WMSIC Electronic Components

DOWO SMF30A

ModelSMF30A
PackageSOD-123
BrandDOWO
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
DOWO SMF30A
Type
DOWO
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
DOWO
Electronic Component
SMF30A
Electronic Component
1
Package
SOD-123
Electronic Component
Electronic Component
Type
TVS
Electronic Component
ESD and Surge Protection (TVS / ESD)
Electronic Component
0.041g
Electronic Component
1
Electronic Component
BM0263546817
Voltage
48.4V
Current(Ir)
1uA
Voltage(VBR)
33.3V
Electronic Component
Electronic Component
Electronic Component
3000

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

SMF30A 产品概述

一、产品简介

SMF30A 是 DOWO(东沃)推出的一款玻璃钝化芯片 TVS(二极管瞬态抑制器),SOD-123 封装,提供单向和双向型号。器件响应迅速、泄漏电流低,采用玻璃钝化工艺提高长期可靠性与耐湿性,符合 RoHS 要求,适用于对瞬态浪涌和浪涌脉冲有可靠保护需求的电子系统。

二、主要参数

  • 极性:单向(同时有对应的双向型号可选)
  • 反向截止电压 Vrwm:30 V
  • 击穿电压 VBR:33.3 V
  • 钳位电压 Vclamp:48.4 V(典型)
  • 反向电流 Ir:1 μA(在 Vrwm 下)
  • 峰值脉冲电流 Ipp:4.13 A(对应该器件在 10/1000 μs 波形、200 W 条件下的脉冲电流)
  • 峰值脉冲功率 Ppp:1 kW @ 8/20 μs;200 W @ 10/1000 μs(占空比 0.01%)
  • 封装:SOD-123

注:脉冲功率与脉冲波形密切相关,8/20 μs 与 10/1000 μs 的能量分布不同,导致可承受的瞬态幅值与电流不同。器件给出的是在不同标准测试波形下的峰值能力,实际选型时应以系统的浪涌类型为准。

三、关键特性与工作原理

  • 快速响应:TVS 器件在瞬态出现时能在纳秒级导通,将过电压钳位至安全水平,保护后端元器件。
  • 优秀钳位能力:典型钳位电压 48.4 V,可在 Vrwm=30 V 的工作点上有效限制瞬态电压峰值。
  • 低泄漏:正常工作电压下反向泄漏仅 1 μA,降低待机功耗和对灵敏模拟电路的影响。
  • 玻璃钝化:提高湿热及高温下的可靠性与寿命,适合苛刻环境。
  • 多种脉冲能力:对常见的工业/通信浪涌标准(8/20、10/1000 μs)均有标称能力,便于不同场景下的防护设计。

四、典型应用场景

  • 电源线和开关电源的浪涌保护(直流或低频供电回路)
  • 通信接口保护:USB、RS-485、CAN、串口等差分/单端信号线路
  • 传感器、电机驱动与工业控制设备的瞬态防护
  • 汽车电子(需注意车规级要求)、家电、安防与消费电子产品的输入/输出端口防护

五、封装与可靠性建议

SOD-123 小型封装利于空间受限的电路板布局,但封装热耗散能力有限。高能量脉冲(例如 8/20 μs 且能量接近极限时)会产生较大热量,设计时应:

  • 保持器件焊盘与地/电源平面良好热连接,便于散热。
  • 将 TVS 靠近受保护端口且走线尽量短,减小寄生电感,提高钳位效率。
  • 如系统可能经历频繁大能量脉冲,考虑并联多个器件或增加串联阻抗/熔断器以分摊能量。

六、选型与使用建议

  • 确认工作电压:选用 Vrwm=30 V 型号仅当电路最大工作电压显著低于 30 V。为获得更好的余量,建议工作电压不超过 Vrwm 的 70–80%。
  • 考虑脉冲类型:如果系统可能遭受短时高幅度冲击(8/20 μs),参考 1 kW@8/20 μs 的能力并核算实际峰值电流与钳位;如果为长尾低能量冲击(10/1000 μs),使用 200 W 标称值及对应 Ipp(约 4.13 A)为依据。
  • 系统保护策略:TVS 是瞬态钳位器件,不适合作为持续过压的长期承载元件。对于重复或持续的过压事件,需辅以限流、熔断或稳压电路。

七、注意事项

  • 运行环境温度、频繁浪涌次数与 PCB 散热条件会影响器件实际能力与寿命。
  • 在高可靠性或车规场景,请核实厂商完整数据表与可靠性认证。
  • 对双向保护需求,选用相应双向型号以避免极性问题。

总结:SMF30A 在 SOD-123 小尺寸中提供了快速、低泄漏且可靠的瞬态抑制能力,适合多种接口与电源保护场合。选型时请根据实际工作电压、浪涌波形与能量分布,结合PCB散热与保护策略,确保长期稳定运行。

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