WMSIC Electronic Components

cjiang FHD252012S-100MT FHD252012S

ModelFHD252012S-100MT
Package1008
Brandcjiang
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

19 specifications

Core information

Product name
cjiang FHD252012S-100MT
Type
CJIANG
Minimum package
2000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
CJIANG
Electronic Component
FHD252012S-100MT
Electronic Component
1
Package
1008
Electronic Component
Power Inductor
Electronic Component
±20%
Electronic Component
0.058g
Inductor
10uH
Electronic Component
1
Electronic Component
BM0231141071
Current
1A
Resistor(DCR)
435mΩ
Electronic Component
Electronic Component
Electronic Component
2000
and Current(Isat)
1.35A

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

FHD252012S-100MT 产品概述

一、产品简介

FHD252012S-100MT 是长江微电(cjiang)推出的一款小型功率贴片电感,标称电感量为 10 μH,公差 ±20%,额定电流 1.0 A,饱和电流(Isat)为 1.35 A,直流电阻(DCR)435 mΩ。该器件采用 1008 封装,适合对体积有严格要求的电源滤波与能量储存场合。

二、主要电气参数

  • 电感量:10 μH,公差 ±20%
  • 额定直流电流:1.0 A
  • 饱和电流(Isat):1.35 A(在该电流下电感将明显降额)
  • 直流电阻(DCR):435 mΩ(对效率和发热有直接影响)
  • 封装:1008,SMD 贴片工艺

值得注意的是,在额定电流 1 A 时,器件的 I^2·R 损耗约为 0.435 W,说明在连续高电流工作时需要考虑散热与效率损失。

三、产品特点

  • 小尺寸、低高度、利于紧凑电路布局;
  • 额定电流与饱和电流参数明确,便于设计余量评估;
  • 适用于中低频开关电源与滤波场合;
  • SMD 1008 封装便于自动贴片与回流焊装配。

四、典型应用场景

  • 降压/升压 DC-DC 转换器中的储能电感;
  • 开关电源输入或输出滤波器;
  • 电池供电设备的电源管理模块;
  • LED 驱动与便携电子产品的电能滤波。

五、选型与使用建议

  • 为保证稳定性,实际工作电流建议低于额定电流(常见做法为额定电流的 70%~80%),以避免接近饱和区导致电感骤降;
  • 由于 DCR 较高,在对效率或发热敏感的设计中应权衡器件损耗,必要时选用更低 DCR 或更大尺寸的器件;
  • 电感置于开关节点附近,走线尽量短且粗,以降低寄生阻抗与 EMI;焊盘设计应符合厂家推荐的回流工艺。

六、电路布板与可靠性注意

  • 推荐将电感与开关器件和输入/输出电容合理布局,减少环路面积;
  • 若工作在高平均电流或高占空比下,应评估器件温升并考虑散热或改选;
  • 在脉冲电流较大时,关注电感的热冲击与长期可靠性,必要时做寿命测试验证。

FHD252012S-100MT 以其小型化与明确的电气指标,适合体积受限且电流需求在 1 A 附近的电源设计场景。设计时请结合实际工作点、效率与热管理需求,合理留取裕量以保证系统长期可靠运行。

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