。また、リードに大電流が流れる場合、やはりトロイダル状コアの中心部に熱が集中するので、インダクタンス素子として何らかの放熱対策が必要となる。   On the other hand, for example, Patent Document 1 discloses that a toroidal core made of a magnetic alloy and a case for housing the toroidal core are provided, leads serving as conductors are disposed, and both ends of the leads are joined to a circuit board or the like. What is fixed to the body is disclosed. However, since the lead simply passes through the cylindrical toroidal core, the necessary number of turns of the lead cannot be obtained. In addition, when a large current flows through the lead, heat is concentrated at the center of the toroidal core, so some measure of heat dissipation is required as an inductance element.

こうした問題を回避するために、本願出願人は先に図4〜図9に示すインダクタンス素子を提案および出願している(特願2006−194003)。   In order to avoid such a problem, the present applicant has previously proposed and filed an inductance element shown in FIGS. 4 to 9 (Japanese Patent Application No. 2006-194003).

同図において、チョークコイル101は、主に、導電被覆体としての外周用薄板銅板102と、トロイダルコア103と、導電部材としての内周用厚板銅板104,105とから構成される。   In the figure, a choke coil 101 is mainly composed of an outer peripheral thin copper plate 102 as a conductive coating, a toroidal core 103, and inner peripheral thick copper plates 104 and 105 as conductive members.

トロイダルコア103は、磁性材料を焼結してなる一般的な形状のコア本体を、絶縁のための例えば樹脂などからなる中空環状のコアケースに収納したもので、全体が筒状に形成される。外周用薄板銅板102は、トロイダルコア103の外周を部分的に被覆する形状に薄板銅板を加工してなり、環板状の挟持部112,113と、トロイダルコア103の外周の一部分を被覆し挟持部112,113間を繋ぐ矩形扁平板状の架橋部110と、架橋部110の一側から延出してなるフィン部111とを備えて構成される。   The toroidal core 103 is a core body having a general shape formed by sintering a magnetic material and housed in a hollow annular core case made of, for example, resin for insulation, and is formed in a cylindrical shape as a whole. . The outer thin copper plate 102 is formed by processing a thin copper plate into a shape that partially covers the outer periphery of the toroidal core 103, and covers and holds the annular plate-shaped holding portions 112 and 113 and a part of the outer periphery of the toroidal core 103. A rectangular flat plate-like bridging portion 110 that connects the portions 112 and 113 and a fin portion 111 that extends from one side of the bridging portion 110 are configured.

挟持部112の中央には、トロイダルコア103の中心孔122と連通する貫通孔116が形成されており、この貫通孔116の上方に幅狭な接続片114が外方へ突設される。これと同様に、挟持部113の中央には、トロイダルコア103の中心孔122と連通する貫通孔117が形成されており、この貫通孔117の下方に幅広な接続片115が外方へ突設されている。従って、接続片114,115は、上下に互い違いに設けられ、互いに反対方向へ突出している。   A through hole 116 that communicates with the center hole 122 of the toroidal core 103 is formed at the center of the sandwiching portion 112, and a narrow connecting piece 114 projects outwardly from the through hole 116. Similarly, a through hole 117 communicating with the center hole 122 of the toroidal core 103 is formed at the center of the sandwiching portion 113, and a wide connecting piece 115 projects outwardly from the through hole 117. Has been. Accordingly, the connecting pieces 114 and 115 are provided alternately in the vertical direction and protrude in opposite directions.

また、挟持部112,113における架橋部110と結合する反対側の端部には、垂下する逆L字状の保持片118,119が内側へ略直角にそれぞれ折り曲げ成形されている。他方、架橋部10の下方両隅には、据付片120,121がそれぞれ突設されている。例えばプリント基板やバー部材などにチョークコイル101を固定する際には、対向する保持片119と据付片121の下端にそれぞれ形成された係合爪119a,121aをプリント基板等の被係合部に係合させ、対向する保持片118と据付片120の下端にそれぞれ形成された係合突起118a,120aを例えば半田付けなどすることにより据付固定される。   In addition, hanging L-shaped holding pieces 118 and 119 are bent and formed at substantially right angles at the opposite ends of the sandwiching portions 112 and 113 that are coupled to the bridging portion 110. On the other hand, installation pieces 120 and 121 project from the lower corners of the bridging portion 10, respectively. For example, when the choke coil 101 is fixed to a printed board or a bar member, the engaging claws 119a and 121a formed on the lower ends of the holding piece 119 and the installation piece 121 facing each other are used as engaged parts such as the printed board. The engaging projections 118a and 120a formed at the lower ends of the holding piece 118 and the installation piece 120, which are opposed to each other, are installed and fixed by, for example, soldering.

内周用厚板銅板104,105は、共に棒状の厚板銅板(所謂バスバー)からなる。内周用厚板銅板104は、その一端に幅広部104aが形成される一方で、別な内周用厚板銅板105は、その一端に直交方向に二手に分かれたT字状の分岐部105aが形成される。これら内周用厚板銅板104,105は、チョークコイル101の組立て時に重ね合わされるため、両者の絶縁を確保するために、その間に3枚の絶縁シート126〜128が挟み込まれる。絶縁シート126は、内周用厚板銅板104の底面に密着するシート状の絶縁体であり、内周用厚板銅板104の側面に密着して保護する側面保護部130,131が長手方向両側に沿って立設される。絶縁シート128は、内周用厚板銅板105の上面に密着するシート状の絶縁体であり、内周用厚板銅板105の側面に密着して保護する側面保護部134,135が長手方向両側に沿って立設される(図4では垂下している)。絶縁シート127は、絶縁シート126,128間に挿入され、絶縁シート126,128と共に内周用厚板銅板104,105間の絶縁を補強するシート状の絶縁体であり、上側となる内周用厚板銅板104の側面側を保護する側面保護部132と、下側となる内周用厚板銅板105の側面側を保護する側面保護部133が、長手方向両側に沿って上下に互い違いに立設される。   The inner peripheral thick copper plates 104 and 105 are both rod-shaped thick copper plates (so-called bus bars). The inner peripheral thick copper plate 104 is formed with a wide portion 104a at one end thereof, while the other inner peripheral thick plate copper plate 105 is formed with a T-shaped branch portion 105a that is bifurcated in the orthogonal direction at one end thereof. . Since these inner peripheral thick copper plates 104 and 105 are overlapped at the time of assembling the choke coil 101, three insulating sheets 126 to 128 are sandwiched between them in order to ensure insulation between them. The insulating sheet 126 is a sheet-like insulator that is in close contact with the bottom surface of the inner peripheral thick copper plate 104, and side protection portions 130 and 131 that adhere to and protect the side surfaces of the inner peripheral thick copper plate 104 are provided along both longitudinal sides. Established. The insulating sheet 128 is a sheet-like insulator that is in close contact with the upper surface of the inner peripheral thick copper plate 105, and side protection portions 134 and 135 that are in close contact with the side surface of the inner peripheral thick copper plate 105 for protection. (It is drooping in FIG. 4). The insulating sheet 127 is a sheet-like insulator that is inserted between the insulating sheets 126 and 128 and reinforces the insulation between the inner peripheral thick copper plates 104 and 105 together with the insulating sheets 126 and 128, and the inner peripheral thick copper plate 104 on the upper side. The side surface protection parts 132 that protect the side surfaces of the inner peripheral thick plate copper plate 105 and the side surface protection parts 133 that protect the side surfaces of the inner peripheral thick copper plate 105 are alternately erected up and down along both longitudinal sides.

そして、チョークコイル101の組立てに際しては、内周用厚板銅板104を絶縁シート126の側面保護部130,131間に挿入し、同様に、内周用厚板銅板105を絶縁シート128の側面保護部134,135間に挿入して、絶縁シート128を内周用厚板銅板105の上面に装着する。そして、絶縁シート126,128間に絶縁シート127を挟みこんだ状態で、内周用厚板銅板104,105を上下に重ね合わせて、図4に示すような内周用厚板銅板組立体136を構成する。このとき内周用厚板銅板104,105は、下側となる内周用厚板銅板105に比べて上側となる内周用厚板銅板104がやや短いため、内周用厚板銅板105の分岐部105aに対して反対側の端部が突出することにより、段部が形成される。   When the choke coil 101 is assembled, the inner peripheral thick copper plate 104 is inserted between the side surface protection portions 130 and 131 of the insulating sheet 126. Similarly, the inner peripheral thick plate copper plate 105 is inserted into the side surface protection portions 134 and 135 of the insulating sheet 128. Inserted between them, the insulating sheet 128 is attached to the upper surface of the inner peripheral thick copper plate 105. Then, with the insulating sheet 127 sandwiched between the insulating sheets 126 and 128, the inner peripheral thick plate copper plates 104 and 105 are stacked one above the other to form an inner peripheral thick plate copper plate assembly 136 as shown in FIG. At this time, since the inner peripheral thick copper plate 104 is slightly shorter than the lower inner peripheral thick copper plate 105, the inner peripheral thick copper plate 104, 105 is opposite to the branched portion 105a of the inner peripheral thick copper plate 105. A stepped portion is formed by projecting the end portion.

次に、トロイダルコア103の両環状端面と外周面に、各挟持部112,113と架橋部110がそれぞれ対応するように、外周用薄板銅板102の内側にトロイダルコア103を挿入し、トロイダルコア103に外周用薄板銅板102を被せる。これにより、トロイダルコア103は外周用薄板銅板102の各部と密着状態で保持される。   Next, the toroidal core 103 is inserted inside the thin copper plate 102 for outer periphery so that the sandwiching portions 112 and 113 and the bridging portion 110 correspond to both annular end faces and outer peripheral surfaces of the toroidal core 103, respectively. A thin copper plate for outer periphery 102 is placed on the top. Thereby, the toroidal core 103 is held in close contact with each part of the thin copper plate 102 for outer periphery.

続いて、外周用薄板銅板102を構成する挟持部112,113の貫通孔116,117及びトロイダルコア103の中心孔122に内周用厚板銅板組立体136を挿通し、内周用厚板銅板組立体136を外周用薄板銅板102の挟持部112,113にそれぞれ固着する。具体的には、内周用厚板銅板104の幅広部104aと反対側の端部を、挟持部112の接続片114に例えば螺子締結などで接続固定する一方、内周用厚板銅板105の分岐部105aを、挟持部113の接続片115に例えば螺子締結などで接続固定する。   Subsequently, the inner peripheral thick copper plate assembly 136 is inserted into the through holes 116 and 117 of the sandwiching portions 112 and 113 constituting the outer peripheral thin copper plate 102 and the center hole 122 of the toroidal core 103, and the inner peripheral thick copper plate assembly 136 is inserted. The outer thin copper plate 102 is fixed to the sandwiching portions 112 and 113, respectively. Specifically, the end of the inner peripheral thick copper plate 104 opposite to the wide portion 104a is connected and fixed to the connection piece 114 of the sandwiching portion 112 by, for example, screw fastening, while the branched portion 105a of the inner peripheral thick copper plate 105 is fixed. Then, the connection piece 115 is fixedly connected to the connection piece 115 of the clamping part 113 by, for example, screw fastening.

このような製造工程を経て、図5〜図9に示すチョークコイル101が完成する。なお、内周用厚板銅板組立体136から突出した内周用厚板銅板104の一端(幅広部104a)と、内周用厚板銅板105の他端が、外部回路との接続部となる。   Through such a manufacturing process, the choke coil 101 shown in FIGS. 5 to 9 is completed. Note that one end (wide portion 104a) of the inner peripheral thick plate copper plate 104 protruding from the inner peripheral thick plate copper plate assembly 136 and the other end of the inner peripheral thick plate copper plate 105 serve as a connection portion with an external circuit.

そして、電流は内周用厚板銅板104の幅広部104aから流入し、内周用厚板銅板4を通じて挟持部112の接続片114から外周用薄板銅板102へ流れる。外周用薄板銅ケース2では、電流は挟持部112から架橋部110を経て挟持部113に到達し、接続部115を通じて分岐部105aから内周用厚板銅板105へ流入する。また、チョークコイル101の据付時において、保持片118,119間を例えばプリント基板の回路パターンやバスバーなどの導電部材(図示せず)で短絡すれば、挟持部12の接続片14から保持片118,導電部材,保持片119,挟持部113を電流が流れ、接続部115を通じて分岐部105aから内周用厚板銅板105へ流入する。そして、これらの内周用厚板銅板105に流入した電流は、コア103内の内周用厚板銅板105を通じて最終的に外部回路へ流出する。   The current flows in from the wide portion 104a of the inner peripheral thick copper plate 104, and flows from the connection piece 114 of the clamping portion 112 to the outer peripheral thin copper plate 102 through the inner peripheral thick copper plate 4. In the outer thin copper case 2, the current reaches the sandwiching portion 113 from the sandwiching portion 112 through the bridging portion 110, and flows from the branch portion 105 a to the thick inner copper plate 105 through the connecting portion 115. Further, when the choke coil 101 is installed, if the holding pieces 118 and 119 are short-circuited by a conductive member (not shown) such as a circuit pattern of a printed circuit board or a bus bar, the holding pieces 118 are connected from the connecting pieces 14 of the sandwiching portion 12. , Current flows through the conductive member, the holding piece 119, and the sandwiching portion 113, and flows from the branch portion 105a to the thick copper plate 105 for the inner periphery through the connection portion 115. The current flowing into the inner peripheral thick copper plate 105 finally flows out to the external circuit through the inner peripheral thick copper plate 105 in the core 103.

このようにして、トロイダルコア103に巻装されるべき巻線を、トロイダルコア103の外周面を覆う表面積の広い外周用薄板銅板102と、トロイダルコア103の中心孔122を貫く複数の内周用厚板銅板104,105とにより構成することで、これらの外周用薄板銅板102と、内周用厚板銅板104,105に放熱器としての機能を持たせることができ、チョークコイル101の温度上昇が小さくなる。また、厚板である内周用厚板銅板104,105と、薄板である外周用薄板銅板102とを組合わせる巻線構造としたことで、占有体積を最小にすることができると共に、巻線機などの大掛かりな工具を必要とせず、組立てが容易である。
特開平8−172109号公報
In this way, the winding to be wound around the toroidal core 103 is made of a thin copper plate for outer periphery 102 having a large surface area covering the outer peripheral surface of the toroidal core 103, and a plurality of thick plates for inner periphery passing through the center hole 122 of the toroidal core 103. By comprising the copper plates 104 and 105, the outer thin copper plate 102 and the inner thick copper plates 104 and 105 can have a function as a radiator, and the temperature rise of the choke coil 101 is reduced. In addition, the winding structure that combines the thick copper plates 104, 105 for inner circumference and the thin copper plate for outer circumference 102, which is a thin plate, makes it possible to minimize the occupied volume, as well as the winding machine, etc. No large tool is required and assembly is easy.
JP-A-8-172109

しかし、従来のインダクタンス素子に相当するチョークコイル101では、トロイダルコア103の外面一側が、外周用薄板銅板102の架橋部110で覆われているものの、トロイダルコア103の外面他側は、一対の保持片118,119を除いて殆ど露出しており、この部分からの放熱性能の低下が免れない。また、保持片118,119間を別な導電部材で連結させている関係から、その部分の電気抵抗による銅損が増加し、インダクタンス素子として十分な放熱性能が得られないという懸念があった。   However, in the choke coil 101 corresponding to the conventional inductance element, one side of the outer surface of the toroidal core 103 is covered with the bridging portion 110 of the thin copper plate 102 for outer periphery, but the other side of the outer surface of the toroidal core 103 is held in a pair. Except for the pieces 118 and 119, they are almost exposed, and the deterioration of the heat radiation performance from these portions is inevitable. Further, since the holding pieces 118 and 119 are connected by another conductive member, there is a concern that the copper loss due to the electrical resistance of the portion increases and sufficient heat dissipation performance as an inductance element cannot be obtained.

また、内周用厚板銅板104,105には、図示しない外部回路との接続部が設けられているが、この接続部における損失の低減も求められていた。さらに、内周用厚板銅板104,105と外周用薄板銅板102との連結部についても、同じような損失の低減も求められていた。   Further, the inner peripheral thick copper plates 104 and 105 are provided with a connection portion with an external circuit (not shown), but a reduction in loss at the connection portion has also been demanded. Further, the same loss reduction has been demanded for the connecting portion between the inner peripheral thick copper plates 104 and 105 and the outer peripheral thin copper plate 102.

そこで本発明は上記問題点に鑑み、部分的な放熱性能の低下を回避し、併せて電流による銅損を低減できるインダクタンス素子を提供する。   Therefore, in view of the above problems, the present invention provides an inductance element that can avoid a partial decrease in heat dissipation performance and reduce copper loss due to current.

また本発明の別な目的は、外部回路との接続部や連結部における損失の低減を図ったインダクタンス素子を提供することにある。   Another object of the present invention is to provide an inductance element that is designed to reduce a loss in a connection portion or a connection portion with an external circuit.

本発明の請求項1におけるインダクタンス素子は、貫通孔が設けられた磁性材料からなるコアと、前記貫通孔に挿入された第1の導電部材と、前記貫通孔に挿入され、前記第1の導電部材と絶縁されている第2の導電部材と、前記コアを取り囲む第3の導電部材とを備え、前記第1の導電部材は、前記第3の導電部材と前記貫通孔の一方の端部側で電気的に接続され、前記第2の導電部材は、前記第3の導電部材と前記貫通孔の他方の端部側で電気的に接続され、前記第1の導電部材と前記第2の導電部材は、前記第3の導電部材により、2つの電気的な経路で接続されるものである。 The inductance element according to claim 1 of the present invention includes a core made of a magnetic material provided with a through-hole, a first conductive member inserted into the through-hole, and a first conductive member inserted into the through-hole. A second conductive member insulated from the member, and a third conductive member surrounding the core, wherein the first conductive member is on one end side of the third conductive member and the through hole. The second conductive member is electrically connected to the third conductive member on the other end side of the through hole, and the first conductive member and the second conductive member are electrically connected to each other. The member is connected by two electric paths by the third conductive member .

本発明の請求項2におけるインダクタンス素子は、前記第1および前記第2の導電部材とを、絶縁シートを介して重ね合わせて形成したものである。 An inductance element according to a second aspect of the present invention is formed by overlapping the first and second conductive members with an insulating sheet interposed therebetween .

本発明の請求項3におけるインダクタンス素子は、前記コアと前記第1および前記第2および前記第3の導電部材とを絶縁シートによって絶縁したものである。 According to a third aspect of the present invention, the inductance element includes the core and the first, second, and third conductive members insulated by an insulating sheet .

本発明の請求項1では、コアに巻装されるべき巻線を、コアの外面を覆う表面積の広い第3の導電部材と、コアの貫通孔に挿入された第1および第2の導電部材とにより構成する。こうすると、大電流によって発熱する巻線自体に、冷却効果を生じる放熱器としての性能を持たせることができる。しかもこの場合は、コアの一側外面だけでなく他側外面を取り囲むように、巻線の一部となる2つの電気的な経路第3の導電部材に形成されるので、これらの2つの電気的な経路がインダクタンス素子の外面全体から効率的に熱を放散して、部分的な放熱性能の低下を回避できる。さらに、別な導電部材を介在させることなく、同一部材である第3の導電部材2つの電気的な経路によって、電流を二方向に分配できることから、この電流による銅損を低減することができる。 In the first aspect of the present invention, the winding to be wound around the core includes a third conductive member having a large surface area covering the outer surface of the core , and first and second conductive members inserted into the through holes of the core. It consists of. If it carries out like this, the performance as a heat radiator which produces a cooling effect can be given to winding itself which generates heat by a large current. In addition, in this case, two electrical paths that are part of the winding are formed in the third conductive member so as to surround not only the outer surface of one side of the core but also the outer surface of the other side . The electrical path efficiently dissipates heat from the entire outer surface of the inductance element, and a partial decrease in heat dissipation performance can be avoided. Furthermore, since current can be distributed in two directions by two electrical paths of the third conductive member which is the same member without interposing another conductive member, copper loss due to this current can be reduced. .

本発明の請求項2では、第1および第2の導電部材が、絶縁シートを介して重ね合わされる。 In Claim 2 of this invention, the 1st and 2nd electrically-conductive member is piled up through an insulating sheet.

本発明の請求項3では、コアと第1および第2および第3の導電部材が絶縁シートによって絶縁される。 According to claim 3 of the present invention, the core and the first, second and third conductive members are insulated by the insulating sheet.

以下、添付図面を参照しながら、本発明におけるインダクタンス素子の好ましい実施例を説明する。なお、従来例と同一箇所には同一符号を付し、共通する部分の説明は重複するため極力省略する。   Hereinafter, preferred embodiments of an inductance element according to the present invention will be described with reference to the accompanying drawings. In addition, the same code | symbol is attached | subjected to the same location as a prior art example, and it abbreviate | omits as much as possible since description of a common part overlaps.

図1は、本実施例におけるインダクタンス素子としてのチョークコイル1の分解斜視図であり、図2はチョークコイル1の完成状態の外形図である。チョークコイル1は、主に、導電被覆体としての外周用銅ケース2と、トロイダルコア3と、第1および第2の導電部材としての内周用銅板4,5とから構成される。   FIG. 1 is an exploded perspective view of a choke coil 1 as an inductance element in the present embodiment, and FIG. 2 is an external view of the completed choke coil 1. The choke coil 1 mainly includes an outer peripheral copper case 2 as a conductive covering, a toroidal core 3, and inner peripheral copper plates 4 and 5 as first and second conductive members.

トロイダルコア3は、フェライトなどの磁性材料を焼結してなる一般的な円筒形状のコアであり、内周用銅板4,5を貫通する中心孔6が軸方向に形成される。また、トロイダルコア3の内周面と外周面を覆うようにして、他の部材との電気的な絶縁を図るための絶縁シート7,8がそれぞれ設けられると共に、トロイダルコア3の軸方向両端面すなわち前後の環状端面を覆う別な絶縁シート9が設けられる。これらの絶縁シート7,8,9は、何れも好ましくはノーメックス(登録商標)などの樹脂シートにより形成される。   The toroidal core 3 is a general cylindrical core formed by sintering a magnetic material such as ferrite, and a center hole 6 penetrating the inner peripheral copper plates 4 and 5 is formed in the axial direction. In addition, insulating sheets 7 and 8 are provided to cover the inner and outer peripheral surfaces of the toroidal core 3 for electrical insulation from other members, and both axial end surfaces of the toroidal core 3 are provided. That is, another insulating sheet 9 that covers the front and rear annular end surfaces is provided. These insulating sheets 7, 8, 9 are preferably formed of a resin sheet such as Nomex (registered trademark).

外周用銅ケース2は、トロイダルコア3の外周を部分的に被覆する形状に銅板を加工してなる。より詳細には、外周用銅ケース2は、その上方からみてトロイダルコア3の一側外面を取り囲むようにコ字状に形成された第1の周回部11と、トロイダルコア3の他側外面を取り囲むようにコ字状に形成された第2の周回部12が向かい合うように配置されると共に、第1の周回部11の下端から垂下する第1の脚部13と、第2の周回部12の下端から垂下する第2の脚部14と、第1の脚部13の下端からL字状に折曲げ形成された第1の台座部15と、第2の脚部14の下端からL字状に折曲げ形成された第2の台座部16とを備えて構成される。そして、第1の周回部11は、トロイダルコア3の前方一側環状端面に臨んで位置する基端部11Aと、トロイダルコア3の一側外周面に臨んで位置する架橋部11Bと、トロイダルコア3の後方一側環状端面に臨んで位置する先端部11Cとを連結して形成され、同様に第2の周回部12は、トロイダルコア3の前方他側環状端面に臨んで位置する基端部12Aと、トロイダルコア3の他側外周面に臨んで位置する架橋部12Bと、トロイダルコア3の後方他側環状端面に臨んで位置する先端部12Cとを連結して形成される。   The outer periphery copper case 2 is formed by processing a copper plate into a shape that partially covers the outer periphery of the toroidal core 3. More specifically, the outer peripheral copper case 2 includes a first circumferential portion 11 formed in a U shape so as to surround one outer surface of the toroidal core 3 as viewed from above, and the other outer surface of the toroidal core 3. A second circumferential portion 12 formed in a U-shape so as to surround is disposed so as to face each other, and a first leg portion 13 that hangs down from the lower end of the first circumferential portion 11 and a second circumferential portion 12. A second leg 14 depending from the lower end of the first leg 13, a first pedestal 15 bent in an L shape from the lower end of the first leg 13, and an L shape from the lower end of the second leg 14. And a second pedestal portion 16 bent into a shape. And the 1st surrounding part 11 is the base end part 11A located facing the front one side annular end surface of the toroidal core 3, the bridge | crosslinking part 11B located facing one side outer peripheral surface of the toroidal core 3, and a toroidal core 3 is formed by connecting a distal end portion 11C positioned facing the rear one-side annular end surface, and similarly, the second circumferential portion 12 is a proximal end portion positioned facing the front other-side annular end surface of the toroidal core 3. 12A, the bridge | crosslinking part 12B located facing the other outer peripheral surface of the toroidal core 3, and the front-end | tip part 12C located facing the back other cyclic | annular end surface of the toroidal core 3 are connected and formed.

本実施例における外周用銅ケース2は、前記第1の周回部11の先端部11Cと第2の周回部12の先端部12Cどうしが連結され、この連結部の上方から少なくとも4個の孔17を形成した接続片18が外方へ突設される。また、前記各基端部11A,12Aの下方からも、それぞれ2個ずつの孔19を形成した接続片20が外方へ突設される。従って、接続片18,20は、上下に互い違いに設けられ、互いに反対方向へ突出している。ここでの接続片18は、一方の内周用銅板4と外周用銅ケース2との電気的接続を図るために設けられており、また接続片20は、他方の内周用銅板5と外周用銅ケース2との電気的接続を図るために設けられている。   In the outer peripheral copper case 2 in this embodiment, the front end portion 11C of the first peripheral portion 11 and the front end portion 12C of the second peripheral portion 12 are connected to each other, and at least four holes 17 from above the connection portion. The connecting piece 18 having a shape is projected outward. In addition, connecting pieces 20 each having two holes 19 are projected outward from below the base end portions 11A and 12A. Accordingly, the connection pieces 18 and 20 are provided alternately in the vertical direction and protrude in opposite directions. Here, the connecting piece 18 is provided for electrical connection between one inner peripheral copper plate 4 and the outer peripheral copper case 2, and the connecting piece 20 includes the other inner peripheral copper plate 5 and the outer peripheral copper plate 5. It is provided for electrical connection with the copper case 2.

前記台座部15,16は、この台座部15,16を底面部として外周用銅ケース2を電源装置内の別な導体部材(図示せず)に載置できるように、何れも面一な平板状に形成される。また、この台座部15,16と導電部材との間を電気的に絶縁するのに、台座部15,16の下方に前記絶縁シート9の底面部9Aが配設される。この底面部9Aは、台座部15,16の底面全体を載せるような大きさで矩形状に形成され、底面部9Aの両端縁からそれぞれ垂直に立ち上がる折曲げ片9Bが、トロイダルコア3の各環状端面に臨んで配置される。このように、絶縁シート9は、トロイダルコア3と外部部品のみならず、外周用銅ケース2と外部の導電部材との絶縁を図る共通部材として設けられる。さらに、折曲げ片9Bには、トロイダルコア3の中心孔6とほぼ同形状の中心孔9Cが形成され、これらの中心孔6,9Cに内周用銅板4,5や後述する絶縁シート27が貫通される。   The pedestal portions 15 and 16 are flat surfaces so that the outer copper case 2 can be placed on another conductor member (not shown) in the power supply device with the pedestal portions 15 and 16 as bottom portions. It is formed in a shape. Further, in order to electrically insulate between the pedestal portions 15 and 16 and the conductive member, a bottom surface portion 9A of the insulating sheet 9 is disposed below the pedestal portions 15 and 16. The bottom surface portion 9A is formed in a rectangular shape so that the entire bottom surface of the pedestal portions 15 and 16 can be placed thereon, and the bent pieces 9B that rise vertically from both end edges of the bottom surface portion 9A are formed in each annular shape of the toroidal core 3. It is arranged facing the end face. As described above, the insulating sheet 9 is provided as a common member that insulates not only the toroidal core 3 and the external component but also the outer peripheral copper case 2 and the external conductive member. Further, a center hole 9C having substantially the same shape as the center hole 6 of the toroidal core 3 is formed in the bent piece 9B, and inner peripheral copper plates 4, 5 and an insulating sheet 27 described later are provided in these center holes 6, 9C. Penetrated.

内周用銅板4は、大電流を流すのに適した棒状の銅板(所謂バスバー)からなり、その一端は、図示しない外部回路と電気的な接続を図るために、複数の孔4aを有する接続部としての幅広部4bが形成される。また内周用銅板4の他端には、前記接続片18の孔17に対向する4個の孔4cが形成される。一方、別な内周用銅板5も棒状のバスバーからなり、その一端に直交方向に二手に分かれた分岐部5aが形成されることにより全体としてT字状になっている。この分岐部5aには、前記接続片20の孔19に対向する4個の孔5bが形成される。また、内周用銅板5の他端には、図示しない外部回路と電気的な接続を図るために、複数の孔5cを有する接続部5dが形成される。これらの内周用銅板4,5は、チョークコイル1の組立て時に重ね合わされるため、両者の絶縁を確保するために、その間に絶縁シート27が挟み込まれる。   The inner circumferential copper plate 4 is made of a rod-shaped copper plate (so-called bus bar) suitable for flowing a large current, and one end thereof is a connection having a plurality of holes 4a for electrical connection with an external circuit (not shown). A wide portion 4b as a portion is formed. Further, at the other end of the inner peripheral copper plate 4, four holes 4 c facing the hole 17 of the connecting piece 18 are formed. On the other hand, another inner peripheral copper plate 5 is also made of a rod-shaped bus bar, and is formed into a T shape as a whole by forming a bifurcated portion 5a which is divided into two in the orthogonal direction at one end thereof. In the branch portion 5a, four holes 5b facing the holes 19 of the connection piece 20 are formed. Further, a connecting portion 5d having a plurality of holes 5c is formed at the other end of the inner peripheral copper plate 5 in order to electrically connect to an external circuit (not shown). Since these inner peripheral copper plates 4 and 5 are overlapped when the choke coil 1 is assembled, an insulating sheet 27 is sandwiched therebetween to ensure insulation between the two.

絶縁シート27は、内周用銅板4,5間に挿入するシート状の絶縁体であり、上側となる内周用銅板4の側面側を保護する側面保護部32と、下側となる内周用銅板5の側面側を保護する側面保護部33とが、長手方向両側に沿って上下に互い違いに立設されている。なお、こうした絶縁体として従来例のように複数枚の絶縁シートを介在させてもよい。   The insulating sheet 27 is a sheet-like insulator inserted between the inner peripheral copper plates 4, 5, and includes a side surface protection portion 32 that protects the side surface side of the inner peripheral copper plate 4 that is the upper side, and an inner peripheral surface that is the lower side Side surface protection portions 33 that protect the side surface side of the copper plate 5 are alternately erected up and down along both longitudinal sides. Note that a plurality of insulating sheets may be interposed as such an insulator as in the conventional example.

次に、チョークコイル1の組立て工程について説明する。   Next, the assembly process of the choke coil 1 will be described.

内周用銅板4,5間に絶縁シート27を挟みこんだ状態で、当該内周用銅板4,5を上下に重ね合わせた組立体を構成する。このとき内周用銅板4,5は、下側となる内周用銅板5に比べて上側となる内周用銅板4がやや短いため、内周用銅板5の分岐部5aに対して反対側の端部が突出することにより、段部が形成される。なお、内周用銅板4,5を長手方向に若干ずらした状態で重ね合わせて、組立体36の両端部において内周用銅板4の幅広部4aと内周用銅板5の分岐部5aに対して反対側の端部とがそれぞれ突出することにより、上下に互い違いに段部が形成されるよう構成してもよい。この段部を形成することにより、図示しない外部回路との接続が容易になる。   An assembly is configured in which the inner peripheral copper plates 4 and 5 are vertically stacked with the insulating sheet 27 sandwiched between the inner peripheral copper plates 4 and 5. At this time, since the inner peripheral copper plate 4 is slightly shorter than the lower inner peripheral copper plate 5, the inner peripheral copper plates 4, 5 are opposite to the branch portion 5 a of the inner peripheral copper plate 5. A stepped portion is formed by projecting the end portion. The inner peripheral copper plates 4 and 5 are overlapped in a state slightly shifted in the longitudinal direction, so that the both ends of the assembly 36 are wide with respect to the wide portion 4 a of the inner peripheral copper plate 4 and the branched portion 5 a of the inner peripheral copper plate 5. The opposite ends protrude from each other so that the stepped portions are alternately formed up and down. By forming this step portion, connection to an external circuit (not shown) is facilitated.

次に、予めトロイダルコア3の内周面と外周面の全体に絶縁シート7,8を巻装した状態で、トロイダルコア3に外周用銅ケース2を被装する。具体的には、トロイダルコア3の一側外周面に第1の周回部11の架橋部11Bが対向し、トロイダルコア3の他側外周面に第2の周回部12の架橋部12Bが対向するように、第1の周回部11と第2の周回部12で囲まれる外周用銅ケース2の内側に、絶縁シート7,8付きのトロイダルコア3を挿入する。その後で、トロイダルコア3の各環状端面と外周用銅ケース2との間に折曲げ片9Bが介在するように、外周用銅ケース2の下側から絶縁シート9を挿入する。絶縁シート9の底面部9Aが、台座部15,16の底面に突き当たる位置まで絶縁シート9を挿入すると、トロイダルコア3の外面全体が、絶縁シート7,8,9で覆われることになる。   Next, the outer peripheral copper case 2 is mounted on the toroidal core 3 in a state where the insulating sheets 7 and 8 are wound around the entire inner peripheral surface and outer peripheral surface of the toroidal core 3 in advance. Specifically, the bridging portion 11B of the first circumferential portion 11 faces one outer peripheral surface of the toroidal core 3, and the bridging portion 12B of the second circumferential portion 12 faces the other outer circumferential surface of the toroidal core 3. As described above, the toroidal core 3 with the insulating sheets 7 and 8 is inserted into the inner side of the outer peripheral copper case 2 surrounded by the first peripheral portion 11 and the second peripheral portion 12. After that, the insulating sheet 9 is inserted from the lower side of the outer peripheral copper case 2 so that the bent piece 9B is interposed between each annular end surface of the toroidal core 3 and the outer peripheral copper case 2. When the insulating sheet 9 is inserted until the bottom surface portion 9A of the insulating sheet 9 abuts against the bottom surfaces of the pedestal portions 15 and 16, the entire outer surface of the toroidal core 3 is covered with the insulating sheets 7, 8, and 9.

続いて、内周用銅板4の他端に形成した孔4cと接続片18の孔17が一致すると共に、内周用銅板5の一端に形成した孔5bと接続片20の孔19が一致するように、トロイダルコア3の中心孔6と絶縁シート9の中心孔9Cに前記組立体36を挿通する。この状態で、孔4c,17を利用して、内周用銅板4の他端と接続片20とを止着部材であるねじ38で接続固定すると共に、別な孔5b,19を利用して、内周用厚板銅板5の一端にある分岐部5aと接続片20とを止着部材であるねじ39で接続固定する(図2参照)。   Subsequently, the hole 4c formed at the other end of the inner peripheral copper plate 4 and the hole 17 of the connecting piece 18 coincide with each other, and the hole 5b formed at one end of the inner peripheral copper plate 5 and the hole 19 of the connecting piece 20 coincide with each other. As described above, the assembly 36 is inserted through the center hole 6 of the toroidal core 3 and the center hole 9C of the insulating sheet 9. In this state, the holes 4c and 17 are used to connect and fix the other end of the inner peripheral copper plate 4 and the connection piece 20 with screws 38 as fastening members, and other holes 5b and 19 are used. Then, the branch portion 5a at one end of the thick inner copper plate 5 and the connection piece 20 are connected and fixed with a screw 39 as a fastening member (see FIG. 2).

このような製造工程を経て、図2に示すチョークコイル1が完成する。なお、組立体36から突出した内周用銅板4の一端と、内周用銅板5の他端が、外部回路との接続用端子となる。   Through such a manufacturing process, the choke coil 1 shown in FIG. 2 is completed. One end of the inner peripheral copper plate 4 protruding from the assembly 36 and the other end of the inner peripheral copper plate 5 serve as terminals for connection to an external circuit.

以下、上記構成の作用について説明する。   The operation of the above configuration will be described below.

図3は、チョークコイル1における電流の流れを模式的に示した概略断面図である。同図において、電流は内周用銅板4の幅広部4aから流入し、内周用銅板4を通じて接続片17から外周用銅ケース2の各周回部11,12へ2方向に分岐して流れる。外周用銅ケース2では、第1の周回部11に分岐した一方の電流は、その先端部11Cから架橋部11bを経て基端部11aに到達し、接続片19を通じて分岐部5aから内周用銅板5へ流入する。また、第2の周回部12に分岐した他方の電流も、その先端部12Cから架橋部12bを経て基端部12aに到達し、接続片19を通じて分岐部5aから内周用銅板5へ流入する。そして、内周用銅板5に流入した電流は、この内周用銅板5を通じて最終的に接続部5dに連結する外部回路へと流出する。このとき、図3に示すように、チョークコイル1の内部にはトロイダルコア3を周回する2つの閉回路が並列に形成されており、内周用銅板4から流入した電流は、トロイダルコア3の中心軸方向に実質的に2ターン以上周回することとなる。 FIG. 3 is a schematic cross-sectional view schematically showing a current flow in the choke coil 1. In the figure, the current flows from the wide portion 4 a of the inner peripheral copper plate 4 and flows in two directions through the inner peripheral copper plate 4 from the connection piece 17 to the respective peripheral portions 11 and 12 of the outer peripheral copper case 2. In the outer periphery copper case 2, one of the currents branched to the first circulation portion 11 reaches the base end portion 11 a from the distal end portion 11 C through the bridging portion 11 b and passes through the connection piece 19 from the branch portion 5 a for inner periphery. It flows into the copper plate 5. Further, the other current branched to the second circulating portion 12 reaches the base end portion 12a from the tip end portion 12C via the bridging portion 12b, and flows into the inner peripheral copper plate 5 from the branching portion 5a through the connection piece 19. To do. Then, the current that has flowed into the inner peripheral copper plate 5 flows out through the inner peripheral copper plate 5 to an external circuit that is finally coupled to the connecting portion 5d. At this time, as shown in FIG. 3, two closed circuits that circulate around the toroidal core 3 are formed in parallel inside the choke coil 1, and the current flowing from the inner circumferential copper plate 4 is supplied to the toroidal core 3. It will circulate substantially two or more turns in the central axis direction.

このようにして、トロイダルコア3に2枚の内周用銅板4,5と外周用銅ケース2とを組み付けることにより、大電流を流せる2ターン以上のチョークコイル1を構成することができる。トロイダルコア3に巻装されるべき巻線を、トロイダルコア3の外周面を覆う表面積の広い外周用銅ケース2と、トロイダルコア3の中心孔6を貫く内周用銅板4,5とにより構成することで、大電流によって発熱する巻線自体に冷却効果を生ずる放熱器の機能を持たせることができ、その結果、チョークコイル1の温度上昇を小さくすることができる。特に本実施例では、チョークコイル3の外周で、同じ外周用銅ケース2で一体的に形成される第1の周回部11および第2の周回部12により、電流が2方向に且つ均等に分配して流れるので、これらの周回部11,12ひいてはチョークコイル1全体からの均一な熱放散が可能になる。   In this way, by assembling the two inner peripheral copper plates 4 and 5 and the outer peripheral copper case 2 to the toroidal core 3, the choke coil 1 having two or more turns capable of flowing a large current can be configured. A winding to be wound around the toroidal core 3 is composed of a copper case 2 for outer periphery having a large surface area covering the outer peripheral surface of the toroidal core 3 and copper plates 4 and 5 for inner periphery penetrating through the center hole 6 of the toroidal core 3. By doing so, the winding itself that generates heat by a large current can be provided with a function of a radiator that produces a cooling effect, and as a result, the temperature rise of the choke coil 1 can be reduced. In particular, in the present embodiment, the current is distributed evenly in two directions by the first peripheral portion 11 and the second peripheral portion 12 that are integrally formed with the same outer peripheral copper case 2 on the outer periphery of the choke coil 3. Therefore, it is possible to dissipate heat uniformly from the surrounding portions 11 and 12 and thus the entire choke coil 1.

また、チョークコイル1の入出力部分となる内周用銅板4,5が金属板からなるため、例えばバスバーなどの外部回路と直接接続可能なので、プリント基板や圧着端子などを介しての間接的な接続に比べて接触抵抗を少なくでき、接続損失が小さくなる。特に本実施例では、内周用銅板4の幅広部4bと外部回路が、孔4aを利用して少なくとも4個以上のねじ(図示せず)で固定できるようになっており、また別な内周用銅板5の接続部5dと外部回路も、孔5cを利用して少なくとも4個以上のねじ(図示せず)で固定できるようになっているので、チョークコイル1と外部回路との接続損失が低減できる。同様に、内周用銅板4,5と外周用銅ケース2も、4個以上のねじ38,39で固定できるようになっており、これらの部材間の接続損失が低減できる。   In addition, since the inner peripheral copper plates 4 and 5 serving as input / output portions of the choke coil 1 are made of metal plates, they can be directly connected to an external circuit such as a bus bar, for example, so that they can be indirectly connected via a printed circuit board or a crimp terminal. Contact resistance can be reduced compared to connection, and connection loss is reduced. In particular, in this embodiment, the wide portion 4b of the inner peripheral copper plate 4 and the external circuit can be fixed with at least four screws (not shown) using the holes 4a. Since the connection portion 5d of the peripheral copper plate 5 and the external circuit can also be fixed with at least four screws (not shown) using the holes 5c, the connection loss between the choke coil 1 and the external circuit Can be reduced. Similarly, the inner peripheral copper plates 4 and 5 and the outer peripheral copper case 2 can be fixed with four or more screws 38 and 39, and the connection loss between these members can be reduced.

チョークコイル1では、従来の丸銅線,角銅線等を巻線としたコイルに比べ、コイルの有効窓面積を最大限利用して、外周用銅ケース2を幅広としてその断面積を大きくすることができるので、銅の抵抗による損失を最小にすることができる。また、外周用銅ケース2と内周用銅板4,5とを組み合わせる巻線構造としたことで、占有体積を最小にすることができると共に、製作に巻線機などの機械を必要とせず、組立てが容易である。   The choke coil 1 uses the effective window area of the coil as much as possible and makes the outer peripheral copper case 2 wider to increase its cross-sectional area as compared with a conventional coil made of a round copper wire, a square copper wire or the like. Therefore, the loss due to copper resistance can be minimized. In addition, since the winding structure is a combination of the outer copper case 2 and the inner copper plates 4 and 5, the occupied volume can be minimized, and a machine such as a winding machine is not required for production. Easy to assemble.

以上のように本実施例のインダクタンス素子としてのチョークコイル1は、貫通孔である中心孔6が設けられた磁性材料からなるコアすなわちトロイダルコア3と、中心孔6に挿入された第1の導電部材としての内周用銅板4と、中心孔6に挿入され、内周用銅板4と絶縁されている第2の導電部材としての内周用銅板5と、トロイダルコア3を取り囲む第3の導電部材としての外周用銅ケース2を備え、内周用銅板4は、外周用銅ケース2と中心孔6の一方の端部側で電気的に接続され、内周用銅板5は、外周用銅ケース2と中心孔6の他方の端部側で電気的に接続され、内周用銅板4,5は、外周用銅ケース2により、2つの電気的な経路で接続されるように形成している。 As described above, the choke coil 1 as the inductance element of the present embodiment includes the core made of a magnetic material provided with the central hole 6 that is a through hole, that is, the toroidal core 3, and the first conductive material inserted into the central hole 6. The inner peripheral copper plate 4 as a member , the inner peripheral copper plate 5 as a second conductive member inserted into the central hole 6 and insulated from the inner peripheral copper plate 4, and the third conductive surrounding the toroidal core 3 The outer peripheral copper case 2 is provided as a member , the inner peripheral copper plate 4 is electrically connected to one end side of the outer peripheral copper case 2 and the center hole 6, and the inner peripheral copper plate 5 is the outer peripheral copper plate The case 2 and the other end side of the center hole 6 are electrically connected, and the inner peripheral copper plates 4 and 5 are formed by the outer peripheral copper case 2 so as to be connected by two electrical paths. Yes.

こうすると、トロイダルコア3に巻装されるべき巻線を、トロイダルコア3の外面を覆う表面積の広い外周用銅ケース2と、トロイダルコア3の中心孔6に挿入された内周用銅板4,5とにより構成することで、大電流によって発熱する巻線自体に冷却効果を生ずる放熱器の機能を持たせることができる。しかもこの場合は、トロイダルコア3の一側外面だけでなく他側外面を取り囲むように、巻線の一部となる2つの電気的な経路としての第1の周回部11および第2の周回部12が外周用銅ケース2に形成されるので、これらの第1の周回部11および第2の周回部12がチョークコイル1の外面全体から効率的に熱を放散して、部分的な放熱性能の低下を回避できる。さらに、別な導電部材を介在させることなく、同一部材である外周用銅ケース2の第1の周回部11および第2の周回部12によって、電流を二方向に分配できることから、この電流による銅損を低減することができる。 In this way, the winding to be wound around the toroidal core 3 is divided into a copper case 2 having a large surface area covering the outer surface of the toroidal core 3 , and a copper plate 4 for the inner circumference inserted into the center hole 6 of the toroidal core 3. 5 can be provided with the function of a radiator that produces a cooling effect on the winding itself that generates heat due to a large current. In addition, in this case, the first circulating portion 11 and the second circulating portion as two electrical paths that become a part of the winding so as to surround not only the outer surface of one side of the toroidal core 3 but also the outer surface of the other side. Since 12 is formed in the copper case 2 for the outer periphery, the first peripheral portion 11 and the second peripheral portion 12 efficiently dissipate heat from the entire outer surface of the choke coil 1, and a partial heat dissipation performance Can be avoided. Furthermore, the current can be distributed in two directions by the first and second circumferential portions 11 and 12 of the outer circumferential copper case 2 that are the same member without interposing another conductive member. Loss can be reduced.

また本実施例では、前記幅広部4bと接続部5dに、固定具である例えばねじを挿通する4つ以上の孔4a,5cを形成している。こうすると、各々4個以上の固定具を用いて、外部回路を幅広部4bや接続部5dに強固に固定することができるため、これらの幅広部4bや接続部5dにおける損失の低減を図ることができる。   In the present embodiment, the wide portion 4b and the connecting portion 5d are formed with four or more holes 4a and 5c through which, for example, screws as fixing tools are inserted. In this way, since the external circuit can be firmly fixed to the wide portion 4b and the connection portion 5d using four or more fixing tools, the loss in the wide portion 4b and the connection portion 5d can be reduced. Can do.

また本実施例では、内周用銅板4,5と外周用銅ケース2との連結部に、固定具であるねじ38,39を挿通する4つ以上の孔4c,5bを形成している。この場合も、各々4個以上のねじ38,39を用いて、内周用銅板4,5と外周用銅ケース2とをそれぞれの連結部で強固に固定することができるため、連結部における損失の低減を図ることができる。   Further, in this embodiment, four or more holes 4c and 5b through which screws 38 and 39 as fixing tools are inserted are formed in the connecting portion between the inner peripheral copper plates 4 and 5 and the outer peripheral copper case 2. Also in this case, since the inner peripheral copper plates 4 and 5 and the outer peripheral copper case 2 can be firmly fixed at the respective connecting portions by using four or more screws 38 and 39, the loss at the connecting portions can be reduced. Can be reduced.

その他、本実施例のチョークコイル1では、チョークコイル1の入出力部分となる内周用厚板銅板4,5がバスバーからなるため、外部配線と直接接続可能になって、プリント基板や圧着端子などを介しての間接的な接続に比べて接触抵抗を少なくでき、接続損失が小さくなる。従って、電流による銅損を少なくすることができる。   In addition, in the choke coil 1 of this embodiment, since the inner peripheral thick copper plates 4 and 5 that are the input / output portions of the choke coil 1 are made of bus bars, they can be directly connected to external wiring, such as printed boards and crimp terminals. The contact resistance can be reduced as compared with the indirect connection via the connection, and the connection loss is reduced. Therefore, copper loss due to current can be reduced.

なお、本発明は、上記実施例に限定されるものではなく、本発明の趣旨を逸脱しない範囲で変更可能である。本発明は、トロイダルコアに限らず、これと同様に内径で巻線が密になる例えば四角,三角などの連続形状のコアであればどのようなものにでも適用可能である。外周用銅ケース2と内周用銅板4,5との組み合わせからなる巻線構造に関しても、種々の変形実施が可能である。また、チョークコイル以外にも、様々なインダクタンス素子に適用可能であり、放熱性能を高めるために、外周用銅ケース2に放熱フィンとしてのフィン部を一体的に設けてもよい。   In addition, this invention is not limited to the said Example, It can change in the range which does not deviate from the meaning of this invention. The present invention is not limited to a toroidal core, and can be applied to any core having a continuous shape such as a square, a triangle, etc., in which the winding is dense with an inner diameter. Various modifications can be made with respect to the winding structure composed of the combination of the outer peripheral copper case 2 and the inner peripheral copper plates 4 and 5. Further, in addition to the choke coil, the present invention can be applied to various inductance elements, and a fin portion as a heat radiating fin may be provided integrally with the outer copper case 2 in order to improve the heat radiation performance.

本発明の好ましい一実施例におけるインダクタンス素子の各構成部品を示す分解斜視図である。It is a disassembled perspective view which shows each component of the inductance element in one preferable Example of this invention. 同上、インダクタンス素子の完成状態を示す斜視図である。It is a perspective view which shows the completion state of an inductance element same as the above. 同上、電流の経路を示す概略説明図である。It is a schematic explanatory drawing which shows the path | route of an electric current same as the above. 従来のインダクタンス素子の各構成部品を示す分解斜視図である。It is a disassembled perspective view which shows each component of the conventional inductance element. 同上、インダクタンス素子の完成状態を示す斜視図である。It is a perspective view which shows the completion state of an inductance element same as the above. 同上、インダクタンス素子の完成状態を示す正面図である。It is a front view which shows the completion state of an inductance element same as the above. 同上、インダクタンス素子の完成状態を示す背面図である。It is a rear view which shows the completion state of an inductance element same as the above. 同上、インダクタンス素子の完成状態を示す平面図である。It is a top view which shows the completion state of an inductance element same as the above. 同上、インダクタンス素子の完成状態を示す右側面図である。It is a right view which shows the completion state of an inductance element same as the above.

1 チョークコイル(インダクタンス素子)
2 外周用銅板(第3の導電部材
3 トロイダルコア(コア)
4 内周用銅板(第1の導電部材
5 内周用銅板(第2の導電部材)
6 中心孔(貫通孔)
7,8,9 絶縁シート
11 第1の周回部(経路)
12 第2の周回部(経路)
27 絶縁シー
1 Choke coil (inductance element)
2 Copper plate for outer periphery ( third conductive member )
3 Toroidal core (core)
4 Copper plate for inner circumference (first conductive member )
5 Inner perimeter copper plate (second conductive member)
6 Center hole (through hole)
7, 8, 9 Insulation sheet
11 First circuit part (route)
12 Second circuit (path)
27 insulation sheet

Claims (3)

貫通孔が設けられた磁性材料からなるコアと、
前記貫通孔に挿入された第1の導電部材と、
前記貫通孔に挿入され、前記第1の導電部材と絶縁されている第2の導電部材と、
前記コアを取り囲む第3の導電部材とを備え、
前記第1の導電部材は、前記第3の導電部材と前記貫通孔の一方の端部側で電気的に接続され、
前記第2の導電部材は、前記第3の導電部材と前記貫通孔の他方の端部側で電気的に接続され、
前記第1の導電部材と前記第2の導電部材は、前記第3の導電部材により、2つの電気的な経路で接続されることを特徴とするインダクタンス素子。
A core made of a magnetic material provided with a through hole ;
A first conductive member inserted into the through hole ;
A second conductive member inserted into the through hole and insulated from the first conductive member ;
A third conductive member surrounding the core;
The first conductive member is electrically connected to the third conductive member on one end side of the through hole,
The second conductive member is electrically connected to the third conductive member on the other end side of the through hole,
The inductance element, wherein the first conductive member and the second conductive member are connected by two electric paths by the third conductive member .
前記第1および前記第2の導電部材とを、絶縁シートを介して重ね合わせて形成したことを特徴とする請求項1記載のインダクタンス素子。 The inductance element according to claim 1, wherein the first and second conductive members are overlapped with an insulating sheet . 前記コアと前記第1および前記第2および前記第3の導電部材とを絶縁シートによって絶縁することを特徴とする請求項1または2記載のインダクタンス素子。
The inductance element according to claim 1, wherein the core and the first, second, and third conductive members are insulated by an insulating sheet .
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