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    2N4392 SPECIFICATION Search Results

    2N4392 SPECIFICATION Result Highlights (4)

    Part ECAD Model Manufacturer Description Download Buy
    PEF24628EV1X
    Rochester Electronics LLC PEF24628 - SOCRATES Four-channel SHDSL EFM system-on-chip PDF Buy
    HM1L52LDP242H6PLF
    Amphenol Communications Solutions Right Angle Signal Header, 60 Position Press-Fit, Specific Loading PDF
    HM1L52LDP242H2PLF
    Amphenol Communications Solutions Right Angle Signal Header, 60 Position Press-Fit, Specific Loading PDF
    CDC341DWR
    Texas Instruments 1-to-8 clock driver with tight AC specification 20-SOIC 0 to 70 Visit Texas Instruments Buy

    2N4392 SPECIFICATION Datasheets Context Search

    Catalog Datasheet Type Document Tags PDF

    4392

    Abstract: siliconix AN1 SST4393 Vishay 2N4391 2N4392 2N4393 PN4391 PN4392 PN4393 SST4391
    Contextual Info: 2N/PN/SST4391 Series Vishay Siliconix N-Channel JFETs 2N4391 PN4391 SST4391 2N4392 PN4392 SST4392 2N4393 PN4393 SST4393 PRODUCT SUMMARY Part Number VGS off (V) rDS(on) Max (W) ID(off) Typ (pA) tON Typ (ns) 2N/PN/SST4391 –4 to –10 30 5 4 2N/PN/SST4392


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    2N/PN/SST4391 2N4391 PN4391 SST4391 2N4392 PN4392 SST4392 2N4393 PN4393 SST4393 4392 siliconix AN1 SST4393 Vishay 2N4391 2N4392 2N4393 PN4391 PN4392 PN4393 SST4391 PDF

    2N4393

    Abstract: 2N4391 2N4392 PN4391 PN4392 PN4393 SST4391 PW 2N 2N4393 VISHAY
    Contextual Info: 2N/PN/SST4391 Series Vishay Siliconix N-Channel JFETs 2N4391 PN4391 SST4391 2N4392 PN4392 SST4392 2N4393 PN4393 SST4393 PRODUCT SUMMARY Part Number VGS off (V) rDS(on) Max (W) ID(off) Typ (pA) tON Typ (ns) 2N/PN/SST4391 –4 to –10 30 5 4 2N/PN/SST4392


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    2N/PN/SST4391 2N4391 PN4391 SST4391 2N4392 PN4392 SST4392 2N4393 PN4393 SST4393 2N4393 2N4391 2N4392 PN4391 PN4392 PN4393 SST4391 PW 2N 2N4393 VISHAY PDF

    2n4392 SPECIFICATION

    Abstract: 2N4856 SILICONIX 2N4391
    Contextual Info: NCB SERIES DIE N-Channel JFETs CZ~Siliconix JmM in c o r p o r a te d The NCB Series features many of the superior NC B1C HP* N C B2C H P* NC B3C HP* NC B4C H P* 2N4391 2N4856 2N4856A 2N4859 2N4859A PN4391 J111 SST111 SST4391 2N4392 2N4857 2N4857A 2N4860 2N4860A


    OCR Scan
    MIL-STD-750C, 2N4391 2N4856 2N4856A 2N4859 2N4859A PN4391 SST111 SST4391 2N4392 2n4392 SPECIFICATION SILICONIX 2N4391 PDF

    PW 2N

    Abstract: siliconix 2n4393 2N4391 2N4392 2N4393 PN4391 PN4392 PN4393 SST4391 SST4392
    Contextual Info: 2N/PN/SST4391 Series Siliconix NĆChannel JFETs 2N4391 2N4392 2N4393 Product Summary PN4391 PN4392 PN4393 SST4391 SST4392 SST4393 Part Number VGS off (V) rDS(on) Max (W) ID(off) Typ (pA) tON Typ (ns) 2N/PN/SST4391 -4 to -10 30 5 4 2N/PN/SST4392 -2 to -5 60


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    2N/PN/SST4391 2N4391 2N4392 2N4393 PN4391 PN4392 PN4393 SST4391 SST4392 SST4393 PW 2N siliconix 2n4393 2N4391 2N4392 2N4393 PN4391 PN4392 PN4393 SST4391 SST4392 PDF

    4392

    Abstract: 2N4392 2N4391 2N4393 PN4391 PN4392 PN4393 SST4391 E-7709 20VPA
    Contextual Info: 2N/PN/SST4391 Series N-Channel JFETs 2N4391 2N4392 2N4393 PN4391 PN4392 PN4393 SST4391 SST4392 SST4393 Product Summary Part Number VGS off (V) rDS(on) Max (W) ID(off) Typ (pA) tON Typ (ns) 2N/PN/SST4391 –4 to –10 30 5 4 2N/PN/SST4392 –2 to –5 60 5


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    2N/PN/SST4391 2N4391 2N4392 2N4393 PN4391 PN4392 PN4393 SST4391 SST4392 SST4393 4392 2N4392 2N4391 2N4393 PN4391 PN4392 PN4393 SST4391 E-7709 20VPA PDF

    PW 2N

    Abstract: marking 2n sot23 2n4393 siliconix Q3060 SST4391 PN4392 equivalent
    Contextual Info: 2N/PN/SST4391 Series Vishay Siliconix N-Channel JFETs 2N4391 PN4391 SST4391 2N4392 PN4392 SST4392 2N4393 PN4393 SST4393 PRODUCT SUMMARY P a rt N u m b e r V û S o ff ( V ) r D S (o n) M a x ( Q ) ItH o ff) T Y P ( P A ) 2N/PN/SST4391 - 4 to -1 0 30 5 4


    OCR Scan
    2N/PN/SST4391 2N4391 2N4392 2N4393 2N/PN/SST4392 2N/PN/SST4393 PN4391 PN4392 PN4393 PW 2N marking 2n sot23 2n4393 siliconix Q3060 SST4391 PN4392 equivalent PDF

    PW 2N

    Abstract: SST4393 Q3060 marking 2n sot23 2N4392 4392 ic equivalent PW 2N 150 SST4391
    Contextual Info: Tem ic 2N/PN/SST4391 Series S e m i c o n d u c l o r s N-Channel JFETs 2N4391 2N4392 2N4393 PN4391 SST4391 PN4392 SST4392 PN4393 SST4393 Product Summary Part Number VGS off (V) r DS(on) Max (Q) iD(off) Typ (pA) to N T V p (n s) 2N/PN/SST4391 - 4 to -10 30


    OCR Scan
    2N/PN/SST4391 2N4391 2N4392 2N4393 2N/PN/SST4392 2N/PN/SST4393 PN4391 SST4391 PN4392 PW 2N SST4393 Q3060 marking 2n sot23 4392 ic equivalent PW 2N 150 PDF

    4392 ic equivalent

    Abstract: PW 2N SST4393 IN4392
    Contextual Info: T e m ic 2N/PN/SST4391 Series Siliconix N-Channel JFETs 2N4391 2N4392 2N4393 PN4391 PN4392 PN4393 SST4391 SST4392 SST4393 Product Summary r DS<on M a x £2) lD (oB >#P (pA) toN Typ (n s) - 4 to - 1 0 30 5 4 - 2 to - 5 60 5 4 -0 .5 to —3 100 5 4 P a rt N um ber


    OCR Scan
    2N/PN/SST4391 2N4391 2N4392 2N4393 PN4391 PN4392 PN4393 SST4391 SST4392 SST4393 4392 ic equivalent PW 2N SST4393 IN4392 PDF

    jfet

    Abstract: 2N4303 Siliconix JFET Dual 2N4381 to92 jfet p channel 2N4302 n channel 2n4393 2N3994 dual P-Channel JFET 2n4267
    Contextual Info: Product Specifications Product Specifications Cont’d Low Leakage Diodes Part Number Package (TO- ) Diode Reverse Current (pA, Max.) Breakdown Voltage (Volts) Min. Max. DPAD1 DPAD2 DPAD5 DPAD10 DPAD20 DPAD50 D PAD100 78 , 72 72 72 72 72 72 Dual : Dual Dual


    OCR Scan
    DPAD10 DPAD20 DPAD50 DPAD100 JPAD10 JPAD20 JPAD50 JPAD100 JPAD200 JPAD500 jfet 2N4303 Siliconix JFET Dual 2N4381 to92 jfet p channel 2N4302 n channel 2n4393 2N3994 dual P-Channel JFET 2n4267 PDF

    2N4303

    Abstract: sd215 siliconix 2n4416 jfet JFET u1898 cross 2N4381 2N4393 JFET 2N3330 2n4267 2N4302
    Contextual Info: si6halFET Product Specifications 7-io N & P-Channel Single JFETs Siliconix N N N P P P 8.0 6.0 11.5 6.5 3.2 5.0 5.0 9.5. 20 20 40 40 40 30 30 30 _ - _ _ _ _ _ _ _ 45 45 - _ _ - _ 0.9 2.0 0.2 0.44 1.0 2.0 5.0 1.0 2.0 0.5 0.1 3.0 I5.0 15.0 _ 25 75 150 _ 90 60


    OCR Scan
    P1087 P1087-18 SD210 SD211 S0212 SD213 SD214 SD215 U1897 U1897-18 2N4303 sd215 siliconix 2n4416 jfet JFET u1898 cross 2N4381 2N4393 JFET 2N3330 2n4267 2N4302 PDF

    j201 jfet

    Abstract: 2N4303 J201 Replacement fet cross reference FET J202 2N4381 2N3966 2N3909 J-FET 2N4393
    Contextual Info: Iì ì ì F E T P r o d u c t p e c i f i c GENERAL GEOMETRY Section 4 a t i o n s ( C o n f d ) Product Specifications DEVICE S lUT s ì g PURPOSE —I —1 . , X X z z z z z z z z z z z z z z z z ù - o i z z z z z z 'z z


    OCR Scan
    2N3821 2N3822 2N4220 2N4221 2N4222 2N5457 2N4139 2N3822 2N4861A 2N4861A j201 jfet 2N4303 J201 Replacement fet cross reference FET J202 2N4381 2N3966 2N3909 J-FET 2N4393 PDF

    J201 Replacement

    Abstract: fet cross reference 2N3B19 j201 Cross Reference 2n4381 JFET 2N4302 CROSS REFERENCE 2n6661 2N4393 fet 2N4304
    Contextual Info: Iì ì ì F E T P r o d u c t p e c i f i c GENERAL GEOMETRY Section 4 a t i o n s ( C o n f d ) Product Specifications DEVICE S lUT s ì g PURPOSE —I —1 . , X X z z z z z z z z z z z z z z z z ù - o i z z z z z z 'z z


    OCR Scan
    2N3821 2N3822 2N4220 2N4221 2N4222 2N5457 2N3955 2N4339 2N5546 J201 Replacement fet cross reference 2N3B19 j201 Cross Reference 2n4381 JFET 2N4302 CROSS REFERENCE 2n6661 2N4393 fet 2N4304 PDF

    2N4393

    Abstract: FET J202 siliconix fet j112 fet siliconix fet data book pn4117a transistor j201 FET J506 J112 jfet 2n4339
    Contextual Info: AN103 The FET Constant-Current Source/Limiter Introduction The combination of low associated operating voltage and high output impedance makes the FET attractive as a constant-current source. An adjustable-current source Figure 1 may be built with a FET, a variable resistor, and


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    AN103 PN4117A SST4117 2N4117A PN4118A SST4118 2N4118A PN4119A SST4119 2N4119A 2N4393 FET J202 siliconix fet j112 fet siliconix fet data book pn4117a transistor j201 FET J506 J112 jfet 2n4339 PDF

    siliconix - j201

    Abstract: j201 jfet 2N4392 jfet cascade SST4119 2N4341 AN103 J112 J202 SST112
    Contextual Info: AN103 Siliconix The FET ConstantĆCurrent Source/Limiter Introduction The combination of low associated operating voltage and high output impedance makes the FET attractive as a constantĆcurrent source. An adjustableĆcurrent source Figure 1 may be built with a FET, a variable resistor,


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    AN103 SST112 2N4392 2N4393 SST/J113 2N4392, SST/J112 2N4393, SST/J113 siliconix - j201 j201 jfet 2N4392 jfet cascade SST4119 2N4341 AN103 J112 J202 SST112 PDF

    2N4393

    Abstract: 2N4391 C55C ITE4391
    Contextual Info: 2N4391 - 2N4393 / ITE4391 - ITE4393 CALOGIC CORP HflE D • lfl4t43EE Q D O O B C H N-Channel JFET Switch 1 MCGC caloric CORPORATION v ZN4391-2N4393/ITE4391-ITE4393 ABSOLUTE MAXIMUM RATINGS T a - 2S°C unless otherwise noted FEATURES • r<|s(on)<300 Ohms (2N4391)


    OCR Scan
    2N4391 2N4393 ITE4391 ITE4393 ZN4391-2N4393/ITE4391-ITE4393 2N4391) 2N4392, 2N4393) 300ns, C55C PDF

    2N3971

    Abstract: 2n3966 2N5116 2N3824 2N3970 2N3972 2N4091 2N4092 2N4093 2N4391
    Contextual Info: «o C signalFET Product Specifications O cont’d y= O o m RF AMP D E V IC E O SWITCHES & CHOPPERS <D a G EO M ETRY (Section 4) co T> X X z z X 3 ? CCXOOOOOOUOOOOOOOOOOOOOOtflto^tttflüÎÉkoU Z Z Z Z Z Z Z Z Z Z Z Z Z Z Z Z Z Z Z Z Z Z Z a . £ L O . a . Q . Z Z Z Z Z


    OCR Scan
    U1837 U1837-18 2N3824 2N3966 2N3970 2N4861A 2N5018 2N5019 2N5114 2N5115 2N3971 2N5116 2N3972 2N4091 2N4092 2N4093 2N4391 PDF

    2N6658

    Abstract: PS 235S 2N5638 cross reference 2N3823 fet FET 2N4416 JFET 2N4393 2N3822 fet J-FET 2N3971
    Contextual Info: Siliconix 7-23 «o C signalFET Product Specifications O y= cont’d O o m RF AMP D E V IC E O SWITCHES & CHOPPERS <D coa T> G EO M ETRY (Section 4) X X z z X 3 ? CCXOOOOOOUOOOOOOOOOOOOOOtflto^tttflüÎÉkoU Z Z Z Z Z Z Z Z Z Z Z Z Z Z Z Z Z Z Z Z Z Z Z a . £ L O . a . Q . Z Z Z Z Z


    OCR Scan
    2N6453 2N4393 2N4392 2N6454 2N3821 2N6483 2N6484 2N4416 2N6658 PS 235S 2N5638 cross reference 2N3823 fet FET 2N4416 JFET 2N4393 2N3822 fet J-FET 2N3971 PDF

    MCA0616/1

    Abstract: T-120-01B Skynet Electronic
    Contextual Info: Space Products Semelab products and processes for space applications Contents 1. Introduction 4 2. Programmes Supported 5 3. Innovations 6 3.1 Improving the Space Weather Forecast with the LCC1- 4 6 3.2 SoLaRfets – Radiation Tolerant MosFETS 7 3.3 Si3N4 via technology


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    MIL-PRF-19500 QR216, QR217 FM36235 M/0103/CECC/UK 1360/M VQC-03-003050 VQC-03-003049 U3158 2M8S02 MCA0616/1 T-120-01B Skynet Electronic PDF

    motorola op amp with input resistance of 1.67

    Abstract: resistive Humidity Sensor MAX1452 MAX1452AAE MAX1452CAE MAX1452EAE
    Contextual Info: 19-1829; Rev 1; 6/01 KIT ATION EVALU E L B A AVAIL Low-Cost Precision Sensor Signal Conditioner The MAX1452 architecture includes a programmable sensor excitation, a 16-step programmable-gain amplifier PGA , a 768-byte (6144 bits) internal EEPROM, four 16-bit DACs, an uncommitted op amp, and an onchip temperature sensor. In addition to offset and span


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    MAX1452 16-step 768-byte 16-bit 16-pin MAX1452 motorola op amp with input resistance of 1.67 resistive Humidity Sensor MAX1452AAE MAX1452CAE MAX1452EAE PDF

    circuit diagram bridge transducer 4-20ma using op

    Abstract: digital piezoresistive weight sensor strain sensor 4-20mA transmitter for a bridge type transducer circuit diagram bridge transducer 4-20ma resistive Humidity Sensor bridge transducer 4-20ma transmitter weight transducer 4-20ma diode bridge 16A MAX1452
    Contextual Info: 19-1829; Rev 0; 10/00 ILABLE N KIT AVA EVALUATIO Low-Cost Precision Sensor Signal Conditioner The MAX1452 architecture includes a programmable sensor excitation, a 16-step programmable-gain amplifier PGA , a 768-byte (6144 bits) internal EEPROM, four 16-bit DACs, an uncommitted op amp, and an onchip temperature sensor. In addition to offset and span


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    MAX1452 16-step 768-byte 16-bit 16-pin MAX1452 circuit diagram bridge transducer 4-20ma using op digital piezoresistive weight sensor strain sensor 4-20mA transmitter for a bridge type transducer circuit diagram bridge transducer 4-20ma resistive Humidity Sensor bridge transducer 4-20ma transmitter weight transducer 4-20ma diode bridge 16A PDF

    digital piezoresistive pressure sensor wiring fso

    Abstract: resistive Humidity Sensor MAX1452 MAX1452AAE MAX1452ATG MAX1452CAE MAX1452EAE
    Contextual Info: 19-1829; Rev 2; 4/09 KIT ATION EVALU E L B AVAILA Low-Cost Precision Sensor Signal Conditioner Features The MAX1452 is a highly integrated analog-sensor signal processor optimized for industrial and process control applications utilizing resistive element sensors. The


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    MAX1452 16-bit MAX1452 digital piezoresistive pressure sensor wiring fso resistive Humidity Sensor MAX1452AAE MAX1452ATG MAX1452CAE MAX1452EAE PDF

    digital piezoresistive weight sensor

    Contextual Info: EVALUATION KIT AVAILABLE MAX1452 Low-Cost Precision Sensor Signal Conditioner General Description Features The MAX1452 is a highly integrated analog-sensor signal processor optimized for industrial and process control applications utilizing resistive element sensors. The


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    MAX1452 16-bit digital piezoresistive weight sensor PDF

    MAX1452EVKIT-NS

    Contextual Info: 19-1829; Rev 1; 6/01 KIT ATION EVALU E L B A AVAIL Low-Cost Precision Sensor Signal Conditioner The MAX1452 architecture includes a programmable sensor excitation, a 16-step programmable-gain amplifier PGA , a 768-byte (6144 bits) internal EEPROM, four 16-bit DACs, an uncommitted op amp, and an onchip temperature sensor. In addition to offset and span


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    40mV/V 16-Bit MAX1452 MAX1452 MAX1452AAE-T MAX1452AAE MAX1452AAE+ MAX1452C MAX1452EVKIT-NS PDF

    Contextual Info: 19-1829; Rev 2; 4/09 KIT ATION EVALU E L B AVAILA Low-Cost Precision Sensor Signal Conditioner The MAX1452 is a highly integrated analog-sensor signal processor optimized for industrial and process control applications utilizing resistive element sensors. The


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    MAX1452 16-bit MAX1452 PDF