WMSIC Electronic Components

Littelfuse SZ1SMB28CAT3G

ModelSZ1SMB28CAT3G
PackageSMB
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 26+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
Littelfuse SZ1SMB28CAT3G
Type
LITTELFUSE
Minimum package
2500 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
LITTELFUSE
Electronic Component
SZ1SMB28CAT3G
Electronic Component
1
Package
SMB
Electronic Component
Electronic Component
Type
TVS
Electronic Component
ESD and Surge Protection (TVS / ESD)
Electronic Component
0.22g
Electronic Component
1
Cj- Capacitor
590pF
Electronic Component
BM0227209094
Operating Temperature
65℃~+150℃
Voltage
45.4V
Electronic Component
IEC 61000-4-2
Current(Ir)
5uA

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

SZ1SMB28CAT3G 产品概述

SZ1SMB28CAT3G 是 Littelfuse(美国力特)推出的一款双向瞬态电压抑制二极管(TVS),采用 SMB 封装,专为汽车及工业环境下的瞬态浪涌和ESD防护设计。该器件在 1 ms 脉冲条件下可提供高达 600 W 的峰值脉冲功率,兼具宽温度范围、低泄漏和工业级可靠性,适用于保护供电总线与敏感电子器件免受高能瞬态干扰。

一、主要电气参数(关键指标)

  • 类型:双向 TVS(双极性保护)
  • 反向截止电压 Vrwm:28 V(稳态耐受电压)
  • 击穿电压(典型):34.4 V
  • 钳位电压 Vc(典型):45.4 V(在指定脉冲条件下)
  • 峰值脉冲功率 Ppp:600 W @ 1 ms
  • 峰值脉冲电流 Ipp:13.2 A @ 1 ms
  • 反向漏电流 Ir:典型 5 µA(常温)
  • 结电容 Cj:590 pF(在指定偏压下)
  • 工作温度范围:-65 ℃ 至 +150 ℃
  • 防护等级/认证:符合 IEC 61000-4-2(ESD 抗扰度)
  • 封装:SMB,2 引脚表面贴装

二、特性亮点与工程意义

  • 高功率吸收能力:600 W 的 1 ms 峰值能量能力,使其能有效吸收来自雷击、电源浪涌或负载开关产生的高能瞬态,保护后端电路不被破坏。
  • 双向抑制:对正负极性瞬态均有效,适合交流信号线、差分线路或可能出现反向脉冲的场合。
  • 低漏电流:5 µA 的低静态漏电有利于低功耗系统与电池供电设备,减小待机损耗。
  • 宽温区与车规适应性:-65 ℃ 到 +150 ℃ 的工作温度覆盖严苛环境,满足汽车及工业级应用温度要求。
  • 兼容 ESD 标准:通过 IEC 61000-4-2 认证,能承受较高等级的静电放电冲击,适合连线口、接口板、外部连接器等防护。

三、典型应用场景

  • 汽车电源总线与附件线路(包含 24 V/28 V 系统或可能的电压尖峰环境)
  • 工业设备的电源输入与传感器接口防护
  • I/O 接口、通信线缆入口、防护板(如车载娱乐系统、控制器、诊断接口)
  • 对称差分线或可能出现双向瞬变的线路(需注意结电容对高速信号的影响)

四、封装与 PCB 布局建议

  • SMB 封装便于回流焊接与自动化贴装,尺寸小巧,利于高密度板设计。
  • 放置位置:建议尽量靠近受保护的连接器或电源入口,减小串联走线电感与环路面积,以提升吸能效率。
  • 熔断与散热:虽为瞬态器件,但在多次能量冲击后器件和焊盘会升温,应确保足够的散热路径与铜箔面积。
  • 推荐参考 Littelfuse 官方的 PCB 封装与焊盘图样,遵循制造商的安装指南以保证可靠性与一致性。

五、选型与设计注意事项

  • 钳位电压与后级耐压:45.4 V 左右的钳位电压意味着被保护电路需能承受该电压短时冲击;若后端器件耐压较低,应选择钳位更低或并联其他保护方案。
  • 结电容影响:590 pF 的结电容在高速信号(如 USB、高速 CAN)上可能引入失真、带宽限制或阻抗不匹配,应评估对信号完整性的影响;对高频链路可考虑低电容类型的 TVS 或在差分线上使用对称布局。
  • 脉冲规格对比:器件所标 Ipp、Ppp 基于 1 ms 曲线,实际冲击宽度不同(如 IEC 雷电脉冲或短脉冲 ESD)时需结合能量密度判断是否满足要求。
  • 多次冲击场景:若系统面临频繁浪涌或重复冲击,应评估器件在循环冲击下的退化机制并考虑加装一级前置抑制(如气体放电管)或限流元件。

六、小结与推荐

SZ1SMB28CAT3G 提供了高能量吸收、双向抑制和工业/车规级的宽温性能,适合用于需要鲁棒瞬态保护的电源与接口场合。在系统设计时应重点关注钳位电压与后端器件耐压匹配,以及其较高的结电容对高速信号的影响。建议在最终选型与布局前参考 Littelfuse 的可靠性数据与 PCB 布局范例,并在目标应用环境下做实际浪涌/ESD 验证。

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