WMSIC Electronic Components

Littelfuse 1206L050/24WR 1206L050

Model1206L050/24WR
Package1206
BrandLittelfuse
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 25+

Available for RFQ

Technical data

Product details

20 specifications

Core information

Product name
Littelfuse 1206L050 / 24WR
Type
LITTELFUSE
Unit
Electronic Component
Minimum package
3000 编带

Technical parameters

Electronic Component
Electronic Component
Electronic Component
Electronic Component
Electronic Component
LITTELFUSE
Electronic Component
1206L050/24WR
Electronic Component
1
Package
1206
Electronic Component
Resettable Fuse
Electronic Component
0.039g
Electronic Component
1
Electronic Component
100ms
Electronic Component
BM0084335570
Operating Temperature
40℃~+85℃
Voltage Rating(Vmax)
24V
Power(Pd)
8W
Current(Imax)
100A
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.

1206L050/24WR 产品概述

一 产品概述

1206L050/24WR 为 Littelfuse(美国力特)出品的自恢复式聚合物正温度系数(PTC)保护器件,封装为 1206(3216公制)。器件在正常工作状态下具有低阻抗以保证较小电压降;当电流超过设定的跳闸电流时,器件在短时间内迅速升温并将阻值显著提高,从而限制电流并保护电路。过流消除后,器件冷却恢复到初始低阻值状态,适合需要可重复保护的小型低压电源与信号线路保护场合。

二 主要规格(基于提供参数)

  • 型号:1206L050/24WR
  • 品牌:Littelfuse(美国力特)
  • 封装:1206
  • 额定工作电压:24 V (Vmax)
  • 保持电流(Ihold):500 mA
  • 跳闸电流(Itrip):1 A
  • 跳断后最大阻值(R1max):750 mΩ
  • 初始态阻值(Rmin):150 mΩ
  • 最大允许短时冲击电流(Imax):100 A(脉冲耐受,非连续)
  • 最大功耗(Pd):8 W
  • 动作时间:100 ms(典型响应时间)
  • 工作温度范围:-40 ℃ ~ +85 ℃

三 电气特性与工作行为

  • 保持电流 Ihold = 500 mA:在此电流及以下长期工作时,器件保持低电阻状态,温升受控,电压降小。
  • 跳闸电流 Itrip = 1 A:当电流超过此值时,器件在典型动作时间(约100 ms)内进入高阻态以限制故障电流。
  • 动作后阻值上升至不低于 750 mΩ,从而显著降低故障电流,保护下游元件。
  • Imax = 100 A:为器件能承受的短时浪涌脉冲能力,应仅作为瞬态耐受指标,不可作为连续通流值。
  • 器件的恢复时间与故障电流幅值、环境温度和 PCB 散热条件密切相关,通常需数秒到数十秒不等。

四 典型应用

  • 便携式设备的输入端保护(24V 系统)
  • 通信设备、路由器、交换机的局部电源保护
  • 工业控制模块、传感器电源保护
  • 电池保护和充电线路的短路/过流防护(配合合适电路设计)
  • USB 电源扩展模块、车载辅助电源(注意环境温度和瞬态电流限制)

五 设计与 PCB 布局注意事项

  • 将 PTC 放置在靠近被保护线路或电源入口的位置,确保最短导线长度以最大化保护效果。
  • 给予器件周围适当的铜面以帮助散热,但避免将其紧邻高温器件;较大铜面会影响恢复时间和动作特性。
  • 在有高浪涌或反复短路条件的场合,评估 Imax 能否满足冲击需求,必要时增加限流电阻或选择更高额定的保护件。
  • 设计时应考虑环境最高温度(+85 ℃),高温环境会降低 Itrip 与器件的恢复能力,应适当留有裕量。
  • 对于关键电源路径,建议进行实际的热测试和时间-电流曲线验证,确保在目标操作工况下动作可靠且不会误跳。

六 可靠性与选型建议

  • 器件为自恢复型保险,在发生短路后可自动恢复,适合不可频繁更换保护元件的产品。
  • 选型时基于电路的最大持续工作电流应低于 Ihold,且正常启动或浪涌电流应低于能被器件容忍的 Imax 或由外部限流电路处理。
  • 如电路存在长时间接近 Ihold 的工作点,建议选择更高裕度的型号以避免因环境温度或老化引起误动作。
  • 在最终产品认证或量产前,建议进行包括过流、浪涌、温升、循环动作恢复等方面的验证试验。

总结:1206L050/24WR 提供在 24V 系统下、保持电流 500 mA 与 1 A 跳闸点的可靠自恢复过流保护,适合对体积与响应速度有要求的消费类与工业类电路。正确的 PCB 布局与热设计可发挥其最佳保护性能。

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