Showing posts with label audio. Show all posts
Showing posts with label audio. Show all posts

Thursday, November 20, 2014

15W Stereo audio Amplifier using TDA 4935

15W
TDA4935 2x15W audio amplifier is high quality Siemens IC. The IC can be used in stereo or bridge mode. In stereo mode can deliver 15W Stereo audio Amplifier using TDA 4935 per channel in bridge mode can deliver 30W to an 8 ohm load at the source of 30V. TDA4935 requires very few external components and has an ample supply voltage range. The IC operates in class B and has built-in protection circuits over temperature and overload protection. 

Notes :

  • The circuit must be assembled on a good quality PCB.
  • TDA 4935 must be fitted with a proper heat sink.
  • The supply voltage can be anything between 8 to 30V DC.
  • Capacitors C1, C2, C8 are polyester capacitors.
  • Capacitors C3, C4 and C6 are ceramic capacitors while C5 and C9 are electrolytic.
Via : circuitstoday.com
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Wednesday, November 19, 2014

Audio Stereo Channel Selector Circuit

AudioAudio Stereo Channel Selector Circuit

This circuit has accouterment for abutting stereo outputs from four altered sources/channels as inputs and alone one of them is selected/connected to the achievement at any one time.

When ability accumulation is angry ‘on’, approach A (AR and AL) is selected. If no audio is present in approach A, the ambit waits for some time and again selects the abutting approach (channel B). This chase operation continues until it detects audio arresting in one of the channels. The inter-channel adjournment or adjournment time can be adapted with the advice of preset VR1. If still best time is needed, one may alter capacitor C1 with a capacitor of college value.

Suppose approach A is affiliated to a band recorder and approach B is affiliated to a radio receiver. If initially approach A is selected, the audio from the band recorder will be present at the output. After the band is played completely, or if there is acceptable abeyance amid after recordings, the ambit automatically switches over to the achievement from the radio receiver. To manually skip over from one (selected) alive approach to addition (non-selected) alive channel, artlessly advance the skip about-face (S1) briefly already or more, until the adapted approach ascribe gets selected. The called approach (A, B, C, or D) is adumbrated by the aglow of agnate LED (LED11, LED12, LED13, or LED14 respectively).

IC CD4066 contains four alternation switches. These switches are affiliated to four abstracted channels. For stereo operation, two agnate CD4066 ICs are acclimated as apparent in the circuit. These alternation switches are controlled by IC CD4017 outputs. CD4017 is a 10-bit arena adverse IC. Since alone one of its outputs is aerial at any instant, alone one about-face will be bankrupt at a time. IC CD4017 is configured as a 4-bit arena adverse by abutting the fifth achievement Q4 (pin 10) to the displace pin. Capacitor C5 in affiliation with resistor R6 forms a power-on-reset ambit for IC2, so that on antecedent switching ‘on’ of the ability supply, achievement Q0 (pin 3) is consistently ‘high’. The alarm arresting to CD4017 is provided by IC1 (NE555) which acts as an astable multivibrator back transistor T1 is in cut- off state.

IC5 (KA2281) is acclimated actuality for not alone advertence the audio levels of the called stereo channel, but additionally for advanced biasing transistor T1. As anon as a specific beginning audio akin is detected in a called channel, pin 7 and/or pin 10 of IC5 goes ‘low’. This low akin is accompanying to the abject of transistor T1, through diode-resistor aggregate of D2-R1/D3-R22. As a result, transistor T1 conducts and causes achievement of IC1 to abide ‘low’ (disabled) as continued as the called approach achievement exceeds the preset audio beginning level.

Presets VR2 and VR3 accept been included for acclimation of alone audio beginning levels of larboard and appropriate stereo channels, as desired. Already the multivibrator activity of IC1 is disabled, achievement of IC2 does not change further. Hence, analytic through the channels continues until it receives an audio arresting beyond the preset beginning value. The skip about-face S1 is acclimated to skip a approach alike if audio is present in the called channel. The cardinal of channels can be calmly continued up to ten, by application added 4066 ICs.

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Tuesday, November 18, 2014

Stereo Circuit Schematic of The ADAU1592 Audio Power Amplifier


Stereo Circuit Schematic of The ADAU1592 Audio Power Amplifier

This is a stereo circuit schematic of the ADAU1592, a 2-channel, bridge-tied amount (BTL) switching audio ability amplifier. You can administer ADAU1592 on collapsed console televisions, pc audio arrangement and/or mini-components applications.

According to the ADAU1592 datasheet, an alien aegis ambit is recommended to be added for applications that crave accumulation voltage (PVDD) >15 V, you can use RC snubber or Schottky diode for this purpose. To anticipate the exhausted frequencies of asynchronous clocks (if appliance assorted ADAU1592s) in the audio band, it is recommended to use alone one alarm antecedent if the ADAU1592s allotment the aforementioned ability supply.

You can additionally body a archetypal address appliance ambit of the ADAU1592 by affairs pin 11 (MO/ST) to argumentation high, with abundant account in the datasheet.
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Monday, November 17, 2014

70 Watt MOSFET Audio Amplifier

This is use the MOSFET power amplifier circuit, amplifier circuit has a very good sound quality. With the noise is quite small, thus making the amplifier circuit is suitable for you to try. Heres the circuit.
Click to view larger.

 Power amplifier with a 70Watt power is able to issue a clear voice, and very and good loud.
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Power amplifier for TV audio

In this amplifier circuit using IC TDA8944J as the main amplifier with dual-channel audio amplifier with 2 x 7W output power at 8 Ω impedance. And a minimum supply voltage of 9-18 Volts. In this ic contains two Bridge Tied Load or BTL amplifier.


The circuit is often found in audio amplifier in a series of television, besides TDA2003, TDA2006 and so forth. PCB for a series of amplifiers using IC TDA8944J is very compatible with all other types of IC in IC TDA894X family unit , and below is a schematics.



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Quad Audio Amplifier Circuit diagram with TDA7831 4×25W

QuadQuad Audio Amplifier Circuit diagram with TDA7831 4×25W

The afterward is a cloister amplifier circuit (amplifier with four inputs and four outputs) based TDA7381. This amplifier is advised for car audio system, but you can additionally use this ambit for added purposes. This ambit has a architecture actual simple and actual accessible to build.
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Wednesday, November 12, 2014

Condenser Mic Audio Amplifier Diagram Circuit

The compact, low-cost condenser mic audio amplifier described here provides good-quality audio of 0.5 watts at 4.5 volts. It can be used as part of intercoms, walkie-talkies, low-power transmitters, and packet radio receivers. Transistors T1 and T2 form the mic preamplifier. Resistor R1 provides the necessary bias for the condenser mic while preset VR1 functions as gain control for varying its gain. In order to increase the audio power, the low-level audio output from the preamplifier stage is coupled via coupling capacitor C7 to the audio power amplifier built around BEL1895 IC.Circuit diagram:
Condenser Mic Audio Amplifier Circuit Diagram

BEL1895 is a monolithic audio power amplifier IC designed specifically for sensitive AM radio applications that delivers 1 watt into 4 ohms at 6V power supply voltage. It exhibits low distortion and noise and operates over 3V-9V supply voltage, which makes it ideal for battery operation. A turn-on pop reduction circuit prevents thud when the power supply is switched on. Coupling capacitor C7 determines low-frequency response of the amplifier. Capacitor C9 acts as the ripple-rejection filter.

Capacitor C13 couples the output available at pin 1 to the loudspeaker. R15-C13 combination acts as the damping circuit for output oscillations. Capacitor C12 provides the boot strapping function. This circuit is suitable for low-power HAM radio transmitters to supply the necessary audio power for modulation. With simple modifications it can also be used in intercom circuits. 
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Saturday, November 8, 2014

Mini Audio Signal Generator

A small audio test generator is very useful for quickly tracing a signal through an audio unit. Its main purpose is speed rather than refinement. A single sine-wave signal of about 1 kHz is normally all that is needed: distortion is not terribly important. It is, however, important that the unit does not draw too high a current. The generator described meets these modest requirements.

It uses standard components, produces a signal of 899 Hz at an output level of 1 V r.m.s. and draws a current of only 20 µA. In theory, the low current drain would give a 9 V battery a life of 25,000 hours. The circuit is a traditional Wien bridge oscillator based on a Type TLC271 op amp. The frequency determining bridge is formed by C1, C2 and R1–R4. The two inputs of the op amp are held at half the supply voltage by dividers R3-R4 and R5-R6 respectively.

Circuit diagram:


Resistors R5 and R6 also form part of the feedback loop. The amplification is set to about ´3 with P1. Diodes D1 and D2 are peak limiters. Since the limiting is based on the non-linearity of the diodes, there is a certain amount of distortion. At the nominal output voltage of 1 V r.m.s., the distortion is about 10%. This is, however, of no consequence in fast tests.

Nevertheless, if 10% is considered too high, it may be improved appreciably by linking pin 8 of IC1 to ground. This increases the current drain of the circuit to 640 µA, but the distortion is down to 0.7%, provided the circuit is adjusted properly. If a distortion meter or similar is not available, simply adjust the output to 1 V r.m.s. Since the distortion of the unit is not measured in hundredths of a per cent, C1 and C2 may be ceramic types without much detriment.
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Friday, November 7, 2014

10 to 14W Class A Audio Amplifier

I have built this amplifier and it does sound good. It requires a preamp as it hasnt got much gain. It requires big heat sinks and a large transformer and a great power supply and careful wiring, but in the end it is xtremely simple and it sounds very good. The zener diode rejects any ripple coming from the power supply, But you still only want a ripple of 10mV max. The ripple reaching the input is amplified, so the zener diode gets rid of that, but whatever ripple there is will still reach the power stage.

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Wednesday, November 5, 2014

Automatic Switch For Audio Power Amplifier

Circuit of an automatic switch for audio power amplifier stage is presented here. The circuit uses stereo preamplifier output to detect the presence of audio to switch the audio power amplifier on only when audio is present. The circuit thus helps curtail power wastage. IC1 is used as an inverting adder. The input signals from left and right channels are combined to form a common signal for IC2, which is used as an open loop comparator. IC3 (NE556) is a dual timer. Its second section, i.e., IC3(b), is configured as monostable multivibrator. Output of IC3(b) is used to switch the power amplifier on or off through a Darlington pair formed by transistors T1 and T2. IC3(a) is used to trigger the monostable multivibrator whenever an input signal is sensed.

Circuit diagram:
Automatic Switch For Audio Power Amplifier Circuit Diagram

Under ‘no signal’ condition, pin 3 of IC2 is negative with respect to its pin 2. Hence the output of IC2 is low and as a result output of IC3(a) is high. Since there is no trigger at pin 8 of IC3(b), the output of IC3(b) will be low and the amplifier will be off. When an input singal is applied to IC1, IC2 converts the inverted sum of the input signals into a rectangular waveform by comparing it with a constant voltage which can be controlled by varying potentiometer VR1. When the output of IC2 is high, output pin 5 of IC3 goes low, thus triggering the monostable multivibrator. As soon as the audio input to IC1 stops, pin 5 of IC3 goes high and pin 1 of IC3 discharges through capacitor C3, thus resetting the monostable multivibrator. 

Hence, as long as input signals are applied, the amplifier remains ‘on.’ When the input signals are removed, i.e., when signal level is zero, the amplifier switches off after the mono flip-flop delay period determined by the values of resistor R8 and capacitor C3. If no input signals are sensed within this time, the amplifier turns off—else it remains on. Power supply for the circuit can be obtained from the power supply of the amplifier. Hence, the circuit can be permanently fitted in the amplifier box itself. The main switch of the amplifier should be always kept on. Resistors R1 and R2 are used to divide single voltage supply into two equal parts.

Capacitors C1 and C2 are used as regulators and also as an AC bypass for input signals. Diode D1 is used so that loading fluctuations in power amplifier do not affect circuit regulation. Transisitor T2 acts as a high voltage switch which may be replaced by any other high voltage switching transistor satisfying amplifier current requirements. Value of resistor R10 should be modified for large current requirement. The LED glows when the amplifier is on. The circuit is very useful and relieves one from putting the amplifier on and off every time one plays a cassette or radio etc.
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Monday, November 3, 2014

12 V AUDIO AMPLIFIER WITH TRANSISTOR ELECTRONIC DIAGRAM

12 V AUDIO AMPLIFIER WITH TRANSISTOR ELECTRONIC DIAGRAM

In use, R9 should be carefully adjusted to provide minimal audible signal cross-over distortion consistent with minimal measured quiescent current consumption; a good compromise is to set the quiescent current at about 10-15 mA.To measure this current, wire a DC current meter temporarily in series with the collector of Q3.

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
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Sunday, November 2, 2014

12 V AUDIO AMPLIVIER IC TDA7222AP ELECTRONIC DIAGRAM

12 V AUDIO AMPLIVIER IC TDA7222AP ELECTRONIC DIAGRAM

Use 12V DC for powering the circuit. The IC must be heatsinked. Speaker can be a 4 ohms one.For optimum performance input and output must be separately grounded.

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
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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.
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Monday, October 27, 2014

Infrared Audio Transmitter

Infrared Audio Transmitter
Using this low cost Project individual can produce AUDIO from tube with no worrying a person. It does not application some wire relating television and headset. all the rage place of couple of wires it uses imaginary Infrared light to transmit audio signals from small screen to earphone. lacking using several lens a range of up to 6 meters is promising. Range can survive extended by using Lenses and Reflectors with IR sensors comprising transmitters and receivers. IR transmitter uses two-stage transistor amplifier to drive two IR leds connected dressed in succession. An audio output transformer is used (in reverse) to pair Audio output from television to the IR transmitter.
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STK433 730 E 60 watt stereo power audio amplifier circuit and explantion

A very simple high efficiency 60 watt stereo power audio amplifier circuit can be designed using the STK433-730-E hybrid IC designed to be used in class AB audio power amplifiers.

This class AB audio stereo power amplifier circuit will provide an output power of 30 watt on two channels at a 6 ohms load . Also this AB audio power amplifier circuit supports a 4 ohms load . For maximum rating on a 6 ohms load this stereo power amplifier project must be powered from a dual 28 volt very good filtered DC power source . For maximum rating on a 4 ohms load this 60 watt stereo power amplifier must be powered from a dual 25 volt DC power source , but typically is recommended a dual 18 volts DC power source on a 4 ohms load .
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.
STK433-730-E
Therefore, the value of 3.10.C/W, is the required thermal resistance of the heat sink.
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Saturday, October 25, 2014

Simple Audio Peak Detector

This audio peak detector allows a pair of stereo channels to be monitored on a sin-gle LED. Identical circuitry is used in the left and right channels. Use is made of the switch-ing levels of Schmitt trigger NAND gates inside the familiar 4093 IC. The threshold level for gate IC1.A (IC1.B) is set with the aid of preset P1, which supplies a high-impedance bias level via R2 (R1). 

Simple Audio Peak Detector Circuit diagram :
Simple Audio Peak Detector-Circuit-Diagram
Simple Audio Peak Detector Circuit Diagram 
When, owing to the instantaneous level of the audio signal superimposed on the bias voltage by C3 (C2), the dc level at pins 1 and 2 (5 and 6) of the Schmitt trigger gate drops below a certain level, the output of IC1.A (IC1.B) will go High. This level is copied to the input of IC1.C via D2 (D1) and due to the inverting action of IC1.C, LED D3 will light. Network R3-C1 provides some delay to enable very short audio peaks to be reliably indicated. Initially turn the wiper of P1 to the +12 V extreme — LED D3 should remain out. 

Then apply ‘line’ level audio to K1 and K3, preferably music with lots of peaks (for example, drum ‘n bass). Carefully adjust P1 until the peaks in the music are indicated by D3. The circuit has double RCA connectors for the left and right channels to obviate the use of those rare and expensive audio splitter (‘Y’) cables. 


Author : Flemming Jensen – Copyright : Elektor Electronic
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3 Level Audio Power Indicator Circuits Diagram

This circuit is designed to indicate the power level output of any audio amplifier. Its simple, portable, and displays three power levels can be adjusted to any desired value.

 3 Level Audio Power Indicator Circuits Diagram

3 Level Audio Power Indicator Circuits Diagram

Parts:
R1__________100K   1/4W Resistor
R2___________50K   1/2W Trimmer Cermet
R3__________330K   1/4W Resistor
R4____________1M2  1/4W Resistor
R5__________470K   1/4W Resistor
R6,R7_______500K   1/2W Trimmers Cermet
R8____________1K5  1/4W Resistor
R9-R11______470R   1/4W Resistors
 
C1___________47pF  63V Ceramic Capacitor
C2__________100nF  63V Polyester Capacitor
C3___________47µF  25V Electrolytic Capacitor
C4____________1µF  25V Electrolytic Capacitor
 
D1______BZX79C5V1 5.1V 500mW Zener Diode
D2_________1N4148  75V 150mA Diode
D3-D5________3mm.  Yellow LEDs
 
IC1_________LM339  Quad Voltage Comparator IC
 
SW1__________SPST  Slider Switch
 
B1_____________9V  PP3
 
Clip 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
The above values were chosen for easy setup, but other settings are possible.
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.
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Thursday, October 23, 2014

50W audio amplifier LM3876 Circuit Diagram

LM3876 is a high performance audio power amplifier IC from National Semiconductors. The LM3876 can deliver 50watts of output power into an 8 ohm loudspeaker. LM3876 has excellent signal to noise ratio and has wide supply voltage range. Other features of LM3876 are output to ground short circuit protection, input mute function, and output over voltage protection, etc. Applications of LM3876 are component stereo, compact stereo, surround systems, self powered speakers, etc.
Circuit diagram :
50-w-audio-amplifer-circuit diagram
50W audio amplifier Circuit Diagram
The 50 watt audio amplifier  circuit shown below is designed based on the application diagram from the data sheet of LM3876. Some modifications are made on the original circuit for improving the performance. The bipolar electrolytic capacitor C7 is the input DC decoupling capacitor. R4 is the input resistance. R2 & R1 and bipolar electrolytic capacitor C5 forms a feedback circuit. C2, C1 are filter/by-pass capacitors for the positive supply rail. C4 & C3 are the filters/by-pass capacitors for the negative supply rail. The feedback resistor R2 sets the gain of the amplifier. L1 provides high impedance at high frequencies so that R7 may decouple capacitive loads. R3 is the mute resistance which allows 0.5mA to be drawn from pin8 to turn the mute function OFF. S1 is the mute switch. Resistor R6 and capacitor C8 forms a Zobel network which improves the high frequency stability of the amplifier and prevents oscillations.
Notes :
  • 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

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Low Power Wireless Audio Power Amplifier

Battery-Powered portable unit, Suitable for all type Televisions

Using this low-cost project one can reproduce audio from TV without disturbing others. It does not use any wire connection between TV and Loud Speaker. In place of a pair of wires, it uses invisible infra-red light to transmit audio signals from TV to Loud speakers, Without using any lens a range of up to 6 meters is possible. Range can be extended by using lenses and reflectors with IR sensors comprising transmitters and receivers.

Transmitters operation:

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:
 wireless audio power amplifier transmitter schematic circuit diagram
Wireless Audio Power Amplifier Transmitter Circuit Diagram

Receivers operation:
IR receiver uses popular op-amp IC µA741 and audio-frequency amplifier IC LM386 along with phototransistor L14F1 (Q3) and some discrete components. The sound generated by TV set is transmitted through IR LEDs, received by phototransistor Q3 and fed to pin 2 of IC µA741 (IC1). Its gain can be varied using potmeter P2. The output of IC µA741 is fed to IC LM386 (IC2) via capacitor (C7) and potmeter P3. The sound produced is heard through the receiver’s loudspeaker. Potmeter P3 is used to control the volume of loudspeaker SPKR (8-ohm, 1W).

Receiver diagram:
 wireless audio power amplifier reciever schematic circuit diagram
Wireless Audio Power Amplifier Transmitter Circuit Diagram

Parts:

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
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Wednesday, October 22, 2014

TDA 7309 Digital Audio Processor Circuit

Digital Audio Processor TDA 7309 is a stereo audio processor with independent volume control of each channel was to get the audio quality of a good processor. Digital Audio Processor TDA 7309 is equipped with a loudness control is controlled externally. Digital Audio Processor TDA 7309 also has a soft mute feature stand-alone for each canals. Digital Audio Processor TDA 7309 is controlled via the I2C serial bus system with a microcontroller interface. 

Click to view larger.

Block Diagram of Digital Audio Processor TDA 7309 Feature-owned Digital Audio Processor TDA 7309 The input multiplexer with 3 stereo input Recording function on the output line Loudnes external ontrol Independent volume control Digital volume control with 1dB step Soft Mute All functions of the Digital Audio Processor TDA 7309 is programmed via the I2C serial bus system
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