JPS63208708A - Deciding device for paper or the like - Google Patents

Deciding device for paper or the like

Info

Publication number
JPS63208708A
JPS63208708A JP62040384A JP4038487A JPS63208708A JP S63208708 A JPS63208708 A JP S63208708A JP 62040384 A JP62040384 A JP 62040384A JP 4038487 A JP4038487 A JP 4038487A JP S63208708 A JPS63208708 A JP S63208708A
Authority
JP
Japan
Prior art keywords
thickness
banknote
paper
detection
output
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.)
Granted
Application number
JP62040384A
Other languages
Japanese (ja)
Other versions
JPH0743257B2 (en
Inventor
Ryo Ono
大野 稜
Norio Tsuchitani
槌谷 則夫
Kazuhiro Mizunaga
水永 和宏
Takashi Hase
長谷 隆史
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.)
Omron Corp
Original Assignee
Omron Tateisi Electronics Co
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 Omron Tateisi Electronics Co filed Critical Omron Tateisi Electronics Co
Priority to JP62040384A priority Critical patent/JPH0743257B2/en
Publication of JPS63208708A publication Critical patent/JPS63208708A/en
Publication of JPH0743257B2 publication Critical patent/JPH0743257B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Abstract

PURPOSE:To decide the thickness direction, etc., of paper, etc., which is different in thickness between its right and left sides by comparing the output levels of two thickness detector with two kinds of mutually different reference levels respectively and deciding the adequacy of the paper, etc. CONSTITUTION:The output of the displacement sensor 20 of a thickness detector is sampled at a constant period and converted by an A/D converting circuit 26 into a digital signal, which is inputted to a CPU 24. The CPU 24 is equipped with a memory 25 for storing its execution program and various data. While the paper money passes through the thickness detectors, the integral values of the output signals of right and left displacement sensors 20 are calculated respectively. Those integral values are divided by the time from the leading edge of the output signals of the displacement sensor to the trailing edge to find the thickness of the paper money. Then it is compared with data on normal paper money in the memory 25 to decide whether or not the paper money is real money.

Description

【発明の詳細な説明】 発明の要約 紙葉類の搬送路の幅方向に所定間隔をあけて左右2つの
厚さ検出装置を配置し、左、右それぞれ独立の基準レベ
ルとこれらの厚さ検出装置の出力とを比較することによ
って、左右で厚さの異なる紙葉類等の厚さ、方向等を判
別する。
[Detailed Description of the Invention] Summary of the Invention Two thickness detection devices on the left and right are arranged at a predetermined interval in the width direction of a conveyance path for paper sheets, and independent reference levels for the left and right sides and the detection of these thicknesses are provided. By comparing the output of the device, the thickness, direction, etc. of paper sheets, etc., which have different thicknesses on the left and right sides, are determined.

発明の背景 この発明は1紙幣を含む搬送されている紙葉類の厚さ、
搬送方向等を判定する装置に関し、たとえば預金支払機
(ATM)、自動現金支払機(CD)等の銀行取引処理
装置に設けられる紙幣放出機において放出される紙幣に
ついての上記の特性を判定する装置に関する。
BACKGROUND OF THE INVENTION This invention is based on the thickness of paper sheets being conveyed, including one banknote.
Regarding a device for determining the conveyance direction, etc., for example, a device for determining the above-mentioned characteristics of a banknote ejected from a banknote ejection machine installed in a bank transaction processing device such as an automatic teller machine (ATM) or an automatic cash dispenser (CD). Regarding.

紙幣の中にはたとえばオーストラリア・ドル紙幣のよう
に左右で厚さの異なるものがある。このような紙幣に対
しては従来の厚さ検出装置ではその厚さの検出、厚さ検
出に基づく2枚検知等を行なうことはできない。
Some banknotes, such as the Australian dollar banknote, have different thicknesses on the left and right sides. Conventional thickness detection devices cannot detect the thickness of such banknotes or detect two banknotes based on the thickness detection.

発明の概要 この発明は、左右で厚さの異なる上記の紙幣のように1
部分的に異なる厚さをもつ紙葉類の厚さが適切かどうか
、必要ならばその搬送方向を判定する装置を提供するこ
とを目的とする。
Summary of the Invention This invention provides a banknote with different thicknesses on the left and right sides.
It is an object of the present invention to provide a device that determines whether the thickness of paper sheets having partially different thicknesses is appropriate and, if necessary, the direction of conveyance thereof.

この発明による紙葉類の判定装置は2紙葉類の搬送路の
幅方向に所定間隔をあけて配置され1紙葉類の厚さに応
じた電気信号を出力する少なくとも2つの厚さ検出装置
、および相互に異なる少なくとも2種類の基準レベルと
上記厚さ検出装置の出力電気信号によって表わされるレ
ベルとをそれぞれ比較することによって紙葉類の適格性
を判定する手段を備えていることを特徴とする。
The paper sheet determination device according to the present invention includes at least two thickness detection devices arranged at a predetermined interval in the width direction of the paper sheet conveyance path and outputting electrical signals corresponding to the thickness of one paper sheet. , and means for determining the suitability of paper sheets by respectively comparing at least two different reference levels with the level represented by the output electrical signal of the thickness detecting device. do.

少なくとも2の厚さ検出装置が配置され、かつこれらの
厚さ検出装置の出力信号に対してそれぞれ異なる基準レ
ベルが設定されているので、各厚さ検出装置の出力信号
の表わすレベルを上記の基準レベルまたは基準レベルを
基準にした所定のレベル範囲と比較することによって2
紙葉類がこの基準レベルに合致した厚さをもつのである
かどうかが判定される。このようにして、左右で厚さの
異なる紙幣のように部分的に厚さの異なる紙葉類に対し
ても、これらの厚さの異なる部分の厚さを検知しうるよ
うに厚さ検出装置を配置しておけば、その厚さに関する
判定が可能となる。また。
At least two thickness detection devices are arranged, and different reference levels are set for the output signals of these thickness detection devices, so the level represented by the output signal of each thickness detection device is set according to the above reference level. level or by comparing it to a predetermined level range based on a reference level.
It is determined whether the paper sheet has a thickness that meets this standard level. In this way, the thickness detection device can detect the thickness of paper sheets that have partially different thicknesses, such as banknotes that have different thicknesses on the left and right sides. If it is placed, it becomes possible to judge the thickness. Also.

各厚さ検出装置の出力信号をすべての基準レベルと比較
することによって1紙葉類の搬送されている向きを判定
することも可能となる。
By comparing the output signals of each thickness detection device with all reference levels, it is also possible to determine the direction in which a single sheet is being conveyed.

実施例の説明 この実施例は、左右で厚さの異なる紙幣についてその紙
幣の厚さの判定および搬送されている向きの判定を行な
うものである。
Description of the Embodiment In this embodiment, the thickness of banknotes and the direction in which they are being conveyed are determined for banknotes having different thicknesses on the left and right sides.

第1図および第2図を参照して1紙幣Pはその長平方向
が搬送方向に垂直になる姿勢で搬送路2を搬送される。
Referring to FIGS. 1 and 2, one banknote P is conveyed along the conveyance path 2 with its elongated direction perpendicular to the conveyance direction.

搬送路2は1紙幣Pを両面から挟んで搬送するベルト2
2とこれらのベルト22が掛けられた多数のローラまた
はプーリ(図示路)から構成されている。この搬送路2
の途上には、搬送路2の幅方向(搬送方向に直交する方
向)に所定の間隔をあけて左右に2つの紙幣の厚さ検出
器1が設けられている。紙幣Pの厚さは、搬送路2の左
側と右側とで異なっており、これらの異なる厚さを検出
できる位置に厚さ検出器1が配置されている。これらの
厚さ検出器lの真下にはローラ17がそれぞれ配置され
ている。両側のフレーム23間には軸18が渡され、こ
の軸18に上記ローラ17が回転自在に支持されている
。これらのローラ17には下側ベルト22が掛けられる
溝17aが形成されており、ローラ17の周面はベルト
22の挾持面と同じかまたはこれよりも突出している。
The conveyance path 2 is a belt 2 that conveys one banknote P by sandwiching it from both sides.
2 and a number of rollers or pulleys (paths shown) on which these belts 22 are hung. This conveyance path 2
On the way, two banknote thickness detectors 1 are provided on the left and right sides at a predetermined interval in the width direction of the transport path 2 (direction orthogonal to the transport direction). The thickness of the banknote P is different between the left side and the right side of the conveyance path 2, and the thickness detector 1 is arranged at a position where it can detect these different thicknesses. A roller 17 is arranged directly below each of these thickness detectors l. A shaft 18 is passed between the frames 23 on both sides, and the roller 17 is rotatably supported on this shaft 18. These rollers 17 are formed with grooves 17a on which the lower belt 22 is hung, and the circumferential surface of the rollers 17 is the same as or protrudes more than the clamping surface of the belt 22.

2つの厚さ検出器1は全く同じ構成であるのでその一方
についてのみ説明する。厚さ検出器1は検出レバーIO
を含んでいる。この検出レバー10はL字型形状であり
2つの端部10a 、 10bを有している。この検出
レバー10の端部10aに近い屈折部にはボス11が形
成され、このボス1■内をフレーム23間に固定された
支軸12が通ることによって、レバーlOはこの軸12
を中心に揺動自在に支持されている。検出レバー10の
端部10b方向は長く延びその途中には検出ローラ13
が軸14によって回転自在に設けられている。一方、検
出レバー10の端部10aとフレーム23に固定された
ばね受け16との間にはひきばね15が設けられている
。この結果。
Since the two thickness detectors 1 have exactly the same configuration, only one of them will be explained. Thickness detector 1 is a detection lever IO
Contains. This detection lever 10 is L-shaped and has two ends 10a and 10b. A boss 11 is formed at the bent part near the end 10a of the detection lever 10, and a support shaft 12 fixed between the frames 23 passes through the boss 1, so that the lever lO is
It is supported so that it can swing freely around the center. The end 10b direction of the detection lever 10 is long and there is a detection roller 13 in the middle.
is rotatably provided by a shaft 14. On the other hand, a tension spring 15 is provided between the end 10a of the detection lever 10 and a spring receiver 16 fixed to the frame 23. As a result.

検出レバー10は、ばね15によって検出ローラ13が
ローラ17に圧接するように付勢されている。検出ロー
ラ13はローラ17のベルト22以外の周面に接してい
る。
The detection lever 10 is biased by a spring 15 so that the detection roller 13 comes into pressure contact with the roller 17 . The detection roller 13 is in contact with the circumferential surface of the roller 17 other than the belt 22.

紙幣Pがベルト22に挟まれた状態でローラ17と検出
ローラ13との間に進入してくると、その厚さ分だけ検
出ローラ13は搬送ローラ17から離れる方向に動く。
When the banknote P enters between the roller 17 and the detection roller 13 while being sandwiched between the belt 22, the detection roller 13 moves in a direction away from the conveyance roller 17 by the thickness thereof.

この結果、検出レバー10も鎖線で示すように揺動する
。検出ローラ13は端部tobと軸12との間に設けら
れているから、端部10bの変位量は検出ローラ13の
変位量よりも大きい。検出レバー10によって変位量が
拡大される。
As a result, the detection lever 10 also swings as shown by the chain line. Since the detection roller 13 is provided between the end tob and the shaft 12, the amount of displacement of the end 10b is larger than the amount of displacement of the detection roller 13. The amount of displacement is expanded by the detection lever 10.

検出レバー10のi 部10bの変位量は、フレーム2
3に固定された取付部材21に固定された変位センサ2
0によって検知される。この変位センサ20は検出レバ
ーlOの端部10bを挟んで対向する位置に設けられた
投光器(発光素子、たとえば発光ダイオード)とこの投
光器からの光を受光する受光器(受光素子、たとえばフ
ォトトランジスタ)とを備えている(第3図参照)。ロ
ーラ17と検出ローラ13との間に紙幣が存在しないと
きには、投光器から出射した光の光路は検出レバーlO
の端部10bによって殆ど遮光されず、大部分の光は受
光器によって受光される。1枚の紙幣がローラ17.1
3間に進入して検出レバー10が揺動すると、その端部
tobの変位によって上記光路の二部が遮光される。紙
幣の厚さの検知範囲は1紙幣(1枚に限らず2枚以上の
場合もある)がローラ17.13間に進入したときに生
じるレバー10の端部10bの変位範囲とこれをカバー
しうるように設定された投光器の投射光ビームの径およ
び受光器の受光範囲とによって定められる。
The amount of displacement of the i section 10b of the detection lever 10 is
Displacement sensor 2 fixed to mounting member 21 fixed to 3
Detected by 0. The displacement sensor 20 includes a light emitter (light emitting element, e.g., a light emitting diode) provided at opposing positions across the end 10b of the detection lever lO, and a light receiver (light receiving element, e.g., a phototransistor) that receives light from the emitter. (See Figure 3). When there is no bill between the roller 17 and the detection roller 13, the optical path of the light emitted from the projector is directed to the detection lever lO.
Almost no light is blocked by the end portion 10b, and most of the light is received by the light receiver. One banknote passes through roller 17.1
When the detection lever 10 is swung by entering the space between 3 and 3, two parts of the optical path are blocked by the displacement of the end portion tob. The detection range for the thickness of a banknote covers the displacement range of the end 10b of the lever 10 that occurs when one banknote (not just one banknote, but two or more banknotes may be used) enters between the rollers 17.13. It is determined by the diameter of the projected light beam of the projector and the light receiving range of the receiver.

第3図は、上述の厚さ検出器1の変位センサ20を含む
紙幣の厚さ等の判定装置の電気的構成の概要を示してい
る。
FIG. 3 shows an outline of the electrical configuration of a device for determining the thickness of banknotes, etc., including the displacement sensor 20 of the thickness detector 1 described above.

変位センサ20の出力すなわちその受光器の出力電気信
号は一定周期でサンプリングされる。このサンプリング
された電圧値はA/D変換回路26でディジタル信号に
変換されてCPU24に取込まれる。CPU24は、そ
の実行プログラムおよび種々のデータを記憶するメモリ
25を備えている。説明の便宜上、2つの変位センサ2
0のうち一方を左変位センサ、他方を右変位センサとい
うことにする。
The output of the displacement sensor 20, that is, the output electric signal of its optical receiver, is sampled at regular intervals. This sampled voltage value is converted into a digital signal by the A/D conversion circuit 26 and taken into the CPU 24. The CPU 24 includes a memory 25 that stores its execution programs and various data. For convenience of explanation, two displacement sensors 2
One of them will be called a left displacement sensor and the other one will be called a right displacement sensor.

第4図は、左、右の変位センサ20から出力される信号
波形の一例を示している。この出力信号は紙幣Pが両ロ
ーラ13.17間に突入したときに立上り1両ローラ1
3.17間を通過したときに立下る。
FIG. 4 shows an example of signal waveforms output from the left and right displacement sensors 20. This output signal rises when the banknote P enters between both rollers 13 and 17.
It falls when it passes between 3.17 and 17.

紙幣Bはその左右で厚さが異なるから、左、右の変位セ
ンサの出力信号の大きさくレベル)もこれに応じて異な
っている。
Since the left and right sides of banknote B have different thicknesses, the output signals of the left and right displacement sensors also differ in magnitude and level accordingly.

左右の変位センサ20の出力は上述のように一定周期で
サンプリングされてCPU24に取込まれる。そして9
紙幣Pが両ローラ13.17間を通過している間におけ
る左、右の変位センサ20の出力信号の積分値がそれぞ
れ算出される(積分値をそれぞれA、Bで示す)。これ
は、入力するサンプリング−データを左、右の変位セン
サ別にメモリ25内で加算することにより求めることが
できる。これらの積分値を変位センサの出力信号の立上
りから立下りまでの時間で割ることにより1紙幣の厚さ
が求められる。紙幣−の搬送方向にそう長さく紙幣Pの
幅)が一定である限り、積分値は厚さに比例しているか
ら、以下の説明では便宜的にこの積分値を検出厚さA、
Bということにする。紙幣の長さも検出し、この長さデ
ータ、厚さデータ等により紙幣の種類、真偽等を判定す
る場合には、上述のように信号の立上りから立下りまで
の時間を計測し、搬送速度を用いて、長さ、厚さ等を正
確に算出すればよい。
The outputs of the left and right displacement sensors 20 are sampled at regular intervals as described above and are taken into the CPU 24. And 9
The integral values of the output signals of the left and right displacement sensors 20 while the banknote P passes between both rollers 13 and 17 are calculated (the integral values are indicated by A and B, respectively). This can be obtained by adding the input sampling data in the memory 25 separately for the left and right displacement sensors. The thickness of one banknote is determined by dividing these integral values by the time from the rise to the fall of the output signal of the displacement sensor. As long as the length of the banknote P (width of the banknote P in the transport direction) is constant, the integral value is proportional to the thickness, so in the following explanation, for convenience, this integral value will be used as the detected thickness A,
Let's call it B. The length of the banknote is also detected, and when determining the type, authenticity, etc. of the banknote based on this length data, thickness data, etc., the time from the rise to the fall of the signal is measured as described above, and the conveyance speed is determined. The length, thickness, etc. can be calculated accurately using .

メモリ25内には、正規の紙幣の左側部分の厚さの下、
上限値AI、A2(左しきい値下、上限)、右側部分の
厚さの下、上限値旧、B2(右しきい値下、上限)が設
定されている。搬送されている紙幣がこの正規の紙幣で
あるかどうかおよび搬送されている向きは、左、右の検
出厚さA、Bとこれらのしきい値とを用いて判定される
In the memory 25, below the thickness of the left side part of the regular banknote,
The upper limit value AI, A2 (below the left threshold, upper limit), the lower thickness of the right side part, the upper limit old, and B2 (below the right threshold, upper limit) are set. Whether or not the banknote being conveyed is a regular banknote and the direction in which it is being conveyed is determined using the detected left and right thicknesses A and B and these threshold values.

この判定処理手順の一例が第5図に示されている。この
判定処理はCPU24によって実行される。
An example of this determination processing procedure is shown in FIG. This determination process is executed by the CPU 24.

左の検出厚さAが左しき値下、上限AIとA2との間に
入っており(ステップ31でYES)かつ右の検出厚さ
Bが右のしきい値下、上限B1とB2との間に入ってい
るならば(ステップ32でYES)、  この紙幣は正
規のものでありかつ正方向に搬送されていると判定され
る(ステップ33)。
The detected thickness A on the left is below the left threshold and between the upper limits AI and A2 (YES at step 31), and the detected thickness B on the right is below the right threshold and between the upper limits B1 and B2. If it is in between (YES in step 32), it is determined that this bill is genuine and is being conveyed in the forward direction (step 33).

逆に、左の検出厚さAが右しき値下、上限BlとB2と
の間に入っており(ステップ34でYES)かつ右の検
出厚さBが左のしきい値下、上限AIとA2との間に入
っている場合には(ステップ35でYES)、 この紙
幣は正規のものでありかつ逆方向に搬送されていると判
定される(ステップ36)。
Conversely, the detected thickness A on the left is below the right threshold and is between the upper limit Bl and B2 (YES at step 34), and the detected thickness B on the right is below the left threshold and between the upper limit AI. If it is between the banknote and A2 (YES in step 35), it is determined that this banknote is genuine and is being conveyed in the opposite direction (step 36).

上記のステップ31.32.34.35のいずれかでN
N in any of steps 31.32.34.35 above
.

の場合には、正規の紙幣ではないと判定される(ステッ
プ37)。正規の紙幣でないと判定されたものには、偽
の紙幣、正規の紙幣ではあるがそれらが2枚重なった状
態で搬送されているもの等があろう。
In this case, it is determined that the banknote is not a regular banknote (step 37). Examples of banknotes that are determined to be not genuine include counterfeit banknotes and genuine banknotes that are conveyed in a stacked state.

紙幣の搬送方向の判定結果は2紙幣を放出する場合また
は収納箱に収納する場合等において紙幣の向きをそろえ
たり、交互に逆にしたりする場合に用いられるであろう
The determination result of the conveyance direction of the banknotes will be used when discharging two banknotes or storing the banknotes in a storage box, etc., to align the directions of the banknotes or to alternately reverse the direction of the banknotes.

このようにして、左右で厚さが異なる紙幣についての判
定が可能となる。そして、左右の厚さが若干違う紙幣に
おいてはその厚さ検出、正規のものかどうかの判定等の
精度を高めることが可能となり、また左右の厚さが大幅
に違う紙幣については模擬紙幣等の厚さの均一な異物の
志別が可能となるというように9種々の応用に展開する
ことができる。
In this way, it is possible to determine whether the left and right banknotes have different thicknesses. For banknotes with slightly different thickness on the left and right sides, it becomes possible to improve the accuracy of thickness detection and determination of whether the banknotes are genuine or not, and for banknotes with significantly different thickness on the left and right side, it is possible to improve the accuracy of the thickness detection, etc. This method can be used in nine different applications, including the ability to identify foreign objects with uniform thickness.

積分手段としては上記の加算処理以外に種々のものがあ
る。たとえば変位センサの出力信号を積分回路で紙幣が
検出ローラを通過する時間帯にわたって積分し、この積
分信号をA/D変換してCPUに取込むようにしてもよ
い。また、変位センサの厚さ検出信号をその電圧に対応
した周波数のパルス信号に変換するV/F変換回路と、
このV/F変換回路の出力パルスを計数するカウンタと
を設け1紙幣が検出ローラを通過する時間帯にわたって
上記カウンタを動作させ、その計数値をCPUに取込む
ようにしてもよい。上記積分回路の積分時間、カウンタ
の計数時間は変位センサの出力信号のオフセット・レベ
ルからの立上り、立下りの検出によって定めることがで
きよう。
There are various types of integration means other than the above-mentioned addition process. For example, the output signal of the displacement sensor may be integrated by an integrating circuit over the time period during which the banknote passes the detection roller, and this integrated signal may be A/D converted and input to the CPU. Further, a V/F conversion circuit that converts the thickness detection signal of the displacement sensor into a pulse signal with a frequency corresponding to the voltage;
A counter for counting the output pulses of the V/F conversion circuit may be provided, and the counter may be operated over a period of time during which one banknote passes the detection roller, and the counted value may be input to the CPU. The integration time of the integration circuit and the counting time of the counter can be determined by detecting the rise and fall of the output signal of the displacement sensor from the offset level.

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

第1図および第2図は厚さ検知器を示すもので、第1図
は平面図、第2図は断面図ある。 第3図は紙幣の厚さ判定装置の電気的構成を示すブロッ
ク図である。 第4図は左、右の変位センサから出力される信号を示す
波形図である。 第5図は紙幣の厚さ判定処理を示すフロー・チャートで
ある。 1・・・厚さ検出器、     2・・・搬送路。 10・・・検出レバー、13・・・検出ローラ。 15・・・ばね、         17・・・ローラ
。 20・・・変位センサ、24・・・CPU。 25・・・メモリ、       P・・・紙幣。 以  上 特許出願人  立石電機株式会社 代 理 人   弁理士 牛 久 健 司(外1名) 第5図
1 and 2 show a thickness detector, with FIG. 1 being a plan view and FIG. 2 being a sectional view. FIG. 3 is a block diagram showing the electrical configuration of the banknote thickness determination device. FIG. 4 is a waveform diagram showing signals output from the left and right displacement sensors. FIG. 5 is a flow chart showing the banknote thickness determination process. 1... Thickness detector, 2... Conveyance path. 10...Detection lever, 13...Detection roller. 15...Spring, 17...Roller. 20...Displacement sensor, 24...CPU. 25...Memory, P...Banknotes. Patent applicant Tateishi Electric Co., Ltd. Agent Patent attorney Kenji Ushiku (1 other person) Figure 5

Claims (2)

【特許請求の範囲】[Claims] (1)紙葉類の搬送路の幅方向に所定間隔をあけて配置
され、紙葉類の厚さに応じた電気信号を出力する少なく
とも2つの厚さ検出装置、および相互に異なる少なくと
も2種類の基準レベルと上記厚さ検出装置の出力電気信
号によって表わされるレベルとをそれぞれ比較すること
によって紙葉類の適格性を判定する手段、 を備えている紙葉類の判定装置。
(1) At least two thickness detection devices that are arranged at a predetermined interval in the width direction of the paper sheet conveyance path and output electrical signals according to the thickness of the paper sheet, and at least two different types. means for determining the suitability of a paper sheet by respectively comparing a reference level of the thickness detection device with a level represented by an output electric signal of the thickness detection device.
(2)上記判定手段上記の比較によって紙葉類の向きを
判定する、特許請求の範囲第(1)項に記載の紙葉類の
判定装置。
(2) Determination means The paper sheet determination device according to claim (1), which determines the orientation of the paper sheet by the above comparison.
JP62040384A 1987-02-25 1987-02-25 Judgment device for paper sheets Expired - Fee Related JPH0743257B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP62040384A JPH0743257B2 (en) 1987-02-25 1987-02-25 Judgment device for paper sheets

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP62040384A JPH0743257B2 (en) 1987-02-25 1987-02-25 Judgment device for paper sheets

Publications (2)

Publication Number Publication Date
JPS63208708A true JPS63208708A (en) 1988-08-30
JPH0743257B2 JPH0743257B2 (en) 1995-05-15

Family

ID=12579156

Family Applications (1)

Application Number Title Priority Date Filing Date
JP62040384A Expired - Fee Related JPH0743257B2 (en) 1987-02-25 1987-02-25 Judgment device for paper sheets

Country Status (1)

Country Link
JP (1) JPH0743257B2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001289629A (en) * 2000-02-07 2001-10-19 Ethicon Inc Cell detecting mechanism

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001289629A (en) * 2000-02-07 2001-10-19 Ethicon Inc Cell detecting mechanism

Also Published As

Publication number Publication date
JPH0743257B2 (en) 1995-05-15

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