The invention relates to the field of Micro-Electro-Mechanical systems, and more particularly, to a variable-directivity MEMS microphone.
A MEMS (Micro Electro Mechanical System) microphone can be split into two types, namely, an omnidirectional microphone and a unidirectional microphone. In some directivity applications, the unidirectional microphone picks up sound from a specific direction, and it is sufficient for use. However, in more applications, the directivity of the microphone is required to be varied. In the prior art, a plurality of microphones are provided for achieving the switching of directivity. As a result, costs for devices and volume of an electronic device are increased.
Given that the foregoing problems exist in the prior art, the present invention provides a variable-directivity MEMS microphone which is capable of providing an output signal of different directivities.
A variable-directivity MEMS microphone, comprising an acoustic cavity, wherein the following components are provided inside the acoustic cavity:
In the variable-directivity MEMS microphone of the present invention, wherein the signal processing chip comprises:
In the variable-directivity MEMS microphone of the present invention, the phase delayer comprises:
In the variable-directivity MEMS microphone of the present invention, the adder-subtractor performs an addition operation or a subtraction operation on the first electric signal or the phase-delayed second electric signal in a controlled manner.
The variable-directivity MEMS microphone of the present invention comprises a substrate and a cover covering the substrate, wherein the substrate and the cover forms the acoustic cavity.
In the variable-directivity MEMS microphone of the present invention, the first acoustic transducer, the first pre-amplifer, the second acoustic transducer, the second pre-amplifer and the signal processing chip are arranged on the substrate, and the substrate is provided with a first acoustic through-hole and a second acoustic through-hole.
In the variable-directivity MEMS microphone of the present invention, the first acoustic transducer and the first pre-amplifer are provided on the cover, the second acoustic transducer and the second pre-amplifer are provided on the substrate, the signal processing chip is optionally provided on the substrate or the cover, and an acoustic through-hole is formed in the substrate and the cover, respectively.
In the variable-directivity MEMS microphone of the present invention, the directional output signal is an omnidirectional output signal or a splayed directional output signal or a cardioid directional output signal.
The invention further provides an electronic device comprising the variable-directivity MEMS microphone as described above, wherein the electronic device is provided with a control switch for providing the switching control signal.
In the electronic device, the control switch comprises an omnidirectional selector switch, a splayed selector switch, and a cardioid selector switch.
By adopting the above-mentioned technical solutions, the present invention has the beneficial effects that a variable-directivity MEMS microphone is provided in the present invention, a directional output signal is generated by processing of electric signals by a signal processing chip. In this way, a microphone can switchablely provide an output signal with different directivities, so that the volume of a whole structure can be decreased, and reliability can be improved.
The accompanying drawings, together with the specification, illustrate exemplary embodiments of the present disclosure, and, together with the description, serve to explain the principles of the present invention.
The technical solution set forth in the embodiments of the present invention will now be described clearly and fully hereinafter with reference to the accompanying drawings of the embodiments of the present invention. Obviously, such embodiments provided in the present invention are only part of the embodiments instead of all embodiments. It should be understood that all the other embodiments obtained from the embodiments set forth in the present invention by one skilled in the art without any creative work fall within the scope of the present invention.
Notably, the embodiments set forth in the present invention and features of the embodiments may be combined in any suitable manner.
The present invention will be described hereinafter with reference to the accompanying drawings and particular embodiments, but the invention is not limited thereto.
With reference to
The variable-directivity MEMS microphone provided in the present invention generates the directional output signal by processing the electric signals through the signal processing chip. Of note, in the prior art, a directional microphone is arranged to generate the directional output signal. After comparison of those two types of working principles, the microphone provided in the present invention is capable of providing an output signal with different directivities, so that the volume of a whole structure can be decreased, and reliability can be improved.
In the variable-directivity MEMS microphone of the present invention, wherein the signal processing chip 15 comprises:
In the variable-directivity MEMS microphone of the present invention, as shown in
The phase delayer T can achieve a delay of a predetermined phase, and the resistors are regulating resistors.
In the variable-directivity MEMS microphone of the present invention, the adder-subtractor Σ performs an addition operation or a subtraction operation on the first electric signal or the phase-delayed second electric signal in a controlled manner. The adder-subtractor Σ may select to directly output the first electric signal MIC1 as an omnidirectional output signal, or it may select to perform addition operation and subtraction operations on the first electric signal MIC1 or the phase-delayed second electric signal MIC2 to obtain a splayed directional output signal shown in
The variable-directivity MEMS microphone of the present invention comprises a substrate 1 and a cover 3 covering the substrate 2, wherein the substrate 2 and the cover 3 form the acoustic cavity 1, as shown in
In the variable-directivity MEMS microphone of the present invention, a particular embodiment is shown in
In another particular embodiment, as shown in
A variable-directivity MEMS microphone is provided in the present invention, a directional output signal is generated by processing of electric signals by a signal processing chip. In this way, a microphone can switchablely provide an output signal with different directivities, so that the volume of a whole structure can be decreased, and reliability can be improved.
The invention further provides an electronic device comprising the variable-directivity MEMS microphone as described above, wherein the electronic device is provided with a control switch for switching the control signal.
In the electronic device, the control switch comprises an omnidirectional selector switch, a splayed selector switch, and a cardioid selector switch.
The electronic device according to the present invention uses the above-mentioned variable-directivity MEMS microphone. In this way, one microphone is sufficient for switchablely outputting output signals with different directivities. It eliminates the need for an electronic device to arrange a plurality of microphones thereon, so that costs and its volume are substantially reduced.
Exemplary embodiments of specific structures for implementations are illustrated with reference to the description and the accompanying drawings. Other conversions can be made based on the spirits of the invention. The above descriptions are only the preferred embodiments of the invention, not thus limiting the embodiments and scope of the invention.
For those skilled in the art, all variations and modifications are obvious from the above description. Thus, the appended claims are to be construed as all the variations and modifications covering all the true intentions and scope of the invention. Any and all the equivalent scope and contents fall within the spirit and scope of the invention.
Number | Date | Country | Kind |
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202110883196.3 | Aug 2021 | CN | national |