JP2012248095A - Load control device - Google Patents

Load control device Download PDF

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JP2012248095A
JP2012248095A JP2011120790A JP2011120790A JP2012248095A JP 2012248095 A JP2012248095 A JP 2012248095A JP 2011120790 A JP2011120790 A JP 2011120790A JP 2011120790 A JP2011120790 A JP 2011120790A JP 2012248095 A JP2012248095 A JP 2012248095A
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load
unit
thyristor
power supply
main
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JP5853127B2 (en
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Yutaka Saito
裕 齋藤
Hirotada Higashihama
弘忠 東浜
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Panasonic Corp
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Abstract

PROBLEM TO BE SOLVED: To provide a load control device which suppresses the amplitude of switching noise during conduction of a thyristor of an auxiliary opening/closing part, thereby suppressing the amplitude of switching noise of a triac of a main opening/closing part.SOLUTION: The load control device includes an auxiliary opening/closing part 17 which is first conducted when energizing a load 3 and a main opening/closing part 11 which supplies power more stably at a side closer to the load 3 than the auxiliary opening/closing part 17 after the conduction, the two opening/closing parts connected in series between a commercial power source 2 and the load 3, and power supply parts 14, 15, 16 of a DC system for securing its own operation power. Two thyristors 17a and 17b are used as switch elements in the auxiliary opening/closing part 17, while a triac 11a is used as a main switch element in the main opening/closing part 11. The auxiliary opening/closing part 17 is provided in an AC system on a side closer to the commercial power source 2 and the load 3 than the power supply parts. Because the current does not pass through a diode bridge of the power supply parts when the thyristors 17a or 17b are conducted, a voltage drop due to diode does not occur.

Description

本発明は、2線式の負荷制御装置、特にその負荷開閉回路に関する。   The present invention relates to a two-wire load control device, and more particularly to a load switching circuit thereof.

従来から、照明装置や換気扇など負荷のオン/オフを制御するために、接点が機械的に開閉される2線式スイッチに変えて、トライアックなどの無接点スイッチ素子を用いた負荷制御装置(電子スイッチ)が実用化されている(特許文献1参照)。その様な負荷制御装置は、省配線の見地から、2線式結線が一般的であり、商用電源(交流電源)と負荷との間に直列に接続される。   Conventionally, in order to control the on / off of loads such as lighting devices and ventilation fans, load control devices using non-contact switch elements such as triacs instead of 2-wire switches whose contacts are mechanically opened and closed (electronic Switch) has been put into practical use (see Patent Document 1). Such a load control device generally has a two-wire connection from the viewpoint of wiring saving, and is connected in series between a commercial power supply (AC power supply) and a load.

図5は、特許文献1に記載された従来の商用電源2と負荷3との間に直列に接続される2線式の負荷制御装置50の回路構成を示す。この負荷制御装置50は、負荷3のオン/オフを制御する主開閉部51及び補助開閉部57と、主開閉部51及び補助開閉部57の導通を制御する制御部53と、制御部53に駆動電力を供給するための電源回路で構成されている。   FIG. 5 shows a circuit configuration of a conventional two-wire load control device 50 connected in series between a commercial power source 2 and a load 3 described in Patent Document 1. The load control device 50 includes a main opening / closing unit 51 and an auxiliary opening / closing unit 57 that control on / off of the load 3, a control unit 53 that controls conduction of the main opening / closing unit 51 and the auxiliary opening / closing unit 57, and a control unit 53. It consists of a power supply circuit for supplying drive power.

この負荷制御装置50は、例えば照明装置などの負荷3のオン及びオフを制御するために、負荷開閉回路を2つ備えている。補助開閉部57は、スイッチ素子としてサイリスタ57aを用いて構成され、負荷3に通電する際、先に導通して通電路を提供する。主開閉部51は、スイッチ素子としてトライアック51aを用いて構成され、補助開閉部57が導通した後、補助開閉部57よりも負荷3に近い側で、より安定した通電路を提供する。   The load control device 50 includes two load switching circuits in order to control on and off of a load 3 such as a lighting device. The auxiliary opening / closing part 57 is configured by using a thyristor 57a as a switch element, and when the load 3 is energized, the auxiliary opening / closing part 57 is first conducted to provide an energization path. The main opening / closing part 51 is configured using a triac 51a as a switching element, and provides a more stable energization path on the side closer to the load 3 than the auxiliary opening / closing part 57 after the auxiliary opening / closing part 57 is conducted.

負荷3を起動させるための操作ハンドル(SW)4が操作されると、制御部53は制御信号を出力し、それによって第3電源部56のスイッチ素子56cが導通し、さらにスイッチ素子56bが導通する。それによって、整流部52から出力された電流はスイッチ素子56bを介して流れ、バッファキャパシタ58を充電する。バッファキャパシタ58が充電されると、電流は、ツェナーダイオード56aを介して補助開閉部57のサイリスタ57aのゲートに流れ、それによってサイリスタ57aが導通する。サイリスタ57aは整流部52の出力端子間に接続されているので、サイリスタ57aの導通により、整流部52によって整流された電流が負荷3に流れる。この電流は主開閉部51のトライアック51aのゲートにも流れるので、電圧がトライアック51aのトリガ電圧よりも高くなると、トライアック51a、すなわち主開閉部51が導通する。一旦、主開閉部51が導通する(閉状態)と電流を流し続けるが、商用電流がゼロクロス点に達したときにトライアック51aは自己消弧し、主開閉部51が非導通(開状態)になる。主開閉部51が非導通(開状態)になると、整流部52から第3電源部56を経て第1電源部54に電流が流れ、負荷制御装置50の自己回路電源を確保する動作を行う。すなわち、交流の1/2周期ごとに、負荷制御装置50の自己回路電源確保、補助開閉部57の導通及び主開閉部51の導通動作が繰り返される。   When the operation handle (SW) 4 for activating the load 3 is operated, the control unit 53 outputs a control signal, whereby the switch element 56c of the third power supply unit 56 is turned on, and the switch element 56b is turned on. To do. As a result, the current output from the rectifying unit 52 flows through the switch element 56b and charges the buffer capacitor 58. When the buffer capacitor 58 is charged, current flows through the Zener diode 56a to the gate of the thyristor 57a of the auxiliary opening / closing part 57, whereby the thyristor 57a becomes conductive. Since the thyristor 57a is connected between the output terminals of the rectifier unit 52, the current rectified by the rectifier unit 52 flows to the load 3 due to the conduction of the thyristor 57a. Since this current also flows through the gate of the triac 51a of the main switching unit 51, when the voltage becomes higher than the trigger voltage of the triac 51a, the triac 51a, that is, the main switching unit 51 becomes conductive. Once the main opening / closing part 51 becomes conductive (closed state), the current continues to flow. However, when the commercial current reaches the zero cross point, the triac 51a self-extinguishes and the main opening / closing part 51 becomes non-conductive (open state). Become. When the main opening / closing part 51 becomes non-conductive (open state), a current flows from the rectifying part 52 through the third power supply part 56 to the first power supply part 54, and an operation for securing the self-circuit power supply of the load control device 50 is performed. In other words, the self-circuit power supply securing of the load control device 50, the conduction of the auxiliary opening / closing part 57, and the conduction operation of the main opening / closing part 51 are repeated every half cycle of the alternating current.

特開2008−97535号公報JP 2008-97535 A

ところで、サイリスタ57aをスイッチ素子とする補助開閉部57は、整流部52よりも電源部に近い側に設けられている。そのため、サイリスタ57aが導通すると、電流は整流部52を構成するダイオードブリッジを通り、サイリスタ57aを通り、再度ダイオードブリッジに流れる。すなわち、サイリスタ57aに流れる電流は、ダイオードブリッジを2回通過する。最初にダイオードブリッジを通過するときのダイオードによる電圧降下をV、サイリスタによる電圧降下をVSCR、2回目にダイオードブリッジを通過するときのダイオードによる電圧降下をVとすると、整流部52及び補助開閉部57による電圧降下VSUM=V+V+VSCRとなる。 By the way, the auxiliary opening / closing part 57 using the thyristor 57a as a switch element is provided closer to the power supply part than the rectifying part 52. Therefore, when the thyristor 57a is turned on, the current flows through the diode bridge constituting the rectifier 52, passes through the thyristor 57a, and flows again to the diode bridge. That is, the current flowing through the thyristor 57a passes through the diode bridge twice. Assuming that the voltage drop due to the diode when first passing through the diode bridge is V A , the voltage drop due to the thyristor is V SCR , and the voltage drop due to the diode when passing through the diode bridge for the second time is V B , the rectifier 52 and the auxiliary A voltage drop V SUM = V A + V B + V SCR due to the opening / closing unit 57 is obtained.

一方、サイリスタやトライアックは、その通電開始時に、いわゆるスイッチングノイズを発生することが知られている。図6(a)において、破線は商用電源の電圧波形を示し、実線は負荷に供給される電力の電圧波形を示す。図6(b)は、負荷に供給される電力の電圧波形の拡大図である。これら図6(a)及び(b)に示すように、サイリスタやトライアックによるスイッチングノイズが発生すると、負荷3に供給される電力の電圧波形にスイッチングノイズによる波形の乱れが生じる。そして、負荷3の動作において、電圧波形の乱れによる影響は、例えば照明装置の明るさの瞬間的な変動などが生じる。   On the other hand, thyristors and triacs are known to generate so-called switching noise at the start of energization. In FIG. 6A, the broken line indicates the voltage waveform of the commercial power supply, and the solid line indicates the voltage waveform of the power supplied to the load. FIG. 6B is an enlarged view of a voltage waveform of power supplied to the load. As shown in FIGS. 6A and 6B, when switching noise due to thyristors or triacs occurs, the waveform of power supplied to the load 3 is disturbed due to switching noise. In the operation of the load 3, the influence due to the disturbance of the voltage waveform causes, for example, an instantaneous fluctuation of the brightness of the lighting device.

図5に示す従来の負荷制御装置によれば、サイリスタが導通する際の電圧降下が大きいため、それによってトライアックが導通する際のスイッチングノイズの振幅も大きくなる。その結果、負荷の動作状態、例えば照明装置に点灯などにおいて影響が出る可能性がある。   According to the conventional load control device shown in FIG. 5, since the voltage drop when the thyristor is conducted is large, the amplitude of the switching noise when the triac is conducted is thereby increased. As a result, the operation state of the load, for example, lighting of the lighting device may be affected.

本発明は、上記従来例の問題を解決するためになされたものであり、補助開閉部のサイリスタ導通時における電圧降下を抑制し、それによって主開閉部のトライアックのスイッチングノイズの振幅を抑制した負荷制御装置を提供することを目的としている。   The present invention has been made to solve the above-described problems of the conventional example, and suppresses a voltage drop when the auxiliary thyristor is connected to the thyristor, thereby reducing the amplitude of the switching noise of the TRIAC of the main opening / closing portion. The object is to provide a control device.

本発明の一態様に係る負荷制御装置は、商用電源と負荷の間に直列に接続され、前記負荷に通電する際、先に導通する補助開閉部と、前記補助開閉部が導通した後、前記補助開閉部よりも前記負荷に近い側で、より安定した電力を供給する主開閉部と、自己の動作電力を確保するための直流系統の電源部を備え、前記補助開閉部はスイッチ素子としてサイリスタを用い、前記主開閉部は主スイッチ素子としてトライアックを用い、前記補助開閉部を、前記電源部よりも前記商用電源及び前記負荷に近い側の交流系統に設けたことを特徴とする。   The load control device according to an aspect of the present invention is connected in series between a commercial power source and a load, and when the load is energized, the auxiliary opening / closing portion that is first conductive and the auxiliary opening / closing portion are electrically connected, A main switching unit that supplies more stable power on the side closer to the load than the auxiliary switching unit, and a DC system power supply unit for securing its own operating power, the auxiliary switching unit being a thyristor as a switch element The main opening / closing section uses a triac as a main switch element, and the auxiliary opening / closing section is provided in the AC system closer to the commercial power source and the load than the power source section.

前記補助開閉部は、前記商用電源の位相に応じて、導通及び非導通が制御される2つのサイリスタを備えたことが好ましい。   The auxiliary opening / closing part preferably includes two thyristors whose conduction and non-conduction are controlled according to the phase of the commercial power supply.

前記2つのサイリスタに、それぞれスナバ回路を接続したことが好ましい。   It is preferable that a snubber circuit is connected to each of the two thyristors.

また、本発明の他の一態様に係る負荷制御装置は、主スイッチ素子の主電極が商用電源及び負荷に対し直列に接続され、前記負荷に対する電力の供給を制御する主開閉部と、前記主スイッチ素子の主電極間に接続された整流部と、外部からの信号に応じて負荷のオン又はオフを制御する制御部と、前記制御部に安定して電力を供給するための第1電源部と、前記主開閉部の両端から整流部を介して電力供給され、前記負荷をオフする状態のときに、前記第1電源部への電源を供給する第2電源部と、前記主開閉部の両端から整流部を介して電力供給され、前記負荷をオンする状態のときに、前記第1電源部への電源を供給する第3電源部と、前記整流部の出力端子間に接続され、前記負荷に給電する際、前記主開閉部よりも先に導通する補助開閉部と、前記商用電源の位相を検出する位相検出部を備え、
前記補助開閉部は、前記整流部の一方の入力端子にアノードが接続され、カソードが接地された第1サイリスタと、前記整流部の他方の入力端子にアノードが接続され、カソードが接地された第2サイリスタをスイッチ素子として用い、
前記主開閉部は主スイッチ素子としてトライアックを用い、
前記制御部は、前記商用電源の位相に応じて、前記第1サイリスタ及び前記第2サイリスタを導通させるためのトリガ信号を前記第1サイリスタ及び前記第2サイリスタのゲートに出力することを特徴とする。
In addition, a load control device according to another aspect of the present invention includes a main switching unit in which a main electrode of a main switch element is connected in series to a commercial power source and a load, and controls supply of electric power to the load. A rectifying unit connected between the main electrodes of the switch element, a control unit for controlling on / off of a load in accordance with an external signal, and a first power supply unit for stably supplying power to the control unit A second power supply unit that is supplied with power from both ends of the main switching unit via a rectification unit and supplies the power to the first power supply unit when the load is turned off; and Power is supplied from both ends via a rectifier, and when the load is turned on, a third power supply that supplies power to the first power supply is connected between an output terminal of the rectifier, Auxiliary conduction before the main opening / closing part when supplying power to the load Comprising a closed part, a phase detector for detecting a phase of the commercial power source,
The auxiliary open / close unit includes a first thyristor having an anode connected to one input terminal of the rectifying unit and a cathode grounded, and a first thyristor having the anode connected to the other input terminal of the rectifying unit and a cathode grounded. 2 thyristors are used as switching elements,
The main opening / closing part uses a triac as a main switch element,
The control unit outputs a trigger signal for conducting the first thyristor and the second thyristor to the gates of the first thyristor and the second thyristor according to the phase of the commercial power supply. .

前記第1サイリスタ及び前記第2サイリスタに、それぞれスナバ回路を接続したことが好ましい。   It is preferable that a snubber circuit is connected to each of the first thyristor and the second thyristor.

本発明の構成によれば、サイリスタをスイッチ素子とする補助開閉部が電源部よりも前記商用電源及び前記負荷に近い側の交流系統に設けられているので、サイリスタを流れる電流は、整流部のダイオードブリッジを通過しない。そのため、ダイオードブリッジを構成するダイオードによる電圧降下が無くなり、それによって、サイリスタが導通する際の電圧降下が小さくなる。その結果、主開閉部のトライアックのスイッチングノイズの振幅も小さくなり、負荷の動作状態、例えば照明装置に点灯などにおける影響を小さくすることができる。   According to the configuration of the present invention, since the auxiliary opening / closing unit using the thyristor as a switching element is provided in the AC system closer to the commercial power source and the load than the power source unit, the current flowing through the thyristor is Does not pass through the diode bridge. Therefore, the voltage drop due to the diodes constituting the diode bridge is eliminated, and thereby the voltage drop when the thyristor is turned on is reduced. As a result, the amplitude of the switching noise of the triac in the main opening / closing section is reduced, and the influence of the operating state of the load, for example, lighting on the lighting device can be reduced.

本発明の一実施形態に係る負荷制御装置の第1構成例を示す回路図。The circuit diagram which shows the 1st structural example of the load control apparatus which concerns on one Embodiment of this invention. 上記負荷制御装置の第1構成例における電圧波形図。The voltage waveform figure in the 1st structural example of the said load control apparatus. 上記負荷制御装置の第2構成例を示す回路図。The circuit diagram which shows the 2nd structural example of the said load control apparatus. 上記負荷制御装置の第2構成例における電圧波形図。The voltage waveform figure in the 2nd structural example of the said load control apparatus. 従来の負荷制御装置の構成を示す回路図。The circuit diagram which shows the structure of the conventional load control apparatus. (a)は従来の負荷制御装置の問題点を示す電圧波形図、(b)は符号Aで示す部分の拡大図。(A) is a voltage waveform diagram which shows the problem of the conventional load control apparatus, (b) is an enlarged view of the part shown by code A.

本発明の一実施形態に係る負荷制御装置1の第1構成例について、図1を参照しつつ説明する。この負荷制御装置1は、商用電源2と負荷3に対して直列に接続される。負荷制御装置1は、上記従来例と同様に、負荷3のオン/オフを制御する主開閉部11及び補助開閉部17と、主開閉部11及び補助開閉部17の導通を制御する制御部13と、制御部13に駆動電力を供給するための電源回路で構成されている。電源回路は、整流部12と、制御部13への給電を安定させる第1電源部14と、負荷3への電力停止時に第1電源部14へ電力を供給する第2電源部15と、負荷3への電力供給時に第1電源部14へ電力を供給する第3電源部16で構成されている。第1電源部14は、入力された直流電流を、出力電圧が入力電圧よりも低くなるように降圧するDC/DCコンバータである。なお、第2電源部15及び第3電源部16の構成及び動作は上記従来例と同様であるため、その説明を省略する。   A first configuration example of a load control device 1 according to an embodiment of the present invention will be described with reference to FIG. The load control device 1 is connected in series with a commercial power source 2 and a load 3. The load control device 1 includes a main opening / closing part 11 and an auxiliary opening / closing part 17 that control ON / OFF of the load 3 and a control part 13 that controls conduction of the main opening / closing part 11 and the auxiliary opening / closing part 17 in the same manner as the conventional example. And a power supply circuit for supplying drive power to the control unit 13. The power supply circuit includes a rectifying unit 12, a first power supply unit 14 that stabilizes power supply to the control unit 13, a second power supply unit 15 that supplies power to the first power supply unit 14 when power to the load 3 is stopped, and a load 3 includes a third power supply unit 16 that supplies power to the first power supply unit 14 when power is supplied to the power supply 3. The first power supply unit 14 is a DC / DC converter that steps down the input direct current so that the output voltage is lower than the input voltage. Note that the configurations and operations of the second power supply unit 15 and the third power supply unit 16 are the same as those in the conventional example, and thus the description thereof is omitted.

主開閉部11は、主スイッチ素子としてトライアック11aを備えている。また、補助開閉部17は、スイッチ素子として第1サイリスタ17a及び第2サイリスタ17bを備えており、ダイオードブリッジで構成された整流部12の入力端子間に接続されている。第1サイリスタ17aのアノードは整流部12を構成するダイオードブリッジの一方の入力端子に接続され、第2サイリスタ17bのアノードはダイオードブリッジの他方の入力端子に接続されている。また、第1サイリスタ17aのカソード及び第2サイリスタ17bのカソードは、それぞれ接地されている。この負荷制御装置1は、商用電源2の位相を検出する位相検出部19をさらに備えており、第1サイリスタ17a及び第2サイリスタ17bのゲートには、それぞれ制御部13から商用電源2の位相に応じてトリガ信号が入力される。   The main opening / closing part 11 includes a triac 11a as a main switch element. The auxiliary opening / closing unit 17 includes a first thyristor 17a and a second thyristor 17b as switching elements, and is connected between input terminals of the rectifying unit 12 configured by a diode bridge. The anode of the first thyristor 17a is connected to one input terminal of the diode bridge constituting the rectifying unit 12, and the anode of the second thyristor 17b is connected to the other input terminal of the diode bridge. The cathode of the first thyristor 17a and the cathode of the second thyristor 17b are grounded. The load control device 1 further includes a phase detection unit 19 that detects the phase of the commercial power source 2. The gates of the first thyristor 17 a and the second thyristor 17 b are respectively connected to the phase of the commercial power source 2 from the control unit 13. In response, a trigger signal is input.

第1電源部14,第2電源部15及び第3電源部16は、商用電源2及び負荷3に対して整流部12よりも遠い側に設けられており、負荷制御装置1の自己の動作電力を確保するための直流系統の電源部を構成する。一方、補助開閉部17は、電源部よりも商用電源2及び負荷3に近い側の交流系統に設けられている。   The first power supply unit 14, the second power supply unit 15, and the third power supply unit 16 are provided on the side farther than the rectifying unit 12 with respect to the commercial power supply 2 and the load 3, and the operating power of the load control device 1 The power supply unit of the DC system for ensuring the above is configured. On the other hand, the auxiliary opening / closing unit 17 is provided in the AC system closer to the commercial power source 2 and the load 3 than the power source unit.

負荷3を起動させるための操作ハンドル(SW)4が操作されると、制御部13は制御信号を出力し、それによって第3電源部16のスイッチ素子16cが導通し、さらにスイッチ素子16bが導通する。それによって、整流部12から出力された電流はスイッチ素子16bを介して流れ、バッファキャパシタ18を充電する。位相検出部19は、商用電源2の位相及び電圧を検出しており、制御部13は、商用電源2の位相に応じて第1サイリスタ17a又は第2サイリスタ17bのいずれかを選択し、所定の電圧になったときにトリガ信号を出力する。それによって、補助開閉部17が導通し、電流が負荷3に流れる。この電流は主開閉部11のトライアック11aのゲートにも流れるので、電圧がトライアック11aのトリガ電圧よりも高くなると、トライアック11a、すなわち主開閉部11が導通する。一旦、主開閉部11が導通する(閉状態)と電流を流し続けるが、商用電流がゼロクロス点に達したときにトライアック11aは自己消弧し、主開閉部11が非導通(開状態)になる。主開閉部11が非導通(開状態)になると、整流部12から第3電源部16を経て第1電源部14に電流が流れ、負荷制御装置1の自己回路電源を確保する動作を行う。すなわち、交流の1/2周期ごとに、負荷制御装置1の自己回路電源確保、補助開閉部17の導通及び主開閉部11の導通動作が繰り返される。   When the operation handle (SW) 4 for activating the load 3 is operated, the control unit 13 outputs a control signal, whereby the switch element 16c of the third power supply unit 16 is turned on, and the switch element 16b is turned on. To do. As a result, the current output from the rectifying unit 12 flows through the switch element 16 b and charges the buffer capacitor 18. The phase detection unit 19 detects the phase and voltage of the commercial power source 2, and the control unit 13 selects either the first thyristor 17a or the second thyristor 17b according to the phase of the commercial power source 2, A trigger signal is output when the voltage is reached. As a result, the auxiliary opening / closing part 17 is conducted, and a current flows to the load 3. Since this current also flows through the gate of the triac 11a of the main switching unit 11, when the voltage becomes higher than the trigger voltage of the triac 11a, the triac 11a, that is, the main switching unit 11 becomes conductive. Once the main opening / closing part 11 becomes conductive (closed state), the current continues to flow. However, when the commercial current reaches the zero cross point, the triac 11a self-extinguishes and the main opening / closing part 11 becomes non-conductive (open state). Become. When the main opening / closing part 11 becomes non-conductive (open state), a current flows from the rectifying part 12 through the third power supply part 16 to the first power supply part 14, and the operation for securing the self-circuit power supply of the load control device 1 is performed. In other words, the self-circuit power supply securing of the load control device 1, the conduction of the auxiliary switching unit 17, and the conduction operation of the main switching unit 11 are repeated every half cycle of AC.

補助開閉部17が電源部よりも商用電源2及び負荷3に近い側の交流系統に設けられているので、補助開閉部17のサイリスタ17a又は17bが導通する際、電流は整流部12のダイオードを通らない。すなわち、サイリスタ17a又は17bによる電圧降下VSCRのみが生じ、ダイオードV及びVによる電圧降下は生じない。この第1構成例における電圧波形図を図2に示す。図6(b)に示す従来の負荷制御装置50の電圧波形図と比較して、補助開閉部17のサイリスタ17a又は17bの導通時の電圧降下が小さくなる。それに伴って、トライアック11aによるスイッチングノイズの振幅も小さくなり、負荷の動作状態、例えば照明装置に点灯などにおける影響を小さくすることができる。 Since the auxiliary switching unit 17 is provided in the AC system closer to the commercial power source 2 and the load 3 than the power source unit, when the thyristor 17a or 17b of the auxiliary switching unit 17 is turned on, the current flows through the diode of the rectifying unit 12. I can't pass. That is, only the voltage drop V SCR Thyristor 17a or 17b occurs, the voltage drop does not occur due to the diode V A and V B. A voltage waveform diagram in the first configuration example is shown in FIG. Compared with the voltage waveform diagram of the conventional load control device 50 shown in FIG. 6B, the voltage drop when the thyristor 17a or 17b of the auxiliary opening / closing part 17 is conductive is reduced. Along with this, the amplitude of the switching noise due to the triac 11a is also reduced, and the influence of the operating state of the load, for example, lighting on the lighting device, can be reduced.

図3は、負荷制御装置1の第2構成例を示す。第2構成例では、補助開閉部17を構成する第1サイリスタ17a及び第2サイリスタ17bに、それぞれ抵抗体とキャパシタで構成されたスナバ回路17c及び17dが並列に接続されている。また、第1サイリスタ17a及び第2サイリスタ17bには、それぞれスナバ回路17cおよび17dから放電される電流の逆流を防止するためのダイオード17e及び17fが接続されている。   FIG. 3 shows a second configuration example of the load control device 1. In the second configuration example, snubber circuits 17c and 17d each composed of a resistor and a capacitor are connected in parallel to the first thyristor 17a and the second thyristor 17b constituting the auxiliary opening / closing section 17, respectively. The first thyristor 17a and the second thyristor 17b are connected to diodes 17e and 17f for preventing a reverse flow of current discharged from the snubber circuits 17c and 17d, respectively.

このような構成によれば、例えば第1サイリスタ17aが導通しているとき、ダイオード17eに順方向に電流が流れ、スナバ回路17cのキャパシタに電荷が充電される。第1サイリスタ17aのスイッチングノイズにより、第1サイリスタ17aの端子電圧がスナバ回路17cのキャパシタの端子電圧よりも低下すると、キャパシタから電荷が放電され、第1サイリスタ17aの端子電圧が回復する。その結果、図4に示すように、スイッチングノイズが低減され、負荷に供給される電力の電圧波形が安定し、例えば照明装置の明るさの瞬間的な変動などが低減される。   According to such a configuration, for example, when the first thyristor 17a is conductive, a current flows in the forward direction through the diode 17e, and the capacitor of the snubber circuit 17c is charged. When the terminal voltage of the first thyristor 17a falls below the terminal voltage of the capacitor of the snubber circuit 17c due to the switching noise of the first thyristor 17a, the charge is discharged from the capacitor, and the terminal voltage of the first thyristor 17a is recovered. As a result, as shown in FIG. 4, the switching noise is reduced, the voltage waveform of the power supplied to the load is stabilized, and for example, instantaneous fluctuations in brightness of the lighting device are reduced.

第1サイリスタ17aが導通する際、直列にダイオード17eが接続されているため、ダイオード17eにより電圧降下が発生する。しかしながら、図5に示す従来の負荷制御装置50と比較して、第1サイリスタ17aに流れる電流はダイオードを1回しか通過しないため、ダイオードによる電圧降下は半減される。第2サイリスタ17bについても同様である。その結果、トライアック11aによるスイッチングノイズの振幅も小さくなり、負荷の動作状態、例えば照明装置に点灯などにおける影響を小さくすることができる。   When the first thyristor 17a is turned on, the diode 17e is connected in series, so that a voltage drop is generated by the diode 17e. However, as compared with the conventional load control device 50 shown in FIG. 5, the current flowing through the first thyristor 17a passes through the diode only once, so the voltage drop due to the diode is halved. The same applies to the second thyristor 17b. As a result, the amplitude of the switching noise due to the triac 11a is also reduced, and the influence of the operating state of the load, for example, lighting on the lighting device, can be reduced.

なお、上記実施形態において、整流部12として全波整流回路を用いたが、それに限定されるものではなく、半波整流回路であってもよい。整流部12が半波整流回路である場合、半波整流回路と第2電源部を2組用意し、2組の半波整流回路と第2電源部を並列接続させ、それぞれの回路に流れる電流の位相を1/2周期ずらすように構成しても、同様の効果が得られる。   In the above embodiment, a full-wave rectifier circuit is used as the rectifier 12, but the present invention is not limited to this, and a half-wave rectifier circuit may be used. When the rectification unit 12 is a half-wave rectification circuit, two sets of the half-wave rectification circuit and the second power supply unit are prepared, the two sets of half-wave rectification circuit and the second power supply unit are connected in parallel, and the currents flowing in the respective circuits The same effect can be obtained even if the phase is shifted by 1/2 period.

1 負荷制御装置
2 商用電源
3 負荷
11 主開閉部
11a トライアック(主スイッチ素子)
12 整流部
14 第1電源部
15 第2電源部
16 第3電源部
17 補助開閉部
17a 第1サイリスタ(スイッチ素子)
17b 第2サイリスタ(スイッチ素子)
17c、17d スナバ回路
17e、17f ダイオード
19 位相検出部
DESCRIPTION OF SYMBOLS 1 Load control apparatus 2 Commercial power supply 3 Load 11 Main switching part 11a Triac (main switch element)
12 Rectifier 14 First Power Supply 15 Second Power Supply 16 Third Power Supply 17 Auxiliary Open / Close 17a First Thyristor (Switch Element)
17b Second thyristor (switch element)
17c, 17d Snubber circuit 17e, 17f Diode 19 Phase detector

Claims (5)

商用電源と負荷の間に直列に接続され、前記負荷に通電する際、先に導通する補助開閉部と、前記補助開閉部が導通した後、前記補助開閉部よりも前記負荷に近い側で、より安定した電力を供給する主開閉部と、自己の動作電力を確保するための直流系統の電源部を備え、前記補助開閉部はスイッチ素子としてサイリスタを用い、前記主開閉部は主スイッチ素子としてトライアックを用い、前記補助開閉部を、前記電源部よりも前記商用電源及び前記負荷に近い側の交流系統に設けたことを特徴とする負荷制御装置。   When connected in series between a commercial power source and a load, and energizing the load, after the auxiliary opening and closing part that conducts first, and the auxiliary opening and closing part is conducted, on the side closer to the load than the auxiliary opening and closing part, It has a main switching unit that supplies more stable power and a DC power supply unit for securing its own operating power, the auxiliary switching unit uses a thyristor as a switching element, and the main switching unit as a main switching element A load control apparatus using a triac, wherein the auxiliary opening / closing unit is provided in an AC system closer to the commercial power source and the load than the power source unit. 前記補助開閉部は、前記商用電源の位相に応じて、導通及び非導通が制御される2つのサイリスタを備えたことを特徴とする請求項1に記載の負荷制御装置。   The load control device according to claim 1, wherein the auxiliary opening / closing unit includes two thyristors whose conduction and non-conduction are controlled according to the phase of the commercial power source. 前記2つのサイリスタに、それぞれスナバ回路を接続したことを特徴とする請求項2に記載の負荷制御装置。   The load control device according to claim 2, wherein a snubber circuit is connected to each of the two thyristors. 主スイッチ素子の主電極が商用電源及び負荷に対し直列に接続され、前記負荷に対する電力の供給を制御する主開閉部と、
前記主スイッチ素子の主電極間に接続された整流部と、
外部からの信号に応じて負荷のオン又はオフを制御する制御部と、
前記制御部に安定して電力を供給するための第1電源部と、
前記主開閉部の両端から整流部を介して電力供給され、前記負荷をオフする状態のときに、前記第1電源部への電源を供給する第2電源部と、
前記主開閉部の両端から整流部を介して電力供給され、前記負荷をオンする状態のときに、前記第1電源部への電源を供給する第3電源部と、
前記整流部の出力端子間に接続され、前記負荷に給電する際、前記主開閉部よりも先に導通する補助開閉部と、
前記商用電源の位相を検出する位相検出部を備え、
前記補助開閉部は、前記整流部の一方の入力端子にアノードが接続され、カソードが接地された第1サイリスタと、前記整流部の他方の入力端子にアノードが接続され、カソードが接地された第2サイリスタをスイッチ素子として用い、
前記主開閉部は主スイッチ素子としてトライアックを用い、
前記制御部は、前記商用電源の位相に応じて、前記第1サイリスタ及び前記第2サイリスタを導通させるためのトリガ信号を前記第1サイリスタ及び前記第2サイリスタのゲートに出力することを特徴とする負荷制御装置。
A main opening and closing section for connecting a main electrode of a main switch element in series with a commercial power source and a load, and controlling supply of electric power to the load;
A rectifier connected between the main electrodes of the main switch element;
A control unit that controls on or off of the load according to an external signal;
A first power supply unit for stably supplying power to the control unit;
A second power supply unit that is supplied with power from both ends of the main opening / closing unit via a rectification unit and supplies power to the first power supply unit when the load is turned off;
A third power supply unit that is supplied with power from both ends of the main opening / closing unit via a rectification unit and supplies power to the first power supply unit when the load is turned on;
An auxiliary opening / closing part connected between the output terminals of the rectifying part, and conducting electricity before the main opening / closing part when supplying power to the load;
A phase detector for detecting the phase of the commercial power supply;
The auxiliary open / close unit includes a first thyristor having an anode connected to one input terminal of the rectifying unit and a cathode grounded, and a first thyristor having the anode connected to the other input terminal of the rectifying unit and a cathode grounded. 2 thyristors are used as switching elements,
The main opening / closing part uses a triac as a main switch element,
The control unit outputs a trigger signal for conducting the first thyristor and the second thyristor to the gates of the first thyristor and the second thyristor according to the phase of the commercial power supply. Load control device.
前記第1サイリスタ及び前記第2サイリスタに、それぞれスナバ回路を接続したことを特徴とする請求項4に記載の負荷制御装置。   The load control device according to claim 4, wherein a snubber circuit is connected to each of the first thyristor and the second thyristor.
JP2011120790A 2011-05-30 2011-05-30 Load control device Expired - Fee Related JP5853127B2 (en)

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Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH05182569A (en) * 1991-12-26 1993-07-23 Jimbo Electric Co Ltd Two-wire electronic lag switch
JP2011087260A (en) * 2009-10-19 2011-04-28 Panasonic Electric Works Co Ltd Load control apparatus

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH05182569A (en) * 1991-12-26 1993-07-23 Jimbo Electric Co Ltd Two-wire electronic lag switch
JP2011087260A (en) * 2009-10-19 2011-04-28 Panasonic Electric Works Co Ltd Load control apparatus

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