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Introducing a Wide Portfolio of IGBT 7 Power Devices Optimized for Applications Across Sustainability, E-Mobility and Data Centers
Microchip’s IGBT 7 portfolio is available with multiple topologies, current and voltage ranges

Power components are evolving to meet the increasing demands for higher efficiency, smaller size and greater performance in power electronic systems. To provide system designers with a wide range of power solutions, Microchip Technology (Nasdaq: MCHP) today announces its portfolio of IGBT 7 devices offered in different packages, multiple topologies, and current and voltage ranges.

Featuring increased power capability, lower power losses and compact device sizes, this new portfolio is designed to meet high-growth market segments such as sustainability, E-Mobility and data centers. These high-performance IGBT 7 devices are key building blocks for power applications in solar inverters, hydrogen ecosystems, commercial and agricultural vehicles and More Electric Aircraft (MEA).

Designers can select a suitable power solution based on their requirements. The IGBT 7 devices are offered in standard D3 and D4 62 mm packages, as well as SP6C, SP1F and SP6LI packages. Many configurations are available in the following topologies: three-level Neutral-Point Clamped (NPC), three-phase bridge, boost chopper, buck chopper, dual-common source, full-bridge, phase leg, single switch and T-type. Devices are available with voltages ranging from 1200V to 1700V and current ranging from 50A to 900A.

“The versatile IGBT 7 portfolio combines ease of use and cost efficiency with higher power density and reliability, offering our customers maximum flexibility. These products are designed for general industrial applications as well as specialized aerospace and defense applications,” said Leon Gross, corporate vice president of Microchip’s discrete product group. “Additionally, our power solutions can be integrated with Microchip’s broad range of FPGAs, microcontrollers (MCUs), microprocessors (MPUs), dsPiC® Digital Signal Controllers (DSCs) and analog devices to provide a comprehensive system solution from one supplier.”

The lower on-state IGBT voltage (Vce), improved antiparallel diode (lower Vf) and increased current capability can enable lower power losses, higher power density and higher system efficiency. The lower-inductance packages, combined with the higher overload capability at Tvj −175°C, make these devices excellent options for creating rugged and high-reliability aviation and defense applications—such as propulsion, actuation and power distribution—at a lower system cost.

For motor control applications where enhanced controllability of dv/dt is important, the IGBT 7 devices are designed to offer freewheeling softness for efficient, smooth and optimized driving of switches. These high-performance devices also aim to improve system reliability, reduce EMI and minimize voltage spikes.

Microchip offers a broad portfolio of power management solutions that includes analog devices, Silicon (Si) and Silicon Carbide (SiC) power technologies, dsPIC Digital Signal Controllers (DCSs), and standard, modified and custom power modules. For more information about Microchip’s power products, visit the website.

Pricing and Availability

The variants of the IGBT 7 portfolio are available to purchase in production quantities. For additional information and to purchase, contact a Microchip sales representative, authorized worldwide distributor or visit Microchip’s Purchasing and Client Services website, www.microchipdirect.com.

2024112902 / 29.11.2024 / Electronic-components / Microchip Technology Inc. /

Introducing a Wide Portfolio of IGBT 7 Power Devices Optimized for Applications Across Sustainability, E-Mobility and Data Centers
Microchip’s IGBT 7 portfolio is available with multiple topologies, current and voltage ranges

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New VelocityDRIVE™ Software Platform and Automotive-Qualified Multi-Gigabit Ethernet Switches for Software-Defined Vehicles

New Family of Voltage-Controlled Saw Oscillators With Ultra-Low Phase Noise Performance for Radar Applications
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New Solution from Microchip Makes it Easier to Build Sophisticated Graphical User Interfaces for MPLAB® Harmony v3 and Linux® Environments

Functional Safety Certification for Microchip’s PolarFire® FPGAs Speeds Time to Market
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Expanded Single Pair Ethernet Portfolio with 100BASE-T1 and 1000BASE-T1 PHY Transceivers for Network Interoperability
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Microchip Technology Adds ECC20x and SHA10x Families of Secure Authentication ICs to TrustFLEX Platform
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Microchip and Acacia Collaborate to Enable Optimized Terabit-Scale Data Center Interconnect Systems
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Pick Your Power with Microchip’s New Electric Vehicle Charger Reference Designs
Flexible and scalable EV charger reference designs are designed to meet unique regional requirements

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