WMSIC Electronic Components

Jingdao Microelectronics BZT52C12SW

ModelBZT52C12SW
PackageSOD-323W
BrandElectronic
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
Electronic BZT52C12SW
Type
Jingdao Microelectronics
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
Electronic
Electronic Component
BZT52C12SW
Electronic Component
1
Package
SOD-323W
Electronic Component
Zener Diode
Electronic Component
0.027g
Electronic Component
50
(Zzk)
150Ω
(Zzt)
25Ω
Electronic Component
BM0259565384
Diode
1
Current(Ir)
100nA@8V
Power Dissipation(Pd)
200mW
Electronic Component
11.4V~12.7V
Electronic Component
55℃~+150℃

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

BZT52C12SW — 晶导微电子 12V 独立式稳压二极管(SOD-323W)产品概述

一、产品简介

BZT52C12SW 是晶导微电子推出的一款小尺寸独立式稳压二极管,封装为 SOD-323W,标称稳压值 12V,实际稳压值范围为 11.4V ~ 12.7V。该器件属于低功耗表面贴装稳压二极管,适用于对体积、成本和可靠性有要求的电压基准与过压保护场合。器件在较宽的结温范围(-55℃ ~ +150℃)内可正常工作,适合消费类电子、工业控制和通信终端等应用。

二、主要电气参数(关键指标)

  • 稳压值(标称):12V
  • 稳压值范围:11.4V ~ 12.7V
  • 反向电流 Ir:100 nA @ 8V(说明器件在 8V 反向偏置下的漏泄电流非常低)
  • 最大耗散功率 Pd:200 mW
  • 直流/交流阻抗:Zzt = 25 Ω;Zzk = 150 Ω(表征不同工作点下的动态阻抗特性)
  • 工作结温范围:-55℃ ~ +150℃
  • 封装:SOD-323W(表面贴装,适合自动贴装和回流焊工艺)
  • 器件类型:独立式稳压二极管(分立)

注:Zzt 与 Zzk 分别反映在测试电流下的动态阻抗与低电流拐点附近的阻抗特性,影响稳压精度与噪声特性。

三、电气特性解读与工程计算

  • 最大允许电流(在允许功耗 Pd 下的理论值):Imax = Pd / Vz = 0.200 W / 12 V ≈ 16.7 mA。
    说明:这是在器件能耗不超过额定耗散功率时的极限电流值。实际工程设计应考虑安全裕量与结温上升,建议在该理论值下留足余量(例如工作电流取 Imax 的 30%~60% 以延长可靠性并降低结温)。
  • 低漏电流特性(Ir = 100 nA @8V)使该型号适合用于待机或对漏电敏感的参考电路。
  • 动态阻抗 Zzt(25 Ω)表示在较高稳压电流下输出阻抗较低,有利于稳压精度;而 Zzk(150 Ω)表示在低电流区域稳压性能下降,设计时应避免长期工作在拐点电流以下以免出现较大稳压误差。

示例(限流电阻计算思路): 若输入电压为 Vin,目标输出约 12V,期望稳压二极管工作电流 Iz(选定 Iz 应小于 Imax 且满足稳压精度要求),则限流电阻 Rs = (Vin - 12V) / Iz。设计时要考虑 Iz 的上限由器件功耗限制,下限由稳压精度要求及动态阻抗影响决定。

四、典型应用场景

  • 低功耗电源的简单稳压与参考源(便携设备、传感器前端)
  • 过压/浪涌钳位与输入保护(配合限流电阻或串联元件)
  • 基本偏置电路与电平保护(用于接口或模拟前端)
  • 备用电路与待机电路的低漏电压基准(得益于极低的反向漏电)

五、封装与工艺注意事项

  • SOD-323W 为小型表面贴装封装,适合自动化贴装与回流焊。推荐按照厂家或行业通用的回流温度曲线进行焊接,避免超出器件规定的热冲击范围。
  • 尺寸小巧,散热能力受限,应注意 PCB 布局中的热管理(加大铜箔面积或设置散热过孔可帮助降低结温)。
  • 在高环境温度或连续高功耗工作情况下,应对器件耗散功率进行热降额计算,以免超过额定 Pd 导致寿命下降或失效。

六、选型与使用建议

  • 若系统对稳压精度要求严格,需关注稳压值的实际范围(11.4V~12.7V)与动态阻抗在目标工作电流下的行为,必要时在电路中加缓冲稳压或误差放大电路。
  • 典型应用中将工作电流控制在理论 Imax 的较低百分比(如不超过 50%)可显著提高可靠性与热稳定性。
  • 结合 PCB 热设计与实际环境温度,对 Pd 进行合理降额,并在关键场合做过温保护或监测。
  • 若需更低噪声或更精确的参考,请考虑专用带电流源的精密电压参考器件而非通用稳压二极管。

结论:BZT52C12SW(晶导微电子)以其小型封装、低漏电和适中的耗散能力,适合用于体积受限、要求简单稳压或过压保护的电路。合理的工作电流选择与热管理是确保其长期稳定运行的关键。

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