JPH0325047B2 - - Google Patents

Info

Publication number
JPH0325047B2
JPH0325047B2 JP59041571A JP4157184A JPH0325047B2 JP H0325047 B2 JPH0325047 B2 JP H0325047B2 JP 59041571 A JP59041571 A JP 59041571A JP 4157184 A JP4157184 A JP 4157184A JP H0325047 B2 JPH0325047 B2 JP H0325047B2
Authority
JP
Japan
Prior art keywords
agc
transistor
diode
resistor
circuit
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
JP59041571A
Other languages
Japanese (ja)
Other versions
JPS59167107A (en
Inventor
Hiroyuki Nagase
Tokuo Tsujimoto
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Panasonic Holdings Corp
Original Assignee
Matsushita Electric Industrial Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Matsushita Electric Industrial Co Ltd filed Critical Matsushita Electric Industrial Co Ltd
Priority to JP59041571A priority Critical patent/JPS59167107A/en
Publication of JPS59167107A publication Critical patent/JPS59167107A/en
Publication of JPH0325047B2 publication Critical patent/JPH0325047B2/ja
Granted legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H03ELECTRONIC CIRCUITRY
    • H03GCONTROL OF AMPLIFICATION
    • H03G1/00Details of arrangements for controlling amplification
    • H03G1/0005Circuits characterised by the type of controlling devices operated by a controlling current or voltage signal
    • H03G1/0017Circuits characterised by the type of controlling devices operated by a controlling current or voltage signal the device being at least one of the amplifying solid-state elements

Landscapes

  • Control Of Amplification And Gain Control (AREA)

Description

【発明の詳細な説明】 産業上の利用分野 本発明はラジオ受信機、その他の機器に使用す
るAGC回路に関するものである。
DETAILED DESCRIPTION OF THE INVENTION Field of Industrial Application The present invention relates to an AGC circuit used in radio receivers and other equipment.

従来例の構成とその問題点 一般に第1図に示すように増幅用の電界効果型
トランジスタTR1のドレインと+B電源との間に
抵抗R1を接続し、この抵抗R1に直列にAGC用の
トランジスタR2を接続して抵抗R1に流れる直流
電流を制御し、AGCをかけのように構成した
AGC回路は公知である。しかしながら、この種
のものではAGC用のトランジスタTR2が完全に
オン状態になつた場合でも上記トランジスタTR2
のコレクターエミツタ間に一定の飽和電圧が存在
するため、増幅用の電界効果型トランジスタTR1
を完全にオフすることができず、AGC効果を充
分に発揮することができないという問題があつ
た。
Conventional configuration and its problems Generally, as shown in Figure 1, a resistor R1 is connected between the drain of an amplifying field effect transistor TR1 and the +B power supply, and a resistor R1 is connected in series with this resistor R1 for AGC. The transistor R2 was connected to control the DC current flowing through the resistor R1 , and it was configured like an AGC circuit.
AGC circuits are known. However, in this type of device, even when the AGC transistor TR 2 is completely turned on, the transistor TR 2
Since there is a certain saturation voltage between the collector and emitter of the amplifying field effect transistor TR 1
There was a problem that the AGC effect could not be fully demonstrated because it could not be completely turned off.

尚、第1図において、a1は入力端子,a2は出力
端子,a3はAGC電圧が印加される制御端子であ
る。そしてC1,C3は結合コンデンサC2,C4はバ
イパスコンデンサ、R2,R3は抵抗である。
In FIG. 1, a 1 is an input terminal, a 2 is an output terminal, and a 3 is a control terminal to which the AGC voltage is applied. C 1 and C 3 are coupling capacitors C 2 and C 4 are bypass capacitors, and R 2 and R 3 are resistors.

発明の目的 本発明は以上のような従来の欠点を除去するも
のであり、簡単な構成でAGC作用をより大きく
働かせることができるAGC回路を提供すること
を目的とする。
OBJECTS OF THE INVENTION The present invention eliminates the above-mentioned conventional drawbacks, and aims to provide an AGC circuit that has a simple configuration and can increase the AGC effect.

発明の構成 上記の目的を達成するため、本発明のAGC回
路は、電源電圧を抵抗,ダイオードより成る直列
回路を介して増幅回路に印加するように構成する
と共に上記抵抗とダイオードとの接続点とアース
との間にAGC用のトランジスタを接続したこと
を特長とするるものである。
Structure of the Invention In order to achieve the above object, the AGC circuit of the present invention is configured to apply a power supply voltage to an amplifier circuit through a series circuit consisting of a resistor and a diode, and a connection point between the resistor and the diode. The feature is that an AGC transistor is connected between the ground and the ground.

実施例の説明 以下、本発明のAGC回路について実施例の図
面とともに説明する。第2図は本発明のAGC回
路における一実施例の電気的結線図であり、図
中、第1図と同一符号を付したものは第1図と同
一のものを示している。ここで、Dは抵抗R1
電界効果型トランジスタTR1のドレインとの間に
順方向に接続されたダイオードである。
DESCRIPTION OF EMBODIMENTS The AGC circuit of the present invention will be described below with reference to drawings of embodiments. FIG. 2 is an electrical connection diagram of one embodiment of the AGC circuit of the present invention, and in the figure, the same reference numerals as in FIG. 1 indicate the same components as in FIG. 1. Here, D is a diode connected in the forward direction between the resistor R1 and the drain of the field effect transistor TR1 .

上記実施例において、制御端子a3にAGC電圧
が印加されると、これによつてトランジスタTR2
が制御され、そのコレクターエミツタ間電圧が変
化する。したがつて、+B電源から抵抗R1に流れ
る直流電流が変化し、抵抗R1の電圧降下が変化
する。その結果、ダイオードDを通して増幅用の
電界効果型トランジスタTR1のドレインに印加さ
れる電圧が変化し、その増幅度が変化することに
なる。ところで、この場合ダイオードDがなけれ
ば前述したようにAGC用のトランジスタTR2
完全にオンした場合でも増幅用の電界効果型トラ
ンジスタは完全にオンしないことになるが、上記
実施例によれば抵抗R1と電界効果型トランジス
タTR1のドレインとの間にダイオードDが接続さ
れているため、このダイオードDによつてトラン
ジスタTR1の飽和電圧を完全に吸収することがで
き、増幅用の電界効果型トランジスタを完全にオ
フすることができる。したがつて、上記実施例に
よれば実質的にAGC効果をより大きく作用させ
ることができ、実用上きわめて有利である。
In the above embodiment, when the AGC voltage is applied to the control terminal a 3 , this causes the transistor TR 2
is controlled, and its collector-emitter voltage changes. Therefore, the direct current flowing from the +B power supply to the resistor R1 changes, and the voltage drop across the resistor R1 changes. As a result, the voltage applied to the drain of the field effect transistor TR1 for amplification through the diode D changes, and the degree of amplification changes. By the way, in this case, if there is no diode D, the field effect transistor for amplification will not turn on completely even if the AGC transistor TR 2 turns on completely as described above, but according to the above embodiment, the resistor Since a diode D is connected between R 1 and the drain of the field effect transistor TR 1 , this diode D can completely absorb the saturation voltage of the transistor TR 1 , and the field effect transistor for amplification is type transistor can be completely turned off. Therefore, according to the above embodiment, the AGC effect can be substantially increased, which is extremely advantageous in practice.

尚実施例では増幅回路として1個の電界効果型
トランジスタを用いたが、通常のトランジスタを
用いることも可能であり、又複数のトランジスタ
を用いることも可能である。
In the embodiment, one field effect transistor was used as the amplifier circuit, but a normal transistor or a plurality of transistors may be used.

発明の効果 以上実施例より明らかなように本発明のAGC
回路によれば、単にダイオードを印加するだけで
AGC効果をより大きく作用させることができ、
実用上きわめて有利なものである。
Effects of the Invention As is clear from the examples above, the AGC of the present invention
According to the circuit, simply applying the diode
The AGC effect can be made larger,
This is extremely advantageous in practice.

【図面の簡単な説明】[Brief explanation of drawings]

第1図は従来のAGC回路の電気的結線図、第
2図は本発明のAGC回路における一実施例の電
気的結線図である。 TR1……増幅用トランジスタ、TR2……AGC
用トランジスタ、D……ダイオード、R1〜R3
…抵抗、C1〜C4……コンデンサ。
FIG. 1 is an electrical wiring diagram of a conventional AGC circuit, and FIG. 2 is an electrical wiring diagram of an embodiment of the AGC circuit of the present invention. TR 1 ...Amplification transistor, TR 2 ...AGC
transistor, D... diode, R 1 ~ R 3 ...
...Resistance, C 1 to C 4 ... Capacitor.

Claims (1)

【特許請求の範囲】[Claims] 1 電源電圧を抵抗,ダイオードより成る直列回
路を介しそのダイオードのカソードより増幅回路
に印加するように構成すると共に、上記抵抗とダ
イオードとの接続点とアースとの間にAGC用の
トランジスタを接続するように構成したことを特
徴とするAGC回路。
1 Configure the power supply voltage to be applied to the amplifier circuit from the cathode of the diode through a series circuit consisting of a resistor and a diode, and connect an AGC transistor between the connection point of the resistor and diode and the ground. An AGC circuit characterized by being configured as follows.
JP59041571A 1984-03-05 1984-03-05 AGC circuit Granted JPS59167107A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP59041571A JPS59167107A (en) 1984-03-05 1984-03-05 AGC circuit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP59041571A JPS59167107A (en) 1984-03-05 1984-03-05 AGC circuit

Publications (2)

Publication Number Publication Date
JPS59167107A JPS59167107A (en) 1984-09-20
JPH0325047B2 true JPH0325047B2 (en) 1991-04-04

Family

ID=12612127

Family Applications (1)

Application Number Title Priority Date Filing Date
JP59041571A Granted JPS59167107A (en) 1984-03-05 1984-03-05 AGC circuit

Country Status (1)

Country Link
JP (1) JPS59167107A (en)

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5721379Y2 (en) * 1977-02-01 1982-05-10

Also Published As

Publication number Publication date
JPS59167107A (en) 1984-09-20

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