WMSIC Electronic Components

PSA FMF25FPJR010-LH FMF25FPJR010

ModelFMF25FPJR010-LH
Package2512
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 26+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
PSA FMF25FPJR010-LH
Type
PSA
Minimum package
4000 圆盘

Technical parameters

Power
2W
Electronic Component
Electronic Component
Electronic Component
PSA
Electronic Component
FMF25FPJR010-LH
Electronic Component
1
Package
2512
Electronic Component
Current Sense Resistor / Shunt
Electronic Component
±1%
Electronic Component
0.064g
Electronic Component
10mΩ
Electronic Component
1
Electronic Component
BM0257411994
Electronic Component
SMD
Electronic Component
±70ppm/℃
Resistor Type
Current Sense Resistor
Electronic Component
Electronic Component

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

FMF25FPJR010-LH 产品概述

一、产品简介

FMF25FPJR010-LH 是 PSA(信昌电陶)推出的一款贴片型电流采样电阻(分流器),封装为 2512,阻值 10 mΩ,额定功率 2W,精度 ±1%,温度系数 ±70 ppm/℃。该器件针对高精度电流检测场合设计,提供稳定的电阻值和较低的温漂,适合电源管理、电池管理、马达驱动与电流计量等应用。

二、主要技术参数

  • 电阻类型:采样电阻 / 分流器(SMD)
  • 阻值:10 mΩ
  • 精度:±1%
  • 额定功率:2W(基于良好 PCB 散热条件)
  • 温度系数(TCR):±70 ppm/℃(低温漂)
  • 封装:2512(6.35 mm × 3.2 mm)
  • 品牌:PSA(信昌电陶)
  • 型号:FMF25FPJR010-LH

示例计算:在阻值为 10 mΩ 时,最大连续电流(不超过 2W)约为 I = sqrt(P/R) = sqrt(2 / 0.01) ≈ 14.14 A,对应压降约 0.141 V。

三、产品特性与优势

  • 高功率密度:在 2512 封装下实现 2W 额定功率,适合对空间与散热有要求的设计。
  • 高精度:±1% 容差,满足多数电源与能量计量应用的精度需求。
  • 低温漂:±70 ppm/℃ 可显著降低温度变化对测量精度的影响,有利于长温区稳定测量。
  • SMD 形态:便于自动贴装与工业化生产,提高可靠性与一致性。

四、典型应用场景

  • 开关电源电流检测(输入/输出电流监控)
  • 电池管理系统(BMS)电流采样与保护
  • 电机驱动与逆变器电流反馈
  • 功率计量、负载检测与过流保护电路
  • 工业控制与服务器电源监测

五、布板与热管理建议

  • 散热依赖 PCB 铜箔面积:建议在器件两侧引脚配大铜皮,并在底层或邻近层增加铜箔与过孔热通道,提升散热能力以接近或达到 2W 额定值。
  • 建议连续运行下对功率进行适当降额(典型推荐 70–80% 额定功率)以延长寿命并减少热应力。
  • 避免在器件附近放置热敏元件或信号线;若需要高精度测量,应保证周围温度均匀。
  • 对于测量引线,应尽量缩短电流主流路径并将测量端做为独立短走线以减少寄生电阻与电感。

六、测量电路与布局要点

  • 测量方式:可用于低端(地端)或高端(电源端)检测;高端测量需配合差分放大器或专用电流检测放大器。
  • 放大器选择:由于在 10 mΩ 下压降通常在百毫伏量级,应采用低失调、低漂移、共模范围适配的运放/差分放大器或专用放大器。
  • Kelvin 测量:若追求更高精度,推荐采用四端测量技术或在 PCB 上实现独立的检测走线来消除接触与走线电阻误差。
  • 低噪声布线:将测量信号线与大电流回流线分开,避免噪声耦合到测量输入。

七、选型与使用注意事项

  • 确认实际工作电流与峰值脉冲电流:若有短时冲击电流,需评估脉冲能量对器件的冲击与热容影响。
  • 环境温度与散热条件是决定能否达到标称 2W 的关键,严寒/高温环境下请参见厂家 datasheet 的 derating 曲线。
  • 对于高精度测量场合,除温漂外还需关注长期稳定性(寿命漂移)与焊接工艺的影响,建议严格按照 PSA 提供的回流焊工艺参数。

八、订购与资料

标准型号:FMF25FPJR010-LH。更多详细机械图、热阻、回流焊工艺、包装与量产信息,请参考 PSA(信昌电陶)官方数据手册或向授权分销商索取技术资料。如需替代型号或更低阻值/更高功率的分流器,也可根据应用需求进行选型咨询。

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