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Showing posts with label controller. Show all posts
Showing posts with label controller. Show all posts

Monday, May 13, 2013

Brightness Controller Circuit For Small Lamps and Leds

This device was designed on request; to control the light intensity of four filament lamps (i.e. a ring illuminator) powered by two AA or AAA batteries, for close-up pictures with a digital camera. Obviously it can be used in other ways, at anyones will.IC1 generates a 150Hz square wave having a variable duty-cycle. When the cursor of P1 is fully rotated towards D1, the output positive pulses appearing at pin 3 of IC1 are very narrow.
Bulb LP1, driven by Q1, is off as the voltage across its leads is too low. When the cursor of P1 is rotated towards R2, the output pulses increase in width, reaching their maximum amplitude when the potentiometer is rotated fully clockwise. In this way the bulb reaches its full brightness.





Parts:

P1 = 470K
R1 = 10K
R2 = 47K
R3 = 1.5K
C1 = 22nF-63V
C2 = 100uF-25V
D1 = 1N4148
D2 = 1N4148
Q1 = BD681
B1 = 2xAA cells in series
IC1 = 7555 or TS555CN
LP1 = 1.5V 200mA Bulb
SW1 = SPST Switch

Notes:

* LP1 can be one or more 1.5V bulbs wired in parallel. Maximum total output current allowed is about 1A.
* R2 limits the output voltage, measured across LP1 leads, to 1.5V. Its actual value is dependent on the total current drawn by the bulb(s) and should be set at full load in order to obtain about 1.5V across the bulb(s) leads when P1 is rotated fully clockwise.

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Tuesday, April 30, 2013

Outdoor Lighting Controller

When you step out of your brightly-lit house  into the darkness, it takes a while for your  vision to adjust. A solution to this problem  is this outdoor light with automatic switch-off. As a bonus, it will also make it a little bit  easier to find the keyhole when returning  late at night. Often no mains neutral connection is avail-able at the point where the switch-off timer  is to be installed, which makes many circuit  arrangements impractical. However, the circuit here is designed to work in this situation. The design eschews bulky components such as transformers and the whole unit can  be built into a flush-mounted fitting. The circuit also features low quiescent current consumption.

Outdoor Lighting Controller Circuit Diagram :

Outdoor Lighting Controller-Circuit Diagram
The circuit is star ted by closing switch (or  pushbutton) S1. The lamp then immediately receives power via the bridge rectifier. The drop across diodes D5 to D10 is 4.2 V, which provides the power supply for the delay circuit itself, built around the CD4060 binary  counter.

When the switch is opened the lighting sup-ply current continues to flow through Tri1. The NPN optocoupler in the triac drive circuit detects when the triac is active, with antiparallel LED D1 keeping the drive sym-metrical. The NPN phototransistor inside the  coupler creates a reset pulse via T1, driving  pin 12 of the counter. This means that the  full time period will run even if the circuit is retriggered. The CD4060 counts at the AC grid frequency.  Pin 3 goes high after 213clocks, which corresponds to about 2.5 minutes. If this is not long  enough, a further CD4060 counter can be cascaded. T2 then turns on and shorts the internal LED of opto-triac IC2; this causes Tri1 to  be deprived of its trigger current and the light  goes out. The circuit remains without power until next triggered.

The circuit is only suitable for use with resistive loads. With the components shown (in particular in the bridge rectifier and D5 to  D10) the maximum total power of the connected bulb(s) is 200 watts. As is well known, the filament of the bulb is most likely to fail at the moment power is applied. There is little risk to Tri1 at this point as it is bridged by  the switch. The most likely consequence of overload is that one of diodes D1 to D6 will  fail. In the prototype no fuse was used, as it would not in any case have been easy to change. However, that is not necessarily recommended practice!
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Saturday, April 13, 2013

Cheap Pump Controller

This easy but effective circuit can be utilized to keep an eye fixed on water level in a container. The prototype is used to pump water out of a bucket that accumulates condensation from a house air-conditioning gadget. The design is primarily based around a 555 timer (IC1). Although the timer in configured as a mono-stable, it lacks the usual timing capacitor from pin 6 to floor. Instead, a metal probe inserted in the water offers a present course to a second, floored probe. When the water degree within the container reaches a third (\"high\") probe, the trigger input (pin 3) is pulled low, swaping the 555 output high and energizing the relay by the use of transistor Q1.

Circuit diagram:
 
Cheap Pump Controller Circuit Diagram

Once the water degree drops below the \"low\" probe, the brink input (pin 6) swings high, swaping the output (pin 3) low and the relay and pump off. The two 100kΩ pull-up resistors will also be replaced with larger worths if extra sensitivity is required (eg, if the 555 doesn’t trigger). A change (S1) can be integrated to avoid the relay for handbook emptying. The \"low\" probe should be placed in order that the pump doesn’t run dry.



The high degree probe is positioned on the degree that you want the pump to begin out. Since the water is held at ground potential, it's a should to use stainless-steel or copper wire to gradual corrosion. With water fountain pumps available for not up to $10, this circuit offers an affordable alternative for folks who have an air-conditioner on an interior wall and don’t need to be regularly emptying the bucket on humid days.


http://www.ecircuitslab.com/2011/08/cheap-pump-controller.html
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Saturday, April 6, 2013

Tone controller


This low distortion tone control circuit is used LM1036 IC to control the Bass, Treble, Balance and volume of any power amplifier. You can use this with Hi-Fi audio, car audio, TV audio systems. The specialty of this tone control circuit is you can supply 9V to 16V DC current. But never go to try more than 16 Volts.  Also it has a large range ( 75 dB ) of volume.

Output capacitors should be 10uf 25 Volts. If you want to add this to a stereo amplifier then you need to make one more tone control. To get best results use screen wires for controllers and inputs. Also try to use half watt resistors and when fixing capacitors make sure to consider the polarities.


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