WMSIC Electronic Components

TA-I Technology RLM10FTSMR010

ModelRLM10FTSMR010
Package0805
BrandElectronic Component
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
RLM10FTSMR010
Type
TA-I Technology
Minimum package
5000 圆盘

Technical parameters

Power
500mW
Electronic Component
Electronic Component
Electronic Component
Electronic Component
Electronic Component
RLM10FTSMR010
Electronic Component
1
Package
0805
Electronic Component
Current Sense Resistor / Shunt
Electronic Component
±1%
Electronic Component
0.03g
Electronic Component
10mΩ
Electronic Component
1
Electronic Component
BM0264549219
Electronic Component
SMD
Electronic Component
±50ppm/℃
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.

RLM10FTSMR010 产品概述

一、产品简介

RLM10FTSMR010 是大毅科技推出的一款高精度贴片式电流采样电阻(分流器),封装规格为 0805,阻值 10 mΩ,额定功率 500 mW,精度 ±1%,温度系数 (TCR) ±50 ppm/°C。该器件针对电流检测与电能管理应用设计,适合在空间受限且对测量精度有较高要求的场合使用。

二、主要性能参数

  • 类型:采样电阻 / 分流器(SMD)
  • 阻值:10 mΩ
  • 精度:±1%(额定温度点)
  • 额定功率:500 mW(额定散热条件下)
  • 温度系数(TCR):±50 ppm/°C
  • 封装:0805(贴片)

以上参数决定了该型号在低阻值、小压降、高精度电流测量领域的适用性。

三、典型电气特性与计算示例

  • 在额定功率 500 mW 与阻值 10 mΩ 条件下的连续电流(理论值):
    • I = sqrt(P / R) = sqrt(0.5 W / 0.01 Ω) ≈ 7.07 A
  • 对应的压降:
    • V = I × R ≈ 7.07 A × 0.01 Ω ≈ 0.0707 V(约 70.7 mV)
  • 温漂影响示例:
    • TCR = ±50 ppm/°C,若环境温度从 25°C 升高到 85°C(ΔT = 60°C),阻值变化约为 0.3%(ΔR/R = 50e-6 × 60 = 0.003),即额外误差约 ±0.3%。

注意:上述电流与功耗计算为理论值,实际可用电流受 PCB 散热、焊盘设计与工作环境影响,建议在设计中考虑功率降额与热管理。

四、应用场景

RLM10FTSMR010 适用于多种需要精确电流监测的小型电子系统,例如:

  • 电池管理系统(BMS)与便携式电源监控
  • DC-DC 转换器与电源模块电流检测
  • 电机驱动与负载监测(低压高电流场合)
  • LED 驱动与恒流控制
  • 过流保护与能耗统计

其低阻值与较小压降使其在对系统效率敏感的场合尤为适用。

五、布局与安装建议

  • 按厂商推荐的 0805 焊盘尺寸布板,最佳遵循元件供应商或行业标准的焊盘图样。
  • 为降低寄生电阻和改善热耗散,建议使用较宽的走铜与较大的焊盘连接点,必要时在焊盘下方或附近增加铜层与过孔以导热至内层或背面铜箔。
  • 对于高精度测量,优先考虑“开环”布线时将测量放大器的感测输入引线尽量靠近分流电阻,若能使用四端(Kelvin)测量更佳;0805 通常为两端焊接结构,建议在 PCB 布线中将测量引线与电流引线分开,减少引线电阻对测量的影响。
  • 焊接工艺应采用推荐的回流曲线(JEDEC 标准回流工艺),避免过高峰值温度和过长的高温停留时间,以防影响电阻稳定性与精度。

六、热管理与可靠性提示

  • 0805 体积较小,热阻相对较高,500 mW 的功耗在空气中长期工作可能需要额外的散热措施。建议在典型工作点处评估元器件结温,并根据需要采用更宽的铜箔、热铜柱或散热垫等手段降低热阻。
  • 对于频繁过载或高脉冲电流场景,应进行热循环验证与寿命评估,确保长期稳定性。
  • 温度漂移(TCR)会对测量精度产生可衡量的影响,若系统需在宽温度范围内保持高准确度,应在软硬件层面做温度补偿或校准。

七、设计选型建议

  • 当系统允许 70 mV 左右的压降并且目标电流 ≤7 A 时,RLM10FTSMR010 可作为直接分流器选用。若系统对压降更敏感可考虑更低阻值但需注意测量分辨率与放大器性能。
  • 若测量精度要求高于 ±1% 或在宽温区间内保持更好稳定性,可在系统中加入校准机制或选择精度更高、TCR 更低的分流器产品。
  • 设计时务必考虑 PCB 散热能力,必要时通过样机测试确认在最大工作电流下的温升与阻值漂移符合系统需求。

如需该型号的完整数据手册、回流曲线或 PCB 焊盘建议,请联系大毅科技或其授权经销商获取最新资料与支持。

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