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安森美先进的充电、能源管理、电机控制和辅助系统解决方案,为可扩展的电动/混合动力总成提供动力,为所有电压域的现代电动汽车架构进行优化。
电动/混合动力总成解决方案正在重塑未来的交通出行,为各种应用提供更清洁、更高效和多功能的运载工具。我们在此为您汇集了先进汽车电气化的所有基本元素,包括车载充电机(OBC)、牵引逆变器、MHEV启动发电机、DC-DC转换器和电动汽车辅助系统。无论您是设计电池电动汽车(BEV)、插电式混合动力汽车(PHEV)还是轻度混合动力汽车 (MHEV),安森美的资源都能支持可扩展的电源架构和无缝的系统集成。
查看我们本页集合的资源,了解如何在高/低压域优化能源管理、再生制动和电力驱动性能。探索电源转换、热管理和功能安全的最佳实践,确保可靠运行并符合汽车级标准。我们以应用为导向的系统解决方案指南、交互式框图和自助工具帮助工程师根据不断变化的市场需求进行设计、模拟和验证,开发出强大的电动解决方案。
从充电基础设施到先进的电机控制和辅助动力,电动和混合动力总成平台为加速可持续交通的创新提供了专业知识和灵活设计空间。利用我们成熟的解决方案,为汽车电气化的每个阶段提供支持,助您满怀信心地打造下一代汽车。
Our SiC MOSFETs are designed to be fast and rugged and include system benefits from high efficiency to reduced system size and cost. MOSFETs are metal–oxide–semiconductor field-effect transistors with insulated gates. These silicon carbide MOSFETs have a higher blocking voltage and higher thermal conductivity than silicon MOSFETs, despite having similar design elements. SiC power devices also have a lower state resistance and 10 times the breakdown strength of regular silicon. In general, Systems with SiC MOSFETs have better performance and increased efficiency when compared to MOSFETs made with silicon material.
There are many advantages to choosing SiC MOSFETs over silicon MOSFETs, such as higher switching frequencies. High-temperature development is also not a concern when using SiC MOSFET modules because these devices can operate efficiently even in high heat. Additionally, with SiC MOSFETs, you benefit from a more compact product size because all components (inductors, filters, etc.) are smaller.
SiC Modules contain SiC MOSFETs and SiC diodes. The boost modules are used in the DC-DC stages of solar inverters. These modules use SiC MOSFETs and SiC diodes with voltage ratings of 1200V.
A Silicon Carbide (SiC) Module is a power module that operates with Silicon Carbide semiconductors for its switch. The purpose of a SiC power module is the transformation of electrical power through switches to improve system efficiency.
The primary function of SiC Modules is to transform electrical power. Silicon Carbide offers an advantage over silicon because, with less resistance to move away from the source (due to increased efficiency), SiC devices can operate at a higher switching frequency. A SiC based system is also more compact and lightweight than a silicon solution, allowing for smaller designs. Therefore, SiC devices are the ideal solution for situations where you want to increase efficiency and improve your thermal management.
Improve thermal performance, power density and switching efficiency with top-cooled T2PAK SiC packages designed for high-voltage automotive applications.
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