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    onsemi solid-state transformer concept for 800 V HVDC AI data center power conversion with SiC modules, DC-link capacitors and high-frequency magnetics

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    onsemi solid-state transformer concept for 800 V HVDC AI data center power conversion with SiC modules, DC-link capacitors and high-frequency magnetics

    Solid-State Transformers for 800 V AI Data Centers: Passive Component Design Considerations

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Capacitor Markets In Battery Electric Vehicles 2021-2026

24.5.2021
Reading Time: 4 mins read
A A

Paumanok Publications, Inc. announces the publication of “Capacitors in Battery Electric Vehicles (BEV): World Markets, Technologies & Opportunities: FY 2021-2026” Which takes a deep dive look at capacitor consumption in battery electric vehicles and forecasts global consumption value and volume to FY 2026.

The study takes a detailed look at capacitor consumption in BEV propulsion systems and offers models for growth in this net new market for capacitors. The study offers a detailed analysis of each type of capacitor being consumed in five key sub-assemblies, including BEV OnBoard Charger, Wireless Charger, Inverter, Converter and Battery Management System. The study offers a detailed analysis of demand for capacitors in battery electric vehicles by type with emphasis upon AEC-Q200 qualified Solid Polymer Aluminum, Solid Polymer Tantalum, Metallized Polypropylene Film, Polyphenelyne Sulfide Film, Polyethylene Napthalate Film, Niobium Oxide, Paper Capacitors and High Voltage MLCC with Polymer Terminations and Open Mode Bodies.

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The study shows comparative technical drivers for each type of capacitor consumed in BEV Propulsion, including fire safety, volumetric efficiency, voltage, temperature, capacitance and circuit function; focusing on power supply input and output filtering and X and Y Safety Capacitors.

Paumanok offers detailed five year forecasts for consumption of capacitors in Battery Electric Vehicles and considers new architectures based upon solid state battery technology and silicon carbide semiconductors impacting the requirements of capacitors. The study offers year by year forecasts for capacitor consumption in battery electric vehicles by capacitor type in terms of value, volume and pricing. Paumanok offers aggressive price reduction forecasts based upon expected volumes of consumption, changing battery and semiconductor technologies over the next five years. Detailed competitive analysis and strategy is offered for all major vendors of capacitors for battery electric vehicles. Paumanok offers detailed value, volume and pricing forecasts for capacitors consumed in BEV propulsion based upon technology needs in terms of voltage, temperature and capacitance from 20231 to 2026-

Capacitor Products Covered

  • Ceramic Electrostatic (MLCC and SLC)
  • Aluminum Electrolytic
  • Tantalum Electrolytic
  • Plastic Film Electrostatic
  • Niobium Oxide Electrolytic
  • Paper Electrostatic
  • Carbon Electrolytic

Key Product Lines for BEV Covered

  • High Voltage, Large Case Size MLCC With Flexible Terminations (Open Mode)
  • High Voltage Single Layered Ceramic Capacitors
  • Solid Polymer Aluminum V-Chip
  • Solid Polymer Tantalum Molded and Coated Chip
  • Radial Leaded Metallized Polypropylene Plastic Film Capacitors
  • PPS Film Chip Capacitors
  • HV PEN Film Chip Capacitors
  • Niobium Oxide Molded Chip Capacitors
  • Axial Leaded Paper Dielectric Capacitors

Key BEV Sub-Assembly Markets Investigated

  • OnBoard Charger
  • Wireless Charger
  • DC/DC Converter
  • Inverter
  • Battery Management System

Key Capacitor Technology Trends and Directions

  • Operating Temperatures
  • Operating Voltages
  • Capacitance Values
  • Parallel and Series Placement
  • Ripple Current
  • Polymer Cathodes
  • Polymer Terminations
  • Fire Safety

Detailed Five Year Forecasts

  • BEV Production Forecasts
  • BEV Production Forecasts by Manufacturer
  • Capacitor Contents in Key Subassemblies
  • Capacitor Requirements for Charging: FY 2021-2026
  • Capacitor Requirements for Inverter: FY 2021-2026
  • Capacitor Requirements for Converter: FY 2021-2026
  • Capacitor Requirements for Battery Management System: FY 2021-2026
  • Changing Capacitor Requirements Because of SiC Technology
  • Changing Capacitor Requirements Because of Solid State Battery technology: FY 2021-2026
  • Aggressive Capacitor Volume Forecasts by Type: FY 2021-2026
  • Aggressive Capacitor Price Reduction Forecasts by Type: FY 2021-2026
  • Aggressive Capacitor Value Forecasts for BEV: FY 2021-2026

Complete Analysis of All Capacitor Vendors for BEV by Type:

  • Capxon International
  • Holystone Enterprise
  • Johanson Dielectrics
  • Knowles Precision
  • Kyocera Corporation
  • Matsuo Electric
  • Murata Manufacturing (And JV With Shizuki)
  • Nantong Jianghai
  • Nichicon Corporation
  • Nippon Chemi-Con
  • Panasonic Industrial
  • Rohm Company
  • Rubycon Corporation
  • Samsung EMCO
  • Taitsu Corp.
  • TDK Corporation
  • Vishay Intertechnology
  • WIMA
  • Yageo Corporation

Published – April 2021

229 Pages

97 Figures, Tables and Graphs

Check Price & Order

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