在线咨询
eetop公众号 创芯大讲堂 创芯人才网
切换到宽版

EETOP 创芯网论坛 (原名:电子顶级开发网)

手机号码,快捷登录

手机号码,快捷登录

找回密码

  登录   注册  

快捷导航
搜帖子
楼主: feilang6882

[求助] 低噪声放大器中共源结构与共栅结构对噪声的影响

[复制链接]
发表于 2011-9-8 19:21:39 | 显示全部楼层
交流阻抗50 Ohm?
 楼主| 发表于 2011-9-8 22:44:42 | 显示全部楼层
回复 10# hezudao


    是在片的,也有COB的,做的感觉都是差不多的。现在总结设计的过程,感觉还是有很多问题。如果不是在片的,是不是级联时LNA后面的buffer阻抗较大,或者后级混频器的输入阻抗也较高,从而共源共栅增益高呢?
 楼主| 发表于 2011-9-8 22:45:45 | 显示全部楼层
回复 11# semico_ljj


   单级的LNA,一个独立的IP,输出匹配至50欧姆的
发表于 2011-9-8 23:02:45 | 显示全部楼层
回复 12# feilang6882


    You need to make the difference between microwave IC and RFIC (nowadays, more and more microwave ICs become RFICs). If you design individual blocks (LNA,mixer,etc.), and then connect them on PCB, for sure you need impedance matching. However, if you are designing RFIC (LNA,mixer,etc. are put together on the single chip, as most SOC does), impedance matching is not necessary, and actually it just makes design more difficult.
 楼主| 发表于 2011-9-9 10:32:22 | 显示全部楼层
回复 14# hezudao


    明白了,非常感谢
发表于 2011-9-10 19:42:43 | 显示全部楼层
说得很好,问的也很好
发表于 2011-9-15 10:41:03 | 显示全部楼层
领教了:victory:
发表于 2011-9-16 08:44:38 | 显示全部楼层
回复 6# hezudao

Have you ever simulated a common gate LNA with fixed gm?The best NF is 3dB?Books say so ,but simulation results prove it  wrong.Actully, simulation results show better NF and NFmin can be less than 1dB.
发表于 2011-9-16 20:45:00 | 显示全部楼层
回复 18# 严皮皮

tell me how you can get better than 3dB NF for simple CG LNA with input impedance matched. Unless for old large channel length, gamma is smaller than 1. BTW, I have never designed 'simple' CG LNA, since its theoretical limit is already bad.
发表于 2011-9-17 08:46:42 | 显示全部楼层
回复 19# hezudao

    I doubt the minimum NF of CG.So I design a simple CG LNA using 0.18um BiCMOS.I found NF is less than 3dB and NFmin was better than 1dB.
您需要登录后才可以回帖 登录 | 注册

本版积分规则

关闭

站长推荐 上一条 /2 下一条


小黑屋| 手机版| 关于我们| 联系我们| 在线咨询| 隐私声明| EETOP 创芯网
( 京ICP备:10050787号 京公网安备:11010502037710 )

GMT+8, 2024-11-25 20:17 , Processed in 0.021491 second(s), 7 queries , Gzip On, Redis On.

eetop公众号 创芯大讲堂 创芯人才网
快速回复 返回顶部 返回列表