The present invention relates to a microphone having an acoustic resonator (hereinafter simply referred to resonator) in front of a diaphragm, in order to adjust frequency response mainly at high frequencies.
As means for adjusting frequency response at high frequencies, a microphone is provided in which a resonator is disposed in front of a diaphragm. The resonator is provided with sound introduction holes for the diaphragm, and combination of shapes, opening sizes, the number and arrangements of the sound introduction holes allow to adjust frequency response characteristics at high frequencies.
The resonator is made of metal materials or plastics, and is often attached by screwing to a front opening of a microphone case; an example of the resonator is disclosed in Patent Literature 1: Japanese Unexamined Patent Application Publication No. 2010-103604.
In a microphone where a resonator is disposed in front of the diaphragm, it is proposed that additional disposing of a sheet of foamed urethane (sponge) as a filter in front of the resonator enables to reduce popping noise and wind noise and further to prevent dust and dirt intrusion to a microphone unit; this is disclosed, for example, in a Patent Literature 2: Japanese Unexamined Patent Application Publication No. H10 (1998)-336777. The Patent Literature 2 discloses that a sheet of foamed urethane is adhered to a front surface of the resonator (also referred to an equalizer).
The piece of the double-sided adhesive tape 3 is formed to be a ring shape and most part of the inner area is a circular opening 3c, as shown in
A microphone unit case 4 that accommodates a diaphragm (not shown) and a fixed electrode (not shown) being opposed to the back surface of the diaphragm is disposed right after the resonator 1e which is integrally formed with the microphone case 1.
The example shown in
The equivalently functional members are referred to the same reference numerals in
In the microphone shown in
A desired frequency response at high frequencies can be obtained by selecting a combination of a shape, opening size, number and arrangement of sound introduction holes 1f functioning as a resonator 1e. To respond to users' requirements, many kinds of resonators 1e are to be necessarily prepared, and many kinds of molds should accordingly be prepared, which may become a disadvantage that it takes time to produce various molds and it is inevitable to raise the cost.
The object of the invention is to provide a microphone including many kinds of resonators according to users' requirements easily and in a short time without preparing many kinds of molds and raising costs.
The microphone invented to overcome the above disadvantage is provided with a microphone case having an opening on a front side of the microphone case and accommodating a microphone unit inside the opening of the microphone case; a piece of a double-sided adhesive tape a back side of which is adhered over the opening of the microphone case; and a filter being adhered to a front side of the piece of the double-sided adhesive tape to cover the opening of the microphone case, wherein at least one sound introduction hole is formed on the piece of the double-sided adhesive tape for introducing sound waves to the microphone unit through the filter.
The piece of the double-sided adhesive tape functions as a resonator to adjust a frequency response at a specific frequency and is desirably provided with a plurality of sound introduction holes disposed at least in a circumferential direction. The filter functions to reduce a popping noise and a wind noise applied to the microphone unit.
According to the above configured microphone, a filter made of foamed urethane is adhered to cover the front opening of the microphone case with the piece of the double-sided adhesive tape. By forming sound introduction holes properly which introduces sound passed through the filter to the diaphragm, the piece of the double-sided adhesive tape can be made to have a function of a resonator capable of adjusting a frequency response at a specific frequency.
Thus, preparation of jigs or the like to form sound introduction holes on the piece of the double-sided adhesive tape enables to form a resonator having desired frequency response characteristics, and this enables to provide a microphone easily and in a short time having desired frequency response characteristics.
An embodiment of a microphone according to the present invention will be described with reference to drawings
The microphone case 1 has a circular opening 1a on a front side as shown in
A plurality of side openings 1c having a slit shape are formed on the circumferential surface of the microphone case 1, and a cylinder 5 made of mesh material is attached along the inside of the slit-shaped side openings 1c. The microphone of this embodiment configures a unidirectional condenser microphone and side openings 1c formed on the microphone case 1 comprise rear acoustic terminal holes.
The piece of the double-sided adhesive tape 3 has a plurality of sound introduction holes 3a shown in
The piece of the double-sided adhesive tape 3 having plurality of sound introduction holes 3a functions as a resonator. When the sound wave arriving through the filter 2, a sheet of urethane foam, for example, acts on the microphone unit in the unit case 4 to be described later, the frequency response characteristics mainly in the high frequency range can be adjusted with the resonator. These sound introduction holes 3a function as front acoustic terminal holes of the unidirectional condenser microphone.
The foamed urethane 2 as the filter attached to be disposed on the front surface of the double-sided adhesive tape 3 functions to reduce popping noises due to air current caused by plosive sound of speakers and wind noises due to wind blowing, and further to prevent dust invasion into the microphone unit.
A front mesh 6, a mesh member, is disposed on the ring-shaped edge surface 1b in the microphone case 1, and a unit holder 7 made of soft rubber material which supports the unit case 4 at the center is disposed behind the front mesh 6. A plurality of communication holes 7a in an axial direction is formed in the unit holder 7, surrounding the unit case 4; the communication holes 7a communicate a front and rear area of the unit case 4 through the front mesh 6 and function to adjust the acoustic characteristics.
The unit holder 7 supporting the unit case 4 is attached to the microphone case 1 with a metal supporting member 8 that is disposed on the inner circumferential surface.
The unit case 4 is made of metal material, such as aluminium, and in which a diaphragm is disposed in front side and a fixed electrode behind the diaphragm to constitute a microphone unit.
A clip terminal 9 connected to a lead-out electrode rod protruding from the center of the unit case 4 is connected with a lead wire 10 for signal and a ground terminal 4a formed on the back side of the unit case 4 is connected with a lead wire 11 for grounding.
Each of the lead wires 10 and 11 is led out through a center hole that is formed in a rear member 8a being integrally formed with the supporting member 8 and is fixed with an adhesive 13 filling the central hole.
The frequency characteristics shown in
When attention is focused on the result of characteristics A at 0 degrees with respect to the directional axis in
As described above, in a microphone according to the present invention, the piece of the double-sided adhesive tape 3 having sound introduction holes 3a properly formed functions as a resonator, as well as an adhesive for fixing a sheet of foamed urethane as a filter, which enables to remarkably reduce the cost as compared to the conventional preparation of resonator using a mold.
And this enables to provide a microphone easily and in a short time having desired frequency response characteristics.
Although explanations are made of an example of a condenser microphone, this invention is similarly applicable to other types of microphone including a dynamic microphone, for example and a similar effect would be obtainable.
Number | Date | Country | Kind |
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2017-041657 | Mar 2017 | JP | national |