WMSIC Electronic Components

MDD BZT52C4V7S

ModelBZT52C4V7S
PackageSOD-323
BrandMDD
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
MDD BZT52C4V7S
Type
MDD
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
MDD
Electronic Component
BZT52C4V7S
Electronic Component
1
Package
SOD-323
Electronic Component
Zener Diode
Electronic Component
0.032g
Electronic Component
1
(Zzt)
130Ω
Electronic Component
BM0264463838
Diode
1
Current(Ir)
2uA@1V
Power Dissipation(Pd)
200mW
Electronic Component
4.4V~5V
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.

BZT52C4V7S稳压二极管产品概述

一、产品基本身份信息

BZT52C4V7S是MDD品牌推出的独立式稳压二极管,型号后缀明确其封装类型为SOD-323微型表面贴装封装(用户标注“封装未知”为笔误,型号名已包含SOD-323)。该封装体积极小(典型尺寸1.6mm×0.8mm),适配高密度PCB布局,是便携电子、小型模块的理想选择。

二、核心电性能参数详解

该器件的关键参数直接决定其应用范围,需重点关注:

  1. 稳压值标称值:4.7V
    设计电路时的典型参考电压,是稳压管的核心功能指标。
  2. 稳压值范围:4.4V~5.0V
    覆盖不同工作温度、电流下的实际稳压区间,确保电路稳定性(避免因参数偏差导致功能失效)。
  3. 反向电流(Ir):2μA@1V
    反向偏置1V时的漏电流,数值越小说明反向截止性能越好,可有效降低静态功耗。
  4. 最大耗散功率(Pd):200mW
    器件允许的最大功率上限,电路设计时需严格控制功耗不超过此值(否则会过热损坏)。
  5. 动态阻抗(Zzt):130Ω
    稳压区的电压随电流变化的特性(阻抗越小,稳压精度越高),适合对电压基准有一定要求的场景。

三、封装特点与典型应用场景

1. 封装优势

SOD-323封装具备以下特点:

  • 体积小:适配便携设备、小型传感器模块等高密度布局需求;
  • 表面贴装:支持自动化焊接,生产效率高;
  • 耐温性:满足回流焊(≤260℃)、手工焊接(≤350℃)工艺要求。

2. 核心应用场景

结合4.7V稳压值、小封装特性,主要应用于:

  • 便携电子:智能手机、智能手环、蓝牙耳机的电源辅助稳压,为低功耗芯片提供稳定电压;
  • 物联网节点:传感器模块的电压基准源,确保模拟信号采集精度;
  • 数字电路参考:MCU、FPGA的ADC参考电压,提升模数转换准确性;
  • 低压保护:5V/12V电源系统的过压保护辅助(输入超4.7V时击穿,限制后级电压)。

四、典型应用电路说明

以MCU的ADC参考电压电路为例(最常见场景):

  • 连接方式:稳压管负极接5V电源,正极串联1kΩ限流电阻后接地,ADC参考端(VREF)接稳压管与电阻的连接点;
  • 工作原理:5V电源正常时,稳压管反向击穿,输出稳定4.7V给ADC;限流电阻限制电流(约300μA),功耗仅0.9mW(远低于200mW上限);
  • 优势:避免电源波动对ADC精度的影响,同时保护MCU不受过压损坏。

五、选型与使用注意事项

  1. 功率匹配:计算实际功耗P=(V_in - V_z)*I_z,必须≤200mW(V_in为输入电压,I_z为工作电流);
  2. 限流电阻选型:必须串联限流电阻,阻值公式R≥(V_in_max - V_z)/I_z_max(I_z_max=Pd/V_z≈42.5mA);
  3. 温度影响:硅稳压管稳压值随温度升高略有增加(约+2mV/℃),高精度场景需加温度补偿;
  4. 焊接工艺:SOD-323封装焊接时,回流焊温度≤260℃(时间≤10秒),手工焊用细烙铁头(避免损坏器件);
  5. 极性识别:稳压管反向击穿工作,SOD-323封装负极通常印有色环/标识,接反会导致无法稳压甚至烧毁。

六、替代与兼容参考

若需替代,可选择以下同参数器件:

  • 村田LMSZ52B4V7T1G(SOD-323,4.7V/200mW);
  • 三星ZMM4V7(SOD-323,4.7V/200mW);
  • 国产TYN4V7(SOD-323,4.7V/200mW)。

该器件凭借稳定的4.7V稳压性能、小封装及低功耗,成为低压基准电路的经典选择,广泛应用于消费电子、物联网等领域。

Request for quote

Send RFQ

Use the form for single models, category sourcing, and multi-line BOM requirements.

Send your target model and quantity.

Product sourcing intelligence

Model, package, availability, and BOM fit reviewed before quotation.

WMSIC turns product data, package visuals, BOM context, and sourcing signals into practical RFQ notes for buyers.

Electronic component model and package intelligence review on an ESD-safe inspection bench

Model & package intelligence

Model text, package form, tray or reel details, and visual evidence are reviewed together before RFQ feedback.

BOM matching and alternative component comparison workstation with protected IC samples

BOM matching & alternatives

BOM lines are compared by package, parameters, quantity, and workable alternatives for cleaner sourcing decisions.

Electronic component sourcing availability dashboard with ESD-protected samples

Sourcing availability signal

Stock routes, quotation confidence, lead-time notes, and shipment feasibility are checked before sales follow-up.

Buyer sourcing scenarios

Examples of how common component sourcing requests are organized.

Typical RFQ scenarios based on the WMSIC form fields, catalog data, manual review steps, and shipment preparation workflow.

The buyer shares the full part number, package requirement, quantity, destination, and available product photos so the quotation can record the exact version under review.

Package confirmation Typical RFQ workflow

A multi-line BOM is organized into direct sourcing lines, lines that need package clarification, and lines where alternative-part review is permitted.

Mixed BOM triage Typical RFQ workflow

The original manufacturer part number, datasheet revision, application, critical limits, and acceptable changes are collected before possible candidates are discussed.

Obsolete-part review Typical RFQ workflow

Sample quantity, minimum packing, package format, target date, and courier destination are kept together in one RFQ conversation.

Small-batch request Typical RFQ workflow

Package photos, model markings, board context, and the quantity needed for repair help focus the sourcing review on the relevant version.

Repair batch evidence Typical RFQ workflow

When a suffix or package note is incomplete, the response records the open difference and requests buyer confirmation before procurement proceeds.

Model suffix clarification Typical RFQ workflow

Packing format, carton notes, invoice details, courier option, destination, and tracking handoff are coordinated around the confirmed order.

Export handoff Typical RFQ workflow

The request connects the previously used model, current demand, package evidence, target timing, and replenishment sourcing route.

Replenishment inquiry Typical RFQ workflow

Related products

Packaged components ready for RFQ.