Детали новости

30V N-Channel Common-Drain Dual Mosfet

28/11/2023

SSM10N961L Drain Dual Mosfet

Toshiba has recently launched its first 30V n-channel common-drain dual mosfet, designed to control the bi-directional power flow in USB-connected devices. With the wide range of power levels (from 5V 3A to 48V 5A) supported by the USB Power Delivery standard, bi-directional power flow is essential in devices that require USB charging.

The development of the SSM10N961L, a 30V common drain mosfet, allows Toshiba to aim at rails frequently found in laptops and tablets, an area where they are already producing similar 12V dual mosfets for Li-ion battery packs.

The new part has a source-source (through both mosfets) on-resistance of 9.9mΩ and can handle up to 9A when mounted on an 18µm 407mm2 (~20mm square) copper pad. Additionally, the new mosfet can handle up to 14A on a 70µm 687.5mm2 (~26mm) pad. The resistance for this new part is with 10V on the gates and increases to 13.6mΩ (17.6mΩ max) at 4.5V.

To implement a load switch with a back-flow prevention or a power multiplexer, Toshiba has developed the TCK42xG family of dual gate driver ICs. Furthermore, they created a 20 x 20mm power multiplexer evaluation board ('RD221B Mux6') that switches 3A between 20V and 9V inputs and an output, with a choice of break-before-make and make-before-break operation.

Overall, this new product launch from Toshiba will provide reliable and efficient power control solutions for USB-connected devices, contributing to the growing demand for high-performance components in the electronics industry.

SSM10N961L

Теги

перекрестные новости

1. Chinese 5G Networks: Pervasive Coverage and Integr...

Chinese 5G Networks: Pervasive Coverage and Integration into Various Industries

2. Infineon Ventures into Trapped Ion Quantum Computi...

Infineon Ventures into Trapped Ion Quantum Computing Processor Manufacturing

3. Nano Arduino integrates ESP32 processor with Wi-Fi...

Nano Arduino integrates ESP32 processor with Wi-Fi and Bluetooth capabilities

4. Understanding Reference Designators: What They Are...

Understanding Reference Designators: What They Are and Why They Matter

5. PWB vs PCB: Understanding the Difference

PWB vs PCB: Understanding the Difference

6. Phisat-2: Revolutionizing Earth Observation with AI

Phisat-2: Revolutionizing Earth Observation with AI

7. The Soviet Union's Rise in Microelectronics in the...

The Soviet Union's Rise in Microelectronics in the 1960s

8. Global Semiconductor Partnership between US and Vi...

Global Semiconductor Partnership between US and Vietnam

9. Where to Buy Electronic Parts?

Where to Buy Electronic Parts?

10. Korean Semiconductor Production and Economy Soar i...

Korean Semiconductor Production and Economy Soar in November