1. Field of the Invention
Exemplary embodiments of the present invention relates to a portable acoustic camera for using MEMS microphones and method of manufacturing the same.
2. Description of Related Art
An acoustic camera is an ultramodern measurement apparatus for visualizing sound, and a new technology device which is necessary in various fields such as multimedia information devices, household electrical appliances, automobiles, construction, etc. The applicant of the present invention, SM instruments Inc. and the KAIST are the one that have leading technologies in the acoustic camera for using the existing measurement microphone and have made common products.
Korean Registration patent number No. 10-051120 of ‘Korean Advanced Institute of Science and Technology’ is a method of separating sound filed of the separate sound source by using acoustic holograph, as a method of separating sound field of sound source for using acoustic holography, comprises a first step for measuring sound pressure at several points on hologram and for obtaining hologram spectrum matrix which comprises self spectrum of sound pressure at each point and mutual spectrum between other points; a second step of applying the hologram surface spectrum matrix to the acoustic holography method and calculating a sound source surface spectrum matrix which comprises a self spectrum of sound pressure value at each point and a mutual spectrum between other points; a third step of determining as a position of sound source a position where the self spectrum of sound pressure value is a maximum in the sound source surface spectrum matrix, and calculating contribution amount of the determined sound source, and a fourth step of renewing, if there is a remaining spectrum matrix which is a subtract of contribution amount of the determined sound source from the sound source surface spectrum matrix, the remaining spectrum matrix to a new sound source surface spectrum matrix and repeating its performance from the third step.
An object of the present invention is to provide a sound source searching sensor for improving greatly the existing acoustic camera by using MEMS microphones, and for improving manufacture period and costs by making MEMS microphones in the type of print circuit board.
In addition, an object of the present invention is to provide a portable sound source searching sensor for improving removal of reflection wave by blocking front/rear sound, and producing a new market with the acoustic camera of becoming a popular measurement apparatus. Another object is to provide a portable sound source searching sensor which is easy to use and mounting and easy to moving and fixing.
In addition, the present invention is to provide a portable sound source searching sensor further comprising a handle, without a fixing means, wherein the positioning can be made when a user holds the camera in any place or puts it on any table.
To obtain the above objects, the portable acoustic camera of the present invention comprises a front body 10 in which acoustic sensors of MEMS microphones 20 are arranged to face forward; MEMS microphones 20 of which acoustic sensors are exposed to the front body 10 in a fixed state to the substrate 30; a substrate 30 on which the microphones 20 are mounted; an image photographing unit 40 of which a photographing lens 41 is exposed through a lens hole of the front body 10; and a rear body 50 for surrounding a rear side of the substrate 30 and a rear side of the image photographing unit in a state that the substrate 30 is positioned at a rear side of the front body 10.
a and 2b are front views of the portable sound source searching sensor of the embodiment of the present invention.
a and 6b are front and rear views of the front body for describing the method of manufacturing the portable sound source searching sensor of the embodiment of the present invention.
a and 7b are front and rear views of the rear body for describing the method of manufacturing the portable sound source searching sensor of the embodiment of the present invention.
a and 8b are views of a rear inner plate for describing the method of manufacturing the portable sound source searching sensor of the embodiment of the present invention.
The portable acoustic camera of the present invention comprises a front body 10 in which acoustic sensors of MEMS microphones 20 are arranged to face forward; MEMS microphones 20 of which acoustic sensors are exposed to the front body 10 in a fixed state to the substrate 30; a substrate 30 on which the microphones 20 are mounted; an image photographing unit 40 of which a photographing lens 41 is exposed through a lens hole of the front body 10; and a rear body 50 for surrounding a rear side of the substrate and a rear side of the image photographing unit in a state that the substrate 30 is positioned at a rear side of the front body 10.
Hereinafter, a portable sound source searching sensor according to an embodiment of the present invention will be described in detail with reference to the accompanying drawings.
The term “exposition” in this invention does not mean projection, and it means existence of electric or physical passage through which air, sound, wave or light can move in. In this invention, the MEMS microphone is made by changing the existing microphone in a form of electronic chip in order to be used in mobile phones, etc., The term “MEMS microphone” may include all the general MEMS microphones, for example the capacitor type silicon MEMS microphone and the capacitive microphone, which is used in this invention. As the mobile phone technology develops, it has a great performance for the present, which is second to the microphone for measurement.
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In the portable sound source searching sensor according to the embodiment of the present invention, the MEMS microphones 20 has 2-30 branches W which extend radially on the straight or in a spiral shape, and the 2-50 MEMS microphones 20 may be arranged in the branch W.
The portable sound source searching sensor according to the embodiment of the present invention, as shown in figures, preferably further comprises handle 60 which is projected backward in a fixed state to an edge of the front body 10 or the rear body 50. The handle 60 preferably comprises a pair of left and right handle 61,65 which are formed symmetrically.
In the portable sound source searching sensor of the embodiment of the present invention, as shown in figures, the left, right handle 61,65 preferably comprises a first, second upper lengthwise bar 61a,65a of which upper ends are fixed to the rear body 50 and lower ends are coupled to rear ends of the first, second lower crosswise bar 61a, 65a; and the first, second lower crosswise bar 61b, 65b of which front ends are fixed to the rear body 50 and the rear ends are coupled to the lower ends of the first, second upper lengthwise bar 61a, 65a.
In the portable sound source searching sensor of the embodiment of the present invention, as shown in figures, a point A of a lower outline of the front body 10 or the rear body 50, or a lower outline, a lower support point B of the left handle 61 and a lower support point C of the right handle 65 form a plane so that an acoustic camera can be supported by a structure on a plane.
The acoustic camera of the embodiment of the present invention, as shown in figures, further comprises a central handle 67 which extends upward and downward between the left, right handle 61, 65. As shown in
In the acoustic camera of the embodiment of the present invention, as shown in figures, the front body 10 and the rear body 50 are made by plastic injection, and the left, right handle 61,65 and the central handle 67 are assembled to the rear body 50 by a coupling means. The front body 10 includes a front plate 11 which forms a plane, and the front plate 11 and the substrate 30 are preferably arranged parallel.
In the acoustic camera of the embodiment of the present invention, as shown in figures, the photographing lens 41 is exposed through a lens hole 15 which is formed in a central deep part of the front plate 11. The acoustic sensors of the MEMS microphones 20 are preferably exposed through the plural of sensing holes 13 which are formed in the front plate 11.
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Subsequently, in an assembling step S50, the front body 10 and the rear body 50 are coupled by a coupling means, and the front body 10, the substrate 30 and the rear body 50 are integrated.
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The method of manufacturing the portable sound source searching sensor of the embodiment further comprises a step of mounting a handle 60 which is projected backward of the rear body 50, wherein the handle 60 is assembled from the start to a rear of the rear body 50 in the preparation step S10, or the handle 60 is coupled to edge of the front body 10 or a rear side of the rear body 50 after the assembling step S50.
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As describing above, the present invention provides a sound source searching sensor for improving greatly the existing acoustic camera by MEMS microphones, and for improving manufacture period and costs by making MEMS microphones in the type of print circuit board. In addition, the present invention provides a portable sound source searching sensor for improving removal of reflection wave by blocking front/rear sound, and producing a new market with the acoustic camera of becoming a popular measurement apparatus. In addition, the present invention provides a portable sound source searching sensor which is easy to use and mounting and easy to moving and fixing. In addition, the present invention provides a portable sound source searching sensor comprising a handle, without a fixing means, wherein the positioning can be made when a user holds the camera in any place or put on any table.
While the present invention has been described with respect to the specific embodiments, it will be apparent to those skilled in the art that various changes and modifications may be made without departing from the spirit and scope of the invention as defined in the following claims.
Reference numbers in following claims is only for helping understanding of the invention, and the reference numbers does not affect interpretation of scope of claims, and claim scope should not be interpreted in a narrow sense by the reference numbers.
Number | Date | Country | Kind |
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10-2013-0071285 | Jun 2013 | KR | national |
Filing Document | Filing Date | Country | Kind |
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PCT/KR2013/007874 | 9/2/2013 | WO | 00 |