This application claims priority of Application No. CN 201810397979.9 filed in China on Apr. 28, 2018 under 35 U.S.C. ยง 119, the entire contents of all of which are hereby incorporated by reference.
The present invention relates to the field of charging devices, and in particular, to a wireless earphone charging cradle.
With the development of smartphones in recent years, mobile phones have become main interfaces of multimedia such as music, films, and games. With the development of wireless technologies and simplification of mobile phone structures, a ratio of using wireless earphones, such as Bluetooth earphones, has also gradually increased.
However, because a wireless earphone, in particular an in-ear wireless earphone or an earbud, has a relatively small volume/size, it is almost impossible to put a battery with large electricity into the earphone. Thus, the use of the earphone would not be long. Accordingly, the wireless earphone is usually provided with a charging case or charging cradle, to charge the wireless earphone at any time.
However, the wireless earphone cannot be used when being charged in the charging case.
A wireless earphone charging cradle is provided in this disclosure. The wireless earphone charging cradle includes a charging module, an audio output interface, and a microprocessor.
When the wireless earphone is connected with the charging module, the wireless earphone is charged. The audio output interface generates and sends a sensing signal after being triggered. The microprocessor is electrically connected to the charging module and the audio output interface respectively, the microprocessor generates a connection signal after receiving the sensing signal and transmits the connection signal to the wireless earphone by using the charging module, so that the wireless earphone is electrically connected to the audio output interface, and an audio signal received by the wireless transceiver of the wireless earphone is transmitted to the audio output interface for output.
In some embodiments, the charging module includes a first electric connector. The first electric connector is electrically connected to the audio output interface, and when the charging module is electrically connected to the wireless earphone, the first electric connector is electrically connected to a second electric connector, so that the charging module charges the wireless earphone.
Further, in some embodiments, the wireless earphone further includes a third electric connector. The third electric connector is electrically connected to an electroacoustic transducer of the wireless earphone. After the microprocessor generates the connection signal and sends the connection signal to the wireless earphone, the wireless earphone disconnects the electric connection between the third electric connector and the electroacoustic transducer. The third electric connector is electrically connected to the second electric connector, and the audio output interface outputs the audio signal received by the wireless transceiver of the wireless earphone.
In some embodiments, the charging module further includes a battery and a charging circuit, and after the first electric connector is electrically connected to the second electric connector, the battery charges the wireless earphone by using the charging circuit, the first electric connector, and the second electric connector. Further, in some embodiments, the charging module further includes a transformer and a second charging circuit. The second charging circuit is connected to the transformer, after the transformer is connected to a power supply, the microprocessor causes the transformer to be electrically connected to the charging circuit, and the battery is connected to the second charging circuit. An electric power is provided by the power supply and transformed by the transformer for charging the wireless earphone by way of the charging circuit, the first electric connector, and the second electric connector, and the battery is charged by way of the second charging circuit.
In some embodiments, the wireless earphone charging cradle further includes an amplifier. The amplifier is electrically connected to the audio output interface. When the microprocessor generates the connection signal and sends the connection signal to the wireless earphone, the audio signal received by the wireless transceiver is amplified and is output by the audio output interface.
In some embodiments, the audio output interface is a 3.5 mm audio port, a USB port, a mini USB port, a micro USB port, or a lightning port. Further, in some embodiments, the audio output interface is triggered by being inserted by an audio playing apparatus, after the wireless earphone is electrically connected to the audio output interface, the audio signal received by the wireless transceiver is output to the audio playing apparatus for playing.
In some embodiments, the audio output interface includes a trigger input device and a speaker. The audio output interface is triggered by pressing the trigger input device, and the trigger input device is electrically connected to the microprocessor. When being pressed, the trigger input device generates the sensing signal and sends the sensing signal to the microprocessor, the microprocessor causes the wireless earphone to be electrically connected to the speaker, and the audio signal received by the wireless transceiver is output to the speaker for playing.
In some embodiments, the wireless earphone charging cradle further includes a pulse modulation unit. The pulse modulation unit is electrically connected to the microprocessor and modulates the connection signal sent by the microprocessor in a pulse waveform.
In some embodiments, when the charging module is electrically connected to the wireless earphone, the wireless earphone generates an electricity signal to the microprocessor, the microprocessor determines, according to the electricity signal, whether charging of the wireless earphone is completed, and when determining that charging of the wireless earphone is completed, the microprocessor sends a stopping signal to the charging module and stops charging the wireless earphone.
The wireless earphone charging cradle can apply a wireless receiving and transmitting function of the wireless earphone, and an antenna or another wireless receiving and transmitting component(s) does not need to be additionally set at the charging cradle, to save costs and simplify design, and to achieve an effect of providing audio source output while charging the wireless earphone.
The present invention will become more fully understood from the detailed description given herein below for illustration only, and thus are not limitative of the present invention, and wherein:
Preferred implementations of the present invention are described below with reference to the accompanying drawings. A person of ordinary skill in the art should understand that these implementations are merely used to explain the technical principle of the present invention and are not intended to limit the protection scope of the present invention.
When the wireless earphone charging cradle 1 is connected to the wireless earphone 200, the charging module 10 charges the wireless earphone 200, for example, the charging module 10 outputs a voltage V to the wireless earphone 200 for charging. After receiving a triggered signal TRI, the audio output interface 20 generates a sensing signal SEN and sends the sensing signal SEN to the microprocessor 30. For example, the audio output interface 20 may be a 3.5 mm audio port. The triggered signal TRI may be generated by the insertion of an audio plug. The microprocessor 30 is electrically connected to the charging module 10 and the audio output interface 20. After receiving the sensing signal SEN, the microprocessor 30 generates a connection signal CON and transmits the connection signal CON to the wireless earphone 200 by using the charging module 10, so that an audio signal AUD received by a wireless transceiver 210 of the wireless earphone 200 is transmitted to the audio output interface 20 for output. Further detailed descriptions are provided below.
The electrical connection described in this disclosure may be a direct connection or indirect connection via a third component. In addition, the wireless transceiver 210 of the wireless earphone 200 may be a Bluetooth transceiver, a WiFi transceiver, a Zigbee transceiver, or the like. However, the foregoing transceivers are merely used for example, and the wireless transceiver 210 is not limited thereto. In this embodiment, the wireless earphone charging cradle 1 may receive and transmit the audio signal AUD by using the wireless transceiver 210 of the wireless earphone 200. There is no need to add a circuit and a component for receiving and transmitting the audio signal, and the audio signal AUD may be continuously received and transmitted when the wireless earphone 200 is charged.
It should be noted that as shown in
Referring to
In more detail, the audio signal AUD received by the wireless transceiver 210 and amplified by the amplifier 40 is output from the audio output interface 20 by way of the third electric connector 230, the second electric connector 220, the first electric connector 11, and the amplifier 40. Herein, when the audio output interface 20 is connected to a wired earphone and the wireless earphone charging cradle 1 charges the wireless earphone 200, the wired earphone may be used as an earphone speaker. In this way, a frequency response of the wired earphone in a particular frequency band, such as a low frequency band, can be provided, so that finer sound quality is provided.
Referring to
Referring to
As shown in
In the foregoing embodiments, the wireless earphone charging cradle 1 can apply a wireless receiving and transmitting function of the wireless earphone 200, and an antenna or another wireless receiving and transmitting component does not need to be additionally set in the charging cradle, so as to save costs and simplify design, and to achieve an effect of providing audio source output while charging the wireless earphone 200.
Although this application has been disclosed above in the embodiments, they are not intended to limit this application. A person of ordinary skill in the art can make various variations and modifications to this application without departing from the spirit and scope of this application. Therefore, the protection scope of this application is subject to the appended claims.
| Number | Date | Country | Kind |
|---|---|---|---|
| 201810397979.9 | Apr 2018 | CN | national |