JPH0491539A - System for responding to incoming call - Google Patents

System for responding to incoming call

Info

Publication number
JPH0491539A
JPH0491539A JP2209915A JP20991590A JPH0491539A JP H0491539 A JPH0491539 A JP H0491539A JP 2209915 A JP2209915 A JP 2209915A JP 20991590 A JP20991590 A JP 20991590A JP H0491539 A JPH0491539 A JP H0491539A
Authority
JP
Japan
Prior art keywords
signal
bell sound
sending
mobile device
hook
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
JP2209915A
Other languages
Japanese (ja)
Inventor
Susumu Naka
中 進
Takuro Oguchi
小口 卓郎
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.)
Fujitsu Ltd
Original Assignee
Fujitsu 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 Fujitsu Ltd filed Critical Fujitsu Ltd
Priority to JP2209915A priority Critical patent/JPH0491539A/en
Publication of JPH0491539A publication Critical patent/JPH0491539A/en
Pending legal-status Critical Current

Links

Abstract

PURPOSE:To surely respond to an incoming call by taking up a mobile telephone set even when the mobile telephone set is placed on a location other than its specific placing location by providing a sound signal detecting means which sends a sound detecting signal upon inputting a sound signal from a contact detecting means and a bell sound generating and sending means to the mobile telephone set. CONSTITUTION:When a mobile telephone set placed on a location other than its specific placing location detects a call signal and a bell sound generating means 6 produces sounds, a contact detecting means sends a contact detecting signal to a bell sound signal generating and sending means 5 when a called subscriber touches his hand to the mobile telephone set. Then the means 5 sends the contact detecting signal to a hook-off signal sending section 1 as an off-hook recognizing signal and, at the same time, alternately repeats the sending and non-sending of a bell sound generating signal produced from the inside at prefixed time intervals.

Description

【発明の詳細な説明】 〔概要〕 例えば、コードレス電話で通話をする際に使用する着呼
応答方式に関し、 移動機が所定の置き場以外の置き場に置かれていても、
移動機を取り上げるだけで着呼応答が確実にできる方法
の提供を目的とし、 呼出信号を検出する呼出信号検出部とベル音発生信号で
駆動されるベル音発生手段とフックオフ認識信号が入力
した時にフックオフ信号を送出するフックオフ信号送出
部とを含む移動機と、該移動機と電波で接続された固定
機とを有するコードレス電話において、該移動機に、接
触検出手段と被呼者からの音声信号が入力したことを検
出した時に音声検出信号を送出する音声信号検出手段と
ベル音発生・送出手段とを設け、所定の置き場以外の場
所に置かれた移動機が呼出信号を検出してベル音発生手
段が鳴動している時、該接触検出手段は被呼者が移動機
に手を触れた状態で、接触検出信号を該ベル音信号発生
・送出手段に送出し、該ベル音信号発生・送出手段は該
接触検出信号を該オフフック認識信号として該フックオ
フ信号送出部に送出送出すると共に、内部で発生したベ
ル音発生信号の送出、送出停止を予め設定された時間間
隔で交互に繰り返すが、該音声信号検出手段からの音声
検出信号が入力した時にベル音発生を停止させて被呼者
と発呼者との間で通話が行われる様に構成する。
[Detailed Description of the Invention] [Summary] For example, regarding an incoming call response method used when making a call using a cordless telephone, even if the mobile device is placed in a place other than the designated place,
The purpose of this technology is to provide a method that can reliably answer an incoming call simply by picking up the mobile device. In a cordless telephone comprising a mobile device including a hook-off signal sending unit that sends out a hook-off signal, and a fixed device connected to the mobile device via radio waves, the mobile device is provided with a contact detection means and a voice signal from a called party. A voice signal detection means that sends out a voice detection signal when it detects that a call signal has been input, and a bell sound generation/sending means are provided. When the generating means is ringing, the contact detection means sends a contact detection signal to the bell sound signal generation/sending means when the called party is touching the mobile device, and the contact detection means sends a contact detection signal to the bell sound signal generation/sending means. The sending means sends out the contact detection signal as the off-hook recognition signal to the hook-off signal sending section, and alternately repeats sending and stopping the sending of the internally generated bell sound generation signal at preset time intervals, The system is configured such that when a voice detection signal from the voice signal detection means is input, the generation of the bell sound is stopped and a conversation is carried out between the called party and the calling party.

[産業上の利用分野] 本発明は、例えばコードレス電話で通話をする際に使用
する着呼応答方式に関するものである。
[Industrial Application Field] The present invention relates to an incoming call response system used when making a phone call using a cordless telephone, for example.

コードレス電話は家庭や事務所内の接続装置(固定機)
と電話機(移動機)との間を無線化したものである。通
常、移動機は未使用時には所定の置き場に置かれ、置き
場に内蔵されている充電器で充電されるが、呼出しがあ
れば被呼者は置き場から移動機を取り上げて移動機が置
場から離れることによりフックスイッチが動作して通話
を開始する。
Cordless phones are connection devices (fixed devices) in homes and offices.
This is a wireless connection between the terminal and the telephone (mobile device). Normally, when the mobile device is not in use, it is left in a designated storage area and charged using a charger built into the storage area, but when a call is made, the called party picks up the mobile device from the storage area and the mobile equipment leaves the storage area. This activates the hook switch and starts the call.

しかし、移動機が上記の置き場以外の場所に置かれてい
る時はフックスイッチがない為、被呼者は移動機を取り
上げ、更にフックスイッチに相当する特定の釦を押して
から通話を開始しなければならない。
However, when the mobile device is placed in a location other than the above location, there is no hook switch, so the called party must pick up the mobile device and press a specific button that corresponds to the hook switch before starting a call. Must be.

そこで、移動機が所定の置き場以外の場所に置かれてい
ても、移動機を取り上げるだけで着呼応答が確実にでき
る方法を提供することが必要である。
Therefore, it is necessary to provide a method in which an incoming call can be reliably answered by simply picking up the mobile device even if the mobile device is placed in a place other than a predetermined location.

〔従来の技術〕[Conventional technology]

第4図は従来例のブロック図を示す。 FIG. 4 shows a block diagram of a conventional example.

以下、子機が所定の置き場以外の場所に置かれていると
して図の動作を説明する。
The operation shown in the figure will be described below assuming that the handset is placed in a location other than the predetermined location.

先ず、送受信機14内の受信部から送出された発呼者か
らの呼出信号が呼出信号検出器21に加えられると、こ
の検出器は呼出検出信号をフリップフロップ22に送出
する。
First, when a calling signal from a calling party sent from a receiving section in the transceiver 14 is applied to the calling signal detector 21, this detector sends a calling detection signal to the flip-flop 22.

フリップフロップは、例えばHレベルを送出してベル音
信号発生器23を駆動するので、ベル音信号発生器はベ
ル音発生信号を送出してスピーカ24を駆動し、呼出し
があったことを被呼者に知らせる。
The flip-flop sends out, for example, an H level signal to drive the bell sound signal generator 23, so the bell sound signal generator sends out a bell sound generation signal to drive the speaker 24 and alert the called party that there is a call. inform the person.

被呼者が子機を取り上げ、子機に設けられているキーボ
ード内の応答釦12を押すと、応答信号がフックオフ信
号送出器11とORゲート25を介してフリップフロッ
プ22に加えられる。
When the called party picks up the handset and presses a response button 12 in the keyboard provided on the handset, a response signal is applied to the flip-flop 22 via the hook-off signal transmitter 11 and the OR gate 25.

フックオフ信号送出器11はフックオフ信号を送受信機
内の送信部を介して図示しない親機に送出するので、親
機は通話路を接続する。また、フリップフロップ22は
リセットされるので、ヘル音発生信号の送出が停止し、
スピーカからのベル音の送出が止まる。
Since the hook-off signal transmitter 11 sends a hook-off signal to a base unit (not shown) via a transmitter in the transceiver, the base unit connects the communication path. In addition, since the flip-flop 22 is reset, the transmission of the hell sound generation signal is stopped.
The bell sound from the speaker stops.

これにより、被発呼者は送話器およびスピーカを用いて
発呼者と通話を行うことができる。
This allows the called party to communicate with the calling party using the handset and speaker.

なお、発呼者は被呼者がフックオフ信号を返送しない時
、フックオンして終話信号を子機に送出する。子機は送
受信機14の受信部を介して終話信号検出器26で終話
信号を検出し、検出信号をORゲート21を介してフリ
ップフロップ22に加える。
Note that when the called party does not return a hook-off signal, the calling party hooks on and sends a call termination signal to the handset. The handset detects the end of call signal with the end of call signal detector 26 via the receiver of the transceiver 14, and applies the detection signal to the flip-flop 22 via the OR gate 21.

そこで、フリップフロップはリセットされてスピーカ2
4からのベル音の送出が止まる。
Therefore, the flip-flop is reset and speaker 2
The bell sound from 4 stops.

〔発明が解決しようとする課題〕[Problem to be solved by the invention]

上記の様に、子機は呼出信号を検出した時、スピーカが
ベル音発生信号で駆動されるので被呼者はベル音(呼出
音)を聴き、呼出しがあったことをと知る。被呼者は子
機が所定の置き場以外の場所に置かれているので、子機
を取り上げて応答釦を押してフックオフしたことを発呼
者に知らせる。
As described above, when the handset detects a ringing signal, the speaker is driven by the ringing signal, so the called party hears the ringing tone and knows that there is a call. Since the called party has placed the handset in a place other than the predetermined location, the called party picks up the handset and presses the answer button to inform the calling party that he has hooked off.

なお、子機が所定の置き場に置かれている時は子機を取
り上げることにより、子機または置き場ニ設けられたメ
カニカル・スイッチを自動的に動作させてフックオフし
たことを発呼者に知らせている。
In addition, when the handset is placed in a designated place, by picking up the handset, a mechanical switch installed in the handset or place is automatically activated to notify the caller that the caller has been hooked off. There is.

ここで、応答釦を押すことは通常の有線電話では不要な
操作であり、被呼者にとっては煩わしく。
Here, pressing the answer button is an unnecessary operation on a normal wired telephone, and is troublesome for the called party.

不便である。また、応答釦を押さない様にするには子機
を所定の置き場に置かれなければならず、コードレス電
話の“何処へでも持っていける”特徴を減するものであ
る。
It's inconvenient. Additionally, the handset must be placed in a designated location to avoid pressing the answer button, which reduces the "take-anywhere" feature of cordless phones.

即ち、子機が所定の置き基以外の場所に置かれている状
態で呼出しがあった時、子機を取り上げるだけでは着呼
応答ができないと云う問題がある。
That is, when a call is received while the handset is placed at a location other than the predetermined base, there is a problem in that it is not possible to respond to the call simply by picking up the handset.

本発明は移動機が所定の置き基以外の場所に置かれてい
ても、移動機を取り上げるだけで着呼応答が確実にでき
る方法の提供を目的とする。
An object of the present invention is to provide a method that can reliably answer an incoming call simply by picking up the mobile device even if the mobile device is placed at a location other than a predetermined location.

〔課題を解決する為の手段] 第1図は本発明の原理ブロック図を示す。[Means to solve problems] FIG. 1 shows a block diagram of the principle of the present invention.

図中、2は呼出信号を検出する呼出信号検出部で、6は
ベル音発生信号で駆動されるベル音発生手段であり、1
はフックオフ認識信号が入力した時にフックオフ信号を
送出するフックオフ信号送出部である。
In the figure, 2 is a calling signal detection unit that detects a calling signal, 6 is a bell sound generation means driven by a bell sound generation signal, and 1
is a hook-off signal sending unit that sends out a hook-off signal when a hook-off recognition signal is input.

また、4は接触検出手段で、3は被呼者からの音声信号
が入力したことを検出した時に音声検出信号を送出する
音声信号検出手段であり、5はベル音発生・送出手段で
ある。
Further, 4 is a contact detection means, 3 is a voice signal detection means that sends out a voice detection signal when it detects input of a voice signal from a called party, and 5 is a bell sound generation/sending means.

そして、所定の置き基以外の場所に置かれた移動機が呼
出信号を検出してベル音発生手段が鳴動している時、 該接触検出手段は被呼者が移動機に手を触れている状態
で、接触検出信号を該ベル音信号発生・送出手段に送出
する。そこで、該ベル音信号発生・送出手段は該接触検
出信号を該オフフック認識信号として該フックオフ信号
送出部に送出すると共に、内部で発生したベル音発生信
号の送出、送出停止を予め設定された時間間隔で交互に
繰り返す。
Then, when the mobile device placed at a location other than the predetermined base detects a paging signal and the bell sound generating means is ringing, the contact detection means detects that the called party is touching the mobile device. In this state, a contact detection signal is sent to the bell sound signal generation/sending means. Therefore, the bell sound signal generation/sending means sends the contact detection signal as the off-hook recognition signal to the hook-off signal sending unit, and also transmits and stops sending the internally generated bell sound generation signal for a preset time. Repeat at intervals.

しかし、該音声信号検出手段からの音声検出信号が入力
した時にベル音発生を停止させて被呼者と発呼者との間
で通話が行われる樺にした。
However, when the voice detection signal from the voice signal detection means is input, the generation of the bell sound is stopped and a conversation is made between the called party and the calling party.

〔作用〕[Effect]

本発明は上記の目的を達成する為には (1)移動機に手をふれたことを正確に検出できること
。また、手が触れないのに手が触れたと検出する誤検出
や手を触れたにもかかわらず検出しない不検出に対して
対策が立てられていることが必要である。
In order to achieve the above objects, the present invention (1) is capable of accurately detecting a hand touching a mobile device. In addition, it is necessary to take measures against false detection in which a hand is detected even though the hand has not touched the object, and non-detection in which the touch is not detected even though the hand has touched.

(2)呼出しがあったことを示すベル音発生手段からの
ベル音送出以前から、例えば持ち運びの為に移動機に手
を触れている場合、必ずしも手を触れているだけで応答
したと判断することは正しくない。
(2) If the user is touching the mobile device, for example to carry it, before the bell sound is sent from the bell sound generating means indicating that there is a call, it is determined that the mobile device has answered just by touching the mobile device. That's not true.

何故なら、例えば騒音中でベル音が聞こえなかったり、
またベル音が聞こえても他人と打合せ中で応答できる様
な状態にないかも知れないからである。
This is because, for example, you cannot hear the bell in a noisy environment,
Also, even if you hear the bell, you may be in a meeting with someone else and may not be in a position to respond.

そこで、(1)項に対しては簡単な構成で実現でき。Therefore, item (1) can be realized with a simple configuration.

且つ、高い検出精度が得られる接触検出手段、例えば静
電検出手段を使用することとし、誤検出に対しては移動
機を取り上げたが通話に入らない前記(2)項について
の対応(後述)と同様の処理をする。
In addition, contact detection means that can obtain high detection accuracy, such as electrostatic detection means, will be used, and measures will be taken to deal with the above item (2) where the mobile device is picked up but the call cannot be made in response to false detection (described later). Perform the same process as .

また、例えば、手袋を填めて接触する場合の樟に怒度が
鈍って不検出になった時は補助的に設けられた従来例の
応答釦を用いる。
Further, for example, when the user contacts a camphor tree with gloves on and the anger level decreases and the object is not detected, a conventional response button provided as an auxiliary button is used.

(2)項については、呼出信号検出時に被呼者が移動機
に手を触れていることから通話路を接続すると共に、ベ
ル音発生信号のスピーカ部への送出/送出停止を予め設
定された時間間隔で繰り返す。
Regarding item (2), since the called party is touching the mobile device when the ringing signal is detected, the communication path is connected, and the sending/stopping of the bell sound generation signal to the speaker section is set in advance. Repeat at time intervals.

この繰り返しは音声検出が行われれば、その時点でベル
音発生信号の送出を停止させて発呼者との通話を行う、
しかし、繰り返しが継続して発呼者が被発呼者不在と判
断してフックオンすると、ベル音発生信号の送出が停止
される。
If voice detection is performed, this process is repeated, and at that point the transmission of the bell sound generation signal is stopped and the conversation with the caller is established.
However, if the repetition continues and the calling party determines that the called party is absent and hooks on, the transmission of the bell sound generation signal is stopped.

即ち、移動機が所定の置き基以外の場所に置かれていて
も、移動機を取り上げるだけで着呼応答が確実にできる
方法の提供が可能となる。
In other words, it is possible to provide a method in which an incoming call can be reliably answered by simply picking up the mobile device even if the mobile device is placed at a location other than the predetermined base.

〔実施例〕〔Example〕

第2図は本発明の実施例のブロック図、第3図は第2図
の動作説明図で第3図(a)は正常シーケンスの場合、
第3図働)は誤検出の場合、第3図(C)は音声応答遅
延の場合を示す。
FIG. 2 is a block diagram of an embodiment of the present invention, FIG. 3 is an explanatory diagram of the operation of FIG. 2, and FIG. 3(a) is a normal sequence case.
Figure 3(C) shows the case of false detection, and Figure 3(C) shows the case of voice response delay.

なお、第3図左側の符号は第2図中の同じ符号の部分の
波形を示す。また、全図を通じて同一符号は同一対象物
を示す。
Note that the symbols on the left side of FIG. 3 indicate the waveforms of the portions with the same symbols in FIG. Also, the same reference numerals indicate the same objects throughout the figures.

ここで、音声信号検出器31は音声信号検出手段3の構
成部分、静電センサ41は接触検出手段4の構成部分、
フリップフロップ51.ベル音信号発生器52. スイ
ッチSW、マルチバイブレータ53. ANDゲー)5
4. ORゲー)55.56はベル音信号発生・送出手
段5の構成部分、呼出信号検出器21は呼出信号検出部
2の構成部分を示す。
Here, the audio signal detector 31 is a component of the audio signal detection means 3, the electrostatic sensor 41 is a component of the contact detection means 4,
Flip-flop51. Bell sound signal generator 52. Switch SW, multivibrator 53. AND game) 5
4. OR game) 55 and 56 indicate the constituent parts of the bell sound signal generation/sending means 5, and the calling signal detector 21 indicates the constituent part of the calling signal detecting section 2.

以下、第3図を参照して第2図の動作を説明する。The operation shown in FIG. 2 will be explained below with reference to FIG.

(1)正常シーケンスの場合(第3図(a)参照)呼出
信号検出器21は送受信機14の受信部を介して入力し
た呼出信号を検出すると呼出検出信号を送出してフリッ
プフロップ(以下、FFと省略する)51に加えるので
、FFは例えばHレベルをベル音信号発生器52とAN
Dゲート54に送出する。
(1) In case of normal sequence (see FIG. 3(a)) When the calling signal detector 21 detects the calling signal inputted through the receiving section of the transceiver 14, it sends out a calling detection signal and flips the flip-flop (hereinafter referred to as (abbreviated as FF) 51, FF, for example, sends the H level to the bell sound signal generator 52 and the AN
The signal is sent to the D gate 54.

ベル音信号発生器はベル音信号を発生して点線の様に接
続されたスイッチS14を介してスピーカを駆動する(
第3図(b)−■〜■参照)。また、ANDゲート54
はオン状態になる。
The bell sound signal generator generates a bell sound signal and drives the speaker via the switch S14 connected as shown by the dotted line (
(See Figure 3(b)-■ to ■). Also, AND gate 54
turns on.

そこで、被呼者は子機を取り上げると静電センサ41は
第3図(a)−■に示す様なHレベルの出力をマルチバ
イブレーク53と、オン状態になったANDゲート54
0Rゲート55を介してフックオフ信号送出器11に送
出する。なお、静電センサは子機を取り上げる際、手が
触れる可能性の高い複数部分に設けである。
Then, when the called party picks up the handset, the electrostatic sensor 41 sends an H level output as shown in FIG.
The signal is sent to the hook-off signal transmitter 11 via the 0R gate 55. The electrostatic sensors are installed in multiple areas that are likely to be touched when picking up the handset.

ここで、マルチバイブレーク53は入力がない時は2T
周期で約50χのデエテイファクタの矩形波をスイッチ
SWに出力している。しかし、静電センサからのHレベ
ルの出力が入力すると、マルチバイブレータはリセット
されて上記出力の入力時点を基準として2T周期の矩形
波を出力する。
Here, the multi-bye break 53 is 2T when there is no input.
A rectangular wave with a frequency factor of about 50x is output to the switch SW. However, when an H level output from the electrostatic sensor is input, the multivibrator is reset and outputs a 2T period rectangular wave with reference to the input time of the above output.

さて、スイッチS−はマルチハイブレークからのHレベ
ルの出力(第3図(a)−■参照)で実線の状態、ff
1lち断状態になり、スピーカからのヘル音送出が停止
する。 なお、ベル音信号発生器はFFが リセットさ
れるまではベル音信号を発生している。
Now, the switch S- is in the state of the solid line with the H level output from the multi-high break (see Figure 3 (a)-■), ff
1l is cut off, and the sound transmission from the speaker stops. Note that the bell sound signal generator generates a bell sound signal until the FF is reset.

また、フックオフ信号送出器11は第3図(a)−■に
示す樺にフックオフ信号を送受信機14の送信部を介し
て図示しない親機に送出するので、親機は第3図(a)
−■に示す様に通話路を接続する。
In addition, the hook-off signal transmitter 11 sends a hook-off signal to the birch tree shown in FIG. 3(a)-■ via the transmitting section of the transceiver 14 to the base unit (not shown), so the base unit is as shown in FIG. 3(a).
− Connect the communication path as shown in ■.

一方、音声信号検出器は送話器13からの被呼者音声信
号を検出するとFF 51をリセットするのでベル音信
号発生器はベル音信号の発生を停止し、発呼者との通話
が開始する。ここで・、音声信号検出器は誤検出の可能
性を少なくする為、複数の周波数帯域で音声信号のレベ
ルを検出する。
On the other hand, when the voice signal detector detects the called party's voice signal from the transmitter 13, it resets the FF 51, so the bell tone signal generator stops generating the bell tone signal, and the conversation with the calling party starts. do. Here, the audio signal detector detects the audio signal level in multiple frequency bands in order to reduce the possibility of false detection.

(2)誤検出の場合(第3図b)参照)上記と同様に、
呼出信号検出器21が呼出信号を検出すると呼出検出信
号をFF 51に送出するのでベル音信号発生器52は
ベル音信号を送出する。そこで、スベーカがベル音信号
で駆動される(第3図(b)−■〜■参照)。
(2) In the case of false detection (see Figure 3b)) Similarly to the above,
When the ringing signal detector 21 detects a ringing signal, it sends a ringing detection signal to the FF 51, so that the bell signal generator 52 sends out a ringing signal. Therefore, the subaker is driven by the bell sound signal (see FIG. 3(b)-■ to ■).

一方、静電センサ41が誤検出して第3図(b)−■に
示す様な出力を送出すると、第3図(b)−■に示す様
にフックオフ信号送出器11はフックオフ信号が送出す
ると共に、上記の様にマルチバイブレータ52かリセッ
トされて第3図Q))−■に示す周期2Tの矩形波をス
イッチS−に送出するので、スピーカから1時間ベル音
送出1次のT時間ヘル音送出停止を繰り返す。
On the other hand, if the electrostatic sensor 41 makes a false detection and sends out an output as shown in FIG. 3(b)-■, the hook-off signal transmitter 11 sends out a hook-off signal as shown in FIG. 3(b)-■. At the same time, the multivibrator 52 is reset as described above and a rectangular wave with a period of 2T shown in FIG. Repeats stopping of hell sound transmission.

また、フックオフ信号が親機に送出されるので、親機は
第3図山)−■に示す様に通話路を接続して通話可能状
態にする。
In addition, since a hook-off signal is sent to the base unit, the base unit connects the communication path as shown in Fig. 3, and becomes ready for communication.

一方、発呼者は暫く待っても被呼者が出ないのでフック
オンする。これにより、通話路が断になると共に、上記
と同様にベル音信号発生器の動作が停止する。
On the other hand, the calling party waits for a while but the called party does not answer, so he hooks on. As a result, the communication path is disconnected and the operation of the bell tone signal generator is stopped in the same manner as above.

(3)音声応答遅延の場合(第3図(C)参照)。(3) In the case of voice response delay (see Figure 3(C)).

上記と同様に、呼出信号検出器21が呼出信号を検出す
ると呼出検出信号をFF 51に送出するのでベル音信
号発生器52はヘル音信号を送出する。
Similarly to the above, when the ringing signal detector 21 detects a ringing signal, it sends a ringing detection signal to the FF 51, so that the bell sound signal generator 52 sends out a hello sound signal.

また、マルチバイブレータ53は上記の様に周期2Tの
矩形波をスイッチS−に送出するので、スピーカから1
時間ベル音送出9次の1時間ベル音送出停止を繰り返す
(第3図(C)−■〜■、■参照)。
In addition, since the multivibrator 53 sends out a rectangular wave with a period of 2T to the switch S- as described above, one
Time bell sound transmission 9 The bell sound transmission stop is repeated for the next 1 hour (see FIG. 3(C)-■ to ■, ■).

ここで、第3図(C)−■に示す様に被呼者が呼出信号
検出前に、既に、子機を持っているので、静電センサ4
1からHレベルの出力がへNOゲート54に加えられて
いる。そこで、呼出信号の検出とほぼ同時にフックオフ
信号送出器から送受信機14を介してフックオフ信号が
親局に送出され、親局は通話路を接続する(第3図(C
)−■、■参照)。
Here, as shown in FIG. 3(C)-■, the called party already has the handset before detecting the ringing signal, so the electrostatic sensor 4
An output from 1 to H level is applied to the NO gate 54. Therefore, almost simultaneously with the detection of the calling signal, a hook-off signal is sent from the hook-off signal transmitter to the master station via the transceiver 14, and the master station connects the communication path (see Fig. 3 (C).
)-■, ■).

一方、被呼者は応答ができない状態(例えば、他人と話
をしている)から開放されたので、遅れて送話器13を
介して音声信号を送出する。音声信号検出器31は被呼
者の音声信号を送出してベル音信号発生器52の動作を
停止するので、これ以降。
On the other hand, since the called party is no longer in a state where he or she cannot respond (for example, he is talking to someone else), the voice signal is transmitted via the transmitter 13 after a delay. The voice signal detector 31 sends out the voice signal of the called party and stops the operation of the bell tone signal generator 52, and so on.

発呼者と被呼者との間で通話が行われる(第3図(C)
−■参照)。
A conversation takes place between the calling party and the called party (Figure 3 (C)
-Refer to ■).

即ち、コードレス電話では通常の電話に比べて着呼時の
操作が一挙動だけ余分に必要と云う欠点があった。これ
に対して、子機が正規の置き場にある時は子機を取り上
げることでスイッチを働かせ上記の余分を操作を省ける
様にした改善策が施されているが、自由に他の場所に持
っていった場合にはこの策は役に立たない。
That is, cordless telephones have the disadvantage that they require one additional operation when receiving a call, compared to ordinary telephones. To deal with this, an improvement measure has been taken in which when the handset is in its official storage location, the switch can be activated by picking up the handset and the above-mentioned redundant operation can be omitted, but you can freely take it to another place. In such cases, this strategy is useless.

本発明により移動機が所定の置き基以外の置き場に置か
れていても、移動機を取り上げるだけで着呼応答が確実
にできる方法の提供が可能となる。
According to the present invention, even if the mobile device is placed in a place other than a predetermined place, it is possible to provide a method in which an incoming call can be reliably answered simply by picking up the mobile device.

〔発明の効果] 以上詳細に説明した様に、本発明によれば移動機が所定
の置き基以外の置き場に置かれていても、移動機を取り
上げるだけで着呼応答が確実にできる方法を提供できる
と云う効果がある。
[Effects of the Invention] As explained in detail above, according to the present invention, even if the mobile device is placed in a place other than the predetermined place, a method is provided in which an incoming call can be reliably answered simply by picking up the mobile device. There is an effect that can be provided.

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

第1図は本発明の原理ブロック図、 第2図は本発明の実施例のブロック図、第3図は第2図
の動作説明図、 第4図は従来例のブロック図を示す。 図において、 1はフックオフ信号送出部、 2は呼出信号検出部、 3は音声信号検出手段、 4は接触検出手段、 5はヘル音信号発生・送出手段、 6はヘル音発生手段を示す。 移vl併 木ffi日目のffff−フ″口 、′フロろ纂   
Ink 本翌B目(lr)実施4910丁口・・ツク2篇  λ
  図 (Y叩 (Q) ■ 丁■− ■ 土 従来例Oフロ・ツク図 篇  +  図 (4檄) (b) (シ) 丁■ 」 %2[210Φ1 %  3
FIG. 1 is a block diagram of the principle of the present invention, FIG. 2 is a block diagram of an embodiment of the present invention, FIG. 3 is an explanatory diagram of the operation of FIG. 2, and FIG. 4 is a block diagram of a conventional example. In the figure, 1 is a hook-off signal sending section, 2 is a calling signal detecting section, 3 is an audio signal detecting means, 4 is a contact detecting means, 5 is a hell sound signal generation/sending means, and 6 is a hell sound generating means. ffff-fu'' mouth of the transfer vl roeki ffi day, 'Furoro compilation
Ink Next B (lr) implementation 4910-chome...Tsuku 2 edition λ
Diagram (Y hit (Q) ■ Ding ■ - ■ Sat Conventional example O Furo Tsuku Zuhen + Diagram (4 poems) (b) (shi) Ding ■ " %2 [210Φ1 % 3

Claims (1)

【特許請求の範囲】 1、呼出信号を検出する呼出信号検出部(2)とベル音
発生信号で駆動されるベル音発生手段(6)とフックオ
フ認識信号が入力した時にフックオフ信号を送出するフ
ックオフ信号送出部(1)とを含む移動機と、該移動機
と電波で接続された固定機とを有するコードレス電話に
おいて、 該移動機に、接触検出手段(4)と被呼者からの音声信
号が入力したことを検出した時に音声検出信号を送出す
る音声信号検出手段(3)とベル音発生・送出手段(5
)とを設け、 フックスイッチが設けられた所定の置き場以外の場所に
置かれた移動機が呼出信号を検出してベル音発生手段が
鳴動している時、該接触検出手段は被呼者が移動機に手
を触れた状態で、接触検出信号を該ベル音信号発生・送
出手段に送出し、該ベル音信号発生・送出手段は内部で
発生したベル音発生信号の送出、送出停止を予め設定さ
れた時間間隔で交互に繰り返し、 該音声信号検出手段からの音声検出信号が入力した時に
該接触検出信号を該オフフック認識信号として該フック
オフ信号送出部に送出してベル音発生を停止させて被呼
者と発呼者との間で通話が行われる様にしたことを特徴
とする着呼応答方式。 2、該接触検出手段は静電検出手段であることを特徴と
する請求項1の着呼応答方式。
[Claims] 1. A calling signal detection unit (2) that detects a calling signal, a bell sound generation means (6) driven by a bell sound generation signal, and a hookoff device that sends out a hookoff signal when a hookoff recognition signal is input. A cordless telephone comprising a mobile device including a signal sending unit (1) and a fixed device connected to the mobile device by radio waves, wherein the mobile device receives a contact detection means (4) and a voice signal from a called party. an audio signal detection means (3) that sends out an audio detection signal when it detects an input; and a bell sound generation/sending means (5).
), and when a mobile device placed in a place other than the designated place where the hook switch is installed detects a ringing signal and the bell sound generating means rings, the contact detecting means detects that the called party is When a hand touches the mobile device, a contact detection signal is sent to the bell sound signal generation/sending means, and the bell sound signal generation/sending means sends or stops sending the internally generated bell sound generation signal in advance. Repeatedly at set time intervals, when the voice detection signal from the voice signal detection means is input, the contact detection signal is sent to the hook-off signal sending section as the off-hook recognition signal to stop the generation of the bell sound. An incoming call response method characterized by allowing a conversation to take place between a called party and a calling party. 2. The incoming call response system according to claim 1, wherein the contact detection means is an electrostatic detection means.
JP2209915A 1990-08-07 1990-08-07 System for responding to incoming call Pending JPH0491539A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2209915A JPH0491539A (en) 1990-08-07 1990-08-07 System for responding to incoming call

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2209915A JPH0491539A (en) 1990-08-07 1990-08-07 System for responding to incoming call

Publications (1)

Publication Number Publication Date
JPH0491539A true JPH0491539A (en) 1992-03-25

Family

ID=16580769

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2209915A Pending JPH0491539A (en) 1990-08-07 1990-08-07 System for responding to incoming call

Country Status (1)

Country Link
JP (1) JPH0491539A (en)

Cited By (10)

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Publication number Priority date Publication date Assignee Title
JP2007208306A (en) * 2006-01-30 2007-08-16 Adc Technology Kk Telephone set
US7864400B1 (en) 2009-06-22 2011-01-04 Gentex Corporation Vehicle rearview mirror with spotter mirror
CN102287132A (en) * 2011-07-30 2011-12-21 宿迁景泰重工机械制造有限公司 Full sleeve full slewing drilling machine
CN102383741A (en) * 2011-07-30 2012-03-21 徐州多邦物贸发展有限公司 Sleeve clamping device for full-sleeve and full-slewing drilling machine
US10023122B2 (en) 2007-05-23 2018-07-17 Donnelly Corporation Exterior mirror reflective element with auxiliary reflector
US10086765B2 (en) 2006-10-24 2018-10-02 Magna Mirrors Of America, Inc. Method for manufacturing a blind spot indicator for a vehicular exterior rearview mirror assembly
US10259392B2 (en) 2011-09-30 2019-04-16 Magna Mirrors Of America, Inc. Exterior mirror with spotter mirror
US10266151B2 (en) 2011-11-14 2019-04-23 Magna Mirrors Of America, Inc. Method for unlocking a vehicle door for an authorized user
US11498487B2 (en) 2005-07-06 2022-11-15 Magna Mirrors Of America, Inc. Vehicular exterior mirror system with blind spot indicator
US11890991B2 (en) 2006-10-24 2024-02-06 Magna Mirrors Of America, Inc. Vehicular exterior rearview mirror assembly with blind spot indicator element

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11498487B2 (en) 2005-07-06 2022-11-15 Magna Mirrors Of America, Inc. Vehicular exterior mirror system with blind spot indicator
JP2007208306A (en) * 2006-01-30 2007-08-16 Adc Technology Kk Telephone set
US10086765B2 (en) 2006-10-24 2018-10-02 Magna Mirrors Of America, Inc. Method for manufacturing a blind spot indicator for a vehicular exterior rearview mirror assembly
US11623570B2 (en) 2006-10-24 2023-04-11 Magna Mirrors Of America, Inc. Vehicular exterior rearview mirror assembly with blind spot indicator module
US11890991B2 (en) 2006-10-24 2024-02-06 Magna Mirrors Of America, Inc. Vehicular exterior rearview mirror assembly with blind spot indicator element
US10640047B2 (en) 2007-03-15 2020-05-05 Magna Mirrors Of America, Inc. Mirror reflective element sub-assembly for vehicular exterior rearview mirror assembly
US10023122B2 (en) 2007-05-23 2018-07-17 Donnelly Corporation Exterior mirror reflective element with auxiliary reflector
US7864400B1 (en) 2009-06-22 2011-01-04 Gentex Corporation Vehicle rearview mirror with spotter mirror
CN102287132A (en) * 2011-07-30 2011-12-21 宿迁景泰重工机械制造有限公司 Full sleeve full slewing drilling machine
CN102383741A (en) * 2011-07-30 2012-03-21 徐州多邦物贸发展有限公司 Sleeve clamping device for full-sleeve and full-slewing drilling machine
US10259392B2 (en) 2011-09-30 2019-04-16 Magna Mirrors Of America, Inc. Exterior mirror with spotter mirror
US10266151B2 (en) 2011-11-14 2019-04-23 Magna Mirrors Of America, Inc. Method for unlocking a vehicle door for an authorized user

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