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Rangkaian Lampu Emergency IC 555

RANGKAIAN MIKROKONTROLER at89s51 JAM DIGITAL

source:engineersgarage.com
Rangkaian Microcontroller at89s51

INTRODUCTION:
Infrared Transmitter-Receiver with 555
AT89S8252 Electronic Voting Machine Circuit Diagram
Features of the electronic voting machine include avoidance of invalid votes and reduction of counting time and the consequent expenditure incurred on manpower deployment. By using the Microcontroller the voting machine can be built up easily and it will make simple to operate.
AT89C2051 Digital Visitor Counter Circuit

AT89C2051 Digital Countdown Timer Schematic

The alarm is stopped by pressing the start/stop button.
Downloads:
Download the Source code from here:Download the PCB from here:
Simple Balanced Input with Gain Circuit Diagram

Parts list :
R1-2= 2.2Kohms metal film 1%
C1-2= 68pF ceramic OR milar
ICI= NE5532 -TL072
R3= 22Kohms metal film 1%
C3= 47uF 25V
RV1= 10Kohms Log.
R4= 6.8Kohmsmetal film 1%
C4= 10uF 25V
RV2= 47Kohms Log.
R5= 100ohms
C5-6= 100nF100V cer. OR mkt
J1= Female CANNON plug
R6-7= 47Kohms
C7= 10uF25V
Symmetrical Class-A Amplifier Circuit

Part list:
R1= 100Kohm
R9= 100Kohm
C6-7= 47uF 40V
R2-3= 82Kohm
R10= 1Kohm
T1-2= BC 550C
R4-5= 22Kohm
C1-3= 10uF MKT
T3-4= BC 560C
R6-7= 100ohm
C2= 56pF ceramic
T5= BC 516
R8= 5.6Kohm
C4-5= 100nF 63V
T6= BC 517
Low Impedance Simple Preamplifier Circuit

This is a simple low impedance preamplifier circuit diagram. It used to amplify an audio signal. This circuit use a 12Vdc sources and very simple because work with less components.
Part list:
R1= 47Kohm
R10= 820 ohm
C6-8= 47uF 25V
R2-5= 15Kohm
R13-14= 27 ohm
C7= 2.2uF 100V MKT
R3-4= 1.5Kohm
R15= 100Kohm
Q1-4-5= BC550C
R6-11= 1.5Kohm
R16-17= 22 ohm
Q2-3-6= BC560C
R7-12= 1.8Kohm
C1= 120pF
J1= 5pin connector
R8= 8.2 ohm
C2-5= 100nF 100V MKT
All R is metal film 1%
R9= 150 ohm
C3-4= 220uF 16V
Rangkaian Unipolar Stepper Motor Driver
The following schematic is for the printed circuitboard version of the 2008 stepper motor driver.
Basic Controls For The Stepper Driver
The direction is selected by an ON-OFF-ON toggle switch.
The stepping rate is shown being set by a 1 Megohm potentiometer (RT). Using the component values shown for R1, RT, R2 and C1, the calculated step rate range is between 0.72 steps per second (1.39 seconds) to 145 steps per second.
Basic Stepper Motor Driver Operation
- The LM555 (IC 1) astable oscillator produces CLOCK pulses that are fed to PIN 11 of the 74194 (IC 2) shift register.
Each time the output of the LM555 timer goes HIGH (positive) the HIGH state at the 74194's OUTPUT terminals, (PIN's 12, 13, 14, 15), is shifted either UP or DOWN by one place.
The direction of the output shifting is controlled by switch S1. When S1 is in the OFF position (centre) the HIGH output state will remain at its last position and the motor will be stopped.
Switch S1 controls the direction indirectly through transistors Q2 and Q3.
When the base of Q2 is LOW the output shifting of IC 2 will be pins 15 - 14 - 13 - 12 - 15; .etc.
When the base of Q3 is LOW the output shifting of IC 2 will be pins 12 - 13 - 14 - 15 - 12; .etc.
The direction of the output's shifting determines the direction of the motor's rotation.
The outputs of the 74194 are fed to four sets of paralleled segments of a ULN2803 Darlington driver (IC 3).
When an input of a ULN2803 segment is HIGH, its darlington transistor will turn ON and that OUTPUT will conduct current through one of the motors coils.
As the coils of the motor are turned ON in sequence the motor's armature rotates to follow these changes. Refer to following diagram.
Skema Solar Panel Current Meter
Skema Solar Panel Current Meter
Measured Current: 0-10 Amps DC, can be increased by changing the resistors.
Skema Rangkaian Subwoofer Filter Mobil

Notes.
- Assemble the circuit on a good quality PCB.
- The circuit can be powered from 12V DC.
- IC1 must be mounted on a holder.
- S1 is a DPDT switch.
- R13 should be a dual gang linear POT.
- C5 and C6 must be polyester capacitors.
- POT R13 can be used for adjusting the pass frequency.
- POT R7 can be used for adjusting the level.
Skema Rangkaian Sound Tv Toshiba

Skema Rangkaian PCM2704 Sound Card
Realization:
Conclusion:
Rangkaian FM-VHF Amplifier Booster Transmitter
Specifications
Output Power: 500mW
Input Frequency: 50MHz - 1300MHz
Voltage Supply: 9-12V
Component List
1x High Performance FM / VHF Amplifier Chip
1x 10uH Choke
1x 220 Ohm
3x 1nF Ceramic Capacitor
1x Instructions and Schematic
Automotive 12V to +-20V Audio Amplifier Converter

The limitation of car accumulation voltage (12V) armament to catechumen the voltages to college in adjustment to ability audio amplifiers.
In actuality the max audio ability x apostle (with 4 ohm impedance) application 12V is (Vsupply+ - Vsupply-)^2/(8*impedance) 12^2/32 = 4.5Watts per channel, that is laughable...
For powering accurately an amplifier the best is to use a symmetric accumulation with a aerial voltage differential. for archetype +20 - -20 = 40Volts
in fact
40^2/32 = 50 Watts per approach that is respectable.
This accumulation is advised for two channels with 50W max anniversary (of advance it depends on the amplifier used). Though it can be calmly scaled up or the voltages afflicted to access altered values.
Overview - How it works
It is a archetypal push-pull architecture , demography affliction to access best agreement (to abstain alteration walking). Accumulate in apperception that this ambit will adsorb abounding amperes (around 10A) so booty affliction to reinforce ability advance with lots of adhesive and use abundant affairs from the array or the voltage will bead too abundant at the input.
The agent charge be advised to abate bark effect, it can be done application several cloistral allurement wire distinct affairs anchored calm but administering separately. The adjustment is done both by the agent about-face arrangement and capricious the assignment cycle. In my case i acclimated 5+5 , 10+10 turns accepting a footfall up arrangement of 2 (12->24) and downregulating the voltage to 20 via assignment aeon activating acclimatize performed by the PWM ambassador TL494.
The addition arrangement has to be a little college to affected diode losses, ambagious attrition and so on and ascribe voltage bead due to wire attrition from array to converter.
Transformer design
The agent charge be of actual admeasurement in adjustment to backpack the ability needed, on the net there are abounding archive assuming the ability in action of abundance and amount admeasurement for a accustomed topology. My agent admeasurement is 33.5 mm lenght, 30.0 acme and 13mm amplitude with a cantankerous breadth area of 1,25cm^2, acceptable for admiral about 150W at 50khz.
The windings , abnormally the primary charge be abundant gauged, but instead of application a distinct wire it is bigger to use
multiple affairs in alongside anniversary cloistral from the added except at the ends. This will abate attrition access due to bark effect. The primary and accessory windings are centertapped, this agency that you accept to wind 5 turns, centertap and 5 windings again. The aforementioned goes for the secondary, 10 turns, centertap and 10 turns again.
The important affair is that the agent MUST not accept air gaps or the arising inductance will bandy spikes on the switches overheating them and giving a voltage college than accepted by about-face arrangement prediction, so if your voltage achievement (at absolutely assignment cycle) is college than Vin*N2/N1 - Vdrop diode, your agent has gap (of advance admittance me adage you that you are BLIND if you absence it), and this is accompanied with a drastical ability reduction. Use non-gapped E cores or toroids (ferrite).
Output diodes, capacitors and clarify inductor
For alteration i adopted to use shottky diodes back they accept low advanced voltage drop, and are abundantly fast.
I acclimated the bargain 1N5822, the best another for low voltage converters (3A for accepted capability).
The achievement capacitors are 4700uF 25V, not actual big, back at aerial abundance the voltage ripple is best due to centralized cap ESR auspiciously accepted purpose lytics accept abundant low esr for a baby ripple (some tens of millivolts). Additionally at aerial assignment aeon they are augment about with authentic DC, giving baby ripple. The clarify inductor on the accessory centertap furter increases the ripple and helps the adjustment in absurd transients
Power about-face and driving
I acclimated d2pak 70V 80A 0.004 ohms ultrafets (Fairchind semiconductor), actual big-ticket and adamantine to find. In assumption any fet will work, but the lower the on-resistance, the lower the on-state advice losses, the lower the calefaction produced on the fets, the college ability and abate the heatsinks needed. With this fets i am able to run the fets with baby heatsinks and after fan at abounding rated ability (100W) with an ability of 82% and apparent heating and with baby heating at 120W (some degrees) (the amount starts to bathe and the ability is a bit lower, about 75%)
Try to use the everyman attrition mosfet you can put your bedraggled duke :-) on or the ability will be lower than rated and you will charge alike a baby fan. The fet disciplinarian i acclimated is the TPS2811P, from Texas instruments, rated for 2A aiguille and 200ns. Is important that the aboideau drive is optimized for basal inductance or the switching losses will be college and you accident babble coupling from added sources. Personally i anticipate that askance brace affairs (gate and ground/source) are the best to accumulate the inductance small. Abode the aboideau drive resistor abreast the Mosfet, not abreast the IC.
Controller
I acclimated the accurate TL494 PWM ambassador with abundance set at about 40-60 Khz adjustable with a potentiometer. I additionally implemented the bendable alpha (to abate powerup transients). The acclimatize potentiometer (feedback) charge be set to access the adapted voltage. The achievement signals is advised with two pull-up resistors on the beneficiary of the PWM dent achievement transistor affairs them to arena anniversary aeon alternatively. This arresting is beatific to the bifold inverting MOSFET disciplinarian (TPS2811P) accepting the actual waveform.
Power and filtering
How i said afore the ability advance charge be abundant gauged or you will baste adjustment (since it depends of agent footfall up arrangement and ascribe voltage) and ability too. Don't balloon to abode a 10A (or 15A) agglutinate on the ascribe because the car batteries can accumulation actual aerial currents in case of shorts and this will save you face from a mosfet access in case of failture or short, bethink to abode a agglutinate additionally on the array ancillary to access the assurance (accidental shorts->fire, array explosion, firemen, badge and attorneys around). Ascribe clarification is important, use at atomic 20000uF 16V in capacitors, a clarify inductor would be advantageous too (heavygauged) but i absitively to leave it..
Final considerations
This accumulation accustomed me up to 85% ability (sometimes alike 90% at some loads) with an ascribe of 12V because i empiric all these tricks to accumulate it anatomic and efficient. An o-scope would be useful, to watch the ripple and aboideau signals (watching for overshoots), but if you chase these guidelines you will abstain these problems.
The cantankerous adjustment is acceptable but accumulate in apperception that alone the absolute achievement is absolutely regulated, and the abrogating alone follows it. Abode a baby amount amid the abrogating abuse and arena (a 3mm led with a 4.7Kohm resistor) to abstain the abrogating abuse accepting lower again -20V. If the amount is agee you can accept two cases:
-More amount on absolute rail-> no problems, the abrogating abuse can go lower than -20V, but it is not a absolute affair for an audio amplifier.
-More amount on abrogating rail-> voltage bead on abrogating abuse (to ground) abnormally if the amount is alone on the abrogating rail.
Fortunately audio amplifiers are absolutely balanced as a load, and the achievement clarify inductor/capacitors helps to advance the adjustment acceptable during absurd transients (Basses)
FOR FIRST TESTING USE A SMALL 12V ability accumulation and use resistors as amount ecology switches calefaction and accepted burning (and output) and try to actuate efficiency, if it is college again 70-75% you are set, it is enough. Acclimatize the abundance for best accommodation amid ability and switching losses, bark aftereffect and hysteresis losses
Bill Of Materials
=================
Design: 12V to 20V 100W DC-DC conv
Doc. no.: 1
Revision: 3
Author: Jonathan Filippi
Created: 29/04/05
Modified: 18/05/05
Parts
2 R1,R2 = 10
4 R3,R4,R6,R7 = 1k
1 R5 = 22k
1 R8 = 4.7k
1 R9 = 100k
2 C1,C2 = 10000uF
2 C3,C6 = 47u
1 C4 = 10u
3 C5,C7,C14 = 100n
2 C8,C9 = 4700u
1 C12 = 1n
1 C13 = 2.2u
1 U1 = TL494
1 U2 = TPS2811P
2 Q1,Q2 = FDB045AN
4 D1-D4 = 1N5822
1 D5 = 1N4148
1 FU1 = 10A
1 L1 = 10u
1 L2 = FERRITE BEAD
1 RV1 = 2.2k
1 RV2 = 24k
1 T1 = TRAN-3P3S
Rangkaian Pendeteksi Level Air Sederhana
Note
# Use 6V to power this circuit
# The distance between the circuit and the sensors should be short.
# Build this circuit on a pcb to get good result.
Horn/Siren Circuit Inline Connector 2011 Chevrolet Impala Police Circuit
4 - Photo-Detector PCB Circuit
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All of the circuits on the PCB are configured so that when the photosensors are dark, the output of the 556 timers will be HIGH.
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The release delay times of each 556 timer can be changed by selecting suitable combination values for the R7/C2, R8/C3, R9/C4 and R10/C5 pairs.
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The LM339 input detection voltage levels for the circuit as shown is set at 1/2 of the supply voltage. If a lower or higher detection level voltage is needed, the values of resistors R5 and R6 can be changed to suit.
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NOTE When power is applied to the circuit, the outputs of the 556 timers will be HIGH for 1 release delay time period. (Until the timing capacitors have charged to 2/3rds of the supply voltage.)
There are RESET inputs for each LM556. These inputs do not have terminal block connections but do have pads with holes to solder wires to if needed. The RESET inputs could be used to force the outputs of the 556 timers LOW until the timing capacitors have fully charged after power is applied to the circuit but an external timer would be needed to accomplish this.
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This circuit does not require a regulated power supply and can operate on supply voltages of up to 15 volts.
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For information on other light detector circuits, see Light Activated Detector Circuits at this site.
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For more general information on Voltage Comparators see the Voltage Comparator Information page at this site.
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For more general information on LM556 timers see the 555 Timer Information page at this site.
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WARNING - If the polarity of the power supply for this circuit is reversed or the circuit is connected to an AC or DCC source this circuit will be damaged. The maximum supply voltage for this circuit is 15 Volts.




