17 Nisan 2010 Cumartesi

M SERİSİ - S SERİSİ - T SERİSİ - V SERİSİ Transistör ve özellikleri Hakkında bulabildiklerim

MJ10005 N-DARL+D 500/400V 20A 175
MJ1001 N-DARL 80V 8A 90W
MJ10012 N-DARL+D 600V 10A 175W
MJ10016 N-DARL+D 500V 50A 250W 1us
MJ11015 P-DARL 120V 30A 200W
MJ11016 N-DARL 120V 30A 200W
MJ11032 N-DARL 120V 50A 300W
MJ11033 P-DARL 120V 50A 300W
MJ15003 SI-N 140V 20A 250W 3MHz
MJ15004 SI-P 140V 20A 250W 3MHz
MJ15015 SI-N 120V 15A 180W 0.8MHz
MJ15016 SI-P 120V 15A 180W 0.8MHz
MJ15022 SI-N 350/200V 16A 250W
MJ15023 SI-P 350V 16A 250W 4MHz
MJ15024 SI-N 250V 16A 250W
MJ15025 SI-P 400V 16A 250W 4MHz
MJ16018 SI-N 1500V 10A 175W
MJ2501 P-DARL 80V 10A 150W
MJ2955 SI-P 100V 15A 150W 4MHz
MJ3001 N-DARL 80V 10A 150W
MJ4032 P-DARL 100V 10A 150W
MJ4035 N-DARL 100V 16A 150W
MJ413 SI-N 400V 10A 125W 2.5MHz
MJ4502 SI-P 100V 30A 200W
MJ802 SI-N 90V 30A 200W
MJE13004 SI-N 300V 4A 75W TO220
MJE13005 SI-N 300V 8A 75W
MJE13005 SI-N 300V 8A 75W
MJE13007 SI-N 400V 8A 80W
MJE13009 SI-N 400V 12A 100W
MJE15030 SI-N 150V 8A 50W 30MHz
MJE15031 SI-P 150V 8A 50W 30MHz
MJE18004 SI-N 450V 5A 100W 13MHz
MJE18006 SI-N 450V 6A 100W 14MHz
MJE18008 SI-N 450V 8A 125W 0.3US
MJE210 SI-P 40V 5A 15W 65MHz
MJE243 SI-N 100V 4A 15W 40MHz
MJE253 SI-P 100V 4A 15W 40MHz
MJE270 N-DARL 100V 2A 15W 16MHz
MJE271 P-DARL 100V 2A 15W B1K5
MJE2955T SI-P 70V 10A 90W AFPOWER
MJE3055T SI-N 70V 10A 90W AFPOW.
MJE340 SI-N 300V 0.5A 20W VIDPOW
MJE350 SI-P 300V 0.5A 20W VIDPOW
MJE5850 SI-P 350/300V 8A 80W
MJE800 N-DARL+D 60V 4A 40W B750
MJE8502 SI-N 700V 5A 80W B750
MJF18004 SI-N 450V 5A 35W 13MHz
MJF18008 SI-N 450V 8A 45W 0.3us
MJF18204 SI-N 600V 5A 35W 13MHz
MJW16018 SI-P 800V 10A 150W 3MHz
MJW16206 SI-N 1200V 12A 150W 3MHz
MJW16212 SI-N 650V 10A 150W
MPF102 N-FET 25V 2mA Up8V
MPS3640 SI-P 12V 80mA 635mW 500MHz
MPSA06 SI-N 80V 0.5A 0.625W DRIV
MPSA10 SI-N 40V 0.1A 0.21W 50MHz
MPSA12 N-DARL 20V 0.5A 0.625W
MPSA14 SI-N 30V 0.5A 0.625W
MPSA18 SI-N 45V 0.2A 625mW 100MHz
MPSA42 SI-N 300V 0.5A 0.625W
MPSA44 SI-N 500V 0.3A 625mW 20MHz
MPSA56 SI-P 80V 0.5A 0.625W DRIV
MPSA70 SI-P 40V 0.1A 0.35W 125MHz
MPSA92 SI-P 300V 0.5A 0.625W
MPSH10 SI-N 25V 40mA 0.35W 650MHz
MRF237 SI-N 36V 0.6A 4W 174MHz
MRF455 SI-N 36V 15A 60W 30MHz
MRF475 SI-N 20V 4A 4W 50MHz
ON4359 N-DARL+D 120V 4A 40W 10MHz

SGSF313 SI-N 450V 7A 70W 0.3us
SGSF313XI SI-N 1000V 5A 25W 0.3us
SGSF344 SI-N 600V 7A 85W
SGSF445 SI-N 600V 7A 95W
SGSF464 SI-N 600V 10A 140W
SGSIF344 SI-N 600V 7A 35W
SGSIF444 SI-N 600V 7A 55W
SLA4061 N-DARL 120V 5A 25W POWER
STA341M P/N-ARRAY 30V 1A B100
STA401A N-ARRAY 4x60V 4A B1K
STA402A P-ARRAY 4x50V 4A B1K
STA403A N-ARRAY 4x100V 4A B1K
STA434A P/N-ARRAY 2*60V 4A 20W B
STA441C N-ARRAY 4x160V 1.5A B40
STA451C P/N-ARRAY 2x60V 3A B40
STA471A N-ARRAY 4x60V 2A B2K
STA8012 TRANSISTOR ARRAY
STA901M TRANSISTOR ARRAY
STP3NA60 N-FET 600V 2.9A 80W 4E
STP3NA60F N-FET 600V 2.1A 40W 4E
STP4NA60 N-FET 600V 4.3A 100W 2E2
STP4NA60F N-FET 600V 2.7A 40W 2E2
STP4NA80 N-FET 800V 4A 110W 3E
STP4NA80F N-FET 800V 2.5A 45W 3E
STW15NA50 N-FET 500V 14.6A 190W 0.0
SUP70N06-14 N-FET 60V 70A 142W 0.014E

TIP107 P-DARL 100V 15A 80W
TIP112 N-DARL 100V 2A 50W
TIP117 P-DARL 100V 2A 50W
TIP122 N-DARL 100V 5A 65W
TIP127 P-DARL 100V 5A 65W
TIP132 N-DARL 100V 8A 70W
TIP137 P-DARL 100V 8A 70W
TIP142 N-DARL 100V 10A 125W
TIP142T N-DARL 100V 10A 80W
TIP147 P-DARL+D 100V 10A 125W
TIP152 N-DARL+D 400/400V 7A 80W
TIP162 N-DARL 380V 10A 3W
TIP2955 SI-P 100V 15A 90W NF/S-L
TIP29E SI-N 180V 2A 30W 3MHz
TIP3055 SI-N 100V 15A 90W NF/S-L
TIP33C SI-N 115V 10A 80W
TIP34C SI-P 100V 10A 80W 3MHz
TIP35C SI-N 100V 25A 125W 3MHz
TIP36C SI-P 100V 25A 125W 3MHz
TIP41C SI-N 100V 6A 65W 3MHz
TIP42C SI-P 140V 6A 65W
TIP50 SI-N 400V 1A 40W 2us
TIP54 SI-N 500V 3A 100W 2.5MHz
TIPL760 SI-N 850/400V 4A 75W
TIPL760A SI-N 100V 4A 80W 12MHz
TIPL761A SI-N 1000V 4A 100W
TIPL762A SI-N 800V 6A 120W POWER
TIPL763A SI-N 1000V 8A 120W 8MHz
TIPL790A SI-N 150V 10A 70W 10MHz
TIPL791A SI-N 450V 4A 75W

VN66AFD N-FET 60V 2A 12W 3E Up2.
VN88AFD N-FET 80V 1.3A 20W Up2.5

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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)