This application claims the benefit of priority of Taiwan Patent Application No. 103203630, filed on Mar. 4, 2014, which is hereby incorporated by reference herein in its entirety.
The present invention relates to a microphone, and more particularly, a microphone with a wireless module and/or a laser module for providing an additional function.
During lectures, a lecturer often uses a microphone to transmit his or her voice over a long distance or to a specific space via a speaker. In addition to the microphone, the lecturer may also use slides to present the lecture contents. In this case, the lecturer must further hold a laser pen to bring attention to the specified part of the projector image or a wireless controller to operate a device that toggles between the slides. Additionally, when the lecturer desires to record the lecture contents, he or she must further prepare a record pen to record and store the lecture contents.
However, using two or more separate devices (e.g., the microphone, the wireless control device, the laser pen and the record pen) at the same time is very inconvenient for the lecturer. Accordingly, it is important to provide an integrated device that has the functions of a microphone, a wireless controller and/or the laser pen and/or the record pen to reduce the number of devices that must be held by the user.
An objective of the present invention includes provide a microphone which has the functions of both a microphone and a wireless controller to reduce the number of separate devices that must be operated at the same time by the user.
To achieve the aforesaid objective, the present disclosure provides a microphone. The microphone comprises a housing, a plurality of operation buttons, a sound receiver module, a control module, a first wireless module and a second wireless module. The plurality of operation buttons is disposed on an outer surface of the housing. The sound receiver module is disposed on the housing and configured to sense a sound wave and generate a sensing signal. The control module is disposed in the housing and electrically connected to the sound receiver module and the operation buttons, and is configured to receive the sensing signal to generate an audio frequency signal and generate a control signal according to an operation on each of the operation buttons. The first wireless module is disposed in the housing and electrically connected to the control module, and is configured to transmit the audio frequency signal to a first peripheral device. The second wireless module is disposed in the housing and electrically connected to the control module, and is configured to transmit the control signal to a second peripheral device.
Additionally, another objective of certain embodiments of the invention includes providing a microphone, which has the functions of both a microphone and a laser pen to reduce the number of separate devices when a user must operate more than two separate devices at the same time.
A microphone in certain embodiments comprises a housing, a trigger button, a laser module, a sound receiver module, a control module and a first wireless module. The trigger button is disposed on an outer surface of the housing. The laser module is disposed on the housing, and is configured to generate and project a laser beam when the trigger button is pressed. The sound receiver module is disposed on the housing and is configured to sense a sound wave and generate a sensing signal. The control module is disposed in the housing and electrically connected to the sound receiver module, and is configured to receive the sensing signal to generate an audio frequency signal. The first wireless module is disposed in the housing and electrically connected to the control module and is configured to transmit the audio frequency signal to a first peripheral device.
The detailed technology and preferred embodiments implemented for the subject invention are described in the following paragraphs accompanying the appended drawings for people skilled in this field to well appreciate the features of the claimed invention.
In the following description, the present invention will be explained with reference to example embodiments thereof. However, these example embodiments are not intended to limit the present invention to any specific examples, embodiments, environment, applications or particular implementations described in these example embodiments. Therefore, the description of these example embodiments is only for the purpose of illustration rather than limitation, and the scope of the present invention shall be governed by the claims.
In the following embodiments and the attached drawings, elements unrelated to the present invention are omitted from depiction; and dimensional relationships among individual elements in the attached drawings are illustrated only for ease of understanding, but not to limit the actual scale.
The first embodiment of the present invention is as shown in
The control module 107, the first wireless module 109 and the second wireless module 111 are disposed in the inner receiving space of the housing 101. The control module 107 is electrically connected to the operation buttons 103 and the sound receiver module 105. The control module 107 receives the sensing signal 102 to generate an audio frequency signal 104. Furthermore, the control module 107 generates a control signal 106 according to an operation on the operation button 103a or the operation button 103b. In this embodiment, the operation button 103a and the operation button 103b are designed to allow the user to toggle up to the previous slide or toggle down to the next slide.
The first wireless module 109 and the second wireless module 111 are electrically connected to the control module 107 respectively. The control module 107 enables the first wireless module 109 to transmit the audio frequency signal 104 to the first peripheral device to achieve a loudspeaker effect. For example, the first peripheral device may be an audio & video (AV) receiving device, a personal computer (PC), or any other device that can be wirelessly connected with the first wireless module 109 of the microphone 1. The first peripheral device may have a loudspeaker element or be connected to a loudspeaker device to output a sound corresponding to the audio frequency signal 104. The first wireless module 109 may be an element that conforms to one of the following standards: a 2.4 GHz industrial, scientific and medical band standard, a wireless fidelity (Wi-Fi) standard, a Bluetooth system standard, an infrared ray system standard or wireless systems of other frequencies. The first wireless module 109 may be used with a dongle.
Additionally, after the control signal 106 is generated, the control module 107 further enables the second wireless module 111 to transmit the control signal 106 to the second peripheral device. The second peripheral device may be a PC, a tablet computer, a multimedia player, or any other device that has a function of outputting a file including image data (e.g., a slide) and that can be wirelessly connected with the second wireless module 111 of the microphone 1. Likewise, the second wireless module 111 may also be an element that conforms to one of the following standards: a 2.4 GHz industrial, scientific and medical band standard, a wireless fidelity (Wi-Fi) standard, a Bluetooth system standard, an infrared ray system standard or wireless systems of other frequencies. The second wireless module 111 can be used with a dongle.
Specifically,
In other embodiments, the laser module 303 may also be a detachable device as shown in
The third embodiment of the present invention is as shown in
It should be appreciated that for simplicity of the description, only two operation buttons 103a and 103b are illustrated in the above embodiments; however, the microphone of the present invention may have more than two operation buttons or have other elements similar to the operation buttons (e.g., rollers), and positions of the operation buttons may vary depending on the personal habit of the user, so the scope of the present invention is not limited to the specific number or the specific positions of the operation buttons. For example, the microphone of the present invention may further comprise an operation button for adjusting the microphone volume so that the control module 107 can adjust the gain of the audio frequency signal 104 according to the operation of the operation button. Implementations in which the microphone of the present invention has more than two operation buttons or have other elements similar to the operation buttons can be readily appreciated by people of ordinary skill in the art according to the above embodiments, so this will not be further detailed herein.
Additionally, in another embodiment, the microphone 8 may further have a play button 405, which is disposed on the outer surface of the housing 101 of the microphone 8 and is also electrically connected to the control module 107. When the user wants to play the stored audio file, he or she may press the play button 405; and then the control module 107 reads the audio file and generates a record signal 402 according to the operation on the play button 405, and enables the first wireless module 109 to transmit the record signal 402 to the first peripheral device for playing by the first peripheral device.
Furthermore, the microphone 8 in another embodiment may further have a display panel 407, which is also disposed on the outer surface of the housing 101 of the microphone 8 and is electrically connected to the control module 107. The display panel 407 may display a piece of record time information, a piece of battery information and a piece of volume information and various related information, so it can allow the user to know the usage state of the microphone 8 better. Additionally, the display panel 407 in another embodiment may be a touch panel, and functions of the record button 403 and the play button 405 may be integrated into the display panel to achieve functions such as recording and playing through touching.
The fifth embodiment of the present invention is as shown in
The sixth embodiment of the present invention is as shown in
According to the above descriptions, unlike the conventional microphone, the microphone of the present invention further provides the wireless control, laser projection and record pen functions, so in addition to achieving the loudspeaker effect through the microphone, the user can also control the peripheral devices (e.g., to control the toggling between the slides of the projection screen), project the laser beam and record the lecture contents at the same time. In this way, the microphone of the present invention can provide the user with a more convenient operation mode to reduce the number of separate devices when the user must operate more than two separate devices at the same time.
The above disclosure is related to the detailed technical contents and inventive features thereof. People skilled in this field may proceed with a variety of modifications and replacements based on the disclosures and suggestions of the invention as described without departing from the characteristics thereof. Nevertheless, although such modifications and replacements are not fully disclosed in the above descriptions, they have substantially been covered in the following claims as appended.
Number | Date | Country | Kind |
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103203630 | Mar 2014 | TW | national |