6 Input Mixer Schematic

6 Input Mixer Schematic




A simple mixer with 3 line inputs and 3 mic inputs using commonly available parts.



Notes:
The mixer circuit above has 3 line inputs and 3 mic inputs. The mic inputs are suitable for low impedance 200 to1000R dynamic microphones. An ECM or condenser mic can also be used, but must have bias applied via a series resistor. As with any mixer circuit, a slight loss is always introduced. The final summing amplifier has a gain of 2 or 6dB to overcome this. The Input line level should be around 200mV RMS.
The mic inputs are amplified about 100 times or 40dB, the total gain of the mixer including the summing amplifier is 46dB. The mic input is designed for microphones with outputs of about 2mV RMS at 1 meter. Most dynamic microphones meet this standard.

The choice of op-amp is not critical in this circuit. Bipolar, FET input or MOS type op-amps can therefore be used; i.e 741, LF351, TL061, TL071, CA3140 etc. The power supply is a dual positive and negative supply, two 9 Volt batteries may be used as shown above or a power supply is recommended for longer periods of use.
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6 Input Mixer Schematic

6 Input Mixer Schematic




A simple mixer with 3 line inputs and 3 mic inputs using commonly available parts.



Notes:
The mixer circuit above has 3 line inputs and 3 mic inputs. The mic inputs are suitable for low impedance 200 to1000R dynamic microphones. An ECM or condenser mic can also be used, but must have bias applied via a series resistor. As with any mixer circuit, a slight loss is always introduced. The final summing amplifier has a gain of 2 or 6dB to overcome this. The Input line level should be around 200mV RMS.
The mic inputs are amplified about 100 times or 40dB, the total gain of the mixer including the summing amplifier is 46dB. The mic input is designed for microphones with outputs of about 2mV RMS at 1 meter. Most dynamic microphones meet this standard.

The choice of op-amp is not critical in this circuit. Bipolar, FET input or MOS type op-amps can therefore be used; i.e 741, LF351, TL061, TL071, CA3140 etc. The power supply is a dual positive and negative supply, two 9 Volt batteries may be used as shown above or a power supply is recommended for longer periods of use.
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6 Headphone Splitter Schematic

6 Headphone Splitter Schematic
Free Schematic 6 Headphone Splitter Schematic
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6 Headphone Splitter Schematic

6 Headphone Splitter Schematic
Free Schematic 6 Headphone Splitter Schematic
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50Hz Crossover Schematic

50Hz Crossover Schematic

Crossover 50Hz
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50Hz Crossover Schematic

50Hz Crossover Schematic

Crossover 50Hz
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4-Way Intercom



4-Way Intercom

4Way Intercom


Parts List
R1 10k
R2 150k
R3 4k7
R4 47k
R5 2k2
R6 4k7 trimpot
R7 390R
R8 10k
R9 100k
R10 100k
R11 22k
R12-R15 2k2
R16 4k7
R17 4k7
C1 0.22uF
C2 47uF
C3 1uF
C4 2,200uF (power filter cap รข€“ not shown, but wired across +12volts & 0v- ground points
Q1-Q5 BC547 n.p.n low gain
Q6 BC 549C high gain with a beta of at least 250+
D1-D7 1N4148 or 1N914 small signal diodes
IC1 NE 556 dual timer chip
IC2 CD 4017B decade counter chip
OC1-OC3 4N25 or 4N28 opto couplers
Tx 1k/8R transformer, with 1k centre tapped
B1-B4 9 volt DC buzzers mounted inside phone handsets
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