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Diodes has launched the industry's leading 100V PowerDI 8080-5 package MOSFET

Diodes Corporation (Nasdaq: DIOD) has launched the industry's leading ultra-low RDS (ON) 100V MOSFET, expanding its PowerDI8080-5 automotive-grade *N-channel MOSFET product lineup. Alongside the new 40V to 80V MOSFETs, all 8mm x 8mm seagull-wing leaded devices are designed to minimize on-state losses, reduce heat generation, and enhance overall efficiency. Their applications cover brushless DC (BLDC) and DC-DC conversion systems in battery electric vehicles (BEV), hybrid electric vehicles (HEV), and internal combustion engine (ICE) platforms. 

Engineers can utilize the rated voltage of 100V DMTH10H1M7SPGWQ with a maximum RDS(ON) of 1.5mΩ for 48V brushless DC (BLDC) motor drive applications, such as power steering and braking systems. Other high-power applications include battery disconnect switches and on-board chargers (OBC). Designers can also choose the DMTH81M2SPGWQ with a rated voltage of 80V. 

The maximum RDS (ON) of the 40V rated DMTH4M40SPGWQ is 0.4mΩ, which is at the industry-leading level and is suitable for 12V brushless DC (BLDC) motors and DC-DC applications. The 40V rated logic-type MOSFET DMTH4M40LPGWQ can provide as low as 0.64mΩ of RDS (ON) when the gate-source voltage (VGS) is 4.5V, suitable for low-voltage, microcontroller-driven automotive applications such as actuator/fan control and load switches, without sacrificing on conduction loss. The 60V rated DMTH6M70SPGWQ offers high-performance for 24V applications. 

The PCB of the PowerDI8080-5 package has a board area of only 64mm², which is approximately 40% of the area of the traditional TO-263 (D2PAK) package. Moreover, the package height is only 1.7mm, making it highly suitable for applications with small board areas. Additionally, the copper clip chip bonding technology can minimize the thermal resistance (RthJC) to a minimum of 0.3°C/W, allowing the drain current to reach up to 847A without any risk of damage. The seagull wing lead structure facilitates automatic optical inspection (AOI) and enhances temperature cycling reliability, supporting robust automotive manufacturing processes. 

An approved standard version is also provided, suitable for industrial and commercial applications.