文章和博客

Image of Dedicated Power Solutions that Support Type CF Applications Dedicated Power Solutions that Support Type CF Applications

Discover Advanced Energy power supplies for cardiac floating (Type CF) applications where there is no margin for electrical risk.

Image of Protect Unmated DC Power Inputs with IP68 Sealed Barrel Jacks Protect Unmated DC Power Inputs with IP68 Sealed Barrel Jacks 发布日期:2026-05-06

Designers can keep electronic equipment safe by using sealed DC power barrel jacks that deliver IP68 protection even when unmated.

Common types of power supplies and design considerations-240x160 常见的电源的种类与设计的注意事项 发布日期:2026-05-05

电源作为各类电子系统的核心,其性能与设计质量直接影响整体设备的稳定性与可靠性。随着应用场景的多元化,电源的种类也呈现丰富的发展,例如AC/DC开关电源、DC/DC转换器、DC/AC逆变器以及AC/AC转换器等。在电源设计过程中,除了要根据实际应用选择合适的拓扑结构与元器件外,还必须充分考虑散热设计、电磁兼容性等要素,才能实现符合应用需求的电源解决方案。

Image of Simple, They’re Not: Datacenter Power Supplies Rely on Advanced High-Current Inductors Simple, They’re Not: Datacenter Power Supplies Rely on Advanced High-Current Inductors

Use low-loss inductors with advanced materials in a compact form factor to meet the high-power requirements of datacenters.

Image of Data Center Critical Power Efficiency Needs 数据中心的关键电源效率需求

探索数据中心电源效率的关键重要性,以及 TI 解决方案如何满足日益增长的需求并提高运行性能。

Image of Latching SSRs Simplify Thermostat, HVAC, Security, and Alarm-Panel Contact Switching Designs 锁存型 SSR 简化了恒温器、HVAC、安防及报警面板的触点开关设计 发布日期:2026-04-28

多功能固态继电器可切换和锁定恒温器、暖通空调系统、火警面板、安防系统和楼宇自动化中的低功率信号。

Image of Power Resistor Selection Tips for Industrial Motor Drives 工业电机驱动器功率电阻器选型技巧 发布日期:2026-04-22

了解经过精心挑选的功率电阻器如何利用专门的架构解决工业电机驱动器中的浪涌、制动和热挑战。

Four design techniques for common TL431 circuits-240x160 四种TL431常用电路的设计技巧 发布日期:2026-04-20

TL431是一款常用的可调式精密参考电压源/可编程齐纳二极管,被广泛应用于电源设计中。它的主要功能是担任精密参考电压源,内部提供2.495V(典型值)的参考电压,具有高稳定性与低温漂特性,也可作为可调式齐纳二极管,可通过外部电阻分压设定输出电压,可调整范围约为2.5V~36V。

Image of Webinar – Technologies Driving Drones, Autonomy, and eVTOL 网络研讨会 - 驱动无人机、自主系统与 eVTOL 的技术

此次网络研讨会介绍 Schneider Electric 的 Altivar™ ATV320 变频器如何帮助客户解决电机控制难题。

Image of Selecting Power Supplies for Harsh Industrial Applications and Hazardous Locations 为苛刻的工业应用和危险场所选择电源 发布日期:2026-04-16

面向恶劣环境及潜在爆炸性环境的工业系统设计人员,必须选用以可靠性与安全性为首选指标的工业电源。

Image of Optimize High-Current Buck-Boost DC/DC Converter Efficiency 优化大电流降压-升压 DC/DC 转换器效率 发布日期:2026-04-15

利用 µModule 降压-升压稳压器,采用三种架构方案集成电感器与电流检测功能,以实现大电流 DC/DC 转换。

Image of Webinar – Topology is Just the Start: Building Reliable Wide-Input SEPIC Converters 网络研讨会 - 拓扑仅是起点:构建可靠的宽输入 SEPIC 转换器

通过选择 SEPIC 拓扑结构,深入理解元器件特性、电气应力及实际设计限制,从而实现稳健且适合量产的设计。

Image of Webinar – Driving Cost Efficiency for OEMs and Panel Builders with the ATV320 网络研讨会 - ATV320 助力 OEM 和盘柜制造商提高成本效益

本网络研讨会介绍 Schneider Electric 的 Altivar™ ATV320 变频器如何帮助客户解决电机控制难题。

Power supply circuit design examples and key technical specifications-240x160 电源电路的设计实例与关键技术指标 发布日期:2026-04-08

电源是所有电子产品的核心基础元器件之一,它的主要功能是将外部输入的能源(如交流电、直流电或电池储能)转换为电子系统所需的稳定电压与电流。稳定而高效的电源设计,不仅能确保系统的正常运作,还能提升整体性能与可靠性,并延长产品寿命,电源技术的演进,往往也是推动电子产品性能突破与应用创新的关键。

Image of DC/DC Converters for AI Data Centers: Tackling Space and Thermal Challenges 用于 AI 数据中心的 DC/DC 转换器:应对空间和散热挑战

AI 数据中心 GPU 的单台功率已超过 1 千瓦,导致机柜功率密度达到兆瓦级,对冷却方案造成的压力已超过舒适范围。

Image of Power Distribution Boards: Smart Alternative to Relays Power Distribution Boards: Smart Alternative to Relays

This blog will talk about the core concepts and the theory behind the circuit schematic and how it was approached.

Image of Webinar – Seven Reasons to Move from 12 V to 48 V Today 网络研讨会 - 立即从 12 V 转换到 48 V 电压的七个理由

讨论 48 V 成为主流供电网络的原因,以及模块化电源解决方案如何加快并简化转换。

Image of Intelligent energy management for Industry 4.0: UPS systems that think ahead Intelligent energy management for Industry 4.0: UPS systems that think ahead eMagazine Articles

Power events can cause big headaches in manufacturing environments where systems must run continuously.

Image of How Eaton’s easyE4 Nano PLC powers connected smart manufacturing How Eaton’s easyE4 Nano PLC powers connected smart manufacturing eMagazine Articles

PLCs, relays, and timers were engineered to perform deterministic logic by scanning inputs, processing logic, and driving outputs.

Skills of overvoltage protection circuit design-240x160 过压保护电路设计技巧大揭密 发布日期:2026-03-06

电路中的过压指的是电压超过设计范围的情况,这种异常可能导致电子元器件损坏、系统故障或安全事故,因此,了解其成因与对策,对于电路设计与保护非常关键。常见的过压保护电路包括PNP三极管加PNP三极管、LM393加继电器,以及TVS二极管过压保护电路等。