WMSIC Electronic Components

RICHTEK RT5789BGQUF

ModelRT5789BGQUF
PackageUDFN-8L(2x2.5)
BrandRICHTEK
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
RICHTEK RT5789BGQUF
Type
RICHTEK
Minimum package
1500 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
RICHTEK
Electronic Component
RT5789BGQUF
Electronic Component
1
Package
UDFN-8L(2x2.5)
Electronic Component
DC-DC Power Supply IC
Electronic Component
0.045g
Electronic Component
1
Features
Output
Type
Electronic Component
Synchronous
Electronic Component
Electronic Component
BM0230063818
Operating Temperature
40℃~+125℃@(TJ)
Operating Voltage
2.5V~6V
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.

RT5789BGQUF 产品概述

一、概述

RT5789BGQUF 是 RICHTEK(立锜)推出的一款降压型同步开关稳压器 IC,采用 UDFN-8L(2.0 × 2.5 mm) 小封装,面向空间受限的高效电源设计。该器件工作电压范围宽(2.5 V 至 6 V),输出可调(0.6 V 至 6 V),内置功率开关,最高输出电流可达 6 A,开关频率为 1.5 MHz,静态电流(Iq)仅 600 μA,适合便携设备、通信与工业接口等对高效率、小体积与中高电流有综合要求的场景。

二、主要规格亮点

  • 输入电压 VIN:2.5 V ~ 6 V
  • 输出电压 VOUT:0.6 V ~ 6 V(可调)
  • 最大输出电流:6 A
  • 开关频率:1.5 MHz(固定)
  • 静态电流 Iq:600 μA(轻载低功耗特性)
  • 同步整流:内置同步 MOSFET,提高轻载与重载效率
  • 开关管:内部集成,简化外部布局与器件选型
  • 工作温度:-40 ℃ ~ +125 ℃(结温,TJ)
  • 封装:UDFN-8L (2 × 2.5 mm)
  • 拓扑:降压(Buck),单输出通道

三、功能与保护特性

RT5789BGQUF 集成了用于实际应用的完整功能集,常见包括:

  • 可调输出:通过外围分压电阻轻松设置所需输出电压,支持广泛电压点。
  • 高效率同步整流:内置上/下桥 MOSFET,降低导通损耗,提升转换效率,特别在中大电流输出时效果明显。
  • 低静态电流:600 μA 的静态电流有助于待机与轻载功耗控制。
  • 热关断与过流保护:保障器件与系统在异常条件下安全工作(标准开关稳压器普适保护机制)。
  • 启动/软启动控制:限制启动冲击电流,减少输出电压过冲(实际设计请参考数据手册的软启动描述)。

(注:具体保护阈值、软启动时间及其他控制细节请以官方数据手册为准。)

四、封装与热性能

UDFN-8L (2 × 2.5 mm) 小型封装适合 PCB 面积受限的系统设计。由于器件可输出 6 A 电流,良好的 PCB 铜箔散热与热过渡设计非常重要:

  • 建议在 PCB 布局时在器件底部与周围放置足够的散热地/电源平面,加强热扩散。
  • 接地与电源走线应尽量短且宽,减小寄生电阻与电感。
  • 输出电感和输入/输出电容应靠近 IC 布局,以降低环路面积与 EMI。

五、典型应用场景

  • 智能手机、平板等便携设备的核心电源或外设供电
  • 无线通信设备、电源模块与基站子模块
  • 工业控制、便携测试设备等需要紧凑、高效降压转换的应用
  • 多通道电源系统中的单通道供电模块

六、设计要点与选型建议

  • 电感选择:选用能承受峰值电流(> 6 A)的低直流电阻(DCR)功率电感;对 1.5 MHz 的工作频率,常用电感值多在数百 nH 至数 μH 范围,需依据输出电流与允许纹波电流计算。
  • 输出电容:优先选择低 ESR 的 MLCC,减少输出纹波与提升瞬态响应;必要时并联少量钽/铝电解以改善滤波性能。
  • 输入电容:靠近 VIN 引脚放置足够的去耦电容(低 ESR),抑制输入电压尖峰与 EMI。
  • 布局注意:关断回路(MOSFET、二极管、开关节点)与回流路径应尽量短并靠近 IC;保持敏感的反馈网络远离开关节点噪声。
  • 热管理:若长时间满载工作,应考虑铜箔加厚、热过孔或散热金属垫片等散热措施。

七、总结

RT5789BGQUF 以小型封装、宽输入范围、可调输出与 6 A 输出能力为特点,结合 1.5 MHz 的高开关频率与内置同步 MOSFET,适用于对体积、效率及输出电流有均衡要求的电源方案。设计时重点关注电感与电容选型、PCB 布局与散热管理,可实现可靠且高效的降压转换。欲进行最终设计,请以 RICHTEK 官方数据手册为参考依据,完成详细电气与热性能验证。

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