Monday, November 3, 2014
12 V AUDIO AMPLIFIER WITH TRANSISTOR ELECTRONIC DIAGRAM
List Component
- P1_____________10K Log.Potentiometer
- R1,R2__________33K 1/4W Resistors
- R3_____________33R 1/4W Resistor
- R4_____________15K 1/4W Resistor
- R5,R6___________1K 1/4W Resistors
- R7____________680R 1/4W Resistor
- R8____________120R 1/2W Resistor
- R9____________100R 1/2W Trimmer Cermet
- C1,C2__________10µF 63V Electrolytic Capacitors
- C3____________100µF 25V Electrolytic Capacitor
- C4,C7_________470µF 25V Electrolytic Capacitors
- C5_____________47pF 63V Ceramic Capacitor
- C6____________220nF 63V Polyester Capacitor
- C8___________1000µF 25V Electrolytic Capacitor
- D1___________1N4148 75V 150mA Diode
- Q1____________BC560C 45V 100mA PNP Low noise High gain Transistor
- Q2____________BC337 45V 800mA NPN Transistor
- Q3____________TIP31A 60V 4A NPN Transistor
- Q4 ___________TIP32A 60V 4A PNP Transistor
- SW1___________SPST switch
Sunday, November 2, 2014
12 V AUDIO AMPLIVIER IC TDA7222AP ELECTRONIC DIAGRAM
Pin Name Description
1 Vcc Supply Voltage
2 RR Ripple Reject
3 MC Muting control
4 OP AF Signal Input
5 FB FB Filter
6 GA Gain adjust
7 GND Ground
8 GND Ground
9 OP AF Output
10 BS BootStrap
Thursday, October 30, 2014
TDA2003 Car audio amplifier Diagram Circuit
Car Audio Amplifier Circuit
Description.
A simple low power car stereo amplifier circuit based on TDA 2003 is shown here. The circuit uses cheap, readily available components and it is very easy to construct. TDA2003 is an integrated car radio amplifier from ST Micro electronics that has a lot of good features like short circuit protection for all pins, thermal over range low harmonic distortion, low cross over distortion etc.
In the circuit given here each TDA2003 is wired as a mono amplifier operating from a 12V supply. Resistors R2 and R3 forms a feedback network that sets the amplifiers gain. C7 is the input DC de-coupling capacitor and C5 couples the speaker to the amplifiers output. C4 is used for improving the ripple rejection while C1 and C2 are employed for power supply filtering. C3 and R1 are used for setting the upper frequency cut-off. Network comprising of C6 and R4 is used for frequency stabilization and to prevent oscillation.
Car audio amplifier Circuit diagram.
Car stereo amplifier circuit schematic
Notes.
- Assemble the circuit on a good quality PCB.
- Heat sinks are necessary for both ICs.
- The circuit can be operated from 12V DC.
- S1 is the ON/OFF switch.
Monday, October 27, 2014
Infrared Audio Transmitter
| Infrared Audio Transmitter |
STK433 730 E 60 watt stereo power audio amplifier circuit and explantion
If is used to provide maximum ratings the output power will have a maximum 10% THD .
Exceeding the maximum ratings, even momentarily, may cause damage to the hybrid IC.
Use the hybrid IC so that the voltage applied to the stand-by pin (pin 13) never exceeds the maximum rating. The power amplifier is turned on by applying +2.5V to +5.5V to the stand-by pin (pin 13).
An output limiting circuit for substrate overheating is incorporated to protect the hybrid IC from the heat generation exceeding the maximum rating.
The load short-circuit protection circuit is activated when it has detected an overcurrent in the output transistors.
However a thermoplastic adhesive resin is used to secure the case and aluminum substrate.
When the IC supply voltage, VCC, is .18V and RL is 4 , the total power dissipation, Pd, within the hybrid IC, will be a maximum of 33Wat 1kHz for a continuous sine wave signal according to the Pd-PO characteristics.
Saturday, October 25, 2014
Simple Audio Peak Detector
3 Level Audio Power Indicator Circuits Diagram
3 Level Audio Power Indicator Circuits Diagram

Parts:
R1__________100K 1/4W ResistorR2___________50K 1/2W Trimmer Cermet
R3__________330K 1/4W ResistorR4____________1M2 1/4W ResistorR5__________470K 1/4W ResistorR6,R7_______500K 1/2W Trimmers Cermet
R8____________1K5 1/4W ResistorR9-R11______470R 1/4W ResistorsC1___________47pF 63V Ceramic CapacitorC2__________100nF 63V Polyester CapacitorC3___________47µF 25V Electrolytic CapacitorC4____________1µF 25V Electrolytic CapacitorD1______BZX79C5V1 5.1V 500mW Zener DiodeD2_________1N4148 75V 150mA DiodeD3-D5________3mm. Yellow LEDs
IC1_________LM339 Quad Voltage Comparator ICSW1__________SPST Slider SwitchB1_____________9V PP3Clip for 9V PP3 Battery
Circuit operation:
This circuit is intended to indicate the power output level of any audio amplifier. It is simple, portable, and displays three power levels that can be set to any desired value. For a standard HiFi stereo power amplifier like the 25W Audio Amplifier described in these pages, the power output values suggested are as follows:- D5 illuminates at 2W
- D4 illuminates at 12.5W
- D3 illuminates at 24.5W
IC1A is the input buffer, feeding 3 voltage comparators and LEDsdrivers by means of a variable dc voltage obtained by R5 and C4 smoothing action. In order to achieve setting stability, the supply of IC1 and trimmers R6 & R7 is reduced and clamped to 5.1V by Zener diode D1.
Notes:
- The simplest way to connect this circuit to the amplifier output is to use a twisted pair cable terminated with two insulated crocodile clips.
- Setup is best accomplished with an oscilloscope or an audio millivoltmeter like the one described in these pages. Precision Audio Millivoltmeter
- A 1KHz sine wave generator with variable output is also required (see a suitable circuit in this website also). 1KHz Sinewave Generator
- Connect the generator to the amplifiers input and the Audio Power Indicator to the output of the amplifier, in parallel with the oscilloscope probe or the audio millivoltmeter input.
- When using high power outputs disconnect the loudspeakers to avoid Tweeters damage and connect in their place an 8 Ohm 20-30 Watt wirewound resistor.
- Remember that VRMS output is equal to output Peak-to-Peak Voltage divided by 2.828.
- RMS power output in Watts is equal to VRMS2 divided by speaker impedance (usually 8 or 4 Ohm).
- Example: set the output of the 1KHz sinewave generator to read 14V on the audio millivoltmeter (24.5W @ 8 Ohm). Set R2 until D3 illuminates, and be sure that D3 turns-off when diminishing a little the generators output.
- Do the same with R7 for D4 and R6 for D5. The readings of the audio millivoltmeter must be 10V (12.5W @ 8 Ohm) and 4V (2W @ 8 Ohm) respectively.
Thursday, October 23, 2014
50W audio amplifier LM3876 Circuit Diagram
- The LM3876 can be operated from a supply voltage range of +/-12V to +/-49V DC.
- I recommend +/-35V DC for powering the IC.
- LM3876 requires a proper heat sink.
- Quiescent current of LM3876 is around 70mA
Low Power Wireless Audio Power Amplifier
IR transmitter uses two-stage transistor amplifier to drive two series-connected IR LEDs. An audio output transformer (T1) is used (in reverse) to couple audio output from TV to the IR transmitter. Transistors Q1 and Q2 amplify the audio signals received from TV through the audio transformer. Low impedance output windings (lower gauge or thicker wires) are used for connection to TV side while high-impedance windings are connected to IR transmitter. This IR transmitter can be powered from a 9V mains adapter or a 9V battery. Red LED (D1) in transmitter circuit functions as a Zener diode (0.65V) as well as supply-on indicator.
Transmitter diagram:
P1 = 10K
P3 = 10K
P2 = 1M
R1 = 4.7K
R2 = 22K
R3 = 100R
R4 = 10R-1W
R5 = 10K
R6 = 10K
R7 = 15K
R8 = 15K
R9 = 100K
R10 = 680R-1W
R11 = 1K
R12 = 10R-1W
C1 = 220uF-25V
C2 = 220uF-25V
C3 = 10uF-25V
C4 = 220uF-25V
C5 = 220uF-25V
C6 = 100nF-63V
C7 = 100nF-63V
C8 = 100nF-63V
C9 = 100nF-63V
D1 = Red LED
D2 = IR LEDs
D3 = IR LEDs
Q1 = BC547
Q2 = BD140
Q3 = L14F1
IC1 = uA741 Opamp
IC2 = LM386
J1 = Audio input Jack
T1 = Audio Transformer
SPKR = 1W-8ohm
Wednesday, October 22, 2014
TDA 7309 Digital Audio Processor Circuit
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