JPH0810397A - Ball shooting device for pachinko machine - Google Patents

Ball shooting device for pachinko machine

Info

Publication number
JPH0810397A
JPH0810397A JP15217394A JP15217394A JPH0810397A JP H0810397 A JPH0810397 A JP H0810397A JP 15217394 A JP15217394 A JP 15217394A JP 15217394 A JP15217394 A JP 15217394A JP H0810397 A JPH0810397 A JP H0810397A
Authority
JP
Japan
Prior art keywords
ball
magnetic poles
pachinko machine
flat part
yoke
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
JP15217394A
Other languages
Japanese (ja)
Other versions
JP2956479B2 (en
Inventor
Hiroyuki Kasugai
博之 春日井
Toru Ueki
徹 植木
Hiroshi Kato
弘 加藤
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 JP15217394A priority Critical patent/JP2956479B2/en
Publication of JPH0810397A publication Critical patent/JPH0810397A/en
Application granted granted Critical
Publication of JP2956479B2 publication Critical patent/JP2956479B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

PURPOSE:To shorten the applying time of a current and save the power by forming the end surface for forming different magnetic poles of a ball shooting device from a flat part parallel to a shooting passage and situated on a ball supplying part side, and a tapered part continued thereto and extended toward the other end of the shooting passage. CONSTITUTION:When a ball shooting device 12 is used, a ball 3 is supplied to a ball supplying part 19, and a handle 21 is then operated. A signal according to the operation is outputted from a current control part 20, applied to a plurality of coils 16, 17, and changed to the intensity of electromagnets forming the magnetic poles of a yoke 15. The ball 3 is attracted by the formation of the magnetic poles. Further, the ball 3 is shot toward a flat part 22 having a high magnetic flux density which is formed on the end surface 15a of the magnetic pole. When the ball 3 reaches the center of the flat part 22, thereafter, the current carrying to both the coils 16, 17 is interrupted. Namely, the ball 3 is vigorously shot toward a guide 4 on a shooting passage 18. Thus, the magnetic flux density of the flat part 22 is increased, and the distance between the flat part 22 and the ball supplying part 19 is shortened.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は、パチンコ機の球発射部
に供給された球を発射させるパチンコ機の球発射装置に
関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a ball launching device for a pachinko machine which launches a ball supplied to a ball launching section of the pachinko machine.

【0002】[0002]

【従来の技術】以下、従来のパチンコ機の球発射装置に
ついて説明する。図3はパチンコ機の正面図である。図
3において、ハンドル1を回すと球発射装置2から球3
が発射される。そして、この発射された球3はガイド4
に沿って打ち上げられる。また、球発射装置2は図4に
示すように、所定間隔おいて異なる磁極を対向させたヨ
ーク5と、このヨーク5に直列に巻き付けられたコイル
6および7と、前記異なる磁極間を貫通して設けられた
発射路8と、この発射路8の一方の端8aに設けられた
球供給部9とを備えた構成となっていた。また、前記異
なる磁極間を形成する端面5aは、前記発射路8と略平
行に設けられていた。また、前記直列に接続されたコイ
ル6および7は電流制御回路10に接続されるとともに
この電流制御回路10はハンドル11に接続されてい
た。
2. Description of the Related Art A conventional ball launching device for a pachinko machine will be described below. FIG. 3 is a front view of the pachinko machine. In FIG. 3, when the handle 1 is turned, the ball launching device 2 moves to the ball 3
Is fired. And, this launched ball 3 is a guide 4
Will be launched along. Further, as shown in FIG. 4, the ball launching device 2 penetrates between a yoke 5 in which different magnetic poles face each other at a predetermined interval, coils 6 and 7 wound in series around the yoke 5, and the different magnetic poles. The firing path 8 is provided on the one end 8a of the firing path 8 and the ball supply unit 9 is provided on one end 8a of the firing path 8. Further, the end surface 5a forming the space between the different magnetic poles is provided substantially parallel to the firing path 8. The coils 6 and 7 connected in series are connected to the current control circuit 10 and the current control circuit 10 is connected to the handle 11.

【0003】以上のように構成されたパチンコ機の球発
射装置について、以下にその動作を説明する。球供給部
9に球3が供給された後、ハンドル11を操作すると、
この操作に応じた信号が電流制御部10から出力されて
コイル6および7に印加され磁極を形成する電磁石の強
さに変化する。そして、この磁極の形成により、球供給
部9に供給されている球3を吸引する。吸引された球3
は発射路8上を磁極の端面5aに向かって発射される。
球3が端面5aの略中心5bにきたとき、コイル6およ
び7への通電は遮断される。そうすると吸引された球3
は勢いよく発射路8上をガイド4に向かって発射され
る。
The operation of the ball launching device of the pachinko machine constructed as described above will be described below. When the handle 11 is operated after the sphere 3 is supplied to the sphere supply unit 9,
A signal corresponding to this operation is output from the current controller 10 and applied to the coils 6 and 7 to change the strength of the electromagnet forming the magnetic pole. Then, by forming this magnetic pole, the sphere 3 supplied to the sphere supply unit 9 is attracted. Sucked sphere 3
Is fired on the firing path 8 toward the end surface 5a of the magnetic pole.
When the ball 3 comes to the approximate center 5b of the end face 5a, the power supply to the coils 6 and 7 is cut off. Then the sucked sphere 3
Is vigorously fired on the firing path 8 toward the guide 4.

【0004】なお、これに類する技術として、例えば実
開平1−176476号公報がある。
A technique similar to this is, for example, Japanese Utility Model Laid-Open No. 1-176476.

【0005】[0005]

【発明が解決しようとする課題】しかしながらこのよう
な従来の構成では、端面5aは平坦になっているため、
その磁束密度は端面5aに均一に分布することになる。
そのため、コイル6および7への通電は、球3が球供給
部9から端面5aの略中心5bへ到達するまで供給する
必要がある。一方、近年の省エネルギーの要請から少し
でも電力の少ないことが望ましい。
However, in such a conventional structure, since the end surface 5a is flat,
The magnetic flux density is evenly distributed on the end surface 5a.
Therefore, it is necessary to supply the current to the coils 6 and 7 until the sphere 3 reaches the approximate center 5b of the end surface 5a from the sphere supply portion 9. On the other hand, it is desirable that the power consumption is as small as possible in view of the recent demand for energy saving.

【0006】そこでこの発明は、省電力のパチンコ機の
球発射装置を提供することを目的としたものである。
[0006] Therefore, the present invention has an object to provide a ball launching device for a power saving pachinko machine.

【0007】[0007]

【課題を解決するための手段】そしてこの目的を達成す
るために本発明によるパチンコ機は、球発射装置の異な
る磁極間を形成する端面が、発射路と略平行に設けられ
るとともに球供給部側に設けられた平坦部と、この平坦
部に続いて前記発射路の他方の端に向かって広がったテ
ーパ部を有する構成としたものである。
In order to achieve this object, a pachinko machine according to the present invention is such that the end faces forming different magnetic poles of the ball launching device are provided substantially parallel to the launching path and the ball feeding portion side. And a taper portion that is widened toward the other end of the firing path, following the flat portion.

【0008】[0008]

【作用】この構成により、端面の平坦部は球供給部側に
形成されるとともにテーパ部はその反対側に形成される
ので、この平坦部は磁束密度が大きくなる。加えて、こ
の磁束密度の大きい平坦部の中心と球供給部の距離は従
来に比べて小さくなる。したがって、コイルへの電流の
印加時間が短くて良いことになり、その分省電力化が図
れる。
With this structure, the flat portion of the end face is formed on the sphere supplying portion side and the taper portion is formed on the opposite side, so that the flat portion has a large magnetic flux density. In addition, the distance between the center of the flat portion having a large magnetic flux density and the sphere supplying portion is smaller than that in the conventional case. Therefore, the time for applying the current to the coil can be shortened, and power can be saved accordingly.

【0009】[0009]

【実施例】以下、本発明の一実施例について図面に基づ
いて説明する。本発明の球発射装置12は図1に示すよ
うに、所定間隔おいて異なる磁極を対向させたヨーク1
5と、このヨーク15に直列に巻き付けられたコイル1
6および17と、前記異なる磁極間を貫通して設けられ
た発射路18と、この発射路18の一方の端18aに設
けられた球供給部19とを備えた構成となっている。そ
して、前記異なる磁極間を形成する端面15aは、図1
および図2に示すような形状となっている。すなわち、
前記発射路18と略平行に設けられるとともに前記球供
給部19側に設けられた平坦部22と、この平坦部22
に続いて前記発射路18の他方の端に向かって広がった
テーパ部23を有する構成となっている。そしてこの平
坦部22とテーパ部23との比は略1対2とするととも
に、テーパ角Aを略30度としている。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS An embodiment of the present invention will be described below with reference to the drawings. As shown in FIG. 1, the ball launching device 12 of the present invention has a yoke 1 in which different magnetic poles are opposed to each other at predetermined intervals.
5 and the coil 1 wound in series around the yoke 15.
6 and 17, a firing path 18 penetrating between the different magnetic poles, and a ball supply unit 19 provided at one end 18a of the firing path 18. The end surface 15a forming the gap between the different magnetic poles is formed as shown in FIG.
The shape is as shown in FIG. That is,
A flat portion 22 provided substantially parallel to the launch path 18 and provided on the sphere supply portion 19 side, and the flat portion 22.
Then, the taper portion 23 is formed so as to widen toward the other end of the firing path 18. The ratio between the flat portion 22 and the taper portion 23 is approximately 1: 2, and the taper angle A is approximately 30 degrees.

【0010】別の見方をすると、発射路18は、前記異
なる磁極間を形成する端面15aの平坦部22と略平行
に設けられている。また、前記直列に接続されたコイル
16および17は電流制御回路20に接続されるととも
にこの電流制御回路20はハンドル21に接続されてい
る。
From another point of view, the firing path 18 is provided substantially parallel to the flat portion 22 of the end face 15a forming the gap between the different magnetic poles. The coils 16 and 17 connected in series are connected to a current control circuit 20, and the current control circuit 20 is connected to a handle 21.

【0011】ここで、発射路18は非磁性体を用いるこ
とが重要であり、本実施例ではステンレスを用いてい
る。なお、この他に硬質合成樹脂等を用いることもでき
る。ヨーク15は透磁率の高い磁心材料であることが望
ましく本実施例では積層ケイ素鋼板を用いている。この
ヨーク15の端面15a側の寸法Bは15mm、上下の
ヨーク寸法Cは10mm、後部15cのヨーク寸法Dは
10mmとしている。また、ヨークの厚さは10mmで
ある。そして、異なる磁極間の距離Eは13mmであ
り、平坦部22の中心22aから発射路18の一方の端
18aまでの距離は14mmである。
Here, it is important to use a non-magnetic material for the launch path 18, and in this embodiment, stainless steel is used. Other than this, a hard synthetic resin or the like may be used. The yoke 15 is preferably made of a magnetic core material having a high magnetic permeability, and a laminated silicon steel plate is used in this embodiment. The dimension B of the yoke 15 on the end face 15a side is 15 mm, the upper and lower yoke dimensions C are 10 mm, and the yoke dimension D of the rear portion 15c is 10 mm. The thickness of the yoke is 10 mm. The distance E between different magnetic poles is 13 mm, and the distance from the center 22a of the flat portion 22 to one end 18a of the firing path 18 is 14 mm.

【0012】また、直列に接続されたコイル16および
17は、ヨーク15の端面15a近傍にそれぞれ設ける
ことが重要である。これを例えばヨーク15の後面15
c側に設けると、所定間隔おいて設けられた磁極の磁力
が弱くなる。同様に平坦部22とテーパ部23との比を
略1対2とし、そのテーパ角を略30度としたのは以下
の理由による。すなわち、平坦部22を小さくするほど
磁束密度は増すが、極端に小さくすると磁束が飽和して
しまいかえって磁力を弱くしてしまう。また、テーパ角
Aを大きくするほど平坦部22の磁束密度は大きくなる
が、一方このテーパ角Aを大きくするとどうしても端面
15aとコイル16或いは17との間に空隙できてしま
いかえって磁気抵抗が大きくなり、磁力が弱くなる。し
たがって、このような条件を勘案して上記条件を選ん
だ。
It is important that the coils 16 and 17 connected in series are provided near the end surface 15a of the yoke 15, respectively. This is, for example, the rear surface 15 of the yoke 15.
If it is provided on the c side, the magnetic force of the magnetic poles provided at a predetermined interval becomes weak. Similarly, the ratio of the flat portion 22 to the tapered portion 23 is set to about 1: 2, and the taper angle is set to about 30 degrees for the following reason. That is, the smaller the flat portion 22 is, the higher the magnetic flux density is. However, if the flat portion 22 is made extremely small, the magnetic flux is saturated and the magnetic force is weakened. Further, as the taper angle A is increased, the magnetic flux density of the flat portion 22 is increased. On the other hand, when the taper angle A is increased, an air gap is inevitably formed between the end face 15a and the coil 16 or 17, and the magnetic resistance is increased. , The magnetic force becomes weak. Therefore, the above conditions were selected in consideration of such conditions.

【0013】さらに、コイル16およびコイル17の巻
数の比は、上側コイル16に比べて下側コイル17の巻
数は2倍から3倍が好ましい。これは、下側コイル17
による磁力のほうが上側コイル16による吸引力より大
きくなるため、球3は発射路18側に引き付けられた状
態、すなわち、発射路18に沿って安定した発射が実現
できるようにするためである。
Further, as for the ratio of the number of turns of the coil 16 and the coil 17, it is preferable that the number of turns of the lower coil 17 is 2 to 3 times that of the upper coil 16. This is the lower coil 17
This is because the magnetic force due to is larger than the attraction force due to the upper coil 16, so that the sphere 3 is attracted to the launch path 18 side, that is, the stable launch can be realized along the launch path 18.

【0014】以上のように構成されたパチンコ機の球発
射装置12について、以下にその動作を説明する。球供
給部19に球3が供給された後、ハンドル21を操作す
ると、この操作に応じた信号が電流制御部20から出力
されてコイル16および17に印加され磁極を形成する
電磁石の強さに変化する。そして、この磁極の形成によ
り、球供給部19に供給されている球3を吸引する。吸
引された球3は発射路18上を磁極の端面15aに形成
された磁束密度の大きい平坦部22に向かって発射され
る。球3が平坦部22の略中心22aにきたとき、コイ
ル16および17への通電は遮断される。そうすると吸
引された球3は勢いよく発射路18上をガイド4に向か
って発射される。
The operation of the ball launching device 12 of the pachinko machine constructed as described above will be described below. When the handle 21 is operated after the sphere 3 is supplied to the sphere supply unit 19, a signal according to this operation is output from the current control unit 20 and applied to the coils 16 and 17 to increase the strength of the electromagnet forming the magnetic pole. Change. Then, by forming this magnetic pole, the sphere 3 supplied to the sphere supply unit 19 is attracted. The attracted sphere 3 is launched on the firing path 18 toward a flat portion 22 formed on the end surface 15a of the magnetic pole and having a high magnetic flux density. When the sphere 3 reaches the approximate center 22a of the flat portion 22, the power supply to the coils 16 and 17 is cut off. Then, the sucked ball 3 is vigorously ejected on the firing path 18 toward the guide 4.

【0015】[0015]

【発明の効果】以上のように本発明のパチンコ機の球発
射装置によれば、球発射装置の異なる磁極間を形成する
端面は、発射路と略平行に設けられるとともに球供給部
側に設けられた平坦部と、この平坦部に続いて前記発射
路の他方の端に向かって広がったテーパ部を有している
ので、端面の平坦部は球供給部側に形成されるとともに
テーパ部はその反対側に形成される。したがって、この
平坦部は磁束密度が大きくなるとともにこの磁束密度の
大きい平坦部の中心と球供給部の距離は従来に比べて小
さくなる。このことは、コイルへの電流の印加時間が短
くて良いことになり、その分省電力化が図れる。
As described above, according to the ball launching device of the pachinko machine of the present invention, the end faces forming between the different magnetic poles of the ball launching device are provided substantially parallel to the launch path and are provided on the side of the ball supply unit. Since there is a flat part formed on the sphere supply part side and a flat part formed on the sphere supply part side, the flat part on the end face is formed. It is formed on the opposite side. Therefore, the magnetic flux density of the flat portion becomes large, and the distance between the center of the flat portion having the large magnetic flux density and the sphere supplying portion becomes smaller than that in the conventional case. This means that the time for applying the current to the coil may be short, and power saving can be achieved accordingly.

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

【図1】本発明の一実施例によるパチンコ機の球発射装
置の断面図
FIG. 1 is a sectional view of a ball launching device of a pachinko machine according to an embodiment of the present invention.

【図2】同、要部拡大断面図FIG. 2 is an enlarged sectional view of the same part.

【図3】パチンコ機の正面図[Figure 3] Front view of a pachinko machine

【図4】従来のパチンコ機の球発射装置の断面図FIG. 4 is a sectional view of a conventional ball launching device for a pachinko machine.

【符号の説明】[Explanation of symbols]

3 球 15 ヨーク 15a 端面 16 コイル 17 コイル 18 発射路 19 球供給部 22 平坦部 23 テーパ部 3 Ball 15 Yoke 15a End Face 16 Coil 17 Coil 18 Launch Path 19 Ball Supply Part 22 Flat Part 23 Tapered Part

Claims (2)

【特許請求の範囲】[Claims] 【請求項1】 所定間隔をおいて異なる磁極を対向させ
たヨークと、このヨークに巻き付けられたコイルと、前
記異なる磁極間を貫通して設けられた発射路と、この発
射路の一方の端に設けられた球供給部とを備え、前記異
なる磁極間を形成する端面は、前記発射路と略平行に設
けられるとともに前記球供給部側に設けられた平坦部
と、この平坦部に続いて前記発射路の他方の端に向かっ
て広がったテーパ部を有するパチンコ機の球発射装置。
1. A yoke in which different magnetic poles are opposed to each other at a predetermined interval, a coil wound around the yoke, a firing path penetrating between the different magnetic poles, and one end of the firing path. An end surface forming the space between the different magnetic poles, the flat portion being provided substantially parallel to the firing path and provided on the side of the sphere feeding portion, and following the flat portion. A ball launching device for a pachinko machine having a taper portion that widens toward the other end of the launch path.
【請求項2】 平坦部とテーパ部との比は略1対2とす
るとともに、テーパ角を略30度とした請求項1記載の
パチンコ機の球発射装置。
2. The ball launching device for a pachinko machine according to claim 1, wherein the ratio of the flat portion to the tapered portion is approximately 1: 2, and the taper angle is approximately 30 degrees.
JP15217394A 1994-07-04 1994-07-04 Pachinko ball launcher Expired - Fee Related JP2956479B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP15217394A JP2956479B2 (en) 1994-07-04 1994-07-04 Pachinko ball launcher

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP15217394A JP2956479B2 (en) 1994-07-04 1994-07-04 Pachinko ball launcher

Publications (2)

Publication Number Publication Date
JPH0810397A true JPH0810397A (en) 1996-01-16
JP2956479B2 JP2956479B2 (en) 1999-10-04

Family

ID=15534644

Family Applications (1)

Application Number Title Priority Date Filing Date
JP15217394A Expired - Fee Related JP2956479B2 (en) 1994-07-04 1994-07-04 Pachinko ball launcher

Country Status (1)

Country Link
JP (1) JP2956479B2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008131993A (en) * 2006-11-27 2008-06-12 Shinshu Univ Rotary shooting device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008131993A (en) * 2006-11-27 2008-06-12 Shinshu Univ Rotary shooting device

Also Published As

Publication number Publication date
JP2956479B2 (en) 1999-10-04

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