Showing posts with label ic. Show all posts
Showing posts with label ic. Show all posts

Wednesday, November 19, 2014

7 Segment Display Digital Dice with IC 4026

7 Segment Display + Digital Dice  with IC 4026 - 

Composite Materials:

1. IC 555
2. IC 4026
3. 10k ohm resistor (1buah), 100Kohm (1 piece) or replaced with a potentiometer 100k ohms, 220 ohms (7 pieces if necessary)
4. 10 uF capacitor (1 piece)
5. Button press / push button
6. 4.5V battery
7. Jumper cables sufficiently

7 Segment Display + Digital Dice  with IC 4026 Image

Assemble steps to Breadboard:

  1. After stringing understand 555 experimental trials this time it will be easy just follow the schematic drawing shown earlier, and results in the breadboard like this: 
  2. Pushbutton has 4 feet where there are 2 pieces that connect pairs of legs.
  3. If the battery voltage exceeds 6V, then 7 before going to the 220 ​​ohm resistor required segment or more. If using 4.5 V resistor can not be used.
  4. Play-turn potentiometer to obtain the desired rate of addition of digits.
  5. If speed digit changes very quickly, then the circuit can be used as "ELECTRONIC DICE". So when the button is pressed it will stop the numbers digit number we do not expect before.
There is info of 7 Segment Display + Digital Dice  with IC 4026
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Tuesday, November 18, 2014

Multiplexer with CMOS IC 4556

In addition to the family of TTL ICs that support the function of a multiplexer is a family of CMOS ICs.

Despite the fact it is the family of TTL ICs that support more functions than the CMOS multiplexer. For the working principle of the multiplexer IC CMOS family is actually tantamount to a multiplexer circuit, or IC TTL logic gates. That should be all referring to the real multiplexer function, namely the determination of output lines which represent the number of input lines. The use of symbols is possible between TTL and CMOS IC has a different but actually run the same rules. For your reference if you are interested in using family of CMOS IC 4556 series in particular, I include also the truth table below:


INPUT
OUTPUT
E
A0
A1
O0
O1
O2
O3
L
L
L
L
H
H
H
L
H
L
H
L
H
H
L
L
H
H
H
L
H
L
H
H
H
H
H
L
H
X
X
H
H
H
H
L = LOW
H = HIGH
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Thursday, November 13, 2014

LED Sound level display circuit by using IC LM3915

This circuit is about audio sound level LED display, indicator, monitor or you can say it “Audio VU (Volume Unite) Meter”.
This is a simple audio sound level LED display circuit diagram. The circuit is completely  based on  a single ic LM3915 from National Semiconductor. The LM3915 is a monolithic integrated circuit. It displays the audio sound level in terms of 10 LEDs and providing a logarithmic 3 dB/step analog display.

Audio sound level display circuit diagram


Fig: Circuit diagram of sound level display using ic LM3915
The audio sound level LED display circuit can operate from a single supply 3V to 25V. But I  suggest to use 9-12V. LED brightness can be controlled with a single pot( variable resistor) as shown 10K ohm in the circuit. Connect the audio input signal in Pin-5 of LM3915 from output of a audio device like output of audio amplifier or any other source.
The Pin-9 of LM3915 is to select dot or bar mode display. To make the circuit moving dot display instead of a bar graph display disconnect the Pin-9 from +V.
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Saturday, October 25, 2014

IC TLC271 Single supply Function Generator


The circuit has both square-wave and triangle-wave output. The left section is similar in function to a comparator circuit that uses positive feedback for hysteresis. The inverting input is biased at one-half the Vcc voltage by resistor R4 and R5. The output is fed back to the non-inverting input of the first stage to control the frequency.
The amplitude of the square wave is the output swing of the first stage, which is 8V peak-to-peak. The second stage is basically an op amp integrator. 
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Sunday, October 5, 2014

2N3055 using ic 5 Volt Linear power supply regulator


This is 5 Volt Linear power supply regulator circuit. It uses electronics part that seek easily have no zener diode , and the integrated circuit use Transistor 2N3055 and other. Which seek easily use diode perform heal voltage be stable. By diode 1N914 number uses 1N4148 number can replace. For Transistor 2N3417 use the number BD139 equiv get. If use Transformer 1-2A circuit be this size give current get about 1 Amp. Friends may don’t be bored with line this circuit. I thinks it may advantage seek part easy and economize good yes.
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Sunday, September 21, 2014

Amplifier simple easy and cheap with IC TA7368P

Indeed , this amplifier is suitable known as the title above. Viewed from the schematic alreaady seen that this amplifier circuit requires little components and parts were cheap. This amplifier requires 1 piece of IC TA7368P is manufactered by TOSHIBA is the price too low, then in addition to IC amplifier requires 3 components elco capacitor whose value is not too big. Maybe if you make this amplifier circuit, the total price of all must not be more than $ 1. This amplifier only has more than 1W output, perhaps because it has little strengthening it so that the output is released is very small. But to make this is quite easy and not too costly.
cheap
Part List :

Capacitor
C1 = 100 uF
C2 = 100uF
C3 = 470uF

IC
IC1 = TA7368P





Good Luck :)
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Thursday, September 18, 2014

Car audio amplifier with IC TA7203P

Circuit Diagram

Car audio amplifier with IC TA7203P

Circuit Description



Stereo car power amplfier with TA7203P , is suitable for the room your car , your car it will build an increasingly crowded and felt like using high-class amplifiers and speakers. Simply using this circuit and some speaker subwoofer speakers you can enjoy it.

Technical information :

  • Max voltage = 20 Volt
  • Min voltage = 8 Volt
  • Max output = 2 x 40 Watt
  • RL = 8 Ohm
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Friday, August 22, 2014

Vertical IC Configuration

Various kinds of vertical out IC configuration.Ac coupling -connect from the yoke deflection output to a coil connected directly.Dc coupling - connected the output to the coil through a capacitor deflectioan yoke. Electrolityc Capacitors (usually worth 1000u/35v). This configuration requires two kinds of voltage (the voltage mirror plus-minus).Dc input coupling using diffferential - uses 2 input from the driver IC.

Vertical
Vertical IC Configuration AC Coupling

Vertical
Vertical IC Configuration DC Coupling

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Thursday, August 21, 2014

Schematic Audio Amplifier with IC AN5260

This is a simple circuit schematic, you can string up this circuit easily. You just need IC AN5260 with some components such as , Condensator Electrolit , Resistor , Ceramic Condensator . Schematic require voltage 12 to 26 Volt . And i use current voltage of 12 volt. Its nice sound , smooth , and low noise amplifier. You want to try this schematic ? .
See this schematic below :




Datasheet IC 5260
Vcc                = 12-26 V
Pout               = 6,6 W
RL                  = 8 Ohm
Ft                   = 30hz - 18Khz
Icco                = 60 mA
Package         = SIP2-11
Manufactered = MATSUSHITA
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Audio amplifier with IC AN7522 AN7523 and TDA2616

Audio
The series of amplifiers that are used on the television audio, amplifier used amplifier ICs, including the IC:
• AN7523
• AN7522
• TDA2616


Third series of the function with the same system, namely BTL (Bridge Transformer Less). By using such configuration we get several advantages, namely no use coupling capacitors or coupling transformers.


Block diagram of circuit in the IC AN7522, AN7523 and TDA2616 as in the image below :

Schematic
Schematic AN7522
AN7523
AN7523 amplifier schematic

AN7523
Schematic TDA2616



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Wednesday, August 20, 2014

Schematic Power Amplifier with IC AN7116 Mono Amplifier

*notif :  this is mono amplifier.

   On this schematic circuit power amplifier with IC AN7116 , this schematic only use the IC because itsnot have similiar IC. To operate the Circuit , you must have any components too , such as resistor , condensator , etc. In order to be a circuit that works on good power amplifier.
  This Circuit requires minimum voltage 3 volt and maximum voltage 9 volt . Ouput power of this circuit is 1 watt, and impedance is 4 Ohm.

To see Schematic Circuit ,please see below on  figure 1.0 :



Figure 1.0


And see Package IC AN7116 below :

This package of IC : SIL-9
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Sunday, August 17, 2014

5W Power Amplifier IC with thermal Shutdown TDA1037

Circuit diagram for audio amplifier with TDA1037

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Thursday, August 14, 2014

IC 555 Design Note

The popular Timer IC 555 is extensively used in short duration timing applications. IC 555 is a highly stable integrated schema functioning as an accurate time delay generator and free running multivibrator. But one of the serious problem in 555 timer design is the false triggering of the schema at power on or when voltage changes. The article describes how IC555 is designed perfectly to avoid false triggering.

555 IC pin functions

Pin1 Ground
Pin2 Trigger
Pin3 Output
Pin 4 Reset
Pin 5 Control voltage
Pin 6 Threshold
Pin 7 Discharge
Pin 8 Vcc

Functional aspects of pins

Trigger Pin 2

Usually pin2 of the IC is held high by a pull up resistor connected to Vcc. When a negative going pulse is applied to pin 2, the potential at pin 2 falls below 1/3 Vcc and the flip-flop switches on. This starts the timing cycle using the resistor and capacitor connected to pins 6 and 7.

Reset pin 4

Reset pin 4 can be controlled to reset the timing cycle. If pin 4 is grounded, IC will not be triggered. When pin4 becomes positive, IC becomes ready to start the timing cycle. Reset voltage is typically 0.7 volts and reset current 0.1 mA. In timer applications, reset pin should be connected to Vcc to get more than 0.7 volts.

Control Voltage pin 5

Pin5 can be used to control the working of IC by providing a DC voltage at pin5. This permits the control of the timing cycle manually or electronically. In monostable operation, the control pin5 is connected to ground through a 0.01 uF capacitor. This prevents the timing interval from being affected by AC or RF interference. In the Astable mode, by applying a variable DC voltage at pin 5 can change the output pulses to FM or PWM.

Threshold pin 6 and Discharge pin 7

These two inputs are used to connect the timing components- Resistor and Capacitor. The threshold comparator inside the IC is referenced at 2/3 Vcc and the trigger comparator is referenced at 1/3 Vcc. These two comparators control the internal Flip-Flop of the schema to give High or Low output at pin 3.When a negative going pulse is applied to pin 2, the potential at pin2 drops below 1/3 Vcc and the trigger comparator switches on the Flip-Flop. This turns the output high. The timing comparator then charges through the timing resistor and the voltage in the timing capacitor increases to 2/3 Vcc.( The time delay depends on the value of the resistor and capacitor.

That is, higher values, higher time).When the voltage level in the capacitor increases above 2/3 Vcc, the threshold comparator resets the Flip-Flop and the output turns low. Capacitor then discharges through pin 7.Once triggered, the IC will not responds to further triggering until the timing cycle is completed. The time delay period is calculated using the formula T= 1.1 Ct Rt. Where Ct is the value of Capacitor in PF and Rt is the value of Resistor in Ohms. Time is in Seconds.

How to eliminate false triggering?

The schema diagram shown below is the simple monostable using IC 555. To eliminate the false triggering resistor R1 and Capacitor C1 are connected to the reset pin 4 of the IC. So the reset pin is always high even if the supply voltage changes. Moreover capacitor C3 connected close to the Vcc pin 8 acts as a buffer to maintain stable supply voltage to pin 8. Using this design, it is easy to avoid false triggering to a certain extent.

555 Monostable schema

A ready recknor to select timing resistor and capacitor
Theoretically long interval is possible with IC 555,but in practical conditions, it is difficult to get more than 3 minutes. If low leakage Tantalum capacitor is used, this can be increased to 5 minutes or more. If the value of the timing capacitor is too high above 470 uF, charging time will be prolonged which will upset the timing cycle and the output remains high even after the desired time is over.
Streampowers
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