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CNY 70 Chip One Exchange 178 - -
CNY70 Vishay Intertechnologies RS Components 1,185 £0.69 £0.61
CNY70 Vishay Intertechnologies Avnet - $0.49 $0.43
CNY70 Vishay Intertechnologies Avnet - $1.34 $0.47
CNY70 Vishay Siliconix Allied Electronics & Automation 1,367 $0.63 $0.52
CNY70 Vishay Intertechnologies Future Electronics 4,000 $0.58 $0.47
CNY70 Vishay Intertechnologies RS Components 2,560 £0.49 £0.36
CNY70 Vishay Intertechnologies Avnet - $1.26 $0.56
CNY70 Vishay Intertechnologies TME Electronic Components 2,147 $0.62 $0.40
CNY70 Vishay Intertechnologies ComS.I.T. 155 - -
CNY70 Vishay Intertechnologies Avnet 25,360 €0.72 €0.36
CNY70 Vishay Intertechnologies Chip1Stop 995 $1.89 $0.47
CNY70 Vishay Intertechnologies element14 Asia-Pacific 7,133 $1.64 $0.54
CNY70 Vishay Intertechnologies Farnell element14 7,227 £0.67 £0.39
CNY70 Vishay Semiconductors New Advantage Corporation 63,680 $0.83 $0.77

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cNY 70 datasheet (5)

Part Manufacturer Description Type PDF
CNY70 Temic Semiconductors Original PDF
CNY70 Vishay Intertechnology Reflective Optical Sensor with Transistor Output Original PDF
CNY70 Vishay Semiconductors Optical Sensors - Reflective - Analog Output, Sensors, Transducers, SENSOR OPTO TRANS 5MM REFLTH PCB Original PDF
CNY70 Vishay Siliconix Application of Optoelectronic Reflex Sensors TCRT1000, TCRT5000, TCRT9000, CNY70 Original PDF
CNY70 Vishay Telefunken Sensor, Reflective Optical Sensor with Transistor Output Original PDF

cNY 70 Datasheets Context Search

Catalog Datasheet MFG & Type PDF Document Tags
1995 - thyristor aeg

Abstract: thyristor AEG t 10 n 600 aeg thyristor cNY 70 aeg thyristor T U211B triac soft starting circuit ozone generator circuit thyristor AEG t 12 n 700 U211B2
Text: Set speed min CNY 70 R31 100 kW C13 10 V 470 nF C7 C8 10 mF 4.7 m F 10 V , TELEFUNKEN Semiconductors U211B2 Figure 28. Speed control with reflective opto coupler CNY 70 as , C6 C13 1mF 470 nF C8 C7 10 mF 47 mF 10 V R31 CNY 70 R18 470 W 33 k , coupler CNY 70 as emitter Rev. A1: 30.08.1995 U211B2 TELEFUNKEN Semiconductors The circuit is


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PDF U211B2 U211B3) D-74025 thyristor aeg thyristor AEG t 10 n 600 aeg thyristor cNY 70 aeg thyristor T U211B triac soft starting circuit ozone generator circuit thyristor AEG t 12 n 700 U211B2
led 7 segment anode TIL 702

Abstract: trw 007 diodes TDDG 5250 m SHARP OPTO INTERRUPTER 7segment sm 4150 DIODE PK IN 5401 hoa 865 TDDG 5250 til 702 telefunken transistor
Text: €¢ CNY 18 III CNY 1 8 IV CNY 18 V CNY 21 CNY 21 Exi CNY 64 CNY 64 A • • CNY 64 B • • CNY 65 CNY 65 A • • CNY 65 B • • CNY 65 Exi CNY 66 • • CNY 70 CNY 71 • • CNY 74-2 CNY 7 4 -4 CNY 75 A • • CNY 75 B • • CNY 75 C • • CNY 75 GA • • CNY 75 GB • â , 4.0 0.3 10 7.0 4.0 Exi4 1 50. CNY 64 CNY 64 A 8200 .300 63. .125 , 42 43 44 46 47 65 66 70 74 76 3 Alphanumeric Index Type BP 104 BPW 13 A BPW 1 3


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PDF 10x10 led 7 segment anode TIL 702 trw 007 diodes TDDG 5250 m SHARP OPTO INTERRUPTER 7segment sm 4150 DIODE PK IN 5401 hoa 865 TDDG 5250 til 702 telefunken transistor
1998 - U211B2

Abstract: thyristor motor speed control circuit opto triac angle phase control 250VCA telefunken ta 750 soft start motor control diagram AC Motor soft start IC tacho generator thyristor control ic with current sense ac motor speed control circuit with triac
Text: R13 Set speed max R18 Set speed min CNY 70 R31 100 k W C13 10 V 470 nF C7 , 1.1 W CNY 70 1 100 W R4 IGT = 50 mA C1 R8= 3 x 0.1 W 22 mF 25 V 3 GND 220


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PDF U211B2/ D-74025 14-Apr-98 U211B2 thyristor motor speed control circuit opto triac angle phase control 250VCA telefunken ta 750 soft start motor control diagram AC Motor soft start IC tacho generator thyristor control ic with current sense ac motor speed control circuit with triac
KW1-521

Abstract: No abstract text available
Text: 1.5 W 7 8 C6 Rö C2 Cö/t 3.3 nF R10 R9 680 pF 220 k W 9 CNY 70 230 V~ 100 W R14 C12 150 , m F 10 V C10 R14 Set speed min R10 1.1 k W 230 V~ U211B CNY 70 150 nF 250 V~ R2 1 MW


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PDF U211B U211B D-74025 11-Jan-01 KW1-521
1999 - AC Motor soft start IC triac tacho

Abstract: C6MC4 1n4004 gi 1N4004W U211B 22NFC
Text: 25 V 2 3 18 k 1.5 W 7 U211B W 8 C6 9 CNY 70 230 V~ 100 W W W R2 1M R14 W R3 4.7 , CNY 70 W W W R12 W Rö C2 IGT = 50 mA C1 W 1 F C13 m 9V R17 33 k R18


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PDF U211B U211B D-74025 08-Nov-99 AC Motor soft start IC triac tacho C6MC4 1n4004 gi 1N4004W 22NFC
2003 - 4752A

Abstract: U211B W47K "Speed Sensor" U211B triac control Phase-Control IC with Soft Start tacho generator AC Motor soft start IC soft start motor 3 phase thyristor ic opto triac
Text: speed min. R18 CNY 70 100 k W C13 100 W 10 V 470 nF C7 C8 10 µ F 4.7 µ , Set speed min. R 14 CNY 70 R 31 220 kW C 10 U211B Figure 29. Speed Control


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PDF U211B 4752A W47K "Speed Sensor" U211B triac control Phase-Control IC with Soft Start tacho generator AC Motor soft start IC soft start motor 3 phase thyristor ic opto triac
2001 - "phase control ic" thyristor with current sense

Abstract: triac tic 226 D ac motor speed control circuit with triac thyristor motor speed control circuit AC Motor speed and soft start soft start motor control diagram tacho generator U211B Triac motor speed control Wireless sensing and controlling of any motor
Text: 470 nF 1N4004 U211B L2 R1 230 V~ 18 k W 1.5 W CNY 70 1 100 W R14 2 R5 , 1.1 W CNY 70 1 100 W R4 IGT = 50 mA C1 5 4 ­VS 100 W R12 R2 1 MW 6


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PDF U211B U211B D-74025 03-Aug-01 "phase control ic" thyristor with current sense triac tic 226 D ac motor speed control circuit with triac thyristor motor speed control circuit AC Motor speed and soft start soft start motor control diagram tacho generator Triac motor speed control Wireless sensing and controlling of any motor
1996 - U211B3

Abstract: U211B2 C1310V TEA1007 Tachogenerators thyristor motor speed control circuit 1N4007 DIP18 R682 Frequency-to-Voltage Converter
Text: speed max R14 Set speed min CNY 70 220 k W C10 U211B2/ B3 Figure 27. Speed control , C9V1 100 W R11 16 k W R17 R16 470 W R13 Set speed max R18 Set speed min CNY 70 R31 100 k W C13 10 V 470 nF C7 C8 10 m F 4.7 m F 10 V 470 nF 220 k


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PDF U211B2/ D-74025 29-May-96 U211B3 U211B2 C1310V TEA1007 Tachogenerators thyristor motor speed control circuit 1N4007 DIP18 R682 Frequency-to-Voltage Converter
2005 - u211b

Abstract: soft start ac motor control diagram schematic diagram motor control cny70 triac tic 226 opto triac angle phase control DIP18 U211B-XFPG3Y CNY70 DATASHEET cny 76
Text: . R13 Set speed min. R18 CNY 70 100 k C13 100 10 V 470 nF C7 C8 10 µ , min. R 14 CNY 70 R 31 220 k C 10 Figure 10-22. Speed Control, Maximum Load Control


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PDF U211B 4752B soft start ac motor control diagram schematic diagram motor control cny70 triac tic 226 opto triac angle phase control DIP18 U211B-XFPG3Y CNY70 DATASHEET cny 76
1999 - MF-25

Abstract: U211B U211b2
Text: diodes BYW83 M U211B CNY 70 230 V~ 100 W R14 C12 47 m F 25 V R9 220 k W 150 , C8 470 nF R7 16 k W U211B CNY 70 5 R2 1 MW 6 7 8 9 C5 Cö/t 3.3 nF R5 2.2 k W 680 pF 10 kW C4 1


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PDF U211B U211B D-74025 05-Aug-99 MF-25 U211b2
2000 - TCRT5000

Abstract: dark detector application ,uses and working DC motor speed control using IC 555 and ir sensor coil gold detector circuit diagram sensor cny70 CNY70 BC178B angular position sensor 74HCTXX DC motor speed control using 555 and ir sensor
Text: , fc 5 Vishay Telefunken a) TCRT5000 c) TCRT1000 b) CNY 70 Figure 6. Working diagram , relatively small and changes approximately ­10% in the range of ­10 to + 70 °C (figure 4). This fairly , current can increase up to 1 µA at a temperature of 70 °C and should be taken into account. In addition , from it. Figure 4 shows a change in the collector current of approximately 10% for 70 °C. Another 10


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PDF TCRT1000, TCRT5000, CNY70 74HCT14 LS393 B7474 74HCT74 TCRT5000 dark detector application ,uses and working DC motor speed control using IC 555 and ir sensor coil gold detector circuit diagram sensor cny70 CNY70 BC178B angular position sensor 74HCTXX DC motor speed control using 555 and ir sensor
1996 - dark detector application ,uses and working

Abstract: TCRT9000 DC motor speed control using IC 555 and ir sensor tcrt 9000 74HCTXX DC motor speed control using 555 and ir sensor CNY70 555 timer 38 khz square wave generator coil gold detector circuit diagram sensor cny70
Text: frequency, fc 7 ANT014 TELEFUNKEN Semiconductors a) TCRT5000 c) TCRT9000 b) CNY 70 d , to + 70 °C (figure 4). This fairly favorable temperature compensation is attributable to the opposing , collector current of approximately 10% for 70 °C. Another 10% is deducted from Ic1 for aging Ic1 = 263 µA - , . However, the dark current can increase up to 1 µA at a temperature of 70 °C and should be taken into


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PDF ANT014 TCRT1000, TCRT5000, TCRT9000, CNY70 LS393 74HCT14 B7474 dark detector application ,uses and working TCRT9000 DC motor speed control using IC 555 and ir sensor tcrt 9000 74HCTXX DC motor speed control using 555 and ir sensor CNY70 555 timer 38 khz square wave generator coil gold detector circuit diagram sensor cny70
1995 - dark detector application ,uses and working

Abstract: coil gold detector circuit diagram sensor cny70 TCRT9000 555 timer 38 khz square wave generator 74HCTXX CIRCUIT DIAGRAM for SPEED DETECTOR USING 555 TIMER IC DC motor speed control using 555 and ir sensor CAT 1527654 Reflective Optical Sensor TCRT5000
Text: frequency, fc 7 ANT014 TELEFUNKEN Semiconductors a) TCRT5000 c) TCRT9000 b) CNY 70 d , to + 70 °C (figure 4). This fairly favorable temperature compensation is attributable to the opposing , shows a change in the collector current of approximately 10% for 70 °C. Another 10% is deducted from Ic1 , TCRT9000 is ignored. However, the dark current can increase up to 1 µA at a temperature of 70 °C and


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PDF ANT014 TCRT1000, TCRT5000, TCRT9000, CNY70 LS393 74HCT14 B7474 dark detector application ,uses and working coil gold detector circuit diagram sensor cny70 TCRT9000 555 timer 38 khz square wave generator 74HCTXX CIRCUIT DIAGRAM for SPEED DETECTOR USING 555 TIMER IC DC motor speed control using 555 and ir sensor CAT 1527654 Reflective Optical Sensor TCRT5000
dark detector application ,uses and working

Abstract: coil gold detector circuit diagram sensor cny70 CNY70 74HCTXX BC108B transistor specification TCRT5000 LIGHT DEPENDENT RESISTOR sensor Reflective Optical Sensor TCRT1000 CIRCUIT DIAGRAM for SPEED DETECTOR USING 555 TIMER IC
Text: c) TCRT1000 b) CNY 70 Figure 12. Working diagram of reflex sensors TCRT5000, CNY70 and TCRT1000 , changes approximately ­10% in the range of ­10 to + 70 °C (figure 10). This fairly favorable temperature , of approximately 10% for 70 °C. Another 10% is deducted from Ic1 for aging 263 µA) = 357.2 µA , , the dark current can increase up to 1 µA at a temperature of 70 °C and should be taken into account


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PDF TCRT1000, TCRT5000, CNY70 74HCT14 B7474 LS393 74HCT74 dark detector application ,uses and working coil gold detector circuit diagram sensor cny70 CNY70 74HCTXX BC108B transistor specification TCRT5000 LIGHT DEPENDENT RESISTOR sensor Reflective Optical Sensor TCRT1000 CIRCUIT DIAGRAM for SPEED DETECTOR USING 555 TIMER IC
74HCTxx

Abstract: RT9000 dark detector application ,uses and working TCRT9000 CAT 1527654 TCRT5000 sensor circuit D Type 37 way report on infrared object counter circuit diagram for simple IR transmitter using u EPSON EM - 400 motor
Text: A c) CNY 70 d) TCRT1000 F igure 40. W orking d ia g ram o f reflex sensors T C R T 5 0 0 0 , rela tively small and changes approximately -10% in the range of -1 0 to + 70 =C (figure 38). This fairly , change in the collector current of approximately 10% for 70 °C. Another 10% is deducted from IC| for aging , ignored. However, the dark current can increase up to 1 nA at a temperature of 70 °C and should be taken


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PDF TCRT1000, TCRT5000, TCRT9000, CNY70 74HCTxx RT9000 dark detector application ,uses and working TCRT9000 CAT 1527654 TCRT5000 sensor circuit D Type 37 way report on infrared object counter circuit diagram for simple IR transmitter using u EPSON EM - 400 motor
1995 - 74fast

Abstract: 74F181 74F182 N74F182D N74F182N
Text: delay P0, P1, or P2 to Cn+x, Cn+y , Cn+z Waveform 1 2.0 1.5 5.0 3.5 7.0 5.0 1.5 1.5 , 14 G2 P0 4 13 Cn G3 5 12 Cn+x P3 6 11 Cn+y P 7 10 , carries (Cn+x, Cn+y , Cn+z) across four groups of binary adders. The 74F182 also has active-Low Carry , The logic equations provided at the outputs are: Cn+x = G0+P0Cn Cn+y = G1+P1G0+P1P0Cn Cn+z = , 5V ±10%, Tamb = 0°C to + 70 °C 16-pin plastic DIP N74F182N 16-pin plastic SO N74F182D


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PDF 74F182 74F182 500ns SF00006 74fast 74F181 N74F182D N74F182N
CNY 14-4

Abstract: 74182 74182 carry look-ahead 74182 pin diagram N74182N N74S182F N74182F S54182F S54182W S54S182W
Text: 2 1 A A 15 14 6 5 U A A 13 — Po Go c„ P, St P2 Û2 P3 G3 G 0—10 Cn+x Cn+y P Cn+z D— 7 , T7| Ö2 Po [T IT] c„ 53[T 121 Cn+x P3[T TT| Cn+y P[T 1Ö1 G snp|T TI Cn+i INPUT AND , anticipated active HIGH carries (Cn+x, Cn+y ,Cn+z) across four groups of binary adders. The "182" also has , lookahead. The logic equations provided at the outputs are: cn+x = G0 + p0cn Cn+y = Gl + PlGo = PlPoCn , DIAGRAM inputs outputs Cn GO PO G1 P1 g2 P2 g3 P3 Cn+x Cn+y Cn+z g p X H H L L H X


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PDF 54S/74S182 54H/74H, 54S/74S 54LS/74LS 64S/74S; 54LS/74LS CNY 14-4 74182 74182 carry look-ahead 74182 pin diagram N74182N N74S182F N74182F S54182F S54182W S54S182W
1996 - cny 42

Abstract: MC14581B CNY 50 MC14582B MC14XXXBCL MC14XXXBCP MC14XXXBD
Text: Cn+x = G0 + (P0 Cn) Cn+y = G1 + (P1 G0) + (P1 P0 Cn) 16 VDD P1 2 15 P2 G0 3 14 G2 P0 4 13 Cin G3 5 12 Cn+x P3 6 11 Cn+y P , : Plastic "P and D/DW" Packages: ­ 7.0 mW/_C From 65_C To 125_C Ceramic "L" Packages: ­ 12 mW/_C From 100 , Carry­Propagate Inputs Cn 13 Carry Input Cn+x, Cn+y Cn+z 12, 11, 9 Carry Outputs G 10 , - - 1.5 3.0 4.0 5.0 10 15 3.5 7.0 11 - - - 3.5 7.0 11 2.75 5.50


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PDF MC14582B MC14582B MC14582B/D* MC14582B/D cny 42 MC14581B CNY 50 MC14XXXBCL MC14XXXBCP MC14XXXBD
1999 - N16E

Abstract: 74F381 M16D MS-001 74F181 74F182 74F182PC 74F182SJ cny 37
Text: tPHL G0, G1, or G2 to 1.5 3.9 5.2 1.0 7.0 1.5 6.0 ns Cn+x, Cn+y , or Cn+z , anticipated Active HIGH carries (Cn + x, Cn+y , Cn+z) across four groups of binary adders. The 74F182 also , dropping the last 74F181 or 74F381. Cn+x = G0 + P0 Cn Cn+y = G1 + P1 G0 + P1 P0 Cn Cn+z = G2 + P2 G1 , G3 P3 H Cn+x Cn+y Cn+z G P L L H X L X L X H H X L , Junction Temperature under Bias -55°C to +150°C Supply Voltage 0°C to + 70 °C +4.5V to +5.5V


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PDF 74F182 74F182 74F181 74F381 74F182SJ 16-Lead 74F182PC MS-001, N16E M16D MS-001 74F182PC 74F182SJ cny 37
2000 - cny 57

Abstract: 74F182PC 74F381 74F181 74F182 74F182SJ M16D MS-001 N16E
Text: 9.5 tPHL G0, G1, or G2 to 1.5 3.9 5.2 1.0 7.0 1.5 6.0 ns Cn+x, Cn+y , anticipated Active HIGH carries (Cn + x, Cn+y , Cn+z) across four groups of binary adders. The 74F182 also , dropping the last 74F181 or 74F381. Cn+x = G0 + P0 Cn Cn+y = G1 + P1 G0 + P1 P0 Cn Cn+z = G2 + P2 G1 , P2 G3 P3 Cn+x Cn+y Cn+z G P L L H X L X L X H H X , Junction Temperature under Bias -55°C to +150°C Supply Voltage 0°C to + 70 °C +4.5V to +5.5V


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PDF 74F182 74F182 74F181 74F381 74F182SJ 16-Lead 74F182PC MS-001, cny 57 74F182PC 74F182SJ M16D MS-001 N16E
1998 - 74F182

Abstract: 54F182DM cny 85 N16E F381 74F182SJ 74F182PC 54F182LM 54F182FM cny 57
Text: 7.0 1.5 6.0 ns ns Cn+x, Cn+y , or Cn+z tPLH Propagation Delay 2.5 6.5 8.5 , ) and provides anticipated Active HIGH carries (Cn + x, Cn+y , Cn+z) across four groups of binary adders , Cn+y = G1 + P1G0 + P1P0Cn Cn+z = G2 + P2G1 + P2P1G0 + P2P1P0Cn www.fairchildsemi.com 2 , Outputs H G1 P1 G2 P2 G3 P3 Cn+x Cn+y Cn+z G P L L H X , Cn+y Cn+z G P H X X X X H X X H H X X H X H X


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PDF 74F182 74F182PC 54F182DM 74F182SJ 16-Lead 16-Lead 54omer 74F182 54F182DM cny 85 N16E F381 74F182SJ 74F182PC 54F182LM 54F182FM cny 57
D 1991 AR

Abstract: philips p3p
Text: -pin Plastic DIP 16-pin Plastic SO COMMERCIAL RANGE Vcc = 5V±10%; T * * = 0°C to + 70 °C N74F182N N74F182D , activeHigh Carry input (Cn) and provides an ticipated active-High carries (Cn+X, Cn+y , Cn+2) across four , outputs Carry generate output (active-Low) Carry propagate output (active-Low) Cn+y = G -i + P ^a+P ^oC , Fj SI g 2 iU c, ^n+x 2JÜ Cn+y 13- 4 3 2 1 15 14 fi 5 13 J N _LN G 3-10 , RATING -0.5 to + 7.0 -0.5 to + 7.0 -30 to +5 -0.5 to +VC C 40 0 to + 70 -65 to +150 UNIT V V mA V mA °C °C


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PDF 74F182 16-pin N74F182N N74F182D 74F182 500ns D 1991 AR philips p3p
1996 - 54F182

Abstract: 54F182DMQB 54F182FMQB 54F182LMQB F381
Text: Commercial 0 C to + 70 C -55 C to +125 C +4.5V to +5.5V +4.5V to +5.5V 3 MILITARY DATA SHEET , ) Propagation Delay CONDITIONS 1.0 7.0 ns 10, 11 tpLH(3) Propagation Delay Gn to Cn+x, Cn+y or Cn+z VCC= 5.0V @25C, VCC=4.5V & 5.5V @-55/125C 2, 4 2.5 8.5 ns 9 tpLH(3) Propagation Delay Gn to Cn+x, Cn+y or Cn+z VCC= 5.0V @25C, VCC=4.5V & 5.5V @-55/125C 2, 4 2.5 11.0 ns 10, 11 tpHL(3) Propagation Delay Gn to Cn+x, Cn+y or Cn+z VCC= 5.0V @25C, VCC


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PDF MN54F182-X 29F91 54F182 54F182DMQB 54F182FMQB 54F182LMQB MIL-STD-883, -55/125C 54F182 54F182DMQB 54F182FMQB 54F182LMQB F381
74182

Abstract: 74182 pin diagram ORP12 8 BIT ALU by 74181 74182 carry look-ahead 74182 logic diagram alu 74181 pin diagram alu 74182 circuit 74-182 9342
Text: active HIGH Carry Input (Cn) and provides anticipated active HIGH carries (Cn+X, Cn+y , Cn+Z) across four , outputs are: Cn+x = G0 + PoCn Cn+y = G1 + PlG0 + PlPoCn Cn+z = G2 + P2G1 + P2P1G0 + P2plP0Cn G = G3 + P3G2 , cn+ Cn+y Cn+2 G p" X H H L H X X X H H X H X X X H H , +150° C —55°C to + 125°C -0.5 V to + 7.0 V -0.5 V to +5.5 V -30 mA to +5.0 mA -0.5 V to +Vcc va'ue , Gnd) SYMBOL PARAMETER LIMITS UNITS CONDITIONS TYP. MAX. tPLH tPHL (Cn to Cn+X, Cn+y , Cn+Z) 12 15


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PDF
Not Available

Abstract: No abstract text available
Text: AS182 are: Cn+x Cn+y Cn+ 2 G = = = = GO + PO Cn G1 + P1 G0+P1 POCn G 2+P2G1 + P2 P1 G 0+P2 P1 PO Cn G3 + , F* G2 Cn Cn+x Cn+y Cn+ Z PO, P1.P2.P3 Cn c n+x. c n+y, Cn+z G P I8 G3 P3 P ' , Min 4.5 2 Typ 5 Max 5.5 Units V V 0.8 -2 20 0 70 V mA mA ·c Electrical , , orP3 To (Output) Cn+x, Cn+y . orC n + ï Conditions Vcc = 4.5V to 5.5V, Cl = 50 pF, r l = soon Min 3 2 3 , Combinations 31 L X X GO X L X Inputs PI X L L PO X X L Cn X X H Output Cn+y H H H L All Other


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PDF tSQ1125 DM74AS182 AS181B AS182 64-Bit AS162 AS162 A31S2 AS1818
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