MOSFETs
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Catalog excerpts

MOSFETs - 1

STORAGE PRODUCTS

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MOSFETs - 2

Toshiba's MOSFETs Meet a Wide Range of Application Needs. Toshiba offers an extensive portfolio of low-VDSS and mid/high-VDSS MOSFETs in various circuit configurations and packages, featuring high speed, high performance, low loss, low on-resistance, small packaging, etc. Toshiba has decades of experience in the development and manufacturing of MOSFETs. Its main products include the mid-to high-voltage DTMOSIV Series with a VDSS of 600 V or so and the low-voltage U-MOSVIII-H Series with a VDSS of 30 V to 250 V. Structures of Toshiba MOSFETs Double-Diffusion Structure Source Toshiba Power...

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High-Speed Series for Switching Power Supply Applications Low-VDSS MOSFETs VDSS =12 V to 250 V High-efficiency MOSFET series for AC-DC and DC-DC power supplies, fabricated using the latest Gen-8 trench-gate process Features and available packages Various power supply topologies and recommended MOSFETs Product lineup Low-On-Resistance Series for Load Switch and Battery Pack Protection Applications Low on-resistance achieved by combining advanced trench-gate process and packaging technologies Features and available packages Product lineup Med-to High-VDSS MOSFETs VDSS = 200 V to 900 V...

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Low-VDSS MOSFETs Applications Toshiba offers U-MOSVIII-H and other series with a VDSS ranging from 12 V to 250 V. These MOSFET series combine advanced trench-gate process and packaging technologies to deliver low on-resistance and high-speed switching. Our product portfolio includes an extensive array of MOSFETs in small packages suitable for various applications. MOSFET Lineup For general specifications of the MOSFETs shown in block diagrams, see the product selection tables on the following pages. Block Diagrams Product Lineups AC-DC power supplies / AC adapters The devices suitable for...

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Power Supply for a Communication Base Station AC-DC Power Supplies Isolated DC-DC Converters Non-Isolated DC-DC Converters Isolated DC-DC Converters Non-Isolated DC-DC Converters Power Supply for a Server Load Switch AC-DC Power Supplies Non-Isolated DC-DC Converters AC-DC Power Supplies Non-Isolated DC-DC Converters Internal Power Supply of a Notebook PC / AC Adapter / Battery Pack Load Switch Non-Isolated DC-DC Converters Non-Isolated DC-DC Converters Charger Non-Isolated DC-DC Converters Non-Isolated DC-DC Converters Non-Isolated DC-DC Converters Battery Pack Lithium-Ion Battery Cell...

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Low-VDSS MOSFETs Applications Power Supply for a Desktop PC AC-DC Power Supplies Non-Isolated DC-DC Converters Non-Isolated DC-DC Converters Load Switch AC Adapter or AC-DC Power Supply Non-Isolated DC-DC Converters Processor Tuner Audio Non-Isolated DC-DC Converters Load Switch Uninterruptible Power Supply (UPS) AC-DC Power Supplies Isolated DC-DC Converters Motor Control

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High-Speed Series for Switching Power Supply Applications U-MOSVIII-H and U-MOSIX-H are high-efficiency MOSFET series specifically designed for use in the secondary side of AC-DC power supplies for notebook PC adapters, game consoles, servers, desktop PCs, flat-panel displays, etc., as well as DC-DC power supplies for communication equipment, servers and data centers. Fabricated with the latest Gen-8 and Gen-9 trench MOS processes, U-MOSVIII-H U-MOSIX-H will help improve the efficiency of power supplies. U-MOSVIII-H and U-MOSIX-H: Latest-generation trench MOS series In order to help improve...

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Low-VDSS MOSFETs Various Power Supply Topologies and Recommended MOSFETs High-Speed Series for Switching Power Supply Applications Non-isolated DC-DC Converters Smartphones and other sophisticated mobile devices, communication equipment and data processing devices contain many DC-DC converters. Although non-isolated DC-DC converter ICs are used for low output power applications, you can not only increase the output power by using discrete MOSFETs but also improve efficiency by combining optimal MOSFETs on the high side and low side. Circuit Configuration Examples Synchronous-rectified...

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Isolated DC-DC Converters Isolated DC-DC converters are widely used for two kinds of applications: 1) applications in which the output circuit must be isolated from the input circuit, and 2) those in which there is a large difference between input and output voltages. Forward, half-bridge and full-bridge DC-DC converters are used according to the required output power. Circuit Configuration Examples Forward Half-Bridge Vout Control Circuit Control Circuit Control Circuit Drive Circuit Drive Circuit Secondary-side switch Primary-side switch High-Speed Switching Secondary-side switch Ron-Crss...

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MOSFETs - 10

Low-VDSS MOSFETs Various Power Supply Topologies and Recommended MOSFETs High-Speed Series for Switching Power Supply Applications AC-DC Converters (Synchronous Rectifier Section) Flyback power supplies have a very simple circuit configuration that consists of a minimal part count. They are suitable for low-power power supplies. Full-bridge power supplies are suitable for relatively high-power power supply applications in the range of 1 kW to 3 kW. * See the section "Mid- to High-VDSS MOSFETs" on pages 22 to 27 for a description and a list of MOSFETs for primary-side switching and PFC...

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Product Lineup High-Speed Series for Switching Power Supply Applications Semi-Power P-Channel Single MOSFETs High-speed switching Load Switches Unit: mm Part Number RDS(ON) Max (m ) lVGSl = lVGSl = lVGSl = 1.5 V 1.8 V 2.5 V *Internal Connections Land Pattern Example 0.5 U-MOSVI U-MOSVI U-MOSVI U-MOSVI U-MOSVI U-MOSII U-MOSVI U-MOSVI U-MOSVI U-MOSVI U-MOSVI U-MOSII U-MOSII U-MOSII * The internal connection diagrams only show the general configurations of the circuits. Note: For reference only. Land pattern dimensions should be determined empirically. *: New Products **: Under Development

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Low-VDSS MOSFETs Product Lineup High-Speed Series for Switching Power Supply Applications Semi-Power N-Channel Single MOSFETs High-speed switching Load Switches Unit: mm Land Pattern Example 0.5 Part Number * The internal connection diagrams only show the general configurations of the circuits. Note: For reference only. Land pattern dimensions should be determined empirically. **: Under Development

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