DiodesZetex DMP6023LFG P-Channel MOSFET, -10.3 A, -60 V Enhancement, 8-Pin PowerDI3333-8 DMP6023LFG-7

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Subtotal (1 reel of 2000 units)*

MYR4,936.00

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Units
Per Unit
Per Reel*
2000 +MYR2.468MYR4,936.00

*price indicative

RS Stock No.:
719-494
Mfr. Part No.:
DMP6023LFG-7
Manufacturer:
DiodesZetex
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Brand

DiodesZetex

Channel Type

P-Channel

Product Type

MOSFET

Maximum Continuous Drain Current Id

-10.3A

Maximum Drain Source Voltage Vds

-60V

Package Type

PowerDI3333-8

Series

DMP6023LFG

Mount Type

Surface Mount

Pin Count

8

Maximum Drain Source Resistance Rds

33mΩ

Channel Mode

Enhancement

Typical Gate Charge Qg @ Vgs

53.1nC

Maximum Gate Source Voltage Vgs

20 V

Forward Voltage Vf

-1.2V

Maximum Power Dissipation Pd

2.1W

Minimum Operating Temperature

-50°C

Maximum Operating Temperature

150°C

Width

3.35 mm

Height

0.85mm

Length

3.35mm

Automotive Standard

AEC-Q101

COO (Country of Origin):
CN
The DiodesZetex P Channel enhancement mode MOSFET, specifically designed to deliver optimal efficiency in power management applications. This device features exceptional low on-state resistance, ensuring minimal power loss during operation. It is housed in a Compact POWERDI 3333-8 package, which not only optimises thermal management but also significantly reduces the footprint on printed circuit boards, facilitating smaller and more efficient end products. Designed with superior switching performance in mind, it meets the stringent requirements of automotive and industrial applications by providing reliability and durability, thus making it an Ideal choice for engineers needing effective power handling solutions.

Low RDS(ON) ensures on-state losses are minimised for improved efficiency

Qualified to AEC-Q101 standards, ensuring reliability in demanding environments

Maintains superior switching performance for effective power management

Supports a continuous drain current of -7.7A at +25°C, catering to a wide range of applications

Complete with multiple packaging options for flexibility in application integration

Low thermal resistance junction-to-ambient promotes excellent heat dissipation

Ideal for automotive and high-reliability applications, reinforcing performance and safety

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