JP4575534B2 - Label for collection / delivery device and collection / delivery device for portable terminal - Google Patents

Label for collection / delivery device and collection / delivery device for portable terminal Download PDF

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Publication number
JP4575534B2
JP4575534B2 JP25190999A JP25190999A JP4575534B2 JP 4575534 B2 JP4575534 B2 JP 4575534B2 JP 25190999 A JP25190999 A JP 25190999A JP 25190999 A JP25190999 A JP 25190999A JP 4575534 B2 JP4575534 B2 JP 4575534B2
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Japan
Prior art keywords
mobile terminal
collection
distribution device
label
portable terminal
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JP25190999A
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JP2001074917A (en
Inventor
宗弘 鳥居
賢三 堀江
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Panasonic Corp
Panasonic Holdings Corp
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Panasonic Corp
Matsushita Electric Industrial Co Ltd
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  • Mobile Radio Communication Systems (AREA)
  • Optical Communication System (AREA)

Description

【0001】
【発明の属する技術分野】
本発明は、機器のデータ送受信に光通信を用いる携帯端末用集配信装置に関し、特に端末間が離れた状態での通信が可能な光通信において光送受信を光干渉もなく行なえるようにしたものである。
【0002】
【従来の技術】
端末間が離れた状態で通信を行なうにあたり従来から光通信が使用されている。しかし光通信を実行するために機器を密着させると、前記光が隣光と反射して干渉してしまうため、ある程度の距離を置かなくてはならない。
【0003】
密着しても光通信を可能とする為には、隣光との反射を軽減するフィルタの透過率を下げる必要がある。従来そのためにフィルタ材料へ添加物を入れたり、厚みを厚くすることで実施していたが、特殊な材料となるため価格が高価となったり、厚くすることで小型化への対応が困難であった。
【0004】
【発明が解決しようとする課題】
本発明は、密着した機器間での光送受信を光干渉もなく行なえるようにした携帯端末用集配信装置を提供することを目的とするものである。
【0005】
【課題を解決するための手段】
上記問題を解決するために本願の請求項1記載の発明は、携帯端末機と密着させた状態で光通信によりデータの送受信を行なう携帯端末用集配信装置に用いる、印刷上がりでピンホールを有するラベルであって、前記光通信の光路に前記ピンホールが存在する部分を貼付する前記ラベルである。
ラベルを貼付することにより、透過率を減少させ送受信の信号の光干渉を無くすようにした携帯端末用集配信装置としたものであり、携帯端末機を携帯端末用集配信装置に密着させて光通信によるデータ通信を行なうことが可能となる。
【0006】
また、請求項2記載の発明は、携帯端末機と密着させた状態で光通信によりデータの送受信を行なう携帯端末用集配信装置あって、前記光通信の光路に印刷上がりでピンホールを有するラベルの前記ピンホールが存在する部分を貼付したことを特徴とする携帯端末用集配信装置である。これにより、携帯端末機を携帯端末用集配信装置に密着させて光通信によるデータ通信を行なうことが可能となる。
【0015】
【発明の実施の形態】
以下、本発明の実施の形態について、図1から図9を用いて説明する。
【0016】
図1は本発明の携帯端末用集配信装置の構成を示す斜視図であり、図2は図1の矢印A方向からみた携帯端末用集配信装置の構成を示す正面図、図3は携帯端末機の構成を示す斜視図、図4は本発明の携帯端末用集配信装置に携帯端末機を装着したときの様子を示す斜視図である。
【0017】
図1及び図2において、本発明の携帯端末用集配信装置は、携帯端末機が装着されたことを検出する装着検出スイッチ11、携帯端末機が装着されている時に携帯端末機に非接触で給電する非接触給電部12、装置の動作状態を示す各種表示ランプ、すなわち装着ランプ13、通信ランプ14及び電源ランプ15を備えている。
【0018】
また、本発明の携帯端末用集配信装置は、携帯端末機が装着されたときに光信号により携帯端末機とデータ通信を行なう光コネクタ21、携帯端末機に電源を供給する供給端子22、通信ケーブルを接続し、モデム(図示せず)と接続するシリアルコネクタ24、付属のACアダプタ(図示せず)を接続する電源ジャック25、運用時は使用せずに保守時に使用する保守スイッチ26および本機をリセットするためのリセットスイッチ27を備えている。
【0019】
また、図3に示されるように携帯端末機は、各種伝票や帳票に貼付されているバーコードを読み取る機能を有し、その読み取り作業中をランプで確認する読み取り確認ランプ31、読み取り作業等を音で確認するためのブザー口32、操作キーから打ち込んだ必要なデータを表示する表示部33、各種動作モードを設定するためのトリガスイッチ34、携帯所持するためのハンドストラップ35および上記した携帯端末用集配信装置に装着して光信号により携帯端末機とデータ通信を行なう光通信I/Fコネクタ36を備えている。
【0020】
次に携帯端末機の使用方法について簡単に説明する。携帯端末機を所持して各種データを収集した後に、図4に示すように携帯端末機を本発明の携帯端末用集配信装置に装着する。装着検出スイッチ11によりこの装着を検出し、その後に携帯端末機に蓄積してある業務データを光通信I/Fコネクタ36を介して携帯端末用集配信装置の光コネクタ21に送信する。この業務データはシリアルコネクタ24を介してモデム(図示せず)、ホストコンピュータ(図示せず)に転送される。また装着しているときに携帯端末用集配信装置の非接触給電部12から携帯端末機に非接触で電力を供給する。
【0021】
(第1の実施の形態)
図5は本発明の第1の実施形態の構成を示す一部拡大した断面図である。図5において光通信、例えばIrDA(Infrared Data Association)規格の赤外線通信を行なう能力が与えられている携帯端末機を携帯端末用集配信装置に密着配置する。
【0022】
本発明の第1の実施形態では、携帯端末機を携帯端末用集配信装置に装着するだけで、携帯端末機と携帯端末用集配信装置の密着配置が行なわれると共に携帯端末用集配信装置と携帯端末機とは光通信の位置合わせも完成する。
【0023】
通常、IrDA規格に準拠する携帯端末機を携帯端末用集配信装置に密着させると、光強度の関係から本来の光が隣光と反射して干渉してしまう。そこで、本発明の第1の実施形態では、図6に示すように印刷上がりでピンホールを有するラベル51を、光を透過するフィルタ52の表側に貼付する。
【0024】
このようにすると、光の透過率が減少して光の強度が落ち、それに伴い隣光との干渉は起きなくなり、IrDA規格に準拠する携帯端末機を携帯端末用集配信装置に密着させて使用することができる。
【0025】
したがって、本発明の第1の実施形態によれば、フィルタ材料へ添加物を入れたり、フィルタの厚みを厚くするというような特殊材料を使用せずに、ピンホールを有するラベルを上記フィルタの表側に貼付することにより、IrDA規格に準拠した携帯端末機を携帯端末用集配信装置に密着させてデータ通信を行なうことが可能となる。
【0026】
(第2の実施の形態)
図7は本発明の第2の実施形態の構成を示す一部拡大した断面図である。図7において光通信、例えばIrDA規格の光通信を行なう能力が与えられている携帯端末機を携帯端末用集配信装置に密着配置する。
【0027】
本発明の第2の実施形態では、携帯端末機を携帯端末用集配信装置に装着するだけで、携帯端末機と携帯端末用集配信装置の密着配置が行なわれると共に携帯端末用集配信装置と携帯端末機とは光通信の位置合わせも完成する。
【0028】
通常、IrDA規格に準拠する携帯端末機を携帯端末用集配信装置に密着させると、光強度の関係から本来の光が隣光と反射して干渉してしまう。そこで、本発明の第2の実施形態では、図6に示すように印刷上がりでピンホールを有するラベル71を、光を透過するフィルタ72の裏側に貼付する。
【0029】
このようにすると、光の透過率が減少して光の強度が落ち、それに伴い隣光との干渉は起きなくなり、IrDA規格に準拠する携帯端末機を携帯端末用集配信装置に密着させて使用することができる。
【0030】
したがって、本発明の第2の実施形態によれば、フィルタ材料へ添加物を入れたり、フィルタの厚みを厚くするというような特殊材料を使用せずに、ピンホールを有するラベルを上記フィルタの裏側に貼付することにより、IrDA規格に準拠した携帯端末機を携帯端末用集配信装置に密着させてデータ通信を行なうことが可能となる。またラベルが貼ってあることが表面から確認できないためラベルの端面や若干の貼りずれも分からないため見栄えの良い携帯端末用集配信装置の提供が可能となる。
【0031】
(第3の実施の形態)
図8は本発明の第3の実施形態の構成を示す一部拡大した断面図である。図8において光通信、例えばIrDA規格の光通信を行なう能力が与えられている携帯端末機を携帯端末用集配信装置に密着配置する。
【0032】
本発明の第3の実施形態では、携帯端末機を携帯端末用集配信装置に装着するだけで、携帯端末機と携帯端末用集配信装置の密着配置が行なわれると共に携帯端末用集配信装置と携帯端末機とは光通信の位置合わせも完成する。
【0033】
通常、IrDA規格に準拠する携帯端末機を携帯端末用集配信装置に密着させると、光強度の関係から本来の光が隣光と反射して干渉してしまう。そこで、本発明の第3の実施形態では、図6に示すように印刷上がりでピンホールを有するラベル81を、光を透過するフィルタ82の表側に貼付する。またそのラベル81には、ピンホールを有する部分以外のその他の部分に、機器の機能や注意書き等の必要な事項を印刷しておくようにする。
【0034】
このようにすると、光の透過率が減少して光の強度が落ち、それに伴い隣光との干渉は起きなくなり、IrDA規格に準拠する携帯端末機を携帯端末用集配信装置に密着させて使用することができる。
【0035】
したがって、本発明の第3の実施形態によれば、フィルタ材料へ添加物を入れたり、フィルタの厚みを厚くするというような特殊材料を使用せずに、ピンホールを有するラベルを上記フィルタの表側に貼付することにより、IrDA規格に準拠した携帯端末機を携帯端末用集配信装置に密着させてデータ通信を行なうことが可能となる。またラベルの光通信部以外に他の印刷を施すことにより、機器の機能や注意書き等に要していたラベルを不要とすることができ、トータルのラベル枚数の削減または機器筐体への表示印刷、彫刻等が削減され携帯端末用集配信装置に要したコストを低減することが可能となる。
【0036】
(第4の実施の形態)
図9は本発明の第4の実施形態に係るラベルの構成を示す平面図であり、その一部が拡大した表示されている。図9におけるラベルが図6に示されるラベルと異なる点は、印刷上がりでピンホールを有するラベルを利用するではなく、メッシュ印刷をすることで光の透過率を定量的にコントロールできるラベルを利用している点である。こうすることで、ラベルの出来上がりのバラツキがなくなり、品質が安定した透過率を下げるためのラベルを使って携帯端末用集配信装置を提供することが可能となる。
【0037】
つまりメッシュにおける目の細かさをメッシュ印刷により任意にコントロールすることができるので、光の透過率を定量的にコントロールし、IrDA規格の光通信の能力を最大限生かした携帯端末用集配信装置を提供することが可能となる。
【0038】
このようなメッシュ印刷が施されたラベルを、上記した第1乃至第3の実施形態に示したラベルの貼付方法を採ることにより、上記した第1乃至第3の実施形態と同様、第4の実施形態の携帯端末用集配信装置を構成することができる。
【0039】
さらに上記の実施の形態においては専らラベルを貼付する例について説明してきたが、このラベルを光透過部分に直接印刷するように構成しても良い。
【0040】
【発明の効果】
以上述べたように本発明は、携帯端末機と密着させた状態で光通信の位置合わせを行ない、光通信、例えばIrDA規格に準拠した赤外線によるデータの送受信が可能な携帯端末用集配信装置であって、前記IrDA規格に準拠した赤外線通信を可能とするために光を透過させるフィルタと、印刷上がりでピンホールを有するラベルとを備え、前記ラベルを前記光を透過させる前記フィルタに貼付することにより、透過率を減少させ送受信の信号の光干渉を無くすようにした携帯端末用集配信装置としたものであり、IrDA規格に準拠した携帯端末機を携帯端末用集配信装置に密着させてデータ通信を行なうことが可能となる。
【0041】
また、本発明は、携帯端末機と密着させた状態で光通信の位置合わせを行ない、光通信、例えばIrDA規格に準拠した赤外線によるデータの送受信が可能な携帯端末用集配信装置であって、前記IrDA規格に準拠した赤外線通信を可能とするために光を透過させるフィルタと、メッシュ印刷をすることで光の透過率を定量的にコントロールできるラベルとを備え、前記ラベルを前記光を透過させる前記フィルタの貼付することにより、透過率を減少させ送受信の信号の光干渉を無くすようにした携帯端末用集配信装置としたものであり、ラベルの出来上がりのバラツキがなくなり、品質が安定した透過率を下げるためのラベルを使って携帯端末用集配信装置を提供することが可能となる。
【0042】
また、本発明は、携帯端末機と密着させた状態で光通信の位置合わせを行ない、光通信、例えばIrDA規格に準拠した赤外線によるデータの送受信が可能な携帯端末用集配信装置であって、前記IrDA規格に準拠した赤外線通信を可能とするために光を透過させるフィルタを備え、前記光を透過させる前記フィルタに印刷上がりでピンホールを有するラベルを直接印刷することにより、透過率を減少させ送受信の信号の光干渉を無くすようにした携帯端末用集配信装置としたものであり、IrDA規格に準拠した携帯端末機を携帯端末用集配信装置に密着させてデータ通信を行なうことが可能となる。
【0043】
また、本発明は、携帯端末機と密着させた状態で光通信の位置合わせを行ない、光通信、例えばIrDA規格に準拠した赤外線によるデータの送受信が可能な携帯端末用集配信装置であって、前記IrDA規格に準拠した赤外線通信を可能とするために光を透過させるフィルタを備え、前記光を透過させる前記フィルタにメッシュ印刷をすることで光の透過率を定量的にコントロールできるラベルを直接印刷することにより、透過率を減少させ送受信の信号の光干渉を無くすようにした携帯端末用集配信装置としたものであり、IrDA規格に準拠した携帯端末機を携帯端末用集配信装置に密着させてデータ通信を行なうことが可能となる。
【図面の簡単な説明】
【図1】本発明の携帯端末用集配信装置の構成を示す斜視図、
【図2】図1の矢印A方向からみた携帯端末用集配信装置の構成を示す正面図、
【図3】携帯端末機の構成を示す斜視図、
【図4】本発明の携帯端末用集配信装置に携帯端末機を装着したときの様子を示す斜視図、
【図5】本発明の第1の実施形態の構成を示す一部拡大した断面図、
【図6】印刷上がりでピンホールを有するラベルの構成を示す図、
【図7】本発明の第2の実施形態の構成を示す一部拡大した断面図、
【図8】本発明の第3の実施形態の構成を示す一部拡大した断面図、
【図9】本発明の第4の実施形態に係るラベルの構成を示す平面図である。
【符号の説明】
11 装着検出スイッチ
12 非接触給電部
13 装着ランプ
14 通信ランプ
15 電源ランプ
21 光コネクタ
22 給電端子
24 シリアルコネクタ
25 電源ジャック
26 保守用スイッチ
27 リセットスイッチ
31 読み取り確認ランプ
32 ブザー口
33 表示部
34 トリガスイッチ
35 ハンドストラップ
36 光通信I/Fコネクタ
51、71、81 ラベル
52、72、82 フィルタ
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a mobile terminal collection and distribution device that uses optical communication for data transmission / reception of equipment, and in particular, can perform optical transmission / reception without optical interference in optical communication capable of communication in a state where terminals are separated from each other. It is.
[0002]
[Prior art]
Conventionally, optical communication has been used for communication in a state where terminals are separated from each other. However, when the devices are brought into close contact with each other to execute optical communication, the light is reflected and interferes with the adjacent light, so that a certain distance must be set.
[0003]
In order to enable optical communication even with close contact, it is necessary to reduce the transmittance of a filter that reduces reflection from adjacent light. Conventionally, this was done by adding additives to the filter material or increasing the thickness, but it became a special material, making it expensive, and increasing the thickness made it difficult to cope with downsizing. It was.
[0004]
[Problems to be solved by the invention]
SUMMARY OF THE INVENTION An object of the present invention is to provide a mobile terminal collection / distribution device that can perform optical transmission / reception between closely attached devices without optical interference.
[0005]
[Means for Solving the Problems]
In order to solve the above-mentioned problem, the invention according to claim 1 of the present application has a pinhole in printed form used for a collection and distribution device for portable terminals that transmits and receives data by optical communication in close contact with the portable terminal. a label is the label you stuck portion where the said pinhole in the optical path of the optical communication exists.
This is a mobile terminal collection / distribution device that reduces the transmittance and eliminates the optical interference of transmitted / received signals by attaching a label. The mobile terminal is brought into close contact with the mobile terminal collection / distribution device to transmit light. Data communication by communication can be performed.
[0006]
According to a second aspect of the present invention, there is provided a portable terminal collection / distribution device for transmitting and receiving data by optical communication in close contact with a portable terminal, wherein the label has a printed pinhole in the optical path of the optical communication. This is a mobile terminal collection and distribution device, wherein a portion where the pinhole is present is pasted. As a result, it is possible to perform data communication by optical communication by bringing the mobile terminal into close contact with the mobile terminal collection and distribution device.
[0015]
DETAILED DESCRIPTION OF THE INVENTION
Hereinafter, embodiments of the present invention will be described with reference to FIGS.
[0016]
FIG. 1 is a perspective view showing the configuration of the mobile terminal collection and distribution device of the present invention, FIG. 2 is a front view showing the configuration of the mobile terminal collection and distribution device viewed from the direction of arrow A in FIG. 1, and FIG. FIG. 4 is a perspective view showing a state when the portable terminal is mounted on the portable terminal collection and distribution apparatus of the present invention.
[0017]
1 and 2, the mobile terminal collection and distribution apparatus according to the present invention includes a mounting detection switch 11 that detects that a mobile terminal is mounted, and is not in contact with the mobile terminal when the mobile terminal is mounted. A non-contact power feeding unit 12 that feeds power, various display lamps that indicate the operation state of the apparatus, that is, a mounting lamp 13, a communication lamp 14, and a power lamp 15 are provided.
[0018]
In addition, the mobile terminal collection and distribution device of the present invention includes an optical connector 21 that performs data communication with a mobile terminal using an optical signal when the mobile terminal is attached, a supply terminal 22 that supplies power to the mobile terminal, a communication A serial connector 24 for connecting a cable and a modem (not shown), a power jack 25 for connecting an attached AC adapter (not shown), a maintenance switch 26 and a main switch used for maintenance without being used during operation A reset switch 27 for resetting the machine is provided.
[0019]
In addition, as shown in FIG. 3, the portable terminal has a function of reading barcodes attached to various slips and forms, and a reading confirmation lamp 31 for checking the reading operation with a lamp, a reading operation, etc. A buzzer port 32 for confirming with sound, a display unit 33 for displaying necessary data typed from operation keys, a trigger switch 34 for setting various operation modes, a hand strap 35 for carrying, and the above-described portable terminal And an optical communication I / F connector 36 which is attached to the collection and distribution device for data communication with the portable terminal using an optical signal.
[0020]
Next, how to use the portable terminal will be briefly described. After possessing the portable terminal and collecting various data, the portable terminal is mounted on the portable terminal collection and distribution apparatus of the present invention as shown in FIG. This attachment is detected by the attachment detection switch 11, and thereafter, business data stored in the portable terminal is transmitted to the optical connector 21 of the portable terminal collection and distribution device via the optical communication I / F connector 36. The business data is transferred to a modem (not shown) and a host computer (not shown) via the serial connector 24. In addition, power is supplied from the non-contact power feeding unit 12 of the mobile terminal collection and distribution device to the mobile terminal device in a non-contact manner while being worn.
[0021]
(First embodiment)
FIG. 5 is a partially enlarged cross-sectional view showing the configuration of the first embodiment of the present invention. In FIG. 5, a portable terminal provided with an ability to perform optical communication, for example, infrared communication of IrDA (Infrared Data Association) standard, is placed in close contact with a portable terminal collection and distribution device.
[0022]
In the first embodiment of the present invention, the mobile terminal and the mobile terminal collection and distribution device are placed in close contact with each other only by mounting the mobile terminal on the mobile terminal collection and distribution device. The optical communication alignment with the portable terminal is also completed.
[0023]
Normally, when a portable terminal conforming to the IrDA standard is brought into close contact with a portable terminal collection and distribution device, the original light is reflected from the adjacent light and interferes with the light due to the light intensity. Therefore, in the first embodiment of the present invention, as shown in FIG. 6, a label 51 having a pinhole after printing is attached to the front side of the filter 52 that transmits light.
[0024]
In this way, the light transmittance is reduced and the light intensity is reduced, so that there is no interference with the adjacent light, and the portable terminal conforming to the IrDA standard is used in close contact with the portable terminal collection and distribution device. can do.
[0025]
Therefore, according to the first embodiment of the present invention, a label having a pinhole is attached to the front side of the filter without using a special material such as adding an additive to the filter material or increasing the thickness of the filter. By sticking to the mobile phone, it becomes possible to perform data communication by bringing a mobile terminal compliant with the IrDA standard into close contact with the mobile terminal collection and distribution device.
[0026]
(Second Embodiment)
FIG. 7 is a partially enlarged cross-sectional view showing the configuration of the second embodiment of the present invention. In FIG. 7, a mobile terminal device having the capability of performing optical communication, for example, IrDA standard optical communication, is placed in close contact with the mobile terminal collection and distribution device.
[0027]
In the second embodiment of the present invention, the mobile terminal and the mobile terminal collection / distribution device are placed in close contact with each other only by attaching the mobile terminal to the mobile terminal collection / distribution device. The optical communication alignment with the portable terminal is also completed.
[0028]
Normally, when a portable terminal conforming to the IrDA standard is brought into close contact with a portable terminal collection and distribution device, the original light is reflected from the adjacent light and interferes with the light due to the light intensity. Therefore, in the second embodiment of the present invention, as shown in FIG. 6, a label 71 having a printed hole and having a pinhole is attached to the back side of a filter 72 that transmits light.
[0029]
In this way, the light transmittance is reduced and the light intensity is reduced, so that there is no interference with the adjacent light, and the portable terminal conforming to the IrDA standard is used in close contact with the portable terminal collection and distribution device. can do.
[0030]
Therefore, according to the second embodiment of the present invention, a label having a pinhole is attached to the back side of the filter without using a special material such as adding an additive to the filter material or increasing the thickness of the filter. By sticking to the mobile phone, it becomes possible to perform data communication by bringing a mobile terminal compliant with the IrDA standard into close contact with the mobile terminal collection and distribution device. Further, since it is not possible to confirm from the surface that the label is attached, it is not possible to know the end face of the label or slight sticking deviation, so that it is possible to provide a portable terminal collection and distribution device.
[0031]
(Third embodiment)
FIG. 8 is a partially enlarged cross-sectional view showing the configuration of the third embodiment of the present invention. In FIG. 8, a mobile terminal device having the capability of performing optical communication, for example, IrDA standard optical communication, is placed in close contact with the mobile terminal collection and distribution device.
[0032]
In the third embodiment of the present invention, the mobile terminal and the mobile terminal collection / distribution device are placed in close contact with each other only by attaching the mobile terminal to the mobile terminal collection / distribution device. The optical communication alignment with the portable terminal is also completed.
[0033]
Normally, when a portable terminal conforming to the IrDA standard is brought into close contact with a portable terminal collection and distribution device, the original light is reflected from the adjacent light and interferes with the light due to the light intensity. Therefore, in the third embodiment of the present invention, as shown in FIG. 6, a label 81 having a printed hole and having a pinhole is attached to the front side of the filter 82 that transmits light. Also, on the label 81, necessary items such as device functions and notes are printed on other parts other than the part having the pinhole.
[0034]
In this way, the light transmittance is reduced and the light intensity is reduced, so that there is no interference with the adjacent light, and the portable terminal conforming to the IrDA standard is used in close contact with the portable terminal collection and distribution device. can do.
[0035]
Therefore, according to the third embodiment of the present invention, a label having a pinhole is attached to the front side of the filter without using a special material such as adding an additive to the filter material or increasing the thickness of the filter. By sticking to the mobile phone, it becomes possible to perform data communication by bringing a mobile terminal compliant with the IrDA standard into close contact with the mobile terminal collection and distribution device. Also, by printing other than the optical communication part of the label, it is possible to eliminate the label required for the function and precautions of the device, reducing the total number of labels or displaying it on the device housing. Printing, engraving, and the like are reduced, and the cost required for the mobile terminal collection and distribution apparatus can be reduced.
[0036]
(Fourth embodiment)
FIG. 9 is a plan view showing a configuration of a label according to the fourth embodiment of the present invention, and a part thereof is enlarged and displayed. The label in FIG. 9 is different from the label shown in FIG. 6 in that a label that can quantitatively control the light transmittance by mesh printing is used instead of using a label having a pinhole after printing. It is a point. By doing so, it is possible to provide a mobile terminal collection and distribution device using labels for reducing the transmittance with stable quality, and eliminating variations in label production.
[0037]
In other words, the fineness of the mesh can be arbitrarily controlled by mesh printing. Therefore, a portable terminal collection and distribution device that makes full use of IrDA standard optical communication capability by quantitatively controlling the light transmittance. It becomes possible to provide.
[0038]
By adopting the label affixing method shown in the first to third embodiments, the label subjected to such mesh printing is used in the same manner as in the first to third embodiments. The mobile terminal collection and distribution apparatus of the embodiment can be configured.
[0039]
Furthermore, in the above-described embodiment, an example in which a label is applied exclusively has been described. However, the label may be directly printed on a light transmission portion.
[0040]
【The invention's effect】
As described above, the present invention is a mobile terminal collection / distribution device that performs optical communication alignment in close contact with a mobile terminal, and is capable of transmitting and receiving data using optical communication, for example, infrared data conforming to the IrDA standard. A filter that transmits light to enable infrared communication in conformity with the IrDA standard and a label having a pinhole after printing, and the label is attached to the filter that transmits the light. This is a mobile terminal collection and distribution device that reduces transmittance and eliminates optical interference between transmitted and received signals, and a portable terminal that conforms to the IrDA standard is closely attached to the mobile terminal collection and distribution device. Communication can be performed.
[0041]
Further, the present invention is a mobile terminal collection and distribution device that performs optical communication alignment in a state of being in close contact with the mobile terminal, and is capable of transmitting and receiving data by optical communication, for example, infrared data compliant with the IrDA standard, A filter that transmits light to enable infrared communication compliant with the IrDA standard and a label that can quantitatively control light transmittance by mesh printing, and transmits the light through the label By attaching the filter, it is a mobile terminal collection and distribution device that reduces the transmittance and eliminates the optical interference of the transmitted and received signals. It is possible to provide a mobile terminal collection and distribution device using a label for lowering the mobile phone.
[0042]
Further, the present invention is a mobile terminal collection and distribution device that performs optical communication alignment in a state of being in close contact with the mobile terminal, and is capable of transmitting and receiving data by optical communication, for example, infrared data compliant with the IrDA standard, In order to enable infrared communication compliant with the IrDA standard, a filter that transmits light is provided, and a label having a pinhole is directly printed on the filter that transmits light, thereby reducing transmittance. It is a portable terminal collection and distribution device that eliminates optical interference of signals sent and received, and it is possible to perform data communication by bringing a portable terminal compliant with the IrDA standard into close contact with the collection and distribution device for portable terminals Become.
[0043]
Further, the present invention is a mobile terminal collection and distribution device that performs optical communication alignment in a state of being in close contact with the mobile terminal, and is capable of transmitting and receiving data by optical communication, for example, infrared data compliant with the IrDA standard, In order to enable infrared communication compliant with the IrDA standard, a filter that transmits light is directly printed, and a label that can quantitatively control the light transmittance by mesh printing on the filter that transmits light is directly printed. By doing so, it is a portable terminal collection and distribution device that reduces the transmittance and eliminates the optical interference of transmitted and received signals, and the portable terminal conforming to the IrDA standard is closely attached to the portable terminal collection and distribution device. Thus, data communication can be performed.
[Brief description of the drawings]
FIG. 1 is a perspective view showing a configuration of a mobile terminal collection and distribution device of the present invention;
FIG. 2 is a front view showing the configuration of the mobile terminal collection and distribution device as seen from the direction of arrow A in FIG.
FIG. 3 is a perspective view showing a configuration of a mobile terminal;
FIG. 4 is a perspective view showing a state when a portable terminal is mounted on the portable terminal collection and distribution device of the present invention;
FIG. 5 is a partially enlarged cross-sectional view showing the configuration of the first embodiment of the present invention;
FIG. 6 is a diagram showing a configuration of a label having a pinhole after printing;
FIG. 7 is a partially enlarged cross-sectional view showing a configuration of a second embodiment of the present invention;
FIG. 8 is a partially enlarged cross-sectional view showing a configuration of a third embodiment of the present invention;
FIG. 9 is a plan view showing a configuration of a label according to a fourth embodiment of the present invention.
[Explanation of symbols]
11 Wear detection switch
12 Non-contact power feeding unit
13 Installed lamp
14 Communication lamp
15 Power indicator
21 Optical connector
22 Power supply terminal
24 Serial connector
25 Power jack
26 Maintenance switch
27 Reset switch
31 Read confirmation lamp
32 Buzzer mouth
33 Display
34 Trigger switch
35 Hand strap
36 Optical communication I / F connector
51, 71, 81 labels
52, 72, 82 filters

Claims (2)

携帯端末機と密着させた状態で光通信によりデータの送受信を行なう携帯端末用集配信装置に用いる、印刷上がりでピンホールを有するラベルであって、
前記光通信の光路に前記ピンホールが存在する部分を貼付する前記ラベル。
A label that has a printed pinhole and is used in a mobile terminal collection and distribution device that transmits and receives data by optical communication in close contact with the mobile terminal .
The label you sticking the portion where the pinhole is present in the optical path of the optical communication.
携帯端末機と密着させた状態で光通信によりデータの送受信を行なう携帯端末用集配信装置あって、
前記光通信の光路に印刷上がりでピンホールを有するラベルの前記ピンホールが存在する部分を貼付したことを特徴とする携帯端末用集配信装置。
There is a mobile terminal collection and distribution device that transmits and receives data by optical communication in close contact with a mobile terminal ,
A collection and distribution device for a mobile terminal, wherein a portion of the label having a pinhole after printing is pasted on the optical path of the optical communication .
JP25190999A 1999-09-06 1999-09-06 Label for collection / delivery device and collection / delivery device for portable terminal Expired - Fee Related JP4575534B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
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Publication number Priority date Publication date Assignee Title
JP2007028263A (en) * 2005-07-19 2007-02-01 Pentax Corp Holder for infrared ray communication terminal

Citations (7)

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JPH01167883A (en) * 1987-12-24 1989-07-03 Seiko Epson Corp Light emitting device
JPH01252944A (en) * 1988-03-31 1989-10-09 Matsushita Electric Ind Co Ltd Diaphragm device
JPH02311831A (en) * 1989-05-29 1990-12-27 Matsushita Electric Ind Co Ltd Diaphragm device
JPH0520001U (en) * 1991-08-26 1993-03-12 株式会社ニコン Optical element for light intensity adjustment
JPH0581801U (en) * 1992-03-31 1993-11-05 オンキヨー株式会社 Optical signal attenuator
JP3042680U (en) * 1996-10-24 1997-10-31 キング リンク リミテッド Sunglasses and sunglasses film
JPH11186968A (en) * 1997-12-17 1999-07-09 Nec Corp Portable communication terminal equipment, communication terminal cocking station, and optical communication cable

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH01167883A (en) * 1987-12-24 1989-07-03 Seiko Epson Corp Light emitting device
JPH01252944A (en) * 1988-03-31 1989-10-09 Matsushita Electric Ind Co Ltd Diaphragm device
JPH02311831A (en) * 1989-05-29 1990-12-27 Matsushita Electric Ind Co Ltd Diaphragm device
JPH0520001U (en) * 1991-08-26 1993-03-12 株式会社ニコン Optical element for light intensity adjustment
JPH0581801U (en) * 1992-03-31 1993-11-05 オンキヨー株式会社 Optical signal attenuator
JP3042680U (en) * 1996-10-24 1997-10-31 キング リンク リミテッド Sunglasses and sunglasses film
JPH11186968A (en) * 1997-12-17 1999-07-09 Nec Corp Portable communication terminal equipment, communication terminal cocking station, and optical communication cable

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