Microchip TC4427MJA Low Side Gate Driver 1, 1.5 A 8-Pin 18 V, 8-Pin MSOP/PDIP/SOIC

Sous-total (1 tube de 56 unités)*

1 367,632 €

(TVA exclue)

1 654,856 €

(TVA incluse)

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  • Expédition à partir du 08 juin 2026
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Unité
Prix par unité
le tube*
56 +24,422 €1 367,63 €

*Prix donné à titre indicatif

N° de stock RS:
598-717
Référence fabricant:
TC4427MJA
Fabricant:
Microchip
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Marque

Microchip

Product Type

Gate Driver

Output Current

1.5A

Pin Count

8

Fall Time

25ns

Package Type

8-Pin MSOP/PDIP/SOIC

Driver Type

Low Side

Rise Time

25ns

Minimum Supply Voltage

4.5V

Maximum Supply Voltage

18V

Number of Drivers

1

Minimum Operating Temperature

-40°C

Maximum Operating Temperature

85°C

Width

4.90 mm

Height

1.1mm

Series

TC442

Standards/Approvals

No

Automotive Standard

No

Pays d'origine :
TH
The Microchip High speed dual buffer/driver takes your digital design to new heights, boasting outstanding performance and versatility. Designed for driving capacitive loads, it effectively reduces signal degradation over long distances. The integrated low-output impedance allows for faster switching, ideal for interfacing with various logic families. A robust construction ensures reliability, making it a perfect choice for both amateur projects and professional applications. With its compact package, this buffer/driver enhances your design's efficiency while occupying minimal board space. The reduced propagation delay enhances the overall speed of your application, facilitating seamless operation even in complex circuits. This device exemplifies remarkable efficiency, leading to improved system reliability and reduced power consumption.

Designed for improved signal integrity across long distances

Enables rapid switching to accommodate high-speed applications

Low-output impedance enhances driving capacity

Ideal for interfacing with multiple logic families

Compact design reduces space on PCB while maintaining performance

Robust construction ensures durability in diverse operating conditions

Effective in driving capacitive loads with minimal signal loss

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