This non-provisional application claims priority under 35 U.S.C. ยง119(a) on Patent Application No. 104204732 filed in Taiwan, R.O.C. on 2015 Mar. 27, the entire contents of which are hereby incorporated by reference.
1. Technical Field
The instant disclosure relates to the earphone audio field, and in particular, to an earphone capable of changing a range by switching frequency responses.
2. Related Art
In the market, most earphones for consumer electronic products such as mobile phones, tablet computers, and MP3 players are of the moving-coil type. A moving-coil earphone usually includes a vibrating diaphragm, a voice coil and a permanent magnet. The voice coil is located in the permanent magnet. When the voice coil is driven by an electric current, a magnetic field is generated to interact with a magnetic force of the permanent magnet to drive the vibrating diaphragm to vibrate. An audio signal is transmitted to the voice coil through a connection line and is converted into a sound wave to be outputted.
Considering the general purpose and the cost, a moving-coil earphone with a single vibrating diaphragm is usually adopted. The general purpose earphone has an advantage of a wider frequency band but has a common disadvantage of a poor resolution effect for mid- and high-pitch frequencies. It can be seen from spectral analysis that, a response in a high pitch region is poor so that the location and space sense of the sound and the response cannot be clearly resolved. Although such earphones are generic, users have different preferences of using earphones. For example, someone is accustomed to using the earphone to listen classical music, while someone is accustomed to using the earphone to play games in a mobile phone or a tablet computer. Thus, there is a need for an earphone capable of satisfying various requirements.
The objective of the instant disclosure is to provide a range switching earphone. According to one embodiment, the range switching earphone comprises an earphone housing, a low frequency speaker, a high frequency speaker, a circuit adaptation module, and a control unit. The low frequency speaker and the high frequency speaker are both disposed in the earphone housing. The circuit adaptation module is electrically connected to the low frequency speaker and the high frequency speaker. The control unit is connected to the circuit adaptation module for controlling turn-on or turn-off of the high frequency speaker.
In an embodiment, the circuit adaptation module includes a switch unit and a signal receiving unit. The signal receiving unit is electrically connected to the switch unit and the control unit. The control unit is capable of being activated to generate a switching signal. The signal receiving unit receives the switching signal and controls turn-on or turn-off of the switch unit, to switch a connection of the circuit adaptation module and the high frequency speaker between an open circuit and a closed circuit. In this manner, the turn-on or turn-off of the switch unit is controlled by an electrical signal.
In an embodiment, the circuit adaptation module includes a switch unit The switch unit is connected to the control unit. The control unit controls turn-on or turn-off of the switch unit, to switch a connection of the circuit adaptation module and the high frequency speaker between an open circuit and a closed circuit. In this manner, the turn-on or turn-off of the switch unit is controlled mechanically.
In an embodiment, the control unit is disposed on a control bar. The control bar is disposed on a connection line and the connection line is further connected to the circuit adaptation module. In another embodiment, the control unit is disposed on the earphone housing.
Another objective of the instant disclosure is to provide a range switching earphone. In one embodiment, the range switching earphone comprises an earphone housing, a low frequency speaker, a high frequency speaker, a circuit adaptation module, and a control unit. The low frequency speaker and the high frequency speaker are both disposed in the earphone housing. The circuit adaptation module is electrically connected to the low frequency speaker and the high frequency speaker, and the circuit adaptation module includes a filtering unit. The filtering unit has a filtering mode and a non-filtering mode. The control unit is connected to the filtering unit for selectively controlling the filtering unit to be in the filtering mode or the non-filtering mode.
In an embodiment, the control unit is electrically connected to the filtering unit through a signal control unit and controls the filtering unit to be in the filtering mode or the non-filtering mode through an electrical signal. In another embodiment, the control unit is connected to the filtering unit and mechanically controls the filtering unit to be in the filtering mode or the non-filtering mode.
The objective of the range switching earphone of the embodiment is to provide a user with switching selection, for controlling turn-on or turn-off of the high frequency speaker or controlling the filtering unit to be in the filtering mode or the non-filtering mode, thereby adjusting the frequency range or range extent. Therefore, different frequency response can be achieved with the same earphone, thereby satisfying requirements or tastes of users for listening music of different styles or in different circumstances. Therefore, classical music lovers who desire to have a good effect of full-voice-frequency resolution and game players who desire to have improved immersed sense through low frequencies can all be satisfied by the range switching earphone of the present invention.
Referring to
As shown in the embodiment in
The high frequency speaker 30 and the low frequency speaker 40 are both disposed in the earphone housing 10 and electrically connected to the circuit adaptation module 50. In this embodiment, the high frequency speaker 30 and the low frequency speaker 40 may be disposed in the accommodation space between the first housing 11 and the second housing 13 by a holder 20. The holder 20 may be connected to the first housing 11 or the second housing 13 in a manner that an outer wall of the holder 20 is engaged with the first housing 11 or the second housing 13, a tenon on the first housing 11 or the second housing 13 is used for engaging, or a thread of the holder 20 is screwed with a thread of the first housing 11 or the second housing 13. The above description is only intended for exemplary illustration but not for limitation.
The low frequency speaker 40 is connected to a first side 21 of the holder 20 and electrically connected to the circuit adaptation module 50. When the circuit adaptation module 50 is driven by an electrical signal, the low frequency speaker 40 is actuated to vibrate to generate a sound wave. The low frequency speaker 40 is a moving-coil loudspeaker or a moving-iron loudspeaker. The high frequency speaker 30 is connected to a second side 23 of the holder 20, where the second side 23 is opposite to the first side 21 and faces the first housing 11. The high frequency speaker 30 is electrically connected to the circuit adaptation module 50. When the circuit adaptation module 50 is driven by an electrical signal, the high frequency speaker 30 is actuated to vibrate to generate a sound wave. Further, the high frequency speaker 30 is connected to the second side 23 of the holder 20 through an adhesive sheet 80.
Generally, the high frequency speaker 30 may be implemented as a piezoelectric ceramic loudspeaker. As shown in
The circuit adaptation module 50 is electrically connected to the low frequency speaker 40, the high frequency speaker 30 and a connection line L, and after receiving an audio signal from an external connection, converts the audio signal into an electrical signal to actuate the low frequency speaker 40 and the high frequency speaker 30. Further, the connection line L may be fixed by passing through an opening 131 of the second housing 13.
The control unit 60 of the range switching earphone 1 according to the first embodiment of the instant disclosure is disposed on a control bar 70. The control bar 70 is disposed on the connection line L and the connection line L is further electrically connected to the circuit adaptation module 50. In this embodiment, the control unit 60 is implemented as a push switch. When the control unit is pushed, a closed or open circuit between the circuit adaptation module 50 and the high frequency speaker 30 is controlled, to control turn-on or turn-off of the high frequency speaker 30. Further, the control unit 60 may also be implemented as a step/stepless push switch, a micro switch, a dip switch, a slide switch, or a touch switch. The above description is only intended for exemplification but not for limitation.
Referring to
Referring to
As shown in
As shown in
As shown in
As shown in
The objective of the instant disclosure is to provide a user with switching selection, for controlling turn-on or turn-off of the high frequency speaker or controlling the filtering unit to be in the filtering mode or the non-filtering mode, thereby adjusting the frequency range. Therefore, different frequency response can be achieved with the same earphone, thereby satisfying requirements or tastes of users for listening music of different styles or in different circumstances.
The preferred embodiments of the instant disclosure are disclosed above, and are not intended to limit the instant disclosure. Any persons skilled in the art can make some changes or modifications without departing from the spirit and scope of the instant disclosure. Therefore, the scope of the instant disclosure should be subject to the claims attached to the specification.
| Number | Date | Country | Kind |
|---|---|---|---|
| 104204732 | Mar 2015 | TW | national |