ADI ADA4433-1全差分SD视频滤波放大器方案

关键词:汽车电子汽车后视照相机视频系统

时间:2012-7-9 10:57:01      来源:ADA4433

ADI公司的ADA4433-1是全差分SD视频滤波放大器,5阶低通视频滤波器,具有输出电池短路保护9STB)和对地短路保护(STG)以及极好的视频特性和低功耗,输出过压保护高达18V.0.1 B平坦度到3MHz,-3 dB带宽10MHz,27MHz的抑制为45dB,主要用在汽车后视照相机,汽车视频电控单元(ECU),视频监视系统.本文介绍了ADA4432-1主要特性,方框图,应用配置电路图,和ADV7391/ADV7393视频编码器的应用电路图,DC耦合电路图以及ADA4433-1评估板主要特性,电路图

ADI公司的ADA4433-1是全差分SD视频滤波放大器,5阶低通视频滤波器,具有输出电池短路保护9STB)和对地短路保护(STG)以及极好的视频特性和低功耗,输出过压保护高达18V.0.1 B平坦度到3MHz,-3 dB带宽10MHz,27MHz的抑制为45dB,主要用在汽车后视照相机,汽车视频电控单元(ECU),视频监视系统.本文介绍了ADA4432-1主要特性,方框图,应用配置电路图,和ADV7391/ADV7393视频编码器的应用电路图,DC耦合电路图以及ADA4433-1评估板主要特性,电路图和材料清单.
ADA4433-1: Fully Differential SD Video Filter Amplifier with Output Short-to-Battery Protection
The ADA4432-1 (single-ended output) and ADA4433-1 (differential output) are fully integrated video reconstruction filters that combine overvoltage protection (short-to-battery [STB] protection) and short-to-ground (STG) protection on the outputs, with excellent video specifications and low power consumption. The combination of STB protection and robust ESD tolerance allows the ADA4432-1 and the ADA4433-1 to provide superior protection in the hostile automotive environment.
The ADA4432-1 is a single-ended input/single-ended output video filter capable of driving long back-terminated cables.
The ADA4433-1 is a fully differential video filter that can be used as a fully differential input to a differential output or as a single-ended input to a differential output, allowing it to easily connect to both differential and single-ended sources. It is capable of driving twisted pair or coaxial cable with minimal line attenuation. Differential signal processing reduces the effects of ground noise, which can plague ground referenced systems. The ADA4433-1 is ideal for differential signal processing (gain and filtering) throughout the signal chain, simplifying the conversion between single-ended and differential components.
The short-to-battery protection integrated into the ADA4432-1 and ADA4433-1 protects against both dc and transient overvoltage events, caused by an accidental short to a battery voltage up to 18 V. The Analog Devices, Inc., short-to-battery...

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