JPS61145923A - Read circuit of signal from magnetic recording disc device - Google Patents

Read circuit of signal from magnetic recording disc device

Info

Publication number
JPS61145923A
JPS61145923A JP59269040A JP26904084A JPS61145923A JP S61145923 A JPS61145923 A JP S61145923A JP 59269040 A JP59269040 A JP 59269040A JP 26904084 A JP26904084 A JP 26904084A JP S61145923 A JPS61145923 A JP S61145923A
Authority
JP
Japan
Prior art keywords
output
flop
flip
capacitor
constant current
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.)
Pending
Application number
JP59269040A
Other languages
Japanese (ja)
Inventor
Yoshihiko Fukuoka
福岡 義彦
Takeshi Shimamoto
嶋本 健
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 JP59269040A priority Critical patent/JPS61145923A/en
Publication of JPS61145923A publication Critical patent/JPS61145923A/en
Pending legal-status Critical Current

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  • Digital Magnetic Recording (AREA)
  • Signal Processing For Digital Recording And Reproducing (AREA)

Abstract

PURPOSE:To improve the error rate and to reduce number of components by using a constant current charge/discharge circuit whose discharge current is 1-10 times the charge current for a monostable multivibrator so as to attain amplification without distortion. CONSTITUTION:In applying a signal A to a set terminal of an RS flip-flop 10 as an external trigger signal, an output C goes to an H level. A terminal voltage D of a capacitor 12 rises linearly and when it reaches a reference voltage VR of a comparator 13, the output of the comparator 13 is inverted and goes to an H level. Since an output of the comparator 13 is given to a reset input terminal of the RS flip-flop 10, an output of the RS flip-flop 10 goes to an L level, a constant current charge/discharge 11 acts like a constant current discharge circuit, the terminal voltage of the capacitor 12 is descended linearly with a slope being 1-10 times the slope at charging, and when the voltage is less than the reference voltage VR of the comparator 13, the output of the comparator 13 goes to an L level and the state restores to the initial state. Thus, in using an output waveform C of the RS flip-flop 10 as an output, the entire circuit acts like a monostable multivibrator.

Description

【発明の詳細な説明】 産業上の利用分野 本発明は磁気記録ディスク装置における信号読み出し回
路のうち読み出しデータ出力およびタイム・ドメイン書
フィルタに用いられる単安定マルチバイブレータに関す
るものである。
DETAILED DESCRIPTION OF THE INVENTION Field of the Invention The present invention relates to a monostable multivibrator used in a read data output and time domain write filter in a signal read circuit in a magnetic recording disk device.

従来の技術 従来の磁気記録ディスク装置信号読み出し回路に使われ
ている単安定マルチバイブレータはTTLのゲートと電
気抵抗、蓄電器により構成されていた。以下、図面を参
照しながらこれを説明する。
2. Description of the Related Art A monostable multivibrator used in a signal reading circuit of a conventional magnetic recording disk device is composed of a TTL gate, an electric resistance, and a capacitor. This will be explained below with reference to the drawings.

第3図は従来の磁気記録ディスク装置信号読み出し回路
如使われている単安定マルチバイブレータの構成図であ
る。第3図において1はNORゲート、2はインバータ
、3は蓄電器で4は電気抵抗である。NORゲート10
入力の1つはインバータ2の出力とし、外部からのトリ
ガ信号を他の入力とする0NORゲート1の出力は蓄電
器3を介しインバータ2の入力に接続される。またイン
バータ2の入力は電気抵抗4で電源に接続されている。
FIG. 3 is a block diagram of a monostable multivibrator used in a conventional magnetic recording disk drive signal readout circuit. In FIG. 3, 1 is a NOR gate, 2 is an inverter, 3 is a capacitor, and 4 is an electric resistance. NOR gate 10
One of the inputs is the output of the inverter 2, and the output of the 0NOR gate 1, which has an external trigger signal as the other input, is connected to the input of the inverter 2 via the capacitor 3. Further, the input of the inverter 2 is connected to a power source through an electric resistor 4.

以上のように構成された単安定マルチバイブレータの動
作についてその動作を説明する。インバータ2の入力が
初期状態Hレベルであるとする。
The operation of the monostable multivibrator configured as above will be explained. Assume that the input of the inverter 2 is initially at H level.

NORゲート1の入力に第4図Aのトリガ信号が印加さ
れるとNORゲート1の出力は第4図BのようにLレベ
ルにおちる。すると、蓄電器3の両端の電荷は急に動け
ないからインバータ2の入力の電位は最初Lレベルにお
ち、その後蓄電器3は電気抵抗4を通じて充電されるた
め、再び電位は上昇する。従って、インバータ2の出力
は入力の電位が閾値をこすまでHレベルになる。閾値を
こすとインバータ2の出力は再びLレベルにおち、その
結果NORゲート1の出力がHレベルに上がる。従って
、第3図A、B、C,D各点の電圧波形は第4図のよう
になり、NORゲート1の出力またはインバータ2の出
力から得られる信号は、トリガ信号が印加されてから、
蓄電器3の容量値と電気抵抗4で定まる一定のパルス幅
をもつパルス出力信号となり、単2安定マルチバイブレ
ータとして磁気記録ディスク装置信号読み出し回路の中
で用いられていた(例えば、モトo−ラLineara
nd Intertace Integrated C
1rcuitsデ一タブツクM03470 P )項)
When the trigger signal shown in FIG. 4A is applied to the input of the NOR gate 1, the output of the NOR gate 1 falls to the L level as shown in FIG. 4B. Then, since the charges at both ends of the capacitor 3 cannot suddenly move, the potential at the input of the inverter 2 first falls to the L level, and then the capacitor 3 is charged through the electrical resistor 4, so the potential rises again. Therefore, the output of the inverter 2 becomes H level until the input potential crosses the threshold value. When the threshold value is exceeded, the output of the inverter 2 falls to the L level again, and as a result, the output of the NOR gate 1 rises to the H level. Therefore, the voltage waveforms at points A, B, C, and D in FIG. 3 are as shown in FIG. 4, and the signal obtained from the output of NOR gate 1 or the output of inverter 2 is
It becomes a pulse output signal with a constant pulse width determined by the capacitance value of the capacitor 3 and the electric resistance 4, and is used as an AA stable multivibrator in the signal readout circuit of a magnetic recording disk device (for example, Motorola Lineara
nd Intertace Integrated C
1rcuits device tab M03470P)
.

発明が解決しようとする問題点 しかしながら上記のような構成では次にのべるような問
題点を有していた。蓄電器3けその容量値と容量値の選
択性からICの外部部品として外付けされる。そのため
、第3図B点C点はICのピンとして外部に出るので、
必然的にパッド、ピン間に浮遊容量をもつことになる。
Problems to be Solved by the Invention However, the above configuration has the following problems. The three capacitors are attached externally as external components of the IC due to their capacitance values and selectivity of capacitance values. Therefore, point B and point C in Figure 3 go outside as IC pins, so
Inevitably, there will be stray capacitance between the pad and pin.

するとトリガパルスが印加されて第3図B点の電位がL
レベルにおちると浮遊容量が存在しなければ、電気抵抗
4で決まる電流値をもつ電流しか流れないが、浮遊容量
があると電気抵抗4で決まる電流値よりはるかに大きな
値をもつパルス状の電流が流れる。
Then, a trigger pulse is applied and the potential at point B in Figure 3 becomes L.
If there is no stray capacitance, only a current with a current value determined by electrical resistance 4 will flow, but if there is stray capacitance, a pulsed current with a current value much larger than the current value determined by electrical resistance 4 will flow. flows.

この電流はNORゲート1のグランド線を通って流れる
ので、このゲートが磁気ヘッドより得られた信号を増幅
する増幅器と同一のチップ上に集積化されていると、チ
ップ内の静電結合やグランド線を通じて、増幅器の出力
信号に干渉する。この結果、磁気ヘッドから得られる信
号が歪んで増幅され、読み出しデータに誤りを生じる一
因となる。
This current flows through the ground line of NOR gate 1, so if this gate is integrated on the same chip as the amplifier that amplifies the signal obtained from the magnetic head, the capacitive coupling within the chip and the ground through the line and interfere with the amplifier's output signal. As a result, the signal obtained from the magnetic head is distorted and amplified, contributing to errors in read data.

以上のように従来例ではこの影響を小さくするよう実装
上細心の注意を払わねば誤り率が極端に悪化するという
問題点を有していた。
As described above, the conventional example has the problem that unless careful attention is paid in implementation to reduce this influence, the error rate will be extremely poor.

本発明は上記問題点に鑑み、浮遊容量により生じるパル
ス状の電流を根本的に取り除く単安定マルチバイブレー
タを使った磁気記録ディスク装置信号読み出し回路を提
供するものである。
In view of the above problems, the present invention provides a signal readout circuit for a magnetic recording disk device using a monostable multivibrator that fundamentally eliminates pulsed currents caused by stray capacitance.

問題点を解決するだめの手段 上記問題点を解決するために本発明の磁気記録ディスク
装置信号読み出し回路はRSSフリップフロップ放電電
流が充電電流の1〜10倍の範囲にある定電流充放電回
路と蓄電器と比較器を具備し、前記RSフリップフロッ
プの一入力と前記比較器の出力を接続し、前記RSフリ
ップフロップ出力の論理信号によって充電放電を制御す
るよう前記RSフリップ70.プ出力端子を前記定電流
充放電回路に接続し、一端を交流的に接地された前記蓄
電器を定電流でなめらかに充放電するよう前記定電流充
放電回路と前記蓄電器を接続し、かつこの接続点の電圧
を基準電圧と比較するよう前記比較器を接続した構成に
よる単安定マルチバイブレータを用いたものである。
Means for Solving the Problems In order to solve the above problems, the magnetic recording disk device signal readout circuit of the present invention uses a constant current charging/discharging circuit in which the RSS flip-flop discharge current is in the range of 1 to 10 times the charging current. The RS flip-flop 70 is equipped with a capacitor and a comparator, one input of the RS flip-flop is connected to the output of the comparator, and charging and discharging are controlled by a logic signal of the output of the RS flip-flop. The output terminal of the capacitor is connected to the constant current charging/discharging circuit, and the constant current charging/discharging circuit and the capacitor are connected so that the capacitor, whose one end is grounded in an alternating current manner, is smoothly charged and discharged with a constant current. A monostable multivibrator is used in which the comparator is connected to compare the voltage at a point with a reference voltage.

作  用 本発明は上記した構成によって外部からトリガ信号が加
わると蓄電器を定電流で充電し、蓄電器の端子電圧が比
較器の基準電圧に達すると定電流でなめらかに放電し始
め、この間の時間幅をもつパルスを出力するので、蓄電
器の端子電圧の変化は連続的であり、従ってパルス的な
瞬時電流は根本的に流れない。
Function: With the above-described configuration, the present invention charges the capacitor with a constant current when a trigger signal is applied from the outside, and when the terminal voltage of the capacitor reaches the reference voltage of the comparator, it starts discharging smoothly with a constant current, and the time width during this period is Since it outputs a pulse with , the change in the terminal voltage of the capacitor is continuous, and therefore no pulse-like instantaneous current fundamentally flows.

実施例 以下本発明の一実施例の磁気記録ディスク装置信号読み
出し回路について、図面を参照しながら説明する。第1
図は本発明の磁気記録ディスク装装置信号読み出し回路
に使用される単安定マルチバイブレータの一実施例を示
す回路図である。第1図において10はRSフリップフ
ロ、プ、11は放電電流が充電電流の1〜10倍の範囲
にある定電流充放電回路、12は蓄電器、13は比較器
で、RSフリフプ70ツブ10の出力は定電流充放電回
路11の充電放電をスイッチングするよう接続され、定
電流充放電回路11は蓄電器12を定電流で充電および
放電するよう接続され、蓄電器12の他の端子は接地さ
れている。そして比較器13は蓄電器12の端子電圧を
基準電圧vRと比較するよう接続され、比較器13の出
力はRSフリップフロップ1oのリセット端子に接続さ
れている。
Embodiment Hereinafter, a magnetic recording disk device signal reading circuit according to an embodiment of the present invention will be described with reference to the drawings. 1st
The figure is a circuit diagram showing an embodiment of a monostable multivibrator used in the signal reading circuit of the magnetic recording disk drive device of the present invention. In Figure 1, 10 is an RS flip-flop, 11 is a constant current charging/discharging circuit whose discharge current is in the range of 1 to 10 times the charging current, 12 is a capacitor, 13 is a comparator, and the output of RS flip-flop 70 is 10. is connected to switch charging and discharging of the constant current charging/discharging circuit 11, and the constant current charging/discharging circuit 11 is connected to charge and discharge the capacitor 12 with a constant current, and the other terminal of the capacitor 12 is grounded. Comparator 13 is connected to compare the terminal voltage of capacitor 12 with reference voltage vR, and the output of comparator 13 is connected to the reset terminal of RS flip-flop 1o.

以上のように構成された磁気記録ディスク装置信号読み
出し回路について、以下第1図および第2図を用いてそ
の動作を説明する。第2図は第1図ア〜工各点の電圧波
形を示すものである。最初RSフリップフロップ10の
出力がLレベルにあるとする。第2図アの信号を外部ト
リガ信号としてRSフリップフロップ1oのセット端子
に印加すると出力は第2図イのようにHレベルになる。
The operation of the magnetic recording disk device signal reading circuit configured as described above will be explained below with reference to FIGS. 1 and 2. FIG. 2 shows voltage waveforms at each point in FIG. 1. Assume that the output of the RS flip-flop 10 is initially at L level. When the signal shown in FIG. 2A is applied as an external trigger signal to the set terminal of the RS flip-flop 1o, the output becomes H level as shown in FIG. 2B.

すると定電流充放電回路11は蓄電器12を定電流充電
し始め、蓄電器12の端子電圧は第2図工のように直線
的に上昇し、比較器13の基準電圧vRに達すると比較
器13の出力は反転しHレベルになる。比較器13の出
力はRSフリップフロップ10のリセット入力端子に接
続されているので、RSフリップフロップ1oの出力は
Lレベルになり、定電流充放電回路11は定電流放電回
路として働き蓄電器12の端子電圧は今度は充電時の傾
斜の1〜10倍の傾斜でもって直線的に下降し、比較器
130基準電圧vRを下がると比較器13の出力はLレ
ベルになり、初期状態に戻る。
Then, the constant current charging/discharging circuit 11 starts charging the capacitor 12 with a constant current, and the terminal voltage of the capacitor 12 increases linearly as shown in Figure 2, and when it reaches the reference voltage vR of the comparator 13, the output of the comparator 13 changes. is inverted and becomes H level. Since the output of the comparator 13 is connected to the reset input terminal of the RS flip-flop 10, the output of the RS flip-flop 1o becomes L level, and the constant current charging/discharging circuit 11 functions as a constant current discharging circuit and the terminal of the capacitor 12 The voltage then falls linearly with a slope that is 1 to 10 times the slope during charging, and when it drops below the reference voltage vR of the comparator 130, the output of the comparator 13 becomes L level, returning to the initial state.

従って、R87リツプ70ツブ1oの出力波形(第2図
つの波形)を出力にとれば、単安定マルチバイブレータ
として機能する。
Therefore, if the output waveform of the R87 lip 70 tube 1o (the waveform in FIG. 2) is taken as the output, it functions as a monostable multivibrator.

以上のように本実施例によれば、蓄電器12を放電電流
が充電電流の1〜10倍の範囲にある定電流充放電回路
を設けることにより、蓄電器12の端子電圧は直線的に
なめらかにしか変化しない。
As described above, according to this embodiment, by providing a constant current charging/discharging circuit in which the discharging current is in the range of 1 to 10 times the charging current for the capacitor 12, the terminal voltage of the capacitor 12 can only be linearly and smoothly. It does not change.

その結果、定電流充放電回路にパルス状の瞬時電流が流
れず、磁気ヘッドから得られる信号を増幅する増幅器と
この単安定マルチバイブレータが同一チップ上に集積さ
れている場合、静電結合やグランド線を通じて増幅器に
干渉することはない。
As a result, no pulsed instantaneous current flows in the constant current charge/discharge circuit, and if the amplifier that amplifies the signal obtained from the magnetic head and this monostable multivibrator are integrated on the same chip, capacitive coupling and ground There will be no interference with the amplifier through the line.

その結果、従来例のように実装上格段に注意を払わなく
ても、単安定マルチバイブレータの雑音が増幅器の出力
を歪ませるという現象はおこらず、磁気記録ディスク装
置の誤り率を改善するという効果が得られる。
As a result, the noise of the monostable multivibrator does not distort the output of the amplifier, which is the case in the conventional case, without having to pay special attention to implementation, and this has the effect of improving the error rate of magnetic recording disk devices. is obtained.

発明の効果 以上のように本発明は、磁気記録ディスク装置信号読み
出し回路に使用される単安定マルチバイブレータに放電
電流が充電電流の1〜10倍の範囲にある定電流充放電
回路を用いているため、蓄電器の端子電圧の変化がなめ
らかになり、その結果、充放電のタイミングでパルス状
の大電流が流れない。従って、磁気ヘッドから得られる
信号を増幅する増幅器とこの単安定マルチバイブレータ
が同一チップ上に集積化されていても、増幅器の出力は
単安定マルチバイブレータの影響を受けることなく、歪
みのない増幅を行うことができる。
Effects of the Invention As described above, the present invention uses a constant current charging/discharging circuit in which the discharging current is in the range of 1 to 10 times the charging current for a monostable multivibrator used in a magnetic recording disk device signal readout circuit. Therefore, the terminal voltage of the capacitor changes smoothly, and as a result, a large pulsed current does not flow at the timing of charging and discharging. Therefore, even if the amplifier that amplifies the signal obtained from the magnetic head and this monostable multivibrator are integrated on the same chip, the output of the amplifier is not affected by the monostable multivibrator and can be amplified without distortion. It can be carried out.

このため磁気記録ディスク装置として評価した時、誤り
率を向上させるという効果を有する。また、集積化した
場合を考えると従来では外部端子として二端子必要であ
ったのが、一端子ですむという効果もあり、さらに外付
は部品として従来では電気抵抗と蓄電器の二つが必要で
あったのが、本実施例では蓄電器だけですむという部品
点数軽減の効果も生じる。
Therefore, when evaluated as a magnetic recording disk device, it has the effect of improving the error rate. In addition, considering the case of integration, there is an effect that only one terminal is needed as an external terminal instead of two, and in addition, two external components, an electrical resistor and a capacitor, are required in the past. However, this embodiment also has the effect of reducing the number of parts because only the capacitor is required.

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

第1図は本発明の一実施例における磁気記録ディスク装
置信号読み出し回路に使用される単安定マルチバイブレ
ータの回路図、第2図は第1図ア〜工点の電圧波形図、
第3図は従来の磁気記録ディスク装置信号読み出し回路
に使用されている単安定マルチバイブレータの回路図、
第4図は第3図A−D点の電圧波形図である。 1・・・・・・NORゲ−)、2・・・・・・インバー
タ、3゜12・・・・・・蓄電器、4・・・・・・電気
抵抗、10・・・・・・R87リツプ70.プ、11・
・・・・・定電流充放電回路、1;3・・・・・・比較
器。 代理人の氏名 弁理士 中 尾 敏 男 ほか1名第1
図 第2図
FIG. 1 is a circuit diagram of a monostable multivibrator used in a magnetic recording disk device signal readout circuit in an embodiment of the present invention, and FIG. 2 is a voltage waveform diagram at points A to A in FIG.
Figure 3 is a circuit diagram of a monostable multivibrator used in a conventional magnetic recording disk device signal readout circuit.
FIG. 4 is a voltage waveform diagram at points A-D in FIG. 3. 1... NOR game), 2... Inverter, 3゜12... Capacitor, 4... Electric resistance, 10... R87 Lip 70. P, 11.
... Constant current charging/discharging circuit, 1; 3... Comparator. Name of agent: Patent attorney Toshio Nakao and 1 other person No. 1
Figure 2

Claims (1)

【特許請求の範囲】[Claims] RSフリップフロップと放電電流が充電電流の1〜10
倍の範囲にある定電流充放電回路と蓄電器と比較器を具
備し、前記RSフリップフロップの一入力と前記比較器
の出力を接続し、前記RSフリップフロップ出力の論理
信号によって前記定電流充放電回路の充電放電を制御す
るように前記RSフリップフロップ出力端子を前記定電
流充放電回路に接続し、前記蓄電器の一端を交流的に接
地し、前記定電流充放電回路により前記蓄電器を充放電
するように前記定電流充放電回路に前記蓄電器を接続し
、前記蓄電器の前記定電流充放電回路に接続された端子
の電圧を基準電圧と比較するよう前記比較器を接続して
、前記RSフリップフロップの他の入力端子にトリガ信
号を加えることにより前記RSフリップフロップの出力
端子より任意のパルス幅をもつ信号を取り出す回路と、
磁気ヘッドの出力信号増幅回路が一つの半導体チップ上
に構成された磁気記録ディスク装置信号読み出し回路。
RS flip-flop and discharge current is 1 to 10 times higher than charging current
The constant current charging/discharging circuit is equipped with a constant current charging/discharging circuit, a capacitor, and a comparator in a double range, and one input of the RS flip-flop and the output of the comparator are connected, and the constant current charging/discharging circuit is provided with a logic signal of the output of the RS flip-flop. The RS flip-flop output terminal is connected to the constant current charging/discharging circuit so as to control charging/discharging of the circuit, one end of the capacitor is grounded in an alternating current manner, and the capacitor is charged/discharged by the constant current charging/discharging circuit. The capacitor is connected to the constant current charging/discharging circuit, the comparator is connected to compare the voltage of the terminal of the capacitor connected to the constant current charging/discharging circuit with a reference voltage, and the RS flip-flop is connected to the capacitor. a circuit for extracting a signal having an arbitrary pulse width from the output terminal of the RS flip-flop by applying a trigger signal to the other input terminal of the RS flip-flop;
A magnetic recording disk device signal readout circuit in which a magnetic head output signal amplification circuit is constructed on one semiconductor chip.
JP59269040A 1984-12-19 1984-12-19 Read circuit of signal from magnetic recording disc device Pending JPS61145923A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP59269040A JPS61145923A (en) 1984-12-19 1984-12-19 Read circuit of signal from magnetic recording disc device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP59269040A JPS61145923A (en) 1984-12-19 1984-12-19 Read circuit of signal from magnetic recording disc device

Publications (1)

Publication Number Publication Date
JPS61145923A true JPS61145923A (en) 1986-07-03

Family

ID=17466835

Family Applications (1)

Application Number Title Priority Date Filing Date
JP59269040A Pending JPS61145923A (en) 1984-12-19 1984-12-19 Read circuit of signal from magnetic recording disc device

Country Status (1)

Country Link
JP (1) JPS61145923A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5311150A (en) * 1992-09-18 1994-05-10 Tektronix, Inc. Convertible oscillator circuit

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5647123A (en) * 1979-09-25 1981-04-28 Toshiba Corp Monostable multivibrator
JPS5854721A (en) * 1981-09-28 1983-03-31 Hitachi Ltd Monostable multivibrator

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5647123A (en) * 1979-09-25 1981-04-28 Toshiba Corp Monostable multivibrator
JPS5854721A (en) * 1981-09-28 1983-03-31 Hitachi Ltd Monostable multivibrator

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5311150A (en) * 1992-09-18 1994-05-10 Tektronix, Inc. Convertible oscillator circuit

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