WO2012096027A1 - インタフェース回路及び主装置 - Google Patents
インタフェース回路及び主装置 Download PDFInfo
- Publication number
- WO2012096027A1 WO2012096027A1 PCT/JP2011/070020 JP2011070020W WO2012096027A1 WO 2012096027 A1 WO2012096027 A1 WO 2012096027A1 JP 2011070020 W JP2011070020 W JP 2011070020W WO 2012096027 A1 WO2012096027 A1 WO 2012096027A1
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- WIPO (PCT)
- Prior art keywords
- telephone
- port
- circuit
- door phone
- hook
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Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M19/00—Current supply arrangements for telephone systems
- H04M19/08—Current supply arrangements for telephone systems with current supply sources at the substations
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04Q—SELECTING
- H04Q3/00—Selecting arrangements
- H04Q3/58—Arrangements providing connection between main exchange and sub-exchange or satellite
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04Q—SELECTING
- H04Q2213/00—Indexing scheme relating to selecting arrangements in general and for multiplex systems
- H04Q2213/1332—Logic circuits
Definitions
- the present invention relates to an interface circuit for a telephone or a door phone provided in a main apparatus such as a key telephone system.
- a main apparatus having a telephone exchange function to which a public telephone line or a commercially available telephone is connected is provided, and the telephone exchange function of the main apparatus allows each telephone in the system to 2.
- a key telephone system is known that enables an external call using a public telephone line or an internal call between telephones in the system.
- key telephone systems can use various external devices. For example, by connecting a door phone (door phone slave unit attached to the entrance or entrance / exit) to the main unit, a telephone call between the telephone in the system and the door phone can be made. There is also a configuration that makes this possible.
- a door phone door phone slave unit attached to the entrance or entrance / exit
- Patent Document 1 An interface circuit for a door phone that can be incorporated into a main apparatus is described in Patent Document 1, for example.
- Patent Documents 2 to 4 describe an adapter that enables a door phone to be connected to a port for connecting a telephone of a main apparatus.
- connection port dedicated to the door phone becomes a factor that hinders downsizing of the main device.
- an interface circuit of the present invention is an interface circuit provided corresponding to a port of a main device having a telephone exchange function, to which a telephone or a door phone can be connected, A power supply circuit for supplying a required power supply voltage corresponding to a telephone or a door phone connected to the port;
- a state detection circuit for detecting whether the door phone is in a standby state or a start button is pressed from the value of the input impedance of the door phone;
- the main device of the present invention is a main device having a telephone exchange function used in a key telephone system, A port including the interface circuit, to which a telephone or a door phone is connected; A transmission / reception circuit that enables an external call or an extension call by the telephone, or a telephone call by the door phone; Have
- downsizing of the main device is realized by enabling connection of a telephone or a door phone to the same port.
- a telephone and a door phone have different voltages (DC voltages) supplied as power sources and different input impedances as viewed from the main unit.
- the phone In Japan, the phone is normally supplied with ⁇ 48V in the same manner as the office switch (in order to reduce power consumption, for example, there is a configuration in which a ⁇ 24V DC voltage is supplied). In addition, a voltage lower than the voltage handled by the office switch, for example, a DC voltage of ⁇ 28 V is supplied overseas.
- the door phone is supplied with, for example, a DC voltage of ⁇ 5 V during standby, and is supplied with a higher DC voltage of, for example, ⁇ 10 V in order to ensure the dynamic range of the audio signal during a call.
- the telephone has a large input impedance when on-hook (standby) and a small input impedance when off-hook (call).
- the door phone has a large input impedance during standby and during a call, and the input impedance decreases when the activation button is pressed.
- the door phone (slave unit) connected to the main device basically cannot actively control the call state and the standby state, and the microphone and the speaker operate during standby and during the call, respectively.
- a resistor or the like for reducing the impedance between the lines on the line side when the activation button is pressed is inserted between the lines. Therefore, when the start button is pressed, the input impedance changes (decreases).
- a power supply circuit that supplies a required power supply voltage corresponding to the connected telephone or door phone is required.
- a state detection circuit for detecting whether the door phone is in a standby state or a state where the activation button is pressed is required.
- the input impedance changes as described above when the door phone transitions from the standby state to the pressed state of the start button. Therefore, a common circuit is used as the state detection circuit between the telephone and the door phone. In addition, it is possible to detect whether the door phone is in a standby state or a start button is pressed. However, since the difference in input impedance between the on-hook state and the off-hook state in the telephone is large, and the difference in input impedance between the standby state and the pressing state of the activation button is generally small, the state detection circuit is connected to the connected device. Accordingly, it is necessary to change the state detection sensitivity using the input impedance.
- the power supply circuit When a telephone is connected to the port, it is necessary to provide a constant current circuit in the power supply circuit in order to supply a constant current to the telephone call circuit during a call. If the power supply voltage supplied to the constant current circuit is made common with the voltage supplied to the door phone, for example, as described above, the input impedance when the door phone is in a standby state and during a call is large. It will be applied to the door phone. As described above, since the power supply voltage (rated voltage) supplied to the door phone is different from the power supply voltage supplied to the telephone, the power supply circuit needs to change the supply voltage according to the connected device.
- FIG. 1 shows an example of an interface circuit according to this embodiment including a power feeding circuit and a state detection circuit that solve these problems.
- FIG. 1 is a circuit diagram showing a configuration example of the interface circuit of the present invention.
- the interface circuit shown in FIG. 1 has a power supply circuit 10 that supplies a required power supply voltage corresponding to a telephone or a doorphone connected to a port, and the input impedance value of the connected device. Detecting whether the telephone is in an on-hook state or an off-hook state, and when a door phone is connected, a state for detecting whether the door phone is in a standby state or a start button is pressed And a detection circuit 20.
- a well-known transmission / reception circuit 30 is connected to a port to which a telephone or a door phone is connected to enable an external telephone call or an internal telephone call by the telephone or a telephone call to the telephone by the door phone.
- the interface circuit shown in FIG. 1 may be mounted on, for example, a telephone port (for example, an analog extension) provided in the main device.
- the power feeding circuit 10 includes a first constant current circuit 11 and a second constant current circuit 12 connected to two lines of a port of the main device, and a voltage circuit 13 that supplies a power supply voltage to the first constant current circuit 11. And.
- the first constant current circuit 11 is supplied with a power supply voltage corresponding to the telephone or the door phone from the voltage circuit 13, and the second constant current circuit 12 is connected to the reference potential (SG).
- a diode is connected to the first constant current circuit 11 and the second constant current circuit 12 in parallel with the base and emitter of the transistor, and the base-emitter voltage of the transistor is controlled by the forward voltage of the diode.
- a well-known constant current circuit is used to keep the current flowing between the collector and the emitter constant.
- the voltage circuit 13 includes a transistor TR1 that supplies the power supply voltage Vout to the first constant current circuit 11 and a power supply voltage Vout that is supplied to the first constant current circuit 11 according to a telephone set or a door phone connected to the port.
- Zener diodes ZD1 and ZD2 for setting the voltage to the first voltage
- transistors TR2 and TR3 for switching the power supply voltage Vout to be supplied to the first constant current circuit 11 according to a telephone or a door phone connected to the port. Yes.
- the transistors TR2 and TR3 are each set to OFF. At this time, -28V (or -48V) is supplied from the transistor TR1 to the first constant current circuit 11.
- the transistor TR2 when a door phone is connected to the port (standby), the transistor TR2 is set to ON and the transistor TR3 is set to ON.
- the power supply voltage Vout output from the transistor TR1 is a voltage represented by the following equation (1).
- VOUT ⁇ (VZD1-3.3) (1)
- 3.3 (V) is a power supply voltage supplied to the transistors TR2 and TR3 of the voltage circuit 13
- VZD1 is a Zener voltage of the Zener diode ZD1.
- the transistor TR2 In the state where the door phone is connected to the port, when the start button is pressed and the telephone conversation state is established, the transistor TR2 is set to ON and the transistor TR3 is set to OFF. At this time, the power supply voltage Vout output from the transistor TR1 is a voltage represented by the following equation (2).
- VOUT ⁇ (VZD1 + VZD2-3.3) (2)
- VZD2 is the Zener voltage of the Zener diode ZD2.
- the state detection circuit 20 detects the on / off hook of the telephone or the pressing of the standby / activation button of the door phone, outputs the detection result, and turns on the telephone according to the telephone or the door phone connected to the port.
- Resistors R1-R3 connected in series, used to set the detection sensitivity to detect the pressing of the off / hook or door phone standby / activation button, and the phone or the phone depending on the phone connected to the port
- Transistors TR12 and TR13 for switching detection sensitivity for detecting pressing of an on / off hook or a standby / activation button of a door phone.
- the resistors R1-R3 may be realized by a plurality of resistors connected to each other in series or in parallel.
- the transistors TR12 and TR13 are set to ON.
- the power supply voltage (3.3 V) supplied to the state detection circuit 20 and the potential difference between the ports are divided by the resistors R1 and R2 connected in series at the base of the transistor TR11. Applied. That is, the detection sensitivity for detecting the on / off hook of the telephone is set by the ratio of the resistors R1 and R2.
- the transistors TR12 and TR13 are each set to OFF.
- the power supply voltage (3.3V) supplied to the state detection circuit 20 and the potential difference between the ports are connected to the base of the transistor TR11 by the resistor R1 and the resistors R2 and R3 connected in series.
- a partial pressure is applied. That is, the detection sensitivity for detecting the pressing of the standby / activation button of the door phone is set by the ratio of the resistor R1 and the resistor R2 + R3.
- the detection result output from the transistor TR11 is supplied to a control unit including a CPU that controls the overall operation of the main apparatus.
- the control unit controls the operation of the transmission / reception circuit 30 and the like according to the state of the telephone or the door phone detected by the state detection circuit 20.
- the transistors TR1 and TR2 included in the power supply circuit 10 and the transistors TR12 and TR13 included in the state detection circuit 20 are turned on / off by, for example, providing a switch (not shown) in the casing of the main device. Can be controlled by a combination of ON / OFF and a simple logic circuit (not shown).
- the switch may be switched by a user of a key telephone system, for example, depending on whether a telephone or a door phone is connected to the port.
- the main device may determine whether the device connected to the port is a telephone or a doorphone based on the setting of the switch, and may also switch required software corresponding to the connected device.
- FIG. 1 shows an example in which PNP transistors are used for the transistors TR1-TR3 and TR12 and NPN transistors are used for the transistors TR11 and TR13.
- NPN transistor is used for the transistors TR1-TR3 and TR12.
- a configuration in which a PNP transistor is used as the transistors TR11 and TR13 is also possible.
- FIG. 1 shows a configuration example in which bipolar transistors are used as the transistors of the interface circuit
- field effect transistors may be used as these transistors.
- the interface circuit of the present embodiment it is possible to connect a telephone or a door phone to the same port with a simple circuit configuration, so there is no need to provide a connection port dedicated to the door phone in the main device.
- a dedicated unit for enabling the connection of the door phone is not required, a key telephone system including a door phone can be easily constructed, and an empty space or a connector for attaching the dedicated unit to the main device There is no need to provide. Therefore, it is possible to reduce the size of the main device included in the key telephone system.
- a port to which a telephone is connected is mounted on many main apparatuses included in a key telephone system, and a power supply voltage corresponding to the telephone or the doorphone, an on / off hook of the telephone or a standby / If the detection sensitivity of pressing of the start button is switched by a switch provided on the housing or the like, it is not necessary to control these switching by software. Therefore, the interface circuit of the present embodiment can be easily applied to the main device included in the key telephone system.
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- Engineering & Computer Science (AREA)
- Signal Processing (AREA)
- Physics & Mathematics (AREA)
- Astronomy & Astrophysics (AREA)
- General Physics & Mathematics (AREA)
- Computer Networks & Wireless Communication (AREA)
- Telephone Function (AREA)
- Interconnected Communication Systems, Intercoms, And Interphones (AREA)
- Sub-Exchange Stations And Push- Button Telephones (AREA)
- Interface Circuits In Exchanges (AREA)
- Telephonic Communication Services (AREA)
Abstract
Description
前記ポートに接続された電話機またはドアフォンに対応して所要の電源電圧を供給する給電回路と、
前記ポートに前記電話機が接続された場合、該電話機の入力インピーダンスの値から該電話機がオン・フック状態であるかオフ・フック状態であるかを検出し、前記ポートに前記ドアフォンが接続された場合、該ドアフォンの入力インピーダンスの値から該ドアフォンが待機状態であるか起動ボタンの押下状態であるかを検出する状態検出回路と、
を有する。
上記インタフェース回路を備え、電話機またはドアフォンが接続されるポートと、
前記電話機による外線通話や内線通話、または前記ドアフォンによる電話機との通話を可能にする送受話回路と、
を有する。
但し、3.3(V)は、電圧回路13のトランジスタTR2及びトランジスタTR3に供給される電源電圧であり、VZD1はツェナーダイオードZD1のツェナー電圧である。
但し、VZD2はツェナーダイオードZD2のツェナー電圧である。
Claims (4)
- 電話機またはドアフォンが接続可能な、電話交換機能を有する主装置のポートに対応して備えるインタフェース回路であって、
前記ポートに接続された電話機またはドアフォンに対応して所要の電源電圧を供給する給電回路と、
前記ポートに前記電話機が接続された場合、該電話機の入力インピーダンスの値から該電話機がオン・フック状態であるかオフ・フック状態であるかを検出し、前記ポートに前記ドアフォンが接続された場合、該ドアフォンの入力インピーダンスの値から該ドアフォンが待機状態であるか起動ボタンの押下状態であるかを検出する状態検出回路と、
を有するインタフェース回路。 - 前記給電回路は、
前記主装置のポートの2つの線路にそれぞれ接続される第1の定電流回路及び第2の定電流回路と、
前記第1の定電流回路に電源電圧を供給する電圧回路と、
を有し、
前記電圧回路は、
前記第1の定電流回路に前記電源電圧を供給する第1のトランジスタと、
前記第1の定電流回路に供給する電源電圧を、前記ポートに接続された前記電話機または前記ドアフォンに応じた所要の電圧に設定するための第1のツェナーダイオード及び第2のツェナーダイオードと、
前記ポートに接続された前記電話機または前記ドアフォンに応じてオンまたはオフに設定される、前記第1の定電流回路に供給する電源電圧を切り換える第2のトランジスタ及び第3のトランジスタと、
を有する請求項1記載のインタフェース回路。 - 前記状態検出回路は、
前記電話機のオン・フックまたはオフ・フック、もしくは前記ドアフォンの待機または起動ボタンの押下を検出し、その検出結果を出力する第3のトランジスタと、
前記ポートに接続された電話機またはドアフォンに応じて、前記電話機のオン・フックまたはオフ・フック、もしくは前記ドアフォンの待機または起動ボタンの押下を検出するための検出感度の設定に用いられる、直列に接続された複数の抵抗器と、
前記ポートに接続された電話機またはドアフォンに応じてオンまたはオフに設定される、前記電話機のオン・フックまたはオフ・フック、もしくは前記ドアフォンの待機または起動ボタンの押下を検出するための検出感度を切り換える第4のトランジスタ及び第5のトランジスタと、
を有する請求項1または2記載のインタフェース回路。 - キーテレフォンシステムで用いられる、電話交換機能を備えた主装置であって、
請求項1から3のいずれか1項記載のインタフェース回路を備え、電話機またはドアフォンが接続されるポートと、
前記電話機による外線通話や内線通話、または前記ドアフォンによる電話機との通話を可能にする送受話回路と、
を有する主装置。
Priority Applications (5)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP11855748.7A EP2665291B1 (en) | 2011-01-14 | 2011-09-02 | Interface circuit and main device |
BR112013017981-3A BR112013017981B1 (pt) | 2011-01-14 | 2011-09-02 | Circuito de interface e dispositivo principal |
CN201180064926.1A CN103283256B (zh) | 2011-01-14 | 2011-09-02 | 接口电路和主要装置 |
AU2011354971A AU2011354971B2 (en) | 2011-01-14 | 2011-09-02 | Interface circuit and main device |
US13/977,338 US8718274B2 (en) | 2011-01-14 | 2011-09-02 | Interface circuit and main device |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
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JP2011-006103 | 2011-01-14 | ||
JP2011006103A JP4895241B1 (ja) | 2011-01-14 | 2011-01-14 | インタフェース回路及び主装置 |
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WO2012096027A1 true WO2012096027A1 (ja) | 2012-07-19 |
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PCT/JP2011/070020 WO2012096027A1 (ja) | 2011-01-14 | 2011-09-02 | インタフェース回路及び主装置 |
Country Status (7)
Country | Link |
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US (1) | US8718274B2 (ja) |
EP (1) | EP2665291B1 (ja) |
JP (1) | JP4895241B1 (ja) |
CN (1) | CN103283256B (ja) |
AU (1) | AU2011354971B2 (ja) |
BR (1) | BR112013017981B1 (ja) |
WO (1) | WO2012096027A1 (ja) |
Families Citing this family (1)
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US20160381479A1 (en) | 2015-04-10 | 2016-12-29 | Sennheiser Electronic Gmbh & Co. Kg | Method for controlling a wireless audio receiver unit and wireless audio receiver unit |
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2011
- 2011-01-14 JP JP2011006103A patent/JP4895241B1/ja active Active
- 2011-09-02 US US13/977,338 patent/US8718274B2/en active Active
- 2011-09-02 AU AU2011354971A patent/AU2011354971B2/en active Active
- 2011-09-02 BR BR112013017981-3A patent/BR112013017981B1/pt not_active IP Right Cessation
- 2011-09-02 WO PCT/JP2011/070020 patent/WO2012096027A1/ja active Application Filing
- 2011-09-02 CN CN201180064926.1A patent/CN103283256B/zh active Active
- 2011-09-02 EP EP11855748.7A patent/EP2665291B1/en active Active
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See also references of EP2665291A4 |
Also Published As
Publication number | Publication date |
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AU2011354971B2 (en) | 2015-09-17 |
EP2665291A4 (en) | 2014-08-13 |
BR112013017981B1 (pt) | 2022-02-01 |
CN103283256B (zh) | 2016-07-06 |
US8718274B2 (en) | 2014-05-06 |
US20130279688A1 (en) | 2013-10-24 |
EP2665291A1 (en) | 2013-11-20 |
JP2012147389A (ja) | 2012-08-02 |
EP2665291B1 (en) | 2015-07-08 |
JP4895241B1 (ja) | 2012-03-14 |
BR112013017981A2 (pt) | 2019-10-01 |
CN103283256A (zh) | 2013-09-04 |
AU2011354971A1 (en) | 2013-07-11 |
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