Showing posts with label Circuit. Show all posts
Showing posts with label Circuit. Show all posts

4/27/2015

NCP2890 Audio Amplifier 1W

NCP2890 general description:

The NCP2890 is an audio power amplifier designed for portable communication device applications such as mobile phone applications. The NCP2890 is capable of delivering 1.0 W of continuous average power to an 8.0 BTL load from a 5.0 V power supply, and 320 mW to a 4.0 BTL load from a 2.6 V power supply. The NCP2890 provides high quality audio while requiring few external components and minimal power consumption. It features a low−power consumption shutdown mode, which is achieved by driving the SHUTDOWN pin with logic low. The NCP2890 contains circuitry to prevent from “pop and click” noise that would otherwise occur during turn−on and turn−off transitions. For maximum flexibility, the NCP2890 provides an externally controlled gain (with resistors), as well as an externally controlled turn−on time (with the bypass capacitor). Due to its excellent PSRR, it can be directly connected to the battery, saving the use of an LDO. This device is available in a 9−Pin Flip−Chip CSP (standard Tin−Lead and Lead−Free versions) and a Micro8 package. NCP2890 Audio Amplifier 1W

NCP2890 features:

  • 1.0 W to an 8.0  BTL Load from a 5.0 V Power Supply
  • Excellent PSRR: Direct Connection to the Battery
  • “Pop and Click” Noise Protection Circuit
  • Ultra Low Current Shutdown Mode
  • 2.2 V−5.5 V Operation
  • External Gain Configuration Capability
  • External Turn−on Time Configuration Capability
  • Up to 1.0 nF Capacitive Load Driving Capability
  • Thermal Overload Protection Circuitry
  • AEC−Q100 Qualified Part Available
  • Pb−Free Packages are Available
  • NCV Prefix for Automotive and Other Applications Requiring Site and Control Changes

NCP2890 aplications:

  • Portable Electronic Devices
  • PDAs
  • Wireless Phones

NCP2890 circuit diagram: 

NCP2890 Audio Amplifier 1W
Circuit diagram NCP2890 Audio Amplifier 1W

NCP2890 layout pcb: 

PCB layout NCP2890 Audio Amplifier 1W
PCB layout NCP2890 Audio Amplifier 1W

TDA8560Q Audio amplifier 2x40W

TDA8560Q general description:

Unfortunately, some of the proposed scheme in the network and even a scheme recommended by the developer (Philips), fail to achieve the desired result. As an example of how not to suggest that you include the TDA8560 material published on Online Soldering: Car Amplifier 2x40 Watt (I should note that everything except the input circuits and the number of points on diet, still deserves attention). the initial inclusion of IMS (at power up, the load is connected and there is no input signal) can throw you into a state of perplexity / mild shock (it depends on the degree of hope is for your TDA). Chip is unstable, there are noises when the input signal is amplified last weakly and passed with distortions. IC bypass surgery fixed resistor at the input, the other measures in consultation with the source device does not help. Why and what to do? Really caught Palen chip and will have to buy a new one? Not so fast! The fact that Philips did not include measures to prevent the self-excitation of the IC, but I think they know about it, but do not tell anyone (not good, gentlemen!) Rid chip excitement can (and should) in a way that is not described here. This is so far, my little secret. Usually TDA8560 include approximately recommend the following scheme: TDA8560Q Audio amplifier 2x40W

TDA8560Q Features:

  • Supply voltage: 6 - 18; typical 14.4 V.
  • The peak output current: 7.5 A.
  • The current in idle mode: 120 mA.
  • Long-term power output, with
  • RL = 4 ohms, THD = 10%, F = 1 kHz, 25 W,
  • RL = 2 ohms, THD = 10%, F = 1kHz: 40W.
  • Voltage gain, Au: 40 dB.
  • Input Impedance: 30 ohms.
  • Input Sensitivity: 100 mV.
  • Frequency response: 20 - 20000 Hz.
  • Requires very few external components
  • High output power
  • Low output offset voltage
  • Fixed gain
  • Diagnostic facility (distortion, short-circuit and temperature detection)
  • Good ripple rejection
  • Mode select switch (operating, mute and standby)
  • Load dump protection
  • Short-circuit safe to ground, to VP and across the load
  • Low power dissipation in any short-circuit condition
  • Thermally protected
  • Reverse polarity safe
  • Electrostatic discharge protection
  • No switch-on/switch-off plop
  • Flexible leads
  • Low thermal resistance.

TDA8560Q amplifier diagram, circuit:

TDA8560Q amplifier diagram, circuit
TDA8560Q amplifier diagram, circuit

TDA8560Q layout:

TDA8560Q amplifier Layout
TDA8560Q amplifier Layout

TDA8560Q amplifier pcb
TDA8560Q amplifier pcb

Datasheet for TDA8560Q: Download

2/12/2015

TDA1566 Audio Amplifier 2x46W / 1x92W

TDA1566 general description:



The TDA1566 is a car audio power amplifier with a complementary output stage realized in BCDMOS. The TDA1566 has two Bridge Tied Load (BTL) output stages and comes in a HSOP24 or DBS27P package. The TDA1566 can be controlled with or without I2C-bus. With I2C-bus control gain settings per channel and diagnostic trigger levels can be selected. Failure conditions as well as load identification can be read with I2C-bus. The load identification detects whether the outputs of a BTL channel are connected with a DC or AC load and discriminates between a speaker load, a line driver load and an open (unconnected) load. The TDA1566 can be configured in a single BTL mode and drive a 1 Ω load. For the single BTL mode it is necessary to connect on the Printed-Circuit Board (PCB) the outputs of both BTL channels in parallel.  TDA1566 Audio Amplifier 2x46W / 1x92W

TDA1566 features:


  • Operates in I2C-bus mode and non-I2C-bus mode
  • TH version: four I2C-bus addresses controlled by two pins; J version: two I2C-busaddresses controlled by one pin
  • Two 4 Ω or 2 Ω capable BTL channels or one 1 Ω capable BTL channel
  • Low offset
  • Pop free off/standby/mute/operating mode transitions
  • Speaker fault detection
  • Selectable gain (26 dB and 16 dB)
  • In I2C-bus mode:
  • DC load detection: open, short and speaker or line driver present
  • AC load (tweeter) detection
  • Programmable trigger levels for DC and AC load detection
  • Per channel programmable gain (26 dB and 16 dB, selectable per channel)
  • Selectable diagnostic levels for clip detection and thermal pre-warning
  • Selectable information on the DIAG pin for clip information of each channelseparately and independent enabling of thermal-, offset- or load fault
  • Independent short-circuit protection per channel
  • Loss of ground and open VP safe
  • All outputs short-circuit proof to VP, GND and across the load
  • All pins short-circuit proof to ground
  • Temperature controlled gain reduction at high junction temperatures
  • Fault condition diagnosis per channel: short to ground, short to supply, shorted leadand speaker fault (wrongly connected)
  • Low battery voltage detection
  • TH version: pin compatible with the TDA8566TH1

TDA1566 circuit:

TDA1566 Audio Amplifier 2x46W
TDA1566 Audio Amplifier 2x46W


TDA1566 Audio Amplifier 2x46W
TDA1566 Audio Amplifier 2x46W

TDA1566 layout:

TDA1566 Audio Amplifier 2x46W layout
TDA1566 Audio Amplifier 2x46W layout
TDA1566 Audio Amplifier 2x46W pcb
TDA1566 Audio Amplifier 2x46W pcb


TDA1566 Audio Amplifier 2x46WTDA1566 Audio Amplifier 2x46W pcb
TDA1566 Audio Amplifier 2x46WTDA1566 Audio Amplifier 2x46W pcb


TDA1566 Audio Amplifier 2x46W pcb
TDA1566 Audio Amplifier 2x46W pcb



TDA8569Q Audio Amplifier 4 x 40W

TDA8569Q general description:



The TDA8569Q is an integrated class-B output amplifier in a 23-lead Single-In-Line (SIL) plastic power package. It contains four amplifiers in Bridge-Tied Load (BTL) configuration, each with a gain of 26 dB. The output power is 4 × 40 W in a 2 Ω load.  TDA8569Q Audio Amplifier 4 x 40W

TDA8569Q features:

Capable of driving 2 Ω loads
Requires very few external components
High output power
Low output offset voltage
Fixed gain
Diagnostic facility (distortion, short-circuit and temperature pre-warning)
Good ripple rejection
Mode select switch (operating, mute and standby)
Load dump protection
Short-circuit safe to ground, to VP and across the load
Low power dissipation in any short-circuit condition
Thermally protected
Reverse polarity safe
Electrostatic discharge protection
No switch-on/switch-off plop
Flexible leads
Low thermal resistance
Pin compatible with the TDA8567Q.

TDA8569Q circuit diagram:

4 x 40W TDA8569Q Audio Amplifier
4 x 40W TDA8569Q Audio Amplifier 


TDA8569Q layout:

layout for 4 x 40W TDA8569Q Audio Amplifier
layout for 4 x 40W TDA8569Q Audio Amplifier 


pcb for layout for 4 x 40W TDA8569Q Audio Amplifier
pcb for layout for 4 x 40W TDA8569Q Audio Amplifier


2/11/2015

TDA8950 Audio Amplifier 2x150W

TDA8950 general description:
TDA8950 Audio Amplifier 2x150W



The TDA8950 is a high-efficiency Class D audio power amplifier. The typical output power is 2 × 150 W with a speaker load impedance of 4 Ω. The TDA8950 is available in both HSOP24 and DBS23P power packages. The amplifier operates over a wide supply voltage range from ±12.5 V to ±40 V and features low quiescent current consumption. TDA8950 Audio Amplifier 2x150W


TDA8950 features:



  • Pin compatible with TDA8920B for both HSOP24 and DBS23P packages
  • Symmetrical operating supply voltage range from ±12.5 V to ±40 V
  • Stereo full differential inputs, can be used as stereo Single-Ended (SE) or mono
  • Bridge-Tied Load (BTL) amplifier
  • High output power in typical applications:
  • SE 2 × 150 W, RL
  • 4 Ω (VP = ±37 V)
  • SE 2 × 170 W, RL
  • 4 Ω (VP = ±39 V)
  • SE 2 × 100 W, RL
  • 6 Ω (VP = ±37 V)
  • BTL 1 × 300 W, RL
  • 8 Ω (VP = ±37 V)
  • Low noise
  • Smooth pop noise-free start-up and switch off
  • Zero dead time switching
  • Fixed frequency
  • Internal or external clock
  • High efficiency
  • Low quiescent current
  • Advanced protection strategy: voltage protection and output current limiting
  • Thermal FoldBack (TFB)
  • Fixed gain of 30 dB in SE and 36 dB in BTL applications
  • Fully short-circuit proof across load
  • BD modulation in BTL configuration

Amplifier diagram, circuit for TDA8950:

TDA8950 circuit diagram
TDA8950 circuit diagram
Datasheet for TDA8950: Download

TDA1514A Audio Amplifier 50W

TDA1514A general description:



Here the very simple but powerful amplifier kit which built based on TDA1514A amplifier chip. The circuit is for single channel only, you should build two similar circuit for stereo application. A heatsink is a must to be attached on the IC TDA1514A. This circuit can be used as well as stereoamplifiers Bass in a 5.1 system. TDA1514A Audio Amplifier 50W

TDA1514A features:

  • Battery operation
  • Minimum external parts
  • Wide supply voltage range: 4V–12V or 5V–18V
  • Low quiescent current drain: 4mA
  • Voltage gains from 20 to 200
  • Ground referenced input
  • Self-centering output quiescent voltage
  • Low distortion: 0.2% (AV = 20, VS = 6V, RL = 8Ω, PO =
  • 125mW, f = 1kHz)
  • Available in 8 pin MSOP package

TDA1514A circuit:

TDA1514A Audio Amplifier 50W

TDA1514A layout:

Printed Circuit Layout and placement for mono 40 W amplifier:


TDA1514A Audio Amplifier 50W pcb

TDA1514A Audio Amplifier 50W layout 

Printed Circuit Layout and placement for sterio 2 x 40 W amplifier.

stereo pcb


stereo layout

TDA7375 Audio Amplifier 2x35W

TDA7375 general description:

TDA7375 Audio Amplifier 2x35W
Circuit of quadruple audio amplifier using integrated circuit TDA7235 for systems surround. Circuit of quadruple amplifier for systems surround using the ci tda7375, for potency of 7 watts for channel in the version amplifying quad or 15 watts in the dual version (stereo). could arrive to 35 watts in the version.TDA7235 is a circuit integrated amplifier quadruple audio amplifier class AB capable to work in double bridge or simple quadruple amplifiers, circuit integrated with protection system of short, it requests the minimum of external components, available in multiwat 15H (TDA7375H) and multiwat 15V (TDA7375V). Although the first conception went to automotives pplications , to give him/it in a great variety of applications of low potency. That integrated circuit is ideal in the situation in that is wanted a reasonable potency and with a Power tension relatively low for your operation. That circuit drawn below it uses the basic configuration of quadruple amplifier, but using a configuration in bridge, it can be obtained about 4 times the maximum potency. In that configuration of quadruple amplifier it can be used as amplifier end of systems surround, when 7 watts for channel are already a good potency, using the minimum of components.Operation of the circuit of the audio amplifier with tda7375 The capacitor C8 uncouples the internal tension divisor. The capacitors C5 and C6 are the filter for Power supply. The capacitors of 2200µF / 25V are the exit capacitors. Vs is the Power supply that can be a car battery or a supply of 14 volts. Power supply for the circuit It can be with a transformer 12V/30VA, a rectifier bridge and a capacitor electrolytic of 4700µF or (larger). The maximum consumption of current with loads of 4Ohms is 2.1 A. You can use loads of 2 ohms, but he/she also remembers to increase the size of the of heat-sink, because the circuit integrated in Multiwat package it will heat up a little more. Suggestion of printed circuit board side of the copperSuggested PCB for mounting the amplifier tda7375, component side Information about mounting circuit audio amplifier. When assembling the circuit remember that this quad amplifier channels features two four inverted, then it should connect the speakers in reverse polarity at such times, attention to the polarity of electrolytic capacitors that should be of good quality. Before welding the tda7375 remember to solder the jumper, which will be underneath the integrated. TDA7375 Audio Amplifier 2x35W

TDA7375 features:



  • HIGH OUTPUT POWER CAPABILITY:
– 2 x 40W max./4
– 2 x 35W/4 EIAJ
– 2 x 35W/4 EIAJ
– 2 x 25W/4 @14.4V, 1KHz, 10%
– 4 x 7W/4 @14.4V,1KHz, 10%
– 4 x 12W/2 @14.4V, 1KHz, 10%

  • MINIMUM EXTERNAL COMPONENTS 
COUNT:
– NO BOOTSTRAP CAPACITORS
– NO BOUCHEROT CELLS
– INTERNALLY FIXED GAIN (26dB BTL)

  • ST-BY FUNCTION (CMOS COMPATIBLE)
  • NO AUDIBLE POP DURING ST-BY OPERATIONS

  • DIAGNOSTICS FACILITY FOR:
– CLIPPING
– OUT TO GND SHORT
– OUT TO VS SHORT
– SOFT SHORT AT TURN-ON
– THERMAL SHUTDOWN PROXIMITY


TDA7375 circuit diagram:

Double Bridge TDA7375
Double Bridge TDA7375
Quad SterioTDA7375
Quad SterioTDA7375
SterioBridge TDA7375
SterioBridge TDA7375

TDA7375 layout:

pcb layout
pcb layout

pcb layout
pcb layout


2/10/2015

TA8210AH Audio Amplifier 2x22W

TA8210AH general description:

     It's amizing circuit work beautiful. Is desination for audio amplification, for car. This is a circuit of 2 x 22 watt BTL amplifier using IC TA8210AH. It is not only an auto amplifier, ideal for a low-frequency auditory approach those hi-fi, with a very good linear feature. Can be fueled by a 12 volt car battery but shi from a 12 volt charger. The chip incorporates four bridge amplifiers available in two by two in order to ensure the output 22 watts per channel on 4 ohms. TA8210AH Audio Amplifier 2x22W

TA8210AH features:
  • Peak supply voltage (0.2s): 50 V
  • supply voltage VCC (DC): 25 V
  • Operating supply voltage VCC (opr): 18 V
  • Output current (peak): 9 A
  • Power dissipation PD: 50 W
  • Operating temperature: 30~85 °C
  • Storage temperature: 55~150 °C

TA8210AH circuit diagram:

TA8210AH Audio Amplifier 2x22W
TA8210AH Audio Amplifier 2x22W


TA8210AH layout:

TA8210AH Audio Amplifier 2x22W
Layout TA8210AH Audio Amplifier 2x22W


TA8210AH Audio Amplifier 2x22W
PCB TA8210AH Audio Amplifier 2x22W



TDA2005 Audio Amplifier 2x10w

TDA2005 description:



The TDA2005 is a class B dual audio power amplifier in Multiwatt11 package specifically designed for car radio applications. Power booster amplifiers can be easily designed  using this device that provides a high current  capability (up to 3.5 A) and can drive very low  impedance loads (down to 1.6  in stereo  applications) obtaining an output power of more than 20 W (bridge configuration). TDA2005 Audio Amplifier 2x10w

TDA2005 features:

High output power:
Po = 10 + 10 W @ RL = 2 , THD = 10 %
Po = 20 W @ RL = 4 , THD = 10 %.
Protection against:
Output DC and AC short circuit to ground
Overrating chip temperature
Load dump voltage surge
Fortuitous open ground
Very inductive loads
Loudspeaker protection during short circuit for one wire to ground


TDA2005 circuit diagram:

TDA2005 Audio Amplifier 2x10w
TDA2005 Audio Amplifier 2x10w

TDA2005 layout:

PCB TDA2005 Audio Amplifier 2x10w
PCB TDA2005 Audio Amplifier 2x10w
Layout TDA2005 Audio Amplifier 2x10w
Layout TDA2005 Audio Amplifier 2x10w

11/04/2014

18W+18W Stereo Amplifier

General Description:

The TDA7265SA is class AB Dual Audio Power amplifier assembled in the @ Clipwatt 11 package, specially designed for high quality sound application as Hi-Fi music centers and stereo TV sets. The TDA7265SA is pin to pin compatible with TDA7269, TDA7269A, TDA7269SA, TDA7265,TDA7499, TDA7499SA. 

Circiut Diagram:
18W+18W Stereo Amplifier
18W+18W Stereo Amplifier

11/03/2014

Audio signal processing 1 W × 2-channel

Overview:
AN12942B is an one-chip IC for the stereo speakers which can output 1 W by 8 Ω, headphone amplifiers, line amplifiers, and electronic volumes. The AGC circuit is built-in to prevent the resonance or the vibration by the speaker’s energy and the clipping distortion what is  called "broken up sound".  Also the AN12942B is built-in power saving on/off function automatically detecting input signal to save the power of speaker  amplifier.

Circuit Diagram:
Audio signal processing
Audio signal processing

9/12/2014

Dual 40W Audio Power Amplifier with Mute

Circuit Diagram:
Dual 40W Audio Power Amplifier with Mute

4/13/2014

Guitar Amplifier circuit



Pedal ("lotion», stomp-box) is designed to simulate the sound of a tube amp channels slaboperegruzhennogo Fender Twin Reverb and implementation effects «Clean» and «Crunch». A distinctive feature of this pedal is very plausible imitation tube sound, and low power consumption of the battery. («Clean» - sound with virtually no distortion, but with the corrected tone, usually bright, with a predominance of high frequencies. «Crunch» - sound on the verge of distortion and with a little overdrive). The article is intended not only for professionals, musicians, but also for beginners because some terms and concepts considered overly detailed, pro please treat this with understanding ...
A little history

In contemporary music, electric guitar takes about the same place as in the classical violin. Some styles of rock without electric possible at all ... For all that is in itself an electric guitar - an instrument with a rather weak capacity (to see this - turn it directly into a mixing console). That's because electric sound is largely determined by the amplifier, or "gadgets" / preamp, in which it is included. Moreover, unlike the art audiophile distortion guitar sound play a key role. Traditionally considered the best sounding tube guitar amplifiers. In addition, there are both subjective and objective reasons - firstly, this sound familiar to most - because electric guitar was born at a time when other amps just was not in the second - that tube amplifiers have several very valued musicians properties rarely encountered in semiconductor chips: first of all the dynamics and readability. List the advantages of tube amplifiers can continue, but I have identified, in my opinion, the main thing.

Strictly speaking - "Lamp" is neither a guarantee of good sound (meet and lamp units with a hideous sound), nor the only possible way it was received. After all, despite all the advantages, disadvantages in lamp technology is also missing - this fragility lamps, and high cost, and weight / size. That is why since the advent of transistors, and later - chips, and large firms, and some enthusiasts do not stop trying to recreate the sound of a tube on the semiconductor elements. While it is still too early to say that this problem is solved completely and finally, I know some very striking examples of successful solutions, and single enthusiasts often ahead of even large companies - manufacturers of guitar equipment.

On receipt of the effect of "distortion" written hundreds of articles, there are thousands of schemes. But the sound, uncluttered, and weakly podgruzhenny amplifier is often overlooked, especially budding guitarists. But fate does not end with "metal", and it, darling, too, "wedge" will not spoil ... Another reason for the small number of such schemes - the relative difficulty of getting the right sound. It turns out - strong overdrive with a decent sound easier to obtain than a light bluesy crunch ... It is in the small-Heine particularly noticeable difference between the vacuum tube and semiconductor devices - light enters the restriction very smoothly, asymmetric, because the beginning of distortion and time-limited out of it almost unnoticeable. In addition - due to the nature Lamp restrictions - limited range of higher harmonics of the signal is poor, the sound does not cut the ear even on chords and excellent dynamics and allows to play loud and quiet, and to allocate the necessary notes and volume and tone ... The majority of the semiconductor pedal has a rather sharp threshold limit (usually done by limiting diodes or LEDs), causing distortions are very sharply above this threshold, and disappear when the attenuation of the signal below it, on hearing less pleasant than a smooth threshold lamp ... Dynamics semiconductor pedals usually much worse tube, after exceeding the threshold limits the tone and volume depend little on the tone and volume of the signal from the guitar. That in tube circuits obtained by "self-other" should be achieved in semiconductor artificial and often quite clever ways.

Among the classic tube amps kind of standard "wedge" is a Fender Twin Reverb, in fact, this scheme then used repeatedly in different amplifiers Fender, and in amplifiers and preamps other firms. Offered to your attention the scheme - one of the attempts to reproduce the sound of the legendary amplifier based on a semiconductor ...
Scheme pedal

Block diagram of the device copies the prototype: the sound is two cascades tembroblok in between. The resemblance to the prototype and ends ...


In the prototype, the first stage is built on the vacuum triode 12AX7 and has a gain (CG) of about 50. With a supply voltage of about 300V and cascade input signal levels, typical for electric guitar, the output stage is not limited to "focus" in the food.

The proposed device is powered by a 9V Crowns, same scale input voltage circuit may reach 4-5 V, depending on the type of guitar pickups and aggressiveness artist ... Because in the proposed scheme, the first stage is built repeater that provides normal operation with real signals. Repeater functions as a high output impedance matching guitar and relatively low input impedance TONE. With this input impedance corresponds to the standard pedal for guitar amps 1 Mohm.

Operational amplifier as a repeater chosen for several reasons: although this node could be done and FET real benefits such a decision would not bring. The fact that, although the FET and has a low noise level, the transmission coefficient of such a cascade is about 0.7-0.8 (1 for the OS), and it has more circuit parts, and most importantly - the relatively small gain of the second stage either it does not reveal the advantages of the cascade on Fri Also - in the applied chip TL072 includes two OS that makes use of one of the op-amp follower and economically justified, especially as the typical current consumption TL072 does not exceed 4 mA. But replacement by "next of kin» TL062 is not recommended - even though it consumes 10 times less noise properties it no longer satisfy the requirements of this scheme - in all its noise Heine appears noticeably audible hiss-...

Tone-in scheme similar to Fender pedal used, although it has a couple of differences - component values ​​are translated into downward resistance, as the signal swing is many times smaller than the prototype, and depth adjustment in each frequency band markedly increased (best ratings were picked up using in circuit simulation program simulator Micro-Cap 8 followed by thorough otslushivaniem and comparison with the prototype).

To reduce the audible noise level scheme, the controller gain is not worth after TONE, as in the prototype - and adjusts the gain of the second stage. Stock adjustment allows you to get sound from the wedge to the midgeyna (using guitars with pickups hambakernymi). The second feature of this switching regulator gain is that by increasing the gain changes the frequency response of the cascade - through capacitor C10 at high gains trimmed excess for this mode high frequency components from the input circuit.

Gain of the second stage at the minimum gain is about 11 - it is done to compensate for signal attenuation TONE. Amplification of the stage at the maximum gain - about 110.'s Not very much, but enough to simulate load the V channel. Further increase gain no special meaning - the sound becomes less "tube" and loses the similarity to the prototype.

Actually, imitation Lamp restrictions combination gives TL072 op-amp with MOSFET transistor 2n7002. It therefore should not be changed to another type TL072 op-amp - not all types are suitable for the proper operation of this scheme. Diode VD3 does not allow internal reverse diode transistor VT1 open at negative half-wave output voltage.

That's roughly the shape looks a limited output voltage DA1.2 sinusoidal input signal (shape depends on the signal frequency and the position gain and tone controls).



In its form, this waveform is very similar to the waveform of the tube stage, an inverted "upside down", here at the anode lamp waveform 12AX7:



Inclination of the upper shelves at DA1.2 limitations due to the fact that at the moment of the waveform capacitance C9 in the layout was par value of 0.1 microfarads, increasing it to 1 uF slope almost leveled. Actually slabogeynovy instrument was born almost by accident - "research" conducted for the production emulator haygeynovogo "red" channel amplifier Mesa Boogie Dual Rectifier. During the simulation form limited signal seemed strangely familiar and it was decided to use the stage for peaceful purposes slabogeynovyh ... It is because in the first layout was 0.1 microfarads capacitance - this heritage haygeynovoy scheme ...

Clearly that rounding signal at the start of limitations - rather smooth, which provides a relatively low level of higher harmonics. And with an increase in the amplitude of the input signal is a smooth rounding first upper half wave, then a more stringent limit bottom - the distortion increases smoothly as in the tube stage.

The second positive feature ligament TL072 op-amp with MOSFET transistor 2n7002 - this asymmetry restrictions. As in the case of the lamp first starts to confine one halfwave of the output signal (the lamp - the bottom, we have - the upper, which is absolutely essential, since the phase rotation of 180 degrees occurs repeatedly in the subsequent amplification). The shape restrictions caused MOSFET'a properties that limit makes smoother than the diode. Then comes into play OS limitation on Nutrition (namely TL072, namely on the lower half-wave in this scheme gives a form of restriction attempts to make it otherwise lead to a much more acute angles at the entrance to the limit and noticeably worse sound). While still a shift output DC - similar tube stage that slightly changes the duty cycle of the output signal and a very positive effect on the dynamics of sound.

Tumbler «Bright» works like prototype - adds to the sound of "glass" when necessary. Capacitor C12 slightly softens tone output. In the case of voiced amplifiers to increase its worth, in the case of impaired hearing sound - remove.

Capacitor C7 together with button-effect switch is used to "kill" circuit emulator when the bypass - in izbezhanie penetration interference with the signal output of the circuit in bypass.

Bypass this pedal is a passive type, one of the varieties of true-bypass - the so-called split-bypass when the signal is not disconnected from the input circuit. That is why when the bypass is desirable "turn off" (from the word mute mute) the signal flow through the restrictor - otherwise possible penetration of harmonics limited output signal that is heard as unpleasant podzuzhivanie. Passive bypass this pedal is fully justified - because of low marginal gain pedal is not prone to self, and in co-operation with passive devices haygeynovymi bypass has lower noise and simplifies the pedal. If desired, it is easy to make active - follower DA1.1 in the scheme already, just add a capacitor and its output resistor to ground to eliminate clicks. Alternatively, the yield after nondisconnectable repeater can be used to connect the tuner (if the optional output jack, naturally) ...

Food scheme is carried out either by batteries "Crown" or an external power supply 9-12V via a standard connector block desirable stabilized.For reverse polarity protection diodes are VD4, VD5, through which automatically connects the power supply with a higher voltage, and if disconnected the power supply will automatically connect battery. Capacitor C11 eliminates the possible self-excitation circuit and increases battery life. It is possible to use only one diode, and switching power supply battery and carry in the power connector - most serial connector has an additional contact for the battery. Naturally - with this method when the battery is disconnected the power supply on the stage does not automatically connect, and more - will probably need to isolate the power connector from the body, it is not easy, if it is attached to the nut housing. Resistors R2, R3 and capacitor C2 create point "artificial ground" for normal OS from a single supply.

Warning: To Timer battery when unplugging from the input jack, negative cable from the battery is attached not to the ground (GND), and to the middle pin (ring) 
Connector Input. With the inclusion of a mono jack guitar cord this pin is shorted to ground and connect the battery.
Design and printed circuit boards

Many possible design options - it all depends on the imagination of the designer and opportunities. In the author's version dvuhplatnoy design - built on the same board tembroblok, on the other - all the rest, except the connectors and switches. At the same board soldered to the potentiometers, bolted to the body, and, thanks to its light weight, do not require additional bracing. Thus, the potentiometers are arranged in two rows, and perpendicular to the board and the housing cover parallel to each other. The disadvantage of this design - the need to connect the board to each other, as well as jacks and switches mounting wires. Same dignity - compactness and pedal boards in general. 
Points on the boards designated by single letters, interconnected (same points, of course) mounting wires. These same letters mark corresponding points on the concept.

The proposed fees are designed for installation of SMD components - this chip, transistors, diodes and resistors majority. An exception is made for capacitors "the pass" by the sound - there is recommended to use film capacitors, as the most suitable. It is not "snobbery tube", and the result is real auditions and measurements - Ceramic Capacitors noticeably louder, however, it becomes especially noticeable when lamp supply voltages and sweep signal in the circuit, because in the absence of the film can be at your own risk and put the ceramics, the more that the scheme itself and voiced slabogeynovaya.

In the absence of skill work with SMD quite possibly reroute fee under the usual details - though at the same time and will significantly increase its size, and the manual manufacturing (LUT) will repeatedly increase work drilling holes. Alternatively, the circuit can be assembled on a breadboard, completing installation scraps conclusions elements and isolated postings.

As the "main" button for effect On / Off switch used standard DP2T. 
As a body in the author's version used aluminum body Pro'sKit 203-125B. 
Perklyuchatel Bright - mikrotumbler 2 positions. Resistor R15 is soldered directly to his conclusions. 
LED display - ultra-bright 3 mm, color - to taste. Ultrabright LED current can reduce it to about 0.5 mA with sufficient brightness, which prolongs battery life. If applied LED with clear lens, its worth zamatirovat fine sandpaper-nulevkoy.

Making your body can be very different - from polishing body engraved with inscriptions, and to panel fabrication method METALLOGRAFIKA. 
In the author's version of the hull was painted with powder paint and lettering are made in the form of stickers on transparency film (booked in an advertising firm) - this method is well suited for small-scale or production unit.

Here is the finished device in the author's version:


Recommendations for use

Most standard will be the inclusion of pedal effects chain after device with an active bypass (such a device, it is desirable to have the first after the guitar in the effects chain, usually overdrive effect - "drive"). Pedal is designed for use in conjunction with guitar amps (and speakers, cabinets!), Therefore, has no filter comprising spikosimulyatora (device that simulates the frequency response guitar cabinet). This means that when you turn into a regular household power or mixing console for more gain sound can be frustrating, "sand." With this inclusion should not add a lot of gain and include mode «Bright». It is also possible to include the pedal before the main "drive" - ​​when this pedal can be used not only as a generator pedalborda channel, but also as a "warmer" for the main "drive".

Nourish pedal comprising pedalborda better from the power supply - usually this block is common to several effects. Current consumption pedal is about 4 mA, so it is without any complications and unintended consequences can be connected to an existing block (recommended stabilized power - or more gain on possible overtones and background). If it is possible - better to increase the supply voltage to 12V - with little noise and improved dynamic properties of the pedal. If the pedal is used separately - powered by Kroon is justified because of fresh alkaline batteries when the 5 hours a day with a pedal operated for approximately six months. Low battery indication is the dim glow of the LED for effect and degrade sound.
Glossary (dictionary of specific terms and slang)

" Wedge »(« ​​Clean ») - sound" clean "guitar (not to be confused with the bypass), with virtually no distortion, but with the corrected tone, usually bright, with a predominance of high frequencies.

" Crunch »(« Crunch ») - the sound to the point of distortion and overdrive with a small, typical for blues, rock and roll, hard rock, and some styles of" metal ". Very expressive, and allows execution bust chords.

" bells and whistles "- common slang name among guitarists effects pedals for guitar. Typically connected at the entrance of the guitar amplifier.

" Preamp "- guitar preamp, as a rule - 2 or 3 channel, usually not connected into the input of the guitar amplifier, and« Return »loop externalities - ie directly to the power amplifier.

" Dynamics "- property pedal / preamp allocate note played more vigorously from weaker music, sound volume and timbre. In the case of devices with more gain - it's not as easy as it seems at first glance, because they have the property to align the volume of notes by limiting (and "extend" their duration).

" Readability "- property pedal / preamp do not" mess "sound when playing chords. Each note in the chord should be heard and not interfere with the rest. This gives the intelligibility of the sound at different riffs primarily and significantly improves the readability of the guitar in the mix.

" Gein »(« Gain ») - the ratio of the gain of the device to the threshold limit. More generally - the power amp overdrive.

" Haygeyn »(« Highgain ») - a kind of amps / preamps with an extended range of adjustment in the direction of maximum gain. Widely used in modern heavy music styles. Usually haygeynovye devices "incarcerated" under it more gain and small Heine sound unclear what causes such devices do multichannel - crunch channel usually contains less stages and has a different frequency response.

" Midgeyn »(« Midgain ») - a kind of amps / preamps with an average gain control range. Sound - from the wedge / crunch to sredneperegruzhennogo, typical for old-school rock, although widely used today.

" Bright "- underline mode for the treble range of electric guitars, adds brightness and sonority in the sound.

" Bypass »(« bypass ») - mode" bypass ", ie direct signal flow through the device without treatment.

" True-Bypass "- in terms of technology - passive bypass for mechanical contacts, without the use of electronic keys and active elements.From the perspective of some of the musicians - the only right kind of bypass ....

" humbucker »(« Humbacker ») - the type of pickup with two coils on a common magnetic system characterized by low sensitivity to interference and powerful output.

" Sand "- the high-frequency overtone flowing in the sound distorting pedals. When using the guitar speakers largely filtered out by the speaker.

" Drive »(« ​​Overdrive ») - channel preamp or lotion used to produce sound overdriven amplifier. Sometimes referred to as a soft overdrive overdrive, distortion - hard, but in fact - is the same thing ....

" Warmer "- pedal included between the guitar and amplifier / lotion / preamp for" heating "- increase the overall gain and changes in timbre.Typically uses a variety of boosters and overdrive with not much more gain.

" Spikosimulyator "- a device to simulate the sound through a guitar speaker / cabinet. Typically configured as a separate lotion, is sometimes included in the distorting preamps / lotions. Is a special filter, which roughly corresponds to the AFC AFC guitar cabinet.

" Cabinet "- guitar speaker, often on 4 speakers 12".

" AFC "- frequency response.

Original article sourse cxem.net

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200W Audio Amplifier Circuit

Circuit description: Connecting two TDA2030 thru cheap power transistors we can create a amplifier wich can deliver a higher power. Wi...

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