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BZ-2RDS24-S Honeywell Sensing and Control Master Electronics 4 $58.66 $27.31
BZ-2RDS24-S Honeywell Sensing and Control / MICRO SWITCH Sager 515 $36.00 $30.20
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KRDS225 SSAC LLC Allied Electronics & Automation 0 $46.22 $46.22
ML4.2-8-H-20-IR/DS/25/95/136 PEPPERL+FUCHS GmbH Allied Electronics & Automation 0 $264.15 $264.15
RDS2 153J KOA Speer Electronics Inc Bristol Electronics - -
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RDS2 datasheet (1)

Part Manufacturer Description Type PDF
RDS2560G KOA Speer Electronics Leaded Resister RD / Miniature Carbon Film Scan PDF

RDS2 Datasheets Context Search

Catalog Datasheet MFG & Type PDF Document Tags
2001 - RD50SS

Abstract:
Text: RDS2 * LEADED COMPONENTS ORDERING AND SPECIFYING INFORMATION RDS2 TYPE RDS2 RDS2FP RD50SS , TOLERANCE G ± 2.0% J± 5.0% T52 PACKAGING RDS2 - T52, T26A, VT, MT, U RDS2FP - T52, T26A, MT, U RD50SS - T52 , POWER RATING (%) PARAMETER RDS2 RDS2FP RD50SS RD50SSFP Temperature Coefficient (ppm/ °C , 0.067±0.008 1.7±0.2 0.098±0.02 2.5±0.5 d 0.018±0.002 0.45±0.05 0.024±0.002 0.60±0.05 l RDS2 * RD50SS , COLOR WORKING OVERLOAD WITHSTANDING @70°C VOLTAGE VOLTAGE VOLTAGE Ivory 0.25W RDS2FP RD50SS 0.5W


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PDF RD50SS* RD50SS RD50SSFP 35ATURE RD50SS RD50SSFP 50ppm T26A
KOA T26A

Abstract:
Text: ORDERING AND SPECIFYING INFORMATION RDS2 TYPE RDS2 RDS2FP RD50SS RD50SSFP 102 RESISTANCE 2 , % T52 PACKAGING I RDS2 - T52, T26A, VT, MT RDS2FP - T52, T26A, MT RD50SS - T52, T26A, VTP RD50SSFP - , 0 25 50 75 100 POWER RATING (%) PARAMETER RDS2 RD50SS RDS2FP RD50SSFP Temperature Coefficient , ) TYPE L (reference) C (max) D d I RDS2 0.12Ç 3.2 0-185 4.2 0.067±0.008 1.7*0.2 0.018±0.002 , WITHSTANDING VOLTAGE OPERATING TEMP. RANGE RESISTANCE RANGE G (±2%) E-24 J(±5) E-24 RDS2 0.25W


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PDF RD50SS 330KS2RD50SS RD50SSFP 10i2K 100KC2 10OKQ 330KS2 330KQ 50ppm 50ppm KOA T26A RD50S T26A
1999 - RD50SS

Abstract:
Text: - 100K 10 - 1.0 M J(±5) E-24 RDS2 2.2 - 5.1 M 2.2 - 1.0 M ORDERING AND SPECIFYING INFORMATION RDS2 TYPE RDS2 RDS2FP RD50SS RD50SSFP 102 RESISTANCE 2 Significant figures + Multiplier R , Current Noise Voltage Coefficent Low Temperature Operation ±300 -300 -600 -1000 -2000 RDS2 RDS2FP , 0.067±0.008 1.7±0.2 0.098±0.02 2.5±0.5 d 0.018±0.002 0.45±0.05 0.024±0.002 0.60±0.05 l RDS2 RD50SS , @70°C VOLTAGE VOLTAGE VOLTAGE Ivory 0.25W RDS2FP RD50SS 0.5W RD50SSFP Green Green Lt. Brown 350 V 700 V


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PDF RD50SS RD50SS RD50SSFP RD50SSFP 50ppm
RD50SS

Abstract:
Text: POWER RATING (%) PARAMETER RDS2 RDS2FP RD50SS RD50SSFP Temperature Coefficient (ppm/°C , 0.60±0.05 1 RDS2 RD50SS 1.18±0.12 30.0±3.0 RATINGS TYPE POWER BODY MAX MAX DIELECTRIC RATING COLOR WORKING OVERLOAD WITHSTANDING @70°C VOLTAGE VOLTAGE VOLTAGE IVORY 0.25W RDS2FP RD50SS 0.5W , 1.0MQ 1 0 Q - 100KQ 2.2Q - 5.1 M fi 10Q - 1.0 MQ 2.2Q - 1.0 MQ J(±5) E-24 RDS2 250V GREEN IVORY , - RDS2 TYPE ORDERING A ND SPECIFYING 102 RESISTANCE TOLERANCE T52 PACKAGING G ± 2.0% J± 5.0


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PDF RD50SS RD50SS RD50SSFP RD50SSFP 100KQ 330KQ 330KQ 50ppm RDS2 KOA
RD50SS

Abstract:
Text: INFORMATION RDS2 TYPE 102 RESISTANCE T52 TOLERANCE PACKAGING I RDS2 - T52, T26A, VT, MT RDS2FP - T52 , ) PARAMETER RDS2 RD50SS RDS2FP RD50SSFP Temperature Coefficient (ppm/°C) maximum s. 100£2 ±300  , ) TYPE L (reference) C (max) D d I RDS2 0.126 3.2 0.165 4.2 0.067+0.008 1.7+0.2 0.018±0.002 0.45±0.05 , OPERATING TEMP. RANGE RESISTANCE RANGE G{±2%) E-24 J(±5) E-24 RDS2 0.25W Ivory 250V 500 V 300 V -55°C 10Q - 330KQ 2.2Q - 1.0MQ RDS2FP Green to 10ß - 100KQ RD50SS 0.5W Ivory 350 V 700 V 700 V


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PDF RD50SS 330KQ RD50SS RD50SSFP 10i2K 100KC2 10OKQ 330KS2 50ppm 330k KOA T26A t26a
Not Available

Abstract:
Text: ) PARAMETER RDS2 RDS2FP Temperature Coefficient (ppm/°C) maximum <; 1000 >1000 s 10K > 10OK s , DIMENSIONS (in/mmI TYPE RDS2 RD50SS L (reference) 0.126 3.2 0-248 6.3 C (max) 0185 4.2 , . RATING COLOR WORKING OVERLOAD WITHSTANDING VOLTAGE RANGE @70°C VOLTAGE VOLTAGE Ivory -55°C RDS2 250V 300 V 0.25W 500 V to RDS2FP Green +155°C Ivory RD50SS 350 V 700 V 700 V 0.5W , 2.2Q - 5.1 MQ 10G - 1.0 MG 2.2Q - 1.0 MG ORDERING AND SPECIFYING INFORMATION RDS2 TYPE G


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PDF RD50SS 100KO 100KO 330KS2 330KQ 50ppm RD50SSFP S04b0A7
Not Available

Abstract:
Text: C 500 V A C D ielectric Strength 300 V A C - 700 V A C * RDS2 is also av a ila b le w ith FLAMEPROOF coating - K O A Type RDS2FP. K O A SPEER ELECTRONICS, INC. P.O. Box 547 Bradford , . RANGE ZERO HOT DERATING ' >'AT'w;"-: SPOT RDS2 * 250 350 10.0Q - 330KQ 10.0Q - 1.0MQ , METAL FILM (r£ 1. 8 w (w 1/4 w RDS2 R050SS (it 1/4 w r.i 1/2 w SN2C @ 1/8 w MS50SS 1/4 w


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PDF 330KQ R050SS KOASS008 10ppro 10ppm
2003 - SC4510

Abstract:
Text: Q1/Q3 Q2/Q4 1 2b) Rds2 bottom MOSFET {Rs,Cs}{( Rds2+RL ),L} SC4510 combi-sense VCs=( Rds2+RL )Io. SEMTECH COMBI SENSE Vin Rds1 1 iL(t) L RL Rs Cs PN 2 Cin , Vgs1Vgs2. Q1-Q4 VPN 2 a) , VCs = [D(Rds1+RL)+(1-D)( Rds2+RL )] Io = [D Rds1+(1-D) Rds2+RL ]Io , © 2003 Semtech Corp. 12 Rds2 L RL Rs PN Cs Vo VPN Cout Rload vC(t , RsC s . R eq L R eq Rseq Rs Rs1 3Rs2 SC4510 Rs2 Rds1 = Rds2 7 L = 10µHRL =


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PDF SC4510 5V16VVcc TSSOP-20 5V16VVcc4 SC45h SC4510 SC4510ITSTR mosfet 9420 SC45 SS MOSFET TSSOP-20
2008 - SLYT293

Abstract:
Text: high-side switch, S1; rDS2 is the on resistance of the low-side switch, S2; and RL is the output-inductor , Texas Instruments Incorporated Equation 7: ton(min) = 200 ns, fs(max) = 600 kHz, rDS1 = rDS2 = rDS , need to substitute the following values into Equation 8: rDS1 = rDS2 = rDS(on)(max) = 200 mW, VIN(min , on-resistance characteristics, and IOUT × (rDS1 ­ rDS2 ) will be zero. In many applications, the low-side switch


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PDF SLYT293 SLYT293 2Q2008
Not Available

Abstract:
Text: ) 5.5 (ILOAD = 100mA) 3.3 25 3.1 RDS(ON) (Ω) RDS(ON) (Ω) Ω 20 15 RDS2 , ° Temperature (°C) Input Voltage (V) 4296.2009.11.1.4 RDS2 1.9 RDS5 RDS4 0 , 2.3 RDS2 RDS1 RDS5 1.1 RDS1 1.0 RDS2 0.8 1.5 2.0 2.5 3.0 3.5 4.0 , 3.4 RDS3 RDS4 3.1 RDS1 2.8 RDS3 RDS6 2.5 2.0 1.5 RDS5 1.0 RDS2 2.5 RDS1 RDS2 0.5 0.0 2.2 -40 -20 0 20 40 60 80 -40 100 -20


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PDF AAT4296 AAT4296/98 AAT4296: AAT4298:
AAT4296

Abstract:
Text: RDS(ON) () RDS(ON) () 20 15 RDS2 10 RDS3 5 0 RDS1 2.5 3.0 3.5 4.0 Input Voltage (V) 4296.2006.02.1.1 RDS3 2.5 2.3 RDS1 RDS2 RDS4 RDS5 1.9 RDS5 , 2.0 RDS2 2.0 1.7 2.5 3.0 RDS5 1.1 RDS1 1.0 1.5 2.0 RDS1 1.4 RDS5 1.5 2.3 RDS4 RDS3 RDS6 3.5 4.0 4.5 5.0 RDS2 0.8 5.5 -40 -20 , , TLAT (µs) RDS1 RDS2 0.5 2.2 -40 RDS4 RDS3 RDS6 2.5 1.0 RDS2 2.5


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PDF AAT4296/98 AAT4296/98 AAT4296 AAT4296IJS-T1 AAT4298 AAT4298ITP-T1 on/off switch SC70JW-8 simple on/off temperature control circuits
AAT4296

Abstract:
Text: RDS(ON) () RDS(ON) () 20 15 RDS2 10 RDS3 5 0 RDS1 2.5 3.0 3.5 4.0 Input Voltage (V) 4296.2005.10.1.0 RDS3 2.5 2.3 RDS1 RDS2 RDS4 RDS5 1.9 RDS5 , 2.0 RDS2 2.0 1.7 2.5 3.0 RDS5 1.1 RDS1 1.0 1.5 2.0 RDS1 1.4 RDS5 1.5 2.3 RDS4 RDS3 RDS6 3.5 4.0 4.5 5.0 RDS2 0.8 5.5 -40 -20 , , TLAT (µs) RDS1 RDS2 0.5 2.2 -40 RDS4 RDS3 RDS6 2.5 1.0 RDS2 2.5


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PDF AAT4296/98 AAT4296/98 AAT4296 AAT4296IJS-T1 AAT4298 AAT4298ITP-T1 SC70JW-8
Not Available

Abstract:
Text: , 15.60, 15.67, 15.69 Read data setup time 2 l RDS2 8 ns 15.16, 15.38, 15.47, 15.60 , tCASD3 l CASD3 l RDH5 l RDH5 l RDS2 D31-D0 *DACD3 *DACD1 _ r _ x -C X Use l RDS2 tRDH3 DACKn -C UDH3 t \ WAIT V J 1 CAS, OE/RFSH CKE Note: tRDH5 , , CASxx, DQMxx l RDS2 *RDH3 D31-D0 c ■■I *DACD1 , l DACD3 DACKn WAIT IB S , , a-CASxx / DQMxx 1-" l RDH6 4-# l RDH6 l RDS2 tRDH3 * RDS2 l RDH3 D31-D0 l


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PDF
MS50SSD

Abstract:
Text: 350 V AC 500 V AC 350 VAC 500 V AC * RDS2 is also a v a ila b le w ith FLAMEPROOF c o a tin g - K O A Type RDS2FP. KOA SPEER ELECTRONICS, INC. P.O. Box 547 Bradford, PA 16701 S FAX , MINIATURE DUAL-RATED RESISTORS ^ L ^ - a - '·cn ro D u r ,! GENERAL PURPOSE FIXED CARBON FILM KSE# RDS2 * MAX. WORKING VOLTAGE 250 RESISTANCE RANGE (E-24) 2 % TOLERANCE 10.02 - 330KQ 5% TOLERANCE 2.2S2 - 2.2MÍ2 WATTAGE RATING AT OPERATING TEMP. RANGE -55°C -


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PDF 330KQ RD50SS MS50SSD
2004 - schematic diagram 12v dc convertor

Abstract:
Text: {( Rds2+RL ), L} and VCs=( Rds2+RL )Io. Effective current sensing is important for the current mode control , -D)( Rds2+RL )] Io = [D Rds1+(1-D) Rds2+RL ]Io = ReqIo. Vin Q1 D is the operating duty ratio. It is noted , operating duty ratio is very small the effective Rds is determined mostly by Rds2. The time constant RsCs , turn ON, the equivalent circuit of Fig.1 becomes the sub-circuit as shown in Fig. 2b). Where Rds2 is , . Rds2 L RL Rs PN Cs Vo VPN Cout Rload vC(t) Fig.2 b) Equivalent


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PDF SC4510 SC4510 MO-153, TSSOP-20 schematic diagram 12v dc convertor DC DC CONVERTOR mosfet 9420 SC4510ITSTR SC4510ITSTRT TSSOP-20
2004 - dc to dc convertor schematic

Abstract:
Text: .1 becomes the sub-circuit as shown in Fig. 2b). Where Rds2 is the channel resistance of the bottom MOSFET. In this case, the branch {Rs,Cs} is in parallel with {( Rds2+RL ), L} and VCs=( Rds2+RL )Io. Vin Rds1 , , VCs = [D(Rds1+RL)+(1-D)( Rds2+RL )] Io = [D Rds1+(1-D) Rds2+RL ]Io = ReqIo. Vin Q1 Vgs1 iL(t) PN Cin , operating duty ratio is very small the effective Rds is determined mostly by Rds2. The time constant RsCs , ) Rload Rds2 Fig.2 b) Equivalent sub-circuit. 12 www.semtech.com © 2004 Semtech Corp. SC4510


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PDF SC4510 dc to dc convertor schematic sC 9420
2003 - GDL10

Abstract:
Text: Where, Rds2 is the channel resistance of the bottom MOSFET. In this case, the branch {Rs,Cs} is in parallel with {( Rds2+RL ), L} and VCs=( Rds2+RL )Io. COMBI SENSE OPERATION AND CURRENT LIMIT Effective , . When averaged over a comlete cycle, VCs = [D(Rds1+RL)+(1-D)( Rds2+RL )] Io = [D Rds1+(1-D) Rds2+RL ]Io = , Since the operating duty ratio is very small the effective Rds is determined mostly by Rds2. The time , sensed from VCs when (Rds1+RL) is known. © 2003 Semtech Corp. Rds2 L RL Rs PN Cs Vo


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PDF SC4510 SC4510 TSSOP-20 GDL10 SC4510ITSTR TSSOP-20
2004 - buck converter

Abstract:
Text: .1 becomes the sub-circuit as shown in Fig.2 b). Where, Rds2 is the channel resistance of the bottom MOSFET. In this case, the branch {Rs,Cs} is in parallel with {( Rds2+RL ), L} and VCs=( Rds2+RL )Io. Vin Rds1 , , VCs = [D(Rds1+RL)+(1-D)( Rds2+RL )] Io = [D Rds1+(1-D) Rds2+RL ]Io = ReqIo. D is the operating duty ratio , operating duty ratio is very small the effective Rds is determined mostly by Rds2. The time constant RsCs , vC(t) Rload Rds2 Fig.2 b) Equivalent sub-circuit. 12 www.semtech.com SC4510 POWER


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PDF SC4510 SC4510 TSSOP-20 buck converter
2007 - AAT4296

Abstract:
Text: = 100mA) (ILOAD = 100mA) 3.3 25 3.1 RDS(ON) () RDS(ON) () 20 15 RDS2 10 , 2.5 2.3 RDS1 RDS2 RDS4 RDS5 1.9 RDS5 RDS4 2.0 RDS6 2.7 2.1 RDS6 1.5 , RDS3 RDS4 RDS(ON) () RDS(ON) () 3.5 2.5 2.0 RDS2 2.0 1.7 2.5 3.0 RDS5 , 4.0 4.5 5.0 RDS2 0.8 5.5 -40 -20 0 20 40 60 80 Input Voltage (V , Off Timeout, TOFF (s) Latch Timeout, TLAT (µs) RDS1 RDS2 0.5 2.2 -40 RDS4 RDS3


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PDF AAT4296/98 AAT4296/98 AAT4296 AAT4296IJS-T1 AAT4298 AAT4298IJQ-T1 SC70JW-10 SC70JW-8 AAT4298ITP-T1
2009 - AAT4296

Abstract:
Text: = 100mA) 3.3 25 3.1 RDS(ON) () RDS(ON) () 20 15 RDS2 10 RDS3 5 0 RDS1 2.5 3.0 2.5 2.3 3.5 4.0 4.5 5.0 5.5 1.7 -40 RDS1 RDS2 RDS4 , RDS2 2.0 1.7 2.5 3.0 RDS5 1.1 RDS1 1.0 1.5 2.0 RDS1 1.4 RDS5 1.5 RDS4 RDS3 RDS6 2.3 3.5 4.0 4.5 5.0 RDS2 0.8 5.5 -40 -20 0 20 , -20 0 20 RDS5 RDS1 RDS2 0.5 2.2 -40 RDS4 RDS3 RDS6 1.0 RDS2


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PDF AAT4296 AAT4296/98 AAT4296: AAT4298: AAT4296 AAT4296IJS-T1 AAT4298 AAT4298IJQ-T1 SC70JW-10 SC70JW-8
2004 - diode ph 6

Abstract:
Text: {( Rds2+RL ), L} and VCs=( Rds2+RL )Io. Effective current sensing is important for the current mode control , -D)( Rds2+RL )] Io = [D Rds1+(1-D) Rds2+RL ]Io = ReqIo. Vin Q1 D is the operating duty ratio. It is noted , operating duty ratio is very small the effective Rds is determined mostly by Rds2. The time constant RsCs , turn ON, the equivalent circuit of Fig.1 becomes the sub-circuit as shown in Fig. 2b). Where Rds2 is , . Rds2 L RL Rs PN Cs Vo VPN Cout Rload vC(t) Fig.2 b) Equivalent


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PDF SC4510 SC4510 MO-153, TSSOP-20 diode ph 6 schematic diagram 12v dc convertor DC-DC convertor soft start SC4510ITSTR SC4510ITSTRT TSSOP-20
2012 - 6 Pins Tact Push Button Switch

Abstract:
Text: (ILOAD = 100mA) RDS(ON) () RDS(ON) () 2.9 2.7 2.5 2.3 2.1 1.9 RDS6 RDS3 RDS1 RDS2 RDS5 RDS4 15 10 5 0 RDS2 RDS3 RDS6 RDS5 RDS4 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 5.5 RDS1 1.7 -40 -20 , RDS6 RDS3 RDS4 RDS5 RDS2 2.5 RDS1 3.0 3.5 4.0 4.5 5.0 5.5 1.1 0.8 -40 -20 RDS5 0 RDS2 20 40 RDS1 60 80 100 Input Voltage (V) Temperature (°C) P-Channel RDS(ON) vs , RDS4 3.0 2.5 2.0 1.5 1.0 0.5 0.0 RDS6 RDS3 RDS1 RDS2 RDS5 RDS2 RDS1 0 20


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PDF AAT4296/4298 AAT4296/98 202224B 6 Pins Tact Push Button Switch
2004 - Not Available

Abstract:
Text: .1 becomes the sub-circuit as shown in Fig.2 b). Where, Rds2 is the channel resistance of the bottom MOSFET. In this case, the branch {Rs,Cs} is in parallel with {( Rds2+RL ), L} and VCs=( Rds2+RL )Io. Vin Rds1 , , VCs = [D(Rds1+RL)+(1-D)( Rds2+RL )] Io = [D Rds1+(1-D) Rds2+RL ]Io = ReqIo. D is the operating duty ratio , operating duty ratio is very small the effective Rds is determined mostly by Rds2. The time constant RsCs , vC(t) Rload Rds2 Fig.2 b) Equivalent sub-circuit. 12 www.semtech.com SC4510 POWER


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PDF SC4510 SC4510 TSSOP-20
2012 - 4298

Abstract:
Text: ) () RDS6 RDS3 RDS4 RDS2 RDS5 15 2.7 2.5 2.3 2.1 RDS2 10 RDS3 5 RDS1 RDS1 RDS6 RDS5 , 2.0 1.7 1.4 RDS6 RDS3 RDS4 RDS5 RDS2 1.1 RDS1 RDS5 -40 -20 0 RDS2 RDS1 0.8 , ; ILOAD = 100mA) RDS4 RDS6 RDS3 RDS5 RDS6 RDS3 RDS4 RDS1 RDS2 RDS(ON) () 2.5 2.0 1.5 1.0 0.5 0.0 -40 -20 0 20 40 60 80 100 -40 RDS(ON) () 3.4 3.1 2.8 2.5 2.2 RDS5 RDS2 RDS1 -20 0


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PDF AAT4296/4298 AAT4296/98 02224A 4298
Not Available

Abstract:
Text: -52 mS Transit time2, tau2-2.0 psec Source Resistance2, Rs2-3.0 Q Drain-Source Resistance2, Rds2-205 fi , MIL DIAMETER DEVICE EQUIVALENT CIRCUIT MODEL Cgd1 Rd2 _|_ Cds2 'gm2 tau2 Rds2 =j= C9d2 L


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PDF 1241GG
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