WMSIC Electronic Components

DIODES AP64500SP-13 AP64500SP

ModelAP64500SP-13
PackageSO-8-EP
BrandDIODES
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 Date code within 2 years

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
DIODES AP64500SP-13
Type
DIODES
Minimum package
4000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
DIODES
Electronic Component
AP64500SP-13
Electronic Component
1
Package
SO-8-EP
Electronic Component
DC-DC Power Supply IC
Electronic Component
0.3g
Electronic Component
1
Features
Frequency Synchronous;;; EMI Optimization
Type
Electronic Component
Synchronous
Electronic Component
Electronic Component
BM0058399460
Operating Temperature
40℃~+85℃
Operating Voltage
3.8V~40V
Switching Frequency
100kHz~2.2MHz
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.

AP64500SP-13 产品概述

一、产品简介

AP64500SP-13 是一款高集成度、可调输出的降压型 DC-DC 开关稳压器,采用同步整流以提高转换效率,适用于需要高效率与小待机功耗的点对点供电场合。器件采用 SO-8-EP 封装(带底部导热焊盘),内置开关管,支持宽输入电压范围及高达 5A 的连续输出能力,工作温度范围为 -40℃ 至 +85℃,静态电流仅 25μA,开关频率可在 100kHz 至 2.2MHz 之间工作,输出电压可通过外部电阻分压调节,覆盖 0.8V 至 39V(应用端通常限制于 40V)。

主要参数一览:

  • 输入电压范围:3.8V ~ 40V
  • 输出电流:最高 5A(连续,视散热条件)
  • 输出电压调节范围:0.8V ~ 39V(可调)
  • 开关频率:100kHz ~ 2.2MHz(可选/可配置)
  • 静态电流(Iq):25μA(低待机功耗)
  • 拓扑结构:降压(Buck),同步整流
  • 开关管:内置
  • 封装:SO-8-EP(带散热焊盘)
  • 工作温度:-40℃ ~ +85℃

二、主要特性与优势

  • 宽输入电压范围:支持从低压电源到高压电源的输入,方便直接与多种电池组或工业总线电源配合。
  • 同步整流:内置同步整流器替代外置肖特基二极管,显著提升轻载及重载下的效率,减少系统发热。
  • 低静态电流:25μA 的待机电流适合对待机功耗敏感的便携或低功耗应用。
  • 高集成度:内置开关管与控制器,简化外部元件数量与 PCB 布局复杂度。
  • 可调输出:反馈网络可灵活设置所需输出电压,覆盖从低压核心电源到高压供电的需求。
  • 高频工作:支持最高 2.2MHz 开关频率,允许使用更小体积的电感与滤波元件,利于小型化设计。

三、典型应用场景

  • 工业控制与通信设备的点对点电源(如分布式供电、隔离后本地稳压)
  • 单/多节电池供电系统的降压稳压(工业电池组、便携工具)
  • 网络设备和基站辅助供电
  • 嵌入式系统与模块化电源的点负载供电
  • LED 驱动(在可调输出与限流配合下适用较高电压负载)

四、设计与选型建议

  • 开关频率选择:高频(接近 MHz 级)可显著减小电感与输出电容体积,但会增加开关损耗与 EMI,需平衡效率与尺寸。对于 5A 级负载,建议根据效率测试选择 300kHz ~ 1MHz 范围内的频率以获得较好综合性能。
  • 电感选择:请选择能承受峰值电流且具足够饱和电流裕度的功率电感。为控制电流纹波,将纹波电流限定在 20%~40% 的输出电流范围内作为设计目标。
  • 输入/输出电容:使用低 ESR 的陶瓷或固态电容作为输入和输出滤波器,输入电容应紧贴 VIN 与 GND 引脚以减少环路寄生,输出电容需保证在最大负载与温度条件下满足纹波与稳定性要求。
  • 热管理:SO-8-EP 的底部散热焊盘对热性能影响显著。建议在 PCB 底部和上层做足够的铜箔并配合多过孔导热至内层/底层,确保在高负载下有效散热,以维持器件在安全的结温范围内工作。
  • PCB 布局要点:最小化高电流回路(输入电容—开关节点—电感—输出)的环路面积;将反馈网络远离开关节点噪声源,并确保参考地回流路径清晰可靠。

五、使用注意事项

  • 由于器件支持高输入电压(最高可达 40V),务必确认实际系统电压脉冲或瞬态不会超过器件最大额定值,必要时在输入端加入 TVS 或缓冲措施。
  • 在选择输出电压通过反馈网络设定时,应考虑器件的参考电压容差与温度漂移,必要时增加校准或精密分压电阻以保证精度。
  • 评估负载瞬态响应要求,适当选择旁路与快速响应的输出电容,以满足瞬态时的电压保持。

总结:AP64500SP-13 以其宽输入范围、低待机电流、同步整流与高集成度,适合用于对效率、热管理与体积有综合要求的降压电源设计。合理的元件选型与 PCB 热/布局优化,可发挥其在 5A 级点负载供电中的最佳性能。若需原理图参考或布局范例,可基于该器件的典型参数进一步定制设计方案。

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