Showing posts with label input. Show all posts
Showing posts with label input. Show all posts

Saturday, December 3, 2011

LM3900 Audio Mixer


This audio mixer circuit doesn’t use a low impedance input to mix no ideal sources, but use many amplifiers to provide ideal sources before mixed through simple resistors. Ideal source means a sources with low impedances, make the interaction between signals in the output doesn’t affect the input. Please note that this mixer circuit has high impedance output, so you’ll need an next processing equipment with appropriate input specs. This audio mixer circuit is designed around an LM3900 quad op amp and combines 2 line and 2 mike inputs and sums them at the output terminal. To vary the gain (around +23 dB), we can change the R7 through R10.

Wednesday, May 20, 2009

LM2577 5V to 12V DC Converter step up Voltage Regulator

DC to DC step up voltage regulator. Wide input voltage 3.5Vdc to 40Vdc. This is Circuit DC to DC converter step up vol



Download this schematic.



Download list semiconductor datasheet. (PDF Format)

1. LM2577
2. IN5821

http://www.circuits-lab.com/

Wednesday, May 6, 2009

TDA2030 8w Amplifier




Download this schematic diagram.




Download list datasheet semiconductor parts. (PDF Format)

1. TDA2030
2. IN4001


Notes
Although the TDA2030 is capable of delivering 20 watts of audio power, I deliberately reduced the output to about 8 watts to drive 10 watt speakers. This is more than adequate for a smaller room. Input sensitivity is 200mV. Higher input levels naturally will give greater output, but no distortion should be heard. The gain is set by the 47k and 1.5k resistors. The TDA2030 IC is affordable and makes a good replacement amplifier for low to medium audio power systems. Incidentally, it is speaker efficiency that determines how "loud" the sound is. Speaker efficiency or sound pressure level (SPL) is usually quoted in dB/meter. A speaker with an SPL of 97dB/m will sound louder than a speaker with an SPL of 95dB/m.