WMSIC Electronic Components

Siproin SSP9301

ModelSSP9301
PackageSOT-23-5
BrandSIPROIN
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
Siproin SSP9301
Type
SIPROIN
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
SIPROIN
Electronic Component
SSP9301
Electronic Component
1
Package
SOT-23-5
Electronic Component
DC-DC Power Supply IC
Electronic Component
0.044g
Electronic Component
1
Features
Output
Type
Electronic Component
Synchronous
Electronic Component
Electronic Component
BM0265584582
Operating Temperature
40℃~+125℃
Operating Voltage
2.7V~5.5V
Switching Frequency
1.5MHz
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.

SSP9301 降压型DC-DC转换器产品概述

一、产品定位与核心应用方向

SSP9301是上海矽朋(Siproin)推出的小封装同步降压DC-DC转换器,针对便携电子、低功耗物联网终端、智能穿戴等对体积、功耗、效率有严格要求的场景设计。其输入电压覆盖单节锂电池(2.7V~4.2V)与USB5V供电,输出1A持续电流满足多数轻负载设备需求,低静态电流与同步整流技术则重点解决电池供电设备的续航痛点。

二、关键性能参数深度解析

1. 输入输出范围

  • 输入电压:2.7V~5.5V,兼容单节锂电池(典型3.7V)、USB5V电源,覆盖主流便携设备供电场景;
  • 输出电压:可调式,通过外部电阻分压设置(公式:(V_{out}=0.8V \times (1+R_{top}/R_{bottom}))),实际可调范围为0.8V~输入电压(降压拓扑特性),适配MCU、传感器、音频芯片等不同负载的电压需求。

2. 输出与功耗特性

  • 输出电流:持续1A(峰值可支持更高负载),满足智能手环、TWS耳机等设备的核心负载需求;
  • 静态电流(Iq):仅40uA,是同类产品中的低功耗优势——电池供电时,待机模式下几乎无额外功耗,可显著延长设备待机时间(如1000mAh电池理论待机可达25000小时以上);
  • 开关频率:1.5MHz,高于音频频段(20kHz~20kHz),有效降低电磁干扰(EMI),同时允许使用小体积电感/电容(如10uH陶瓷电感、22uF陶瓷电容),进一步压缩PCB空间。

3. 效率与集成度

  • 同步整流:内置高低侧同步MOS管,替代传统续流二极管,轻负载下效率提升10%~15%(典型效率≥90%),减少发热;
  • 内置开关管:无需外置功率MOS,简化电路设计,减少元件数量与成本,适合批量生产。

三、拓扑结构与设计亮点

SSP9301采用降压式(Buck)拓扑,结合同步整流技术实现高效能量转换:

  • 高低侧MOS管交替导通,电感储能/放电维持输出稳定;
  • 同步整流避免了异步Buck中续流二极管的压降损耗(典型0.3V~0.7V),尤其在低输入电压(如2.7V)下,效率提升更明显;
  • 集成软启动功能(隐含特性,避免开机浪涌电流),提升设备可靠性。

四、封装与散热特性

  • 封装形式:SOT-23-5,超小尺寸(约2.9mm×1.6mm),适合智能手环、蓝牙耳机等紧凑腔体设计;
  • 散热能力:尽管封装小巧,但同步整流带来的低损耗(如1A输出时,输入5V/输出3.3V的功率损耗仅约0.5W),无需额外散热片即可稳定工作,满足便携设备的无散热设计要求。

五、典型应用场景

  1. 智能穿戴设备:智能手环、手表的MCU、心率传感器供电,低静态电流延长待机至数周;
  2. 无线音频设备:TWS蓝牙耳机的音频芯片供电,1A输出满足解码/放大需求,小封装适配耳机腔体;
  3. 物联网终端:低功耗传感器节点(温湿度、运动传感器)、智能门锁的辅助供电,兼容锂电池与USB充电;
  4. 便携电子配件:移动电源的小负载降压模块(如给LED灯、小风扇供电),体积小巧不占用额外空间。

六、使用注意事项

  1. 电感选择:推荐10uH~22uH陶瓷电感(低ESR),1.5MHz频率下损耗最小;
  2. 输出电容:需并联≥22uF陶瓷电容(低ESR),稳定输出电压纹波(典型<50mV);
  3. 电阻分压:分压电阻建议选10kΩ~100kΩ(避免漏电流影响精度),如Vout=3.3V时,Rtop=31.6kΩ、Rbottom=10kΩ;
  4. 布局优化:电感、输入/输出电容应靠近芯片放置,减少环路面积,降低EMI。

SSP9301凭借“小封装、低功耗、高效率”的核心优势,成为便携电子领域轻负载降压场景的高性价比选择,可有效简化电路设计并提升设备续航能力。

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