WMSIC Electronic Components

ETA ETA3496S2F

ModelETA3496S2F
PackageSOT23-5
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 ETA3496S2F
Type
ETA
Minimum package
3000 编带

Technical parameters

Electronic Component
Electronic Component
Electronic Component
ETA
Electronic Component
ETA3496S2F
Electronic Component
1
Package
SOT23-5
Electronic Component
DC-DC Power Supply IC
Electronic Component
0.043g
Electronic Component
1
Features
EMI Optimization
Type
Electronic Component
Synchronous
Electronic Component
Electronic Component
BM0233669447
Operating Temperature
40℃~+85℃
Operating Voltage
2.5V~7.2V
Switching Frequency
1.2MHz
Electronic Component
Electronic Component

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

ETA3496S2F 产品概述

一、主要特点

ETA3496S2F 是钰泰(ETA)推出的一款降压型(Buck)同步开关稳压器,采用 SOT23-5 小封装,内置功率开关,支持同步整流以提高效率。器件工作电压范围为 2.5V 至 7.2V,输出电压可调范围为 0.6V(内部参考)至 5.0V,最大输出电流 1.2A,开关频率 1.2MHz,工作温度范围 -40℃ 至 +85℃。单通道输出,适合空间受限的便携和嵌入式应用。

二、关键参数(摘要)

  • 功能类型:降压型(Buck)
  • 输入电压:2.5V ~ 7.2V
  • 输出电压:0.6V ~ 5.0V(可调,内部参考 600mV)
  • 最大输出电流:1.2A
  • 开关频率:1.2MHz
  • 同步整流:是(无需外接肖特基)
  • 封装:SOT23-5
  • 工作温度:-40℃ ~ +85℃
  • 拓扑/管型:降压式,内置开关管 (具体管脚定义、保护特性和时序请参阅原厂资料表)

三、典型应用场景

  • 电池供电设备:可为 MCU、BLE 芯片、传感器等提供高效电源转换
  • 便携式仪表、手持设备、智能穿戴外围电源
  • 工业控制与物联网节点的辅助稳压电源
  • 需要高频、快速瞬态响应的小型电源模块

四、设计与选型建议

  • 输出电压设定:利用内部 0.6V 基准,采用外部分压电阻 R1(上)与 R2(下),满足 Vout = 0.6V × (1 + R1/R2)。
  • 电感选择:为兼顾体积与纹波电流,建议将电感电流纹波 ΔI 取整流电流 20%~40%。计算公式 ΔI = (Vin - Vout) × D / (L × f),其中 D≈Vout/Vin。举例:Vin=5V、Vout=3.3V、f=1.2MHz、ΔI≈0.3A(≈25%×1.2A)时,L≈3.3µH。
  • 输入/输出电容:推荐低 ESR 陶瓷电容(X5R/X7R)作主容,输入端常用 4.7µF22µF,输出端 10µF47µF,具体按纹波与稳定性评估。
  • 开关频率与布局:1.2MHz 频率有利于减小外部元件体积,但对 PCB 布局与 EMI 要求更高。

五、PCB 布局与散热建议

  • 缩小高 di/dt 回路面积:VIN、开关节点(SW)、输入电容、功率地应尽量靠近,形成最短环路。
  • 输出电容接地回路应独立,地线汇流点设计合理以降低噪声耦合。
  • SOT23-5 封装散热有限,建议在 IC 下并向四周铺铜散热,通过过孔连接多层地铜以改善热阻。
  • 对 EMI 敏感应用可在输入端加磁珠和陶瓷旁路,避免在开关节点使用长走线或大铜面。

六、注意事项与验证要点

  • 请以厂商最新版数据手册为准,确认器件的具体引脚排列、使能门限、软启动、过流与热保护等功能。
  • 实测时关注启动特性、瞬态恢复(负载跳变)、稳态效率与输出纹波。
  • 在高温或满载条件下验证温升与热关断行为,确保长期可靠性。

ETA3496S2F 以小封装、高开关频率和同步整流优势,适合对体积和效率有较高要求的降压电源设计。根据实际负载与 EMI 要求,合理选型电感与滤波电容,并优化 PCB 布局,即可发挥器件最佳性能。

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