1. Field of the Invention
The present invention relates to a sound mixing equipment, more particularly a sound mixing equipment, which is provided with a manually activated control constructed such that it is not subject to wear that is prone to occur on conventional manually activated controls having variable resistors.
2. Brief Description of the Prior Art
In order to help increase hot and exciting atmosphere in a concert or a party such as is held in a PUB or a dancing hall, the DJ would produce special sound effects by mixing input sound signals into output sound signals with a sound mixing equipment which includes separate manually activated controls for each sound input signal. The sound input signals may include signals from several musical instruments and voices. The sound output signals may be provided to speakers.
Referring to
In using the sound mixing equipment, referring to
However, this sound mixing equipment is found to have a disadvantage that the variable resistors are subject to oxidation at contacts. And, wear and loss of elasticity are prone to occur on the variable resistors because the adjustable conducting legs of the variable resistors are moved relative the other portions frequently in operating the sound mixing equipment. Consequently, the electrical contact becomes loose.
It is a main object of the present invention to provide a sound mixing equipment, which has a manually operated control constructed such that it is not subject to wear and oxidation like conventional ones.
The present sound mixing equipment has an adjusting circuit, and a control having reflecting plates joined thereto in opposite directions. The adjusting circuit has a first light emitting diode and a first light transistor disposed to face one of the reflecting plates, and a second light emitting diode and a second light transistor disposed to face the other reflecting plate. By means of shifting the control, the light transistors receive infrared rays reflected by the plates at adjusted distance to have desired amount of electrical currents so that sound signals of the channels can be mixed with adjusted proportion. Therefore, the present control takes the place of conventional variable resistors subject to wear and oxidation at contacts.
The present invention will be better understood by reference to the accompanying drawings, wherein:
Referring to
The adjusting circuit 1 includes two light emitting diodes 11, and 12, and two light transistors 13, and 14. The light emitting diode 11 and the light transistor 13 are disposed on one inner side of a housing, and the light emitting diode 12 and the light transistor 14 are disposed on an opposite inner side of the housing. The light emitting diodes 11, and 12 are connected in parallel to variable resistors 111, and 121 respectively.
A manually operated control 15 is movably fitted to the housing. Reflecting plates 151 are joined to the manually operated control 15 so that they are disposed in the housing, and face the light emitting diodes 11, 12, and the light transistors 13, 14. The light emitting diodes 11, 12 emit light, and the light is reflected to the light transistors 13, and 14 by means of the reflecting plates 151. By means of moving the control 15 to change position of the reflecting plates 151, distance from the light emitting diodes 11, 12 to the reflecting plates 151 is changed; thus, distance is adjusted that light have to travel from the light emitting diodes to the corresponding light transistors. The light transistors will sense increased intensity of light, and therefore have more electrical currents when the light reflecting plates 151 are moved closer to it, and vice versa.
Input terminal of the buffer 2 is connected to output terminal of the adjusting circuit 1, while input terminal of the buffer 2′ is connected to output terminal of the adjusting circuit 1. Output terminal of the buffer 2, and a right channel and a left channel of a first channel are connected to input terminals of the voltage control amplifier 3. Output terminal of the buffer 2′, and a right channel and a left channel of a second channel are connected to input terminals of the voltage control amplifier 3′. The first channel, and the second channel are further connected to musical instruments or record players.
Input terminals of the amplifiers 4, 4 are connected to output terminals of the voltage control amplifiers 3, 3. Mixed sound signals are sent out through the amplifiers 3, 3.
In using the sound mixing equipment of the present invention, the variable resistors 111, 121 are adjusted so that the light emitting diodes 11, 12 can emit infrared rays of desired brightness when activated. The light emitting diodes 11, 12 are activated to emit infrared rays, which are then reflected to the corresponding light transistors 13, 14 by the reflecting plates 151. The manually operated control 15 is moved relative to the housing so that the light transistors 13, 14 each receives changing intensity of infrared rays from the corresponding light emitting diodes 11, 12; as can be easily seen, the bigger the intensity of light one of the light transistors is receiving, the smaller the intensity of light the other light transistor will receive. The light transistors will have more electrical currents when the control 15 is moved closer to it. Thus, sound output of the amplifiers 4, 4 is made to include sound signals of the first and the second channels of desired proportions by means of the adjusting circuit 1.
From the above description, it can be easily understood that the present sound mixing equipment has a manually operated control not subject to wear like the conventional one having variable resistors as described in the background. Therefore, the present sound mixing equipment has relatively long service life as compared with the conventional one.
Number | Name | Date | Kind |
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4051365 | Fukuyama et al. | Sep 1977 | A |
4573110 | Drumm | Feb 1986 | A |
4833318 | Yonekura et al. | May 1989 | A |
4888532 | Josson | Dec 1989 | A |
5719570 | Breitbarth | Feb 1998 | A |
Number | Date | Country | |
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20040022402 A1 | Feb 2004 | US |