JP5098147B2 - Electronic component unit, method for manufacturing electronic component unit, and rice cooker equipped with electronic component unit manufactured by the method for manufacturing electronic component unit - Google Patents

Electronic component unit, method for manufacturing electronic component unit, and rice cooker equipped with electronic component unit manufactured by the method for manufacturing electronic component unit Download PDF

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JP5098147B2
JP5098147B2 JP2005308171A JP2005308171A JP5098147B2 JP 5098147 B2 JP5098147 B2 JP 5098147B2 JP 2005308171 A JP2005308171 A JP 2005308171A JP 2005308171 A JP2005308171 A JP 2005308171A JP 5098147 B2 JP5098147 B2 JP 5098147B2
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battery
electronic component
component unit
rice cooker
substrate
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JP2007115611A (en
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淳 竹内
和男 角田
英樹 両角
浩典 浜田
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Panasonic Corp
Panasonic Holdings Corp
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Panasonic Corp
Matsushita Electric Industrial Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

Description

本発明は、バックアップ用の電池を搭載した電子部品ユニット、電子部品ユニットの製
造方法及び、当該電子部品ユニットの製造方法にて製造した電子部品ユニットを搭載した炊飯器に関するものである。
The present invention relates to an electronic component unit equipped with a backup battery, and the manufacture of the electronic component unit.
The present invention relates to a rice cooker equipped with a manufacturing method and an electronic component unit manufactured by the manufacturing method of the electronic component unit .

従来、この種の電子ユニットを備えた炊飯器は、鍋と、この鍋を加熱する加熱手段と、この加熱手段に電力を供給するための制御手段を備えた回路部品を有する基板が搭載されている。回路部品を搭載する基板には電源コンセントが抜かれても、時計機能が動きつづけるようにバックアップするための手段として電池が搭載されている(例えば、特許文献1参照)。また、電池は、表示手段を構成する液晶を固定する液晶ホルダーなどの樹脂部品で外れないように覆われている(例えば、特許文献2参照)。
特公平5−54763号公報 特開2005−143956号公報
Conventionally, a rice cooker equipped with this type of electronic unit is equipped with a substrate having a pan, a heating means for heating the pan, and a circuit component having a control means for supplying power to the heating means. Yes. A battery is mounted on the board on which the circuit components are mounted as means for backing up the clock function so that the clock function continues to operate even if the power outlet is unplugged (see, for example, Patent Document 1). Further, the battery is covered so as not to come off with a resin part such as a liquid crystal holder for fixing the liquid crystal constituting the display means (see, for example, Patent Document 2).
Japanese Patent Publication No. 5-54763 JP-A-2005-143958

しかしながら、このような従来の構成では、電池がはんだ付け工程中に外れ、はんだ槽に落ちるのを防止するために、液晶ホルダー(固定手段)などの樹脂部品で電池の上面を覆っていた。その分、電子部品ユニット全体の高さが高くなるという問題を有していた。   However, in such a conventional configuration, the upper surface of the battery is covered with a resin component such as a liquid crystal holder (fixing means) in order to prevent the battery from being detached during the soldering process and falling into the solder bath. Accordingly, there is a problem that the height of the entire electronic component unit is increased.

本発明は上記従来の課題を解決するもので、電池が外れても電池がはんだ槽に落ちないようにするとともに、高さが高くならないようにすることを第1の目的としている。   SUMMARY OF THE INVENTION The present invention solves the above-described conventional problems, and a first object is to prevent the battery from falling into the solder bath even when the battery is detached, and to prevent the height from increasing.

また、炊飯器内部の有効スペースを利用し、コンパクトな炊飯器を提供することを第2の目的としている。   Moreover, the 2nd objective is to provide a compact rice cooker using the effective space inside a rice cooker.

本発明の電子部品ユニットの製造方法は、上記第1の目的を達成するために、基板上に電池とこの電池と略同じ高さの部品とを実装し、前記部品は基板はんだ付け時の搬送方向からみて前記電池の略後方になるように配置し、前記電池の端子間を結んだ線と基板はんだ付け時の搬送方向が略直交するように、前記電池を配置したものである。 In order to achieve the first object, the electronic component unit manufacturing method of the present invention mounts a battery and a component having substantially the same height as the battery on the substrate, and the component is transported when the substrate is soldered. The battery is arranged so that it is located substantially behind the battery as viewed from the direction , and the line connecting the terminals of the battery and the conveying direction when soldering the substrate are substantially orthogonal .

これにより、電池がはんだ付け工程中に外れ、基板搬送方向からみて後方に移動していっても、部品が電池を保持することになり、はんだ槽に落ちるのを防止することができ、固定手段などの樹脂部品で電池の上面を覆う必要がなくなるので、高さが高くならないようにすることができる。   As a result, even if the battery is detached during the soldering process and moved rearward when viewed from the board conveying direction, the components will hold the battery and can be prevented from falling into the solder bath. Since it is not necessary to cover the upper surface of the battery with a resin component such as, it is possible to prevent the height from increasing.

また、本発明の炊飯器は、上記第2の目的を達成するために、炊飯器本体内に鍋を着脱自在に収納し、この鍋を加熱手段により加熱し、炊飯器本体の上面開口部を蓋で開閉自在に覆い、上記製造方法により製造した電子部品ユニットを炊飯器本体または蓋に取り付けたものである。 Moreover, in order to achieve the second object, the rice cooker of the present invention detachably stores a pan in the rice cooker body, heats this pan with heating means, and opens the upper surface opening of the rice cooker body. An electronic component unit manufactured by the above-described manufacturing method is attached to a rice cooker body or a lid so as to be opened and closed with a lid.

これにより、炊飯器内部の有効スペースを利用することができ、コンパクトな炊飯器を提供することができる。   Thereby, the effective space inside a rice cooker can be utilized and a compact rice cooker can be provided.

本発明の電子部品ユニットの製造方法は、電池がはんだ付け工程中に外れてもはんだ槽に落ちるのを防止することができ、固定手段などの樹脂部品で電池の上面を覆う必要がなくなるので、高さが高くならないようにすることができ、また、この製造方法により製造された電子部品ユニットを備えた炊飯器は、炊飯器内部の有効スペースを利用することができ、コンパクトな炊飯器を提供することができる。 The method of manufacturing the electronic component unit of the present invention can prevent the battery from falling into the solder bath even if it is detached during the soldering process, and it is not necessary to cover the upper surface of the battery with a resin component such as a fixing means. The rice cooker with the electronic component unit manufactured by this manufacturing method can use the effective space inside the rice cooker and can provide a compact rice cooker. can do.

第1の発明は、基板上に電池とこの電池と略同じ高さの部品とを実装し、前記部品は基板はんだ付け時の搬送方向からみて前記電池の略後方になるように配置し、前記電池の端子間を結んだ線と基板はんだ付け時の搬送方向が略直交するように、前記電池を配置したことを特徴とする。このため、電池がはんだ付け工程中に外れても、電池の略後方に配置した部品が電池を保持することで、はんだ槽に落ちるのを防止することができ、液晶ホルダーなどの樹脂部品で電池の上面を覆う必要がなくなるので樹脂部品の分高さが高くならないようにすることができる。 1st invention mounts a battery and the components of substantially the same height as this battery on a substrate, and arranges the above- mentioned components so that it may be in the back of the above-mentioned battery when it sees from the conveyance direction at the time of board soldering , The battery is arranged such that a line connecting the terminals of the battery and a conveying direction at the time of board soldering are substantially orthogonal. For this reason, even if the battery is detached during the soldering process, it is possible to prevent the parts placed substantially rearward of the battery from holding into the solder tank, thereby preventing the battery from falling into the solder bath. Since it is no longer necessary to cover the upper surface of the resin part, the height of the resin component can be prevented from becoming high.

又、本発明によると、電池が傾き、倒れる方向が基板はんだ付け時の搬送方向に限定され、倒れたときに電池の外周部が基板の上面に接触するので、電池の高さより低い部品で電池を保持することができ、はんだ槽に落ちるのを防止することができる。 In addition, according to the present invention, the direction in which the battery is tilted and tilted is limited to the transport direction when soldering the board, and when the battery is tilted, the outer periphery of the battery contacts the upper surface of the board. And can be prevented from falling into the solder bath.

の発明は、上記第1の発明において、表示動作をする表示手段と、この表示手段を固定する固定手段とを備え、電池は前記表示手段の外側に配置し、前記電池の略後方に配置した部品に代えて、前記固定手段に前記電池の高さと略同じ高さの延設部を設け、前記延設部は基板はんだ付け時の搬送方向からみて前記電池の略後方になるように設けた電子部品ユニットの製造方法であり、固定手段に設けた延設部により電池を保持することで、はんだ槽に落ちるのを防止することができ、固定手段で電池の上面を覆う必要がなくなるので固定手段の分高さが高くならないようにすることができる。又、第3の発明は、第1の発明又は第2の発明の電子部品ユニットの製造方法で製造された電子部品ユニットである。 According to a second invention, there is provided display means for performing a display operation and fixing means for fixing the display means in the first invention, and the battery is disposed outside the display means, and is located substantially behind the battery. Instead of the arranged parts, the fixing means is provided with an extending portion having a height substantially the same as the height of the battery, and the extending portion is substantially behind the battery as viewed from the conveying direction when the board is soldered. This is a method of manufacturing an electronic component unit, and by holding the battery with an extending portion provided in the fixing means, it can be prevented from falling into the solder bath, and it is not necessary to cover the upper surface of the battery with the fixing means. Therefore, the height of the fixing means can be prevented from becoming high. Moreover, 3rd invention is an electronic component unit manufactured with the manufacturing method of the electronic component unit of 1st invention or 2nd invention.

の発明は、炊飯器本体内に着脱自在に収納される鍋と、前記鍋を加熱する加熱手段と、前記炊飯器本体の上面開口部を開閉自在に覆う蓋と、を備えた炊飯器であり、前記炊飯器本体又は前記蓋に、請求項1又は2に記載の電子部品ユニットの製造方法にて製造した電子部品ユニットを搭載したことを特徴とする。第3の発明によると、炊飯器内部の有効スペースを利用することができ、コンパクトな炊飯器を提供することができる。 4th invention is a rice cooker provided with the pan detachably accommodated in the rice cooker main body, the heating means which heats the pan, and the lid which can open and close the upper surface opening of the rice cooker main body . The electronic component unit manufactured by the electronic component unit manufacturing method according to claim 1 or 2 is mounted on the rice cooker body or the lid. According to the 3rd invention, the effective space inside a rice cooker can be utilized, and a compact rice cooker can be provided.

以下、本発明の実施の形態について、図面を参照しながら説明する。なお、この実施の形態によって本発明が限定されるものではない。   Hereinafter, embodiments of the present invention will be described with reference to the drawings. Note that the present invention is not limited to the embodiments.

(実施の形態1)
図1は、本発明の実施の形態1における電子部品ユニットを示すものである。なお、図面を簡潔にするために、電子部品の一部は省略している。また、矢印ははんだ付け工程で基板が搬送される方向を示している。
(Embodiment 1)
FIG. 1 shows an electronic component unit according to Embodiment 1 of the present invention. In order to simplify the drawing, some of the electronic components are omitted. Moreover, the arrow has shown the direction in which a board | substrate is conveyed by a soldering process.

図1に示すように、基板1は紙フェノール材に銅箔を接着させたものである。表示手段2は現在時間、メニュー選択時の表示などの炊飯や保温に必要な情報を表示するもので、本実施の形態では、液晶を使用している。固定手段3は、例えば、PETやABSなどの樹脂材料を成形し、表示手段2を固定している。電池4は商用電源から電力を供給できなくなったとき、時計機能を動作させたりするために電力を供給する。電池4は、本実施の形態では、リチウム一次電池を使っている。   As shown in FIG. 1, the board | substrate 1 adhere | attaches copper foil on paper phenolic material. The display means 2 displays information necessary for rice cooking and heat retention such as the current time and display at the time of menu selection. In the present embodiment, liquid crystal is used. For example, the fixing unit 3 is formed of a resin material such as PET or ABS, and fixes the display unit 2. When the battery 4 cannot supply power from a commercial power supply, it supplies power to operate the clock function. In this embodiment, the battery 4 uses a lithium primary battery.

部品5は、回路を構成する電子部品の1つで、基板1のはんだ付け時の搬送方向からみて電池4の後方になるように配置している。この部品5は、本実施の形態では、電解コンデンサを用いている。特に図示していないが、この電解コンデンサのリード線は基板の穴を通した後、曲げられており、振動を受けてもはずれないようになっている。   The component 5 is one of the electronic components constituting the circuit, and is arranged so as to be behind the battery 4 when viewed from the transport direction when the substrate 1 is soldered. In this embodiment, the component 5 uses an electrolytic capacitor. Although not shown in particular, the lead wire of the electrolytic capacitor is bent after passing through the hole in the substrate, so that it does not come off even when subjected to vibration.

表示手段2を構成する液晶の高さは約6mmである。この液晶の厚さは約3mmあるので、この液晶と基板1の間の空間は約3mmとなる。電池4の高さは約6mmなので、電池4がはずれるのを防止するために、電池4をこの液晶の下に入れようとすると、液晶の高さを9mmにする必要がある。部品5を構成する電解コンデンサの高さは約6mmで、電池4の高さ6mmに対し、ほぼ同等の高さとなっている。   The height of the liquid crystal constituting the display means 2 is about 6 mm. Since the thickness of the liquid crystal is about 3 mm, the space between the liquid crystal and the substrate 1 is about 3 mm. Since the height of the battery 4 is about 6 mm, in order to prevent the battery 4 from being detached, when the battery 4 is placed under the liquid crystal, the height of the liquid crystal needs to be 9 mm. The height of the electrolytic capacitor constituting the component 5 is about 6 mm, which is almost the same as the height of the battery 4 of 6 mm.

上記構成において図2を参照しながら基板1のはんだ付け工程の動作、作用を説明する。なお、図2において、矢印は本実施の形態の基板1が搬送される方向を示している。   The operation and action of the soldering process of the substrate 1 will be described with reference to FIG. In FIG. 2, the arrow indicates the direction in which the substrate 1 of the present embodiment is transported.

図2に示すように、はんだ槽6の中には、はんだが液体状態なるまで温められている。基板1は、ここでは特に図示していないが、基板搬送方向から見て両端がローラーに乗せられており、このローラーを回転して、基板1は搬送されている。基板搬送方向は矢印に示すように、左斜め上方向である。   As shown in FIG. 2, the solder bath 6 is heated until the solder is in a liquid state. Although the substrate 1 is not particularly illustrated here, both ends are placed on rollers as viewed from the substrate transport direction, and the substrate 1 is transported by rotating the rollers. As shown by the arrow, the substrate transport direction is a diagonally upward left direction.

基板1がはんだ槽6の上面にきたときに、はんだ槽6の中ではんだが噴流を起こし、この噴流を基板1の下面にあててはんだ付けをする。このとき、ローラーを転がしたときや、ローラーを急停止したときに振動が発生する。この振動が大きなときに電池4がはずれる場合がある。電池4は外れると、基板1の搬送方向と傾きの関係から基板1の搬送方向の後方に移動していくが、電池4の略後方になるように部品(電解コンデンサ)5を配置しているので、そこで電池4を保持することができ、はんだ槽6に落ちるのを防止することができる。   When the board | substrate 1 comes to the upper surface of the solder tank 6, solder raises a jet in the solder tank 6, this jet is applied to the lower surface of the board | substrate 1, and it solders. At this time, vibration is generated when the roller is rolled or when the roller is suddenly stopped. When this vibration is large, the battery 4 may come off. When the battery 4 is detached, the battery 4 moves to the rear of the substrate 1 in the transport direction due to the inclination of the transport direction of the substrate 1. Therefore, the battery 4 can be held there and can be prevented from falling into the solder bath 6.

以上のように、本実施の形態においては、基板1上に電池4とこの電池4と略同じ高さの部品5とを実装し、部品5は基板はんだ付け時の搬送方向からみて電池4の略後方になるように配置したので、電池4がはんだ付け工程中に外れても、電池4の略後方に配置した部品5が電池4を保持することで、はんだ槽6に落ちるのを防止することができ、液晶ホルダーなどの樹脂部品で電池4の上面を覆う必要がなくなるので樹脂部品の分高さが高くならないようにすることができる。   As described above, in the present embodiment, the battery 4 and the component 5 having substantially the same height as the battery 4 are mounted on the substrate 1, and the component 5 is viewed from the conveying direction when soldering the substrate. Since it arrange | positions so that it may become substantially back, even if the battery 4 remove | deviates during a soldering process, the component 5 arrange | positioned substantially back of the battery 4 hold | maintains the battery 4, and prevents falling to the solder tank 6. In addition, since it is not necessary to cover the upper surface of the battery 4 with a resin component such as a liquid crystal holder, the height of the resin component can be prevented from increasing.

(実施の形態2)
図3は、本発明の実施の形態2における電子部品ユニットを示すものである。なお、図面を簡潔にするために、電子部品の一部は省略し、上記実施の形態1と同じ構成のものは同一符号を付して説明を省略する。また、矢印ははんだ付け工程で基板が搬送される方向を示している。
(Embodiment 2)
FIG. 3 shows an electronic component unit according to Embodiment 2 of the present invention. In order to simplify the drawing, some of the electronic components are omitted, and the same components as those in the first embodiment are denoted by the same reference numerals and description thereof is omitted. Moreover, the arrow has shown the direction in which a board | substrate is conveyed by a soldering process.

図3に示すように、電池4は、表示手段2を固定した固定手段3の外側に、電池4の端子Aと端子Bを結ぶ線と基板1のはんだ付け時の搬送方向が略直交するように配置している。部品21は、回路を構成する電子部品の1つで、基板1のはんだ付け時の搬送方向からみて電池4の略後方になるように配置している。この部品21は、本実施の形態では、ICを用いている。このICの高さは約3mmである。   As shown in FIG. 3, the battery 4 is arranged so that the line connecting the terminal A and the terminal B of the battery 4 and the transport direction when soldering the substrate 1 are substantially orthogonal to the outside of the fixing means 3 to which the display means 2 is fixed. Is arranged. The component 21 is one of the electronic components constituting the circuit, and is arranged so as to be substantially behind the battery 4 when viewed from the conveying direction when the substrate 1 is soldered. The component 21 uses an IC in the present embodiment. The height of this IC is about 3 mm.

上記構成において図4を参照しながら基板1のはんだ付け工程の動作、作用を説明する。なお、図4は、はんだ付け工程時に、電池4がはずれ倒れた状態を示しており、矢印は本実施の形態の基板1が搬送される方向を示している。   The operation and action of the soldering process of the substrate 1 in the above configuration will be described with reference to FIG. FIG. 4 shows a state where the battery 4 has fallen down during the soldering process, and the arrows show the direction in which the substrate 1 of the present embodiment is conveyed.

図4に示すように、はんだ付け工程中に電池4がはずれると、電池4は斜めに傾いて倒れる。図4のように倒れるのは、電池4の端子Aと端子Bが基板搬送方向に対し略直交しているために、電池4の傾く方向が限定されるからである。さらに、搬送方向の力が加わり、図4のように倒れる。   As shown in FIG. 4, when the battery 4 is detached during the soldering process, the battery 4 tilts obliquely and falls. The reason why the battery 4 tilts as shown in FIG. 4 is that the direction in which the battery 4 tilts is limited because the terminal A and the terminal B of the battery 4 are substantially orthogonal to the substrate transport direction. Furthermore, a force in the transport direction is applied, and the body falls as shown in FIG.

この倒れた状態で、電池4は基板搬送方向からみて後方に移動していくが、電池4の略後方になるように部品21を配置しているので、そこで電池4を保持することができ、はんだ槽6に落ちるのを防止することができる。また、電池4が倒れることにより、基板1と電池4の間に隙間ができないので、電池4の高さより低い部品でも、電池4を保持することができる。したがって、例えば、炊飯器の回路を構成する電子部品の抵抗やICを配置することができ、部品配置の自由度を向上することができ、コンパクトな電子部品ユニットを実現できる。   In this collapsed state, the battery 4 moves backward as viewed from the board conveying direction, but the component 21 is arranged so as to be substantially behind the battery 4, so that the battery 4 can be held there, It can prevent falling into the solder bath 6. In addition, since the battery 4 is tilted, there is no gap between the substrate 1 and the battery 4, so that the battery 4 can be held even with parts lower than the height of the battery 4. Therefore, for example, the resistance and IC of the electronic components that constitute the circuit of the rice cooker can be arranged, the degree of freedom of component arrangement can be improved, and a compact electronic component unit can be realized.

以上のように、本実施の形態においては、電池4の端子間を結んだ線と基板1のはんだ付け時の搬送方向が略直交するように、電池4を配置したので、電池4が傾き、倒れる方向が基板はんだ付け時の搬送方向に限定され、倒れたときに電池4の外周部が基板1の上面に接触するので、電池4の高さより低い部品で電池4を保持することができ、はんだ槽に落ちるのを防止することができる。   As described above, in the present embodiment, since the battery 4 is arranged so that the line connecting the terminals of the battery 4 and the transport direction during soldering of the substrate 1 are substantially orthogonal, the battery 4 is inclined, The direction in which the battery 4 is tilted is limited to the conveying direction when soldering the board, and the outer periphery of the battery 4 contacts the upper surface of the board 1 when the board falls, so that the battery 4 can be held with parts lower than the height of the battery 4. It can prevent falling into the solder bath.

(実施の形態3)
図5は、本発明の実施の形態3における電子部品ユニットを示すものである。なお、図面を簡潔にするために、電子部品の一部は省略し、上記実施の形態1と同じ構成のものは同一符号を付して説明を省略する。また、矢印ははんだ付け工程で基板が搬送される方向を示している。
(Embodiment 3)
FIG. 5 shows an electronic component unit according to Embodiment 3 of the present invention. In order to simplify the drawing, some of the electronic components are omitted, and the same components as those in the first embodiment are denoted by the same reference numerals and description thereof is omitted. Moreover, the arrow has shown the direction in which a board | substrate is conveyed by a soldering process.

図5に示すように、固定手段22は、表示手段2を固定するもので、PETやABSなどの樹脂材料を成形して構成している。電池4は表示手段2の外側に配置し、固定手段22に電池4の高さと略同じ高さの延設部23を設け、この延設部23は基板はんだ付け時の搬送方向からみて電池4の略後方になるように設けている。   As shown in FIG. 5, the fixing means 22 fixes the display means 2, and is formed by molding a resin material such as PET or ABS. The battery 4 is disposed outside the display means 2, and the fixing means 22 is provided with an extending portion 23 having a height substantially the same as the height of the battery 4, and the extending portion 23 is seen from the conveying direction when soldering the substrate. It is provided so as to be substantially behind.

上記構成において作用を説明する。電池4の略後方に電池4と略同じ高さの延設部23を固定手段22に設けることで、電池4の上面を固定手段22などで覆う必要がなく、電子部品ユニットの高さを低くできる。   The operation of the above configuration will be described. By providing the fixing means 22 with an extending portion 23 having substantially the same height as that of the battery 4 substantially behind the battery 4, it is not necessary to cover the upper surface of the battery 4 with the fixing means 22 or the like, and the height of the electronic component unit is reduced. it can.

以上のように、本実施の形態においては、電池4は表示手段2の外側に配置し、表示手段2を固定する固定手段22に電池4の高さと略同じ高さの延設部23を設け、この延設部23は基板はんだ付け時の搬送方向からみて電池4の略後方になるように設けたので、固定手段22に設けた延設部23により電池4を保持することで、はんだ槽に落ちるのを防止することができ、固定手段22で電池4の上面を覆う必要がなくなるので固定手段22の分高さが高くならないようにすることができ、安価でコンパクトな電子部品ユニットを実現できる。   As described above, in the present embodiment, the battery 4 is disposed outside the display unit 2, and the extending unit 23 having a height substantially the same as the height of the battery 4 is provided in the fixing unit 22 that fixes the display unit 2. Since the extending portion 23 is provided so as to be substantially behind the battery 4 when viewed from the conveying direction during board soldering, the battery 4 is held by the extending portion 23 provided in the fixing means 22, so that the solder bath Can be prevented, and it is not necessary to cover the upper surface of the battery 4 with the fixing means 22, so that the height of the fixing means 22 can be prevented from being increased, and an inexpensive and compact electronic component unit is realized. it can.

(実施の形態4)
図6は、本発明の実施の形態4における炊飯器の断面図を示すものである。なお、図面を簡潔にするために、電気的接続のためのリード線や部品を固定するねじは省略している。
(Embodiment 4)
FIG. 6 shows a cross-sectional view of the rice cooker in Embodiment 4 of the present invention. In order to simplify the drawing, lead wires for electrical connection and screws for fixing parts are omitted.

図6に示すように、炊飯器本体7は、上面開口部を覆うように蓋8を開閉自在に設置している。炊飯器本体7の内部に鍋12を着脱自在に収納できるように収納部9を設けており、この収納部9の底部に第1の加熱コイル(加熱手段)10を配設し、第1の加熱コイル10の外周側にフェライトコア11を配設している。第1の加熱コイル10は鍋12の底部の中心の略真下に中心を有する巻き線である。   As shown in FIG. 6, the rice cooker body 7 has a lid 8 that is openable and closable so as to cover the upper surface opening. A storage portion 9 is provided in the inside of the rice cooker body 7 so that the pan 12 can be detachably attached. A first heating coil (heating means) 10 is disposed at the bottom of the storage portion 9, A ferrite core 11 is disposed on the outer peripheral side of the heating coil 10. The first heating coil 10 is a winding having a center almost directly below the center of the bottom of the pan 12.

鍋12は、上端開口部に外側にせり出したフランジ13を有し、フランジ13を収納部9の上端から浮き上がった状態で載置することにより、収納部9に着脱自在に収納される
。したがって、鍋12は収納時に、収納部9との間に隙間を有する。
The pan 12 has a flange 13 protruding outward from the upper end opening, and is placed in the storage portion 9 in a detachable manner by placing the flange 13 in a state of being lifted from the upper end of the storage portion 9. Therefore, the pan 12 has a gap with the storage portion 9 when stored.

蓋8に蓋加熱板14を着脱自在に設けている。この蓋加熱板14はステンレスなどの金属で形成している。第2の加熱コイル15は蓋8に内蔵して蓋加熱板14を誘導加熱するようにしている。回路基板16は、第1の加熱コイル10および第2の加熱コイル15を制御するもので、IGBT、ダイオードブリッジ、コンデンサなどが実装されている。   A lid heating plate 14 is detachably provided on the lid 8. The lid heating plate 14 is made of a metal such as stainless steel. The second heating coil 15 is built in the lid 8 to inductively heat the lid heating plate 14. The circuit board 16 controls the first heating coil 10 and the second heating coil 15, and is mounted with an IGBT, a diode bridge, a capacitor, and the like.

電子部品ユニット17は、上記実施の形態1〜3のいずれかにより構成したもので、本実施の形態では、蓋8に配置して操作表示部としての機能を有し、回路基板16と電気的に接続している。   The electronic component unit 17 is configured by any one of the first to third embodiments. In the present embodiment, the electronic component unit 17 is disposed on the lid 8 and has a function as an operation display unit, and is electrically connected to the circuit board 16. Connected to.

巻き取り式の電源コード収納部18は、回路基板16にリード線を介して電気的に接続している。電源コード収納部18はストッパーとばねを用いて電源コードを巻き取ることを可能にしている。温度検知手段19は、サーミスタで構成し、鍋12の底部の略中心に配置し、鍋12の温度を検知するようにしている。冷却手段20は、回路基板16を冷却するもので、直流ブラシレスモータの回転子にファンを取り付けたファンモータで構成している。   The winding type power cord storage portion 18 is electrically connected to the circuit board 16 via a lead wire. The power cord storage unit 18 can wind up the power cord using a stopper and a spring. The temperature detection means 19 is composed of a thermistor and is arranged at the approximate center of the bottom of the pan 12 so as to detect the temperature of the pan 12. The cooling means 20 cools the circuit board 16 and is constituted by a fan motor in which a fan is attached to a rotor of a DC brushless motor.

上記構成において作用を説明する。電子部品ユニット17を上記実施の形態1〜3のいずれかにより構成することで、電子部品ユニット17全体の高さを電池4の高さまで低くすることができる。したがって、蓋8の空間を利用して配置することができる。また、表示手段2を構成する液晶を薄型化したりする必要がないので、安価でコンパクトにできる。   The operation of the above configuration will be described. By configuring the electronic component unit 17 according to any one of the first to third embodiments, the height of the entire electronic component unit 17 can be reduced to the height of the battery 4. Therefore, it can arrange | position using the space of the lid | cover 8. FIG. Further, since it is not necessary to make the liquid crystal constituting the display means 2 thinner, it can be made inexpensive and compact.

以上のように、本実施の形態においては、炊飯器本体7内に鍋12を着脱自在に収納し、この鍋12を第1の加熱コイル10により加熱し、炊飯器本体7の上面開口部を蓋8で開閉自在に覆い、上記実施の形態1〜3のいずれかの電子部品ユニット17を蓋8に取り付けたので、炊飯器内部の有効スペースを利用することができ、コンパクトな炊飯器を提供することができる。   As mentioned above, in this Embodiment, the pan 12 is detachably accommodated in the rice cooker main body 7, this pan 12 is heated with the 1st heating coil 10, and the upper surface opening part of the rice cooker main body 7 is used. Since the electronic component unit 17 according to any one of the first to third embodiments is attached to the lid 8 so as to be freely opened and closed with the lid 8, an effective space inside the rice cooker can be used, and a compact rice cooker is provided. can do.

なお、本実施の形態では、電子部品ユニット17は、蓋8に取り付けているが、炊飯器本体7内の有効スペースを利用して取り付けてもよく、同様の作用、効果を得ることができる。   In addition, in this Embodiment, although the electronic component unit 17 is attached to the lid | cover 8, you may attach using the effective space in the rice cooker main body 7, and can acquire the same effect | action and effect.

以上のように、本発明にかかる電子部品ユニットは、電池がはんだ付け工程中に外れてもはんだ槽に落ちるのを防止することができ、固定手段などの樹脂部品で電池の上面を覆う必要がなくなるので、高さが高くならないようにすることができ、また、この電子部品ユニットを備えた炊飯器は、炊飯器内部の有効スペースを利用することができ、コンパクトな炊飯器を提供することができるので、バックアップ用の電池を搭載した電子部品ユニットおよびその電子部品ユニットを備えた炊飯器として有効である。   As described above, the electronic component unit according to the present invention can prevent the battery from falling into the solder bath even if it is detached during the soldering process, and it is necessary to cover the upper surface of the battery with resin parts such as fixing means. The rice cooker equipped with this electronic component unit can utilize the effective space inside the rice cooker and provide a compact rice cooker. Therefore, it is effective as an electronic component unit equipped with a backup battery and a rice cooker including the electronic component unit.

本発明の実施の形態1における電子部品ユニットの正面図The front view of the electronic component unit in Embodiment 1 of this invention 同電子部品ユニットのはんだ付け工程を示す側面図Side view showing the soldering process of the electronic component unit 本発明の実施の形態2における電子部品ユニットの正面図The front view of the electronic component unit in Embodiment 2 of this invention 同電子部品ユニットのはんだ付け工程を示す側面図Side view showing the soldering process of the electronic component unit 本発明の実施の形態3における電子部品ユニットの正面図The front view of the electronic component unit in Embodiment 3 of this invention 本発明の実施の形態4における炊飯器の断面図Sectional drawing of the rice cooker in Embodiment 4 of this invention.

1 基板
4 電池
5 部品
1 board 4 battery 5 parts

Claims (4)

基板上に電池とこの電池と略同じ高さの部品とを実装し、前記部品は基板はんだ付け時の搬送方向からみて前記電池の略後方になるように配置し、前記電池の端子間を結んだ線と基板はんだ付け時の搬送方向が略直交するように、前記電池を配置することを特徴とする電子部品ユニットの製造方法A battery and a component having the same height as that of the battery are mounted on the substrate, and the component is disposed so as to be substantially behind the battery as viewed from the conveying direction when soldering the substrate , and the terminals of the battery are connected. The method of manufacturing an electronic component unit , wherein the battery is arranged so that the feeding line and the conveying direction at the time of soldering the substrate are substantially orthogonal . 表示動作をする表示手段と、この表示手段を固定する固定手段とを備え、電池は前記表示手段の外側に配置し、前記電池の略後方に配置した部品に代えて、前記固定手段に前記電池の高さと略同じ高さの延設部を設け、前記延設部は基板はんだ付け時の搬送方向からみて前記電池の略後方になるように設けたことを特徴とする請求項1に記載の電子部品ユニットの製造方法Display means for performing a display operation, and fixing means for fixing the display means; the battery is disposed outside the display means; instead of a component disposed substantially rearward of the battery, the battery is attached to the fixing means. height and substantially provided extending portion of the same height, the elongated portion of claim 1, characterized in that provided so as to be approximately the rear of the battery as viewed from the conveying direction at the time of substrate soldering Manufacturing method of electronic component unit. 請求項1又は2に記載の電子部品ユニットの製造方法で製造されたことを特徴とする電子部品ユニット。 An electronic component unit manufactured by the method for manufacturing an electronic component unit according to claim 1 . 炊飯器本体内に着脱自在に収納される鍋と、前記鍋を加熱する加熱手段と、前記炊飯器本体の上面開口部を開閉自在に覆う蓋と、を備えた炊飯器であり、
前記炊飯器本体又は前記蓋に、請求項1又は2に記載の電子部品ユニットの製造方法にて製造した電子部品ユニットを搭載したことを特徴とする炊飯器。
A rice cooker comprising a pan detachably stored in a rice cooker body, a heating means for heating the pan, and a lid that freely opens and closes an upper surface opening of the rice cooker body ,
An electronic component unit manufactured by the electronic component unit manufacturing method according to claim 1 or 2 is mounted on the rice cooker body or the lid .
JP2005308171A 2005-10-24 2005-10-24 Electronic component unit, method for manufacturing electronic component unit, and rice cooker equipped with electronic component unit manufactured by the method for manufacturing electronic component unit Active JP5098147B2 (en)

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