Method and device for switching working mode of bone conduction headset and bone conduction headset
A technology of bone conduction earphones and working modes, which is applied in the direction of earphone mechanical/electronic switches, earpieces/earphone accessories, electrical components, etc., and can solve the problem of inaudible sound by the human ear
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Embodiment 1
[0038] figure 1 The implementation flow of the method for switching the working mode of the bone conduction earphone provided by Embodiment 1 of the present invention is shown, and the details are as follows:
[0039] In step S101, it is detected whether the bone conduction earphone is in good contact with the human body.
[0040] In the embodiment of the present invention, whether the bone conduction earphone is in good contact with the human body can be detected by a heart rate sensor, a temperature sensor or a capacitance sensor installed in the bone conduction earphone.
[0041] Among them, the heart rate sensor, temperature sensor or capacitive sensor can be installed at the position where the bone conduction earphone is in contact with the human body, that is, the position where the sound of the bone conduction earphone is emitted.
[0042] Specifically, whether the bone conduction earphone is in good contact with the human body can be judged according to whether the he...
Embodiment 2
[0055] figure 2A specific structural block diagram of the device for switching the working mode of the bone conduction earphone provided by Embodiment 2 of the present invention is shown. For the convenience of description, only the parts related to the embodiment of the present invention are shown. The switching device for the working mode of the bone conduction earphone can be a software unit, a hardware unit, or a combination of software and hardware built in the bone conduction earphone. The switching device 2 for the working mode of the bone conduction earphone includes: a contact detection module 21 and a first switch Module 22.
[0056] Wherein, the contact detection module 21 is used to detect whether the bone conduction earphone is in good contact with the human body;
[0057] The first switching module 22 is used for switching the working mode of the bone conduction earphone from the bone conduction mode to the normal earphone mode or pausing the currently playing ...
Embodiment 3
[0069] image 3 A specific structural block diagram of the bone conduction earphone provided by Embodiment 2 of the present invention is shown, and for convenience of description, only parts related to the embodiment of the present invention are shown. The bone conduction earphone 3 includes the bone conduction earphone working mode switching device 2 described in the second embodiment, and the bone conduction earphone working mode switching device 2 includes: a contact detection module 21 and a first switching module 22 .
[0070] Wherein, the contact detection module 21 is used to detect whether the bone conduction earphone is in good contact with the human body;
[0071] The first switching module 22 is used for switching the working mode of the bone conduction earphone from the bone conduction mode to the normal earphone mode or pausing the currently playing program when the bone conduction earphone is in poor contact with the human body.
[0072] Preferably, the device 2...
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