WMSIC Electronic Components

RUILON RL250-600 RL250

ModelRL250-600
PackageThrough-hole, P=5.1mm
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 RL250-600
Type
RUILON
Minimum package
1000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
RUILON
Electronic Component
RL250-600
Electronic Component
1
Package
Through-hole, P=5.1mm
Electronic Component
Resettable Fuse
Electronic Component
0.578g
Electronic Component
16mm
Electronic Component
1
Electronic Component
12s
Electronic Component
BM0257666749
Voltage Rating(Vmax)
250V
Power(Pd)
3W
Current(Imax)
5A
Electronic Component
Electronic Component
Electronic Component
1000

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

RL250-600 产品概述

一、概述

RL250-600 是 RUILON(瑞隆源)推出的一款自恢复过流保护元件,适用于交流或直流系统的过流、短路保护。器件在正常工作时保持低阻抗状态,一旦电流超过设定跳闸值会迅速升温并增加阻值限制电流,故障消除并冷却后可自动恢复至初始状态,适合需要重复保护、维护不便或要求非一次性熔断的场景。校验通过,性能指标稳定,可用于多种电子与电源系统。

二、主要技术参数

  • 最高耐压 (Vmax):250 V
  • 最大允许电流 (Imax):5 A(器件绝对极限,应避免长期靠近此值)
  • 保持电流 (Ihold):600 mA(在规定环境温度下器件长期保持导通的最大电流)
  • 跳闸电流 (Itrip):1.2 A(在规定条件下器件将在此电流水平发生明显升阻以限制电流)
  • 消耗功率 (Pd):3 W(器件在特定状态下的最大耗散功率)
  • 初始态阻值 (Rmin):≈500 mΩ(常温、未触发时的典型低阻抗)
  • 跳断后阻值 (R1max):≤5 Ω(触发后阻值上升至此范围以限流)
  • 动作时间:12 s(在标准测试条件下由保持态到跳闸所需的典型时间)
  • 长度:16 mm
  • 品牌/产地:RUILON(瑞隆源)
  • 封装:未知(建议在选型时确认实际封装及引脚形式)

三、工作原理与性能要点

RL250-600 采用自恢复聚合物正温度系数(PPTC)材料,当电路电流超过 Ihold 并逼近 Itrip 时,器件内部温度上升导致材料电阻急剧增加,从而限制电流到安全水平。动作时间受电流大小和环境温度影响,给出的 12s 为标准测试条件下的参考值。跳断后阻值上升至最多 5 Ω,显著降低通过的电流以保护后端电路;故障解除并冷却后阻值可回复接近初始值。

四、典型应用场景

  • 开关电源、适配器的输出保护
  • 消费类电子和家电中的短路/过流保护
  • 电池充电器与电池管理系统中的初级保护
  • 工业控制模块、仪器仪表的配电保护
  • 通信设备、安防产品的输入侧保护

五、选型与使用建议

  • 常态工作电流应低于 Ihold,并留有安全裕度(建议 60%~80% 的留量,视环境温度和散热条件调整)。
  • 避免长期在接近 Itrip 的电流下工作,因会导致频繁触发、发热和寿命下降。
  • Pd 值用于评估器件热稳定性与在限流状态下的功率承受能力;应用设计时需考虑器件散热路径、周围空间与温度升高对参数的影响。
  • 不建议并联多个单元以提高容量,因并联不均会导致一支先触发并承受大部分能量;需采用专用并联设计或更高规格单元。

六、安装与注意事项

  • 确认封装与引脚形式以适配焊盘或夹持结构;避免直接用高温烙铁长时间加热器件主体。
  • 保持器件与热源、限流器之间适当间距,避免受其他热源影响导致误动作。
  • 在高湿或腐蚀性环境中应采取防护措施,延长使用寿命。
  • 对关键保护点建议加装温度监测或状态指示,便于维护与故障诊断。

七、可靠性与测试建议

  • 在目标应用中进行实际工况寿命测试,包含高温储存、温度循环、过流触发-恢复循环等,以验证长期稳定性。
  • 对瞬态冲击与最大短路电流进行仿真/实测,确认器件在极端条件下的行为并确保下游保护元件安全。
  • 出货前抽样测量 Rmin、Itrip 和动作时间,确保批次一致性。

八、总结

RL250-600 提供可靠的自恢复过流保护,兼顾低初始阻抗与有效限流后阻值上升特性,适合多种电源与电子设备的保护需求。选型时应结合实际工作电流、环境温度与散热条件合理留量,并在设计阶段完成必要的热与电流试验,以确保系统长期稳定运行。若需封装、引脚图和热阻等补充资料,建议向供应商索取完整数据手册。

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