JP2008035997A - Vacuum cleaner - Google Patents

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JP2008035997A
JP2008035997A JP2006211926A JP2006211926A JP2008035997A JP 2008035997 A JP2008035997 A JP 2008035997A JP 2006211926 A JP2006211926 A JP 2006211926A JP 2006211926 A JP2006211926 A JP 2006211926A JP 2008035997 A JP2008035997 A JP 2008035997A
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vacuum cleaner
control instruction
power supply
line
motor
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JP4647560B2 (en
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Masayoshi Iizuka
政義 飯塚
Akihiro Iwahara
明弘 岩原
Takeshi Kitakomi
壮 北古味
Tadashi Fukushima
忠史 福島
Motohiro Murano
元宏 村野
Masafumi Oki
政史 大木
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Mitsubishi Electric Home Appliance Co Ltd
Mitsubishi Electric Corp
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Mitsubishi Electric Home Appliance Co Ltd
Mitsubishi Electric Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a vacuum cleaner capable of preventing break of resistance of a hand operation part when a common line enters an open state by disconnection or connection failure. <P>SOLUTION: The vacuum cleaner includes: a control instruction part 16 for controlling operation of an electric blower 8 and an electric motor 2; a hose 3 which connects one end to a cleaner body 1 and has a hand operation part 4 for outputting operating signals on the other end side; and a signal line for inputting the operating signal to the control instruction part 16 by a pair of power lines which are provided for the hose 3 and supply the electric motor 8 with commercial power 10 from the cleaner main body 1 side and one of power lines out of the pair of power lines which are provided for the hose 3. The control instruction part 16 stops supplying the electric motor 8 with the commercial power 10 when one of the power lines enters the open state while the electric motor 8 is operating. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

この発明は、電気掃除機に関し、特に、手元操作部の抵抗破壊を防止する電気掃除機に関する。   The present invention relates to an electric vacuum cleaner, and more particularly to an electric vacuum cleaner that prevents resistance destruction of a hand operating unit.

従来の電気掃除機は、例えば「モータにより駆動するブラシを有するノズルと、吸引力を発生させる電動送風機と、この電動送風機を内蔵した電気掃除機本体と、この電気掃除機本体に一端側を接続し、他端側に手元操作部を有するホースと、前記手元操作部を介して電気掃除機本体側の電力を前記ノズルに供給するため、前記ホースに設けた導線と、前記手元操作部に設けられ、前記導線の電力から信号電圧を作り出す操作手段と、前記電気掃除機本体側に設けられ、前記操作手段からの信号電圧を入力する制御手段を有し、前記制御手段はモータの駆動時及び停止時に応じて入力される信号電圧の判断を変更するようにした…」ものが提案されている(例えば、特許文献1参照)。   The conventional vacuum cleaner is, for example, “a nozzle having a brush driven by a motor, an electric blower that generates a suction force, an electric vacuum cleaner body incorporating the electric blower, and one end side connected to the electric vacuum cleaner body. And a hose having a hand operating part on the other end side, a lead wire provided on the hose for supplying electric power on the main body side of the vacuum cleaner to the nozzle via the hand operating part, and a hand operating part. Operating means for generating a signal voltage from the electric power of the conducting wire, and a control means provided on the main body side of the vacuum cleaner, for inputting the signal voltage from the operating means, the control means when driving the motor and The determination of the input signal voltage is changed in accordance with the stop time ... "(for example, see Patent Document 1).

また、例えば、「掃除機本体に内蔵された電動送風機と、前記掃除機本体内に設けられこの電動送風機を制御する制御手段と、前記掃除機本体に着脱自在に接続されるホースを介して接続されるとともに、前記制御手段に電気的に接続され、複数の常開型スイッチを有し、これら複数の常開型スイッチにより前記電動送風機の入力を任意に調節する手動操作手段とを備え、前記手動操作手段は、この手動操作手段が操作されているとき設定された値の電流を流す一時電流設定手段と、この一時電流設定手段により設定される下限の電流の値より小さい値の一定の電流を常時流す常時電流設定手段とを有し、前記制御手段は、前記一時電流設定手段が流す電流の値をこの一時電流設定手段が操作され前記電流が流れている間に読み取って比較する基準値をそれぞれ有した複数の比較手段と、この比較手段による比較結果を記憶する記憶手段と、前記常時電流設定手段からの電流の有無を判別する判別手段とを有し、前記判別手段により前記常時電流設定手段からの電流を検出しない場合に前記電動送風機を停止させる…」ものが提案されている(例えば、特許文献2参照)。   Further, for example, “connected through an electric blower built in the vacuum cleaner main body, a control means provided in the vacuum cleaner main body for controlling the electric blower, and a hose removably connected to the vacuum cleaner main body. And a manual operation means that is electrically connected to the control means, has a plurality of normally open switches, and arbitrarily adjusts the input of the electric blower by the plurality of normally open switches, The manual operation means includes a temporary current setting means for supplying a current having a value set when the manual operation means is operated, and a constant current having a value smaller than a lower limit current value set by the temporary current setting means. Constant current setting means for constantly flowing current, and the control means reads and compares the value of the current flowing by the temporary current setting means while the temporary current setting means is operated and the current is flowing. A plurality of comparison means each having a reference value; storage means for storing a comparison result by the comparison means; and determination means for determining presence / absence of current from the constant current setting means. When the current from the constant current setting means is not detected, the electric blower is stopped ... "(for example, see Patent Document 2).

特開2000−271053号公報(請求項1)JP 2000-271053 A (Claim 1) 特許第2930116号(請求項1)Patent No. 2930116 (Claim 1)

従来の電気掃除機では、吸込み具に内蔵された回転ブラシを駆動する電動機に商用電源を供給する一対の電力線をホースに設け、この一対の電力線の内、一方の電力線(以下、共通線という)と信号線とにより、手元操作部からの操作信号を制御指示部に入力し、ホース内の導線数を減らし、軽量化及び操作性の向上を図っている。   In a conventional vacuum cleaner, a pair of power lines for supplying commercial power to an electric motor that drives a rotating brush built in a suction tool is provided on a hose, and one of the pair of power lines (hereinafter referred to as a common line). And a signal line are used to input an operation signal from the hand operation unit to the control instruction unit to reduce the number of wires in the hose, thereby reducing weight and improving operability.

しかしながら、共通線が断線や接続不良などにより電気的に非接続の開放状態となり、電力線と信号線とが接続状態の場合、電動機に供給する商用電源(AC100V)が手元操作部の抵抗に印可され、抵抗が破壊されてしまう、という問題点があった。   However, when the common line is electrically disconnected due to disconnection or poor connection, and the power line and the signal line are connected, the commercial power supply (AC100V) supplied to the motor is applied to the resistance of the hand control unit. There was a problem that the resistance was destroyed.

本発明は、上記のような問題点を解決する為になされたもので、断線や接続不良などにより共通線が開放状態となった場合において、手元操作部の抵抗破壊を防止することができる電気掃除機を得るものである。   The present invention has been made in order to solve the above-described problems. In the case where the common line is opened due to disconnection or poor connection, etc. Get a vacuum cleaner.

この発明に係る電気掃除機は、掃除機本体に内蔵され、塵埃を吸引する電動送風機と、吸込み具に内蔵され、塵埃をかきあげる回転ブラシを駆動する電動機と、前記掃除機本体に設けられ、前記電動送風機及び前記電動機の動作を制御する制御指示部と、前記掃除機本体に一端を接続し、操作信号を出力する手元操作部を他端側に有するホースと、前記ホースに設けられ、前記掃除機本体側からの商用電源を前記電動機に供給する一対の電力線と、前記ホースに設けられ、前記一対の電力線の内、一方の電力線とによって前記操作信号を前記制御指示部に入力する信号線とを備えた電気掃除機において、前記制御指示部は、前記電動機が動作中に、前記一方の電力線(以下、共通線と称する)が開放状態になったとき、前記電動機への商用電源の供給を停止させるものである。   The electric vacuum cleaner according to the present invention is provided in the main body of the vacuum cleaner, and is provided in the main body of the vacuum cleaner, the electric blower that sucks dust, the electric motor that is built in the suction tool and drives the rotating brush that sweeps up the dust, An electric blower and a control instruction unit for controlling the operation of the electric motor, a hose having one end connected to the vacuum cleaner body and a hand operation unit for outputting an operation signal on the other end side, and provided on the hose, the cleaning A pair of power lines for supplying commercial power from the machine body side to the electric motor, and a signal line provided on the hose, and one of the pair of power lines for inputting the operation signal to the control instruction unit. In the electric vacuum cleaner, the control instruction unit is configured to supply commercial power to the motor when the one power line (hereinafter referred to as a common line) is opened while the motor is operating. The supply of those stopping.

この発明は、電動機が動作中に、共通線が開放状態になったとき、電動機への商用電源の供給を停止させることにより、手元操作部の抵抗破壊を防止することができる。   According to the present invention, when the common line is opened while the electric motor is in operation, the supply of the commercial power to the electric motor is stopped, thereby preventing resistance destruction of the hand operating unit.

実施の形態1.
以下、本発明の実施の形態1について図1〜図8を参照し説明する。
図1は実施の形態1に係る電気掃除機の概略構成図である。図において、電気掃除機本体1は、吸引力を発生する電動送風機2と、電動送風機2により吸引された塵埃を集塵する集塵室(図示せず)を内蔵している。電動送風機2は、電気掃除機本体1に設けられた電源コード(図示せず)から供給される商用電源である商用交流電源10により駆動される。また、電気掃除機本体1には接続部9が設けられ、各導線(後述)を備えたホース3の一端が着脱自在に接続されている。ホース3の他端側には手元操作部4を有し、手元操作部4には、電気掃除機の運転モードを切り替えるスイッチSW1〜SW4が設けられている。さらに、手元操作部4には、延長管5を介して、床面に接して被掃除面の塵埃等を吸引するための吸込み具6が着脱自在に接続されており、吸込み具6には、被掃除面に接触し塵埃をかきあげる植毛(図示せず)を有する回転ブラシ7と、この回転ブラシ7をベルト(図示せず)などを介して回転駆動させる電動機8を内蔵している。この電動機8には、ホース3、手元操作部4、延長管5を介して、電気掃除機本体1からの商用交流電源10が供給される。
Embodiment 1 FIG.
Embodiment 1 of the present invention will be described below with reference to FIGS.
FIG. 1 is a schematic configuration diagram of the electric vacuum cleaner according to the first embodiment. In the figure, an electric vacuum cleaner main body 1 includes an electric blower 2 that generates a suction force and a dust collection chamber (not shown) that collects dust sucked by the electric blower 2. The electric blower 2 is driven by a commercial AC power source 10 which is a commercial power source supplied from a power cord (not shown) provided in the vacuum cleaner main body 1. Moreover, the connection part 9 is provided in the vacuum cleaner main body 1, and the end of the hose 3 provided with each conducting wire (after-mentioned) is detachably connected. The other end side of the hose 3 has a hand operation unit 4, and the hand operation unit 4 is provided with switches SW <b> 1 to SW <b> 4 for switching the operation mode of the vacuum cleaner. Furthermore, a suction tool 6 is attached to the hand operating unit 4 through the extension pipe 5 so as to contact the floor surface and suck dust and the like on the surface to be cleaned. A rotating brush 7 having a flock (not shown) that contacts the surface to be cleaned and scrapes off dust and a motor 8 that rotationally drives the rotating brush 7 via a belt (not shown) are incorporated. The electric motor 8 is supplied with a commercial AC power supply 10 from the vacuum cleaner main body 1 through the hose 3, the hand operating section 4, and the extension pipe 5.

図2は実施の形態1に係る手元操作部の表示部の外観図である。図において、手元操作部4は、電動機8の切、入りを行うスイッチSW1、手動運転の強、中、弱の切り替えを行うスイッチSW2、自動的に制御を行うモードを選択するスイッチSW3、電動送風機2と電動機8の停止を行うスイッチSW4が設けられている。   FIG. 2 is an external view of the display unit of the hand operation unit according to the first embodiment. In the figure, the hand operating section 4 includes a switch SW1 for turning off and on the electric motor 8, a switch SW2 for switching strong, medium and weak in manual operation, a switch SW3 for selecting a mode for automatic control, an electric blower 2 and a switch SW4 for stopping the electric motor 8 are provided.

図3は実施の形態1に係るホース及び手元操作部の配線構造を示した図、図4は実施の形態1に係る接続部の断面図である。図に示すように、ホース3は、電気掃除機本体1とホース3とを着脱自在に接続する本体接続部31、接続管32を介して、一端が本体接続部31に接続され、他端側が手元操作部4に接続される可撓性ホース33、本体接続部31近傍の可撓性ホース33をカバーするホースカバー34とで構成され、手元操作部4には、手元操作部4と延長管5(図1参照)とを接続する延長管接続部41が設けられている。   FIG. 3 is a diagram illustrating a wiring structure of the hose and the hand operation unit according to the first embodiment, and FIG. 4 is a cross-sectional view of the connection unit according to the first embodiment. As shown in the figure, the hose 3 has one end connected to the main body connecting portion 31 via the main body connecting portion 31 and the connecting pipe 32 that detachably connect the vacuum cleaner main body 1 and the hose 3, and the other end side is A flexible hose 33 connected to the hand operation unit 4 and a hose cover 34 covering the flexible hose 33 in the vicinity of the main body connection unit 31 are provided. The hand operation unit 4 includes the hand operation unit 4 and an extension tube. 5 (see FIG. 1) is provided.

可撓性ホース33には、その外周面を長手方向に沿って螺旋状に巻き付くかたちで共通線であるAライン、電力線であるBライン、信号線であるCラインの3本の導線が設けられている。この各導線は多条ねじのように軸方向にズレて別螺旋を描くような配置となっている。この各導線の一端は、本体接続部31に設けられた摺動リングを介して、それぞれ接続ピン9a−1,9b−1,9c−1と電気的に接続され、他端側は、Aライン及びCラインが手元操作部4と接続され、Aライン及びBラインが延長管接続部41と接続されている。さらに、延長管接続部41に接続されたAライン及びBラインは、延長管5を介して吸込み具6に設けられた電動機8と接続される(図1、図5参照)。   The flexible hose 33 is provided with three conductors: an A line that is a common line, a B line that is a power line, and a C line that is a signal line by winding the outer peripheral surface in a spiral shape along the longitudinal direction. It has been. Each lead wire is arranged so as to draw a separate spiral by shifting in the axial direction like a multi-thread screw. One end of each conducting wire is electrically connected to the connection pins 9a-1, 9b-1, 9c-1 via a sliding ring provided in the main body connecting portion 31, and the other end is connected to the A line. And the C line are connected to the hand operation unit 4, and the A line and the B line are connected to the extension pipe connection unit 41. Furthermore, the A line and the B line connected to the extension pipe connecting portion 41 are connected to the electric motor 8 provided in the suction tool 6 through the extension pipe 5 (see FIGS. 1 and 5).

また、図4に示すように、電気掃除機本体1のホース接続部35には、電気掃除機本体1側のAライン、Bライン及びCラインとそれぞれ接続される接続片9a−2,9b−2,9c−2が設けられている。この接続片9a−2,9b−2,9c−2は、バネ性のある板金のプレート材で形成されており、ホース3が電気掃除機本体1に接続されると、ホース3の本体接続部31の接続ピン9a−1,9b−1,9c−1と、接続片9a−2,9b−2,9c−2とがそれぞれ電気的に接続される。   Moreover, as shown in FIG. 4, the connection piece 9a-2, 9b- connected to the hose connection part 35 of the vacuum cleaner main body 1 respectively with the A line, B line, and C line on the vacuum cleaner main body 1 side. 2, 9c-2 are provided. The connection pieces 9a-2, 9b-2, 9c-2 are formed of a plate material having a spring property. When the hose 3 is connected to the electric vacuum cleaner main body 1, the main body connection portion of the hose 3 is connected. The 31 connection pins 9a-1, 9b-1, 9c-1 and the connection pieces 9a-2, 9b-2, 9c-2 are electrically connected to each other.

図5は実施の形態1に係る電気掃除機の回路構成図である。図に示すように、本実施の形態1における電気掃除機の回路は、電気掃除機本体1、ホース3、延長管5、吸込み具6の4つのブロックで構成されている。電気掃除機本体1とホース3とは上述したように、Aライン、Bライン及びCラインが電気的に接続されており、ホース3と延長管5、延長管5と吸込み具6はそれぞれ、Aライン及びBラインが電気的に接続されている。   FIG. 5 is a circuit configuration diagram of the electric vacuum cleaner according to the first embodiment. As shown in the drawing, the circuit of the electric vacuum cleaner according to the first embodiment is composed of four blocks of the electric vacuum cleaner main body 1, the hose 3, the extension pipe 5, and the suction tool 6. As described above, the vacuum cleaner body 1 and the hose 3 are electrically connected to the A line, the B line, and the C line, and the hose 3 and the extension pipe 5, the extension pipe 5, and the suction tool 6 are respectively A Line and B line are electrically connected.

電気掃除機本体1に電源コードを介して供給された商用交流電源10(AC100V)は、15A電流ヒューズ11及び4A電流ヒューズ12を介して、電動送風機2及び電動機8に供給される。この15A電流ヒューズ11は、電動送風機2がロック等になった場合や回路短絡にて異常となった場合の保護装置であり、4A電流ヒューズ12は、電動機8がロック等になった場合や回路短絡にて異常となった場合の保護装置である。   The commercial AC power supply 10 (AC100V) supplied to the vacuum cleaner main body 1 via the power cord is supplied to the electric blower 2 and the electric motor 8 via the 15A current fuse 11 and the 4A current fuse 12. The 15A current fuse 11 is a protection device when the electric blower 2 is locked or when an abnormality occurs due to a short circuit. The 4A current fuse 12 is a circuit or circuit when the motor 8 is locked or the like. It is a protective device in case of abnormality due to short circuit.

また、電気掃除機本体1には、商用交流電源10を所望の電圧へ変圧する電源トランス13が設けられ、この電源トランス13の出力側には、電源トランス13の出力を整流するダイオードブリッジ14、ダイオードブリッジ14により整流された出力を平滑する平滑用電解コンデンサC1、入力側が平滑用電解コンデンサC1に接続され出力側から所定の定電圧(DC5V)を出力する定電圧電源15が設けられている。また、この定電圧電源15の出力側には、発振を押さえるためのセラミックコンデンサC3と、定電圧電源15の出力電圧を安定させるための電解コンデンサC2とが接続されている。さらに、定電圧電源15の出力DC5Vは、制御指示部16(マイクロコンピュータ)と手元操作部4とに供給されている。   Further, the vacuum cleaner body 1 is provided with a power transformer 13 for transforming the commercial AC power supply 10 to a desired voltage. On the output side of the power transformer 13, a diode bridge 14 for rectifying the output of the power transformer 13, A smoothing electrolytic capacitor C1 for smoothing the output rectified by the diode bridge 14 and a constant voltage power source 15 for connecting a smoothing electrolytic capacitor C1 on the input side and outputting a predetermined constant voltage (DC5V) from the output side are provided. Further, a ceramic capacitor C3 for suppressing oscillation and an electrolytic capacitor C2 for stabilizing the output voltage of the constant voltage power supply 15 are connected to the output side of the constant voltage power supply 15. Further, the output DC 5 V of the constant voltage power supply 15 is supplied to the control instruction unit 16 (microcomputer) and the hand operation unit 4.

手元操作部4には、スイッチSW1〜SW4と抵抗R1〜R5が設けられており、電気掃除機本体1側の回路に内蔵された抵抗R6と、スイッチSW1〜SW4のオン状態の組合せにより変化する抵抗R1〜R5の合成抵抗とにより、A,Cライン間の電圧(DC5V)が分割され、スイッチSW1〜SW4のオン状態の組合せに応じて、操作信号である信号電圧が制御指示部16に入力される。   The hand operation unit 4 is provided with switches SW1 to SW4 and resistors R1 to R5, and changes depending on the combination of the resistor R6 incorporated in the circuit on the vacuum cleaner body 1 side and the on states of the switches SW1 to SW4. The voltage (DC5V) between the A and C lines is divided by the combined resistance of the resistors R1 to R5, and a signal voltage that is an operation signal is input to the control instruction unit 16 according to the combination of the ON states of the switches SW1 to SW4. Is done.

制御指示部16は、信号電圧に応じて運転モードを判断し、電動送風機2への通電を制御する双方向サイリスタである電動送風機駆動用トライアック17と、電動機8への通電を制御する双方向サイリスタである電動機駆動用トライアック18とを制御する。また、制御指示部16は、トランジスタTR1を介して手元操作部4と接続されており、トランジスタTR1は、ホース3が電気掃除機本体1の接続部9に接続されていない場合に電圧を検出できるようにするために設置している。抵抗R7は、トランジスタTR1を駆動させるためのベース抵抗である。さらに、制御指示部16には、電動送風機へ供給される電流を検出し、検出した電流値を制御指示部16に入力する電動送風機検出部19と、商用交流電源10のゼロボルトのタイミングである電源同期ポイント(ゼロクロスポイント)に同期して電源同期信号を制御指示部16に入力する電源同期検出手段21が接続されている。また、吸込み具6には、吸込み具6が空中に持ち上げられた場合に回転ブラシ7を停止させるための安全スイッチ20が設けられている。   The control instruction unit 16 determines the operation mode according to the signal voltage, and controls the electric blower driving triac 17 that is a bidirectional thyristor that controls energization to the electric blower 2, and the bidirectional thyristor that controls energization to the electric motor 8. The motor drive triac 18 is controlled. Moreover, the control instruction | indication part 16 is connected with the hand operation part 4 via transistor TR1, and transistor TR1 can detect a voltage, when the hose 3 is not connected to the connection part 9 of the vacuum cleaner main body 1. It is installed to ensure that The resistor R7 is a base resistor for driving the transistor TR1. Further, the control instruction unit 16 detects an electric current supplied to the electric blower and inputs the detected current value to the control instruction unit 16 and a power source that is a zero volt timing of the commercial AC power supply 10. Power supply synchronization detecting means 21 for inputting a power supply synchronization signal to the control instruction unit 16 in synchronization with the synchronization point (zero cross point) is connected. Further, the suction tool 6 is provided with a safety switch 20 for stopping the rotating brush 7 when the suction tool 6 is lifted in the air.

このように、電動機8の両端には、Aラインに対してAC100Vの電位差が生じるBラインが接続され、手元操作部4の各抵抗の一端はAラインに接続され、他端側は、Cラインを介して、Aラインに対してDC5Vの電位差が生じるC点と接続される。即ち、電気掃除機本体1とホース3を接続する接続部9は、Aラインを接続する接続部9aと、Aラインとの電位差でAC100Vが生じるBラインを接続する接続部9bと、Aラインとの電位差でDC5Vが生じるCラインを接続する接続部9cとにより各ラインが接続されている。   In this way, the B line is generated at both ends of the electric motor 8 so that a potential difference of 100 VAC with respect to the A line is connected, one end of each resistance of the hand operating unit 4 is connected to the A line, and the other end is connected to the C line. And is connected to a point C where a potential difference of DC 5 V occurs with respect to the A line. That is, the connecting part 9 for connecting the vacuum cleaner body 1 and the hose 3 includes a connecting part 9a for connecting the A line, a connecting part 9b for connecting the B line in which AC100V is generated due to a potential difference from the A line, and the A line. Each line is connected by a connecting portion 9c for connecting a C line in which DC5V is generated due to the potential difference of.

上記のように構成された電気掃除機は、手元操作部4のスイッチSW1〜SW4が操作されることにより、A,Cライン間の電圧が分割され、スイッチSW1〜SW4のオン状態の組合せに応じた信号電圧が制御指示部16に入力され、制御指示部16は、信号電圧に応じて運転モードを判断し、電源同期信号に同期させて交流電源のトリガー位置を制御することにより、交流電力の位相制御を行う。電動機駆動用トライアック18及び電動送風機駆動用トライアック17は制御指示部16のトリガ−信号により制御され、A,Cライン間の電圧が供給される電動機8及び電動送風機2の電力を制御する。このように駆動された電動送風機2及び電動機8により、吸込み具6から被掃除面の塵埃がかきあげられ、塵埃は延長管5、ホース3及び電気掃除機本体1へと搬送され、塵埃は電気掃除機本体1に内蔵された集塵室(図示せず)に集塵されるとともに、吸引風は電気掃除機本体1より排出される。   In the electric vacuum cleaner configured as described above, when the switches SW1 to SW4 of the hand operation unit 4 are operated, the voltage between the A and C lines is divided, and according to the combination of the ON states of the switches SW1 to SW4. The control instruction unit 16 determines the operation mode according to the signal voltage, and controls the trigger position of the AC power supply in synchronization with the power supply synchronization signal. Perform phase control. The motor drive triac 18 and the motor blower drive triac 17 are controlled by the trigger signal of the control instruction unit 16 to control the electric power of the motor 8 and the motor blower 2 to which the voltage between the A and C lines is supplied. The electric blower 2 and the electric motor 8 driven in this manner scavenge dust on the surface to be cleaned from the suction tool 6, the dust is conveyed to the extension pipe 5, the hose 3 and the electric vacuum cleaner main body 1, and the electric dust is While being collected in a dust collection chamber (not shown) built in the machine body 1, suction air is discharged from the vacuum cleaner body 1.

次に、Aラインの開放状態(断線状態)時における抵抗破壊について説明する。
上述した構成の電気掃除機は、電動機8に商用交流電源10を供給する電力線と、手元操作部4からの信号電圧を制御指示部16に入力する信号線のうち、片側の線を共通とする共通線であるAラインを用いて、ホース3内の導線数を減らし、軽量化及び操作性の向上を図っている。しかしながら、電動機8の動作中に、信号線と共通部分のAラインが断線や接続不良などにより電気的に非接続の開放状態となり、且つ、Bライン及びCラインが接続状態の場合、商用交流電源10のAC100Vが手元操作部4の各抵抗に印可される。この状態における電気掃除機の回路の詳細を図6を用いて説明する。
Next, resistance breakdown when the A line is in an open state (disconnected state) will be described.
In the vacuum cleaner having the above-described configuration, one of the power line that supplies the commercial AC power supply 10 to the electric motor 8 and the signal line that inputs the signal voltage from the hand operating unit 4 to the control instruction unit 16 is shared. Using the A line which is a common line, the number of conducting wires in the hose 3 is reduced to reduce weight and improve operability. However, when the motor 8 is in operation, the signal line and the common part A line are electrically disconnected due to disconnection or poor connection, and the B line and C line are in the connected state. Ten AC100V is applied to each resistance of the hand control unit 4. Details of the circuit of the vacuum cleaner in this state will be described with reference to FIG.

図6は実施の形態1に係る共通線断線時の回路図である。図において、Aライン断線部100は、Aラインの断線又は接続部9aの接続不良などによる電気的に非接続な開放状態を表している(以下、断線状態という)。電動機8が動作中、即ち、電動機8を駆動する電動機駆動用トライアック18がON状態のとき、Aラインが断線状態になると、商用交流電源10から供給されるAC100Vは、図の太点線で示す経路、つまり、電動機駆動用トライアック18、接続部9b、電動機8、抵抗R1、抵抗R6の経路からなる閉回路に印可される。通常、手元操作部4の各抵抗は、DC5V回路にて使用されることを前提とした定格電力の抵抗器を使用しており、上述のようにAC100Vが印可されると抵抗が破壊されてしまう。このように、上記太点線で示す経路でAC100V電圧が印加された場合の制御指示部16に入力される信号電圧について図7により説明する。   FIG. 6 is a circuit diagram when the common line is disconnected according to the first embodiment. In the figure, an A-line disconnection portion 100 represents an electrically disconnected state due to disconnection of the A-line or a connection failure of the connection portion 9a (hereinafter referred to as a disconnection state). When the electric motor 8 is operating, that is, when the motor drive triac 18 that drives the electric motor 8 is in the ON state, if the A line is disconnected, the AC 100V supplied from the commercial AC power supply 10 is a path indicated by a thick dotted line in the figure. That is, it is applied to a closed circuit including a path of the motor drive triac 18, the connection portion 9b, the motor 8, the resistor R1, and the resistor R6. Normally, each resistance of the hand operating unit 4 uses a resistor with a rated power on the premise that it is used in a DC5V circuit, and the resistance is destroyed when AC100V is applied as described above. . Thus, the signal voltage input to the control instruction unit 16 when the AC 100 V voltage is applied through the path indicated by the bold dotted line will be described with reference to FIG.

図7は実施の形態1に係る共通線断線時の電圧信号波形図である。図7(a)は、Aラインが断線状態になった場合の手元操作部4から制御指示部16に入力される電圧信号波形を示しており、図7(b)は、電源同期検出手段21からの電源同期波形を示している。図に示すように、例えば商用交流電源10が50Hzの場合、10ms毎に約DC5Vと約DC0.6のパルス波形が出力され、電源同期波形立下り時は、約DC5V電圧を出力し電源同期波形立上がり時は、約DC0.6Vの電圧が制御指示部16に入力される。   FIG. 7 is a voltage signal waveform diagram when the common line is disconnected according to the first embodiment. FIG. 7A shows a voltage signal waveform input from the hand operating unit 4 to the control instruction unit 16 when the A line is disconnected, and FIG. 7B shows the power supply synchronization detecting means 21. The power supply synchronous waveform from is shown. As shown in the figure, for example, when the commercial AC power supply 10 is 50 Hz, pulse waveforms of about DC5V and about DC0.6 are output every 10 ms, and when the power supply synchronization waveform falls, about DC5V voltage is output and the power supply synchronization waveform is output. At the time of rising, a voltage of about DC 0.6 V is input to the control instruction unit 16.

以上のような共通線断線等に伴う抵抗破壊を防止するためには、共通線断線等を検知して、AC100Vを電動機8に供給する電動機駆動用トライアック18を停止させる制御を行うことが必要となる。このような制御を行う本発明の動作について次に説明する。   In order to prevent the resistance breakage due to the common wire disconnection or the like as described above, it is necessary to perform control to detect the common wire disconnection or the like and stop the motor drive triac 18 that supplies AC 100 V to the motor 8. Become. Next, the operation of the present invention for performing such control will be described.

制御指示部16は、上述した共通線断線時の電圧信号波形に基づき、Aラインの断線を判断する。測定タイミングは、電源同期波形のゼロボルトのタイミングからプログラム実行時間に加算して所定時間のタイミングで信号電圧を取得する。このとき、電源同期波形が立ち下がりエッジの場合は、第1の所定電圧の値である所定値1(所定値2<所定値1<5V)以上か否かの判断し、電源同期波形が立ち上がりエッジの場合は、第2の所定電圧の値である所定値2(0.6V<所定値2<所定値1)以下か否かの判断して、その判断結果に基づき、電動機8の停止制御を行う。このような動作の詳細を図8により説明する。   The control instruction unit 16 determines the disconnection of the A line based on the voltage signal waveform when the common line is disconnected as described above. The measurement timing is added to the program execution time from the zero volt timing of the power supply synchronization waveform, and the signal voltage is acquired at the timing of a predetermined time. At this time, if the power supply synchronization waveform has a falling edge, it is determined whether or not the first predetermined voltage value is a predetermined value 1 (predetermined value 2 <predetermined value 1 <5 V) or more. In the case of an edge, it is determined whether or not a predetermined value 2 (0.6 V <predetermined value 2 <predetermined value 1), which is the value of the second predetermined voltage, and based on the determination result, stop control of the electric motor 8 is performed. I do. Details of such operation will be described with reference to FIG.

図8は実施の形態1に係る制御指示部の動作を示すフローチャートである。制御指示部16は、電動機8の動作を開始すると共に、共通線の断線検知を開始する(S1)。まず、手元操作部4から入力された信号電圧のAD変換を開始する(S2)。次に、電源同期ポイントを基準として、信号電圧を取り込むまでの時間である所定時間Aの値をセットする(S3)。ここで、所定時間Aは、電源同期波形の1/2周期以内の値(例えば、商用交流電源の周波数が50Hzのとき10ms以内の値)とする。セットした所定時間Aの値のデクリメントを行い(S4)、デクリメントが終了したか否かを判断し(S5)、終了するまでデクリメントを繰り返す。終了の場合は、信号電圧入力AD値の読み込みを行い(S6)、読み込んだAD値を、読み込み値Bとして確定する(S7)。
次に、基準とした電源同期ポイントでの電源同期波形が、立ち下がりエッジか否かを判断する(S8)。立下りエッジと判断した場合は、読み込み値Bが、所定値1以上か否かの判断を行う(S9)。所定値1以上の場合は、カウント値Cの値をインクリメントし(S11)、所定値1以上でないの場合は、カウント値Cの値をリセットして(S12)、手順S1から上述の動作を繰り返す(S13)。
一方、手順S8で立ち下がりエッジでないと判断した場合は、読み込み値Bが所定値2以下か否かの判断を行う(S10)、所定値2以下の場合は、カウント値Cの値をインクリメントし(S11)、所定値2以下でないの場合は、カウント値Cの値をリセットして(S12)、手順S1から上述の動作を繰り返す(S13)。
次に、カウント値Cが所定の回数と以上であるか否かにより、所定回数の経過を判断する(S14)。所定回数経過したと判断した場合は、電動機駆動用トライアック18をOFFとし、電動機8の停止させ(S15)、共通線の断線検知の処理を終了する(S16)。一方、手順S14にて所定回数経過しないと判断した場合は、カウント値Cの値を保持したまま手順S1から上述の動作を繰り返す(S13)。
FIG. 8 is a flowchart showing the operation of the control instruction unit according to the first embodiment. The control instruction unit 16 starts the operation of the electric motor 8 and starts detecting disconnection of the common line (S1). First, AD conversion of the signal voltage input from the local operation unit 4 is started (S2). Next, a value of a predetermined time A, which is a time until the signal voltage is taken in, is set with reference to the power supply synchronization point (S3). Here, the predetermined time A is a value within ½ period of the power supply synchronization waveform (for example, a value within 10 ms when the frequency of the commercial AC power supply is 50 Hz). The set value A is decremented (S4), it is determined whether the decrement is completed (S5), and the decrement is repeated until it is completed. In the case of completion, the signal voltage input AD value is read (S6), and the read AD value is determined as the read value B (S7).
Next, it is determined whether or not the power supply synchronization waveform at the reference power supply synchronization point is a falling edge (S8). If it is determined as a falling edge, it is determined whether or not the read value B is equal to or greater than a predetermined value 1 (S9). If the predetermined value is 1 or more, the value of the count value C is incremented (S11). If the predetermined value is not 1 or more, the value of the count value C is reset (S12), and the above-described operation is repeated from step S1. (S13).
On the other hand, if it is determined in step S8 that it is not a falling edge, it is determined whether or not the read value B is a predetermined value 2 or less (S10). If the read value B is a predetermined value 2 or less, the count value C is incremented. (S11) If the value is not less than the predetermined value 2, the value of the count value C is reset (S12), and the above-described operation is repeated from step S1 (S13).
Next, whether or not the predetermined number of times has elapsed is determined based on whether or not the count value C is equal to or more than the predetermined number of times (S14). If it is determined that the predetermined number of times has elapsed, the motor drive triac 18 is turned off, the motor 8 is stopped (S15), and the common line disconnection detection process is terminated (S16). On the other hand, if it is determined in step S14 that the predetermined number of times has not elapsed, the above-described operation is repeated from step S1 while the count value C is held (S13).

以上のように本実施の形態においては、電動機8が動作中に、共通線であるAラインが断線状態になったとき、電動機8への商用交流電源10の供給を停止させることにより、商用交流電源10の印加経路が遮断され、手元操作部4の抵抗に電圧が印加されなくなるので、手元操作部4の抵抗の破壊を防止することができる。   As described above, in the present embodiment, when the common line A is disconnected while the electric motor 8 is in operation, the supply of the commercial alternating-current power supply 10 to the electric motor 8 is stopped. Since the application path of the power supply 10 is interrupted and no voltage is applied to the resistance of the hand operating section 4, the resistance of the hand operating section 4 can be prevented from being broken.

また、制御指示部16は、信号電圧に基づき、Aラインの断線状態を判断し、電動機8への商用交流電源10の供給を停止させることにより、商用交流電源10の印加経路が遮断され、手元操作部4の抵抗に電圧が印加されなくなるので、手元操作部4の抵抗の破壊を防止することができる。   Further, the control instruction unit 16 determines the disconnection state of the A line based on the signal voltage, and stops the supply of the commercial AC power supply 10 to the electric motor 8, thereby interrupting the application path of the commercial AC power supply 10. Since no voltage is applied to the resistance of the operation unit 4, it is possible to prevent the resistance of the hand operation unit 4 from being broken.

また、制御指示部16は、信号電圧の電圧が、電源同期ポイントと同期して変動するとき、Aラインが断線状態であると判断し、電動機8への商用交流電源10の供給を停止させることにより、商用交流電源10の印加経路が遮断され、手元操作部4の抵抗に電圧が印加されなくなるので、手元操作部4の抵抗の破壊を防止することができる。   Further, when the voltage of the signal voltage fluctuates in synchronization with the power supply synchronization point, the control instruction unit 16 determines that the A line is in a disconnected state and stops the supply of the commercial AC power supply 10 to the electric motor 8. As a result, the application path of the commercial AC power supply 10 is interrupted, and no voltage is applied to the resistance of the hand operation unit 4, so that the resistance of the hand operation unit 4 can be prevented from being broken.

また、制御指示部16は、電源同期ポイントから所定時間A経過後の信号電圧の電圧値に基づき、Aラインの断線状態を判断し、電動機8への商用交流電源10の供給を停止させることにより、商用交流電源10の印加経路が遮断され、手元操作部4の抵抗に電圧が印加されなくなるので、手元操作部4の抵抗の破壊を防止することができる。   Further, the control instruction unit 16 determines the disconnection state of the A line based on the voltage value of the signal voltage after a predetermined time A has elapsed from the power supply synchronization point, and stops the supply of the commercial AC power supply 10 to the electric motor 8. Since the application path of the commercial AC power supply 10 is cut off and no voltage is applied to the resistance of the hand operation unit 4, the resistance of the hand operation unit 4 can be prevented from being broken.

また、制御指示部16は、電源同期ポイントでの電源同期波形が立ち下がりのとき、この電源同期ポイントから所定の時間A経過後、信号電圧の電圧値Bが所定値1以上であるか否かを検出し、電源同期ポイントでの電源同期波形が立ち上がりのとき、電源同期ポイントから所定の時間A経過後、信号電圧の電圧値Bが所定値2以下であるか否かを検出し、所定値1以上と所定値2以下とを所定の回数検出したとき、電動機8への商用交流電源10の供給を停止させることにより、Aラインの断線状態をより正確に判別することができる。   In addition, when the power supply synchronization waveform at the power supply synchronization point falls, the control instruction unit 16 determines whether or not the voltage value B of the signal voltage is greater than or equal to the predetermined value 1 after a predetermined time A has elapsed from the power supply synchronization point. When the power synchronization waveform at the power synchronization point rises, it is detected whether or not the voltage value B of the signal voltage is equal to or less than the predetermined value 2 after a predetermined time A has elapsed from the power synchronization point. When the number of times of 1 or more and the value of 2 or less is detected a predetermined number of times, the disconnection state of the A line can be more accurately determined by stopping the supply of the commercial AC power supply 10 to the electric motor 8.

尚、上述したような、商用交流電源10のAC100Vが手元操作部4の抵抗に印可される状態は、電動機8の動作中に、Aラインが開放状態となり、且つ、Bライン及びCラインが接続状態の場合に限り発生し、Bライン及びCラインの何れかが開放状態となった場合においては、商用交流電源10のAC100Vが手元操作部4の抵抗に印可される経路は形成されることはない。   The state in which the AC 100V of the commercial AC power supply 10 is applied to the resistance of the hand operating unit 4 as described above is that the A line is open during the operation of the electric motor 8, and the B line and the C line are connected. It occurs only in the case of the state, and when either the B line or the C line is opened, a path through which the AC 100V of the commercial AC power supply 10 is applied to the resistance of the hand operating unit 4 is not formed. Absent.

実施の形態2.
図9は実施の形態2に係る電気掃除機の回路構成図である。本実施の形態では、上記実施の形態1の構成に加え、図9に示すように、電気掃除機本体1に、Aラインの断線状態を表示する表示手段22及び断線状態を報知する報知手段23を備えた構成とする。尚、その他の構成及び動作は、上述した実施の形態1と同様である。
Embodiment 2. FIG.
FIG. 9 is a circuit configuration diagram of the electric vacuum cleaner according to the second embodiment. In the present embodiment, in addition to the configuration of the first embodiment, as shown in FIG. 9, the vacuum cleaner main body 1 has a display means 22 for displaying the disconnection state of the A line and a notification means 23 for notifying the disconnection state. It is set as the structure provided with. Other configurations and operations are the same as those in the first embodiment.

本実施の形態において、制御指示部16は、電動機8が動作中に、上述の動作により、Aラインが断線状態と判断し、電動機8を停止させたとき、表示手段22にAラインの断線状態を表示させると共に、報知手段23にAラインの断線状態を報知させる。   In the present embodiment, when the motor 8 is in operation, the control instruction unit 16 determines that the A line is in a disconnected state by the above-described operation, and when the motor 8 is stopped, the control unit 16 causes the display unit 22 to disconnect the A line. Is displayed, and the notification means 23 is notified of the disconnection state of the A line.

以上のように本実施の形態では、制御指示部16は、電動機8が動作中に、Aラインが断線状態になったとき、表示手段22及び報知手段23にAラインの断線状態を表示及び報知させることにより、使用者にAラインが断線状態を知らせることができる。   As described above, in this embodiment, the control instruction unit 16 displays and notifies the disconnection state of the A line on the display unit 22 and the notification unit 23 when the A line is disconnected while the motor 8 is operating. By doing so, the A line can inform the user of the disconnection state.

尚、本実施の形態では、表示手段22及び報知手段23の両方を備えた構成としたが、これに限らず、表示手段22又は報知手段23の何れか一方により、使用者にAラインが断線状態を知らせても良い。   In this embodiment, the display unit 22 and the notification unit 23 are both provided. However, the present invention is not limited to this, and the A line is disconnected by the user by either the display unit 22 or the notification unit 23. You may inform the state.

実施の形態3.
本実施の形態3は、上記実施の形態1における手順S13にて電動機8を停止させた後、手元操作部4のスイッチ操作により、電動機8の動作を再開させるものである。尚、本実施の形態の構成は、上述した実施の形態1と同様である。
Embodiment 3 FIG.
In the third embodiment, after the electric motor 8 is stopped in step S13 in the first embodiment, the operation of the electric motor 8 is resumed by the switch operation of the hand operation unit 4. The configuration of the present embodiment is the same as that of the first embodiment described above.

本実施の形態における電気掃除機は、上述した実施の形態1と同様の動作により、共通線の断線検知を開始し、電動機8の動作中にAラインが断線状態になったとき、Aラインの断線状態を判断して、電動機8の停止制御を行う。
その後、使用者により、手元操作部4のスイッチSW1が操作され、スイッチSW1のオン状態に応じた信号電圧が制御指示部16に入力されたとき、制御指示部16は、電動機駆動用トライアック18をON状態として、再び電動機8を動作させる。
The vacuum cleaner in the present embodiment starts the detection of the disconnection of the common line by the same operation as that of the above-described first embodiment, and when the A line is disconnected during the operation of the electric motor 8, The disconnection state is determined, and stop control of the electric motor 8 is performed.
Thereafter, when the user operates the switch SW1 of the hand operation unit 4 and a signal voltage corresponding to the ON state of the switch SW1 is input to the control instruction unit 16, the control instruction unit 16 turns the motor drive triac 18 on. In the ON state, the electric motor 8 is operated again.

以上のように、Aラインが断線状態になり、制御指示部16が電動機8の停止制御を行った後、手元操作部4のスイッチSW1の操作により電動機8への商用交流電源10の供給を再開させることにより、電源コードのプラグを抜き差しするなどのリセット操作なしに、電動機8の動作を復帰することができ、取り扱い性の向上を図ることができる。   As described above, after the A line is disconnected and the control instruction unit 16 performs stop control of the electric motor 8, the supply of the commercial AC power supply 10 to the electric motor 8 is resumed by operating the switch SW1 of the hand operation unit 4. By doing so, the operation of the electric motor 8 can be restored without performing a resetting operation such as plugging and unplugging the power cord, and the handling can be improved.

実施の形態1に係る電気掃除機の概略構成図である。1 is a schematic configuration diagram of a vacuum cleaner according to Embodiment 1. FIG. 実施の形態1に係る手元操作部の表示部の外観図である。FIG. 3 is an external view of a display unit of the hand operation unit according to the first embodiment. 実施の形態1に係るホース及び手元操作部の配線構造を示した図である。It is the figure which showed the wiring structure of the hose which concerns on Embodiment 1, and a hand operation part. 実施の形態1に係る接続部の断面図である。3 is a cross-sectional view of a connection portion according to Embodiment 1. FIG. 実施の形態1に係る電気掃除機の回路構成図である。2 is a circuit configuration diagram of the electric vacuum cleaner according to Embodiment 1. FIG. 実施の形態1に係る共通線断線時の回路図である。FIG. 3 is a circuit diagram when a common line is disconnected according to the first embodiment. 実施の形態1に係る共通線断線時の電圧信号波形図である。FIG. 3 is a voltage signal waveform diagram when the common line is disconnected according to the first embodiment. 実施の形態1に係る制御指示部の動作を示すフローチャートである。3 is a flowchart showing an operation of a control instruction unit according to the first embodiment. 実施の形態2に係る電気掃除機の回路構成図である。It is a circuit block diagram of the vacuum cleaner which concerns on Embodiment 2. FIG.

符号の説明Explanation of symbols

1 電気掃除機本体、2 電動送風機、3 ホース、4 手元操作部、5 延長管、6 吸込み具、7 回転ブラシ、8 電動機、9 接続部、9a 接続部、9b 接続部、9c 接続部、9a−1 接続ピン、9b−1 接続ピン、9c−1 接続ピン、9a−2 接続片、9b−2 接続片、9c−2 接続片、10 商用交流電源、11 電流ヒューズ、12 電流ヒューズ、13 電源トランス、14 ダイオードブリッジ、15 定電圧電源、16 制御指示部、17 電動送風機駆動用トライアック、18 電動機駆動用トライアック、19 電動送風機検出部、20 安全スイッチ、21 電源同期検出手段、22 表示手段、23 報知手段、31 本体接続部、32 接続管、33 可撓性ホース、34 ホースカバー、35 ホース接続部、41 延長管接続部、100 ライン断線部、C1 平滑用電解コンデンサ、C2 電解コンデンサ、C3 セラミックコンデンサ、R1 抵抗、R2 抵抗、R3 抵抗、R4 抵抗、R5 抵抗、R6 抵抗、R7 抵抗、SW1 スイッチ、SW2 スイッチ、SW3 スイッチ、SW4 スイッチ、TR1 トランジスタ。
DESCRIPTION OF SYMBOLS 1 Vacuum cleaner main body, 2 Electric blower, 3 Hose, 4 hand operation part, 5 Extension pipe, 6 Suction tool, 7 Rotating brush, 8 Electric motor, 9 Connection part, 9a Connection part, 9b Connection part, 9c Connection part, 9a -1 connection pin, 9b-1 connection pin, 9c-1 connection pin, 9a-2 connection piece, 9b-2 connection piece, 9c-2 connection piece, 10 commercial AC power supply, 11 current fuse, 12 current fuse, 13 power supply Transformer, 14 diode bridge, 15 constant voltage power supply, 16 control instruction unit, 17 electric blower drive triac, 18 motor drive triac, 19 electric blower detection unit, 20 safety switch, 21 power supply synchronization detection means, 22 display means, 23 Informing means, 31 body connecting part, 32 connecting pipe, 33 flexible hose, 34 hose cover, 35 hose connecting part, 41 extension pipe connecting part, 100 Disconnection part, C1 smoothing electrolytic capacitor, C2 electrolytic capacitor, C3 ceramic capacitor, R1 resistor, R2 resistor, R3 resistor, R4 resistor, R5 resistor, R6 resistor, R7 resistor, SW1 switch, SW2 switch, SW3 switch, SW4 switch , TR1 transistor.

Claims (9)

掃除機本体に内蔵され、塵埃を吸引する電動送風機と、
吸込み具に内蔵され、塵埃をかきあげる回転ブラシを駆動する電動機と、
前記掃除機本体に設けられ、前記電動送風機及び前記電動機の動作を制御する制御指示部と、
前記掃除機本体に一端を接続し、操作信号を出力する手元操作部を他端側に有するホースと、
前記ホースに設けられ、前記掃除機本体側からの商用電源を前記電動機に供給する一対の電力線と、
前記ホースに設けられ、前記一対の電力線の内、一方の電力線とによって前記操作信号を前記制御指示部に入力する信号線と
を備えた電気掃除機において、
前記制御指示部は、前記電動機が動作中に、前記一方の電力線(以下、共通線と称する)が開放状態になったとき、前記電動機への商用電源の供給を停止させることを特徴とする電気掃除機。
An electric blower built in the vacuum cleaner body and sucking dust;
An electric motor that is built into the suction tool and drives a rotating brush that sweeps up dust;
A control instruction unit that is provided in the vacuum cleaner body and controls the operation of the electric blower and the electric motor;
One end connected to the vacuum cleaner body, a hose having a hand operation part on the other end side for outputting an operation signal,
A pair of power lines provided on the hose and supplying a commercial power source from the cleaner body side to the electric motor;
In the vacuum cleaner provided with the signal line which is provided in the hose and inputs the operation signal to the control instruction unit by one of the pair of power lines.
The control instruction unit stops supply of commercial power to the motor when the one power line (hereinafter referred to as a common line) is opened while the motor is operating. Vacuum cleaner.
前記制御指示部は、前記電動機が動作中に、前記共通線が開放状態となり、且つ、前記一対の電力線の内、他方の電力線及び前記信号線が接続状態のとき、前記電動機への商用電源の供給を停止させることを特徴とする請求項1記載の電気掃除機。   The control instruction unit is configured to supply a commercial power source to the motor when the common line is in an open state and the other power line and the signal line of the pair of power lines are in a connected state while the motor is operating. 2. The vacuum cleaner according to claim 1, wherein the supply is stopped. 前記制御指示部は、前記操作信号に基づき、前記共通線の開放状態を判断し、前記電動機への商用電源の供給を停止させることを特徴とする請求項1又は2記載の電気掃除機。   3. The electric vacuum cleaner according to claim 1, wherein the control instruction unit determines an open state of the common line based on the operation signal, and stops supply of commercial power to the electric motor. 前記商用電源のゼロボルトのタイミングを検出する電源同期検出手段を備え、
前記制御指示部は、前記操作信号の電圧が、前記電源同期検出手段により検出された前記ゼロボルトのタイミングと同期して変動するとき、前記共通線が開放状態であると判断し、前記電動機への商用電源の供給を停止させることを特徴とする請求項1〜3の何れかに記載の電気掃除機。
Power supply synchronization detection means for detecting the zero volt timing of the commercial power supply,
The control instruction unit determines that the common line is in an open state when the voltage of the operation signal fluctuates in synchronization with the zero volt timing detected by the power supply synchronization detection unit, and The electric vacuum cleaner according to any one of claims 1 to 3, wherein supply of commercial power is stopped.
前記商用電源のゼロボルトのタイミングを検出する電源同期検出手段を備え、
前記制御指示部は、前記電源同期検出手段により検出された前記ゼロボルトのタイミングから所定の時間経過後の前記操作信号の電圧値に基づき、前記共通線の開放状態を判断し、前記電動機への商用電源の供給を停止させることを特徴とする請求項1〜3の何れかに記載の電気掃除機。
Power supply synchronization detection means for detecting the zero volt timing of the commercial power supply,
The control instruction unit determines an open state of the common line based on a voltage value of the operation signal after a lapse of a predetermined time from the zero volt timing detected by the power supply synchronization detection unit, and The electric vacuum cleaner according to any one of claims 1 to 3, wherein supply of power is stopped.
前記電源同期検出手段は、前記商用電源のゼロボルトのタイミングに同期した電源同期波形を前記制御指示部に入力し、
前記制御指示部は、
前記ゼロボルトのタイミングでの前記電源同期波形が立ち下がりのとき、前記ゼロボルトのタイミングから所定の時間経過後、前記操作信号の電圧値が第1の所定電圧以上であるか否かを検出し、
前記ゼロボルトのタイミングでの前記電源同期波形が立ち上がりのとき、前記ゼロボルトのタイミングから所定の時間経過後、前記操作信号の電圧値が第2の所定電圧以下であるか否かを検出し、
前記第1の所定電圧以上と前記第2の所定電圧以下とを所定の回数検出したとき、前記電動機への商用電源の供給を停止させることを特徴とする請求項5記載の電気掃除機。
The power supply synchronization detection means inputs a power supply synchronization waveform synchronized with the timing of zero volts of the commercial power supply to the control instruction unit,
The control instruction unit
Detecting whether the voltage value of the operation signal is equal to or higher than a first predetermined voltage after a predetermined time has elapsed from the zero volt timing when the power supply synchronization waveform at the zero volt timing falls;
Detecting whether the voltage value of the operation signal is equal to or lower than a second predetermined voltage after elapse of a predetermined time from the timing of the zero volt when the power supply synchronization waveform at the timing of the zero volt rises;
6. The electric vacuum cleaner according to claim 5, wherein supply of commercial power to the electric motor is stopped when the first predetermined voltage or higher and the second predetermined voltage or lower are detected a predetermined number of times.
前記共通線の開放状態を表示する表示手段を備え、
前記制御指示部は、前記電動機が動作中に、前記共通線が開放状態になったとき、前記表示手段に前記共通線の開放状態を表示させることを特徴とする請求項1〜6の何れかに記載の電気掃除機。
Display means for displaying the open state of the common line;
The said control instruction | indication part displays the open state of the said common line on the said display means, when the said common line will be in an open state while the said motor is operate | moving. The vacuum cleaner as described in.
前記共通線の開放状態を報知する報知手段を備え、
前記制御指示部は、前記電動機が動作中に、前記共通線が開放状態になったとき、前記報知手段に前記共通線の開放状態を報知させることを特徴とする請求項1〜7の何れかに記載の電気掃除機。
Informing means for informing the open state of the common line,
The said control instruction | indication part makes the said alerting | reporting means alert | report the open state of the said common line, when the said common line will be in an open state while the said motor is operate | moving. The vacuum cleaner as described in.
前記制御指示部は、前記電動機への商用電源の供給を停止させた後、前記手元操作部の操作により前記電動機への商用電源の供給を再開させることを特徴とする請求項1〜8の何れかに記載の電気掃除機。
The said control instruction | indication part restarts supply of the commercial power supply to the said motor by operation of the said local operation part, after stopping supply of the commercial power supply to the said motor. A vacuum cleaner according to crab.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2015221152A (en) * 2014-05-23 2015-12-10 三菱電機株式会社 Vacuum cleaner

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01313033A (en) * 1988-06-13 1989-12-18 Tokyo Electric Co Ltd Vacuum cleaner
JPH0471519A (en) * 1990-07-12 1992-03-06 Mitsubishi Electric Home Appliance Co Ltd Vacuum cleaner
JPH05137684A (en) * 1991-11-25 1993-06-01 Matsushita Electric Ind Co Ltd Controller for vacuum cleaner
JPH10201078A (en) * 1997-01-17 1998-07-31 Sumitomo Metal Ind Ltd Protective circuit
JP2002224001A (en) * 2001-02-02 2002-08-13 Toshiba Tec Corp Vacuum cleaner
JP2004057450A (en) * 2002-07-29 2004-02-26 Matsushita Electric Ind Co Ltd Electric cleaner

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01313033A (en) * 1988-06-13 1989-12-18 Tokyo Electric Co Ltd Vacuum cleaner
JPH0471519A (en) * 1990-07-12 1992-03-06 Mitsubishi Electric Home Appliance Co Ltd Vacuum cleaner
JPH05137684A (en) * 1991-11-25 1993-06-01 Matsushita Electric Ind Co Ltd Controller for vacuum cleaner
JPH10201078A (en) * 1997-01-17 1998-07-31 Sumitomo Metal Ind Ltd Protective circuit
JP2002224001A (en) * 2001-02-02 2002-08-13 Toshiba Tec Corp Vacuum cleaner
JP2004057450A (en) * 2002-07-29 2004-02-26 Matsushita Electric Ind Co Ltd Electric cleaner

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2015221152A (en) * 2014-05-23 2015-12-10 三菱電機株式会社 Vacuum cleaner

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