TC427VPAG

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Mfr.Part #
TC427VPAG
Manufacturer
Microchip Technology
Package / Case
8-DIP (0.300, 7.62mm)
Datasheet
Download
Description
IC GATE DRVR LOW-SIDE 8DIP
Stock
19,995
In Stock :
19,995

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Manufacturer :
Microchip Technology
Product Category :
Gate Drivers
RoHS :
Compliant
Gate Type :
N-Channel, P-Channel MOSFET
RoHS Status :
ROHS3 Compliant
Product Status :
Obsolete
Number of Pins :
8
Max Operating Temperature :
125°C
Min Operating Temperature :
-40°C
Published :
2002
Package :
Tube
Supplier Device Package :
8-PDIP
Series :
--
Number of Outputs :
2
Number of Drivers :
2
Moisture Sensitivity Level (MSL) :
1 (Unlimited)
Max Supply Voltage :
16V
Max Power Dissipation :
730mW
Voltage - Supply :
4.5V~18V
Lead Free :
Lead Free
Package / Case :
8-DIP (0.300, 7.62mm)
Mounting Type :
Through Hole
Channel Type :
Independent
Mount :
Through Hole
Voltage :
18V
Rise / Fall Time (Typ) :
30ns 30ns
Fall Time (Typ) :
30 ns
Min Supply Voltage :
4.5V
Packaging :
Tube
Input Type :
Non-Inverting
Base Product Number :
TC427
Driven Configuration :
Low-Side
Nominal Supply Current :
8mA
Rise Time :
30ns
Current - Peak Output (Source, Sink) :
1.5A 1.5A
Operating Temperature :
-40°C~125°C TA
Base Part Number :
TC427
Logic Voltage - VIL, VIH :
0.8V 2.4V
Datasheets
TC427VPAG
Introducing Gate Drivers Microchip Technology TC427VPAG from Chip IC,where excellence meets affordability. This product stands out with its Number of Pins:8, Package / Case:8-DIP (0.300, 7.62mm), Mounting Type:Through Hole, Voltage:18V, Operating Temperature:-40°C~125°C TA, Base Part Number:TC427, TC427VPAG pinout, TC427VPAG datasheet PDF, TC427VPAG amp .Beyond Gate Drivers Microchip Technology TC427VPAG ,we also offer FAN3180TSX, DGD2104MS8-13, IRS2005STRPBF, Our vast inventory has you covered. Contact us now for immediate solutions.

Microchip Technology TC427VPAG


Gate Drivers Microchip Technology TC427VPAG Overview

Introducing the TC427VPAG from Microchip Technology, a standout in the field of low-side gate drivers designed to cater to the demanding needs of modern circuit designs. This robust 8-pin DIP device is engineered to facilitate efficient switching of MOSFETs and IGBTs, enhancing system reliability and performance. Its ability to drive gates with precision and speed makes it an indispensable component in a wide range of applications, supporting the development of more compact and energy-efficient electronic solutions. With its focus on reducing electromagnetic interference (EMI) and optimizing power usage, the TC427VPAG stands as a key enabler in the advancement of power management technologies.

TC427VPAG Features

The TC427VPAG gate driver includes several key features that make it particularly suitable for high-performance applications. These include dual outputs that allow for greater flexibility in control and design, a wide operating voltage range from 4.5V to 18V, and high peak output current capability of up to 1.5A per channel. Additionally, its robust design ensures reliability under varying operational conditions, providing both high-speed operation and protection features such as thermal shutdown and matched rise and fall times to minimize cross-conduction.

TC427VPAG Applications

  • Motor Control Systems: Utilized in driving low-side MOSFETs and IGBTs in motor control circuits, the TC427VPAG improves efficiency and response times in applications such as electric vehicle drivetrains and industrial automation systems.
  • Power Supply Modules: In power supplies, this gate driver ensures stable and efficient operation of switching elements, leading to enhanced power density and reduced heat generation in applications like server power supplies and telecommunications.
  • LED Lighting: The TC427VPAG is instrumental in driving MOSFETs for LED dimming circuits, where precise control over lighting levels is crucial, particularly in architectural and stage lighting.
  • Solar Inverters: By managing the power switching in solar inverters, this gate driver plays a vital role in maximizing efficiency and reliability, essential for renewable energy systems.
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