WMSIC Electronic Components

PSA FM21X103K501ECG

ModelFM21X103K501ECG
Package0805
BrandPSA
Price Price on request Electronic component prices change quickly with market supply and demand. Please refer to the latest WMSIC quotation for current pricing.
Configuration
1 options
Configuration Date code within 2 years

Available for RFQ

Technical data

Product details

18 specifications

Core information

Product name
PSA FM21X103K501ECG
Type
PSA
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
PSA
Electronic Component
FM21X103K501ECG
Electronic Component
1
Electronic Component
10nF
Package
0805
Electronic Component
SMD Capacitor(MLCC)
Electronic Component
±10%
Electronic Component
0.039g
Electronic Component
1
Electronic Component
BM0257411976
Electronic Component
X7R
Voltage
500V
Electronic Component
Electronic Component
Electronic Component
3000

For datasheets, package documents, compatible-part guidance, or other technical resources, contact WMSIC customer service. Availability is confirmed case by case.

FM21X103K501ECG — 500V X7R 贴片陶瓷电容(10nF ±10% / 0805)

一、产品概述

FM21X103K501ECG 为 PSA(信昌电陶)品牌的多层陶瓷贴片电容(MLCC),标称电容量 10nF(103),公差 ±10%(K),额定电压 500VDC,介质材料为 X7R,封装为 0805(约 2.0 × 1.25 mm)。该产品针对要求较高耐压与中等容值稳定性的电源滤波、耦合、去耦和高压旁路场合设计,结合小尺寸与高耐压特点,适合集成化程度较高的电路板应用。

二、主要性能与规格

  • 电容量:10 nF(标称)
  • 公差:±10%(K)
  • 额定直流电压:500 VDC
  • 介质:X7R(温度范围与容值变化控制在 -55°C 至 +125°C 之内 ±15%)
  • 封装:0805(约 2.0 × 1.25 mm)
  • 封装型号:FM21X103K501ECG
  • 工作温度范围:-55°C ~ +125°C(与 X7R 介质特性一致)
  • RoHS 与常见环保合规(请按具体出货证书确认)

三、X7R 介质特性及工程注意点

X7R 为 II 类介质,具有较高的介电常数和较小体积优点,但其容值受温度与电压影响明显:

  • 温度特性:-55°C 至 +125°C 范围内容值变化通常在 ±15% 以内(实际以厂商曲线为准)。
  • 直流偏置效应(DC Bias):在高 DC 电压下,X7R 电容会出现显著的容量下降,接近额定电压时容值可能降低几十个百分点。基于可靠性和容值保留的考虑,设计时建议评估实际工作电压下的有效容量。
  • 若需极高稳定性或极小温度系数,应选用 C0G/NP0 等一类介质替代。

四、典型应用场景

  • 高压电源滤波与去耦:适用于开关电源次级、直流链路或高压偏置滤波。
  • 耦合/旁路电容:在高压信号链路中用作交流耦合或局部去耦。
  • 工业与照明电子:驱动器、电源模块及灯具电源中的高压旁路元件。
  • 仪器仪表与通信设备:需要在有限空间内实现高耐压电容配置的场合。

五、封装与 PCB 安装建议

  • 0805 尺寸便于高密度组装,但对焊接与机械应力敏感。推荐遵循制造商的焊盘和回流焊曲线。
  • 回流焊工艺:按照 J-STD-020 规范执行,最高峰值温度一般不超过 260°C,避免重复过热。
  • 焊盘设计:建议留有合理的焊锡过渡区,减小器件在固化时的机械应力;必要时在器件两端采用对称焊盘以降低翘曲风险。
  • 机械防护:对于存在强震动或热循环的环境,推荐添加环氧粘接或在器件周围设置应力缓冲结构。

六、可靠性与设计建议

  • 电压降额(Derating):为延长使用寿命与维持有效容值,建议在关键应用中对额定电压进行降额使用(常见做法为使用额定电压的 50%~80%,具体依系统可靠性要求而定)。
  • 老化与寿命:陶瓷电容在高温高压环境下可能出现失效或击穿风险,设计时考虑冗余并做充分的电气与温度试验。
  • 电气安全:虽然 MLCC 在短路时通常表现为低阻抗,但高压环境下需注意绝缘与间隙爬电距离满足系统安全标准。

七、选型对比与替代建议

  • 若对温度稳定性和频率特性要求较高(尤其需最小容值漂移),优先考虑 C0G/NP0 型号,但这类产品在同体积下耐压与容值可能受限。
  • 若要求更大容值或更高耐压,考虑尺寸更大的封装(1206、1210 等)或采用高压薄膜/电解方案。
  • 在空间受限但需保证在高偏压下有足够容值时,应咨询供应商提供 DC Bias 曲线,并据此选择实际工作电压下满足需求的容值等级。

八、订购与参数核实

下单或样品评估时,请确认:

  • 完整料号:FM21X103K501ECG(包括包装形式与卷装数量)
  • 目标环境与电压下的有效容值(索取 DC Bias 曲线和温度特性曲线)
  • 需要的认证(如 UL、AEC-Q200 等)与可靠性测试报告

如需进一步的电气参数曲线(DC Bias、频率响应、等效串联电阻 ESR/ESL)、封装图纸或回流焊推荐曲线,可提供具体需求以便查询厂商资料或安排样品测试。

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