Showing posts with label mixer. Show all posts
Showing posts with label mixer. Show all posts
Sunday, October 6, 2013
Mixer Line Mic Stereo Schematic Diagram
Mixer Line Mic Stereo Schematic Diagram| R1-8-31-32=3.3K ohms | C1-4-7-9-12-17=10uF 16V | IC1=TLC274 |
| R2-7-27-30=100 ohms | C2-8=470nF 63V MKT | IC2=TLC272 |
| R3-4-9-10=1M ohms | C3-24-27-28=100nF 63V MKT | IC3=7805 |
| R5-11-21-22-23-24=10K ohms | C5-10=10pF ceramic | D1=1N4007 |
| R6-12-15-17=1K ohms | C6-11=1uF 16V | D2=LED 3mm |
| R13-14-19-20-28-29=47Kohms | C13-16-20-21=47pF | JF1-2-5-6=female jack 3.5mm stereo |
| R18-16-25-26=22K ohms | C14-15-18-19=1uF 63V MKT | JF3-4=RCA female plug |
| RV1=2X100K ohms Lin. | C22-23-25=100uF 16V | JF7=female jack 3.5mm mono |
Monday, September 16, 2013
Very Simple Audio Mixer Circuit
A very simple audio mixer can be designed using this circuit diagram electronic project. Audio mixing is normally performed by a mixer with virtual ground, in which the various input signals are applied through series resistors to virtual ground, that at the inverting input of operational amplifier.

The audio mixer is a little different and uses the principle of common ground, the input voltages are converted into alternating current which, when summed, is the AC component of the collector. In the case of a common base configuration, emitter impedance is small and works as a virtual ground that is making it impossible to crosstalk between different input signals. The output signal is taken from the collector of Q1. Amplification circuit is equal to R6 + Ri, where Ri is the input resistance (= one of the resistances RI ... R5). The T1s emitter circuit has been provided a power source consisting of T2 and T3.
Q1s base voltage is set by resistors R7 and R8. Ensure that the capacitor C1 of T1 to be effectively disconnected.
Number of entries can be modified, increased or decreased as desired.
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