WMSIC Electronic Components

RUILON NTC 5D-9 (bent leads) NTC

ModelNTC 5D-9
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 Date code within 2 years

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
RUILON NTC 5D-9
Type
RUILON
Minimum package
500 袋

Technical parameters

Electronic Component
Electronic Component
Electronic Component
RUILON
Electronic Component
NTC 5D-9
Electronic Component
1
Package
Through-hole, P=7.5mm
Electronic Component
NTCThermistor Resistor
Electronic Component
0.788g
Electronic Component
5Ω
Pitch
7.5mm
Electronic Component
1
(φD)
9mm
Electronic Component
BM0264888666
Operating Temperature
55℃~+200℃
Electronic Component
11mW/℃
Electronic Component
34s
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.

NTC 5D-9(弯脚) — 产品概述

一、产品简介

NTC 5D-9(弯脚)为通孔插装负温度系数热敏电阻,品牌:RUILON(瑞隆源)。材料由铁、镍、钴、锰、铜等金属氧化物中选取 2 或 4 种配方,经 1200°C–1500°C 高温成型与烧结而成。器件随温度升高电阻迅速下降,适合用于开关电源及各类电源转换器的浪涌电流限制与温度检测场景。

二、主要参数

  • 标称阻值:5 Ω(常温冷态标称)
  • 最大稳态电流(Ta=25°C):3 A
  • 耗散系数:11 mW/°C(升高 1°C 所需功率)
  • 热时间常数:34 s(达到最终温度 63% 所需时间)
  • 工作温度范围:-55°C 至 +200°C
  • 外形尺寸:直径 φD = 9 mm(芯体)
  • 引脚间距:7.5 mm(PCB 安装孔距)
  • 封装形式:插件(弯脚),P = 7.5 mm

三、特性与工作原理

NTC(Negative Temperature Coefficient)热敏电阻在冷态时阻值较高,通电自热后随温度上升阻值大幅下降。此特性使其在交流或直流供电瞬间作为浪涌电流限制元件:通电瞬间较高阻值限制电流,经过一段时间(热时间常数量级)自热后阻值降低,允许更大工作电流通过,减少正常运行时的功耗。

四、典型应用

  • 开关电源(SMPS)输入侧浪涌电流抑制
  • 充电器与适配器的启动限流
  • 电源模块及逆变器的过流冲击保护
  • 各类需要短时限流、长时低压降的电源管理场合

五、热、电性能说明与示例计算

  • 耗散系数 11 mW/°C:表示器件在自然对流条件下,使器件温度上升 1°C 需要约 0.011 W 的耗散功率。举例:若需将器件温度从 25°C 提升到 125°C(ΔT=100°C),理论稳态耗散功率约为 100 × 0.011 = 1.1 W。
  • 热时间常数 34 s:通电后约 34 s 到达最终温升的 63%,典型为几十秒级自热过程。
  • 最大稳态电流 3 A:在环境 25°C、允许充分散热情况下的长期通过电流上限。连续工作接近或超过该值需充分散热或增加外部散热条件。
  • 冷态浪涌电流示例:冷态阻值约 5 Ω,若瞬间在 230 VAC(整流后)或较高电压直接作用下,理论电流极大(I≈V/R),实际受限于电源内阻与整流环节。设计时以电源结构及安全标准评估实际浪涌值,避免过度估算。

六、安装与机械建议

  • 弯脚形式适合通孔安装,PCB 孔距按 7.5 mm 布局。
  • 弯脚应在距离芯体一定距离处弯折,避免对陶瓷体施加机械应力;焊接时避免对元件本体直接加热或施力。
  • 推荐留有足够的空间以利于自然对流散热,必要时可以采用绝缘套、夹具或铜箔/散热片增强热量传导。
  • PCB 周边应考虑爬电距离与散热条件,特别是在高电压输入端应用时。

七、可靠性与注意事项

  • 工作温度宽(-55°C 至 +200°C),可在苛刻环境下长期使用,但高温下材料老化、阻值漂移需在设计里考虑余量。
  • 避免长时间超过最大稳态电流(3 A),并防止频繁、大幅度的高温循环以减少寿命损耗。
  • 储存与使用时避免受潮、强振动和机械冲击;焊接工艺应遵循通孔零件常规工艺,避免对本体直接加热过久。
  • 采购时注明型号:NTC 5D-9(弯脚),RUILON,封装 插件 P=7.5mm,以保证外观与规格一致。

总结:NTC 5D-9(弯脚)为典型的通用型浪涌限流与温度敏感元件,结构紧凑、热响应适中,适合开关电源及各类电源模块在启动与保护场合中使用。设计时请结合实际电路电压、浪涌需求和散热条件进行合理选型与布置。

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