3 Mart 2010 Çarşamba

555 ve 4026 Entegreleri ile Çalışan 8 LED li Flasher Projesi ZAMAN ve FREKANS Hesaplama formülleri (7 Segment LED Ekran)

'Rasgele' Çalışan 8 LED li Flasher Projesi
Bu  Yedi LED ile flash projesi Görünüşte rastgele hareket eder. Aslında  4.026 Entegresi ile combine kullanılır.
Sayıcı ve Sürücü Entegresi IC  4026 Sürücü  Entegre Display sürmek üzere tasarlanmıştır 7 segment led ekranlar (display) .
7 LED den oluşan normal display sirası rastgele düzenlenmiş değildir
Segmentte bulunan sekizinci LED normalde sayıcı  bir sürücü tarafından tetiklenir
 Bu Tablo size yardımcı olabilir .Elinizde sekiz LED ten az varsa bu Tabloyu kullanmaya bilirsiniz.

 Tabloda ledler sıra ile gösterilmiştir .Bu Tablo sizin karar vermenizi kolaylaştırabilir.
Bu proje 555 Frekans üreten ve içinde Sayaç ve Display Sürücü olan 4026 entegresiyle yapılmıştır.
 ZAMAN ve FREKANS Hesaplama formülleri






















T = 0.7 × (R1 + 2R2) × C1   ve f =  ;1.4  
(R1 + 2R2) × C1

Bu zaman ikiye bölünür T = Tm + Ts T = (0.7 × (R1 + R2) × C1) + (0.7 × R2 × C1)
Mark time (çıkış 1): Tm = 0.7 × (R1 + R2) × C1
Space time (çıkış 0): Ts  = 0.7 × R2 × C1



T      = Zaman periyod saniye (s)
F      = Frekans Hertz (Hz)
R1   = Direnç Ohm
R2   = Direnç Ohm
C1   = Kondansatör Farad (F)













Malzeme Listesi
2 Adet Direnç:10k,47
1 Adet Kondansatör: 1µF 16V radial
8 Adet LED: 3mm veya 5mm 
1 Adet 555 timer IC
1 Adet 4026 counter and display driver IC
1 Adet DIL sockets  ICs: 8-pin, 

1 Adet DIL sockets  ICs: 16-pin
1 Adet Pil soketi 9V PP
1 Adet stripboard: 16 rows × 14 holes




Deneme devresi








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İzleyiciler

LED DİRENÇ HESAPLAMA

All LEDs require current limiting, without a current limiting mechanism the LED will usually burn out in under a second. Adding a simple resistor is the easiest way to limit the current. Use the calculator below to find out the value of resistor you require.

For example if you are wanting to power one of our_blank">red LEDs in an automotive application you would see that the typical forward voltage is 2.0 Volts and the maximum continuous forward current is 30mA. Therefore you would enter 14.5, 2.0 and 30 into the Single LED calculation box. After calculating you get 470ohm 1 watt as the result. Here is a that allows you to enter a resistor value and generate the corresponding color code.

Note: For automotive applications use the actual system voltage, not 12 Volts. Most 12 Volt system actually operate at around 14.5 Volts.

Supply Voltage
VOLTS
Voltage Drop Across LED
VOLTS
Desired LED Current
MILLIAMPS



Calculated Limiting Resistor
OHMS
Nearest higher rated 10% resistor

Calculated Resistor Wattage
WATTS
Safe pick is a resistor with
power rating of (common values are .25W, .5W, and 1W)
WATTS

LEDs in series

Several leds in series with one resistor
Supply Voltage
VOLTS
Voltage Drop Across LED
VOLTS
Desired LED Current
MILLIAMPS
How many LEDs connected




Calculated Limiting Resistor
OHMS
Nearest higher rated 10% resistor

Calculated Resistor Wattage
WATTS
Safe pick is a resistor with
power rating of (common values are .25W, .5W, and 1W)
WATTS
LM317 UYGULAMA DEVRELERİ HESAPLAMASI

 




Çıkış Voltajı
R1 resistor

R2 resistor

R1 resistor
R2 resistor

Çıkış Voltajı


Lm317 uygulama devreleri ve detayli bilgiye Buradan ulasabilirsiniz

LM555 - ASTABLE OSCILLATOR CALCULATOR

LM555 - ASTABLE OSCILLATOR CALCULATOR
Value Of R1 Ohms Value Of R2 Ohms
Value Of C1 Microfarads
Output Time HIGH SECONDS Output Time LOW SECONDS Output Period HIGH + LOW SECONDS Output Frequency HERTZ Output Duty Cycle PERCENT
Resistor values are in Ohms (1K = 1000) - Capacitor values are in Microfarads (1uF = 1)

NOTE: The leakage currents of electrolytic capacitors will affect the actual output results of the timers. To compensate for leakage it is often better to use a higher value capacitor and lower value resistances in the timer circuits.

LM555 Astable Oscillator Circuit Diagram


LM555 - ASTABLE CAPACITOR CALCULATOR

The next calculator can find the capacitance needed for a particular output frequency if the values of R1 and R2 are known.

Value Of R1 Ohms Value Of R2 Ohms
Frequency Desired Hertz
Capacitance uF
s

VOLT AMPER OHM ve WATT HESAPLAMA

Current:
kA (kiloamps) A (amps) mA (milliamps) µA (microamps)
Voltage:
kV (kilovolts) V (volts) mV (millivolts) µV (microvolts)