Showing posts with label led. Show all posts
Showing posts with label led. Show all posts

Saturday, November 1, 2014

LED BACKLIGHTING SOLUTION WITH LM3430 and LM3432 ELECTRONIC DIAGRAM


LED BACKLIGHTING SOLUTION WITH LM3430 and LM3432 ELECTRONIC DIAGRAM

The LM3432 is a 6-channel high voltage current regulator which provides a simple solution for LED backlighting applicationsand the LM3430 is a companion device to supply high voltage required to drive serially connected LED strings. The LM3430 and the LM3432 provide a complete solution to most HB-WLED backlighting applications for notebook and PC monitor. In this application note, a typical example for a solution to drive six strings of twelve LEDs in series running at 20mA per string is described in details.
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Friday, September 12, 2014

Audio power LED

General description:

This is a circuit with a two-color LED indicates how much power an amplifier delivers. The circuit is connected across the speaker terminals. At low power, the LED shows green light, at higher power, the color changes to orange to red. 

Circuit diagram:




Part list:

R1 = 10 k
R2 = 2.2 K?
R3, R4 = 100 Ω
C1 = 10 uF / 16 V
D1, D2 = 1N4148
D3 = duo LED red / green
T1 = BC547B

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Friday, September 5, 2014

Cheap LED flashing circuit



This is an simple and cheap LED flashing schema.This schema work for at lease 10V-13V power supply. Link

Data sheet 2N2222 which is equivalent of KSP2222. 
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Thursday, August 28, 2014

Cheap LED flasher Wiring diagram Schematic

Cheap

This two LED flasher schema uses any DC supply from 3V to 12V. Flash rate is controlled by R1,C1 and R2,C2. Larger values create slower fash rates, smaller values higher flash rates.
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Wednesday, August 20, 2014

40 LED Bicycle Light Wiring diagram Schematic

The 555 schema below is a flashing bicycle light powered with four C,D or AA cells (6 volts). Two sets of 20 LEDs will alternately flash at approximately 4.7 cycles per second using RC values shown (4.7K for R1, 150K for R2 and a 1uF capacitor). Time intervals for the two lamps are about 107 milliseconds (T1, upper LEDs) and 104 milliseconds (T2 lower LEDs). Two transistors are used to provide additional current beyond the 200 mA limit of the 555 timer. A single LED is placed in series with the base of the PNP transistor so that the lower 20 LEDs turn off when the 555 output goes high during the T1 time interval. The high output level of the 555 timer is 1.7 volts less than the supply voltage.

Circuit 

Adding the LED increases the forward voltage required for the PNP transistor to about 2.7 volts so that the 1.7 volt difference from supply to the output is insufficient to turn on the transistor. Each LED is supplied with about 20mA of current for a total of 220mA. The schema should work with additional LEDs up to about 40 for each group, or 81 total. The schema will also work with fewer LEDs so it could be assembled and tested with just 5 LEDs (two groups of two plus one) before adding the others.
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Saturday, August 16, 2014

16 Stage Bi Directional LED Sequencer Wiring diagram Schematic

The bi-directional sequencer uses a 4 bit binary up/down counter (CD4516) and two "1 of 8 line decoders" (74HC138 or 74HCT138) to generate the popular "Night Rider" display. A Schmitt Trigger oscillator provides the clock signal for the counter and the rate can be adjusted with the 500K pot. Two additional Schmitt Trigger inverters are used as a SET/RESET latch to control the counting direction (up or down). Be sure to use the 74HC14 and not the 74HCT14, the 74HCT14 may not work due to the low TTL input trigger level. When the highest count is reached (1111) the low output at pin 7 sets the latch so that the UP/DOWN input to the counter goes low and causes the counter to begin decrementing. 

When the lowest count is reached (0000) the latch is reset (high) so that the counter will begin incrementing on the next rising clock edge. The three lowest counter bits (Q0, Q1, Q2) are connected to both decoders in parallel and the highest bit Q3 is used to select the appropriate decoder. The schema can be used to drive 12 volt/25 watt lamps with the addition of two transistors per lamp as shown below in the section below titled "Interfacing 5 volt CMOS to 12 volt loads"

16 Stage Bi-Directional LED Sequencer Circuit Diagram

 

16 Stage Bi-Directional LED Sequencer Circuit Diagram
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Thursday, August 14, 2014

100W LED Dimmer Wiring diagram Schematic


This is 220 Ac light dimmer schema.This schema can load up to 100W.Use a common diac and common triac for this schema.By usind VR1 you can contrall the power of load.




Note

# Triac needs a heat sink.
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Tuesday, August 12, 2014

1 5 volt dual LED flasher Wiring diagram Schematic

This 1.5 volt led fasher runs more than a year on a single d" cell and alternately flashes 2 LEDs at about a 1 second rate. The schema employs a 74HC14 CMOS hex inverter that will operate at very low voltages (less than 1 volt). One section is used as a squarewave oscillator (pins 1 and 2), while the others are wired to produce a short 10mS pulse on alternate edges of the square wave so the LEDs will alternate back and forth. The output sections each use a capacitor charge pump to increase the voltage for the LEDs. 

The schema draws an average current of 800uA from the D battery and the LED peak current is about 40mA with a fresh battery and drops to about 10mA as the battery voltage falls to 1.1 volts. The capacity of a alkaline D cell is about 12 amp hours with a cutoff voltage of 1.1 so the schema should run about 12/.0008 = 15000 hours or maybe 625 days, but I havent verified that yet. The idea for this schema came from a single 1.5 volt LED flasher by Dave Johnson that can viewed at

1.5 volt dual LED flasher Circuit Diagram


1.5 volt dual LED flasher Circuit Diagram




Author : Bill Bowden 
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