JPS6055220A - Measured data storage device in length measuring device with digital display - Google Patents

Measured data storage device in length measuring device with digital display

Info

Publication number
JPS6055220A
JPS6055220A JP16295383A JP16295383A JPS6055220A JP S6055220 A JPS6055220 A JP S6055220A JP 16295383 A JP16295383 A JP 16295383A JP 16295383 A JP16295383 A JP 16295383A JP S6055220 A JPS6055220 A JP S6055220A
Authority
JP
Japan
Prior art keywords
measurement
data
digital display
data storage
measured value
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
JP16295383A
Other languages
Japanese (ja)
Inventor
Noboru Takahara
高原 昇
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.)
Mitsutoyo Manufacturing Co Ltd
Original Assignee
Mitsutoyo Manufacturing 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 Mitsutoyo Manufacturing Co Ltd filed Critical Mitsutoyo Manufacturing Co Ltd
Priority to JP16295383A priority Critical patent/JPS6055220A/en
Priority to DE19843432511 priority patent/DE3432511A1/en
Priority to US06/646,979 priority patent/US4730247A/en
Priority to GB08422408A priority patent/GB2146150B/en
Publication of JPS6055220A publication Critical patent/JPS6055220A/en
Priority to GB08618016A priority patent/GB2179184B/en
Pending legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F15/00Digital computers in general; Data processing equipment in general
    • G06F15/02Digital computers in general; Data processing equipment in general manually operated with input through keyboard and computation using a built-in program, e.g. pocket calculators
    • G06F15/025Digital computers in general; Data processing equipment in general manually operated with input through keyboard and computation using a built-in program, e.g. pocket calculators adapted to a specific application
    • G06F15/0275Digital computers in general; Data processing equipment in general manually operated with input through keyboard and computation using a built-in program, e.g. pocket calculators adapted to a specific application for measuring
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01BMEASURING LENGTH, THICKNESS OR SIMILAR LINEAR DIMENSIONS; MEASURING ANGLES; MEASURING AREAS; MEASURING IRREGULARITIES OF SURFACES OR CONTOURS
    • G01B3/00Measuring instruments characterised by the use of mechanical techniques
    • G01B3/18Micrometers
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/002Specific input/output arrangements not covered by G06F3/01 - G06F3/16
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/02Input arrangements using manually operated switches, e.g. using keyboards or dials
    • G06F3/0227Cooperation and interconnection of the input arrangement with other functional units of a computer

Landscapes

  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Human Computer Interaction (AREA)
  • Computing Systems (AREA)
  • Computer Hardware Design (AREA)
  • Length Measuring Devices With Unspecified Measuring Means (AREA)

Abstract

PURPOSE:To make it easy to confirm a measured value and to input the measured value to an external computer by adding a data identifying code to the meaured value. CONSTITUTION:The kinds of measured articles, the number of times of measurement of one kind of measured articles and the number of times of measurement of one measured article are set by switches 32, 34, 36 respectively. A data storage device 30 is put into a pocket, a digital display micrometer 10 is held by hand to execute measurement, and every completion of measurement of one measuring point, a switch 38 is operated to make a data identifying code and a measured value correspond and store these values in a storage part of the device 30. At the time, the date identifying code and the measured value are displayed on a display part 44. After completing the accumulation of data in the device 30, the device 30 is detached from a body 10 and connected to the external computer to read data.

Description

【発明の詳細な説明】 本発明は、デジタル表示副長器の測定T−タ記憶装置に
係り、特に、測定子に連結された、その変位を検出(る
エンコーダと、該エンコーダの出力信号を計数するカウ
ンタと、該カウンタの計数値を測定値として表示(るデ
ジタル表示器とを備えたデジタル表示副長器に用いるの
に好適な測定データ記憶装置に関づる。
DETAILED DESCRIPTION OF THE INVENTION The present invention relates to a measurement T-data storage device for a digital display sub-length device, and in particular to an encoder connected to a measuring head and detecting its displacement, and an encoder for counting the output signal of the encoder. The present invention relates to a measurement data storage device suitable for use in a digital display device having a counter and a digital display device that displays the counted value of the counter as a measurement value.

一般に、物体の長さ等を測定する測長器、例えばノギス
やマイクロメータにおいて、その本体に対する測定子の
移動量、コラムに対するスライダの移動量等のように、
相対移動づるものの移動量を測定する場合、例えば、光
源、メインスケール、インデックススケール及び光電変
換素子からなるエンコーダを副長器本体に組込み、測定
値をデジタル表示するようにした、所謂デジタル表示副
長器が知られている。
In general, in a length measuring instrument that measures the length of an object, such as a caliper or a micrometer, the amount of movement of the probe relative to the main body, the amount of movement of the slider relative to the column, etc.
When measuring the amount of movement of objects that move relative to each other, for example, a so-called digital display sub-scale instrument is used, in which an encoder consisting of a light source, a main scale, an index scale, and a photoelectric conversion element is incorporated into the main body of the sub-scale scale, and the measured value is displayed digitally. Are known.

このようなデジタル表示測長器によれば、測定値をアナ
ログ表示するようにしたアナログ表示副長器に比べて、
測定値の読取りが容易であり、熟練が不要である等の特
徴を有する。しかしながら、従来は、単にアナログ表示
目盛をデジ多ル表示器で置換えたにすぎず、測定値を外
部計算機等に入力して標準偏差等を算出し、品質管理に
利用しようとする場合には、デジタル表示器に表示され
た測定値を、一旦作業者が読取って台帳等に記載した上
で、再びその読取りデータを外部計算機に入力づる必要
があるという問題点を有していた。
According to such a digital display length measuring device, compared to an analog display sub length measuring device that displays measured values in analog,
It has the characteristics that the measured values are easy to read and no skill is required. However, in the past, the analog display scale was simply replaced with a digital multimeter display, and when the measured values were input into an external computer, etc. to calculate the standard deviation, etc., and were to be used for quality control, This method has a problem in that it is necessary for the operator to read the measured values displayed on the digital display, record them on a ledger, etc., and then input the read data into an external computer again.

前記のような問題点を解消するべく、測定値をデジタル
信号のまま外部出力できるようにされたデジタル表示副
長器も提案されているが、デジタル表示副長器と外部計
算機を直接接続づる必要があるため、次のような実用上
の問題点を有していた。即ち、測定場所が外部計算機の
設置条件に制約され、加工現場等から離れた測定場所ま
で被測定物を搬入出しなければならず、能率が悪い。尚
、外部計算機を簡易型として、加工現場に設置すること
も考えられるが、温度、振動、ノイズ等から実現困難で
あるだけでなく、処理能力が限定されてしまう。又、測
定作業は通常、間欠的に行われ、且つ長時間に及ぶので
、外部計算機の機能が長時だめの作業員の準備も必要で
ある。更に、演算結果は、通常リアルタイムでなく、後
にデータ解析し、以後の加工工程を適正化するための指
標とされ、或いは、作表、グラフ化されるのが一般的で
あるが、測定作業中、外部計I1機の割込み機能が占有
されてしまい、外部計算機本来の機能を充分に生かすこ
とができない。又、一般に、測定点は測定物品毎に変わ
り、同一物品の長時間測定は少いので、変更の都度、外
部計算機の操作が必要となり、そのための作業員が必要
となる。更に、測長器と接続された外部計算機の型式に
より請求められる演算結果が限定されてしまう。
In order to solve the above-mentioned problems, a digital display sub-length device that can output measured values externally as digital signals has been proposed, but it is necessary to connect the digital display sub-length device directly to an external computer. Therefore, it had the following practical problems. That is, the measurement location is limited by the installation conditions of the external computer, and the object to be measured must be transported to and from a measurement location remote from the processing site, which is inefficient. Although it is possible to install a simple external computer at the processing site, this is not only difficult to implement due to temperature, vibration, noise, etc., but also has limited processing capacity. Furthermore, since the measurement work is usually performed intermittently and over a long period of time, it is necessary to prepare a worker who cannot use the external computer for a long time. Furthermore, the calculation results are usually not real-time, but are generally used as indicators for later data analysis and optimization of subsequent processing steps, or tabulated or graphed, but they are not processed in real time. , the interrupt function of the external computer I1 is occupied, and the original functions of the external computer cannot be fully utilized. Furthermore, in general, the measurement point changes for each object to be measured, and long-term measurements of the same object are rare, so it is necessary to operate an external computer each time a change is made, which requires a worker. Furthermore, the calculation results that can be requested are limited depending on the type of external computer connected to the length measuring device.

前記の様な問題点を解消するべく、測定値を一時的に記
憶づる、いわゆるデータロガ−を用いることが考えられ
るが、汎用のデータロガ−を副長器のデータ集積に用い
lこのでは、装置が大型化し、特に携帯型のデジタル表
示副長器に用いるのには適していないという問題点を有
していた。
In order to solve the above-mentioned problems, it is possible to use a so-called data logger that temporarily stores measured values. The problem is that it is particularly unsuitable for use in portable digital display devices.

本発明は、前記従来の問題点を解消するべくなされたも
ので、データの入力や確認が容易であり、デジタル表示
副長器の測定値を集積するのに適した測定データ記憶装
置を提供することを目的とする。
The present invention has been made to solve the above-mentioned conventional problems, and provides a measurement data storage device that allows easy data input and confirmation and is suitable for accumulating measurement values of a digital display sub-length instrument. With the goal.

本発明は、デジタル表示副長器の測定データ記憶装置に
おいて、・測定物品の種別数を設定するための種別数設
定スイッチと、一種の測定物品の数゛を指定するための
物品数設定スイッチと、−個の測定物品の測定点数を指
定(るための測定点数設定スイッチと、デジタル表示副
長器の測定値を呼出づためのデータスイッチと、呼出さ
れた測定値に、物品種別、物品番号、測定箇所を含むデ
ータ識別符号を付すデータ識号手段と、前記データ識別
符号と共に測定値を表示するデータ表示手段と、前記デ
ータ識別符号と測定値を対応させて順次記憶するデータ
記憶手段と、該データ記憶手段の記憶内容を、外部計算
機の要求に応じて出力させるための出力手段とを一体的
に形成し、且つ、デジタル表示測長器と接続可能として
、前記目的を達成したものである。
The present invention provides a measurement data storage device for a digital display sub-length instrument, which includes: a type number setting switch for setting the number of types of measurement articles; an article number setting switch for specifying the number of one type of measurement article; - A measurement point setting switch for specifying the number of measurement points for each measurement item; a data switch for calling up the measured value of the digital display sub-length instrument; a data identification means for attaching a data identification code including a location; a data display means for displaying a measured value together with the data identification code; a data storage means for sequentially storing the data identification code and the measured value in correspondence; The above object is achieved by integrally forming an output means for outputting the stored contents of the storage means in response to a request from an external computer, and by making it connectable to a digital display length measuring device.

本発明は、品質管理データ等を計算づるに際して、測定
値を外部計算機にリアルタイムで入力する必要がほとん
どないことに着目してなされたもので、データスイッチ
でデジタル表示副長器から呼出された測定値に、物品種
別、物品番号、測定箇所を含むデータ識別符号を付して
データの入力を容易としたものである。又、データ識別
符号と共に測定値を表示して、データの確認を容易とし
たものである。更に、前記データ識別符号と測定値を対
応させてデータ記憶手段に順次記憶するようにして、副
長器と外部計算機を直接接続づることなく測定が行える
ようにし、更に、測定終了後、測定データ記憶装置のみ
を外部計算機と接続し、その要求に応じて記憶内容を読
出すようにして、測定値を外部計算機に極めて容易に入
力できるようにして、デジタル表示測長器に適した測定
データ記憶装置を実現したものである。
The present invention was made with the focus on the fact that when calculating quality control data, etc., there is almost no need to input measured values into an external computer in real time. A data identification code including the product type, product number, and measurement location is added to the data to facilitate data entry. Furthermore, the measured values are displayed together with the data identification code to facilitate data confirmation. Furthermore, the data identification code and the measured value are stored in the data storage means in sequence in correspondence with each other, so that measurement can be performed without directly connecting the sub-length instrument to an external computer. A measured data storage device suitable for a digital display length measuring device, in which only the device is connected to an external computer, and the stored contents are read out in response to the request, so that measured values can be inputted into the external computer extremely easily. This has been realized.

以下図面を参照して、本発明が採用された、デジタル表
示マイクロメータの測定データ記憶装置の実施例を詳細
に説明する。
DESCRIPTION OF THE PREFERRED EMBODIMENTS Hereinafter, embodiments of a measurement data storage device for a digital display micrometer to which the present invention is applied will be described in detail with reference to the drawings.

本実施例は、第1図及び第2図に示す如く、測定子12
に連結された、その変位を検出゛するための、検出部1
4A及び必要に応じて方向弁別回路や分割回路を含む波
形成形回路14Bを含むエンコーダ14と、該エンコー
ダ14の出力信号を可逆計数するhウンタ16と、該カ
ウンタ16の計数値をデジタル表示に適した信号に変J
!プる表示器駆動装置18と、該表示器駆動装置18に
よって駆動され、前記カウンタ16の計数値を測定値と
して表示するデジタル表示器20と、前記カウンタ16
の計数値やデジタル表示器20の表示値をホールドした
り、クリヤしたり、インチ−ミリ単位の切換えを行った
りするための制御部22とを備えたデジタル表示マイク
ロメータ10に用いられる電池駆動の携帯型測定データ
記憶装置30を、測定物品の種別数を設定するための種
別数設定スイッチ32と、1種の測定物品の数を指定り
るための物品数設定スイッチ34と、1個の測定物品の
測定点数を指定するための測定点数設定スイッチ36と
、デジタル表示マイクロメータ10呼出された測定値に
、物品種別F+、物品番号M1、測定個所Niを含むデ
ータ識別符号を付Jデータ識別手段を含む入出力部40
と、前記データ識別符号と測定値を対応させて順次記憶
するための、記憶内容を外部計算機の要求に応じて読出
すことが可能な記憶部42と、前記データ識別符号と共
に測定値を表示するデータ表示部44とから構成し、該
データ記憶部Wt30を、デジタル表示マイクロメータ
10と共に携帯可能な範囲内の長さのケーブル46を介
して、デジタル表示マイクロメータ10の本体と接続可
能としたものである。
In this embodiment, as shown in FIG. 1 and FIG.
a detection unit 1 connected to the
4A and a waveform shaping circuit 14B including a direction discrimination circuit and a dividing circuit as necessary, an h-counter 16 for reversibly counting the output signal of the encoder 14, and an h-counter 16 suitable for digital display of the counted value of the counter 16. The signal changed to J
! a digital display 20 that is driven by the display drive 18 and displays the counted value of the counter 16 as a measured value;
A battery-driven micrometer used in the digital display micrometer 10 is equipped with a control section 22 for holding and clearing the counted value of the digital display 20 and the display value of the digital display 20, and for switching between inches and millimeters. The portable measurement data storage device 30 includes a type number setting switch 32 for setting the number of types of measurement articles, an article number setting switch 34 for specifying the number of one type of measurement article, and one measurement item number setting switch 32 for setting the number of types of measurement articles. A measurement point setting switch 36 for specifying the number of measurement points of the article, and a digital display micrometer 10. A data identification means adds a data identification code including article type F+, article number M1, and measurement point Ni to the read measurement value. Input/output unit 40 including
a storage unit 42 for sequentially storing the data identification code and the measured value in correspondence and capable of reading the stored contents in response to a request from an external computer; and a storage unit 42 for displaying the measured value together with the data identification code. The data storage section Wt30 can be connected to the main body of the digital display micrometer 10 via a cable 46 having a length within a range that can be carried along with the digital display micrometer 10. It is.

前記データ記憶装置30は、記憶機能のみを有しており
、演算機能は有していない。
The data storage device 30 has only a storage function and does not have a calculation function.

前記記憶部42に対づるデータの集積は、例えば、第3
図に示1′ような形状の第1の測定物品F1の数M1が
100個、各測定物品の測定点数N1がA、B、CXD
の4点であり、又、第4図に示づような形状の第2の測
定物品F2の数M2が200個、各測定物品の測定点数
N2がA、8、C,D、E、Fの6点である場合には、
第5図に示すような@域を利用して行われ、る。
Accumulation of data in the storage unit 42 is performed, for example, in the third storage unit 42.
The number M1 of the first measurement articles F1 having a shape like 1' shown in the figure is 100, and the number of measurement points N1 of each measurement article is A, B, CXD.
The number M2 of second measurement articles F2 having the shape as shown in FIG. 4 is 200, and the number of measurement points N2 of each measurement article is A, 8, C, D, E, F. If it is 6 points,
This is done using the @ area as shown in Figure 5.

以下作用を説明づ”る。The action will be explained below.

まず、測定に際しては、第6図(A)に模式的に示づ如
く、データ記憶装置30をケーブル46を介してデジタ
ル表示マイクロメータ10に接続し、測定物品の種別数
F+、1iijの測定物品の数M1.1個の測定物品の
測定点数N1を、種別数設定スイッチ32、物品数設定
スイッチ34及び測定点数設定スイッチ36を用いて設
定する。次いで、例えば、データ記憶装置30をポケッ
トに入れ、デジタル表示マイクロメータ10を手に持っ
て測定を行い、1つの測定点の測定が終了づる毎にデー
タスイッチ38を操作して、データ識別符号ど測定値を
対応させて順次データ記憶装置30の記憶部42に記憶
する。この際、データ表示部44に、データ識別符号と
測定値が共に表示されるので、集積されるデータを確認
することができる。第2図においては、例えば、1番目
の物品F1の4番目の測定個所りについての10WA目
のデータであることを示している。
First, in the measurement, as schematically shown in FIG. 6(A), the data storage device 30 is connected to the digital display micrometer 10 via the cable 46, and the number of types of measurement articles F+, 1iij is measured. The number of measurement points N1 for one measurement article is set using the number of types setting switch 32, the number of articles setting switch 34, and the number of measurement points setting switch 36. Next, for example, put the data storage device 30 in your pocket and take a measurement while holding the digital display micrometer 10 in your hand, and operate the data switch 38 every time the measurement of one measurement point is completed to check the data identification code. The measured values are sequentially stored in the storage unit 42 of the data storage device 30 in correspondence with each other. At this time, since the data identification code and the measured value are both displayed on the data display section 44, the data to be accumulated can be confirmed. In FIG. 2, for example, it is shown that the data is the 10th WA data for the fourth measurement location of the first article F1.

尚、データスイッチ38により測定値が呼出された後の
測定子12の移動により、次の測定操作の準備がなされ
る。
Note that by moving the measuring stylus 12 after the measured value is called up by the data switch 38, preparations for the next measuring operation are made.

一連の測定を終了して、データ記I!装置30に対する
データ集積が終了した後、第6図(B)に示づ如く、デ
ータ記憶装置30をデジタル表示マイクロメータ10の
本体から取外して、例えばプリンタ50A及びフロッピ
ーディスクドライブ50Bを含む外部計算11150が
配設されている場所、例えば計算Il!空に持込み、前
記データ記憶装置30を、アダプタ52を介して外部計
算11250と接続づる。づると、データ記憶装置30
に記憶されたデータが短時間で外部計算150に読込ま
れ、この外部計算機50において、品質管理等に必要な
統計データが計算され、図、表、グラフ等の効果的な形
で出力される。
After completing a series of measurements, record the data! After the data collection for the device 30 is completed, as shown in FIG. 6(B), the data storage device 30 is removed from the main body of the digital display micrometer 10, and an external computer 11150 including, for example, a printer 50A and a floppy disk drive 50B is stored. is located, for example, calculation Il! The data storage device 30 is connected to the external computing device 11250 via the adapter 52. In other words, the data storage device 30
The data stored in the external computer 150 is read into the external computer 150 in a short time, and the external computer 50 calculates statistical data necessary for quality control, etc., and outputs it in an effective form such as a diagram, table, graph, etc.

前記実施例においては、本発明が、デジタル表示マイク
ロメータの測定データ記憶装置に適用されていtcが、
本発明の適用範囲はこれに限定されず、デジタル表示ノ
ギス等、他のデジタル表示測長器の測定データ記憶装置
にも同様に適用できることは明らかである。
In the embodiment, the present invention is applied to a measurement data storage device of a digital display micrometer, and tc is:
It is clear that the scope of application of the present invention is not limited thereto, and can be similarly applied to measurement data storage devices of other digital display length measuring devices such as digital display calipers.

以上説明した通り、本発明によれば、データの入力や確
認が容易であり、デジタル表示副長器の測定値を集積す
・るのに適した測定データ記憶装置を得ることができる
。即ち、副長器を外部計算機と直接接続することなく、
測定作業を行うことかでき、外部計n機の設置場所の制
約を受けることなく、測長器を被測定物の通常配置場所
、例えば工作機械近傍に置いて、容易に測定(ることが
できる。又、測定作業の間中外部計算機の機能を独占し
てしまうことがな(、外部計算機を効率的に使用Jるこ
とができる。更に、必要な品質管理データに応じで、異
なる種類の外部計算機に共通のデータを容易に入力する
ことができる等の優れた効果を有づる。
As described above, according to the present invention, it is possible to obtain a measurement data storage device that facilitates data input and confirmation and is suitable for accumulating and storing measured values of a digital display sub-meter. In other words, without directly connecting the sub-length device to an external computer,
You can easily perform measurement by placing the length measuring device in the place where the object to be measured is normally placed, for example, near the machine tool, without being restricted by the installation location of an external measuring device. In addition, the function of the external computer will not be monopolized during the measurement work (and the external computer can be used efficiently. Furthermore, depending on the quality control data required, different types of external computers can be used). It has excellent effects such as being able to easily input common data into a computer.

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

第1図は、デジタル表示マイクロメータに接続された、
本発明に係る測定データ記憶装置の実施例の全体構成を
示す斜視図、第2図は、前記デジタル表示マイクロメー
タ及びデータ記憶装置の詳細構成を示ずブロック線図、
第3図及び第4図は、測定物品及びその測定箇所の例を
示す正面図、第5図は、前記データ記憶装置の記憶部内
におりるデータ格納位置を示す線図、第6図(A)(B
)は、測定時及びデータ入力時のデジタル表示マイクロ
メータとデータ記憶装置の接続状態、及び、データ記憶
装置と外部計詐機の接続状態を示づ線図である。 10・・・デジタル表示マイクロメータ、20・・・デ
ジタル表示器、 30・・・データ記憶装置、32・・
・種別数設定スイッチ、 34・・・物品数設定スイッチ、 36・・・測定点数設定スイッチ、 38・・・データスイッチ、 40・・・人出力部、4
2・・・記憶部、 44・・・データ表示部、46・・
・ケーブル、 50・・・外部計算態。 代理人 高 矢 論 (ばか1名)
FIG. 1 shows a micrometer connected to a digital display micrometer.
FIG. 2 is a perspective view showing the overall configuration of an embodiment of the measurement data storage device according to the present invention; FIG. 2 is a block diagram showing the detailed configuration of the digital display micrometer and the data storage device;
3 and 4 are front views showing examples of the measurement article and its measurement locations, FIG. 5 is a diagram showing data storage positions in the storage section of the data storage device, and FIG. 6 (A )(B
) is a diagram showing the connection state between the digital display micrometer and the data storage device during measurement and data input, and the connection state between the data storage device and the external fraud device. 10... Digital display micrometer, 20... Digital display, 30... Data storage device, 32...
- Number of types setting switch, 34... Number of articles setting switch, 36... Number of measurement points setting switch, 38... Data switch, 40... Person output section, 4
2...Storage section, 44...Data display section, 46...
- Cable, 50...external calculation state. Agent Takaya Ron (1 idiot)

Claims (1)

【特許請求の範囲】[Claims] (1)測定物品の種別数を設定するだめの種別数設定ス
イッチと、・一種の測定物品の数を指定するための物品
数設定スイッチと、−個の測定物品の測定点数を指定す
るための測定点数設定スイッチと、デジタル表示副長器
の測定値を呼出すためのデータスイッチと、呼出された
測定値に、物品種別、物品番号、測定箇所を含むデータ
識別符号を付ずデータ識号手段と、前記データ識別符号
と共に測定値を表示づるデータ表示手段と、前記データ
識別符号と測定値を対応させて順次記憶するデータ記憶
手段と、該データ記憶手段の記憶内容を、外部計算機の
要求に応じて出力させるための出力手段とが一体的に形
成され、且つ、デジタル表示測長器と接続可能とされて
いることを特徴とするデジタル表示測長器の測定データ
記憶装置。
(1) A number-of-type setting switch for setting the number of types of measurement articles, a number-of-article setting switch for specifying the number of one type of measurement article, and a switch for specifying the number of measurement points for - measurement articles. a measurement point setting switch, a data switch for calling the measured value of the digital display sub-length device, and a data identification means for not attaching a data identification code including the product type, product number, and measurement location to the called measurement value; a data display means for displaying the measured value together with the data identification code; a data storage means for sequentially storing the data identification code and the measured value in correspondence; 1. A measurement data storage device for a digital display length measuring device, characterized in that an output means for outputting the output is integrally formed, and the device is connectable to the digital display length measuring device.
JP16295383A 1983-09-05 1983-09-05 Measured data storage device in length measuring device with digital display Pending JPS6055220A (en)

Priority Applications (5)

Application Number Priority Date Filing Date Title
JP16295383A JPS6055220A (en) 1983-09-05 1983-09-05 Measured data storage device in length measuring device with digital display
DE19843432511 DE3432511A1 (en) 1983-09-05 1984-09-04 MEASURING DEVICE WITH DIGITAL DISPLAY AND A MEMORY FOR THE MEASURED VALUES
US06/646,979 US4730247A (en) 1983-09-05 1984-09-04 Digital indication type measuring apparatus and measured data storage apparatus therefor
GB08422408A GB2146150B (en) 1983-09-05 1984-09-05 Digital indication type measuring machine and measured data storage device thereof
GB08618016A GB2179184B (en) 1983-09-05 1986-07-23 Storage device for digital measurement data

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP16295383A JPS6055220A (en) 1983-09-05 1983-09-05 Measured data storage device in length measuring device with digital display

Publications (1)

Publication Number Publication Date
JPS6055220A true JPS6055220A (en) 1985-03-30

Family

ID=15764403

Family Applications (1)

Application Number Title Priority Date Filing Date
JP16295383A Pending JPS6055220A (en) 1983-09-05 1983-09-05 Measured data storage device in length measuring device with digital display

Country Status (1)

Country Link
JP (1) JPS6055220A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS62217108A (en) * 1986-03-18 1987-09-24 Toyoda Mach Works Ltd Inside diameter measuring instrument
US5022162A (en) * 1987-02-10 1991-06-11 Thomesto Oy General purpose measuring implement usable in the field, and its data transfer method
US5095638A (en) * 1990-10-05 1992-03-17 Northrop Corporation Method for assigning standard fasteners in accordance with a series of measurements

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5115947A (en) * 1974-03-25 1976-02-07 Innovation Ste Int
JPS536491A (en) * 1976-07-01 1978-01-20 Kanegafuchi Chem Ind Co Ltd Frothing compositon
JPS5723961A (en) * 1980-07-19 1982-02-08 Ricoh Co Ltd Switch counter
JPS5730852A (en) * 1980-07-31 1982-02-19 Mitsubishi Electric Corp Copying system

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5115947A (en) * 1974-03-25 1976-02-07 Innovation Ste Int
JPS536491A (en) * 1976-07-01 1978-01-20 Kanegafuchi Chem Ind Co Ltd Frothing compositon
JPS5723961A (en) * 1980-07-19 1982-02-08 Ricoh Co Ltd Switch counter
JPS5730852A (en) * 1980-07-31 1982-02-19 Mitsubishi Electric Corp Copying system

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS62217108A (en) * 1986-03-18 1987-09-24 Toyoda Mach Works Ltd Inside diameter measuring instrument
JPH052167B2 (en) * 1986-03-18 1993-01-11 Toyoda Koki Kk
US5022162A (en) * 1987-02-10 1991-06-11 Thomesto Oy General purpose measuring implement usable in the field, and its data transfer method
US5095638A (en) * 1990-10-05 1992-03-17 Northrop Corporation Method for assigning standard fasteners in accordance with a series of measurements

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