WMSIC Electronic Components

FH 0805B475K250NT

Model0805B475K250NT
Package0805
BrandFH
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 26+

Available for RFQ

Technical data

Product details

16 specifications

Core information

Product name
FH 0805B475K250NT
Type
FH
Minimum package
2000

Technical parameters

Electronic Component
FH
Electronic Component
0805B475K250NT
Electronic Component
1
Electronic Component
4.7uF
Package
0805
Electronic Component
SMD Capacitor(MLCC)
Electronic Component
±10%
Electronic Component
0.027g
Electronic Component
1
Electronic Component
BM0229211213
Electronic Component
X7R
Voltage
25V
Electronic Component
2000

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

0805B475K250NT 产品概述

一、产品简介

0805B475K250NT 为风华(FH)系列贴片多层陶瓷电容(MLCC),额定容量 4.7 µF,公差 ±10%,额定电压 25 V,介质型式 X7R,封装 0805(约 2.0 × 1.25 mm)。该器件属于通用型高容值厚介质陶瓷电容,适用于开关电源去耦、稳压输出滤波、旁路与一般耦合场合,可在较宽温度范围内提供稳定的电容量特性。

二、主要技术参数

  • 容量:4.7 µF(标称值)
  • 容差:±10%(K)
  • 额定电压:25 V
  • 介质:X7R(温度范围 -55°C 至 +125°C,温度系数允许变化范围约 ±15%)
  • 封装:0805(约 2.0 × 1.25 mm,厚度视厂商工艺一般 ~0.8–1.0 mm)
  • 结构:多层陶瓷(MLCC),无极性
  • 可焊性:符合无铅回流焊工艺(建议遵循本体制造商回流温度曲线)
  • 包装:卷带包装(以便表面贴装机(SMT)直接贴装)

三、电气与物理特性说明

  • DC 偏置效应:X7R 型多层陶瓷电容在外加直流电场下会出现容量下降(DC Bias),容量在靠近额定电压时通常会降低,具体保留率依制造工艺与片厚不同,建议在实际工作电压条件下查看厂家数据手册或做实测验证。
  • 温度稳定性:X7R 在规定温度范围内容量变化受限(典型规定 ±15%),适合对温漂有中等要求的电路。
  • ESR / ESL:MLCC 的等效串联电阻(ESR)与等效串联电感(ESL)极低,适合高频去耦与电源瞬态抑制。
  • 老化特性:介质随时间会出现一定的电容衰减(老化),X7R 比 NP0/C0G 的老化更明显,设计时应考虑长期电容量变化。
  • 漏电流:陶瓷电容漏电流通常较小,但会随温度和电压增加而变大,非极性使用灵活。

四、典型应用场景

  • DC/DC 升降压转换器的输入/输出滤波与旁路
  • MCU、电源管理芯片等的局部去耦与瞬态吸收
  • 电源总线平滑、降低电压纹波
  • 通用电子设备中的耦合与解耦场合
  • 便携设备、通讯设备、汽车电子(需确认汽车级资格)等空间受限且需较高容值的场合

五、选型与使用建议

  • DC 偏置裕量:若电容用于靠近额定电压的工况(例如在 12–25 V 电源轨),请留足容量裕量或并联更大体积的电容,因实际工作容量会因偏置而显著下降。
  • 温度与可靠性:X7R 在 -55 至 +125°C 仍能保持可接受的容量波动,若电路对容量稳定性要求极高,考虑改用 NP0/C0G 或增加并联电容组合。
  • 布局:去耦电容应尽量靠近 IC 电源引脚放置,焊盘与连接线尽量短,以降低寄生阻抗并提高滤波效果。
  • 焊接工艺:遵循制造商的回流温度曲线,控制回流峰值温度与时间,避免多次高温重复回流影响可靠性。
  • 贮存与搬运:避免长期潮湿环境暴露,高湿会影响焊接性与可靠性,采用原厂密封卷带储存并按 MSL 要求回流前做必要的烘烤处理(若超期)。

六、替代与兼容注意事项

  • 同容量与相近规格的 MLCC 在不同厂商之间可选,但注意介质型式、极化、DC Bias 曲线、封装尺寸与可靠性等级(如汽车级 AEC‑Q200)可能不同。典型替代厂商包括 Murata、TDK、Samsung、國巨等。
  • 在对温度、偏置极为敏感的电路中,应以实际测量的容量 vs. 电压曲线为依据进行元件替换或并联设计。

七、结论

0805B475K250NT(风华)以其紧凑封装和较高容量,适合作为中小功率电子产品中的通用去耦与滤波元件。设计时需重点关注 X7R 的 DC 偏置与温度特性,合理安排容量裕量与封装布局,能在体积受限的情况下提供良好的电源稳定性与高频滤波性能。如需进一步参数(如电容随电压/温度的典型曲线、寿命/可靠性测试数据、封装尺寸详图),建议参阅风华官方产品规格书或向供应渠道索取完整数据表。

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