WMSIC Electronic Components

RUILON NTC20D-15 NTC20D

ModelNTC20D-15
PackageThrough-hole, P=7.5mm
BrandRUILON
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
RUILON NTC20D-15
Type
RUILON
Minimum package
250 袋装

Technical parameters

Power
3.5W
Electronic Component
Electronic Component
Electronic Component
RUILON
Electronic Component
NTC20D-15
Electronic Component
1
Electronic Component
6mm
Package
Through-hole, P=7.5mm
Electronic Component
NTCThermistor Resistor
Electronic Component
2.496g
Electronic Component
20Ω
Pitch
7.5mm
Electronic Component
1
B
±10%
(φD)
15mm
Electronic Component
BM0228277333
Operating Temperature
40℃~+200℃

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

NTC20D-15 产品概述

一、产品简介

NTC20D-15 为 RUILON(瑞隆源)出品的片式/插件型负温度系数热敏电阻,封装为插件(脚间距 P = 7.5 mm)。该器件在常温下阻值约为 20 Ω,B 值为 2950 K(25℃/50℃、25℃/75℃、25℃/85℃、25℃/100℃ 一致),B 值精度 ±10%。工作温度范围宽(-40℃ 至 +200℃),适用于多种温度检测、补偿及过流/浪涌抑制应用。

二、主要技术参数

  • 标称阻值(25℃):20 Ω
  • B 值(25/50、25/75、25/85、25/100):2950 K(±10%)
  • 额定功率:3.5 W
  • 最大稳态电流(25℃,厂家标注):4 A(见下文说明)
  • 工作温度:-40℃ ~ +200℃
  • 封装:插件,脚间距 7.5 mm
  • 品牌:RUILON(瑞隆源)

三、电气特性与计算示例

NTC 的温度—阻值关系可用 B 参数近似描述:R(T) = R25 * exp[B*(1/T - 1/T25)](T 以开尔文计)。按 B=2950K,可得典型阻值:

  • 50℃(323.15K):R50 ≈ 20 × exp[2950*(1/323.15 - 1/298.15)] ≈ 9.35 Ω
  • 100℃(373.15K):R100 ≈ 2.73 Ω

注意:器件标注的“最大稳态电流 4 A”与标称功率 3.5 W 和 20 Ω 阻值间存在明显不一致(按 P=I^2·R,则 I_max = sqrt(P/R) ≈ 0.42 A)。因此在实际设计中必须以制造商详尽数据为准,并结合实际散热条件与工作占空比来确定允许电流;不要盲目按 4 A 长期运行。

四、典型应用场景

  • 温度检测与补偿:可用于温度传感、温度补偿电路(电桥、放大器输入等)。
  • 启动浪涌抑制与短时限流:在一定条件下可作为冷态高阻、工作后降阻的浪涌抑制元件,但受限于额定功率与热容量,只适用于短时浪涌或受控场合。
  • 温度保护/限温:配合比较电路实现过温报警或限流保护。

五、安装、使用与注意事项

  • 焊接与热损伤:虽然工作温度最高可达 +200℃,但焊接时仍应避免长时间高温直焊引起材料或结构损伤。遵循厂方焊接曲线与建议。
  • 散热与布局:器件功耗、周围通风与散热路径直接影响允许稳态电流。高功率工况需加装散热或降低持续电流。
  • B 值精度限制:B 值 ±10% 将影响温度换算精度,若用于精密测温需校准或选用精度更高的型号。
  • 机械应力:插件式元件在波峰/手工焊接后避免反复弯折引线,安装时确保固定避免振动导致引脚疲劳。

六、选型建议与售后

  • 如用于持续大电流或长期限流,应优先按额定功率和热阻计算实际允许电流,并与供应商确认“最大稳态电流”定义(短时/长期)。
  • 对温度测量精度有较高要求时,考虑使用 B 值公差更小或线性化后的传感器,并做温度标定。
  • 采购与工程应用前,建议向 RUILON 索取完整数据手册和样品,开展热稳态与周期测试以验证电路适配性。

如需我帮您基于具体电路(工作电压、环境温度、占空比)做热耗与允许电流计算,可提供参数我来核算并给出可靠的使用建议。

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