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UCC28063A

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具有可闻及输入浪涌噪声抗扰性的自然交错式转换模式 PFC 控制器

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功能与比较器件相同但引脚有所不同。
UCC28065 正在供货 具有高频开关功能的 Natural Interleaving™ 转换模式 PFC 控制器 The UCC28065 is a high-frequency PFC which can reduce the inductor volume by up to 50%

产品详情

Topology Boost, PFC controller Control mode TM Features > 750 W applications, Brown Out, Enable, Interleaved, Overvoltage protection, Peak current mode, Transition Control Mode Duty cycle (max) (%) 99
Topology Boost, PFC controller Control mode TM Features > 750 W applications, Brown Out, Enable, Interleaved, Overvoltage protection, Peak current mode, Transition Control Mode Duty cycle (max) (%) 99
SOIC (D) 16 59.4 mm² (9.9 mm × 6 mm)
  • Input Filter and Output Capacitor Ripple-Current Cancellation
    • Reduced Current Ripple for Higher System Reliability and Smaller Bulk Capacitor
    • Reduced EMI Filter Size
  • Phase Management Capability
  • Fail-Safe OVP with Dual Paths Prevents Output Overvoltage Conditions by Voltage-Sensing Failures
  • Sensorless Current-Shaping Simplifies Board Layout and Improves Efficiency
  • Advanced Audible Noise Performance
  • Non-linear Error-Amplifier Gain
  • Soft Recovery on Overvoltage
  • Integrated Brownout and Dropout Handling
  • Reduced Bias Currents
  • Improved Efficiency and Design Flexibility Over Traditional Single-Phase Continuous Conduction Mode (CCM)
  • Inrush-Safe Current Limiting:
    • Prevents MOSFET Conduction During Inrush
    • Eliminates reverse Recovery Events in Output rectifiers
  • Enables Use of Low-Cost Diodes Without Extensive Snubber Circuitry
  • Improved Light-Load Efficiency
  • Fast, Smooth Transient Response
  • Expanded System-Level Protections
  • 1-A Source/1.8-A Sink Gate Drivers
  • –40°C to 125°C Operating Temperature Range in a 16-Lead SOIC Package
  • Input Filter and Output Capacitor Ripple-Current Cancellation
    • Reduced Current Ripple for Higher System Reliability and Smaller Bulk Capacitor
    • Reduced EMI Filter Size
  • Phase Management Capability
  • Fail-Safe OVP with Dual Paths Prevents Output Overvoltage Conditions by Voltage-Sensing Failures
  • Sensorless Current-Shaping Simplifies Board Layout and Improves Efficiency
  • Advanced Audible Noise Performance
  • Non-linear Error-Amplifier Gain
  • Soft Recovery on Overvoltage
  • Integrated Brownout and Dropout Handling
  • Reduced Bias Currents
  • Improved Efficiency and Design Flexibility Over Traditional Single-Phase Continuous Conduction Mode (CCM)
  • Inrush-Safe Current Limiting:
    • Prevents MOSFET Conduction During Inrush
    • Eliminates reverse Recovery Events in Output rectifiers
  • Enables Use of Low-Cost Diodes Without Extensive Snubber Circuitry
  • Improved Light-Load Efficiency
  • Fast, Smooth Transient Response
  • Expanded System-Level Protections
  • 1-A Source/1.8-A Sink Gate Drivers
  • –40°C to 125°C Operating Temperature Range in a 16-Lead SOIC Package

This part is identical to UCC28063 with the exception that the TSET pin Open/ Short Fault Detect and the CS pin Open Fault Detect features are removed. Removal of these Fault Detect features provides a higher degree of noise immunity to provide increased "ride-through" for applications where significant voltage noise could be coupled onto the TSET or CS pins during conditions of fast transient, surge or impulse noise on the AC Supply.

Optimized for consumer applications concerned with audible noise elimination, this solution extends the advantages of transition mode – high efficiency with low-cost components – to higher power ratings than previously possible. By utilizing a Natural Interleaving technique, both channels operate as masters (that is, there is no slave channel) synchronized to the same frequency. This approach delivers inherently strong matching, faster responses, and ensures that each channel operates in transition mode.

Expanded system level protections feature input brownout and dropout recovery, output over-voltage, open-loop, overload, soft-start, phase-fail detection, and thermal shutdown. The additional FailSafe over-voltage protection (OVP) feature protects against shorts to an intermediate voltage that, if undetected, could lead to catastrophic device failure. Advanced non-linear gain results in rapid, yet smoother response to line and load transient events. Reduced bias currents improve stand-by power efficiency. Special line-dropout handling avoids significant current disruption and minimizes audible-noise generation.

This part is identical to UCC28063 with the exception that the TSET pin Open/ Short Fault Detect and the CS pin Open Fault Detect features are removed. Removal of these Fault Detect features provides a higher degree of noise immunity to provide increased "ride-through" for applications where significant voltage noise could be coupled onto the TSET or CS pins during conditions of fast transient, surge or impulse noise on the AC Supply.

Optimized for consumer applications concerned with audible noise elimination, this solution extends the advantages of transition mode – high efficiency with low-cost components – to higher power ratings than previously possible. By utilizing a Natural Interleaving technique, both channels operate as masters (that is, there is no slave channel) synchronized to the same frequency. This approach delivers inherently strong matching, faster responses, and ensures that each channel operates in transition mode.

Expanded system level protections feature input brownout and dropout recovery, output over-voltage, open-loop, overload, soft-start, phase-fail detection, and thermal shutdown. The additional FailSafe over-voltage protection (OVP) feature protects against shorts to an intermediate voltage that, if undetected, could lead to catastrophic device failure. Advanced non-linear gain results in rapid, yet smoother response to line and load transient events. Reduced bias currents improve stand-by power efficiency. Special line-dropout handling avoids significant current disruption and minimizes audible-noise generation.

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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 UCC28063A Natural Interleaving™ Transition-Mode PFC Controller With Improved Audible and Input Surge Noise Immunity 数据表 (Rev. C) PDF | HTML 2016-11-22
应用手册 UCC2806x PCB Layout Guideline for PFC 2019-4-29
选择指南 电源管理指南 2018 2018-7-31

设计与开发

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评估板

UCC28063EVM-723 — UCC28063 自然交错转换模式 PFC 控制器评估模块

该 UCC28063EVM-723 (EVM) 是一个经全面组装和测试的电路,用于评估 UCC28063 自然 Interleaving™ 转换模式 PFC 控制器。UCC28063EVM-723 是一款离线 300W PFC 前置稳压器,可运行 85V 至 265V RMS 的通用线路输入,并提供 390V 稳压输出。UCC28063EVM-723 演示了如何在交错转换模式 PFC 前置稳压器中使用 UCC28063 IC。
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仿真模型

UCC28063 PSpice Transient Model

SLUM207.ZIP (74 KB) - PSpice 模型
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计算工具

SLUC292 — UCC28063 Controller Setup Tool

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参考设计

PMP10116 — 200W 自然交错转换模式 PFC 反激式 LED 驱动器参考设计

PMP10116 参考设计使用 UCC28063A 转换模式 pfc 控制器,通过交流输入驱动高达 700mA 电流的 LED。这种反激式 PFC 拓扑提供隔离并使用准谐振模式控制。它支持输出侧的模拟调光。  设计指南请参阅基于 UCC28060 的交错式交流/直流单级反激 LED 驱动器

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参考设计

TIDA-01495 — 具有快速瞬态响应功能、效率为 94% 的 480W 薄型 (< 17mm) 交流/直流 SMPS 参考设计

TIDA-01495 是一款具有低厚度(17mm 高)、94.1% 峰值效率、高功率密度、通用输入、24V 直流及 480W 输出的消费级交流/直流电源参考设计。其电路具有基于 UCC28063A 的前端两相交错转换模式功率因数校正 (PFC),可更大限度地减小 PFC 电感器尺寸并降低 EMI 滤波器要求。UCC256301 混合迟滞控制 LLC 控制器可控制 HB-LLC 隔离式直流/直流级并确保快速瞬态响应,从而降低 PFC 储能输出电容器的尺寸。PFC 级具有切相,LLC 级具有先进的突发模式优化功能,这两者有助于在 5% 负载(230V 交流)情况下实现高效率。UCC24612 (...)

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封装 引脚 CAD 符号、封装和 3D 模型
SOIC (D) 16 Ultra Librarian

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