The Datasheet Archive

Am149 datasheet (4)

Part ECAD Model Manufacturer Description Type PDF
AM149 AM149 ECAD Model Advanced Micro Devices Quad 741 Op Amp Original PDF
Am149 Am149 ECAD Model Advanced Micro Devices Quad 741 Operational Amplifiers Scan PDF
AM-149 AM-149 ECAD Model M/A-COM Amplifier Selection Guide Scan PDF
AM149 AM149 ECAD Model Others IC Datasheets - Shortform Scan PDF

Am149 Datasheets Context Search

Catalog Datasheet MFG & Type PDF Document Tags
IC 741 amp

Abstract: IC 741 to OPERATIONAL AMPLIFIER LM 741 op amp ic 741 ic 741 features ic 741 operational amplifier ic 741 and applications 741 AMP amplifier LM 741 741 IC circuit diagram
Text: Am148 Am149 P R E L IM IN A R Y D A T A D istinctive Characteristics 741 op amp operating characteristics Low supply cu rre n t drain - 0 .6 m A /a m p lifie r Class AB o u tp u t state - no crossover d , thermal coupling. The Am149 series has the same features as the Am148 plus a gain bandwidth product o f 4 , A m 149 Am148/ Am149 ±22V ±44V ±22 V Continuous Am248/Am249 ±18V ±36V ±18V Continuous Am348/Am349 , E LE C T R IC A L C H A R A C T E R IS T IC S (Note 3) Am148/ Am149 In p u t O ffse t Voltage In p


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PDF Am148 Am149 120dB Am149 IC 741 amp IC 741 to OPERATIONAL AMPLIFIER LM 741 op amp ic 741 ic 741 features ic 741 operational amplifier ic 741 and applications 741 AMP amplifier LM 741 741 IC circuit diagram
LM349N

Abstract: op am 741 Ami49 741 op amp pin diagram am741 LM149D LM148D LD148 OP 741 LM248D
Text: Am148 • Am149 Quad 741 Operational Amplifiers Distinctive Characteristics • 741 op amp , minimize thermal coupling. The Am149 series has the same features as the Am148 plus a gain bandwidth , +85°C LM249D Am149 Hermetic DIP Dice —55°C to +1 25° C -55°C to +1 25°C LM149D LD149 CONNECTION , Respective Manufacturer Am 148 • Am 149 ABSOLUTE MAXIMUM RATINGS _Am148/ Am149 Am248/Am249 Am348/Am349 , Performance Characteristics. ELECTRICAL CHARACTERISTICS (Note 3) Am148/ Am149 Am248/Am249 Am348/Am349


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PDF Am148 Am149 Ami24 120dB Am148 LM349N op am 741 Ami49 741 op amp pin diagram am741 LM149D LM148D LD148 OP 741 LM248D
OF IC 741

Abstract: IC 741 to lm series IC IN 5 pin 12 v power supply OPERATIONAL AMPLIFIER LM 741 IC 741 pin diagram LT 741 S OF 8 pin DIP IC 741 IC 741 amp LM 741 op amp single supply of 741 ic
Text: Am148 · Am149 Quad 741 Operational Amplifiers Distinctive Characteristics · 741 op amp operating , . The Am149 series has the same features as the Am148 plus a gain bandwidth product of 4.0MHz at a gain , ) See Am 741 for Ty p ica l Perform ance Characteristics. Am148/ Am149 +22V ±44V ±22V Continuous , a = 25° C T a = 25° C T a = 2 5 °C , V S = ±15V T A = 2 5 °C , V s = Am148/ Am149 Min. Typ. Max , o lta g e . 4-42 Am 148 · Am149 Metallization and Pad Layout 61 X 73 Mils 4-43


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PDF Am148 Am149 120dB Am148 OF IC 741 IC 741 to lm series IC IN 5 pin 12 v power supply OPERATIONAL AMPLIFIER LM 741 IC 741 pin diagram LT 741 S OF 8 pin DIP IC 741 IC 741 amp LM 741 op amp single supply of 741 ic
Am149

Abstract: No abstract text available
Text: Information Model No. AM-149 D e liv e ry is fro m s to c k . Part No. 8989 Connectors Pin Unit


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PDF AM-149 Am149
Qbh-133

Abstract: QBH-104 PA381 QBH198 PA710 QBH109 amplifonix qbh-109 qbh-110 PA741
Text: AM134 AM134 AM 143 AM145 AM 146 FP6134 TM6134 TM6143 TM6145 FP6146 AM147 AM149 AM153 AM 155 AM157


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PDF PA002 PA005 PA010 PAO15 PA030 PA050 PA055 PA056 PA100 PA181 Qbh-133 QBH-104 PA381 QBH198 PA710 QBH109 amplifonix qbh-109 qbh-110 PA741
Am149

Abstract: No abstract text available
Text: Afa Cascadable Thin Film Amplifier, 15 dB Gain 5-500 MHz 5 dB Midband Noise Figure + 16 dBm Midband O utput Power + 3 0 dBm Typical Third O rder Intercept AM-149 TO-8-1 1_ 0.220 MIN (5.6) 0 220 MAX (5.6) T T U - 0.450 - 4 (11 4) Guaranteed Specifications* (From -55°C to +85°C Case Temp) Frequency Range Gain ( + 25 °C ) @ 50 MHz Frequency Response Gain Variation with Temperature Output Power (1 dB Compression) Noise Figure 5-500 MHz Reverse Transmission VSWR Intermodulation


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PDF AM-149 Am149
anzac am-110

Abstract: anzac am-108 anzac amc-138 anzac am-124 anzac AM 108 Anzac amc anzac AM 110 Anzac amc-162 AMC-117 anzac am-112
Text: . AM-171 5 -500 15 2.4 +12 0 15/11 TO-8-1 - 76. AMC-171 5 -500 15 2.4 +12 0 15/11 C-6 SMA 173. AM-149


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PDF AM-124 AM-110 AM-107 AM-162 AMC-162 AMS-162* AM-113 AM-132 AMC-156 AM-146 anzac am-110 anzac am-108 anzac amc-138 anzac am-124 anzac AM 108 Anzac amc anzac AM 110 Anzac amc-162 AMC-117 anzac am-112
anzac am-110

Abstract: AMC-156 anzac amc 151 Anzac amc AMC-134 anzac AMC-136 anzac* am109 AMC-210 anzac AMC147 anzac am-107
Text: -143 AMC-143 AM-103 AMC-103 AM-123 AMC-123 AM-131 AM-151 AMC-151 AM-147 AMC-147 AM-148 AM-171 AMC-171 AM-149


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PDF Q003Li05 AM109 AM-124 AM-110 AM-107 AM-162 AMC-162 AMS-162* AM-113 AM-132 anzac am-110 AMC-156 anzac amc 151 Anzac amc AMC-134 anzac AMC-136 anzac* am109 AMC-210 anzac AMC147 anzac am-107
C8117

Abstract: sf 123 c am AMS-117 am103 AMG-134 AM148
Text: -151 AM-147 AMC-147 AM-148 AM-171 AMC-171 AM-149 5-500 5-500 5-600 5-500 5-500 5-500 5-500 5-500


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PDF AM-162 AMC-162 AMS-162 AM-113 AM-132 AMC-132 AM-194 AMG-134 AM-136 AMC-136 C8117 sf 123 c am AMS-117 am103 AMG-134 AM148
AVANTEK utc5

Abstract: AVANTEK gpd402 TL9014 anzac AM 108 AVANTEK utc11 anzac AM 143 TM725 UTC5-133 PA381 ut0516
Text: 143 AM 145 AM146 AM147 AM149 AM 153 AM 155 TM6143 TM6145 FP6146 TM6147 TM6149 TM6153 TM6155 AM157 AM


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PDF AC251 AC271 AC272 AC273 AC281 AC282 AC293 AC305 AC345 AC347 AVANTEK utc5 AVANTEK gpd402 TL9014 anzac AM 108 AVANTEK utc11 anzac AM 143 TM725 UTC5-133 PA381 ut0516
Not Available

Abstract: No abstract text available
Text: Am148 · Am149 Quad 741 Operational Amplifiers Distinctive Characteristics · · · · · · 741 op am p o p e ra tin g c h a ra cte ristics L o w s u p p ly c u rre n t d ra in - 0 .6 m A /a m p lifie r Class A B o u tp u t state - no crossover d is to rtio n Pin c o m p a tib le w ith th e A m 1 24 L o w in p u t o ffs e t vo lta g e - 1 .OmV L o w in p u t o ffs e t c u rre n t - 4 .0 n A · · L o w in p u t bias c u rre n t - 3 0 n A Gain b a n d w id th p ro d u c t A m 1 4 8 ( u n ity gain) - 1


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PDF Am148 Am149 120dB
AC2092

Abstract: AC2091 M1-0412ME M1-0420ME UTO507 TL9014 M1_0412ME GPD462 AVANTEK utc5 AC545
Text: AM146 AM147 AM149 AM153 AM155 SPECTRUM TM6143 TM6145 FP6146 TM6147 TM6149 TM6153 TM6155


Original
PDF AC105 ACH107 AP148 AC251 AC262 AC263 AC271 AC272 AC273 AC281 AC2092 AC2091 M1-0412ME M1-0420ME UTO507 TL9014 M1_0412ME GPD462 AVANTEK utc5 AC545
s-parameter s11 s12 s21 10000

Abstract: AM148
Text: 0.36 0.37 0.38 34.6 7.4 -15.4 -35.9 -54.7 -73.6 -92.0 -110.7 -129.9 AM-149 S22 S12 S11 S21


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PDF AM-101 AM-109 AM-210 s-parameter s11 s12 s21 10000 AM148
2010 - AC2092

Abstract: AC2091 AVANTEK utc5 TM6010 TM721 MWA120 MWA230 TL9014 mwa110 GPD462
Text: TM6103 TM6112 TM6117 TM6119 TM6124 TM6131 FP6134 AM143 AM145 AM146 AM147 AM149 AM153 AM155


Original
PDF
billion transformer e 3103 308 30631

Abstract: 74ls219 HD46505 -250/billion transformer e 3103 308 30631 SW02F motorola mda 962-2 SAA6000 billion transformer e 3140 118 32432 54LS323 FZK105
Text: No file text available


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PDF S2000, K25582 CH-5404 54070Z billion transformer e 3103 308 30631 74ls219 HD46505 -250/billion transformer e 3103 308 30631 SW02F motorola mda 962-2 SAA6000 billion transformer e 3140 118 32432 54LS323 FZK105
2014 - Not Available

Abstract: No abstract text available
Text: A B X A X B AM14901v1 DocID023802 Rev 6 21/36 Functional description 6.4 , FAULT SKIPPED Internal refresh Tx/Rx Tx/Rx Tx/Rx THERMAL FAULT AM14992v1 , Y TJR >TJ(i) Y Y TC >TCR N AM14995v1 DocID023802 Rev 6 25/36 Power section , Vout AM14997v1 12 Thermal information 12.1 Thermal impedance Figure 23. Simplified thermal model Rth1a Tj1 Rthc_a Rth2 Rth1b Cth Tj2 Rth1h Tj8 AM14998v1 30/36


Original
PDF ISO8200B PowerSO-36 ISO8200B DocID023802
2012 - 35-63VDC

Abstract: No abstract text available
Text: DATA1.DATA8 OUT1.OUT8 DEV1 OUT1.OUT8 DEV2 A X X B A B AM14901v1 IN1.IN8 OUT0.OUT7 8 Doc , /Rx Tx/Rx THERMAL FAULT AM14992v1 Doc ID 023802 Rev 1 23/33 Power section ISO8200B , TJR >TJ(i) Y TC >TCR N AM14995v1 Doc ID 023802 Rev 1 25/33 Power section Figure 18 , GNDdd GNDcc Vout AM14997v1 9 9.1 Thermal information Thermal impedance Figure 20. Simplified thermal model Rth1a Tj1 Rth1b Tj2 Cth Rth2 Rthc_a Rth1h Tj8 AM14998v1 Doc ID 023802 Rev 1


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PDF ISO8200B ISO8200B 35-63VDC
AMP-1502

Abstract: No abstract text available
Text: -1473 AM-1475 AM-1477 A M -1486 A M -1487 AM-1493 A M -1497 A M -1503 AM-1503-01 AM-1510 AM


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PDF AU-1138-70-BNC. AU-1138-1179. AMP-1502
2002 - BRX71-03...-50

Abstract: 50/1N6400 50/KBA500 CGS+HSA+50
Text: -1547 AU-1447-350 AU-1414 AU-1261 AU-1310 AU-1291 AM-1402 AM-1297 AM-1497 AM-1300 AM-1431 AM , -1052 AM-1342 AM-2A-000110 AM-1125-1000 AM-1299 AM-3A-000110 AM-1533 AM-1578 AM-4A-000110 AM-1493


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PDF
2013 - hv 102 st

Abstract: 36N55M5
Text: ) Electrical characteristics (curves) Safe operating area AM14937v1 Tj=150°C Tc=25°C Single pulse , -3 10 -2 tp (s) Figure 4. ID (A) 70 60 50 40 30 Output characteristics AM14930v1 Figure 5. ID (A) Transfer characteristics AM14931v1 VGS=9, 10V 8V 7V VDS=25V 70 60 50 40 30 , ) Figure 6. VGS (V) 12 10 8 6 4 2 0 0 Gate charge vs gate-source voltage Figure 7. AM14932v1 VDS(V) Static drain-source on-resistance AM14933v2 RDS(on) () 0.071 0.069 0.067 0.065 0.063 0.061 0.059


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PDF STL36N55M5 STL36N55M5 hv 102 st 36N55M5
2012 - 32NM50N

Abstract: AM-1309
Text: VGS(th) (norm) AM14905v1 AM14906v1 ID=250µA ID=11A 1.10 2.1 1.9 1.00 1.7 1.5 , 0.102 Figure 12. Capacitance variations C (pF) 10000 Ciss 1000 AM14903v1 Figure 13. Output capacitance stored energy Eoss (µJ) 10 9 8 7 6 AM14904v1 100 5 Coss 4 3 2 1 0 0 10 Crss 1 0.1 , =25°C AM14908v1 (norm) 1.10 1.08 1.06 1.04 1.02 1.00 0.98 0.96 0.94 0.92 -50 -25 ID=1mA TJ=-50°C 0


Original
PDF STB32NM50N, STF32NM50N, STP32NM50N, STW32NM50N O-220FP, O-220, O-247 STB32NM50N STF32NM50N STP32NM50N 32NM50N AM-1309
2012 - 36N55M5

Abstract: TO-220
Text: characteristics AM14930v1 Figure 7. ID (A) 70 Transfer characteristics AM14931v1 VGS=10V 7V VDS , (curves) Safe operating area for TO-220 AM14928v1 Tj=150°C Tc=25°C Single pulse Figure 3. Thermal , for TO-247 AM14929v1 Tj=150°C Tc=25°C Single pulse Figure 5. Thermal impedance for TO , Electrical characteristics Static drain-source on-resistance AM14933v1 Gate charge vs gate-source voltage Figure 9. AM14932v1 VDS(V) VDS VDD=440V ID=16.5A 450 400 350 300 250 200 150 100 50 0 70 Qg(nC


Original
PDF STP36N55M5 STW36N55M5 O-220 O-247 O-220 O-247 36N55M5 TO-220
2014 - Not Available

Abstract: No abstract text available
Text: OUT1.OUT8 DEV2 A B X A X B AM14901v1 DocID023802 Rev 9 21/35 Functional , AM14992v1 DocID023802 Rev 9 23/35 Power section ISO8200B 7 Power section 7.1 Current , Y TJR >TJ(i) Y Y TC >TCR N AM14995v1 DocID023802 Rev 9 25/35 Power section , GNDcc Vout AM14997v1 11 Thermal information 11.1 Thermal impedance Figure 22. Simplified thermal model Rth1a Tj1 Rthc_a Rth2 Rth1b Cth Tj2 Rth1h Tj8 AM14998v1


Original
PDF ISO8200B PowerSO-36 ISO8200B DocID023802
AU-2A-1240

Abstract: AU-1433
Text: 500 1 -5 0 0 AM-1493 AM -’ 49 7 AM .503 AM-1510 AM-1513 1 -1 1 0 0 0 01 1000 1 - 1000


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PDF AM-5A-0515 AU-11Q AM-12V7 IC-1141 AU-1261 AM-1364 AM-13B8 -10OC AU-1138-70-BNC. AU-1138-1179. AU-2A-1240 AU-1433
2002 - AMP-1502

Abstract: MITEQ AM-1477 2A1045 AU-1448 AU-1447-350 au1384 AU-1A-1046
Text: AMPLIFIERS BY MODEL NUMBER MODEL NUMBER AM-1052 AM-1062 AM-1125-1000 AM-1125-1500 AM-1141 AM-1297 AM-1299 AM-1300 AM-1309 AM-1312 AM-1326 AM-1331 AM-1342 AM-1358 AM-1364 AM-1367 AM-1373 AM-1377 AM-1385 AM-1388 AM-1396 AM-1402 AM-1403 AM-1407 AM-1409 AM-1412 AM-1422 AM-1430 AM-1431 AM-1463 AM-1469 AM-1472 AM-1473 AM-1475 AM-1477 AM-1486 AM-1487 AM-1493 AM-1497 AM-1503 AM-1503-1500 AM-1510 AM-1513 AM-1518 AM-1522 AM-1524 AM-1526 AM-1530 AM-1533 AM-1539 AM-1544 FREQUENCY


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PDF AM-1052 AM-1062 AM-1125-1000 AM-1125-1500 AM-1141 AM-1297 AM-1299 AM-1300 AM-1309 AM-1312 AMP-1502 MITEQ AM-1477 2A1045 AU-1448 AU-1447-350 au1384 AU-1A-1046
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