WMSIC Electronic Components

muRata NCU15XH103F60RC

ModelNCU15XH103F60RC
Package0402
BrandmuRata
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

20 specifications

Core information

Product name
mu Rata NCU15XH103F60RC
Type
MURATA
Unit
Electronic Component
Minimum package
10000 圆盘

Technical parameters

Power
1mW
Electronic Component
Electronic Component
Electronic Component
Electronic Component
Electronic Component
MURATA
Electronic Component
NCU15XH103F60RC
Electronic Component
1
Electronic Component
0.5mm
Package
0402
Electronic Component
NTCThermistor Resistor
Electronic Component
0.015g
Electronic Component
1mm
Electronic Component
10kΩ
Electronic Component
1
B
±1%
Electronic Component
BM0227776741
Operating Temperature
40℃~+125℃

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

NCU15XH103F60RC 产品概述

一、主要参数

  • 型号:NCU15XH103F60RC
  • 品牌:muRata(村田)
  • 阻值(25℃):10 kΩ
  • 阻值精度:±1%
  • B值:B(25/50)=3380 K;B(25/85)=3434 K;B(25/100)=3455 K;B值精度:±1%
  • 功率/最大耗散:1 mW;耗散系数:1 mW/℃
  • 工作温度:-40 ℃ ~ +125 ℃
  • 封装:0402(长度 1.0 mm,宽度 0.5 mm)
  • 类型:NTC 热敏电阻(负温度系数)

二、产品特性

NCU15XH103F60RC 为超小型高精度 SMD NTC 热敏电阻。10 kΩ 标称阻值配合 ±1% 的阻值公差及 ±1% 的 B 值精度,适合对温度测量精度有较高要求的微型化电子设备。0402 封装具有极小热容,响应速度快,但同时最大耗散功率较低,使用时需注意避免自发热导致的测量误差。工作温度范围宽,可满足消费电子、移动设备及工业级部分应用。

三、典型应用

  • 移动设备与可穿戴终端的局部温度监测与热管理
  • 锂电池组温度检测与电池保护电路
  • 电源管理芯片和功率器件的热补偿/温度校准
  • 精密测量仪表及温度补偿元件
  • 医疗便携设备的温度传感(需按医疗规范验证)

四、设计与使用建议

  • 由于最大耗散仅 1 mW,测量时应采用低测量电流(常用 µA 级),以尽量降低自发热误差。
  • 将器件尽量贴近被测点并避开热源或散热结构的干扰位置,以获得更准确的温度采样。
  • 在 PCB 布局中减少热桥效应,避免与大功率器件直接毗邻;焊盘和过孔设计应符合 0402 封装的工艺要求。
  • 推荐使用恒流源或高阻值分压电路进行阻值采样,并在固件中进行温度换算与线性化处理。
  • 回流焊接时遵循厂商推荐的温度曲线与工艺规范,避免超出材料允许的热循环。

五、参考计算与校准

常用 Beta 方程用于阻值-温度换算: R(T) = R25 * exp[B * (1/T - 1/T25)] (T、T25 以开尔文为单位,R25 为 25℃ 时阻值)
对于高精度需求,建议结合三点或多点标定并采用 Steinhart–Hart 方程或查表法进行线性化处理,以抵消封装、环境与工艺带来的偏差。

总结:NCU15XH103F60RC 以其小尺寸、高精度及较宽工作温度范围,适用于空间受限且要求精确温度检测的场景,但设计时需严格控制测量功率与布板散热以避免自发热引入误差。若需与系统集成的具体热模型或采样电路建议,可提供电路拓扑与应用场景以便进一步优化。

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