WMSIC Electronic Components

TI UCC27524DR

ModelUCC27524DR
PackageSOIC-8
BrandTI
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+

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Technical data

Product details

20 specifications

Core information

Product name
TI(Texas Instruments) UCC27524DR
Type
TI
Unit
Electronic Component
Minimum package
2500 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
Electronic Component
Electronic Component
TI(Texas Instruments)
Electronic Component
UCC27524DR
Electronic Component
1
Package
SOIC-8
Electronic Component
(UVP)
Electronic Component
Gate Driver IC
Electronic Component
0.11g
Electronic Component
1
Electronic Component
BM69418144
Operating Temperature
40℃~+140℃
Operating Voltage
4.5V~18V
Load Type
MOSFET
Driver
Electronic Component
Current(IOH)
5A

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

UCC27524DR 产品概述

UCC27524DR是德州仪器(TI)推出的一款高性能栅极驱动器,设计用于推动IGBT和N沟道MOSFET器件,其广泛应用于开关电源、逆变器、电机驱动和其他高效能电力电子系统。它的输入兼容性和高峰值输出电流使其成为现代电子应用中不可或缺的元件之一。

1. 主要特点

  • 低端驱动配置:UCC27524DR采用低端驱动方案,使其适合于多种电力电子设备的栅极控制需求,尤其适用于需要高效转换的应用。
  • 独立通道类型:该驱动器拥有两个独立的驱动通道,允许用户同时控制两个不同的半导体器件,提升整体系统的灵活性和设计自由度。
  • 优越的电气性能:
    • 电压供电范围:具有4.5V ~ 18V的宽范围供电电压,使其能够适应多种不同工作电压环境,同时保持优秀的工作稳定性。
    • 逻辑电压:最小阈值输入电压为1V,最高阈值为2.3V,确保其可以很方便地与不同逻辑电平的控制电路兼容。
    • 输出电流能力:驱动器能够提供高达5A的峰值输出电流(灌入与拉出),适用于需要快速开关和高电流的应用。

2. 响应时间

UCC27524DR在上升时延和下降时延的表现也非常优越,典型值上升时间为7ns,下降时间为6ns,这确保了在高频应用中依旧能够维持高效能和低能耗。其低延迟特性对于提高开关频率并降低整体开关损耗至关重要。

3. 可靠性与环境适应性

该器件的工作温度范围在-40°C到140°C之间,覆盖了广泛的应用环境,使其特别适合于严苛条件下的工作,比如汽车电子和工业自动化等领域。此外,UCC27524DR采用表面贴装型封装(SOIC-8),不仅减少了生产过程中的空间需求,同时也提升了装配的便捷性。

4. 应用领域

UCC27524DR可广泛应用于各类高性能电力电子设备中,具体应用包括但不限于:

  • DC-DC转换器
  • 自适应电源管理
  • 无刷直流电机驱动
  • 变频器和软起动设备
  • 航空航天和汽车电子设备

5. 总结

总之,UCC27524DR是一款功能强大且灵活的栅极驱动器,适合各种需要快速开关及高效能驱动的电子系统。其高峰值输出电流、宽供电电压范围、低驱动延迟及广泛的工作温度范围,使其成为电力电子设计师和工程师的理想选择。通过采用此驱动器,用户能够有效提升整体电路的性能与效率,满足现代高集成电路的设计需求。

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