IC-Chips

Digitale integrierte Schaltkreise der Serie 74

Digitale integrierte Schaltungen der Serie CD40

Optische Koppler

Uhren- und Rechner-ICs

Operationelle Verstärker

Netzschalter Ics

Treiber Ics

Flash-Speicher

Speicher

Audio-Sonderzweck

Uhr/Timing - Anwendungsspezifisch

Uhr/Timing - Uhrenpuffer, Treiber

Takt/Timing - Taktgeneratoren, PLLs, Frequenzsynthesizer

Uhr/Timing - Verzögerungsleitungen

Uhr/Timing - IC-Batterien

Uhr/Timing - Programmierbare Zeitgeber und Oszillatoren

Uhr/Uhrzeit - Echtzeituhren

Datenerfassung - ADCs/DACs - Spezieller Zweck

Datenerfassung - Analoges Front-End (AFE)

Datenerfassung - Analog-Digital-Wandler (ADC)

Datenerfassung - Digitale Potentiometer

Datenerfassung - Digital-Analog-Wandler (DAC)

Datenerfassung - Touchscreen-Steuerungen

Eingebettet - CPLDs (Komplexe programmierbare Logikbausteine)

Eingebettet - DSP (Digitale Signalprozessoren)

Eingebettet - FPGAs (Field Programmable Gate Array)

Eingebettet - FPGAs (Field Programmable Gate Array) mit Mikrocontrollern

Eingebettet - Mikrocontroller, Mikroprozessor, FPGA-Module

Eingebettet - Mikrocontroller

Eingebettet - Mikrocontroller - Anwendungsspezifisch

Eingebettet - Mikroprozessoren

Eingebettete - PLDs (Programmable Logic Device)

Eingebettet - System On Chip (SoC)

Schnittstelle - Analogschalter - Spezialzweck

Schnittstelle - Analogschalter, Multiplexer, Demultiplexer

Schnittstelle - CODECs

Schnittstelle - Controller

Schnittstelle - Direkte digitale Synthese (DDS)

Schnittstelle - Treiber, Empfänger, Transceiver

Schnittstelle - Encoder, Decoder, Konverter

Schnittstelle - Filter - Aktiv

Schnittstelle - E/A-Expander

Schnittstelle - Modems - ICs und Module

Schnittstelle - Module

Schnittstelle - Sensor- und Detektor-Schnittstellen

Schnittstelle - Sensor, kapazitive Berührung

Schnittstelle - Serialisierer, Deserialisierer

Schnittstelle - Signalpuffer, Repeater, Splitter

Schnittstelle - Signalabschlusswiderstände

Schnittstelle - Spezialisiert

Schnittstelle - Telekommunikation

Schnittstelle - UARTs (Universal Asynchronous Receiver Transmitter)

Schnittstelle - Sprachaufzeichnung und -wiedergabe

Linear - Verstärker - Audio

Linear - Verstärker - Instrumentierung, OP-Verstärker, Pufferverstärker

Linear - Verstärker - Spezialzweck

Linear - Verstärker - Videoverstärker und -module

Lineare - Analoge Multiplikatoren, Dividierer

Linear - Komparatoren

Linear - Videoverarbeitung

Logik - Puffer, Treiber, Empfänger, Transceiver

Logik - Komparatoren

Logik - Zähler, Dividierer

Logik - FIFO-Speicher

Logik - Flip-Flops

Logik - Tore und Umkehrer

Logik - Tore und Wechselrichter - Multifunktion, konfigurierbar

Logik - Verriegelungen

Logik - Multivibratoren

Logik - Paritätsgeneratoren und Prüfer

Logik - Schieberegister

Logik - Signalumschalter, Multiplexer, Decoder

Logik - Fachgebietslogik

Logik - Übersetzer, Level-Shifter

Logik - Universalbus-Funktionen

Speicher - Batterien

Speicher - Konfigurationsprogramme für FPGAs

Speicher - Controller

PMIC - AC-DC-Wandler, Offline-Schalter

PMIC - Batterieladegeräte

PMIC - Batterie-Management

PMIC - Aktuelle Regulierung/Verwaltung

PMIC - Anzeige-Treiber

PMIC - Energiemessung

PMIC - Volle, halbe Brückentreiber

PMIC - Gate-Treiber

PMIC - Hot-Swap-Steuerungen

PMIC - Laser-Treiber

PMIC - LED-Treiber

PMIC - Beleuchtung, Vorschaltgerätesteuerungen

PMIC - Motortreiber, Steuerungen

PMIC - OR-Steuerungen, ideale Dioden

PMIC - PFC (Leistungsfaktor-Korrektur)

PMIC - Stromverteilungsschalter, Lasttreiber

PMIC - Energieverwaltung - Spezialisiert

PMIC - Power-over-Ethernet (PoE)-Steuerungen

PMIC - Stromversorgungs-Controller, Monitore

PMIC - RMS-DC-Wandler

PMIC - Aufsichtsbehörden

PMIC - Thermisches Management

PMIC - V/F- und F/V-Wandler

PMIC - Spannungs-Referenz

PMIC - Spannungsregler - DC-Schalt-Controller

PMIC - Spannungsregler - DC-Schaltregler - DC-Schaltregler

PMIC - Spannungsregler - Linear

PMIC - Spannungsregler - Linear + Schalten

PMIC - Spannungsregler - Lineare Regler Regler

PMIC - Spannungsregler - Spezieller Zweck

Spezialisierte ICs

Module

IGBT

IPM

Thyristoren

Gleichrichter

Die Stromversorgung

Intelligentes Leistungsmodul

SCR,GTO und Diode

FET

Darlington-Transistoren

RF-Module

CNC-PRODUKTE

ENCODER

Motor

Servoantrieb & Verstärker & Servo

Dioden-Modul

Transistor-Modul

Schalter-Relais

PLC

Wechselrichter

Schütz und Unterbrecher

Aufzug-Brett

Industrielle Steuerung

Bipolartransistoren

Diode

Bipolare Transistoren

Widerstände

Kohlefilmwiderstände

Zementwiderstände

Chassis Mount-Widerstände

Chassis Mount-Widerstände

Strommesswiderstände

Schmelzbarer Chip-Widerstand

Hochpräzise & Low TCR SMD Widerstände

Hochspannungswiderstand

LED-Streifenwiderstände

MELF-Widerstand

Metalllegierungswiderstände

Metallfilm-Widerstand (TH)

Metall-Lasur-Widerstände

Metalloxidschichtwiderstände

Metalloxidwiderstände

NTC-Thermistoren

PTC-Thermistoren

Photoresistoren

Potentiometer & variable Widerstände

Präzisions-Potentiometer

Widerstandsnetzwerke & -anordnungen

Widerstandsnetzwerke und -arrays (TH)

Ultra-Niederwiderstände (SMD)

Variable Widerstände

Varistoren

Drahtgewickelte Widerstände

Kondensatore

Aluminium-Elektrolyt-Kondensatoren - SMD

CL21 Kondensator

Keramische Scheibenkondensatoren

Hochspannungskondensatoren

Metallisierter Polyesterfolienkondensator

Mehrschichtige Keramikkondensatoren MLCC - Bedrahtet

Mehrschichtige Keramikkondensatoren MLCC - SMD/SMT

Mylar-Kondensator

Nioboxid-Kondensatoren

Polyester-Filmkondensatoren

Solid Polymer Elektrolytkondensator

Superkondensatoren & Ultrakondensatoren

Entstörkondensatoren

Tantalkondensatoren

Trimmer, variable Kondensatoren

Induktivitäten

Antennen

Stromwandler

Allgemeine Induktoren (TH)

HF-Induktoren

Induktoren (SMD)

Leitungsfilter

Leistungsinduktoren

Leistungstransformator

RJ45 Transformator

Radialer Induktor (TH)

Die kreisförmigen Induktoren

Quarze Oszillatoren

49S

49SMD

49U

Keramische Resonatoren

DIP-Oszillatoren (XO)

Radialzylinderkristalle

SAW-Resonatoren

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SMD-Oszillatoren (XO)

Steckverbinder

AV-Anschlüsse

Audio- und Videoanschlüsse

Bananen- und Spitzenanschlüsse

Kartenrandverbinder

Rundsteckverbinder

Steckverbinder - Kartensteckplätze

Steckverbinder

Steckverbinder - Zubehör

Steckverbinder - Gehäuse

Kontakte

D-Sub-Steckverbinder

Ethernet-Steckverbinder/Modularsteckverbinder

FFC, FPC (Flat Flexible) Steckverbinder

Lichtwellenleiter-Steckverbinder

IC- und Komponentensockel

LED-Lichtleiter

Mezzanine-Steckverbinder (Board to Board)

Leiterplattensteckverbinder - Stiftleisten, Stecker und Pins

Leiterplattensteckverbinder - Stiftleisten, Buchsen, Buchsen, Buchsenleisten

Leiterplattensteckverbinder - Gehäuse

Leistungssteckverbinder

HF-Steckverbinder/Koaxialsteckverbinder

Shunts & Jumper

Reihenklemmen - Zubehör

Reihenklemmen - Barriereklemmen

Reihenklemmen - DIN-Schiene, Kanal

Anschlussklemmen - Stiftleisten, Stecker und Buchsen

Terminals

Testclips

Prüfpunkte/Testringe

USB-Anschlüsse

Nicht spezifizierte Steckverbinder

Schraubverdrahtung

Federverdrahtung

Steckbare Reihenklemmen

Durchwandklemmen

Kfz-Terminals

Klemmengehäuse, Isolierhülsen und -blöcke

Schnelltrenn-Kabelverbinder und -klemmen

Ersatz- und Verschleißwerkzeuge

Kfz-Steckverbinder

Leiterplattensteckverbinder

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Logik - Puffer, Treiber, Empfänger, Transceiver

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74LVC244ADB,118

Enlarge

Original parts, guaranteed brand new

74LVC244ADB,118

PH2

These octal bus transceivers are designed for asynchronous two-way communication between data buses. The control-function implementation allows for maximum flexibility in timing. The ’HC623 devices allow data transmission from the A bus to the B bus or from the B bus to the A bus, depending upon the logic levels at the output-enable (OEAB and OEBA\) inputs. OEAB and OEBA\ disable the device so that the buses are effectively isolated. The dual-enable configuration gives the transceivers the capability to store data by simultaneously enabling OEAB and OEBA\. Each output reinforces its input in this transceiver configuration. When both OEAB and OEBA\ are enabled and all other data sources to the two sets of bus lines are in the high-impedance state, both sets of bus lines (16 total) remain at their last states. The 8-bit codes appearing on the two sets of buses are identical.

Utsource Original Store

≥1:

€0.52695

€0.47425

≥5:

€0.42156

€0.37940

≥10:

€0.24240

€0.21816

≥20:

€0.21078

€0.18970

≥50:

€0.18970

€0.17073

≥100:

€0.18443

€0.16599

≥200:

€0.17916

€0.16125

≥500:

€0.17389

€0.15650

≥1000:

€0.16862

€0.15176

From: €0.16862

Lagerbestand:10000

Mindestbestellmenge:4

Favorit

SN74HC623N

DIP20

Texas Instruments

0345+

These octal bus transceivers are designed for asynchronous two-way communication between data buses. The control-function implementation allows for maximum flexibility in timing. The ’HC623 devices allow data transmission from the A bus to the B bus or from the B bus to the A bus, depending upon the logic levels at the output-enable (OEAB and OEBA\) inputs. OEAB and OEBA\ disable the device so that the buses are effectively isolated. The dual-enable configuration gives the transceivers the capability to store data by simultaneously enabling OEAB and OEBA\. Each output reinforces its input in this transceiver configuration. When both OEAB and OEBA\ are enabled and all other data sources to the two sets of bus lines are in the high-impedance state, both sets of bus lines (16 total) remain at their last states. The 8-bit codes appearing on the two sets of buses are identical.

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Description: The SN74HC623N is a high-speed CMOS 8-bit shift register fabricated with silicon gate C2MOS technology. Features: High-Speed Operation: tpd = 10 ns (typ) at VCC = 5 V Low Power Consump

Favorit

74ACT16245DGGR

Enlarge

Original parts, guaranteed brand new

74ACT16245DGGR

TSSOP(DGG)-48

Ti/texas

17+

These octal bus transceivers are designed for asynchronous two-way communication between data buses. The control-function implementation allows for maximum flexibility in timing. The ’HC623 devices allow data transmission from the A bus to the B bus or from the B bus to the A bus, depending upon the logic levels at the output-enable (OEAB and OEBA\) inputs. OEAB and OEBA\ disable the device so that the buses are effectively isolated. The dual-enable configuration gives the transceivers the capability to store data by simultaneously enabling OEAB and OEBA\. Each output reinforces its input in this transceiver configuration. When both OEAB and OEBA\ are enabled and all other data sources to the two sets of bus lines are in the high-impedance state, both sets of bus lines (16 total) remain at their last states. The 8-bit codes appearing on the two sets of buses are identical.

Utsource Original Store

≥1:

€2.63474

€2.37127

≥5:

€2.50300

€2.25270

≥10:

€2.37127

€2.13414

≥20:

€2.30540

€2.07486

≥50:

€2.23953

€2.01558

≥100:

€2.17366

€1.95629

≥200:

€2.10779

€1.89701

≥500:

€2.08144

€1.87330

≥1000:

€2.04192

€1.83773

From: €2.04192

Lagerbestand:10000

Mindestbestellmenge:1

Favorit

74LVT245PW,118

Enlarge

Original parts, guaranteed brand new

74LVT245PW,118

TSSOP-20

PH3

These octal bus transceivers are designed for asynchronous two-way communication between data buses. The control-function implementation allows for maximum flexibility in timing. The ’HC623 devices allow data transmission from the A bus to the B bus or from the B bus to the A bus, depending upon the logic levels at the output-enable (OEAB and OEBA\) inputs. OEAB and OEBA\ disable the device so that the buses are effectively isolated. The dual-enable configuration gives the transceivers the capability to store data by simultaneously enabling OEAB and OEBA\. Each output reinforces its input in this transceiver configuration. When both OEAB and OEBA\ are enabled and all other data sources to the two sets of bus lines are in the high-impedance state, both sets of bus lines (16 total) remain at their last states. The 8-bit codes appearing on the two sets of buses are identical.

Utsource Original Store

≥1:

€0.63234

€0.56910

≥5:

€0.47425

€0.42683

≥10:

€0.33198

€0.29878

≥20:

€0.31617

€0.28455

≥50:

€0.28455

€0.25610

≥100:

€0.27665

€0.24898

≥200:

€0.26874

€0.24187

≥500:

€0.26084

€0.23476

≥1000:

€0.25294

€0.22764

From: €0.25294

Lagerbestand:10000

Mindestbestellmenge:4

Favorit

CD74HCT541E

Enlarge

Original parts, guaranteed brand new

CD74HCT541E

DIP-20

Harris

00+

These octal bus transceivers are designed for asynchronous two-way communication between data buses. The control-function implementation allows for maximum flexibility in timing. The ’HC623 devices allow data transmission from the A bus to the B bus or from the B bus to the A bus, depending upon the logic levels at the output-enable (OEAB and OEBA\) inputs. OEAB and OEBA\ disable the device so that the buses are effectively isolated. The dual-enable configuration gives the transceivers the capability to store data by simultaneously enabling OEAB and OEBA\. Each output reinforces its input in this transceiver configuration. When both OEAB and OEBA\ are enabled and all other data sources to the two sets of bus lines are in the high-impedance state, both sets of bus lines (16 total) remain at their last states. The 8-bit codes appearing on the two sets of buses are identical.

Utsource Original Store

≥1:

€1.05390

€0.94851

≥5:

€0.79042

€0.71138

≥10:

€0.47425

€0.42683

≥20:

€0.46108

€0.41497

≥50:

€0.44791

€0.40312

≥100:

€0.43473

€0.39126

≥200:

€0.42156

€0.37940

≥500:

€0.41629

€0.37466

≥1000:

€0.40838

€0.36755

From: €0.40838

Description: The CD74HCT541E is a high-speed CMOS 8-bit buffer/line driver fabricated with silicon gate CMOS technology. Features: High-speed operation Low power dissipation High noise immunity H

Lagerbestand:10000

Mindestbestellmenge:2

Favorit

SN74ALS760N

Enlarge

Original parts, guaranteed brand new

SN74ALS760N

DIP20

TI Texas Instruments

1651+

These octal bus transceivers are designed for asynchronous two-way communication between data buses. The control-function implementation allows for maximum flexibility in timing. The ’HC623 devices allow data transmission from the A bus to the B bus or from the B bus to the A bus, depending upon the logic levels at the output-enable (OEAB and OEBA\) inputs. OEAB and OEBA\ disable the device so that the buses are effectively isolated. The dual-enable configuration gives the transceivers the capability to store data by simultaneously enabling OEAB and OEBA\. Each output reinforces its input in this transceiver configuration. When both OEAB and OEBA\ are enabled and all other data sources to the two sets of bus lines are in the high-impedance state, both sets of bus lines (16 total) remain at their last states. The 8-bit codes appearing on the two sets of buses are identical.

Utsource Original Store

≥1:

€2.96408

€2.66767

≥5:

€1.97606

€1.77845

≥10:

€1.77845

€1.60060

≥20:

€1.72905

€1.55614

≥50:

€1.67965

€1.51168

≥100:

€1.63025

€1.46722

≥200:

€1.58084

€1.42276

≥500:

€1.56108

€1.40498

≥1000:

€1.53144

€1.37830

From: €1.53144

Lagerbestand:10000

Mindestbestellmenge:2

Favorit

CY74FCT646CTSOC

SOIC-24

Texas Instruments

1450+

These octal bus transceivers are designed for asynchronous two-way communication between data buses. The control-function implementation allows for maximum flexibility in timing. The ’HC623 devices allow data transmission from the A bus to the B bus or from the B bus to the A bus, depending upon the logic levels at the output-enable (OEAB and OEBA\) inputs. OEAB and OEBA\ disable the device so that the buses are effectively isolated. The dual-enable configuration gives the transceivers the capability to store data by simultaneously enabling OEAB and OEBA\. Each output reinforces its input in this transceiver configuration. When both OEAB and OEBA\ are enabled and all other data sources to the two sets of bus lines are in the high-impedance state, both sets of bus lines (16 total) remain at their last states. The 8-bit codes appearing on the two sets of buses are identical.

Utsource Original Store
Anfrage bedürfen

Favorit

SN74LS641DW

Enlarge

Original parts, guaranteed brand new

SN74LS641DW

SOP-20 7.2MM

Texas Instruments

These octal bus transceivers are designed for asynchronous two-way communication between data buses. The control-function implementation allows for maximum flexibility in timing. The ’HC623 devices allow data transmission from the A bus to the B bus or from the B bus to the A bus, depending upon the logic levels at the output-enable (OEAB and OEBA\) inputs. OEAB and OEBA\ disable the device so that the buses are effectively isolated. The dual-enable configuration gives the transceivers the capability to store data by simultaneously enabling OEAB and OEBA\. Each output reinforces its input in this transceiver configuration. When both OEAB and OEBA\ are enabled and all other data sources to the two sets of bus lines are in the high-impedance state, both sets of bus lines (16 total) remain at their last states. The 8-bit codes appearing on the two sets of buses are identical.

Utsource Original Store

≥1:

€2.63474

€2.37127

≥5:

€2.50300

€2.25270

≥10:

€2.37127

€2.13414

≥20:

€2.30540

€2.07486

≥50:

€2.23953

€2.01558

≥100:

€2.17366

€1.95629

≥200:

€2.10779

€1.89701

≥500:

€2.08144

€1.87330

≥1000:

€2.04192

€1.83773

From: €2.04192

Description: The SN74LS641DW is a high-speed 8-bit parallel-in/parallel-out shift register from Texas Instruments. Features: 8-bit parallel-in/parallel-out shift register High-speed operation Low

Lagerbestand:10000

Mindestbestellmenge:1

Favorit

TC7WH34FK(TE85L)

Semiconductor And Storage

IC BUFFER NON-INVERT 5.5V US8

Utsource
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Favorit

SN74HCT541N

Enlarge

Original parts, guaranteed brand new

SN74HCT541N

DIP20

Texas Instruments

These octal bus transceivers are designed for asynchronous two-way communication between data buses. The control-function implementation allows for maximum flexibility in timing. The ’HC623 devices allow data transmission from the A bus to the B bus or from the B bus to the A bus, depending upon the logic levels at the output-enable (OEAB and OEBA\) inputs. OEAB and OEBA\ disable the device so that the buses are effectively isolated. The dual-enable configuration gives the transceivers the capability to store data by simultaneously enabling OEAB and OEBA\. Each output reinforces its input in this transceiver configuration. When both OEAB and OEBA\ are enabled and all other data sources to the two sets of bus lines are in the high-impedance state, both sets of bus lines (16 total) remain at their last states. The 8-bit codes appearing on the two sets of buses are identical.

Utsource Original Store

≥1:

€1.58084

€1.42276

≥5:

€1.05390

€0.94851

≥10:

€0.94851

€0.85366

≥20:

€0.92216

€0.82994

≥50:

€0.89581

€0.80623

≥100:

€0.86946

€0.78252

≥200:

€0.84312

€0.75881

≥500:

€0.83258

€0.74932

≥1000:

€0.81677

€0.73509

From: €0.81677

Lagerbestand:10000

Mindestbestellmenge:2

Favorit

74AHCT245APWJ

Nexperia Usa

IC TXRX NON-INVERT 5.5V 20TSSOP

Utsource
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Favorit

MC74HC541AF

SOP20

Motorola

04+

Octal 3−State Noninverting Buffer/Line Driver/Line Receiver High−Performance Silicon−Gate CMOS

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Favorit

NC7SZ125M5

Enlarge

Original parts, guaranteed brand new

NC7SZ125M5

SOT23-5

Fair

05+

These octal bus transceivers are designed for asynchronous two-way communication between data buses. The control-function implementation allows for maximum flexibility in timing. The ’HC623 devices allow data transmission from the A bus to the B bus or from the B bus to the A bus, depending upon the logic levels at the output-enable (OEAB and OEBA\) inputs. OEAB and OEBA\ disable the device so that the buses are effectively isolated. The dual-enable configuration gives the transceivers the capability to store data by simultaneously enabling OEAB and OEBA\. Each output reinforces its input in this transceiver configuration. When both OEAB and OEBA\ are enabled and all other data sources to the two sets of bus lines are in the high-impedance state, both sets of bus lines (16 total) remain at their last states. The 8-bit codes appearing on the two sets of buses are identical.

Utsource Original Store

≥1:

€0.23054

€0.20749

≥10:

€0.16467

€0.14820

≥50:

€0.13174

€0.11856

≥100:

€0.11856

€0.10671

≥150:

€0.11198

€0.10078

≥200:

€0.10868

€0.09781

≥500:

€0.10737

€0.09663

≥1000:

€0.10605

€0.09544

≥3000:

€0.10539

€0.09485

From: €0.10539

Lagerbestand:10000

Mindestbestellmenge:13

Favorit

74LVC1G07GX4Z

Nexperia Usa

74LVC1G07GX4/SOT1269/X2SON4

Utsource
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SN74HCT244NSR

Enlarge

Original parts, guaranteed brand new

SN74HCT244NSR

SOP5.2MM

Texas Instruments

2012GW

These octal bus transceivers are designed for asynchronous two-way communication between data buses. The control-function implementation allows for maximum flexibility in timing. The ’HC623 devices allow data transmission from the A bus to the B bus or from the B bus to the A bus, depending upon the logic levels at the output-enable (OEAB and OEBA\) inputs. OEAB and OEBA\ disable the device so that the buses are effectively isolated. The dual-enable configuration gives the transceivers the capability to store data by simultaneously enabling OEAB and OEBA\. Each output reinforces its input in this transceiver configuration. When both OEAB and OEBA\ are enabled and all other data sources to the two sets of bus lines are in the high-impedance state, both sets of bus lines (16 total) remain at their last states. The 8-bit codes appearing on the two sets of buses are identical.

Utsource Original Store

≥1:

€1.31737

€1.18563

≥5:

€0.98803

€0.88922

≥10:

€0.59282

€0.53353

≥20:

€0.57635

€0.51871

≥50:

€0.55988

€0.50389

≥100:

€0.54342

€0.48907

≥200:

€0.52695

€0.47425

≥500:

€0.52036

€0.46833

≥1000:

€0.51048

€0.45943

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SN74LS367ADR

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SN74LS367ADR

SOP16

Texas Instruments

00+

These octal bus transceivers are designed for asynchronous two-way communication between data buses. The control-function implementation allows for maximum flexibility in timing. The ’HC623 devices allow data transmission from the A bus to the B bus or from the B bus to the A bus, depending upon the logic levels at the output-enable (OEAB and OEBA\) inputs. OEAB and OEBA\ disable the device so that the buses are effectively isolated. The dual-enable configuration gives the transceivers the capability to store data by simultaneously enabling OEAB and OEBA\. Each output reinforces its input in this transceiver configuration. When both OEAB and OEBA\ are enabled and all other data sources to the two sets of bus lines are in the high-impedance state, both sets of bus lines (16 total) remain at their last states. The 8-bit codes appearing on the two sets of buses are identical.

Utsource Original Store

≥1:

€1.05390

€0.94851

≥5:

€0.79042

€0.71138

≥10:

€0.47425

€0.42683

≥20:

€0.46108

€0.41497

≥50:

€0.44791

€0.40312

≥100:

€0.43473

€0.39126

≥200:

€0.42156

€0.37940

≥500:

€0.41629

€0.37466

≥1000:

€0.40838

€0.36755

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74AC240SCX

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74AC240SCX

SOP20

FSC

00+

These octal bus transceivers are designed for asynchronous two-way communication between data buses. The control-function implementation allows for maximum flexibility in timing. The ’HC623 devices allow data transmission from the A bus to the B bus or from the B bus to the A bus, depending upon the logic levels at the output-enable (OEAB and OEBA\) inputs. OEAB and OEBA\ disable the device so that the buses are effectively isolated. The dual-enable configuration gives the transceivers the capability to store data by simultaneously enabling OEAB and OEBA\. Each output reinforces its input in this transceiver configuration. When both OEAB and OEBA\ are enabled and all other data sources to the two sets of bus lines are in the high-impedance state, both sets of bus lines (16 total) remain at their last states. The 8-bit codes appearing on the two sets of buses are identical.

Utsource Original Store

≥1:

€0.65869

€0.59282

≥5:

€0.52695

€0.47425

≥10:

€0.30300

€0.27270

≥20:

€0.26347

€0.23713

≥50:

€0.23713

€0.21341

≥100:

€0.23054

€0.20749

≥200:

€0.22395

€0.20156

≥500:

€0.21737

€0.19563

≥1000:

€0.21078

€0.18970

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74VHCT245AFT

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74VHCT245AFT

TSSOP-20

Semiconductor And Storage

These octal bus transceivers are designed for asynchronous two-way communication between data buses. The control-function implementation allows for maximum flexibility in timing. The ’HC623 devices allow data transmission from the A bus to the B bus or from the B bus to the A bus, depending upon the logic levels at the output-enable (OEAB and OEBA\) inputs. OEAB and OEBA\ disable the device so that the buses are effectively isolated. The dual-enable configuration gives the transceivers the capability to store data by simultaneously enabling OEAB and OEBA\. Each output reinforces its input in this transceiver configuration. When both OEAB and OEBA\ are enabled and all other data sources to the two sets of bus lines are in the high-impedance state, both sets of bus lines (16 total) remain at their last states. The 8-bit codes appearing on the two sets of buses are identical.

Utsource Original Store

≥1:

€0.34252

€0.30826

≥5:

€0.27401

€0.24661

≥10:

€0.15756

€0.14180

≥20:

€0.13701

€0.12331

≥50:

€0.12331

€0.11098

≥100:

€0.11988

€0.10789

≥200:

€0.11646

€0.10481

≥500:

€0.11303

€0.10173

≥1000:

€0.10961

€0.09864

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