Showing posts with label AUDIO AMPLIFIER. Show all posts
Showing posts with label AUDIO AMPLIFIER. Show all posts
Sunday, November 20, 2011
25W AUDIO AMPLIFIER MOSFET IRF530-IRF9530 ELECTRONIC DIAGRAM
25W AUDIO AMPLIFIER MOSFET IRF530-IRF9530 ELECTRONIC DIAGRAM
Adjust R11 to set quiescent current at 100mA (best measured with an Avo-meter connected in series to Q8 Drain) with no input signal.
A correct grounding is very important to eliminate hum and ground loops. Connect to the same point the ground sides of R1, R4, R9, C3 to C8. Connect C11 to output ground. Then connect separately the input and output grounds to power supply ground.
12 V AUDIO AMPLIFIER WITH TRANSISTOR ELECTRONIC DIAGRAM
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
Labels:
AMPLIFIER,
AUDIO,
AUDIO AMPLIFIER,
RANGKAIAN TRANSISTOR,
TRANSISTOR,
TRANSISTOR CIRCUIT,
TRANSISTOR DIAGRAM,
TRANSISTOR SCHEMATIC
Thursday, November 3, 2011
10W AUDIO AMPLIFIER WITH BASS-BOOST ELECTRONIC DIAGRAM
10W AUDIO AMPLIFIER WITH BASS-BOOST ELECTRONIC DIAGRAM
Adjust the volume control on the minimum and R3 position with a minimum value of resistance as well. try to switch the circuit set in R3 to read the flow of about 20 to 25mA. Wait for 15 minutes, connect the ground of A1, P1, C2, C3dan C4. Connect the output also C9 ground
List Component
- P1 : 22K Log Potemsiometer (Dual gang for stereo)
- C3, 4 : 470uF/25V
- P2 : 100K Log Potemsiometer (Dual gang for stereo)
- C6 : 47pF 63V ceramic ar polyester capasitor
- R2, 4, 8 : 820R 1/4W
- C7 : 10nF 63V polyester capasitor
- R1 : 4K7 1/4W
- C9 : 100nF 63V polyester capasitor
- R3 : 500R 1/2W
- D1 : 1N4148 75V 150mA Diode
- R5 : 82K 1/4W
- IC 1 : NE5532 Low noise Dual Op-amp
- R6, 7 : 47K 1/4W
- Q1 : BC547B 45V 100mA NPN Transitor
- R9 : 10R 1/2W
- Q2 : BC557B 45V 100mA PNP Transitor
- R10 : 0,22 4W(wirewound)
- Q3 : TIP42A 60V 6A PNP Transistor
- C1, 8 : 470nF 63V polyester capasitor
- Q4 : TIP41A 60V 6A NPN Transistor
- C2, 5 : 100uF/25V J1 : RCA audio input socket
Labels:
AMPLIFIER,
AMPLIFIER 10W,
AUDIO AMPLIFIER,
BOOSTER,
BOOSTER CIRCUIT,
BOOSTER DIAGRAM,
BOOSTER SCHEMATIC,
RANGKAIAN BOOSTER
3V - 6V MINI AUDIO AMPLIFIER ELECTRONIC DIAGRAM
3V - 6V MINI AUDIO AMPLIFIER ELECTRONIC DIAGRAM
IC TDA7052 is a mono output amplifier in 8-comng Head DI package (DIP). The device is designed primarily for battery-operated portable audio circuits. Features include TDA 7052, no external components needed, no switch-on or switch-off button sounds great overall stability and very low power consumption (quiescent current of 4 mA), low THD, it is not necessary any cooler and short-circuit proof.
Profit TDA 7052 is set internally at 40 dB. . Compensate for the reduction of output power due to low voltage TDA7052 uses Bridge-Tied-Load principle
(BTL), which can provide power about 1 to 2 W RMS (THD = 10%), 8 ohm load to the power supply 6 V.
Monday, October 10, 2011
MINI AUDIO AMPLIFIER ELECTRONIC CIRCUIT DIAGRAM
MINI AUDIO AMPLIFIER ELECTRONIC CIRCUIT DIAGRAM
The 8k2 across the 47u sets the emitter voltage on the BC 547 and this turns it on. The collector is directly connected to the base of a BC 557, called the driver transistor. Both these transistors are now turned on and the output of the BC 557 causes current to flow through the 1k and 470R resistors so that the voltage developed across each resistor turns on the two output transistors. The end result is mid-rail voltage on the join of the two emitters. The two most critical components are 8k2 between the emitter of the first transistor and 0v rail and the 470R resistor.
Subscribe to:
Posts (Atom)



