NCP1308设计的50W四输出STB电源技术
本文介绍了NCP1308主要特性, 内部电路架构图, 典型应用电路图以及50W四输出机顶盒(STB)电源电路图和材料清单(BOM).
NCP1308控制器把电流模式调制器和退磁检测器集成在一起,可以在任何的负载/线路条件下保证有更宽的导通模式,过流保护自动恢复,内部软起动时间1.0s,在AC/DC转换器和离线电池充电器等有广泛用途.
NCP1308主要特性:
Free-Running Borderline/Critical Mode Quasi-Resonant Operation
Current-Mode with Adjustable Skip Cycle Capability
Dynamic Self-Supply Type of VCC
Auto-Recovery Overcurrent Protection
Improved UVLO for VCC below 10 V
Latching Overvoltage Protection on VCC
500 mA Peak Current Source/Sink Capability
Internal 1.0 ms Soft-Start
Internal 10us Minimum TOFF
Adjustable Skip Level
Internal Temperature Shutdown
Internal Leading Edge Blanking
Direct Optocoupler Connection
SPICE Models Available for TRANsient Analysis
This is a Pb-Free Device
NCP1308典型应用:
AC-DC Adapters for Notebooks, etc.
Offline Battery Chargers
Consumer Electronics (DVD Players, Set-Top Boxes, TVs, etc.)
Auxiliary Power Supplies (USB, Appliances, TVs, etc.)
图1.NCP1308内部电路架构图
图2.NCP1308典型应用电路图
50W四输出机顶盒(STB)电源
This reference document describes a built--and--tested, GreenPoint? solution for a 40 W (40 W nominal power, 50 W peak power) set--top box (STB) power supply. This document presents the results of various secondary rectification and regulation techniques thatwere used to find the highest practical efficiency scheme for a four--output, 40 watt set top box power supply.
The power supply design is built around ON Semiconductor’s NCP1308 Current--Mode controller, on the primary side, using free running quasi—resonance operation. The secondary side offers four outputs (+5 V, --5 V, 3.3 V and 12 V). The +5 V output is the main channel with the closed PWMloop while the 3.3 Voutput is derived by using the NCP1587 in a buck (step--down) DC—DC topology with synchronous rectification. The 12Voutput is derived from+5 V by stacking the 12 V secondary winding onto the 5 V winding.
图3.参考设计电路简化框图
图4.50W四输出机顶盒(STB)电源外形图
图5.机顶盒(STB)电源电路图
50W四输出机顶盒(STB)电源材料清单(BOM):
模拟电源 电源管理 模拟器件 模拟电子 模拟 模拟电路 模拟芯片 德州仪器 放大器 ADI 相关文章:
- 采用数字电源还是模拟电源?(01-17)
- 模拟电源管理与数字电源管理(02-05)
- 数字电源正在超越模拟电源(03-19)
- 数字电源PK模拟电源(04-03)
- TI工程师现身说法:采用数字电源还是模拟电源?(10-10)
- 开关电源与模拟电源的分别(05-08)