JP2007325334A - Switching power supply - Google Patents

Switching power supply Download PDF

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JP2007325334A
JP2007325334A JP2006149618A JP2006149618A JP2007325334A JP 2007325334 A JP2007325334 A JP 2007325334A JP 2006149618 A JP2006149618 A JP 2006149618A JP 2006149618 A JP2006149618 A JP 2006149618A JP 2007325334 A JP2007325334 A JP 2007325334A
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power supply
oscillation frequency
switch element
voltage
resistor
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JP4999362B2 (en
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Kenichi Suzuki
健一 鈴木
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Shindengen Electric Manufacturing Co Ltd
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Shindengen Electric Manufacturing Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a switching power supply in which a switch element stably oscillates irrespective of an input voltage. <P>SOLUTION: In the switching power supply which comprises the switch element 2, converts a power supply voltage from a DC power supply 1 into an arbitrary voltage by using the switch element, and outputs it, the switching power supply also comprises a control circuit 3 which controls an oscillation frequency of the switch element, and is characterized in that: an oscillation frequency setting means 4 is connected to the control circuit; a current flowing to the oscillation frequency setting means is increased and decreased in inverse proportion to the increase and decrease of the input voltage; and the oscillation frequency is increased and decreased in proportion to the increase and decrease of the current. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、スイッチ素子を備え、このスイッチ素子を用いて直流電源からの電源電圧を任意の電圧に変換して出力するスイッチング電源に関するものである。   The present invention relates to a switching power supply that includes a switch element and converts a power supply voltage from a DC power supply into an arbitrary voltage and outputs the voltage using the switch element.

従来のスイッチ素子を備え、このスイッチ素子を用いて直流電源からの電源電圧を任意の電圧に変換して出力する電源回路は、図3に示す。なお、図3に示すスイッチング電源は降圧チョッパ型電源である。具体的には、直流電源1にスイッチ素子2を接続し、このスイッチ素子2の出力側にダイオード11と出力チョーク12を接続し、出力チョーク12の出力側に平滑コンデンサ13と負荷14を接続してある。スイッチ素子2の制御端子に制御回路3を接続し、この制御回路3に抵抗からなる発振周波数設定手段4を接続してある。   FIG. 3 shows a power supply circuit that includes a conventional switch element and converts the power supply voltage from the DC power source into an arbitrary voltage using the switch element and outputs the voltage. The switching power supply shown in FIG. 3 is a step-down chopper type power supply. Specifically, the switch element 2 is connected to the DC power source 1, the diode 11 and the output choke 12 are connected to the output side of the switch element 2, and the smoothing capacitor 13 and the load 14 are connected to the output side of the output choke 12. It is. A control circuit 3 is connected to the control terminal of the switch element 2, and an oscillation frequency setting means 4 comprising a resistor is connected to the control circuit 3.

このスイッチング電源には発振周波数設定手段4は設けてあるが、入力電圧が大幅に変化した場合に、これに応じて発振周波数を変更させる手段を設けていない。そのため、制御回路3を用いた固定周波数のスイッチング電源を作成する場合、図5の動作波形図で示すように、制御回路固有の最小オン時間(tonmin)のよる誤動作領域が存在する。降圧チョッパ型電源の場合、出力電圧Voは、Vo=Vin×ton/T(Vin:入力電圧、ton:オン時間、T:発振周期)となるが、tonには最小オン時間(tonmin)が必ず存在するため、Vomin=Vin×tonmin/Tが理論上の出力下限電圧となり、この状態から入力電圧が上昇した場合、出力電圧Voを一定に保つためには発振周期Tが大きくならざるを得ない。しかしながら発振周期Tは制御回路によって固定となっており、リニアに変動せず、発振領域と未発振領域を不定期に繰り返す事で制御をし始める。このため、出力リップル電圧が大きくなる等の問題点が発生する。   This switching power supply is provided with the oscillation frequency setting means 4, but is not provided with means for changing the oscillation frequency in response to a significant change in the input voltage. Therefore, when a fixed frequency switching power supply using the control circuit 3 is created, as shown in the operation waveform diagram of FIG. 5, there is a malfunction region due to the minimum on-time (tonmin) unique to the control circuit. In the case of a step-down chopper type power supply, the output voltage Vo is Vo = Vin × ton / T (Vin: input voltage, ton: on time, T: oscillation period), but the minimum on time (tonmin) is always required for ton. Therefore, Vomin = Vin × tonmin / T is the theoretical output lower limit voltage. When the input voltage rises from this state, the oscillation period T must be increased in order to keep the output voltage Vo constant. . However, the oscillation period T is fixed by the control circuit and does not vary linearly, and control is started by repeating the oscillation region and the non-oscillation region irregularly. For this reason, problems such as an increase in output ripple voltage occur.

以上のような問題点を解決するため、リップル電圧が基準値より大きい場合若しくは小さい場合に発振周波数を切り換える手段を設けたスイッチング電源が開発された(特許文献1参照)。
特開2001−218453公報
In order to solve the above-described problems, a switching power supply has been developed that includes means for switching the oscillation frequency when the ripple voltage is larger or smaller than a reference value (see Patent Document 1).
JP 2001-218453 A

しかし、特許文献1に示してある発振周波数を切り換える手段は、動作が連続的でないため、スイッチング電源が安定したスイッチング動作を行えるとはいいがたい。   However, since the means for switching the oscillation frequency shown in Patent Document 1 is not continuous, it is difficult to say that the switching power supply can perform a stable switching operation.

本発明は、上記問題に鑑みてなされたものであり、入力電圧にかかわらずスイッチ素子が安定して発振するスイッチング電源を提供する。   The present invention has been made in view of the above problems, and provides a switching power supply in which a switch element stably oscillates regardless of an input voltage.

上記課題を解決するために、本発明に係るスイッチング電源は、スイッチ素子を備え、このスイッチ素子を用いて直流電源からの電源電圧を任意の電圧に変換して出力するスイッチング電源において、前記スイッチ素子の発振周波数を制御する制御回路を備え、この制御回路に発振周波数設定手段を接続し、入力電圧の増減に反比例して前記発振周波数設定手段に流れる電流が増減し、これに比例して前記発振周波数が増減するように構成してあることを特徴とする。   In order to solve the above-described problem, a switching power supply according to the present invention includes a switching element, and the switching element uses the switching element to convert a power supply voltage from a DC power supply into an arbitrary voltage and output the same. A control circuit for controlling the oscillation frequency of the oscillation frequency, and an oscillation frequency setting means is connected to the control circuit so that the current flowing through the oscillation frequency setting means increases and decreases in inverse proportion to the increase and decrease of the input voltage, and the oscillation The frequency is increased or decreased.

前記発振周波数設定手段として抵抗を用いるとともに、入力電圧を抵抗で検出し、これら抵抗と別の抵抗を接続し、この抵抗を接地してあることを特徴とする。   A resistor is used as the oscillation frequency setting means, an input voltage is detected by a resistor, another resistor is connected to the resistor, and the resistor is grounded.

本発明によれば、スイッチ素子の発振周波数を制御する制御回路に発振周波数設定手段を接続し、入力電圧の増減に反比例して発振周波数が増減するように構成したことにより、入力電圧にかかわらずスイッチ素子のスイッチング動作が安定する効果がある。   According to the present invention, the oscillation frequency setting means is connected to the control circuit for controlling the oscillation frequency of the switch element, and the oscillation frequency is increased or decreased in inverse proportion to the increase or decrease of the input voltage, so that the input voltage can be controlled regardless of the input voltage. There is an effect that the switching operation of the switch element is stabilized.

以下、添付図面を用いて本発明スイッチング電源に係る実施例を説明する。図1は本発明に係るスイッチング電源に適用する回路を示した図である。なお、本実施例においては、降圧チョッパ型電源を示すが、本発明は昇圧チョッパ型電源並びに昇降圧チョッパ型電源においても応用することができる。先ず、本実施例に係るスイッチング電源は、直流電源1にスイッチ素子2を接続し、このスイッチ素子2の出力側にダイオード11と出力チョーク12を接続し、出力チョーク12の出力側に平滑コンデンサ13と負荷14を接続してある。スイッチ素子2の制御端子に制御回路3を接続してある。   Embodiments according to the present invention will now be described with reference to the accompanying drawings. FIG. 1 is a diagram showing a circuit applied to a switching power supply according to the present invention. In this embodiment, a step-down chopper type power supply is shown, but the present invention can also be applied to a step-up chopper type power supply and a step-up / step-down chopper type power supply. First, in the switching power supply according to the present embodiment, a switch element 2 is connected to a DC power supply 1, a diode 11 and an output choke 12 are connected to the output side of the switch element 2, and a smoothing capacitor 13 is connected to the output side of the output choke 12. And a load 14 are connected. A control circuit 3 is connected to a control terminal of the switch element 2.

スイッチ素子2の制御端子には、スイッチ素子2の発振周波数を制御する制御回路3を接続してある。この制御回路3に発振周波数設定手段4を接続し、入力電圧の増減に反比例して発振周波数設定手段4に流れる電流が増減し、これに比例して発振周波数が増減するように構成してある。具体的に発振周波数設定手段4は、抵抗5を用いるとともに、入力電圧を抵抗6で検出し、これら抵抗5,6と別の抵抗7を接続し、この抵抗7を接地してある。   A control circuit 3 that controls the oscillation frequency of the switch element 2 is connected to the control terminal of the switch element 2. An oscillation frequency setting means 4 is connected to the control circuit 3 so that the current flowing through the oscillation frequency setting means 4 increases and decreases in inverse proportion to the increase and decrease of the input voltage, and the oscillation frequency increases and decreases in proportion thereto. . Specifically, the oscillation frequency setting means 4 uses a resistor 5, detects an input voltage with a resistor 6, connects these resistors 5 and 6 to another resistor 7, and this resistor 7 is grounded.

本発明に係るスイッチング電源は以下のように作用する。なお、図2に本発明に係るスイッチング電源の動作波形図を示す。先ず、本実施例に示す制御回路3はこの制御回路3に接続する抵抗5に一定の発振周波数で電流を流すように設定してある。通常、この抵抗5に流れる電流が多くなると、発振周波数は高くなり、逆に抵抗5に流れる電流が少なくなると、発振周波数は低くなる。最小オン時間tonminと制御時間tonとの関係が、tonmin>ton、又はtonmin=tonの場合は、図4の動作波形図に示すように、発振領域と未発振領域とが安定しているため、問題ないが、tonmin<tonの場合は、発振領域と未発振領域とを不定期に繰り返す事で制御をし始める。このため、本発明では、以下の通りの作用により、入力電圧にかかわらずスイッチ素子のスイッチング動作を安定させる。   The switching power supply according to the present invention operates as follows. FIG. 2 shows an operation waveform diagram of the switching power supply according to the present invention. First, the control circuit 3 shown in this embodiment is set so that a current flows through the resistor 5 connected to the control circuit 3 at a constant oscillation frequency. Normally, when the current flowing through the resistor 5 increases, the oscillation frequency increases. Conversely, when the current flowing through the resistor 5 decreases, the oscillation frequency decreases. When the relationship between the minimum on-time tonmin and the control time ton is tonmin> ton or tonmin = ton, the oscillation region and the non-oscillation region are stable as shown in the operation waveform diagram of FIG. There is no problem, but when tonmin <ton, control is started by repeating the oscillation region and the non-oscillation region irregularly. For this reason, in the present invention, the switching operation of the switch element is stabilized regardless of the input voltage by the following operation.

本発明においては、入力電圧が高くなると、入力電圧を検出する抵抗6に流れる電流は増加する。これに相反して、制御回路3に接続する抵抗5に流れる電流は減少する。この電流が減少すると、発振周波数が低くなり、発振周期Tが大きくなる。つまり、出力下限電圧Vominは、Vomin=Vin×tonmin/Tの関係式において、入力電圧Vinが上昇した場合、発振周期Tを大きくすることで、図2の動作波形図に示す通り、変わらず安定する。   In the present invention, as the input voltage increases, the current flowing through the resistor 6 that detects the input voltage increases. Contrary to this, the current flowing through the resistor 5 connected to the control circuit 3 decreases. When this current decreases, the oscillation frequency decreases and the oscillation period T increases. That is, the output lower limit voltage Vomin is stable as shown in the operation waveform diagram of FIG. 2 by increasing the oscillation period T when the input voltage Vin rises in the relational expression Vomin = Vin × tonmin / T. To do.

以上より、入力電圧の増減に反比例して発振周波数が増減するように構成したことにより、入力電圧にかかわらずスイッチ素子のスイッチング動作が安定する。   As described above, since the oscillation frequency is increased / decreased in inverse proportion to the increase / decrease of the input voltage, the switching operation of the switch element is stabilized regardless of the input voltage.

本発明によれば、スイッチ素子の発振周波数を制御する制御回路に発振周波数設定手段を接続し、入力電圧の増減に反比例して発振周波数が増減するように構成したことにより、入力電圧にかかわらずスイッチ素子のスイッチング動作が安定するスイッチング電源を提供することができ、産業上利用可能である。   According to the present invention, the oscillation frequency setting means is connected to the control circuit for controlling the oscillation frequency of the switch element, and the oscillation frequency is increased or decreased in inverse proportion to the increase or decrease of the input voltage, so that the input voltage can be controlled regardless of the input voltage. A switching power supply in which the switching operation of the switch element is stable can be provided and can be used industrially.

本発明に係るスイッチング電源の一実施例を示した回路図である。It is the circuit diagram which showed one Example of the switching power supply which concerns on this invention. 図1図示回路における異常時における動作波形図である。It is an operation | movement waveform diagram at the time of abnormality in the circuit shown in FIG. 従来のスイッチング電源の例を示した回路図である。It is the circuit diagram which showed the example of the conventional switching power supply. 正常時における動作波形図である。It is an operation | movement waveform diagram at the time of normal. 図3図示従来例における異常時における動作波形図である。FIG. 4 is an operation waveform diagram at the time of abnormality in the conventional example shown in FIG. 3.

符号の説明Explanation of symbols

1 直流電源
2 スイッチ素子
3 制御回路
4 発振周波数設定手段
5,6,7 抵抗
11 ダイオード
12 出力チョーク
13 平滑コンデンサ
14 負荷
DESCRIPTION OF SYMBOLS 1 DC power supply 2 Switch element 3 Control circuit 4 Oscillation frequency setting means 5, 6, 7 Resistor 11 Diode 12 Output choke 13 Smoothing capacitor 14 Load

Claims (2)

スイッチ素子を備え、このスイッチ素子を用いて直流電源からの電源電圧を任意の電圧に変換して出力するスイッチング電源において、前記スイッチ素子の発振周波数を制御する制御回路を備え、この制御回路に発振周波数設定手段を接続し、入力電圧の増減に反比例して前記発振周波数設定手段に流れる電流が増減し、これに比例して前記発振周波数が増減するように構成してあることを特徴とするスイッチング電源。 A switching power supply including a switch element, which converts a power supply voltage from a DC power supply to an arbitrary voltage using the switch element and outputs the voltage, includes a control circuit that controls the oscillation frequency of the switch element, and the control circuit oscillates. Switching is characterized in that a frequency setting means is connected, and the current flowing through the oscillation frequency setting means increases and decreases in inverse proportion to the increase and decrease of the input voltage, and the oscillation frequency increases and decreases in proportion thereto. Power supply. 前記発振周波数設定手段として抵抗を用いるとともに、入力電圧を抵抗で検出し、これら抵抗と別の抵抗を接続し、この抵抗を接地してあることを特徴とする請求項1記載のスイッチング電源。 2. The switching power supply according to claim 1, wherein a resistor is used as the oscillation frequency setting means, an input voltage is detected by a resistor, another resistor is connected to the resistor, and the resistor is grounded.
JP2006149618A 2006-05-30 2006-05-30 Switching power supply Expired - Fee Related JP4999362B2 (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2018191397A (en) * 2017-04-28 2018-11-29 ローム株式会社 Oscillation circuit device and switching regulator

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JPH0255574A (en) * 1988-08-17 1990-02-23 Murata Mfg Co Ltd Switching converter
JPH0614545A (en) * 1992-06-29 1994-01-21 Ckd Corp Switching regulator
JPH08275538A (en) * 1995-03-28 1996-10-18 Matsushita Electric Works Ltd Power supply
JPH09266671A (en) * 1996-03-28 1997-10-07 Toshiba Lighting & Technol Corp Switching power supply device
JP2000324824A (en) * 1999-03-26 2000-11-24 Sarnoff Corp Switching power supply mechanism and operating method therefor
JP2001078447A (en) * 1999-09-06 2001-03-23 Sony Corp Switching power circuit
JP2001197730A (en) * 2000-01-14 2001-07-19 Toko Inc Dc-dc converter

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0255574A (en) * 1988-08-17 1990-02-23 Murata Mfg Co Ltd Switching converter
JPH0614545A (en) * 1992-06-29 1994-01-21 Ckd Corp Switching regulator
JPH08275538A (en) * 1995-03-28 1996-10-18 Matsushita Electric Works Ltd Power supply
JPH09266671A (en) * 1996-03-28 1997-10-07 Toshiba Lighting & Technol Corp Switching power supply device
JP2000324824A (en) * 1999-03-26 2000-11-24 Sarnoff Corp Switching power supply mechanism and operating method therefor
JP2001078447A (en) * 1999-09-06 2001-03-23 Sony Corp Switching power circuit
JP2001197730A (en) * 2000-01-14 2001-07-19 Toko Inc Dc-dc converter

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2018191397A (en) * 2017-04-28 2018-11-29 ローム株式会社 Oscillation circuit device and switching regulator

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