WMSIC Electronic Components

ETA ETA8120S2G

ModelETA8120S2G
PackageSOT23-6
BrandETA
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
ETA ETA8120S2G
Type
ETA
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
ETA
Electronic Component
ETA8120S2G
Electronic Component
1
Package
SOT23-6
Electronic Component
DC-DC Power Supply IC
Electronic Component
0.042g
Electronic Component
1
Type
Electronic Component
Synchronous
Electronic Component
Electronic Component
BM0226444647
Operating Temperature
40℃~+85℃
Operating Voltage
4.5V~18V
Switching Frequency
600kHz
Electronic Component
Electronic Component
Output Current
2A

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

ETA8120S2G 产品概述

ETA8120S2G 是钰泰(ETA)面向中小功率点降压转换的同步整流开关稳压器,采用降压拓扑、SOT23-6 封装,集成高侧/低侧开关管,适合空间受限且对效率与待机功耗有要求的嵌入式系统。器件支持可调输出、输入电压范围宽、工作温度范围广,适用于便携类、通讯与工业类电源设计。

一、主要参数与特点

  • 输出类型:可调(外接分压电阻设置输出电压)
  • 输入电压:4.5V ~ 18V
  • 输出电流:最大 2A(连续)
  • 拓扑结构:降压式(同步整流)
  • 开关频率:600kHz,频率固定,有利于小外围元件和稳定 EMI 方案
  • 开关管:内置(高集成度,外部只需被动元件)
  • 静态电流(Iq):177µA,适合需低待机损耗的应用
  • 工作温度:-40℃ ~ +85℃
  • 封装:SOT23-6,利于小尺寸 PCB 布局

二、优势与设计亮点

  • 同步整流结构降低了整流损耗、在中低压差条件下效率更高,特别适合电池供电或 12V 转 5V/3.3V 场景。
  • 集成开关管减小 PCB 面积和外部驱动复杂度,简化 BOM。
  • 600kHz 开关频率兼顾效率与外设体积,可使用较小尺寸的电感与电容,适合空间受限应用。
  • 低静态电流有助于降低待机功耗,适用需长待机寿命的便携设备与 IoT 节点。

三、典型应用场景

  • 车载与工业 12V/24V 辅助电源(满足 -40~+85℃ 工况)
  • 手持/便携设备电源管理(由 5~18V 来源降压至 3.3V/1.8V)
  • 通讯设备、路由器、监控摄像头的局部稳压模块
  • 需要高效率与低待机电流的嵌入式系统

四、外部元件建议与布局要点

  • 输入滤波:在 VIN 与 GND 之间靠近封装放置 10µF~47µF 低 ESR 陶瓷电容,并并联 1µF 高频陶瓷以抑制尖峰。
  • 电感:根据输出电流与纹波要求选择 2.2µH~10µH 的功率电感,注意 DC 电阻和饱和电流应大于最大输出电流。
  • 输出滤波:推荐使用低 ESR 陶瓷电容(例如 22µF~100µF,视输出电压与负载动态而定),可抑制输出纹波与瞬态。
  • 反馈网络:通过外接分压电阻设置输出电压,分压阻值建议总阻值在几十 kΩ 范围以平衡噪声与偏置电流影响。
  • 布局:VIN、GND、SW 节点走线尽量短且粗,输入电容应靠近 VIN 引脚,输出电感与电容靠近 SW 与 VOUT,FB 引脚与分压电阻应远离高频开关噪声源。

五、散热与可靠性建议

  • SOT23-6 封装散热能力有限,2A 连续输出在较高输入-输出压差时会产生较大功耗,应保证 PCB 有足够铜箔面积和散热通道,必要时在器件下方与引脚处做大面积敷铜与过孔散热。
  • 在高温或高功率工况下,考虑在布局时留足空气对流空间或在板上增加散热铜箔,避免热堆积影响长时间可靠性。

六、使用注意事项

  • 启动与关断顺序:输入电源先于其他敏感节点接入,避免在输入瞬变大时对器件造成应力。
  • EMI 控制:若系统对电磁兼容要求高,可在输入/输出端配合共模/差模滤波并通过布局、接地分割降低辐射。
  • 选件验证:在最终硬件中,请基于目标负载做效率、热升、负载暂态与稳定性验证,并调整电感与输出电容组合以满足要求。

如需参考原理框图、详细脚位说明或典型应用电路图,可提供您现有的输出电压、负载范围与 PCB 限制,我可以给出更具体的元件选型与布局建议。

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