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Part ECAD Model Manufacturer Description Datasheet Download Buy Part
UJ3C065080T3S UJ3C065080T3S ECAD Model UnitedSiC Power Field-Effect Transistor
UF3C065080B7S UF3C065080B7S ECAD Model UnitedSiC 650V-80mΩ SiC FET D2PAK-7L
UF3C120150K4S UF3C120150K4S ECAD Model UnitedSiC 1200V-150mΩ SiC FET TO-247-4L
UF3SC120040B7S UF3SC120040B7S ECAD Model UnitedSiC 1200V-35mΩ SiC FET D2PAK-7L
UJ3C065080B3 UJ3C065080B3 ECAD Model UnitedSiC 650V-80mΩ SiC FET D2PAK-3L
UJ4C075023B7S UJ4C075023B7S ECAD Model UnitedSiC 750V-23mΩ SiC FET D2PAK-7L

transistor 2Fn Datasheets Context Search

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transistor 2Fn

Abstract: RBL 43 P TRANSISTOR 01HB3 marking 2fn marking code 2Fn saa580 sot-23 Marking 2FY RBL 43 P Transistor Circuits
Text: range from 30 to 50 kHz ( 2fn mode) or 15 to 25 kHz (1 fn mode), so that the IC can also be used to , is intended for external (SCART in 1fn and VGA in 2fn applications) signals and which have an , horizontal drive signal (1fn or 2fn ) is realized by means of a switching pin which must be connected to ground or left open-circuit. Because of safety reasons the switching between 1fn and 2fn is possible only , approximately 30% of the nominal value. This results in a line frequency of approximately 50 kHz ( 2fn ) or 25 kHz


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PDF TDA933xH 545104/750/01/pp48 transistor 2Fn RBL 43 P TRANSISTOR 01HB3 marking 2fn marking code 2Fn saa580 sot-23 Marking 2FY RBL 43 P Transistor Circuits
LC7416

Abstract: U741 IC 7415 transistor 2Fn CMOS 7411 IC 7411 7415 14 pins 7411 pin diagram vhs motor drum qcp_e
Text: /2 dividing 2fn OSC signal is delivered. (OSC-ENA="L") I u m SP (VHF) 34 32 REC time mode detect , the foim of aiiiifog signal and PWM signal ^especjtfv^ly. At drum stop mode N-chanhV transistor is , and PWM signal respectively. At capstan stop mode N-channel transistor is turned ON and this pin is , , / / 1/N x 1/2 [Hz) • For 2fn OSC signal > l/Nxl/2 (Hz) (3) Frequency divisionior F@30 signai


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PDF LC741 LC7410, LA7110 100kohm 4-43MHz, LC7416 U741 IC 7415 transistor 2Fn CMOS 7411 IC 7411 7415 14 pins 7411 pin diagram vhs motor drum qcp_e
f1f9

Abstract: HORIZONTAL DRIVER TRANSISTOR transistor 2Fn csb503b murata tv flyback transistor horizontal section tv lm1391 SCHEMATIC circuit scr oscillator LM1391 application note horizontal section of tv
Text: to Horizontal driver transistor when pin 8 is OFF. Horizontal APC loop filter high frequency , pre-scaler T0-T3. The 2fn output is then divided again in T4 to produce the desired horizontal frequency at , 10 subject to gates G3 and G5. After 510 2fn cycles following reset, vertical sync from Q1 and G4 is


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PDF LM1880 f1f9 HORIZONTAL DRIVER TRANSISTOR transistor 2Fn csb503b murata tv flyback transistor horizontal section tv lm1391 SCHEMATIC circuit scr oscillator LM1391 application note horizontal section of tv
1994 - Not Available

Abstract: No abstract text available
Text: when sourcing 15 mA and typical as 4.3. The output pull-up transistor is a p-channel device. Typical , , VOH, is VCC minus the n-channel threshold, VT. The transistor drain is connected to VCC, so VT is , IC=ICC+ICC DH NT+ICCD (fcp/ 2+fn Nn) Cypress logic devices do not use a substrate bias generator. As a , , both the p-channel pull-up transistor and the n-channel pulldown transistor in the input TTL to CMOS


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1994 - MIL-STD-8833

Abstract: MILSTD8833
Text: typical as 4.3. The output pullup transistor is a pchannel device. Typical unloaded output signal rise , the nchannel threshold, VT. The transistor drain is connected to VCC, so VT is approximately one volt , NT+ICCD (fcp/ 2+fn Nn) Where: ICC = Quiescent Current ICC = Power Supply Current for a TTL HIGH input , transitions between the logic levels, both the pchannel pullup transistor and the nchannel pulldown transistor in the input TTL to CMOS translator are partially turned on, which creates a lowimpedance path


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PDF 16bit MIL-STD-8833 MILSTD8833
1992 - SL6601C

Abstract: transistor 2Fn sl-6601 DS3284 preset variable resistor
Text: external PNP transistor allows hysteresis to be increased. See Fig.4. The use of capacitors greater than , 1.4 rads. 2fn = (KoKD) (t1 x t2 D = fn(t2 + = (2 x 105 x 0.3) (23.9 x 10-6) 1 ) = 0.515 KOKD = 50.1k , 0.666 fn efN f e = 0. 66 0.66 x 10 = 7.5 = KoKD ( 2fn )2 = 0.88 rads. t1 + t2 KoKD = 0.3fO where fO


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PDF SL6601C SL6601C SL6601 transistor 2Fn sl-6601 DS3284 preset variable resistor
1992 - preset variable resistor

Abstract: SL6601C SL6601 transistor 2Fn LC18 10.7Mhz 15Khz crystal filter sl-6601
Text: external PNP transistor allows hysteresis to be increased. See Fig.4. The use of capacitors greater than , deviation of 10kHz and a maximum modulating frequency of 5kHz. The VCO frequency is 200kHz. 2fn = , + t2 = 0.88 rads. 7.5 = KoKD ( 2fn )2 KoKD = 0.3fO where fO is the VCO frequency t1 +


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PDF SL6601C SL6601C SL6601 preset variable resistor transistor 2Fn LC18 10.7Mhz 15Khz crystal filter sl-6601
1992 - sl6601

Abstract: SL6601C 10.7Mhz 15Khz crystal filter 3 pin 3296 Variable Resistor 3296 Variable Resistor LC18 100khz VCO sl-6601 transistor 2Fn DS3284
Text: external PNP transistor allows hysteresis to be increased. See Fig.4. The use of capacitors greater than , deviation of 10kHz and a maximum modulating frequency of 5kHz. The VCO frequency is 200kHz. 2fn = , + t2 = 0.88 rads. 7.5 = KoKD ( 2fn )2 KoKD = 0.3fO where fO is the VCO frequency t1 +


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PDF SL6601C SL6601C SL6601 10.7Mhz 15Khz crystal filter 3 pin 3296 Variable Resistor 3296 Variable Resistor LC18 100khz VCO sl-6601 transistor 2Fn DS3284
433MHz saw Based Transmitter Schematic

Abstract: IQXO-350C SAW resonator 433MHz AN1201 philips 433mhz receiver 433MHZ amplifier schematic BC808 BFQ67 SA7016 XE1201
Text: 6.10nF (1) tsw : Switching time (tsw=400µs) fn : Natural frequency n . 2fn (rad/sec) . Damping , , the transistor T2 is saturated. In this case the VR1 equal Vdd-VCE2, and the transistor T1 with L5, C5 will amplify the signal Vin. If RxTx is equal to Vdd (High logic level), the transistor T2 is , Type Reference XE1201 Transceiver IC Synthesizer XTAL Quartz XTAL Quartz NPN Transistor PNP Transistor NPN Transistor LED XE1201-T SA7076 AMK - IQXO-350C S0409745 BFQ67 BC808 BFQ67 Value


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PDF AN1201 XE1201 SMD0805 AN0103-119 433MHz saw Based Transmitter Schematic IQXO-350C SAW resonator 433MHz philips 433mhz receiver 433MHZ amplifier schematic BC808 BFQ67 SA7016
IQXO-350C

Abstract: 433mhz resonator philips 433-2 XE1201 transistor 2Fn capacitor 100nf 50v 0805 datasheet philips 433mhz receiver AN1201 433.92mhz rf receiver 433MHZ amplifier schematic
Text: n . 2fn (rad/sec) . Damping Factor (2) (3) 2 0.5 (4) C1 10 (5) (6 , to zero, the transistor T2 is saturated. In this case the VR1 equal Vdd-VCE2, and the transistor T1 with L5, C5 will amplify the signal Vin. If RxTx is equal to Vdd (High logic level), the transistor , Transistor PNP Transistor NPN Transistor LED XE1201-T SA7076 AMK - IQXO-350C S0409745 BFQ67 BC808


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PDF AN1201 XE1201 SMD0805 A0211-119 IQXO-350C 433mhz resonator philips 433-2 transistor 2Fn capacitor 100nf 50v 0805 datasheet philips 433mhz receiver 433.92mhz rf receiver 433MHZ amplifier schematic
philips 433mhz receiver

Abstract: AN1201 BC808 BFQ67 IQXO-350C SA7016 XE1201 XE1201EVK if amplifier with band pass filter 500khz
Text: : Switching time (tsw=400µs) fn : Natural frequency n . 2fn (rad/sec) . Damping Factor n = - ln( . 1 , works: If the signal RxTx is equal to zero, the transistor T2 is saturated. In this case the VR1 equal Vdd-VCE2, and the transistor T1 with L5, C5 will amplify the signal Vin. If RxTx is equal to Vdd (High logic level), the transistor T2 is blocked and Vbe of T1 is equal to 0V. T1 is also blocked , Transistor PNP Transistor NPN Transistor LED XE1201-T SA7076 AMK - IQXO-350C S0409745 BFQ67 BC808


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PDF AN1201 XE1201 EXTERND0805 SMD1206 SMD0805 philips 433mhz receiver BC808 BFQ67 IQXO-350C SA7016 XE1201EVK if amplifier with band pass filter 500khz
transistor an1201

Abstract: transistor 2Fn philips 433mhz receiver IQXO-350C philips 433mhz RF transmitter XE1201 if amplifier with band pass filter 500khz AN1201 BC808 IQXO-350
Text: switching time (1) tsw : Switching time (tsw=400µs) fn : Natural frequency n . 2fn (rad/sec) . , to zero, the transistor T2 is saturated. In this case the VR1 equal Vdd-VCE2, and the transistor T1 with L5, C5 will amplify the signal Vin. If RxTx is equal to Vdd (High logic level), the transistor , Transistor PNP Transistor NPN Transistor LED XE1201-T SA7076 AMK - IQXO-350C S0409745 BFQ67 BC808


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PDF AN1201 XE1201 SMD0805 A0111-119 transistor an1201 transistor 2Fn philips 433mhz receiver IQXO-350C philips 433mhz RF transmitter if amplifier with band pass filter 500khz BC808 IQXO-350
1994 - Advanced Schottky Family

Abstract: No abstract text available
Text: 2.4V when sourcing 15 mA and typical as 4.3V. The output pull-up transistor is a p-channel device , transistor drain is connected to VCC, so VT is approximately one volt. The loaded VOH is typically 3.3 volts , the p-channel pull-up transistor and the n-channel pulldown transistor in the input TTL to CMOS , NT+ICCD (fcp/ 2+fn Nn) DC Input Voltage .­0.5V to +7.0V


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TA1252AN

Abstract: y12 t
Text: Switching (V CL) o ; 2fn 1 ; 4fn 1 2 f h (0) Internal Curve Correction (C-CORE) 0 ; OFF 1 ; ON (RGB , OSD OSD ABL IN R OUT G OUT B OUT R IN G IN B IN Yi IN Deflecting Transistor /T7 m /ff NJ un NJ


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PDF TA1252AN TA1252AN 56-pin y12 t
SN76881N

Abstract: television remote TMS9900 sn76881 amplifier 40khz tms 1000 INFRARED REMOTE CONTROL IC 14 pin
Text: and the data output taken from an open collector output transistor . An output enable control pin has , frequency and is given by the approximate.formula: f,0, = 2fn = OSC 0 Hz It is recommended that the


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PDF 40kHz) SN76881N television remote TMS9900 sn76881 amplifier 40khz tms 1000 INFRARED REMOTE CONTROL IC 14 pin
2003 - IP2C2

Abstract: multi 9 c6 dpn jrc ic chip 4392 ic equivalent philips 433mhz receiver smd0805 150pf philips BC808 BFQ67 XE1201 XE1201A
Text: n . 2fn (rad/sec) . Damping Factor (2) (3) 2 0.5 (4) C1 10 (5) (6 , , the transistor T2 is saturated. In this case the VR1 equal Vdd-VCE2, and the transistor T1 with L5, C5 will amplify the signal Vin. If RxTx is equal to Vdd (High logic level), the transistor T2 is , Quartz XTAL Quartz NPN Transistor PNP Transistor NPN Transistor LED XE1201A-T SA7076 AMK - IQXO


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PDF AN1201A XE1201A SMD0805 A0301-119 AN1201 XE1201 IP2C2 multi 9 c6 dpn jrc ic chip 4392 ic equivalent philips 433mhz receiver smd0805 150pf philips BC808 BFQ67
2011 - E2CY-SD11

Abstract: IT16 SUS304
Text: Output transistor Amplifier Unit Operation indicator (orange) NO Brown 12 to 24 VDC ON , Not present ON Output transistor OFF Amplifier Unit ON Operation indicator (orange) OFF NC , object is detected. · NC (normally close): Turn output ON when no object is detected. 2-fn NORM


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PDF 2356-81-300/Fax: 510-608-3400/Fax: 6835-3011/Fax: 21-5037-2222/Fax: D112-E1-01 E2CY-SD11 IT16 SUS304
Not Available

Abstract: No abstract text available
Text: Oscillator. . Exact 50% Duty Cycle Outupt Due to the 2-fn Oscillator and Flip-Flop Circuit. . Excellent , l lÌ ? PA L H : NTSC rrr tti A transistor switch shunt the delayed chroma signal and , ZENER REG U LATO R TY P. Horizontal Oscillator 2fn oscillator timing CR is connected


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PDF TA7698AP TA7698AP TA7698AP-34 T1A12C2) 00117S1 TA7698AP-35
7811a

Abstract: mosfet firing circuit transformer calculation IR1175 IRFS31N20D MUR120 gate drive pulse transformer
Text: was driven through an appropriate gate driver with a 1 ohm gate resistor and a PNP transistor to , signal gain - kHz/Volt) = 62E3/(7*Rvco(k) n (PLL natural frequency) = 2fn (KHz) = 50 * Kvco_ac(kHz/V


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PDF IR1175: IR1175) 7811a mosfet firing circuit transformer calculation IR1175 IRFS31N20D MUR120 gate drive pulse transformer
2012 - E2CY-SD11

Abstract: No abstract text available
Text: Not present Output transistor Amplifier Unit Operation indicator (orange) NO Brown 12 to , Sensing object Present Not present ON Output transistor OFF Amplifier Unit ON Operation indicator , . 2-fn NORM/FINE Changes sensor precision. • NORM: Standard * • FINE: High precision 3


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PDF NL-2132 D112-E1-01 E2CY-SD11
1997 - Not Available

Abstract: No abstract text available
Text: RCOMP = 25 and CCOMP = 1/( 2fn RCOMP). Increase C COMP until the desired transmitter eye is obtained , 0.056" (1.422mm) OUT- OUT+ BIAS GNDOUT 0.045" (1.143mm) TRANSISTOR COUNT: 725 SUBSTRATE


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PDF 622Mbps MAX3766 622Mbps. 25Gbps
2004 - MAX3766

Abstract: MAX3766EEP transistor P1 F
Text: frequency (fn) of the laser and laser driver (Figure 7). Begin with RCOMP = 25 and CCOMP = 1/( 2fn RCOMP). , VCCOUT OUT- OUT+ BIAS GNDOUT 0.045" (1.143mm) TRANSISTOR COUNT: 725 SUBSTRATE CONNECTED TO


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PDF 622Mbps MAX3766 622Mbps. 25Gbps MAX3766EEP transistor P1 F
1997 - MAX3766-03

Abstract: MAX3766 MAX3766EEP note count schematic Fiber Optic Transmitters
Text: frequency (fn) of the laser and laser driver (Figure 7). Begin with RCOMP = 25 and CCOMP = 1/( 2fn RCOMP). , VCCOUT OUT- OUT+ BIAS GNDOUT 0.045" (1.143mm) TRANSISTOR COUNT: 725 SUBSTRATE CONNECTED TO


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PDF 622Mbps 200ps MAX3766EEP MAX3766E/D 25Gbps MAX3766-03 MAX3766 MAX3766EEP note count schematic Fiber Optic Transmitters
Not Available

Abstract: No abstract text available
Text: the output transistor , and not the load, that determines the power dissipated in the output stage , is shown in Figure 9. 1— I (G = +5, V0 = 2Vp-p, f0 = 5MHz) 2fn m -7 0 « -8 0 Q


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PDF OPA643 -90dBc 12-BIT OPA643
2003 - Not Available

Abstract: No abstract text available
Text: determined by the CMOS process. Exceeding this limit may result in transistor breakdown, resulting in reduced , Ain(N)cos(2(fN + f0)/fDAC + ) ­ Bin(N)sin( 2fN /fDAC + ) Bout(N) = Ain(N)sin(2(fN + f0)/fDAC + ) ­ Bin(N)cos( 2fN /fDAC + ) where f = freq × fDAC/232 and = phase × /215 and f0 is the initial value of the


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PDF DAC5686 SLWS147C 16-BIT, 500-MSPS, 72-MHz 44-MHz 16-MHz 05-dB 80-dB
Supplyframe Tracking Pixel