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UCC27517A

正在供货

具有 5V UVLO 和负输入电压处理能力的 4A/4A 单通道栅极驱动器

产品详情

Number of channels 1 Power switch GaNFET, IGBT, MOSFET Peak output current (A) 4 Input supply voltage (min) (V) 4.5 Input supply voltage (max) (V) 18 Features Hysteretic Logic Operating temperature range (°C) -40 to 125 Rise time (ns) 9 Fall time (ns) 7 Propagation delay time (µs) 0.013 Input threshold CMOS, TTL Channel input logic Inverting, Non-Inverting Input negative voltage (V) -5 Rating Catalog Undervoltage lockout (typ) (V) 4 Driver configuration Inverting, Non-Inverting
Number of channels 1 Power switch GaNFET, IGBT, MOSFET Peak output current (A) 4 Input supply voltage (min) (V) 4.5 Input supply voltage (max) (V) 18 Features Hysteretic Logic Operating temperature range (°C) -40 to 125 Rise time (ns) 9 Fall time (ns) 7 Propagation delay time (µs) 0.013 Input threshold CMOS, TTL Channel input logic Inverting, Non-Inverting Input negative voltage (V) -5 Rating Catalog Undervoltage lockout (typ) (V) 4 Driver configuration Inverting, Non-Inverting
SOT-23 (DBV) 5 8.12 mm² (2.9 mm × 2.8 mm)
  • Low-Cost Gate-Driver Device Offering Superior
    Replacement of NPN and PNP Discrete Solutions
  • 4-A Peak-Source and Sink Symmetrical Drive
  • Ability to Handle Negative Voltages (–5 V) at
    Inputs
  • Fast Propagation Delays (13-ns typical)
  • Fast Rise and Fall Times (9-ns and 7-ns typical)
  • 4.5 to 18-V Single-Supply Range
  • Outputs Held Low During VDD UVLO (ensures
    glitch-free operation at power up and power down)
  • TTL and CMOS Compatible Input-Logic Threshold
    (independent of supply voltage)
  • Hysteretic-Logic Thresholds for High-Noise
    Immunity
  • Dual Input Design (choice of an inverting (IN- pin)
    or non-inverting (IN+ pin) driver configuration)
    • Unused Input Pin can be Used for Enable or
      Disable Function
  • Output Held Low when Input Pins are Floating
  • Input Pin Absolute Maximum Voltage Levels Not
    Restricted by VDD Pin Bias Supply Voltage
  • Operating Temperature Range of –40°C to
    +140°C
  • 5-Pin DBV (SOT-23) Package Option
  • Low-Cost Gate-Driver Device Offering Superior
    Replacement of NPN and PNP Discrete Solutions
  • 4-A Peak-Source and Sink Symmetrical Drive
  • Ability to Handle Negative Voltages (–5 V) at
    Inputs
  • Fast Propagation Delays (13-ns typical)
  • Fast Rise and Fall Times (9-ns and 7-ns typical)
  • 4.5 to 18-V Single-Supply Range
  • Outputs Held Low During VDD UVLO (ensures
    glitch-free operation at power up and power down)
  • TTL and CMOS Compatible Input-Logic Threshold
    (independent of supply voltage)
  • Hysteretic-Logic Thresholds for High-Noise
    Immunity
  • Dual Input Design (choice of an inverting (IN- pin)
    or non-inverting (IN+ pin) driver configuration)
    • Unused Input Pin can be Used for Enable or
      Disable Function
  • Output Held Low when Input Pins are Floating
  • Input Pin Absolute Maximum Voltage Levels Not
    Restricted by VDD Pin Bias Supply Voltage
  • Operating Temperature Range of –40°C to
    +140°C
  • 5-Pin DBV (SOT-23) Package Option

The UCC27517A single-channel, high-speed, low-side gate driver device is capable of effectively driving MOSFET and IGBT power switches. Using a design that inherently minimizes shoot-through current, the UCC27517A is capable of sourcing and sinking high peak-current pulses into capacitive loads offering rail-to-rail drive capability and extremely small propagation delay typically 13 ns.

The UCC27517A device is capable of handling –5 V at input.

The UCC27517A provides 4-A source and 4-A sink (symmetrical drive) peak-drive current capability at VDD = 12 V.

The UCC27517A is designed to operate over a wide VDD range of 4.5 V to 18 V and wide temperature range of –40°C to 140°C. Internal Undervoltage Lockout (UVLO) circuitry on VDD pin holds output low outside VDD operating range. The capability to operate at low voltage levels such as below 5 V, along with best-in-class switching characteristics, is especially suited for driving emerging wide band-gap power-switching devices such as GaN power semiconductor devices.

UCC27517A features a dual input design which offers flexibility of implementing both inverting (IN– pin) and non-inverting (IN+ pin) configurations with the same device. Either the IN+ or IN– pin can be used to control the state of the driver output. The unused input pin can be used for enable and disable function. For protection purpose, internal pullup and pulldown resistors on the input pins ensure that outputs are held low when input pins are in floating condition. Hence the unused input pin is not left floating and must be properly biased to ensure that driver output is in enabled for normal operation.

The input pin threshold of the UCC27517A device is based on TTL and CMOS compatible low-voltage logic which is fixed and independent of the VDD supply voltage. Wide hysteresis between the high and low thresholds offers excellent noise immunity.

The UCC27517A single-channel, high-speed, low-side gate driver device is capable of effectively driving MOSFET and IGBT power switches. Using a design that inherently minimizes shoot-through current, the UCC27517A is capable of sourcing and sinking high peak-current pulses into capacitive loads offering rail-to-rail drive capability and extremely small propagation delay typically 13 ns.

The UCC27517A device is capable of handling –5 V at input.

The UCC27517A provides 4-A source and 4-A sink (symmetrical drive) peak-drive current capability at VDD = 12 V.

The UCC27517A is designed to operate over a wide VDD range of 4.5 V to 18 V and wide temperature range of –40°C to 140°C. Internal Undervoltage Lockout (UVLO) circuitry on VDD pin holds output low outside VDD operating range. The capability to operate at low voltage levels such as below 5 V, along with best-in-class switching characteristics, is especially suited for driving emerging wide band-gap power-switching devices such as GaN power semiconductor devices.

UCC27517A features a dual input design which offers flexibility of implementing both inverting (IN– pin) and non-inverting (IN+ pin) configurations with the same device. Either the IN+ or IN– pin can be used to control the state of the driver output. The unused input pin can be used for enable and disable function. For protection purpose, internal pullup and pulldown resistors on the input pins ensure that outputs are held low when input pins are in floating condition. Hence the unused input pin is not left floating and must be properly biased to ensure that driver output is in enabled for normal operation.

The input pin threshold of the UCC27517A device is based on TTL and CMOS compatible low-voltage logic which is fixed and independent of the VDD supply voltage. Wide hysteresis between the high and low thresholds offers excellent noise immunity.

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技术文档

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顶层文档 类型 标题 格式选项 下载最新的英语版本 日期
* 数据表 UCC27517A 具有负输入电压能力的单通道高速低侧栅极驱动器(具有 4A 峰值拉/灌电流) 数据表 (Rev. C) PDF | HTML 英语版 (Rev.C) PDF | HTML 2015-10-15
应用手册 为 HVAC 系统选择栅极驱动器 (Rev. A) PDF | HTML 英语版 (Rev.A) PDF | HTML 2025-12-1
应用简报 有成本效益的集成栅极驱动器的优势 PDF | HTML 英语版 PDF | HTML 2025-11-21
应用手册 Applying Non-isolated Gate Drivers in Your Home Tool and Accessory Designs PDF | HTML 2025-5-16
应用手册 不同功率因数校正 (PFC) 拓扑的栅极驱动器需求综述 PDF | HTML 英语版 PDF | HTML 2024-1-23
应用手册 使用单输出栅极驱动器实现高侧或低侧驱动 (Rev. B) PDF | HTML 英语版 (Rev.B) PDF | HTML 2023-9-13
应用手册 紧凑、强大且稳健的低侧栅极驱动器的优势 PDF | HTML 英语版 PDF | HTML 2022-9-23
应用简报 适用于栅极驱动器的外部栅极电阻器设计指南 (Rev. A) 英语版 (Rev.A) 2020-4-29
应用简报 了解峰值源电流和灌电流 (Rev. A) 英语版 (Rev.A) 2020-4-29
应用简报 How to overcome negative voltage transients on low-side gate drivers' inputs 2019-1-18
更多文献资料 Fundamentals of MOSFET and IGBT Gate Driver Circuits (Replaces SLUP169) (Rev. A) 2018-10-29
应用简报 Enable Function with Unused Differential Input 2018-7-11
应用简报 Low-Side Gate Drivers With UVLO Versus BJT Totem-Pole 2018-3-16
技术文章 How to achieve higher system efficiency- part two: high-speed gate drivers PDF | HTML 2017-1-31
白皮书 Advancing Power Supply Solutions Through the Promise of GaN 2015-2-24
更多文献资料 Design Review of a Full-Featured 350-W Offline Power Converter 2013-10-29

设计与开发

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评估板

UCC57142EVM — UCC57142 评估模块

UCC57142EVM 主要用于评估 UCC57142 的功能。此 EVM 可以针对容性负载或具有 TO-220 封装的功率器件评估这款驱动器的性能。UCC57142EVM 评估板支持通过表面贴装测试点连接到各种测试点(例如 IN、EN/FLT、OCP 和 OUT)。UCC57142EVM 可通过跳线支持不同的 UCC57142 型号。通过对电路板进行改造,UCC57142EVM 还与 DBV 封装中的其他栅极驱动器兼容。
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仿真模型

UCC27517 PSpice Transient Model (Rev. B)

SLUM286B.ZIP (51 KB) - PSpice 模型
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仿真模型

UCC27517 TINA-TI Transient Reference Design

SLUM317.TSC (67 KB) - TINA-TI 参考设计
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仿真模型

UCC27517 TINA-TI Transient Spice Model

SLUM318.ZIP (8 KB) - TINA-TI Spice 模型
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仿真模型

UCC27517 Unencrypted PSpice Transient Model

SLUM491.ZIP (2 KB) - PSpice 模型
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计算工具

SLURB28 — UCC27516 and UCC27517 Schematic Review Template

This can be used to help the design engineer effectively select components and perform the layout to optimize their system for the gate driver.
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封装 引脚 CAD 符号、封装和 3D 模型
SOT-23 (DBV) 5 Ultra Librarian

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