WMSIC Electronic Components

BHFUSE BSMD1812-200-16V BSMD1812

ModelBSMD1812-200-16V
Package1812
BrandBHFUSE
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
BHFUSE BSMD1812-200-16V
Type
BHFUSE
Minimum package
1500 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
BHFUSE
Electronic Component
BSMD1812-200-16V
Electronic Component
1
Package
1812
Electronic Component
Resettable Fuse
Electronic Component
0.113g
Electronic Component
1
Electronic Component
2s
Electronic Component
BM0226580900
Operating Temperature
40℃~+85℃
Voltage Rating(Vmax)
16V
Power(Pd)
1W
Current(Imax)
100A
Electronic Component
Electronic Component
Electronic Component
1500

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

BSMD1812-200-16V 自恢复保险丝 产品概述

BSMD1812-200-16V 是佰宏(BHFUSE)推出的 1812 封装表面贴装自恢复保险丝(PTC),针对低电压直流电源保护与短路/过流防护设计。该器件在发生过流时自动增阻限流,过载消失后自动恢复低阻状态,适用于多种便携与板载电源保护场合。

一、主要参数概览

  • 封装:1812 SMD(典型尺寸 ~4.5 × 3.2 mm)
  • 初始态阻值 Rmin:20 mΩ(典型/最低)
  • 跳断后阻值 R1max:100 mΩ(最大)
  • 保持电流 Ihold:2 A(在规定温度下不动作的最大电流)
  • 跳闸电流 Itrip:4 A(在规定条件下动作的典型值)
  • 最大工作电压 Vmax:16 V(应用电压不应超过此值)
  • 最大脉冲/冲击电流 Imax:100 A(短时承受能力,非稳态)
  • 动作时间:2 s(在特定过流条件下由低阻到高阻所需时间)
  • 工作温度:-40 ℃ ~ +85 ℃
  • 消耗功率 Pd:1 W(稳态或特定工况下的功耗指标,参照厂方曲线)

二、产品特性与工作原理

该型号为聚合物正温度系数(PPTC)元件:正常工作时呈低阻态(约 20 mΩ),允许设备通过 Ihold 电流;当电流超过 Itrip 或在持续过载下,芯片温度上升引起内阻迅速增加(跳闸),将电流限制到安全水平。过流消除并且器件冷却后,阻值回复到初始低阻态,实现自动复位。Imax 指示器件可承受的短时浪涌能力(如启动冲击),不等同于连续允许电流。

三、典型应用场景

  • 5V / 12V 板级电源总线保护(如工控、消费电子)
  • USB 和外围设备短路保护(需注意 USB 电压和 Vmax 匹配)
  • 电池组与便携设备的输出保护(在 16V 以内)
  • LED 驱动、模块化电源、通信设备电源线
    注意:在汽车直接电源(未抑制尖峰)场景下应结合抑制元件(TVS)使用,因汽车启动/浪涌电压可超出 16V。

四、选型与使用建议

  • 选型原则:Ihold 应略高于设备正常最大工作电流,避免误动作;Itrip 应低于下游器件或线束可承受的安全电流。
  • 温度影响:周围环境温度越高,器件实际 Ihold 越低,需按厂方温度曲线做降额设计。
  • 冲击与浪涌:若系统存在较大冲击电流(如液晶背光、马达启动),优先采用浪涌限流(NTC、启动电阻)或选择更高 Ihold 型号。
  • 电压与瞬态:保持工作电压 ≤ Vmax,并在可能的瞬态场景中加装 TVS 或 RC 抑制电路。

五、封装与工艺要点

1812 SMD 适合回流焊装配。PCB 布局时注意:

  • 增大焊盘与散热铜箔,改善热量散发,避免器件因局部高温误动作;
  • 遵循厂家回流曲线,避免过高焊接温度影响性能;
  • 推荐将自恢复保险丝靠近被保护端口放置,以缩短保护路径。

六、注意事项与常见问题

  • Vmax(16V)为关键限制,超压会导致不能可靠动作或损坏;
  • Pd(1W)为热稳定相关指标,实际温升与板上散热条件密切相关,应参考详细温升曲线;
  • Rmin 与 R1max 为典型低阻与跳闸后阻值,测量条件(环境温度、测试电流)会影响数据;
  • 长期在接近 Itrip 条件运行会缩短寿命,应保证足够裕量。

总结:BSMD1812-200-16V 以 1812 SMD 封装与 16V 电压等级、2A 保持电流、4A 跳闸电流为主要特性,适合中低压板级过流保护。设计时应结合温度、浪涌及瞬态抑制策略进行合理选型与版图布局,以发挥其稳定的自恢复保护功能。若需更详细的温升/时间-电流曲线与封装尺寸,请参考佰宏官方数据手册。

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