WO2019076382A1 - 基于移动终端的hac系统及其实现方法 - Google Patents
基于移动终端的hac系统及其实现方法 Download PDFInfo
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- WO2019076382A1 WO2019076382A1 PCT/CN2018/111189 CN2018111189W WO2019076382A1 WO 2019076382 A1 WO2019076382 A1 WO 2019076382A1 CN 2018111189 W CN2018111189 W CN 2018111189W WO 2019076382 A1 WO2019076382 A1 WO 2019076382A1
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- capacitor
- resistor
- audio
- audio signal
- mobile terminal
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/72—Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
- H04M1/724—User interfaces specially adapted for cordless or mobile telephones
- H04M1/72475—User interfaces specially adapted for cordless or mobile telephones specially adapted for disabled users
- H04M1/72478—User interfaces specially adapted for cordless or mobile telephones specially adapted for disabled users for hearing-impaired users
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04R—LOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
- H04R3/00—Circuits for transducers, loudspeakers or microphones
- H04R3/12—Circuits for transducers, loudspeakers or microphones for distributing signals to two or more loudspeakers
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04R—LOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
- H04R25/00—Deaf-aid sets, i.e. electro-acoustic or electro-mechanical hearing aids; Electric tinnitus maskers providing an auditory perception
- H04R25/55—Deaf-aid sets, i.e. electro-acoustic or electro-mechanical hearing aids; Electric tinnitus maskers providing an auditory perception using an external connection, either wireless or wired
- H04R25/554—Deaf-aid sets, i.e. electro-acoustic or electro-mechanical hearing aids; Electric tinnitus maskers providing an auditory perception using an external connection, either wireless or wired using a wireless connection, e.g. between microphone and amplifier or using Tcoils
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R24/00—Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure
- H01R24/60—Contacts spaced along planar side wall transverse to longitudinal axis of engagement
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/02—Constructional features of telephone sets
- H04M1/03—Constructional features of telephone transmitters or receivers, e.g. telephone hand-sets
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04R—LOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
- H04R3/00—Circuits for transducers, loudspeakers or microphones
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04R—LOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
- H04R9/00—Transducers of moving-coil, moving-strip, or moving-wire type
- H04R9/02—Details
- H04R9/04—Construction, mounting, or centering of coil
- H04R9/046—Construction
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R24/00—Two-part coupling devices, or either of their cooperating parts, characterised by their overall structure
- H01R24/58—Contacts spaced along longitudinal axis of engagement
Definitions
- the present invention relates to the field of audio application technologies for mobile terminals, and in particular, to a HAC system based on a mobile terminal.
- the FCC Federal Communications Commission
- HAC Hearing Aid Compatibility
- the HAC reference standard is ANSI C63.19 (US Wireless communication equipment and hearing aid compatibility measurement national standard method). According to the standard definition, consumers can judge the compatibility of a certain type of hearing aid and mobile phone by the anti-interference level of the hearing aid and the corresponding signal transmission level of the mobile phone.
- an inductor coil is required for the antenna.
- Some manufacturers also add the coil to the receiver to make a special HAC receiver.
- the hearing aid When the hearing aid is set in the T position, the magnetic field generated by the induction coil in the phone can be The hearing aid picks up and converts it into an amplified electrical signal, and since the microphone stops working at this time, the effect of ambient noise is greatly reduced.
- the hearing aid With the increasing proportion of mobile phone screens, and even the trend of launching full-screen mobile phones, such mobile phones have lost the special HAC design space, which brings inconvenience to the hearing-impaired people using mobile phones.
- an object of the present invention is to provide a HAC system based on a mobile terminal, which can enable a mobile terminal to implement a hearing aid compatibility function without occupying a design space of the mobile terminal.
- a mobile terminal based HAC system including a mobile terminal and a coil accessory
- the coil accessory includes an audio plug and a magnetic induction coil connected to the audio plug;
- the mobile terminal includes a mobile terminal body, a main board, an audio interface circuit, and an audio jack.
- the main board and the audio interface circuit are disposed inside the mobile terminal body, and the audio jack is disposed on a side of the mobile terminal body.
- the motherboard, the audio interface circuit and the audio jack are connected in sequence;
- the motherboard includes:
- a setting module configured to set an operating mode of the mobile terminal, where the working mode includes a HAC mode and a normal mode;
- a detecting module for detecting whether a coil accessory or an earphone is inserted into the audio jack
- the driving module is configured to output a left channel audio signal and a right channel audio signal to the earphone respectively when the earphone is inserted into the audio jack, and drive the earphone to work; and output the right channel when detecting that the coil accessory is inserted into the audio jack Audio signal to the coil accessory, driving the coil accessory to work;
- the audio interface circuit includes:
- the left channel audio signal and the right channel audio signal are respectively output to the left channel audio signal output circuit and the right channel audio signal output circuit for filtering processing, and the filtered left
- the channel audio signal and the right channel audio signal simultaneously drive the headphones to work;
- the main board detects that the coil accessory is inserted into the audio jack, the right channel audio signal output by the main board is filtered by the right channel audio signal output circuit, and then output to the audio power amplifier, and the audio power amplifier performs amplification processing to obtain the coil driving signal and outputs the signal to the coil.
- the coil accessory drives the magnetic induction coil to work.
- the audio interface circuit further includes a switch and a microphone input circuit, and the inverting input end of the audio power amplifier is simultaneously connected to the input end of the right channel audio signal output circuit and the switch At one end, the non-inverting input end of the audio power amplifier is grounded, and the output end of the audio power amplifier is simultaneously connected to the audio jack and the other end of the switch, the audio interface circuit further includes a microphone input circuit, and one end of the microphone input circuit is connected to the audio plug Hole, the other end of the microphone input circuit is connected to the motherboard.
- the right channel audio signal output circuit includes a first capacitor, a second capacitor, a third capacitor, a first resistor, a second resistor, a first magnetic bead, and a first TVS II. a tube, one end of the first capacitor is connected to the main board, and the other end of the first capacitor is connected to one end of the first resistor, the other end of the first resistor is connected to one end of the first magnetic bead, and the other end of the first resistor is respectively passed through the second capacitor
- the third capacitor and the second resistor are grounded, and the other end of the first magnetic bead is connected to the inverting input end of the audio power amplifier, and the other end of the first magnetic bead is also grounded through the first TVS tube; the left channel audio signal output circuit
- a mobile terminal based HAC system including a mobile terminal and a coil accessory
- the coil accessory includes an audio plug and a magnetic induction coil connected to the audio plug;
- the mobile terminal includes a mobile terminal body, a main board, an audio interface circuit, and an audio jack adapted to the audio plug, the main board and the audio interface circuit are disposed inside the mobile terminal body, and the audio jack is disposed on the mobile terminal On the side of the terminal body, the main board, the audio interface circuit and the audio jack are sequentially connected.
- the audio interface circuit includes:
- the left channel audio signal and the right channel audio signal are respectively output to the left channel audio signal output circuit and the right channel audio signal output circuit for filtering processing, and the filtered left
- the channel audio signal and the right channel audio signal simultaneously drive the headphones to work;
- the main board detects that the coil accessory is inserted into the audio jack, the right channel audio signal output by the main board is filtered by the right channel audio signal output circuit, and then output to the audio power amplifier, and the audio power amplifier performs amplification processing to obtain the coil driving signal and outputs the signal to the coil.
- the coil accessory drives the magnetic induction coil to work.
- the motherboard includes:
- a setting module configured to set an operating mode of the mobile terminal, where the working mode includes a HAC mode and a normal mode;
- a detecting module for detecting whether a coil accessory or an earphone is inserted into the audio jack
- the driving module is configured to output a left channel audio signal and a right channel audio signal to the earphone respectively when the earphone is inserted into the audio jack, and drive the earphone to work; and output the right channel when detecting that the coil accessory is inserted into the audio jack
- the audio signal goes to the coil accessory and the drive coil accessory works.
- the audio interface circuit further includes a switch, and the inverting input end of the audio power amplifier is simultaneously connected to the input end of the right channel audio signal output circuit and one end of the switch, the audio power amplifier The non-inverting input is grounded, and the output of the audio power amplifier is connected to the audio jack and the other end of the switch.
- the audio interface circuit further includes a microphone input circuit, one end of the microphone input circuit is connected to the audio jack, and the other end of the microphone input circuit is connected to the main board, the audio jack It is placed on the top of the mobile terminal body.
- the right channel audio signal output circuit includes a first capacitor, a second capacitor, a third capacitor, a first resistor, a second resistor, a first magnetic bead, and a first TVS II.
- a tube one end of the first capacitor is connected to the main board, and the other end of the first capacitor is connected to one end of the first resistor, the other end of the first resistor is connected to one end of the first magnetic bead, and the other end of the first resistor is respectively passed through the second capacitor
- the third capacitor and the second resistor are grounded, and the other end of the first magnetic bead is connected to the inverting input end of the audio power amplifier, and the other end of the first magnetic bead is also grounded through the first TVS tube.
- the left channel audio signal output circuit includes a fourth capacitor, a fifth capacitor, a sixth capacitor, a third resistor, a fourth resistor, a second magnetic bead, and a second TVS tube.
- One end of the fourth capacitor is connected to the main board, the other end of the fourth capacitor is connected to one end of the third resistor, the other end of the third resistor is connected to one end of the second magnetic bead, and the other end of the third resistor is respectively passed through the fifth capacitor,
- the sixth capacitor and the fourth resistor are grounded, the other end of the second magnetic bead is connected to the audio jack, and the other end of the second magnetic bead is also grounded through the second TVS tube.
- a method for implementing a mobile terminal-based HAC system wherein the mobile terminal-based HAC system includes a mobile terminal and a coil accessory;
- the coil accessory includes an audio plug and a magnetic induction coil connected to the audio plug;
- the mobile terminal includes a mobile terminal body, a main board, an audio interface circuit, and an audio jack adapted to the audio plug, the main board and the audio interface circuit are disposed inside the mobile terminal body, and the audio jack is disposed on the mobile terminal
- the main board, the audio interface circuit and the audio jack are connected in sequence on the side of the terminal body;
- the motherboard includes:
- a setting module configured to set an operating mode of the mobile terminal, where the working mode includes a HAC mode and a normal mode;
- a detecting module for detecting whether a coil accessory or an earphone is inserted into the audio jack
- the driving module is configured to output a left channel audio signal and a right channel audio signal to the earphone respectively when the earphone is inserted into the audio jack, and drive the earphone to work; and output the right channel when detecting that the coil accessory is inserted into the audio jack Audio signal to the coil accessory, driving the coil accessory to work;
- the audio interface circuit includes:
- the left channel audio signal and the right channel audio signal are respectively output to the left channel audio signal output circuit and the right channel audio signal output circuit for filtering processing, and the filtered left
- the channel audio signal and the right channel audio signal simultaneously drive the headphones to work;
- the main board detects that the coil accessory is inserted into the audio jack, the right channel audio signal output by the main board is filtered by the right channel audio signal output circuit, and then output to the audio power amplifier, and the audio power amplifier performs amplification processing to obtain the coil driving signal and outputs the signal to the coil.
- Coil attachment driving the magnetic induction coil to work;
- the method includes the following steps:
- the main board sets an operation mode of the mobile terminal, wherein the working mode includes a HAC mode and a normal mode;
- the main board In the HAC mode, when the motherboard detects that the coil accessory is inserted into the audio jack, the main board outputs the right channel audio signal and performs filtering processing through the right channel audio signal output circuit, and then outputs the result to the audio power amplifier, and the audio power amplifier performs amplification processing to obtain the coil. Driving the signal and outputting to the coil accessory to drive the magnetic induction coil to work;
- the main board In the normal mode, when the motherboard detects that the earphone is inserted into the audio jack, the main board outputs the left channel audio signal and the right channel audio signal to the left channel audio signal output circuit and the right channel audio signal output circuit for filtering, and The left channel audio signal and the right channel audio signal after filtering are simultaneously driven to operate the headphones.
- the method further includes the step of: the main board controls the audio power amplifier not to work when detecting that the earphone is inserted into the audio jack.
- the audio interface circuit further includes a switch switch and a microphone input circuit, wherein the inverting input end of the audio power amplifier is simultaneously connected to the input end of the right channel audio signal output circuit and one end of the switch, the audio power amplifier The non-inverting input terminal is grounded, and the output end of the audio power amplifier is simultaneously connected to the audio jack and the other end of the switch.
- One end of the microphone input circuit is connected to the audio jack, and the other end of the microphone input circuit is connected to the main board.
- the right channel audio signal output circuit includes a first capacitor, a second capacitor, a third capacitor, a first resistor, a second resistor, a first magnetic bead, and a first TVS diode, first One end of the capacitor is connected to the main board, and the other end of the first capacitor is connected to one end of the first resistor, and the other end of the first resistor is connected to one end of the first magnetic bead, and the other end of the first resistor further passes through the second capacitor, the third capacitor, and The second resistor is grounded, and the other end of the first magnetic bead is connected to the inverting input end of the audio power amplifier, and the other end of the first magnetic bead is also grounded through the first TVS tube.
- the left channel audio signal output circuit includes a fourth capacitor, a fifth capacitor, a sixth capacitor, a third resistor, a fourth resistor, a second magnetic bead, and a second TVS tube, and the fourth capacitor
- the fourth capacitor One end is connected to the main board, the other end of the fourth capacitor is connected to one end of the third resistor, the other end of the third resistor is connected to one end of the second magnetic bead, and the other end of the third resistor is further passed through the fifth capacitor, the sixth capacitor and the fourth
- the resistor is grounded, the other end of the second magnetic bead is connected to the audio jack, and the other end of the second magnetic bead is also grounded through the second TVS tube.
- the audio jack is disposed at the top of the mobile terminal body.
- the right channel audio signal output circuit comprises a first capacitor, a second capacitor, a third capacitor, a first resistor, a second resistor, a first magnetic bead and a first TVS level
- One end of the first capacitor is connected to the main board, and the other end of the first capacitor is connected to one end of the first resistor, and the other end of the first resistor is connected to one end of the first magnetic bead, and the other end of the first resistor is respectively passed through the second capacitor,
- the third capacitor and the second resistor are grounded, and the other end of the first magnetic bead is connected to the inverting input end of the audio power amplifier, and the other end of the first magnetic bead is also grounded through the first TVS tube.
- the left channel audio signal output circuit includes a fourth capacitor, a fifth capacitor, a sixth capacitor, a third resistor, a fourth resistor, a second magnetic bead, and a second TVS tube, and a fourth One end of the capacitor is connected to the main board, the other end of the fourth capacitor is connected to one end of the third resistor, and the other end of the third resistor is connected to one end of the second magnetic bead, and the other end of the third resistor is further passed through the fifth capacitor, the sixth capacitor, and The fourth resistor is grounded, the other end of the second magnetic bead is connected to the audio jack, and the other end of the second magnetic bead is also grounded through the second TVS tube.
- the present invention provides a mobile terminal-based HAC system including a mobile terminal and a coil accessory, and a method for implementing the same, the coil accessory including an audio plug and an audio plug a connected magnetic induction coil;
- the mobile terminal comprises a mobile terminal body, a main board, an audio interface circuit and an audio jack, the main board and the audio interface circuit are disposed inside the mobile terminal body, and the audio jack is disposed on the mobile terminal body On the side of the board, the motherboard, the audio interface circuit and the audio jack are connected in sequence.
- the invention can realize the function of the hearing aid compatibility of the mobile terminal without occupying the design space of the mobile terminal, and the obtained HAC system based on the mobile terminal also has the advantages of low implementation cost and simple debugging.
- FIG. 1 is a system block diagram of a mobile terminal-based HAC system provided by the present invention.
- FIG. 2 is a circuit schematic diagram of a preferred embodiment of a mobile terminal-based HAC system provided by the present invention.
- coil accessory 11, audio plug; 12, magnetic induction coil; 20, audio jack; 30, audio interface circuit; 31, left channel audio signal output circuit; 32, right channel audio signal output; 33.
- Microphone input circuit
- an object of the present invention is to provide a HAC system based on a mobile terminal, which can enable a mobile terminal to implement a hearing aid compatibility function without occupying a design space of the mobile terminal.
- the mobile terminal-based HAC system includes a mobile terminal (not shown) and a coil accessory 10;
- the coil accessory 10 includes an audio plug 11 and a magnetic induction coil 12 connected to the audio plug 11;
- the mobile terminal includes a mobile terminal body (not shown), a main board (not shown), an audio interface circuit 30, and an audio jack 20, and the main board and the audio interface circuit 30 are disposed inside the mobile terminal body.
- the audio jack 20 is disposed on a side of the mobile terminal body, and the main board, the audio interface circuit 30, and the audio jack 20 are sequentially connected.
- the coil accessory 10 With the plug-in fit between the audio jack 20 and the audio plug 11, a detachable connection between the coil accessory 10 and the mobile terminal can be achieved.
- the coil accessory 10 can be removed to prevent the use of the mobile terminal without using the function of the hearing aid compatibility; in the case where the function of the hearing aid compatibility is required, the mobile terminal can be used.
- the coil accessory 10 is mounted thereon to achieve its hearing aid compatibility function and reduce environmental noise.
- the mobile terminal is a full-screen mobile phone, that is, a mobile phone having an ultra-narrow bezel design with a screen ratio of more than 90%.
- the HAC system based on mobile terminals provided by the present invention does not need to occupy too much design space of the mobile phone, that is, guarantee
- the screen share of the mobile phone, and the function of the hearing aid compatibility of the mobile phone ensures the use of such a comprehensive screen mobile phone for the hearing impaired.
- FIG. 2 is a circuit schematic diagram of a preferred embodiment of a mobile terminal-based HAC system according to the present invention.
- the audio interface circuit 30 includes:
- the left channel audio signal and the right channel audio signal are respectively output to the left channel audio signal output circuit 31 and the right channel audio signal output circuit 32 for filtering processing, and are processed by filtering.
- the left left channel audio signal and the right channel audio signal simultaneously drive the earphone to work;
- the main board detects that the coil accessory is inserted into the audio jack 20
- the right channel audio signal output by the main board is filtered by the right channel audio signal output circuit 32, and then output to the audio power amplifier, and the audio power amplifier performs amplification processing to obtain the coil driving signal.
- the motherboard includes:
- a setting module configured to set an operating mode of the mobile terminal, where the working mode includes a HAC mode and a normal mode;
- a detecting module configured to detect whether the coil accessory 10 or the earphone is inserted into the audio jack 20;
- the driving module is configured to output a left channel audio signal and a right channel audio signal to the earphone respectively when the earphone is inserted into the audio jack 20, and drive the earphone to work; when detecting that the coil accessory 10 is inserted into the audio jack, outputting the right
- the channel audio signal is supplied to the coil attachment 10, and the drive coil attachment 10 operates.
- the audio power amplifier PA is disposed at the output of the right channel audio signal output circuit 32 and is connected to the audio jack 20.
- the audio power amplifier PA can amplify the audio signal output by the main board through the right channel audio signal output circuit 32, thereby transmitting the amplified audio signal to the magnetic induction coil 12 through the audio jack 20 and the audio plug 11, and driving the magnetic induction coil 12 to work.
- the generated magnetic field can be picked up by the hearing aid and converted into an amplified electrical signal, greatly reducing the influence of environmental noise.
- the detection module of the main board is connected to the left channel audio signal output circuit of the mobile phone, so placing the audio power amplifier PA in the right channel audio signal output circuit 32 does not affect the insertion and removal behavior detection of the earphone or the coil accessory.
- the speaker driving power amplifier of the mobile phone itself can be connected to the left channel audio signal output circuit 31, and separated from the audio power amplifier PA, so that the two are driven by different audio signals.
- the audio interface circuit 30 further includes a switch S1, and the inverting input of the audio power amplifier PA is simultaneously connected to the input end of the right channel audio signal output circuit 32 and one end of the switch S1.
- the non-inverting input terminal of the audio power amplifier PA is grounded, and the output end of the audio power amplifier PA is simultaneously connected to the audio jack 20 and the other end of the switch S1.
- the audio power amplifier PA is turned on, there may be a situation in which the signal is reversed, causing the power of the mobile phone to be abnormal and affecting other functional modules of the mobile phone. Therefore, by turning off the switch S1 when the audio power amplifier PA is turned on, signal backflow can be avoided.
- the right channel audio signal output circuit 32 includes a first capacitor C1, a second capacitor C2, a third capacitor C3, a first resistor R1, a second resistor R2, a first magnetic bead B1, and a first a TVS diode D1, one end of the first capacitor C1 is connected to the main board, the other end of the first capacitor C1 is connected to one end of the first resistor R1, and the other end of the first resistor R1 is connected to one end of the first magnetic bead B1, the first resistor The other end of R1 is also grounded through the second capacitor C2, the third capacitor C3 and the second resistor R2, and the other end of the first magnetic bead B1 is connected to the inverting input end of the audio power amplifier PA, and the other end of the first magnetic bead B1 is further Grounded through the first TVS tube D1.
- the right channel audio signal output circuit 32 can filter the audio signal outputted by the main board by using the above components, so that the output of the audio signal has less interference, and can accurately
- the left channel audio signal output circuit includes a fourth capacitor C4, a fifth capacitor C5, a sixth capacitor C6, a third resistor R3, a fourth resistor R4, a second magnetic bead B2, and a second One end of the fourth capacitor C4 is connected to the main board, the other end of the fourth capacitor C4 is connected to one end of the third resistor R3, and the other end of the third resistor R3 is connected to one end of the second magnetic bead, and the other end of the third resistor R3 is connected to the TVS tube D2.
- the fifth capacitor C5, the sixth capacitor C6 and the fourth resistor R4 are respectively grounded.
- the other end of the second magnetic bead B2 is connected to the audio jack 10, and the other end of the second magnetic bead B2 is also grounded through the second TVS tube D2.
- the left channel audio signal output circuit 31 is similar to the right channel audio signal output circuit 32.
- the above components can also be used to filter the audio signal output by the main board, so that the output audio signal has less interference and can be accurate.
- the drive headset works.
- the audio interface circuit 30 further includes a microphone input circuit 33.
- One end of the microphone input circuit 33 is connected to the audio jack 20, and the other end of the microphone input circuit 33 is connected to the main board.
- the audio interface circuit 30 is enabled by the microphone input circuit 33 to input a microphone voice signal.
- the specific circuit connection manner of the microphone input circuit 33 mentioned in the present invention and the remaining unillustrated circuits in FIG. 2 can be used by an existing setting method or by those skilled in the art. The experience is obtained, so the present invention does not describe the specific structure of these circuits.
- the audio jack 20 is disposed at the top of the mobile terminal body. Based on the habit of using the mobile phone to answer the call by most users, the audio jack 20 is disposed on the top of the mobile terminal body, so that the coil accessory 10 connected thereto can be close to the hearing aid worn by the user, thereby facilitating the function of the magnetic induction coil 12.
- the audio jack 20 is a 3.5 mm headphone jack
- the audio plug 11 is a 3.5 mm headphone plug, which makes the connection structure standardized and simple, and has low implementation cost, and is suitable for most existing mobile terminals.
- other types of audio jacks 20, such as a Lightning interface and a Type-c interface may be used in other embodiments to accommodate mobile phone trends.
- the present invention also provides a method for implementing the above mobile terminal-based HAC system, the method comprising the following steps:
- the main board sets an operation mode of the mobile terminal, wherein the working mode includes a HAC mode and a normal mode;
- the main board In the HAC mode, when the motherboard detects that the coil accessory is inserted into the audio jack, the main board outputs the right channel audio signal and performs filtering processing through the right channel audio signal output circuit, and then outputs the result to the audio power amplifier, and the audio power amplifier performs amplification processing to obtain the coil. Driving the signal and outputting to the coil accessory to drive the magnetic induction coil to work;
- the main board In the normal mode, when the motherboard detects that the earphone is inserted into the audio jack, the main board outputs the left channel audio signal and the right channel audio signal to the left channel audio signal output circuit and the right channel audio signal output circuit for filtering, and The left channel audio signal and the right channel audio signal after filtering are simultaneously driven to operate the headphones.
- the mobile terminal in the HAC mode, amplifies the audio signal output by the right channel audio signal output circuit 32 through the audio power amplifier PA, and transmits the amplified audio signal to the magnetic induction coil through the audio jack 20 and the audio plug 11. 12.
- the magnetic induction coil 12 is driven to operate, so that the generated magnetic field can be picked up by the hearing aid and converted into an amplified electrical signal, thereby greatly reducing the influence of environmental noise.
- the mobile terminal is in the normal mode and the mobile terminal is used in the same manner as the normal mobile terminal, so that the normal use of the ordinary user is not affected.
- the method further comprises the step of: controlling the audio power amplifier to not work when the motherboard detects that the earphone is inserted into the audio jack.
- the earphone and the coil accessory 10 share one audio jack 20, and the general earphone interface circuit does not have an additional power amplifier. Therefore, when the earphone is connected to the audio interface circuit 30 provided by the application, the audio power amplifier PA does not turn off.
- the earphone driver circuit may be too large to burn out the headphones, which may affect the user's use.
- the developer can design the software in advance so that the mobile terminal prohibits the opening behavior of the audio power amplifier PA through the main board when the mobile phone is inserted.
- the present invention provides a mobile terminal-based HAC system including a mobile terminal and a coil accessory, and a method for implementing the same, the coil accessory including an audio plug and an audio plug a magnetic induction coil;
- the mobile terminal comprises a mobile terminal body, a main board, an audio interface circuit and an audio jack, the main board and the audio interface circuit are disposed inside the mobile terminal body, and the audio jack is disposed on a side of the mobile terminal body On the side, the motherboard, the audio interface circuit and the audio jack are connected in turn.
- the invention can realize the function of the hearing aid compatibility of the mobile terminal without occupying the design space of the mobile terminal, and the obtained HAC system based on the mobile terminal also has the advantages of low implementation cost and simple debugging.
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- Circuit For Audible Band Transducer (AREA)
Abstract
本发明公开了一种基于移动终端的HAC系统及其实现方法,所述基于移动终端的HAC系统包括移动终端和线圈附件;所述线圈附件包括音频插头和与音频插头连接的磁感线圈;所述移动终端包括移动终端本体、主板、音频接口电路和音频插孔,所述主板和音频接口电路设置于移动终端本体的内部,所述音频插孔设置于移动终端本体的侧边上,所述主板、音频接口电路和音频插孔依次连接。本发明可在不占用移动终端的设计空间的前提下使移动终端实现助听器兼容性的功能,并且得到的基于移动终端的HAC系统还具有实现成本低和调试简单的优点。
Description
本发明涉及移动终端音频应用技术领域,特别涉及一种基于移动终端的HAC系统。
FCC(美国联邦通讯委员会Federal Communications Commission)针对听力有障碍的人士,对手机各制造商强制实施了HAC(助听器兼容性Hearing Aid Compatibility)的认证计划,其的HAC参考标准为ANSI C63.19(美国无线通讯设备与助听器兼容性测量国家标准方法)。根据标准定义消费者可通过对助听器抗干扰级别和相应的手机信号发射级别来判断某型号助听器与手机的兼容性。
在手机应助听器的兼容设计时,需要外加一个电感线圈做天线,也有厂家将线圈加到受话器内部做成专门的HAC受话器,当助听器设置在T档,电话内的感应线圈产生的磁场就可以被助听器拾取,并转换成放大的电信号,并且由于此时麦克风停止工作,大大降低了环境噪声的影响。但是伴随着手机屏占比越来越大,甚至有推出全面屏手机的趋势,此类手机就失去了专门的HAC设计空间,给听力障碍人士使用手机带来了不便。
因而现有技术还有待改进和提高。
发明内容
鉴于上述现有技术的不足之处,本发明的目的在于提供一种基于移动终端的HAC系统,可使移动终端实现助听器兼容性的功能,且不占用移动终端的设计空间。
为了达到上述目的,本发明采取了以下技术方案:
一种基于移动终端的HAC系统,包括移动终端和线圈附件;
所述线圈附件包括音频插头和与音频插头连接的磁感线圈;
所述移动终端包括移动终端本体、主板、音频接口电路和音频插孔,所述主板和音频接口电路设置于移动终端本体的内部,所述音频插孔设置于移动终端本体的侧边上,所述主板、音频接口电路和音频插孔依次连接;
所述主板包括:
设置模块,用于设置移动终端的工作模式,其中所述工作模式包括HAC模式和普通模式;
检测模块,用于检测插入音频插孔的是线圈附件还是耳机;
驱动模块,用于在检测到耳机插入音频插孔时,分别输出左声道音频信号和右声道音频信号至耳机,驱动耳机工作;在检测到线圈附件插入音频插孔时,输出右声道音频信号至线圈附件,驱动线圈附件工作;
所述音频接口电路包括:
左声道音频信号输出电路;
右声道音频信号输出电路;
音频功放;
主板检测到耳机插入音频插孔时,分别输出左声道音频信号和右声道音频信号至左声道音频信号输出电路和右声道音频信号输出电路进行滤波处理,并由滤波处理后的左声道音频信号和右声道音频信号同时驱动耳机工作;
主板检测到线圈附件插入音频插孔时,主板输出的右声道音频信号经过右声道音频信号输出电路进行滤波处理后输出至音频功放,由音频功放进行放大处理后得到线圈驱动信号并输出至线圈附件,驱动磁感线圈工作。
所述的基于移动终端的HAC系统中,所述音频接口电路还包括切换开关和麦克风输入电路,所述音频功放的反相输入端同时连接右声道音频信号输出电路的输入端和切换开关的一端,音频功放的同相输入端接地,所述音频功放的输出端同时连接音频插孔和切换开关的另一端,所述音频接口电路还包括麦克风输入电路,所述麦克风输入电路的一端连接音频插孔,麦克风输入电路的另一端连接主板。
所述的基于移动终端的HAC系统中,所述右声道音频信号输出电路包括第一电容、第二电容、第三电容、第一电阻、第二电阻、第一磁珠和第一TVS二级管,第一电容的一端连接主板,第一电容的另一端连接第一电阻的一端,第一电阻的另一端连接第一磁珠的一端,第一电阻的另一端还分别通过第二电容、第三电容和第二电阻接地,第一磁珠的另一端连接音频功放的反相输入端,第一磁珠的另一端还通过第一TVS管接地;所述左声道音频信号输出电路包括第四电容、第五电容、第六电容、第三电阻、第四电阻、第二磁珠和第二TVS管,第四电容的一端连接主板,第四电容的另一端连接第三电阻的一端,第三电阻的另一端连接第二磁珠的一端,第三电阻的另一端还分别通过第五电容、第六电容和第四电阻接地,第二磁珠的另一端连接音频插孔,第二磁珠的另一端还通过第二TVS管接地。
一种基于移动终端的HAC系统,其中,包括移动终端和线圈附件;
所述线圈附件包括音频插头和与音频插头连接的磁感线圈;
所述移动终端包括移动终端本体、主板、音频接口电路和与所述音频插头适配的音频插孔,所述主板和音频接口电路设置于移动终端本体的内部,所述音频插孔设置于移动终端本体的侧边上,所述主板、音频接口电路和音频插孔依次连接。
所述的基于移动终端的HAC系统中,所述音频接口电路包括:
左声道音频信号输出电路;
右声道音频信号输出电路;
音频功放;
主板检测到耳机插入音频插孔时,分别输出左声道音频信号和右声道音频信号至左声道音频信号输出电路和右声道音频信号输出电路进行滤波处理,并由滤波处理后的左声道音频信号和右声道音频信号同时驱动耳机工作;
主板检测到线圈附件插入音频插孔时,主板输出的右声道音频信号经过右声道音频信号输出电路进行滤波处理后输出至音频功放,由音频功放进行放大处理后得到线圈驱动信号并输出至线圈附件,驱动磁感线圈工作。
其中,所述主板包括:
设置模块,用于设置移动终端的工作模式,其中所述工作模式包括HAC模式和普通模式;
检测模块,用于检测插入音频插孔的是线圈附件还是耳机;
驱动模块,用于在检测到耳机插入音频插孔时,分别输出左声道音频信号和右声道音频信号至耳机,驱动耳机工作;在检测到线圈附件插入音频插孔时,输出右声道音频信号至线圈附件,驱动线圈附件工作。
所述的基于移动终端的HAC系统中,所述音频接口电路还包括切换开关,所述音频功放的反相输入端同时连接右声道音频信号输出电路的输入端和切换开关的一端,音频功放的同相输入端接地,所述音频功放的输出端同时连接音频插孔和切换开关的另一端。
所述的基于移动终端的HAC系统中,其中,所述音频接口电路还包括麦克风输入电路,所述麦克风输入电路的一端连接音频插孔,麦克风输入电路的另 一端连接主板,所述音频插孔设置于移动终端本体的顶部。
所述的基于移动终端的HAC系统中,所述右声道音频信号输出电路包括第一电容、第二电容、第三电容、第一电阻、第二电阻、第一磁珠和第一TVS二级管,第一电容的一端连接主板,第一电容的另一端连接第一电阻的一端,第一电阻的另一端连接第一磁珠的一端,第一电阻的另一端还分别通过第二电容、第三电容和第二电阻接地,第一磁珠的另一端连接音频功放的反相输入端,第一磁珠的另一端还通过第一TVS管接地。
所述的基于移动终端的HAC系统中,所述左声道音频信号输出电路包括第四电容、第五电容、第六电容、第三电阻、第四电阻、第二磁珠和第二TVS管,第四电容的一端连接主板,第四电容的另一端连接第三电阻的一端,第三电阻的另一端连接第二磁珠的一端,第三电阻的另一端还分别通过第五电容、第六电容和第四电阻接地,第二磁珠的另一端连接音频插孔,第二磁珠的另一端还通过第二TVS管接地。
一种实现基于移动终端的HAC系统的方法,其中,所述基于移动终端的HAC系统包括移动终端和线圈附件;
所述线圈附件包括音频插头和与音频插头连接的磁感线圈;
所述移动终端包括移动终端本体、主板、音频接口电路和与所述音频插头适配的音频插孔,所述主板和音频接口电路设置于移动终端本体的内部,所述音频插孔设置于移动终端本体的侧边上,所述主板、音频接口电路和音频插孔依次连接;
所述主板包括:
设置模块,用于设置移动终端的工作模式,其中所述工作模式包括HAC模式和普通模式;
检测模块,用于检测插入音频插孔的是线圈附件还是耳机;
驱动模块,用于在检测到耳机插入音频插孔时,分别输出左声道音频信号和右声道音频信号至耳机,驱动耳机工作;在检测到线圈附件插入音频插孔时,输出右声道音频信号至线圈附件,驱动线圈附件工作;
所述音频接口电路包括:
左声道音频信号输出电路;
右声道音频信号输出电路;
音频功放;
主板检测到耳机插入音频插孔时,分别输出左声道音频信号和右声道音频信号至左声道音频信号输出电路和右声道音频信号输出电路进行滤波处理,并由滤波处理后的左声道音频信号和右声道音频信号同时驱动耳机工作;
主板检测到线圈附件插入音频插孔时,主板输出的右声道音频信号经过右声道音频信号输出电路进行滤波处理后输出至音频功放,由音频功放进行放大处理后得到线圈驱动信号并输出至线圈附件,驱动磁感线圈工作;
所述方法包括如下步骤:
主板设置移动终端的工作模式,其中所述工作模式包括HAC模式和普通模式;
在HAC模式下,主板检测到线圈附件插入音频插孔时,主板输出右声道音频信号并经过右声道音频信号输出电路进行滤波处理后输出至音频功放,由音频功放进行放大处理后得到线圈驱动信号并输出至线圈附件,驱动磁感线圈工作;
在HAC模式下,主板检测到耳机插入音频插孔时,不输出音频信号;
在普通模式下,主板检测到线圈附件插入音频插孔时,不输出音频信号;
在普通模式下,主板检测到耳机插入音频插孔时,主板分别输出左声道音频信号和右声道音频信号至左声道音频信号输出电路和右声道音频信号输出电路进行滤波处理,并由滤波处理后的左声道音频信号和右声道音频信号同时驱动耳机工作。
所述的方法中,还包括步骤:主板在检测到耳机插入音频插孔时,控制音频功放不工作。
所述的方法中,所述音频接口电路还包括切换开关和麦克风输入电路,所述音频功放的反相输入端同时连接右声道音频信号输出电路的输入端和切换开关的一端,音频功放的同相输入端接地,所述音频功放的输出端同时连接音频插孔和切换开关的另一端,所述麦克风输入电路的一端连接音频插孔,麦克风输入电路的另一端连接主板。
所述的方法中,所述右声道音频信号输出电路包括第一电容、第二电容、第三电容、第一电阻、第二电阻、第一磁珠和第一TVS二级管,第一电容的一端连接主板,第一电容的另一端连接第一电阻的一端,第一电阻的另一端连接第一磁珠的一端,第一电阻的另一端还分别通过第二电容、第三电容和第二电阻接地,第一磁珠的另一端连接音频功放的反相输入端,第一磁珠的另一端还通过第一TVS管接地。
所述的方法中,所述左声道音频信号输出电路包括第四电容、第五电容、第六电容、第三电阻、第四电阻、第二磁珠和第二TVS管,第四电容的一端连接主板,第四电容的另一端连接第三电阻的一端,第三电阻的另一端连接第二磁珠的一端,第三电阻的另一端还分别通过第五电容、第六电容和第四电阻接地,第二磁珠的另一端连接音频插孔,第二磁珠的另一端还通过第二TVS管接地。
所述的方法中,所述音频插孔设置于移动终端本体的顶部。
或者,所述的方法中,其中,所述右声道音频信号输出电路包括第一电容、第二电容、第三电容、第一电阻、第二电阻、第一磁珠和第一TVS二级管,第一电容的一端连接主板,第一电容的另一端连接第一电阻的一端,第一电阻的另一端连接第一磁珠的一端,第一电阻的另一端还分别通过第二电容、第三电容和第二电阻接地,第一磁珠的另一端连接音频功放的反相输入端,第一磁珠的另一端还通过第一TVS管接地。
所述的方法中,其中,所述左声道音频信号输出电路包括第四电容、第五电容、第六电容、第三电阻、第四电阻、第二磁珠和第二TVS管,第四电容的一端连接主板,第四电容的另一端连接第三电阻的一端,第三电阻的另一端连接第二磁珠的一端,第三电阻的另一端还分别通过第五电容、第六电容和第四电阻接地,第二磁珠的另一端连接音频插孔,第二磁珠的另一端还通过第二TVS管接地。
相较于现有技术,本发明提供了一种基于移动终端的HAC系统及其实现方法,所述基于移动终端的HAC系统包括移动终端和线圈附件;所述线圈附件包括音频插头和与音频插头连接的磁感线圈;所述移动终端包括移动终端本体、主板、音频接口电路和音频插孔,所述主板和音频接口电路设置于移动终端本体的内部,所述音频插孔设置于移动终端本体的侧边上,所述主板、音频接口电路和音频插孔依次连接。本发明可在不占用移动终端的设计空间的前提下使移动终端实现助听器兼容性的功能,并且得到的基于移动终端的HAC系统还具有实现成本低和调试简单的优点。
图1为本发明提供的基于移动终端的HAC系统的系统框图。
图2为本发明提供的基于移动终端的HAC系统的较佳实施例的电路原理图。
图中,10、线圈附件;11、音频插头;12、磁感线圈;20、音频插孔;30、音频接口电路;31、左声道音频信号输出电路;32、右声道音频信号输出;33、麦克风输入电路。
鉴于上述现有技术的不足之处,本发明的目的在于提供一种基于移动终端的HAC系统,可使移动终端实现助听器兼容性的功能,且不占用移动终端的设计空间。
为使本发明的目的、技术方案及效果更加清楚、明确,以下参照附图并举实施例对本发明进一步详细说明。应当理解,此处所描述的具体实施例仅用以解释本发明,并不用于限定本发明。
请参阅图1,本发明提供的基于移动终端的HAC系统的系统框图,所述基于移动终端的HAC系统包括移动终端(图中未示出)和线圈附件10;
所述线圈附件10包括音频插头11和与音频插头11连接的磁感线圈12;
所述移动终端包括移动终端本体(图中未示出)、主板(图中未示出)、音频接口电路30和音频插孔20,所述主板和音频接口电路30设置于移动终端本体的内部,所述音频插孔20设置于移动终端本体的侧边上,所述主板、音频接口电路30和音频插孔20依次连接。
利用音频插孔20与音频插头11之间的插接配合,可实现线圈附件10与移动终端之间的可拆卸连接。在用户使用该移动终端时,在不需要使用助听器兼容性的功能的情况下,可取下线圈附件10以防妨碍移动终端的使用;在需要使用助听器兼容性的功能的情况下,可在移动终端上安装线圈附件10,实现其助 听器兼容性的功能,降低环境噪音。
这里,所述移动终端为全面屏手机,即是指屏占比可以达到90%以上,拥有超窄边框设计的手机。在智能手机的屏占比越来越大的发展趋势下,越来越多的手机不得已取消了HAC功能,而本发明提供的基于移动终端的HAC系统不用过多占用手机的设计空间,即保证了手机的屏占比,又使手机实现助听器兼容性的功能,保障了听力障碍人群对这类全面屏手机的使用。
在进一步的实施例中,请参阅图2,为本发明提供的基于移动终端的HAC系统的较佳实施例的电路原理图,所述音频接口电路30包括:
左声道音频信号输出电路31;
右声道音频信号输出电路32;
音频功放PA;
主板检测到耳机插入音频插孔20时,分别输出左声道音频信号和右声道音频信号至左声道音频信号输出电路31和右声道音频信号输出电路32进行滤波处理,并由滤波处理后的左声道音频信号和右声道音频信号同时驱动耳机工作;
主板检测到线圈附件插入音频插孔20时,主板输出的右声道音频信号经过右声道音频信号输出电路32进行滤波处理后输出至音频功放,由音频功放进行放大处理后得到线圈驱动信号并输出至线圈附件10,驱动磁感线圈工作12。
其中,所述主板包括:
设置模块,用于设置移动终端的工作模式,其中所述工作模式包括HAC模式和普通模式;
检测模块,用于检测插入音频插孔20的是线圈附件10还是耳机;
驱动模块,用于在检测到耳机插入音频插孔20时,分别输出左声道音频信号和右声道音频信号至耳机,驱动耳机工作;在检测到线圈附件10插入音频插 孔时,输出右声道音频信号至线圈附件10,驱动线圈附件10工作。
音频功放PA设置于右声道音频信号输出电路32的输出端,并连接音频插孔20。音频功放PA可将主板通过右声道音频信号输出电路32输出的音频信号放大,从而将放大后的音频信号通过音频插孔20及音频插头11发送给磁感线圈12,驱动磁感线圈12工作,其产生的磁场就可以被助听器拾取,并转换成放大的电信号,大大降低了环境噪声的影响。
一般而言,主板的检测模块与手机的左声道音频信号输出电路连接,故将音频功放PA放在右声道音频信号输出电路32不会影响耳机或线圈附件的插拔行为检测。而且可将手机本身的喇叭驱动功放连接左声道音频信号输出电路31,与音频功放PA分开,使两者采用不同的音频信号进行驱动。
在更进一步的实施例中,所述音频接口电路30还包括切换开关S1,所述音频功放PA的反相输入端同时连接右声道音频信号输出电路32的输入端和切换开关S1的一端,音频功放PA的同相输入端接地,所述音频功放PA的输出端同时连接音频插孔20和切换开关S1的另一端。在音频功放PA打开的情况下,可能出现信号倒灌的状况,使手机电源异常从而影响手机的其他功能模块。故通过在音频功放PA打开时,使切换开关S1关闭,可避免信号倒灌。
在具体的实施例中,所述右声道音频信号输出电路32包括第一电容C1、第二电容C2、第三电容C3、第一电阻R1、第二电阻R2、第一磁珠B1和第一TVS二级管D1,第一电容C1的一端连接主板,第一电容C1的另一端连接第一电阻R1的一端,第一电阻R1的另一端连接第一磁珠B1的一端,第一电阻R1的另一端还分别通过第二电容C2、第三电容C3和第二电阻R2接地,第一磁珠B1的另一端连接音频功放PA的反相输入端,第一磁珠B1的另一端还通过第一TVS管D1接地。右声道音频信号输出电路32可利用以上各元器件对主板输出 的音频信号进行滤波处理,使其输出的音频信号干扰更小,可准确的驱动线圈附件10或耳机工作。
在具体的实施例中,所述左声道音频信号输出电路包括第四电容C4、第五电容C5、第六电容C6、第三电阻R3、第四电阻R4、第二磁珠B2和第二TVS管D2,第四电容C4的一端连接主板,第四电容C4的另一端连接第三电阻R3的一端,第三电阻R3的另一端连接第二磁珠的一端,第三电阻R3的另一端还分别通过第五电容C5、第六电容C6和第四电阻R4接地,第二磁珠B2的另一端连接音频插孔10,第二磁珠B2的另一端还通过第二TVS管D2接地。左声道音频信号输出电路31与右声道音频信号输出电路32设置方式类似,也可利用以上各元器件对主板输出的音频信号进行滤波处理,使其输出的音频信号干扰更小,可准确的驱动耳机工作。
较佳的,所述音频接口电路30还包括麦克风输入电路33,所述麦克风输入电路33的一端连接音频插孔20,麦克风输入电路33的另一端连接主板。通过麦克风输入电路33使音频接口电路30可输入麦克风语音信号。在此,需要强调的是,本发明提及的麦克风输入电路33以及图2中其余的未阐明的电路的具体电路连接方式,对于本领域技术人员来说,均可通过现有的设置方式或经验得到,故本发明对这些电路的具体结构不做赘述。
这里,所述音频插孔20设置于移动终端本体的顶部。基于大部分用户的使用手机接听电话的习惯,将音频插孔20设置于移动终端本体的顶部,可使与其连接的线圈附件10靠近用户佩戴的助听器,便于发挥磁感线圈12的作用。并且,所述音频插孔20为3.5mm耳机插孔,所述音频插头11为3.5mm耳机插头,使其连接结构标准化和简便化,并且实现成本低,适用于现有的大部分移动终端。当然,在其他实施例中也可使用其他的类型的音频插孔20,如Lightning接 口和Type-c接口等,适应手机发展趋势。
本发明还提供一种实现上述基于移动终端的HAC系统的方法,所述方法包括如下步骤:
主板设置移动终端的工作模式,其中所述工作模式包括HAC模式和普通模式;
在HAC模式下,主板检测到线圈附件插入音频插孔时,主板输出右声道音频信号并经过右声道音频信号输出电路进行滤波处理后输出至音频功放,由音频功放进行放大处理后得到线圈驱动信号并输出至线圈附件,驱动磁感线圈工作;
在HAC模式下,主板检测到耳机插入音频插孔时,不输出音频信号;
在普通模式下,主板检测到线圈附件插入音频插孔时,不输出音频信号;
在普通模式下,主板检测到耳机插入音频插孔时,主板分别输出左声道音频信号和右声道音频信号至左声道音频信号输出电路和右声道音频信号输出电路进行滤波处理,并由滤波处理后的左声道音频信号和右声道音频信号同时驱动耳机工作。
具体的,在HAC模式下,移动终端通过音频功放PA将右声道音频信号输出电路32输出的音频信号放大,并将放大后的音频信号通过音频插孔20及音频插头11发送给磁感线圈12,驱动磁感线圈12工作,使其产生的磁场就可以被助听器拾取,并转换成放大的电信号,从而大大降低了环境噪声的影响。且当用户没有进入HAC模式下时,即处于普通模式下移动终端的使用方式与普通的移动终端使用方式一致,从而不影响普通用户的正常使用。
在进一步的实施例中,所述方法还包括步骤:主板在检测到耳机插入音频插孔时,控制音频功放不工作。在本实施例中,耳机与线圈附件10共用一个音 频插孔20,而一般的耳机接口电路不存在额外的功放,故当耳机连接本申请提供的音频接口电路30后,如音频功放PA不关闭,可能因耳机驱动电路过大而烧坏耳机,影响用户的使用。开发人员可事先设计软件,使移动终端在插入耳机情况下,通过主板禁止音频功放PA的打开行为。
综上所述,本发明提供了一种基于移动终端的HAC系统及其实现方法,所述基于移动终端的HAC系统包括移动终端和线圈附件;所述线圈附件包括音频插头和与音频插头连接的磁感线圈;所述移动终端包括移动终端本体、主板、音频接口电路和音频插孔,所述主板和音频接口电路设置于移动终端本体的内部,所述音频插孔设置于移动终端本体的侧边上,所述主板、音频接口电路和音频插孔依次连接。本发明可在不占用移动终端的设计空间的前提下使移动终端实现助听器兼容性的功能,并且得到的基于移动终端的HAC系统还具有实现成本低和调试简单的优点。
可以理解的是,对本领域普通技术人员来说,可以根据本发明的技术方案及其发明构思加以等同替换或改变,而所有这些改变或替换都应属于本发明所附的权利要求的保护范围。
Claims (20)
- 一种基于移动终端的HAC系统,其中,包括移动终端和线圈附件;所述线圈附件包括音频插头和与音频插头连接的磁感线圈;所述移动终端包括移动终端本体、主板、音频接口电路和与所述音频插头适配的音频插孔,所述主板和音频接口电路设置于移动终端本体的内部,所述音频插孔设置于移动终端本体的侧边上,所述主板、音频接口电路和音频插孔依次连接;所述主板包括:设置模块,用于设置移动终端的工作模式,其中所述工作模式包括HAC模式和普通模式;检测模块,用于检测插入音频插孔的是线圈附件还是耳机;驱动模块,用于在检测到耳机插入音频插孔时,分别输出左声道音频信号和右声道音频信号至耳机,驱动耳机工作;在检测到线圈附件插入音频插孔时,输出右声道音频信号至线圈附件,驱动线圈附件工作;所述音频接口电路包括:左声道音频信号输出电路;右声道音频信号输出电路;音频功放;主板检测到耳机插入音频插孔时,分别输出左声道音频信号和右声道音频信号至左声道音频信号输出电路和右声道音频信号输出电路进行滤波处理,并由滤波处理后的左声道音频信号和右声道音频信号同时驱动耳机工作;主板检测到线圈附件插入音频插孔时,主板输出的右声道音频信号经过右声道音频信号输出电路进行滤波处理后输出至音频功放,由音频功放进行放大 处理后得到线圈驱动信号并输出至线圈附件,驱动磁感线圈工作。
- 根据权利要求1所述的基于移动终端的HAC系统,其中,所述音频接口电路还包括切换开关和麦克风输入电路,所述音频功放的反相输入端同时连接右声道音频信号输出电路的输入端和切换开关的一端,音频功放的同相输入端接地,所述音频功放的输出端同时连接音频插孔和切换开关的另一端,所述麦克风输入电路的一端连接音频插孔,麦克风输入电路的另一端连接主板。
- 根据权利要求1所述的基于移动终端的HAC系统,其中,所述右声道音频信号输出电路包括第一电容、第二电容、第三电容、第一电阻、第二电阻、第一磁珠和第一TVS二级管,第一电容的一端连接主板,第一电容的另一端连接第一电阻的一端,第一电阻的另一端连接第一磁珠的一端,第一电阻的另一端还分别通过第二电容、第三电容和第二电阻接地,第一磁珠的另一端连接音频功放的反相输入端,第一磁珠的另一端还通过第一TVS管接地;所述左声道音频信号输出电路包括第四电容、第五电容、第六电容、第三电阻、第四电阻、第二磁珠和第二TVS管,第四电容的一端连接主板,第四电容的另一端连接第三电阻的一端,第三电阻的另一端连接第二磁珠的一端,第三电阻的另一端还分别通过第五电容、第六电容和第四电阻接地,第二磁珠的另一端连接音频插孔,第二磁珠的另一端还通过第二TVS管接地。
- 根据权利要求2所述的基于移动终端的HAC系统,其中,所述右声道音频信号输出电路包括第一电容、第二电容、第三电容、第一电阻、第二电阻、第一磁珠和第一TVS二级管,第一电容的一端连接主板,第一电容的另一端连接第一电阻的一端,第一电阻的另一端连接第一磁珠的一端,第一电阻的另一端还分别通过第二电容、第三电容和第二电阻接地,第一磁珠 的另一端连接音频功放的反相输入端,第一磁珠的另一端还通过第一TVS管接地;所述左声道音频信号输出电路包括第四电容、第五电容、第六电容、第三电阻、第四电阻、第二磁珠和第二TVS管,第四电容的一端连接主板,第四电容的另一端连接第三电阻的一端,第三电阻的另一端连接第二磁珠的一端,第三电阻的另一端还分别通过第五电容、第六电容和第四电阻接地,第二磁珠的另一端连接音频插孔,第二磁珠的另一端还通过第二TVS管接地。
- 一种基于移动终端的HAC系统,其中,包括移动终端和线圈附件;所述线圈附件包括音频插头和与音频插头连接的磁感线圈;所述移动终端包括移动终端本体、主板、音频接口电路和与所述音频插头适配的音频插孔,所述主板和音频接口电路设置于移动终端本体的内部,所述音频插孔设置于移动终端本体的侧边上,所述主板、音频接口电路和音频插孔依次连接。
- 根据权利要求5所述的基于移动终端的HAC系统,其中,所述音频接口电路包括:左声道音频信号输出电路;右声道音频信号输出电路;音频功放;主板检测到耳机插入音频插孔时,分别输出左声道音频信号和右声道音频信号至左声道音频信号输出电路和右声道音频信号输出电路进行滤波处理,并由滤波处理后的左声道音频信号和右声道音频信号同时驱动耳机工作;主板检测到线圈附件插入音频插孔时,主板输出的右声道音频信号经过右声道音频信号输出电路进行滤波处理后输出至音频功放,由音频功放进行放大 处理后得到线圈驱动信号并输出至线圈附件,驱动磁感线圈工作。
- 根据权利要求5所述的基于移动终端的HAC系统,其中,所述主板包括:设置模块,用于设置移动终端的工作模式,其中所述工作模式包括HAC模式和普通模式;检测模块,用于检测插入音频插孔的是线圈附件还是耳机;驱动模块,用于在检测到耳机插入音频插孔时,分别输出左声道音频信号和右声道音频信号至耳机,驱动耳机工作;在检测到线圈附件插入音频插孔时,输出右声道音频信号至线圈附件,驱动线圈附件工作。
- 根据权利要求6所述的基于移动终端的HAC系统,其中,所述音频接口电路还包括切换开关,所述音频功放的反相输入端同时连接右声道音频信号输出电路的输入端和切换开关的一端,音频功放的同相输入端接地,所述音频功放的输出端同时连接音频插孔和切换开关的另一端。
- 根据权利要求6所述的基于移动终端的HAC系统,其中,所述音频接口电路还包括麦克风输入电路,所述麦克风输入电路的一端连接音频插孔,麦克风输入电路的另一端连接主板,所述音频插孔设置于移动终端本体的顶部。
- 根据权利要求5所述的基于移动终端的HAC系统,其中,所述右声道音频信号输出电路包括第一电容、第二电容、第三电容、第一电阻、第二电阻、第一磁珠和第一TVS二级管,第一电容的一端连接主板,第一电容的另一端连接第一电阻的一端,第一电阻的另一端连接第一磁珠的一端,第一电阻的另一端还分别通过第二电容、第三电容和第二电阻接地,第一磁珠的另一端连接音频功放的反相输入端,第一磁珠的另一端还通过第一TVS管接地。
- 根据权利要求5所述的基于移动终端的HAC系统,其中,所述左声道 音频信号输出电路包括第四电容、第五电容、第六电容、第三电阻、第四电阻、第二磁珠和第二TVS管,第四电容的一端连接主板,第四电容的另一端连接第三电阻的一端,第三电阻的另一端连接第二磁珠的一端,第三电阻的另一端还分别通过第五电容、第六电容和第四电阻接地,第二磁珠的另一端连接音频插孔,第二磁珠的另一端还通过第二TVS管接地。
- 一种实现基于移动终端的HAC系统的方法,其中,所述基于移动终端的HAC系统包括移动终端和线圈附件;所述线圈附件包括音频插头和与音频插头连接的磁感线圈;所述移动终端包括移动终端本体、主板、音频接口电路和与所述音频插头适配的音频插孔,所述主板和音频接口电路设置于移动终端本体的内部,所述音频插孔设置于移动终端本体的侧边上,所述主板、音频接口电路和音频插孔依次连接;所述主板包括:设置模块,用于设置移动终端的工作模式,其中所述工作模式包括HAC模式和普通模式;检测模块,用于检测插入音频插孔的是线圈附件还是耳机;驱动模块,用于在检测到耳机插入音频插孔时,分别输出左声道音频信号和右声道音频信号至耳机,驱动耳机工作;在检测到线圈附件插入音频插孔时,输出右声道音频信号至线圈附件,驱动线圈附件工作;所述音频接口电路包括:左声道音频信号输出电路;右声道音频信号输出电路;音频功放;主板检测到耳机插入音频插孔时,分别输出左声道音频信号和右声道音频信号至左声道音频信号输出电路和右声道音频信号输出电路进行滤波处理,并由滤波处理后的左声道音频信号和右声道音频信号同时驱动耳机工作;主板检测到线圈附件插入音频插孔时,主板输出的右声道音频信号经过右声道音频信号输出电路进行滤波处理后输出至音频功放,由音频功放进行放大处理后得到线圈驱动信号并输出至线圈附件,驱动磁感线圈工作;所述方法包括如下步骤:主板设置移动终端的工作模式,其中所述工作模式包括HAC模式和普通模式;在HAC模式下,主板检测到线圈附件插入音频插孔时,主板输出右声道音频信号并经过右声道音频信号输出电路进行滤波处理后输出至音频功放,由音频功放进行放大处理后得到线圈驱动信号并输出至线圈附件,驱动磁感线圈工作;在HAC模式下,主板检测到耳机插入音频插孔时,不输出音频信号;在普通模式下,主板检测到线圈附件插入音频插孔时,不输出音频信号;在普通模式下,主板检测到耳机插入音频插孔时,主板分别输出左声道音频信号和右声道音频信号至左声道音频信号输出电路和右声道音频信号输出电路进行滤波处理,并由滤波处理后的左声道音频信号和右声道音频信号同时驱动耳机工作。
- 根据权利要求12所述的方法,其中,还包括步骤:主板在检测到耳机插入音频插孔时,控制音频功放不工作。
- 根据权利要求12所述的方法,其中,所述音频接口电路还包括切换开关和麦克风输入电路,所述音频功放的反相输入端同时连接右声道音频信号输 出电路的输入端和切换开关的一端,音频功放的同相输入端接地,所述音频功放的输出端同时连接音频插孔和切换开关的另一端,所述麦克风输入电路的一端连接音频插孔,麦克风输入电路的另一端连接主板。
- 根据权利要求12所述的方法,其中,所述右声道音频信号输出电路包括第一电容、第二电容、第三电容、第一电阻、第二电阻、第一磁珠和第一TVS二级管,第一电容的一端连接主板,第一电容的另一端连接第一电阻的一端,第一电阻的另一端连接第一磁珠的一端,第一电阻的另一端还分别通过第二电容、第三电容和第二电阻接地,第一磁珠的另一端连接音频功放的反相输入端,第一磁珠的另一端还通过第一TVS管接地。
- 根据权利要求12所述的方法,其中,所述左声道音频信号输出电路包括第四电容、第五电容、第六电容、第三电阻、第四电阻、第二磁珠和第二TVS管,第四电容的一端连接主板,第四电容的另一端连接第三电阻的一端,第三电阻的另一端连接第二磁珠的一端,第三电阻的另一端还分别通过第五电容、第六电容和第四电阻接地,第二磁珠的另一端连接音频插孔,第二磁珠的另一端还通过第二TVS管接地。
- 根据权利要求12所述的方法,其中,所述音频插孔设置于移动终端本体的顶部。
- 根据权利要求14所述的方法,其中,所述右声道音频信号输出电路包括第一电容、第二电容、第三电容、第一电阻、第二电阻、第一磁珠和第一TVS二级管,第一电容的一端连接主板,第一电容的另一端连接第一电阻的一端,第一电阻的另一端连接第一磁珠的一端,第一电阻的另一端还分别通过第二电容、第三电容和第二电阻接地,第一磁珠的另一端连接音频功放的反相输入端,第一磁珠的另一端还通过第一TVS管接地。
- 根据权利要求14所述的方法,其中,所述左声道音频信号输出电路包括第四电容、第五电容、第六电容、第三电阻、第四电阻、第二磁珠和第二TVS管,第四电容的一端连接主板,第四电容的另一端连接第三电阻的一端,第三电阻的另一端连接第二磁珠的一端,第三电阻的另一端还分别通过第五电容、第六电容和第四电阻接地,第二磁珠的另一端连接音频插孔,第二磁珠的另一端还通过第二TVS管接地。
- 根据权利要求18所述的方法,其中,所述左声道音频信号输出电路包括第四电容、第五电容、第六电容、第三电阻、第四电阻、第二磁珠和第二TVS管,第四电容的一端连接主板,第四电容的另一端连接第三电阻的一端,第三电阻的另一端连接第二磁珠的一端,第三电阻的另一端还分别通过第五电容、第六电容和第四电阻接地,第二磁珠的另一端连接音频插孔,第二磁珠的另一端还通过第二TVS管接地。
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Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN111050262A (zh) * | 2020-01-10 | 2020-04-21 | 杭州耳青聪科技有限公司 | 一种智能语音增强的实时电子耳蜗调试系统 |
| US20230028379A1 (en) * | 2019-10-11 | 2023-01-26 | Gn Hearing A/S | Hearing device having a magnetic induction coil |
Families Citing this family (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107786741B (zh) | 2017-10-20 | 2021-01-08 | 惠州Tcl移动通信有限公司 | 一种基于移动终端的hac系统及其实现方法 |
| CN109587340B (zh) * | 2018-12-20 | 2021-06-15 | 努比亚技术有限公司 | 基于移动终端实现助听的方法、移动终端及存储介质 |
| CN109714691B (zh) * | 2018-12-25 | 2021-01-01 | 努比亚技术有限公司 | 一种移动终端的音频信号处理方法、移动终端及存储介质 |
| CN113784257B (zh) * | 2021-09-08 | 2024-03-19 | 深圳市长丰影像器材有限公司 | 一种多功能麦克风 |
Citations (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20020141545A1 (en) * | 2001-03-30 | 2002-10-03 | Segovia Jacob Lynn | Efficient autocorrect hearing aid coupling system |
| EP1271899A1 (en) * | 2001-06-28 | 2003-01-02 | Nokia Corporation | Cover with induction coil for a mobile telephone handset |
| CN2750610Y (zh) * | 2004-06-30 | 2006-01-04 | 黄智芳 | 助听耳挂 |
| CN101803221A (zh) * | 2007-04-11 | 2010-08-11 | 奥迪康有限公司 | 与另一设备感应耦合的无线通信设备 |
| CN106416299A (zh) * | 2014-07-10 | 2017-02-15 | 唯听助听器公司 | 具有用于控制至少一个助听器的操作的应用软件的个人通信设备 |
| CN107786741A (zh) * | 2017-10-20 | 2018-03-09 | 惠州Tcl移动通信有限公司 | 一种基于移动终端的hac系统及其实现方法 |
Family Cites Families (12)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| KR20030096847A (ko) * | 2002-06-18 | 2003-12-31 | 세기스타 주식회사 | 포켓형 보청기 회로 |
| US7418106B2 (en) * | 2004-06-21 | 2008-08-26 | Nokia Corporation | Apparatus and methods for increasing magnetic field in an audio device |
| KR100591814B1 (ko) * | 2005-02-21 | 2006-06-20 | 주식회사 팬택앤큐리텔 | 청각 장애인을 위한 오디오 신호 출력 방법과 그를 이용한이동통신 단말기 |
| WO2011104585A1 (en) * | 2010-02-26 | 2011-09-01 | Nokia Corporation | An apparatus for magnetic field induction in portable devices |
| CN102055822B (zh) * | 2010-12-28 | 2013-10-23 | 惠州Tcl移动通信有限公司 | 一种手机 |
| WO2012129193A1 (en) * | 2011-03-22 | 2012-09-27 | Advanced Electroacoustics Private Limited | A communications apparatus |
| US8682014B2 (en) * | 2012-04-11 | 2014-03-25 | Apple Inc. | Audio device with a voice coil channel and a separately amplified telecoil channel |
| US9491552B2 (en) * | 2013-11-08 | 2016-11-08 | Blackberry Limited | Electronic device having hearing aid compatibility |
| CN104735601B (zh) * | 2015-02-10 | 2019-03-26 | 惠州Tcl移动通信有限公司 | 一种助听线圈检测装置及检测系统 |
| CN105142072B (zh) * | 2015-09-30 | 2018-12-07 | 惠州Tcl移动通信有限公司 | 一种外接播放器的音频装置及音频播放方法 |
| CN105554606B (zh) * | 2015-12-15 | 2019-03-12 | 广州三星通信技术研究有限公司 | 数字耳机及电子设备 |
| CN106851481B (zh) * | 2017-03-17 | 2020-06-02 | 惠州Tcl移动通信有限公司 | Hac功放的状态控制方法、状态控制模块及控制系统 |
-
2017
- 2017-10-20 CN CN201710984137.9A patent/CN107786741B/zh active Active
-
2018
- 2018-10-22 US US16/757,436 patent/US11190876B2/en active Active
- 2018-10-22 WO PCT/CN2018/111189 patent/WO2019076382A1/zh not_active Ceased
Patent Citations (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20020141545A1 (en) * | 2001-03-30 | 2002-10-03 | Segovia Jacob Lynn | Efficient autocorrect hearing aid coupling system |
| EP1271899A1 (en) * | 2001-06-28 | 2003-01-02 | Nokia Corporation | Cover with induction coil for a mobile telephone handset |
| CN2750610Y (zh) * | 2004-06-30 | 2006-01-04 | 黄智芳 | 助听耳挂 |
| CN101803221A (zh) * | 2007-04-11 | 2010-08-11 | 奥迪康有限公司 | 与另一设备感应耦合的无线通信设备 |
| CN106416299A (zh) * | 2014-07-10 | 2017-02-15 | 唯听助听器公司 | 具有用于控制至少一个助听器的操作的应用软件的个人通信设备 |
| CN107786741A (zh) * | 2017-10-20 | 2018-03-09 | 惠州Tcl移动通信有限公司 | 一种基于移动终端的hac系统及其实现方法 |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20230028379A1 (en) * | 2019-10-11 | 2023-01-26 | Gn Hearing A/S | Hearing device having a magnetic induction coil |
| US12035109B2 (en) * | 2019-10-11 | 2024-07-09 | Gn Hearing A/S | Hearing device having a magnetic induction coil |
| CN111050262A (zh) * | 2020-01-10 | 2020-04-21 | 杭州耳青聪科技有限公司 | 一种智能语音增强的实时电子耳蜗调试系统 |
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| CN107786741A (zh) | 2018-03-09 |
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