Chip circuito integrato

Circuiti integrati digitali serie 74

Circuiti integrati digitali serie CD40

Accoppiatori ottici

Orologio e calcolatrice di circuiti integrati

Amplificatori operazionali

Interruttore di accensione circuito integrato

Driver circuito integrato

Memoria flash

Memoria

Audio speciale

Clock/ Timing - Specifico per l'applicazione

Clock/ Timing - Drivers, buffer orologio

Clock/ Timing - Generatori orologio, PLL, sintetizzatori di frequenza

Clock/ Timing - Linee di ritardo

Clock/ Timing - Batterie circuito integrato

Clock/ Timing - Oscillatori e Timer programmabili

Clock/ Timing - Clock in Real Time

Acquisizione dati - ADC / DAC - Scopo speciale

Acquisizione dati - Front end analogico (AFE)

Acquisizione dati - Convertitore da analogico a digitale (ADC)

Acquisizione dati - Potenziometro digitale

Acquisizione dati - Convertitore da digitale ad analogico (ADC)

Acquisizione dati - Controller Touch-screen

Incorporato - CPLD (dispositivi logici programmabili complessi)

Incorporato - DSP ( processori segnali digitali)

Incorporato - FPGA ( dispositivi programmabili)

Incorporato - FPGA ( dispositivi programmabili) con microcontroller

Incorporato - Microcontroller, Microprocessori, Moduli FPGA

Incorporato - Microcontroller

Incorporato - Microcontroller - Specifica Applicazione

Incorporato - Microprocessori

Incorporato - PLD (dispositivo logico programmabile)

Incorporato - Sistema su chip (SoC)

Interfaccia - Interruttori analogici - Scopo speciale

Interfaccia - Interruttori analogici, multiplexer, demultiplexer

Interfaccia - CODEC

Interfaccia - Controller

Interfaccia - Sintesi digitale diretta (DSS)

Interfaccia - Driver, Ricevitori, Transceiver

Interfaccia - Codificatori, Decodificatori, Convertitori

Interfaccia - Filtri - Attivi

Interfaccia - Espansori I / O

Interfaccia - Modem - CI e moduli

Interfaccia - Moduli

Interfaccia - Interfacce sensore e rilevatore

Interfaccia - Sensore, Touch Capacitivo

Interfaccia - Serializzatori, Deserializzatori

Interfaccia - Buffer di segnale, Ripetitori, Splitter

Interfaccia - Terminatori di segnale

Interfaccia - Specializzato

Interfaccia - Telecom

Interfaccia - UART (Trasmettitore Asincrono Universale del Ricevitore)

Interfaccia - Registrazione e Riproduzione vocale

Lineare - Amplificatori - Audio

Lineari - Amplificatori - Strumentazione, Amplificatori operazionali, Amplificatori buffer

Linear - Amplificatore - Scopo speciale

Lineare - Amplificatore - Amplificatore Video e Moduli

Lineari - Moltiplicatori analogici, Divisori

Lineare - Comparatori

Lineare - Elaborazione video

Logica - Buffer, Driver, Ricevitori, Transceiver

Logica - Comparatori

Logica - Contatori, Divisori

Logica - Memoria FIFO

Logica - Flip Flops

Logica - Gate e Inverter

Logica - Gate e Inverter - Multifunzione, Configurabile

Logica - Latch

Logica - Multivibratori

Logica - Generatori e Controllori di parità

Logica - Registri a scorrimento

Logica - Interruttori di segnale, Multiplexer, Decodificatori

Logica - Logica speciale

Logica - Traduttori, Cambi di livello

Logica - Funzioni Bus Universale

Memoria - Batterie

Memoria - Proms di configurazione per FPGA

Memoria - Controller

PMIC - Convertitori ca-cc, Commutatori offline

PMIC - Caricabatterie

PMIC - Gestione della batteria

PMIC - Regolamentazione / Gestione attuale

PMIC - Driver di visualizzazione

PMIC - Misurazione dell'energia

PMIC - Driver full-half-bridge

PMIC - Drivers Gate

PMIC - Controller Hot Swap

PMIC - Driver laser

PMIC - Driver LED

PMIC - Illuminazione, Regolatori di zavorra

PMIC - Driver per motori, Controller

PMIC - Controller OR, Diodi ideali

PMIC - PFC (correzione del fattore di potenza)

PMIC - Interruttori di distribuzione dell'alimentazione, Driver di caricamento

PMIC - Power Management - Specializzato

PMIC - Controller Power Over Ethernet (PoE)

PMIC - Controller di alimentazione, Monitor

PMIC - Convertitori da RMS a CC

PMIC - Supervisori

PMIC - Gestione termica

PMIC - Convertitori V / F e F / V

PMIC - Riferimento di tensione

PMIC - Regolatori di tensione - Controllori a commutazione cc-cc

PMIC - Regolatori di tensione - Regolatori a commutazione cc-cc

PMIC - Regolatori di tensione - Lineari

PMIC - Regolatori di tensione - Lineari + commutazione

PMIC - Regolatori di tensione - Controllori regolatori lineari

PMIC - Regolatori di tensione - Scopo speciale

CI Specializzati

Moduli

IGBT

IPM

Tiristori

Raddrizzatori

Alimentazione elettrica

Modulo Smart Power

SCR, GTO e Diodo

FET

Transistor Darlington

Moduli RF

PRODOTTI CNC

CODIFICATORE

Motore

Servo Drive & Amplificatore & Servo

Modulo Diodo

Modulo Transistor

Relè di Commutazione

PLC

Invertitore

Contattore e Interruttore

Scheda Ascensore

Controllo Settore

Transistor

Diodo

Transistor bipolari

resistenze

Resistori a film di carbonio

Resistori di cemento

Resistori per montaggio su telaio

Resistore a chip - Montaggio superficiale

Resistori rilevatori di corrente

Resistore a chip fusibile

Resistori SMD ad alta precisione e bassa TCR

Resistori ad alta tensione

Resistori a strisce LED

Resistori MELF

Resistori in lega metallica

Resistori a film metallico (TH)

Resistori di smalto metallico

Resistori a film di ossido di metallo

Resistori all'ossido di metallo

Termistori NTC

Termistori PTC

Fotoresistenze

Potenziometri e resistori variabili

Potenziometro di precisione

Reti e array di resistori

Reti e array di resistori (TH)

Resistori Ultrabassi (SMD)

Resistori variabili

Varistori

Resistori ad avvolgimento

Condensatori

Condensatori elettrolitici in alluminio - SMD

Condensatore CL21

Condensatori a dischi ceramici

Condensatori ad alta tensione

Condensatore in film di poliestere metallizzato

Condensatori ceramici multistrato MLCC - Piombo

Condensatori ceramici multistrato MLCC - SMD&SMT

Condensatore di Mylar

Condensatori all'ossido di niobio

Condensatori a film di poliestere

Condensatore elettrolitico polimero solido

Supercondensatori e Ultracondensatori

Condensatori di soppressione

Condensatori al tantalio

Trimmer, condensatori variabili

Induttori e trasformatori di ferrite

Antenne

Trasformatori di correnti

Induttori Generali (TH)

Induttori HF

Induttori (SMD)

Filtro LINE

Induttori di potenza

Trasformatore di potenza

Trasformatore RJ45

Induttore radiale (TH)

Gli induttori circolari

Crystals

49S

49SMD

49U

Risonatori ceramici

Oscillatori DIP (XO)

Cristalli a cilindro radiale

Risuonatori SAW

Cristalli SMD

Oscillatori SMD (XO)

Connettori

Connettori AV

Connettori audio e video

Connettori a banana e punta

Connettori bordo scheda

Connettori circolari

Connettore - Prese per schede

Connettori

Connettori-Accessori

Connettori- Alloggiamenti

Contatti

Connettori D-Sub

Connettori Ethernet&Connettori modulari

Connettori FFC, FPC (flessibile piatto)

Connettori in fibra ottica

Prese per circuiti integrati e componenti

Tubi luminosi a LED

Connettori mezzanine (da scheda a scheda)

Connettori PCB - Basette, pin maschio

Connettori PCB - Basette, prese, prese femmina

Connettori PCB - Alloggiamenti

Connettori di alimentazione

Connettori RF&Connettori coassiali

Shunt e ponticelli

Morsettiere - Accessori

Morsettiere - Blocchi a barriera

Morsettiere - Din Rail, canale

Morsettiere - Basette, spine e prese

Terminali

Clip di prova

Punti di prova&anelli di prova

Connettori USB

Connettori non specificati

Cablaggio a vite

Cablaggio a molla

Morsettiere innestabili

Morsettiere passanti

Terminali automobilistici

Alloggiamenti terminali, guaine isolanti e blocchi

Connettori e terminali per cavi a scollegamento rapido

Utensili di ricambio e usura

Connettori automobilistici

Connettori PCB

Accesso

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Logica - Flip Flops

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il numero di prodotti correlati: 4572
Alternate Text Utsource
74ACT574PC

Enlarge

Original parts, guaranteed brand new

74ACT574PC

DIP20

Ns/fsc

These monolithic, positive-edge-triggered flip-flops utilize TTL circuitry to implement D-type flip-flop logic with an enable input. The 'LS377, 'LS378, and 'LS379 devices are similar to 'LS273, 'LS174, and 'LS175, respectively, but feature a common enable instead of a common clear. Information at the D inputs meeting the setup time requirements is transferred to the Q outputs on the positive-going edge of the clock pulse if the enable input G\ is low. Clock triggering occurs at a particular voltage level and is not directly related to the transition time of the positive-going pulse. When the clock input is at either the high or low level, the D input signal has no effect at the output. The circuits are designed to prevent false clocking by transitions at the G\ input. These flip-flops are guaranteed to respond to clock frequencies ranging from 0 to 30 MHz while maximum clock frequency is typically 40 megahertz. Typical power dissipation is 10 milliwatts per flip-flop.

Utsource Original Store

≥1:

€1.15929

€1.04336

≥5:

€0.86946

€0.78252

≥10:

€0.52168

€0.46951

≥20:

€0.50719

€0.45647

≥50:

€0.49270

€0.44343

≥100:

€0.47821

€0.43038

≥200:

€0.46371

€0.41734

≥500:

€0.45792

€0.41213

≥1000:

€0.44922

€0.40430

From: €0.44922

Stock:10000

Minimo:2

Preferito

SN74LS377DWR

Enlarge

Used and refurbished parts guaranteed can work well

SN74LS377DWR

SOP-20

TI9

These monolithic, positive-edge-triggered flip-flops utilize TTL circuitry to implement D-type flip-flop logic with an enable input. The 'LS377, 'LS378, and 'LS379 devices are similar to 'LS273, 'LS174, and 'LS175, respectively, but feature a common enable instead of a common clear. Information at the D inputs meeting the setup time requirements is transferred to the Q outputs on the positive-going edge of the clock pulse if the enable input G\ is low. Clock triggering occurs at a particular voltage level and is not directly related to the transition time of the positive-going pulse. When the clock input is at either the high or low level, the D input signal has no effect at the output. The circuits are designed to prevent false clocking by transitions at the G\ input. These flip-flops are guaranteed to respond to clock frequencies ranging from 0 to 30 MHz while maximum clock frequency is typically 40 megahertz. Typical power dissipation is 10 milliwatts per flip-flop.

Utsource

≥1:

€0.80117

€0.72105

≥5:

€0.72105

€0.64895

≥10:

€0.48070

€0.43263

≥20:

€0.40059

€0.36053

≥50:

€0.36854

€0.33169

≥100:

€0.32047

€0.28842

≥200:

€0.28843

€0.25958

≥500:

€0.27240

€0.24516

≥1000:

€0.25637

€0.23074

From: €0.25637

Stock:10000

Minimo:3

Preferito

SN74ALS577ANT

Enlarge

Used and refurbished parts guaranteed can work well

SN74ALS577ANT

DIP24

Texas Instruments

00+

ti SN74ALS577A, Octal D-type Edge-triggered Flip-flops With 3-State Outputs

Utsource

≥1:

€2.57627

€2.31865

≥5:

€2.44746

€2.20271

≥10:

€2.31865

€2.08678

≥20:

€2.25424

€2.02882

≥50:

€2.18983

€1.97085

≥100:

€2.12543

€1.91288

≥200:

€2.06102

€1.85492

≥500:

€2.03526

€1.83173

≥1000:

€1.99661

€1.79695

From: €1.99661

Description: The SN74ALS577ANT is a high-speed, low-power, octal D-type flip-flop with 3-state outputs. Features: * Low power consumption * High-speed operation * 3-state outputs * TTL-compatible inp

Stock:10000

Minimo:2

Preferito

MM74HCT273WM

Enlarge

Used and refurbished parts guaranteed can work well

MM74HCT273WM

SOP-20

FSC

Octal D Flip-Flop with Clear; Package: SOIC-Wide; No of Pins: 20; Container: Rail

Utsource

≥1:

€0.51290

€0.46161

≥5:

€0.41032

€0.36929

≥10:

€0.23593

€0.21234

≥20:

€0.20516

€0.18464

≥50:

€0.18464

€0.16617

≥100:

€0.17951

€0.16156

≥200:

€0.17439

€0.15695

≥500:

€0.16926

€0.15233

≥1000:

€0.16413

€0.14772

From: €0.16413

Stock:10000

Minimo:4

Preferito

CD74FCT374E

Enlarge

Original parts, guaranteed brand new

CD74FCT374E

DIP20

TI Texas Instruments

1547+

These monolithic, positive-edge-triggered flip-flops utilize TTL circuitry to implement D-type flip-flop logic with an enable input. The 'LS377, 'LS378, and 'LS379 devices are similar to 'LS273, 'LS174, and 'LS175, respectively, but feature a common enable instead of a common clear. Information at the D inputs meeting the setup time requirements is transferred to the Q outputs on the positive-going edge of the clock pulse if the enable input G\ is low. Clock triggering occurs at a particular voltage level and is not directly related to the transition time of the positive-going pulse. When the clock input is at either the high or low level, the D input signal has no effect at the output. The circuits are designed to prevent false clocking by transitions at the G\ input. These flip-flops are guaranteed to respond to clock frequencies ranging from 0 to 30 MHz while maximum clock frequency is typically 40 megahertz. Typical power dissipation is 10 milliwatts per flip-flop.

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

Description: The CD74FCT374E is a high-speed CMOS Octal D-type Flip-Flop with 3-state outputs fabricated with silicon gate CMOS technology. Features: High Speed Operation: tPD = 10ns (typ) at VCC =

Stock:10000

Minimo:2

Preferito

DM74LS112AN

Enlarge

Original parts, guaranteed brand new

DM74LS112AN

DIP-16

MIT

82

These monolithic, positive-edge-triggered flip-flops utilize TTL circuitry to implement D-type flip-flop logic with an enable input. The 'LS377, 'LS378, and 'LS379 devices are similar to 'LS273, 'LS174, and 'LS175, respectively, but feature a common enable instead of a common clear. Information at the D inputs meeting the setup time requirements is transferred to the Q outputs on the positive-going edge of the clock pulse if the enable input G\ is low. Clock triggering occurs at a particular voltage level and is not directly related to the transition time of the positive-going pulse. When the clock input is at either the high or low level, the D input signal has no effect at the output. The circuits are designed to prevent false clocking by transitions at the G\ input. These flip-flops are guaranteed to respond to clock frequencies ranging from 0 to 30 MHz while maximum clock frequency is typically 40 megahertz. Typical power dissipation is 10 milliwatts per flip-flop.

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

From: €0.21078

Description: Dual Monostable Multivibrator Features: High Voltage Type (20V Rating) Outputs Source/Sink 24mA Retriggerable Output Pulse Width Control by Two External Resistors and Capacitor Input

Stock:10000

Minimo:4

Preferito

TC74HC273AF(EL,F)

Enlarge

Original parts, guaranteed brand new

TC74HC273AF(EL,F)

SOP20

1140+

These monolithic, positive-edge-triggered flip-flops utilize TTL circuitry to implement D-type flip-flop logic with an enable input. The 'LS377, 'LS378, and 'LS379 devices are similar to 'LS273, 'LS174, and 'LS175, respectively, but feature a common enable instead of a common clear. Information at the D inputs meeting the setup time requirements is transferred to the Q outputs on the positive-going edge of the clock pulse if the enable input G\ is low. Clock triggering occurs at a particular voltage level and is not directly related to the transition time of the positive-going pulse. When the clock input is at either the high or low level, the D input signal has no effect at the output. The circuits are designed to prevent false clocking by transitions at the G\ input. These flip-flops are guaranteed to respond to clock frequencies ranging from 0 to 30 MHz while maximum clock frequency is typically 40 megahertz. Typical power dissipation is 10 milliwatts per flip-flop.

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

From: €0.21078

Stock:10000

Minimo:4

Preferito

DM74LS174N

Enlarge

Used and refurbished parts guaranteed can work well

DM74LS174N

DIP-16

FSC

0516+

16-Bit Buffer/Line Driver with 3-STATE Outputs; Package: SSOP; No of Pins: 48; Container: Tape & Reel

Utsource

≥1:

€1.03353

€0.93017

≥5:

€0.77515

€0.69763

≥10:

€0.46509

€0.41858

≥20:

€0.45217

€0.40695

≥50:

€0.43925

€0.39532

≥100:

€0.42633

€0.38370

≥200:

€0.41341

€0.37207

≥500:

€0.40824

€0.36742

≥1000:

€0.40049

€0.36044

From: €0.40049

Stock:10000

Minimo:2

Preferito

74AC175MTC

Enlarge

Used and refurbished parts guaranteed can work well

74AC175MTC

TSSOP-16

Fairchil

04+

Quad D-Type Flip-Flop

Utsource

≥1:

€0.64595

€0.58136

≥5:

€0.51676

€0.46509

≥10:

€0.29714

€0.26742

≥20:

€0.25838

€0.23254

≥50:

€0.23254

€0.20929

≥100:

€0.22608

€0.20348

≥200:

€0.21962

€0.19766

≥500:

€0.21316

€0.19185

≥1000:

€0.20671

€0.18604

From: €0.20671

Description: Quad D-Type Flip-Flop Features: Low Power Consumption Low Input Current High Noise Immunity High Speed Performance Outputs Source/Sink 24 mA Inputs Accept Voltages to 5

Stock:10000

Minimo:4

Preferito

74ACT74SC

Enlarge

Original parts, guaranteed brand new

74ACT74SC

SOP14

Ns/fsc

00+

These monolithic, positive-edge-triggered flip-flops utilize TTL circuitry to implement D-type flip-flop logic with an enable input. The 'LS377, 'LS378, and 'LS379 devices are similar to 'LS273, 'LS174, and 'LS175, respectively, but feature a common enable instead of a common clear. Information at the D inputs meeting the setup time requirements is transferred to the Q outputs on the positive-going edge of the clock pulse if the enable input G\ is low. Clock triggering occurs at a particular voltage level and is not directly related to the transition time of the positive-going pulse. When the clock input is at either the high or low level, the D input signal has no effect at the output. The circuits are designed to prevent false clocking by transitions at the G\ input. These flip-flops are guaranteed to respond to clock frequencies ranging from 0 to 30 MHz while maximum clock frequency is typically 40 megahertz. Typical power dissipation is 10 milliwatts per flip-flop.

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

Stock:10000

Minimo:13

Preferito

NC7SZ175P6X

Enlarge

Original parts, guaranteed brand new

NC7SZ175P6X

SOT-363/MAA06A

Fairchild

05+

These monolithic, positive-edge-triggered flip-flops utilize TTL circuitry to implement D-type flip-flop logic with an enable input. The 'LS377, 'LS378, and 'LS379 devices are similar to 'LS273, 'LS174, and 'LS175, respectively, but feature a common enable instead of a common clear. Information at the D inputs meeting the setup time requirements is transferred to the Q outputs on the positive-going edge of the clock pulse if the enable input G\ is low. Clock triggering occurs at a particular voltage level and is not directly related to the transition time of the positive-going pulse. When the clock input is at either the high or low level, the D input signal has no effect at the output. The circuits are designed to prevent false clocking by transitions at the G\ input. These flip-flops are guaranteed to respond to clock frequencies ranging from 0 to 30 MHz while maximum clock frequency is typically 40 megahertz. Typical power dissipation is 10 milliwatts per flip-flop.

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

Description: NC7SZ175P6X is a single inverter gate from Fairchild Semiconductor. It is a low-power, low-voltage, single-gate CMOS device. Features: - Low power consumption - Low voltage operation - H

Stock:10000

Minimo:13

Preferito

NC7SZ175P6X

Enlarge

Original parts, guaranteed brand new

NC7SZ175P6X

SOT-363/MAA06A

Fairchild

05

These monolithic, positive-edge-triggered flip-flops utilize TTL circuitry to implement D-type flip-flop logic with an enable input. The 'LS377, 'LS378, and 'LS379 devices are similar to 'LS273, 'LS174, and 'LS175, respectively, but feature a common enable instead of a common clear. Information at the D inputs meeting the setup time requirements is transferred to the Q outputs on the positive-going edge of the clock pulse if the enable input G\ is low. Clock triggering occurs at a particular voltage level and is not directly related to the transition time of the positive-going pulse. When the clock input is at either the high or low level, the D input signal has no effect at the output. The circuits are designed to prevent false clocking by transitions at the G\ input. These flip-flops are guaranteed to respond to clock frequencies ranging from 0 to 30 MHz while maximum clock frequency is typically 40 megahertz. Typical power dissipation is 10 milliwatts per flip-flop.

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

Description: NC7SZ175P6X is a single inverter gate from Fairchild Semiconductor. It is a low-power, low-voltage, single-gate CMOS device. Features: - Low power consumption - Low voltage operation - H

Stock:10000

Minimo:13

Preferito

HCF4013M013TR

Enlarge

Original parts, guaranteed brand new

HCF4013M013TR

SOP8

STMicroelectronics

07+

These monolithic, positive-edge-triggered flip-flops utilize TTL circuitry to implement D-type flip-flop logic with an enable input. The 'LS377, 'LS378, and 'LS379 devices are similar to 'LS273, 'LS174, and 'LS175, respectively, but feature a common enable instead of a common clear. Information at the D inputs meeting the setup time requirements is transferred to the Q outputs on the positive-going edge of the clock pulse if the enable input G\ is low. Clock triggering occurs at a particular voltage level and is not directly related to the transition time of the positive-going pulse. When the clock input is at either the high or low level, the D input signal has no effect at the output. The circuits are designed to prevent false clocking by transitions at the G\ input. These flip-flops are guaranteed to respond to clock frequencies ranging from 0 to 30 MHz while maximum clock frequency is typically 40 megahertz. Typical power dissipation is 10 milliwatts per flip-flop.

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

From: €0.21078

Description: Quad 2-Input NAND Schmitt Trigger Features: - Low power Schottky technology - High noise immunity - High input impedance - Low input current - Outputs source/sink up to 20 mA - TTL compa

Stock:10000

Minimo:4

Preferito

MC14013BDR2G

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Used and refurbished parts guaranteed can work well

MC14013BDR2G

SOP-14

On Semiconductor

07+

Dual Type D Flip−Flop

Utsource

≥1:

€0.46735

€0.42062

≥10:

€0.40059

€0.36053

≥50:

€0.33382

€0.30044

≥100:

€0.16691

€0.15022

≥150:

€0.13353

€0.12018

≥200:

€0.12018

€0.10816

≥500:

€0.11350

€0.10215

≥1000:

€0.10682

€0.09614

≥3000:

€0.10015

€0.09013

From: €0.10015

Description: Dual D-Type Flip-Flop Features: - High-speed performance - Low power consumption - Inputs and outputs are TTL compatible - Outputs can be wired ORed Applications: - Frequency dividers -

Stock:10000

Minimo:5

Preferito

DM74ALS74AN

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Used and refurbished parts guaranteed can work well

DM74ALS74AN

DIP-14

National Semiconductor

Dual D Positive-Edge-Triggered Flip-Flops with Preset and Clear; Package: DIP; No of Pins: 14; Container: Rail

Utsource

≥1:

€1.44694

€1.30225

≥5:

€1.08520

€0.97668

≥10:

€0.65112

€0.58601

≥20:

€0.63304

€0.56973

≥50:

€0.61495

€0.55345

≥100:

€0.59686

€0.53718

≥200:

€0.57877

€0.52090

≥500:

€0.57154

€0.51439

≥1000:

€0.56069

€0.50462

From: €0.56069

Stock:10000

Minimo:2

Preferito

SN74LS174NSR

Enlarge

Used and refurbished parts guaranteed can work well

SN74LS174NSR

SOP-16

Texas Instruments

99

HEX/QUADRUPLE D-TYPE FLIP-FLOPS WITH CLEAR

Utsource

≥1:

€1.24023

€1.11621

≥5:

€0.93017

€0.83716

≥10:

€0.55811

€0.50229

≥20:

€0.54260

€0.48834

≥50:

€0.52710

€0.47439

≥100:

€0.51160

€0.46044

≥200:

€0.49609

€0.44648

≥500:

€0.48989

€0.44090

≥1000:

€0.48059

€0.43253

From: €0.48059

Description: Hex D-Type Flip-Flop Features: High-Voltage Types (20V Rating) Input Clamp Diodes Limit High-Level Input Voltage to VCC + 0.5V Outputs Source/Sink 24 mA Output Clamp Diodes Limi

Stock:10000

Minimo:2

Preferito

CD4013BCM

Enlarge

Original parts, guaranteed brand new

CD4013BCM

SOP

FSC

02+

These monolithic, positive-edge-triggered flip-flops utilize TTL circuitry to implement D-type flip-flop logic with an enable input. The 'LS377, 'LS378, and 'LS379 devices are similar to 'LS273, 'LS174, and 'LS175, respectively, but feature a common enable instead of a common clear. Information at the D inputs meeting the setup time requirements is transferred to the Q outputs on the positive-going edge of the clock pulse if the enable input G\ is low. Clock triggering occurs at a particular voltage level and is not directly related to the transition time of the positive-going pulse. When the clock input is at either the high or low level, the D input signal has no effect at the output. The circuits are designed to prevent false clocking by transitions at the G\ input. These flip-flops are guaranteed to respond to clock frequencies ranging from 0 to 30 MHz while maximum clock frequency is typically 40 megahertz. Typical power dissipation is 10 milliwatts per flip-flop.

Utsource Original Store

≥1:

€0.79042

€0.71138

≥5:

€0.59282

€0.53353

≥10:

€0.41497

€0.37347

≥20:

€0.39521

€0.35569

≥50:

€0.35569

€0.32012

≥100:

€0.34581

€0.31123

≥200:

€0.33593

€0.30234

≥500:

€0.32605

€0.29344

≥1000:

€0.31617

€0.28455

From: €0.31617

Description: Dual D-Type Flip-Flop Features: High-Voltage Types (20V Rating) Medium Speed Operation Outputs Source/Sink 24mA Schmitt Trigger Inputs Input Clamping Diodes Standardized Symmetrical

Stock:10000

Minimo:3

Preferito

74ACT11074N

Enlarge

Used and refurbished parts guaranteed can work well

74ACT11074N

DIP-14

Texas Instruments

Utsource

≥1:

€2.58382

€2.32544

≥5:

€2.45463

€2.20916

≥10:

€2.32544

€2.09289

≥20:

€2.26084

€2.03476

≥50:

€2.19625

€1.97662

≥100:

€2.13165

€1.91848

≥200:

€2.06705

€1.86035

≥500:

€2.04122

€1.83709

≥1000:

€2.00246

€1.80221

From: €2.00246

Description: The 74ACT11074N is a high-speed CMOS octal D-type flip-flop with 3-state outputs fabricated with TI's advanced silicon-gate CMOS technology. Features: High-speed performance: tPD = 11.

Stock:10000

Minimo:2

Preferito

74C74

Enlarge

Used and refurbished parts guaranteed can work well

74C74

DIP-14

National Semiconductor

IC FF D-TYPE DUAL DIE

Utsource

≥1:

€0.94851

€0.85366

≥5:

€0.71138

€0.64024

≥10:

€0.49797

€0.44817

≥20:

€0.47425

€0.42683

≥50:

€0.42683

€0.38415

≥100:

€0.41498

€0.37348

≥200:

€0.40311

€0.36280

≥500:

€0.39126

€0.35213

≥1000:

€0.37941

€0.34147

From: €0.37941

The 74C74 is a dual D-type flip-flop with a clock and clear inputs. It is a 14-pin dual in-line package (DIP-14) manufactured by Texas Instruments (TI) and National Semiconductor (NS). Description: T

Stock:10000

Minimo:3

Preferito

MM74HCT574N

Enlarge

Original parts, guaranteed brand new

MM74HCT574N

DIP20

These monolithic, positive-edge-triggered flip-flops utilize TTL circuitry to implement D-type flip-flop logic with an enable input. The 'LS377, 'LS378, and 'LS379 devices are similar to 'LS273, 'LS174, and 'LS175, respectively, but feature a common enable instead of a common clear. Information at the D inputs meeting the setup time requirements is transferred to the Q outputs on the positive-going edge of the clock pulse if the enable input G\ is low. Clock triggering occurs at a particular voltage level and is not directly related to the transition time of the positive-going pulse. When the clock input is at either the high or low level, the D input signal has no effect at the output. The circuits are designed to prevent false clocking by transitions at the G\ input. These flip-flops are guaranteed to respond to clock frequencies ranging from 0 to 30 MHz while maximum clock frequency is typically 40 megahertz. Typical power dissipation is 10 milliwatts per flip-flop.

Utsource Original Store

≥1:

€1.18563

€1.06707

≥5:

€0.79042

€0.71138

≥10:

€0.71138

€0.64024

≥20:

€0.69162

€0.62246

≥50:

€0.67186

€0.60467

≥100:

€0.65210

€0.58689

≥200:

€0.63234

€0.56910

≥500:

€0.62443

€0.56199

≥1000:

€0.61258

€0.55132

From: €0.61258

Stock:10000

Minimo:2

Preferito

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