JPS6111908A - Magnetic head - Google Patents

Magnetic head

Info

Publication number
JPS6111908A
JPS6111908A JP13133084A JP13133084A JPS6111908A JP S6111908 A JPS6111908 A JP S6111908A JP 13133084 A JP13133084 A JP 13133084A JP 13133084 A JP13133084 A JP 13133084A JP S6111908 A JPS6111908 A JP S6111908A
Authority
JP
Japan
Prior art keywords
thermal expansion
magnetic
coefft
glass
magnetic head
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
JP13133084A
Other languages
Japanese (ja)
Inventor
Kazuhiko Okita
和彦 沖田
Junichi Horikawa
順一 堀川
Toshiharu Hoshi
星 敏春
Haruo Saji
佐治 晴夫
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 JP13133084A priority Critical patent/JPS6111908A/en
Publication of JPS6111908A publication Critical patent/JPS6111908A/en
Pending legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B5/00Recording by magnetisation or demagnetisation of a record carrier; Reproducing by magnetic means; Record carriers therefor
    • G11B5/127Structure or manufacture of heads, e.g. inductive
    • G11B5/187Structure or manufacture of the surface of the head in physical contact with, or immediately adjacent to the recording medium; Pole pieces; Gap features
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B5/00Recording by magnetisation or demagnetisation of a record carrier; Reproducing by magnetic means; Record carriers therefor
    • G11B5/127Structure or manufacture of heads, e.g. inductive
    • G11B5/187Structure or manufacture of the surface of the head in physical contact with, or immediately adjacent to the recording medium; Pole pieces; Gap features
    • G11B5/23Gap features

Landscapes

  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)

Abstract

PURPOSE:To obtain an image having good contrast by packing glass having the coefft. of thermal expansion larger than the coefft. of thermal expansion of the magnetic material constituting head chips to both sides of the track part of the head chips. CONSTITUTION:The glass having the coefft. of thermal expansion larger than the coefft. of thermal expansion of the magnetic material constituting the head chips 1 is used for molding glass 2 so that stress is exerted to a gap 3 in the direction of tightening the opposed surfaces thereof. More specifically, the movement of the magnetic walls around the gap 3, paricularly in the region (a) is limited and a fine magnetic domain is created by the compressive stress, by which the increase in the resonance frequency of the magnetic walls is made possible and the magnetic head having the reproduced output higher than heretofore in a 3-5MHz high frequency range is made obtainable. The reproduced output at the high frequency is thus increased and the image having much better contrast than heretofore is obtd.

Description

【発明の詳細な説明】 産業上の利用分野 本発明は、VTR等における磁気ヘッドに関するもので
ある。
DETAILED DESCRIPTION OF THE INVENTION Field of the Invention The present invention relates to a magnetic head for a VTR or the like.

従来例の構成とその問題点 従来、VTR映像用の記録・再生ヘッドの素材として、
主としてmn−Zn系単結晶フェライトが。
Conventional structure and its problems Traditionally, as a material for recording/playback heads for VTR video,
Mainly mn-Zn single crystal ferrite.

用いられている。それは、磁気ヘッドとして、一般的に
要求される特性、即ち透磁率μが大きいこと、飽和磁化
I’sが大きいこと、抗磁力Haが小さいこと、キュリ
一温度Tcが高いこと、それに加えて精密加工に耐え、
耐摩耗性に優れていることなど忙おいてMn−Zn’系
単結晶フェライトが満足すべき特性を備えていることに
よるものである。
It is used. This is due to the characteristics generally required for a magnetic head, namely, a large magnetic permeability μ, a large saturation magnetization I's, a small coercive force Ha, and a high Curie temperature Tc. Withstands processing,
This is because Mn-Zn' single crystal ferrite has satisfactory properties such as excellent wear resistance.

しかし°ながら、磁気ヘッドの再生出力は、ギャップ周
辺の加工法により大きく左右されることが一般によ〈知
られている。従って、トラック加工時の砥石の選択や、
トラックの画一にモールドするガラスの特性なども、磁
気ヘッドの性能を決める重要な要因といえるら従来は、
モールドガラスの選択の基準として耐摩耗性とか、フェ
ライトとの接着ガなどしか前置されなかった。そのため
磁気ヘッドの出力のバラツキが大きいとか、また映像の
配置再生をおこなった場合、コントラストが良いが、色
彩の再現性が悪いとか、その逆に色彩は良いが、コント
ラストが悪いというバラツキが目立った。
However, it is generally known that the reproduction output of a magnetic head is greatly influenced by the processing method around the gap. Therefore, the selection of grindstone during track machining,
Conventionally, the characteristics of the glass that is molded into the uniform track are also important factors that determine the performance of a magnetic head.
The only criteria for selecting molded glass were abrasion resistance and adhesion with ferrite. As a result, there may be large variations in the output of the magnetic head, or when playing back images, the contrast may be good but the color reproducibility may be poor, or conversely, the colors may be good but the contrast may be poor. .

発明の目的 本発明は、以上のような従来の問題点を解決するために
なされたもので、本発明の磁気ヘッドを用いて、映像の
記録・再生を行い、従来よりはるかに優れた、特にコン
トラストの良い画像を得ることを目的とするものである
Purpose of the Invention The present invention has been made in order to solve the above-mentioned conventional problems.The magnetic head of the present invention is used to record and reproduce images, and the present invention is far superior to the conventional one, and in particular, The purpose is to obtain an image with good contrast.

発明の構成 本発明は上記目的を達成するもので、ヘッドチップのト
ラック部分の両側に、ヘッドチップの磁性材料の熱膨張
係数より大きい熱膨張係数を有するガラスを充填してな
る磁気ヘラ下を提供するものである。
SUMMARY OF THE INVENTION The present invention achieves the above object, and provides a magnetic spatula bottom in which both sides of a track portion of a head chip are filled with glass having a coefficient of thermal expansion larger than the coefficient of thermal expansion of the magnetic material of the head chip. It is something to do.

実施例の説明 以下に本発明の一実施例を図面を用いて説明する0 第1図は本発明の磁気ヘッドの基本構造を示すもので(
8)は平面図、(句は正面図を示す。
DESCRIPTION OF EMBODIMENTS An embodiment of the present invention will be described below with reference to the drawings. FIG. 1 shows the basic structure of the magnetic head of the present invention.
8) indicates a plan view, (the phrase indicates a front view.

同図において、1は例えば単結晶フエ・ライトよりなる
ヘッドテップ、2はトラックの両側に設けられたモール
ドガラス、3はギャップ、4はトラックであシ、モール
ドガラス2に、ヘッドテップ1の磁性材料の熱膨張係数
より大きい熱膨張係数を有したガラスを使用しギャップ
3の対向面を締めつける方向に応力が加わるようにした
ものである。
In the figure, 1 is a head tip made of, for example, single-crystal Felite, 2 is a molded glass provided on both sides of the track, 3 is a gap, 4 is a track, Glass having a coefficient of thermal expansion larger than that of the material is used so that stress is applied in the direction of tightening the opposing surfaces of the gap 3.

即ち、ギャップ3周辺特にaの領域における磁壁の移動
を制限し、且つ圧縮応力によシ微細な磁区を作ることに
より、磁壁の共鳴周波数を高くすることが可能となり、
高周波領域31viHz〜5MHzで従来よりも高い再
生出力を有した磁気ヘッドを得ることを可能としたもの
である。
That is, by restricting the movement of the domain wall around the gap 3, especially in the region a, and by creating fine magnetic domains by compressive stress, it is possible to increase the resonance frequency of the domain wall.
This makes it possible to obtain a magnetic head that has a higher reproduction output than the conventional one in the high frequency range of 31 viHz to 5 MHz.

第2図は熱膨張係数が110×10−7/℃のMn−Z
n系単結晶フェライトをヘッドチップの磁性材料として
用い、モールドガラスに磁性材料と同じ熱膨張係数のも
のを用いた比較例と、118×107℃である本実施例
の2種を用いた時における、再生出力の周波数特性の比
較を示す。5が比較例である磁性材料と同じ熱膨張係数
を有するモールドガラスを用いた磁気ヘッドの再生出力
である。100KH2における再生出力をodBとした
6 6.MHz付近では一11dB以下の再生出力であ
る。これに対し、6が本実施例である118゛×10−
7/℃の熱膨張係数を有したモールドガラスを使用した
磁気ヘッドの再生出力である。本実施例は5MHzMH
z付近−4dB前後″′c、あシ、磁性材料と同じ熱膨
張係数のモールドガラスを使用した場合に比べydB前
後高い再生出力が得られた0 第2の実施例として、熱膨張係数が128×10−7/
℃であるモールドガラスを使用した磁気ヘッドに?いて
検討した。その再生出力の周波数特性を第3図に示す。
Figure 2 shows Mn-Z with a thermal expansion coefficient of 110 x 10-7/°C.
When using two types: a comparative example in which n-type single crystal ferrite was used as the magnetic material of the head chip and a mold glass with the same thermal expansion coefficient as the magnetic material, and the present example, which was 118 × 107 °C. , shows a comparison of the frequency characteristics of the reproduced output. 5 is the reproduction output of a magnetic head using molded glass having the same coefficient of thermal expansion as the magnetic material as a comparative example. The playback output at 100KH2 is expressed as odB6 6. In the vicinity of MHz, the reproduction output is -11 dB or less. On the other hand, 6 is the present example, which is 118゛×10−
This is the reproduction output of a magnetic head using molded glass with a coefficient of thermal expansion of 7/°C. In this example, the frequency is 5MHz.
Around z, around -4 dB"'c, the reproducing output was around y dB higher than when molded glass with the same coefficient of thermal expansion as the magnetic material was used.0 As a second example, the coefficient of thermal expansion was 128. ×10-7/
℃ for magnetic heads using molded glass? There were examined. The frequency characteristics of the reproduced output are shown in FIG.

7が本実施例であシ、5が比較例である。本実施例・は
5MHzMHz付近材料と同じ熱膨張係数のモールドガ
ラスを使用した磁気ヘッド(比較例)の再生出力6に比
べedB以上高い再生出力が得られた。
7 is the present example, and 5 is the comparative example. In this example, a reproduction output higher than edB was obtained compared to the reproduction output 6 of a magnetic head (comparative example) using molded glass having the same coefficient of thermal expansion as the material around 5 MHz MHz.

これら実施例においてモールドガラスの熱膨張係数が1
35 X 19−’/ ℃以上になると、低域の再生出
力が低下してしまった。
In these examples, the coefficient of thermal expansion of the molded glass is 1
When the temperature exceeded 35 x 19-'/°C, the low-frequency reproduction output decreased.

従って、コントラストの良い画像を得るためには、ヘッ
ドチップの磁性材料の熱膨張係数より、+20%前後以
内のモールドガラスを選択テることが望まし砂。
Therefore, in order to obtain an image with good contrast, it is desirable to select a molded glass whose thermal expansion coefficient is within about +20% of the thermal expansion coefficient of the magnetic material of the head chip.

発明の効果  。Effect of the invention .

以上説明したように本発明は、磁気ヘッドチップの磁性
材料の熱膨張係数よシ大きい熱膨張係数を有するモール
ドガラスをヘッドチップのトラック部分の両側に充填す
ることに゛よシ高周波における再生出力を大きくするこ
とが可能となり、この磁気ヘッドを用いて、映像信号の
記録再生を行うと従来よシはるかにコントラストの良い
画像が得られ高精細VTRや高品位VTRなどに使用さ
れ、社会的効果は著大で、ある。
As explained above, the present invention improves reproduction output at high frequencies by filling both sides of the track portion of the head chip with molded glass having a coefficient of thermal expansion larger than that of the magnetic material of the magnetic head chip. When recording and reproducing video signals using this magnetic head, images with much better contrast than before can be obtained, and it is used in high-definition VTRs and high-quality VTRs, and has no social effects. It is significant and there is.

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

第1図は、本発明の基本構造である磁気ヘッドの概略図
、第2図及び第3図は、本発明の磁気ヘッドの再生出力
の周波数特性を示す図である。 1・・・・・・ヘッドチップ、2・・・・・・モールド
ガラス、3・・・・・・ギャップ、4・・・・・・トラ
ック。 代理人の氏名 弁理士 中 尾 敏 男 ほか1名第1
図 111 う2丈と 1白費7(sg) −−一一一一−
う一−第3図 T@慎叙(m)□
FIG. 1 is a schematic diagram of a magnetic head which is the basic structure of the present invention, and FIGS. 2 and 3 are diagrams showing frequency characteristics of reproduction output of the magnetic head of the present invention. 1...Head chip, 2...Mold glass, 3...Gap, 4...Track. Name of agent: Patent attorney Toshio Nakao and 1 other person No. 1
Figure 111 U2 length and 1 white cost 7 (sg) --1111-
Uichi - Figure 3 T @ Shinjo (m) □

Claims (1)

【特許請求の範囲】[Claims] ヘッドチップのトラック部分の両側に、前記ヘッドチッ
プを構成する磁性材料の熱膨張係数より大きい熱膨張係
数を有するガラスを充填してなることを特徴とする磁気
ヘッド。
A magnetic head characterized in that both sides of a track portion of a head chip are filled with glass having a coefficient of thermal expansion larger than that of a magnetic material constituting the head chip.
JP13133084A 1984-06-26 1984-06-26 Magnetic head Pending JPS6111908A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP13133084A JPS6111908A (en) 1984-06-26 1984-06-26 Magnetic head

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP13133084A JPS6111908A (en) 1984-06-26 1984-06-26 Magnetic head

Publications (1)

Publication Number Publication Date
JPS6111908A true JPS6111908A (en) 1986-01-20

Family

ID=15055421

Family Applications (1)

Application Number Title Priority Date Filing Date
JP13133084A Pending JPS6111908A (en) 1984-06-26 1984-06-26 Magnetic head

Country Status (1)

Country Link
JP (1) JPS6111908A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0421692A2 (en) * 1989-10-05 1991-04-10 International Business Machines Corporation Magnetic data storage apparatus

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0421692A2 (en) * 1989-10-05 1991-04-10 International Business Machines Corporation Magnetic data storage apparatus

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