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Part Manufacturer Description Datasheet Download Buy Part
LTC6993CS6-3#TRPBF Linear Technology LTC6993 - TimerBlox: Monostable Pulse Generator (One Shot); Package: SOT; Pins: 6; Temperature Range: 0°C to 70°C
LTC6993HS6-4#TRPBF Linear Technology LTC6993 - TimerBlox: Monostable Pulse Generator (One Shot); Package: SOT; Pins: 6; Temperature Range: -40°C to 125°C
LTC6993HDCB-1#TRMPBF Linear Technology LTC6993 - TimerBlox: Monostable Pulse Generator (One Shot); Package: DFN; Pins: 6; Temperature Range: -40°C to 125°C
LTC6993IDCB-2#TRPBF Linear Technology LTC6993 - TimerBlox: Monostable Pulse Generator (One Shot); Package: DFN; Pins: 6; Temperature Range: -40°C to 85°C
LTC6993CS6-4#TRPBF Linear Technology LTC6993 - TimerBlox: Monostable Pulse Generator (One Shot); Package: SOT; Pins: 6; Temperature Range: 0°C to 70°C
LTC6993IS6-1#TRPBF Linear Technology LTC6993 - TimerBlox: Monostable Pulse Generator (One Shot); Package: SOT; Pins: 6; Temperature Range: -40°C to 85°C

2N2369 AVALANCHE PULSE GENERATOR Datasheets Context Search

Catalog Datasheet MFG & Type PDF Document Tags
2003 - 2N2369 AVALANCHE PULSE GENERATOR

Abstract: 2N2369 transistor pulse generator 2n2369 avalanche Avalanche Transistor Circuits for Generating nanosecond pulse generator Avtech PICO Electronics 1000V TD1110C ten pao transformer 2N2501
Text: is settable from before-to-after a trigger output. This circuit uses an avalanche pulse generator to , Avalanche Pulse Generator Appears Faster Than Figure 6's 2500V/µs PULSE GENERATOR RISE TIME IN (ns , Figure 19. Figure 7's Data Restated to Include Avalanche Pulse Generator Results. Significant Slew Rate , Output Level Shifting The text's avalanche pulse generator produces a positive 15V to 20V output. This , the rise times described in the text. Additionally, the avalanche pulse generator output cable should


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PDF AN94-11 AN94-12 an94f 2N2369 AVALANCHE PULSE GENERATOR 2N2369 transistor pulse generator 2n2369 avalanche Avalanche Transistor Circuits for Generating nanosecond pulse generator Avtech PICO Electronics 1000V TD1110C ten pao transformer 2N2501
1998 - AN72

Abstract: AN72F PM-5771 2N2369 avalanche an7212 2N2369 AVALANCHE PULSE GENERATOR an7210 application circuits of ic 74121 LM733 2tx-849
Text: . AN72-32 Programmable Sub-Nanosecond Delayed Pulse Generator , circuit allows us to see that the LT1394's (Trace B) response to the pulse generator (Trace A) is faster , difficulties. TEST CIRCUIT 7404 PULSE GENERATOR A = 1V/DIV B = 1V/DIV C = 1V/DIV (INVERTED , -8 A significant consideration for fast comparator development work is the pulse generator . Features , , select a pulse generator with the features needed for the circuit of interest. Also, take the time to


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PDF LT1016 LT1016, LT1394, AN72-41 90VDC AN72-42 V-to-90V AN72-43 AN72-44 an72f AN72 PM-5771 2N2369 avalanche an7212 2N2369 AVALANCHE PULSE GENERATOR an7210 application circuits of ic 74121 LM733 2tx-849
2009 - 2N2369 avalanche

Abstract: 2N2369 transistor pulse generator 2N2369 AVALANCHE PULSE GENERATOR Tektronix P6056 2N2501 MOTOROLA CTX-02-16004 P-6056 motorola transistor handbook crystal generator 1GHz 2N3866 application note
Text: 800ps.2 400ps Rise Time Avalanche Pulse Generator A potential problem with older instruments is , trigger output. This circuit uses an avalanche pulse generator to create extremely fast rise time pulses , Tektronix type 111 pulse generator (see Reference 11). Information on avalanche operation appears in , parameters for various elements are called out. A sub-nanosecond rise time pulse generator , 1A, 2ns rise , Breakdown Limit PULSE GENERATOR tRISE < 1ns PULSE CURRENT AMPLIFIER tRISE = 2ns Figure 3


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PDF AN122 350ps an122f AN122-19 AN122-20 2N2369 avalanche 2N2369 transistor pulse generator 2N2369 AVALANCHE PULSE GENERATOR Tektronix P6056 2N2501 MOTOROLA CTX-02-16004 P-6056 motorola transistor handbook crystal generator 1GHz 2N3866 application note
2N2369 equivalent

Abstract: 2N2369 MA 4108 2N2369A MOTOROLA 2N2368 2N3227 MOTOROLA 2N3227 2N2369A J 2N2369 St 2N2369
Text: CIRCUITS FOR 2N2369 , 2N3227 -1.5 V —Í *>- -»I ■«- < 1 ns PULSE WIDTH (ti) = 300 m .DUTY CYCLE = 2 , WAVEFORMS r 10% 90% PULSE GENERATOR V„ RISE TIME < 1 ns SOURCE IMPEDANCE = 50SÎ PW=> 300 ns DUTY , (10 iia pulse ) IC(Peak) 600 mA Collector Current — Continuous 2N2369A, 2N3227 ic 200 mA Total , to +200 °C 2N2368 , 2N2369 , A 2N3227 2N2369A JAN, JTX JTXV AVAILABLE CASE 22-03, STYLE 1 TO-18 (TO , ) 2N2368, 2N2369 , 2N2369A 2N3227 v(BR)EBO 4.5 6.0 - Vdc Collector Cutoff Current (Vce = 20 Vdc, Vbe = 3.0


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PDF 2N2368 2N3227 2N2369A, 2N2368 2N2369 2N2368, 2N2369 equivalent MA 4108 2N2369A MOTOROLA 2N3227 MOTOROLA 2N2369A J 2N2369 St 2N2369
1996 - 2n2369

Abstract: No abstract text available
Text: MOTOROLA Order this document by 2N2369 /D SEMICONDUCTOR TECHNICAL DATA Switching Transistors COLLECTOR 3 LAST SHIP 21/03/00 2N2369 2N2369A* NPN Silicon *Motorola Preferred , Voltage VEBO 4.5 Vdc Collector Current (10 ms pulse ) IC(Peak) 500 mA Collector , = 20 Vdc, IE = 0, TA = 150°C) 2N2369 2N2369A Collector Cutoff Current (VCE = 20 Vdc, VBE = 0) 2N2369A Base Current (VCE = 20 Vdc, VBE = 0) mAdc 2N2369A 1. Pulse Test: Pulse


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PDF 2N2369/D 2N2369 2N2369A* 2N2369/D* 2n2369
1996 - 2N2369

Abstract: 2N2369A 2N2369A MOTOROLA 2N2369 equivalent 2N2369 motorola 2N2369 datasheet 1N916 J 2N2369 2N3227 MOTOROLA 2N3227
Text: Vout 90% 0.1 µF 220 10% Vout 3.3 k Vin 50 PULSE GENERATOR Vin RISE TIME < 1 , MOTOROLA Order this document by 2N2369 /D SEMICONDUCTOR TECHNICAL DATA Switching Transistors 2N2369 2N2369A* NPN Silicon COLLECTOR 3 *Motorola Preferred Device 2 BASE 1 , Collector ­ Emitter Voltage 2 °C/W Collector Current (10 ms pulse ) Operating and Storage , , IE = 0) (VCB = 20 Vdc, IE = 0, TA = 150°C) 2N2369 2N2369A Collector Cutoff Current (VCE = 20


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PDF 2N2369/D 2N2369 2N2369A* 2N2369/D* 2N2369 2N2369A 2N2369A MOTOROLA 2N2369 equivalent 2N2369 motorola 2N2369 datasheet 1N916 J 2N2369 2N3227 MOTOROLA 2N3227
1996 - 2N2369A

Abstract: 2N2369 2N2369 equivalent 2N2369A MOTOROLA J 2N2369 1N916 2N3227 input impedance of 2N2369 motorola 2n2369
Text: 50 3.3 k 0.0023 µF 0.005 µF 50 PULSE GENERATOR Vin RISE TIME < 1 ns SOURCE IMPEDANCE = , MOTOROLA Order this document by 2N2369 /D SEMICONDUCTOR TECHNICAL DATA Switching Transistors COLLECTOR 3 LAST SHIP 21/03/00 2N2369 2N2369A* NPN Silicon *Motorola Preferred , VEBO 4.5 Vdc Collector Current (10 ms pulse ) IC(Peak) 500 mA Collector Current - , Collector Cutoff Current (VCB = 20 Vdc, IE = 0) (VCB = 20 Vdc, IE = 0, TA = 150°C) 2N2369 2N2369A


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PDF 2N2369/D 2N2369 2N2369A* 2N2369/D* 2N2369A 2N2369 2N2369 equivalent 2N2369A MOTOROLA J 2N2369 1N916 2N3227 input impedance of 2N2369 motorola 2n2369
2N2369

Abstract: 2N2369 equivalent
Text: TURN-OFF WAVEFORMS ^ 3 :9 0 % Vin > Q . MK Vout - 10% PULSE GENERATOR Vin RISETIME < 1 , Switching Transistors NPN Silicon COLLECTOR 2N2369 2N2369A* 3 EMITTER MAXIMUM RATINGS R ating , cto r-B a se Voltage E m itte r-B a se Voltage Collector Current (10 us pulse ) Collector Current - , BE = 0) 1. Pulse Test: Pulse W idth < 300 us, Duty Cycle < 2.0%. Preferred devices are M otorola , ICBO 2N2369 2N2369A 'c e s 2N2369A2N2369A 40 15 40 4.5 - - - - Vdc Vdc Vdc Vdc nAdc


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PDF 2N2369 2N2369A* 2N2369/D 2N2369 equivalent
mosfet to ignition coil

Abstract: 2n2369 avalanche cdi ignition ignition module capacitor, 100 microfarad and 35 volts Electronic car ignition circuit 6 volt coil ignition cdi ignition timing advance car cdi ignition 12 volt cd ignition schematic
Text: suited to this application since they can tolerate high levels of energy in avalanche breakdown , required) • Avalanche capability The suitability of power MOSFETs for this application has sometimes , , C3 and half of IC1. This oscillator provides a 50 Hz, 50% duty cycle pulse to the base of Q2, with SI , D5 — Zener 15 V 200 mW Q1 — 2N2369 Q2 - 2N2369 Q3 - 2N2369 Q4 ■2N2369 Q5 - 2N2905 R1 â , displays avalanche occurring in the HEXFET, and this avalanche capabil-ty will prevent the HT voltage from


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PDF 00V/DIV AN966: AN-969 mosfet to ignition coil 2n2369 avalanche cdi ignition ignition module capacitor, 100 microfarad and 35 volts Electronic car ignition circuit 6 volt coil ignition cdi ignition timing advance car cdi ignition 12 volt cd ignition schematic
ignition module

Abstract: 2n2369 avalanche cdi ignition timing advance car cdi ignition cdi ignition irf740 application note ELECTRONIC CENTRIFUGAL SWITCH design of ignition and fuel system 800RPM cdi ignition circuit
Text: drive required) · Avalanche capability The suitability of power MOSFETs for this application has , , 50% duty cycle pulse to the base of Q2, with SI open. With SI closed, normal ignition triggering is , Q4 Q5 2N2369 2N2369 2N2369 2N2369 2N2905 R10 Rl 1 R12 R13 - Resistor 5K6 1/8W Resistor 10K 1/8W 820R , magnitude of the leakage spike amply displays avalanche occurring in the HEXFET, and this avalanche


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PDF AN966: AN-969 ignition module 2n2369 avalanche cdi ignition timing advance car cdi ignition cdi ignition irf740 application note ELECTRONIC CENTRIFUGAL SWITCH design of ignition and fuel system 800RPM cdi ignition circuit
1999 - 2N2369 Spice

Abstract: HP355C 2N2369 AVALANCHE PULSE GENERATOR CA3039 HP1120A 2N2369 avalanche nanosecond pulse stretcher nanosecond pulse generator Avalanche Transistor Circuits for Generating AN793 motorola
Text: Tektronix type 111 pulse generator (see Reference 29). Information on avalanche operation appears in , , settling within 5mV or less for a 5V step is of interest. No general purpose pulse generator is meant to , excessive input capacitance. An INPUT STEP TO OSCILLOSCOPE ­ POSITIVE INPUT FROM PULSE GENERATOR , Settling Time Measurement Provides Misleading Results. Pulse Generator Posttransition Aberrations Appear , "flat-top" pulse generator . These become the central issues in wideband amplifier settling time measurement


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PDF AN79-31 AN79-32 an79f 2N2369 Spice HP355C 2N2369 AVALANCHE PULSE GENERATOR CA3039 HP1120A 2N2369 avalanche nanosecond pulse stretcher nanosecond pulse generator Avalanche Transistor Circuits for Generating AN793 motorola
2003 - sn1016

Abstract: ATIC-17 2N2369 transistor pulse generator LT1016CN8 RCA 2N3866 dual fet q51 74121 application as pulse generator 2N3866 APPLICATION sn7402 equivalent LT1016
Text: simple test circuit allows us to see that the LT1016's (Trace B) response to the pulse generator (Trace , TRACE A 5V/DIV PULSE GENERATOR 1k OUTPUTS 10 + TRACE B 5V/DIV LT1016 ­ TRACE C , Voltage Controlled Pulse Width Generator 5V Single Supply Precision RC 1MHz Oscillator FULL-SCALE , amplifier controls the circuit's output pulse generator , closing feedback loop around the integrating amplifier. To maintain the summing node at zero, the pulse generator runs at a frequency that permits


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PDF LT1016 LT1016 LT1711/LT1712 LT1713/LT1714 LT1715 150MHz LT1719/LT1720/LT1721 sn1016 1016fcs ATIC-17 2N2369 transistor pulse generator LT1016CN8 RCA 2N3866 dual fet q51 74121 application as pulse generator 2N3866 APPLICATION sn7402 equivalent
1991 - LT1220

Abstract: No abstract text available
Text: circuit allows us to see that the LT1016’s (Trace B) response to the pulse generator (Trace A) is as , . Always use bypass capacitors. TEST CIRCUIT 7404 TRACE A 5V/DIV PULSE GENERATOR 1k 10Π, 1016fc 13 LT1016 Typical Applications Voltage Controlled Pulse Width Generator Single Supply , Information 1Hz to 10MHz V-to-F Converter the circuit’s output pulse generator , closing feedback loop around the integrating amplifier. To maintain the summing node at zero, the pulse generator runs at a


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PDF LT1016 LT1016, LT1016 100MHz LT1715 150MHz LT1719/LT1720/LT1721 LT1220
Lt1016

Abstract: sn1016 lt1016 equivalent LT1220
Text: (Trace B) response to the pulse generator (Trace A) is as fast as a TTL inverter (Trace C) even when , . TEST CIRCUIT 7404 TRACE A 5V/DIV PULSE GENERATOR 1k OUTPUTS 10Ω + TRACE B 5V/DIV , A-to-D 13 LT1016 U TYPICAL APPLICATIO S Voltage Controlled Pulse Width Generator 5V LM385 , capacitor. The amplifier controls the circuit’s output pulse generator , closing feedback loop around the integrating amplifier. To maintain the summing node at zero, the pulse generator runs at a frequency that


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PDF LT1016 T1016 LT1711/LT1712 LT1713/LT1714 LT1715 150MHz LT1719/LT1720/LT1721 sn1016 1016fcs Lt1016 lt1016 equivalent LT1220
1991 - ATIC-17

Abstract: 74121 application as pulse generator 2N2369 transistor pulse generator RCA 2N3866 2n5160 ATIC-17 c1 ATIC17 SN7402 datasheet Transistor 2N3866 sn7402 equivalent
Text: circuit allows us to see that the LT1016's (Trace B) response to the pulse generator (Trace A) is as fast , TRACE A 5V/DIV PULSE GENERATOR 1k OUTPUTS 10 + TRACE B 5V/DIV LT1016 ­ TRACE C , LT1016 U TYPICAL APPLICATIO S Voltage Controlled Pulse Width Generator 5V LM385 1.23V Single , amplifier controls the circuit's output pulse generator , closing feedback loop around the integrating amplifier. To maintain the summing node at zero, the pulse generator runs at a frequency that permits


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PDF LT1016 LT1016 LT1711/LT1712 LT1713/LT1714 LT1715 150MHz LT1719/LT1720/LT1721 1016fc ATIC-17 74121 application as pulse generator 2N2369 transistor pulse generator RCA 2N3866 2n5160 ATIC-17 c1 ATIC17 SN7402 datasheet Transistor 2N3866 sn7402 equivalent
2007 - 16f73

Abstract: 74ACH14 cd4040 application note 16f73 rs232 74ACH74 LT1150 LSK389 equivalent 2N2369 avalanche 2N2369 AVALANCHE PULSE GENERATOR Notebook lcd inverter schematic
Text: /PEAKING 40", 50 COILED HARD LINE AVALANCHE PULSE OUTPUT STAGE Figure 31. Pulse Generator Output , adjustments until all three points are fixed. Delayed Pulse Generator with Variable Time Phase, Low Jitter Trigger Output Fast circuitry often requires a pulse generator that also supplies a variable time phase , path includes components which form trace E's trigger output pulse . C1 triggers output pulse generator , . Note 8. Avalanche mode pulse generation is a subtle, arcane technique requiring extensive discussion


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PDF an113f AN113-19 AN113-20 16f73 74ACH14 cd4040 application note 16f73 rs232 74ACH74 LT1150 LSK389 equivalent 2N2369 avalanche 2N2369 AVALANCHE PULSE GENERATOR Notebook lcd inverter schematic
Instruments

Abstract: AN13F IC 7404 GP ttl ceramic oscillator using 7404 HP-HEMT-6000 precision Sine 1Mhz Wave Generator sinewave-generator of ic 7475 used in fastest finger first ttl 7474 sine wave 7404 ttl inverter photos
Text: that the LT1016's (Trace B) response to the pulse generator (Trace A) is faster than a TTL inverter , , the pulse generator runs at a frequency which permits enough charge pumping to offset the input signal , ±5V Figure 1. The LT1016 at a Glance TEST CIRCUIT 7404 A = 5V/DIV VERTICAL B = 5V/DIV PULSE GENERATOR + LT1016 OUTPUTS C = 2V/DIV ­ HORIZONTAL = 5ns/DIV 1V AN13 F02b Figure 2. LT1016 , "). An unbypassed LT1016 is shown responding to a pulse input in Figure 3. The power supply the LT1016


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PDF 2N2369 HP5082-2810 2N3866 2N5160 LT1016 2N2369 an13f AN13-32 Instruments AN13F IC 7404 GP ttl ceramic oscillator using 7404 HP-HEMT-6000 precision Sine 1Mhz Wave Generator sinewave-generator of ic 7475 used in fastest finger first ttl 7474 sine wave 7404 ttl inverter photos
1995 - 4 Position 16 Pin PdT dip switch

Abstract: National 74hc04 74ALS00 74ALS74 HC04 DP8459 C1995 AN-502 74LS92 74LS165
Text: single-shot circuit which generates a reset pulse during power-on This signal clears the shift register , serial-out Shift Register) and U5 (divide-by6 counter) constitute a 6-bit word programmable data generator It , the 3 ENCODED READ DATA (ERD) AND READ GATE (RG) A word pattern generator is a convenient signal , 3V) Q1 e 2N2369 (NPN) Q2 e 2N2369 (NPN) Xtal e 20 MHz Switch Switch Switch Switch Loop


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PDF DP8459 28-pin DP8459V) 4 Position 16 Pin PdT dip switch National 74hc04 74ALS00 74ALS74 HC04 C1995 AN-502 74LS92 74LS165
2004 - 2369A

Abstract: 2N2369 2N2369 datasheet 2N2369 transistor J 2N2369 2N2369A 100MHz-500MHz
Text: 2N2369 , 2369A High Speed Switching Transistors Features: · NPN Silicon Planar Epitaxial , . · 2N2369 /A are NPN Silicon High Speed Saturated Switching, Transistors With Low Power and High , .0 2N2369 , 2369A High Speed Switching Transistors Absolute Maximum Ratings Parameter Symbol VCEO , (10µs Pulse ) 40 V mA Electrical Characteristics (Ta = 25°C unless otherwise specified , Collector Emitter Saturation Voltage Base Emitter Saturation Voltage DC Current Gain 2N2369


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PDF 2N2369, 2N2369/A 2369A 2N2369 2N2369 datasheet 2N2369 transistor J 2N2369 2N2369A 100MHz-500MHz
1998 - 2N3866 application note

Abstract: transistor 2n2369 sn1671 Transistor 2N3866 LT1671IS8 LT1671CS8 LT1671CMS8 LT1671 LT1394 LT1116
Text: /F Coverters Fast Pulse Height/Width Discriminators High Speed Triggers Line Receivers High Speed , Latch Hold Time (Note 8) 35 ns t PW(D) Minimum Disable Pulse Width 30 ns Note 1 , tail. Ordinary high speed pulse generators are not capable of generating such a signal, and in any , fast edge from the generator and the collector voltage settles to exactly 0V in just a few nanoseconds , 0V ­3V FET PROBE LT1671 130 PULSE IN Q * TOTAL LEAD LENGTH INCLUDING DEVICE PIN


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PDF LT1671 LT1394, LT1016 LT1116 LT1016 LT1394 LT1720 1671fs, 2N3866 application note transistor 2n2369 sn1671 Transistor 2N3866 LT1671IS8 LT1671CS8 LT1671CMS8 LT1671 LT1394 LT1116
2001 - 2N2369 transistor

Abstract: J 2N2369 2n2369 IC 13 J 2N2369A 2N2369A
Text: TRANSISTORS 2N2369 2N2369A TO-18 APPLICATIONS 2N2369 /A are NPN Silicon High Speed Saturated Switching , Current Continuous 500 mA Collector Current Peak(10us pulse ) IC(peak) PD 360 mW Power Dissipation , ) DESCRIPTION SYMBOL TEST CONDITION 2N2369 2N2369A UNIT >15 >15 V VCEO*(sus)IC=10mA, IB=0 Collector , ts 2N2369 >20 2N2369 /2369A 2N2369A UNIT 40-120 >30 >20 >500 <4.0 MHZ pF <12 , =3V >500 <4.0 <15 ns <13 ns IC=100mA, IB1=IB=10mA, VCC=10V <13 * Pulse Test : Pulse Width


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PDF 2N2369 2N2369A 2N2369/A C-120 2N2369 transistor J 2N2369 2n2369 IC 13 J 2N2369A 2N2369A
2001 - J 2N2369

Abstract: 2N2369 2N2369A
Text: SILICON PLANAR EPITAXIAL TRANSISTORS 2N2369 2N2369A TO-18 APPLICATIONS 2N2369 /A are NPN Silicon , Voltage IC 200 mA Collector Current Continuous 500 mA Collector Current Peak(10us pulse ) IC(peak , Specified) DESCRIPTION SYMBOL TEST CONDITION 2N2369 2N2369A UNIT >15 >15 V VCEO*(sus)IC=10mA, IB , ts 2N2369 >20 2N2369 /2369A 2N2369A UNIT 40-120 >30 >20 >500 <4.0 MHZ pF <12 , =3V >500 <4.0 <15 ns <13 ns IC=100mA, IB1=IB=10mA, VCC=10V <13 * Pulse Test : Pulse Width


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PDF 2N2369 2N2369A 2N2369/A C-120 J 2N2369 2N2369 2N2369A
1998 - Not Available

Abstract: No abstract text available
Text: /F Coverters Fast Pulse Height/Width Discriminators High Speed Triggers Line Receivers High Speed , t PW(D) Minimum Disable Pulse Width 30 ns Note 1: Absolute Maximum Ratings are those , only a few nanoseconds with no ringing or settling tail. Ordinary high speed pulse generators are not , configuration. The transistor is switched off with a fast edge from the generator and the collector voltage , 130Ω PULSE IN Q * TOTAL LEAD LENGTH INCLUDING DEVICE PIN. SOCKET AND CAPACITOR LEADS


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PDF LT1671 LT1394, LT1016 LT1116 LT1016 LT1394 LT1720 1671fs,
1998 - 2N3866 application note

Abstract: 2N2369 transistor pulse generator 2N5160 LT1016 LT1671IS8 LT1671CS8 LT1671CMS8 LT1671 LT1394 LT1116
Text: /F Coverters Fast Pulse Height/Width Discriminators High Speed Triggers Line Receivers High Speed , Hold Time (Note 8) 35 ns t PW(D) Minimum Disable Pulse Width 30 ns Note 1 , tail. Ordinary high speed pulse generators are not capable of generating such a signal, and in any , fast edge from the generator and the collector voltage settles to exactly 0V in just a few nanoseconds , 0V ­3V FET PROBE LT1671 130 PULSE IN Q * TOTAL LEAD LENGTH INCLUDING DEVICE PIN


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PDF LT1671 LT1394, LT1016 LT1116 LT1016 LT1394 LT1720 1671f 2N3866 application note 2N2369 transistor pulse generator 2N5160 LT1671IS8 LT1671CS8 LT1671CMS8 LT1671 LT1394 LT1116
2N2369

Abstract: J 2N2369 2N2369A
Text: PLANAR EPITAXIAL TRANSISTORS 2N2369 2N2369A TO-18 APPLICATIONS 2N2369 /A are NPN Silicon High , 200 mA Collector Current Continuous 500 mA Collector Current Peak(10us pulse ) IC(peak) PD 360 , Specified) DESCRIPTION SYMBOL TEST CONDITION 2N2369 2N2369A UNIT >15 >15 V VCEO*(sus)IC=10mA, IB , ts 2N2369 >20 2N2369 /2369A 2N2369A UNIT 40-120 >30 >20 >500 <4.0 MHZ pF <12 , =3V >500 <4.0 <15 ns <13 ns IC=100mA, IB1=IB=10mA, VCC=10V <13 * Pulse Test : Pulse Width


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PDF ISO/TS16949 2N2369 2N2369A 2N2369/A C-120 2N2369 J 2N2369 2N2369A
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