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功率器件技术 功率模块 ★ 4.0

基于磁场测量的功率模块键合线脱落在线状态监测

Online Condition Monitoring of Bonding Wires Lift-Off in Power Modules Based on Magnetic Field Measurement

作者 Weili Guo · Guochun Xiao · Laili Wang
期刊 IEEE Transactions on Power Electronics
出版日期 2024年11月
技术分类 功率器件技术
技术标签 功率模块
相关度评分 ★★★★ 4.0 / 5.0
关键词 功率模块 键合线 健康监测 磁场传感器 温度补偿
语言:

中文摘要

摘要:近年来,引线键合型功率模块是应用最为广泛的功率半导体模块封装形式之一,而键合线是这类模块中最薄弱的环节之一。在功率循环和温度波动的长期作用下,应力和应变会使键合线容易出现裂纹,最终导致断裂或脱焊,从而影响功率模块的可靠性。因此,监测功率模块的健康状态至关重要。本文提出了一种利用单轴磁场传感器实时监测键合线脱焊的方法。文章首先对功率模块键合线附近的磁场进行了分析,指出键合线脱焊时磁场会发生变化。其次,采用有限元方法对磁场进行仿真,确定了键合线脱焊时磁场变化率最大的区域,并将磁场传感器放置在该区域以实现最高的监测灵敏度。此外,通过采用温度补偿方法,降低了因温度变化导致的磁场传感器灵敏度变化。该方法将温度变化引起的灵敏度偏差从约 30%降低到了 1%以下。在实验中,对两种类型的功率半导体模块的键合线进行了监测。以磁场与电流之比偏差±5%为标准,能够准确检测到键合线脱焊的发生。

English Abstract

Wire-bonding type power modules are among the most widely used power semiconductor module packages in recent years, with bonding wires being one of the weakest links in these modules. Under the long-term effects of power cycling and temperature fluctuations, stress and strain make bonding wires prone to cracking, eventually leading to breakage or detachment, which affects the reliability of power modules. Therefore, monitoring the health condition of power modules is crucial. This article proposes a method for real-time monitoring of bonding wire lift-off using a single-axis magnetic field sensor. The article first analyzes the magnetic field near the bonding wires of the power module, indicating that the magnetic field changes when bonding wires lift off. Second, finite-element method is used to simulate the magnetic field and identify the region with the highest rate of magnetic field change due to bonding wires lift off, where the magnetic field sensor is placed to achieve the highest monitoring sensitivity. Additionally, by using a temperature compensation method, the change in magnetic field sensor sensitivity due to temperature variations was reduced. This method decreased the sensitivity deviation caused by temperature changes from approximately 30% to less than 1%. In the experiment, the bonding wires of two types of power semiconductor modules were monitored. Using a magnetic field to current ratio deviation of ±5% as the standard, the occurrence of bonding wire lift-off could be accurately detected.
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SunView 深度解读

从阳光电源的业务视角来看,这项基于磁场测量的功率模块键合线脱落在线监测技术具有重要的应用价值。功率半导体模块是光伏逆变器和储能变流器的核心器件,其可靠性直接影响系统的长期稳定运行。键合线作为模块内部最薄弱的环节,在功率循环和温度波动下容易发生疲劳失效,这是导致逆变器现场故障的主要原因之一。

该技术通过单轴磁场传感器实时监测键合线状态,利用有限元仿真优化传感器布局位置,并通过温度补偿将灵敏度偏差从30%降至1%以内,展现了较高的技术成熟度。对于阳光电源而言,这项技术可集成到新一代智能逆变器和储能系统中,实现功率模块的预测性维护。通过在±5%的磁场电流比偏差标准下准确检测键合线脱落,能够在故障发生前预警,避免系统突然停机,这对于大型地面电站和工商业储能项目的运维效率提升具有显著价值。

技术应用的主要挑战在于:一是传感器的小型化集成和成本控制,需要在不增加显著成本的前提下实现量产应用;二是在复杂电磁环境下的抗干扰能力,光伏和储能系统中存在多种开关频率和谐波成分;三是需要建立针对不同功率等级模块的标定数据库。

从战略机遇角度,该技术与阳光电源推进的数字化和智能化战略高度契合,可增强产品的差异化竞争力,特别是在高可靠性要求的应用场景如海上风电、微电网等领域。建议开展与研究机构的合作验证,并在实验室加速老化测试中评估其长期有效性,为后续产品化奠定基础。