Showing posts with label or. Show all posts
Showing posts with label or. Show all posts

Sunday, September 14, 2014

4x7W OR 2x22W CAR RADIO POWER AMPLIFIER

Features:


  • HIGH OUTPUT POWER CAPABILITY:
  • 4 x 9.5W OR 2 x 32W/4Ω MAX
  • 4 x 8.5W OR 2 x 28W/4Ω EIAJ
  • 4 x 7W OR 2 x 22W/4Ω @14.4V,1KHz; 10%
  • MINIMIZED EXTERNAL COUNT
  • - NO NEED OF DECOUPLING CAPACITORS
  • - NO NEED OF BOOTSTRAP CAPACITOR
  • - NO NEED OF EXTERNAL COMPENSATION
  • - INTERNALLY FIXED GAIN (20dB)
  • POP-FREE AUDIO SECTION
  • ST-BY FUNCTION (C-MOS)
  • MUTE FUNCTION (C-MOS)
  • CLIP DETECTOR, THERMAL WARNING,
  • SHORT CIRCUIT DETECTION
  • BUILT-IN VOLTAGE REGULATORS:
  • - 5V @ 150mA WITH RESET
  • - 5V @ 500mA WITH ST-BY
  • - 8.5V @ 200mA WITH ST-BY
Circuit Diagram:
TDA7451 2x22 W

TDA7451 4x7W

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Friday, September 12, 2014

Converter 12 Vdc to 230 Vac or Inverter



As shown in the Inverter schema diagram obove , Its used as the oscillator stage astable multivibrator contained in IC1, a CMOS 4047 (this cult series 40xx series) by varying the resistance value of R1 trimmer (220 k total resistance) can vary the oscillation frequency of 40 Hz to 70 Hz square wave, phase shifted by 180 °,  Output pin 10-11 will drives two NPN transistors TR1-TR3, which in turn is fed to the TR2-TR4. 
Converter 12 Vdc to 230 Vac or Inverter Schematic 
12
The diodes DS2-DS3, mounted on the output transistors TR2-TR4 are used to protect against voltage surges appearing across the windings V 9 + 9 V transformer T1. For the transformer T1, I used an ordinary mains transformer (primary 230 V so) with a secondary dual 2 x 9 V. 
inveter-component-pin-layout
Parts List: 
R1 ……. 220 k trimmer 
R2 ……. 330 k 
R3 ……. 680 
R4 ……. 2.2 k 
R5 ……. 2.2 k 
C1 ……. 4.7 nF polyester 
C2 ……. 220 uF electrolytic 
DS1 ….. 1N4004 
DS2 ….. 1N4004 
DS3 ….. 1N4004 
DL1 ….. LED 
TR1 ….. BC184 NPN 
TR2 ….. NPN BDX53C 
TR3 ….. BC184 NPN 
TR4 ….. NPN BDX53C 
IC1 …… 4047 CMOS 
T1 …….. transformer sector 80 VA primary 230 V 0.35 A / Secondary 2 x 9 V 3.5 A 
S1 ……. switch 
Note : 
  • Two final power TR2-TR4 should be mounted on the right size heatsink, otherwise they will overheat. You can choose from MJ4033 – MJ3007 or more, provided that the NPN.
  • The maximum power output that can be used depending on the size of the core of the transformer T1, the VA is: with 50 VA can be taken in the secondary 230 V 0.2 A (current consumed by the end will be 4 A) with 90 VA can be taken on the secondary 230 V 0.4 a (current consumed by the end will be 7 A).
  • To power the schema from the 12V battery, it will take over at least 1.8 millimeters in diameter, to avoid loss by Joule effect.
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Sunday, August 17, 2014

Led or Lamp Flasher Circuit

This schema was designed to provide that continuous light lamps already wired into a schema, become flashing. Simply insert the schema between existing lamp and negative supply. Especially suited for car or panel pilot lights, this device can drive lamps up to 10W.











Parts:

R1 = 6.8K
R2 = 270K
R3 = 220K
D1 = 1N4002
C1 = 220uF-25V
C2 = 10uF-25V
Q1 = BC557
Q2 = BD139
B1 = Any type in the range 3-24V
B1 = Suited to the lamp adopted
LP1 = Filament Lamp 10W-3V to 24V
SW1 = On-Off Switch




Notes:

* Break lamp to negative supply connection, and then insert the schema between existing lamp connection and negative supply (respecting polarities!).
* C1 value can be varied from 100 to 1000µF or higher, in order to change flashing frequency.
* Although rather oversized, this schema can also drive any LED, providing a suitable resistor is fitted in series with the light emitting device.
* The resistor should lie in the 47R to 2K2 range, d
epending on supply voltage.
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