WMSIC Electronic Components

DOWO SMBJ5.0CA

ModelSMBJ5.0CA
PackageSMB(DO-214AA)
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 25+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
DOWO SMBJ5.0CA
Type
DOWO
Minimum package
3000

Technical parameters

Electronic Component
DOWO
Electronic Component
SMBJ5.0CA
Electronic Component
1
Package
SMB(DO-214AA)
Electronic Component
Electronic Component
Type
TVS
Electronic Component
ESD and Surge Protection (TVS / ESD)
Electronic Component
0.21g
Electronic Component
1
Electronic Component
BM0258760011
Operating Temperature
55℃~+150℃
Voltage
9.2V
Current(Ir)
800uA
Voltage(VBR)
6.4V
Electronic Component
3000
Power(Ppp)
600W@10/1000us

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

SMBJ5.0CA 产品概述

一、主要特性

SMBJ5.0CA 是一款双向瞬态电压抑制器(TVS),由 DOWO(东沃)提供,专门用于抑制瞬态过压和浪涌脉冲。器件以 SMB(DO-214AA)封装形式提供,适用于印刷电路板(SMT)安装。主要特性包括:工作电压(Vrwm)5V、钳位电压典型值9.2V、峰值脉冲功率600W(10/1000μs),峰值脉冲电流65.22A,击穿电压6.4V,反向泄漏电流800μA,工作温度范围-55℃至+150℃,极性为双向(Bi-directional)。

二、典型电气参数

  • 反向截止电压(Vrwm):5V(额定工作电压)
  • 击穿电压(Vbr):6.4V(起始击穿点)
  • 钳位电压(Vc):9.2V(在额定浪涌条件下典型值)
  • 峰值脉冲功率(Ppp):600W(10/1000μs 波形)
  • 峰值脉冲电流(Ipp):65.22A(与 Ppp、Vc 对应)
  • 反向电流(Ir):800μA(在 Vrwm 条件下)
  • 工作温度:-55℃ ~ +150℃

以上参数在设计防护电路时可以作为选择与计算依据,钳位电压用于判断受保护节点在浪涌时的最高电压,峰值功率与电流用于确定能否承受特定幅值和能量的脉冲。

三、双向器件说明

双向TVS在正负方向上对称工作,无极性之分,适合用于交流或可能出现双向瞬态的电源线、信号线保护。如在交流供电、差分信号或双极电压系统中,可直接并联于被保护端口,正负电压均可被有效钳制。

四、封装与安装

SMB(DO-214AA)封装适合中等功率瞬态抑制,具有良好的焊接可靠性与热耗散能力。建议在PCB布局时:

  • 将TVS尽量靠近受保护端口(如连接器或电源入口)放置,以减小走线感应和串联阻抗;
  • 保持充足的焊盘面积与铜箔散热,必要时在底层增加过孔以提升热流散能力;
  • 双向器件无极性要求,但要确认丝印与封装方向便于检修。

五、典型应用场景

  • 5V 电源轨浪涌保护(USB、IoT 模块、嵌入式系统)
  • 通信接口与以太网端口的瞬态抑制(配合其他串联元件使用)
  • 工业设备、汽车电子中对瞬态高能脉冲的保护(需注意产品是否符合汽车级要求)
  • 保护敏感芯片免受雷击、开关瞬态和静电放电引起的过压损害

六、使用与注意事项

  • 在高能量冲击情况下,钳位电压为典型值,具体峰值可能受温度、焊盘热阻与并联阻抗影响;设计时应留有安全裕度。
  • 反向泄漏电流800μA 在低功耗设计中需要考虑其对偏置电流的影响,尤其是在待机模式或传感器输入上。
  • 器件在多次大能量浪涌后可能退化,推荐根据系统可靠性要求评估是否采用可更换或可复位保护方案。
  • 若用于汽车或严苛环境,请确认器件的额外认证与等级。

七、可靠性与选型建议

选择TVS时,除核心电气参数外建议关注厂商的批量一致性、温漂特性、封装工艺和质量稳定性。对于频繁遭受高能脉冲的应用,考虑更高功率等级的封装或并联多只器件以分担能量。

若需替代或并联使用,请确保替代型号在 Vrwm、Vbr、Vc、Ppp 与封装尺寸上的兼容性,并根据实际浪涌波形(10/1000μs 为典型雷击模拟)调整计算。

如需更多器件数据手册(曲线图、温度系数、焊接规范、过压试验波形等)或PCB封装建议,可进一步提供需求以便给出详细参考。

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