UMW IRF7403TR(UMW) for sale
UMW IRF7403TR(UMW) for sale

UMW IRF7403TR(UMW)

Manufacturer: UMW Asian Brands
Mfr. Part #: IRF7403TR(UMW)
Package: SOP-8
Customer #:
Key Attributes: MOSFET N-CH 30V 8.5A SOP-8
Description: N-Channel 30V 8.5A 2.5W Surface Mount SOP-8
Products Specifications
Manufacturer:
Package:
SOP-8
Drain to Source Voltage:
30V
Current - Continuous Drain(Id):
8.5A
Operating Temperature -:
-55℃~+150℃
RDS(on):
22mΩ@10V;35mΩ@4.5V
Gate Threshold Voltage (Vgs(th)):
1V@250uA
Type:
N-Channel
Reverse Transfer Capacitance (Crss@Vds):
160pF
Number:
1 N-channel
Output Capacitance(Coss):
450pF
Input Capacitance(Ciss):
1.2nF
Pd - Power Dissipation:
2.5W
Gate Charge(Qg):
57nC

Additional Information

Type Details
Minimum 5
Multiple 5
Standard Packaging 3000
Sales Unit Piece

About Product

UMW IRF7403TR(UMW) UMW IRF7403TR(UMW) UMW IRF7403TR(UMW) UMW IRF7403TR(UMW) UMW IRF7403TR(UMW) UMW IRF7403TR(UMW) UMW IRF7403TR(UMW) UMW IRF7403TR(UMW) UMW IRF7403TR(UMW) UMW IRF7403TR(UMW)
Get Best Price
svg
Inquiry
Negotiate
Payment
Shipping
UMW
1816 Products
Authorised Brand Asian Brand
Guangdong Youtai Semiconductor Co., Ltd. (hereafter referred to as "UMW") was established in 2013. It is a high-tech enterprise that integrates R&D, design, packaging, and manufacturing of integrated circuits and discrete devices. UMW has passed the ISO9001:2015 quality management system certification, and its products have received UL, CQC, and SGS certifications. UMW is known for its commitment to high-end quality and has earned a strong reputation in markets. Its product lines include power management ICs, low-power LDOs, three-terminal voltage regulators, MOSFETs, optocouplers, rectifier bridges, and logic circuits. These products are widely used in power supplies, instruments, home appliances, communication equipment, automotive electronics, and industrial automation. The company is dedicated to the sustainable development of the semiconductor industry, leveraging its expertise in high technology to provide top-quality products and system solutions. UMW aims to contribute to a har