This brief introduce a kind of the framework construction to materialize the system. And an example was given with the discussion on the performence.
标签: construction materialize introduce framework
上传时间: 2013-08-17
上传用户:ysystc699
fpga this will help you to improve you ability
上传时间: 2013-08-19
上传用户:417313137
An intruction to FPGA design
标签: intruction design FPGA An
上传时间: 2013-08-24
上传用户:时代将军
it describe how to develop the field programmable gate array
标签: programmable describe develop array
上传时间: 2013-08-28
上传用户:zhaoq123
Interface 8051 to Coolrunner CPLD(Xilinx App)
标签: Coolrunner Interface Xilinx 8051
上传时间: 2013-09-05
上传用户:bcjtao
power pcb To protel 软件
上传时间: 2013-09-11
上传用户:sunshine1402
Can convert data file(txt format)to CAD(scr)file,and draw curve!
上传时间: 2013-09-11
上传用户:天空说我在
gerber-to-protel is a pdf file ,which is used for convert bmp to pcb.
标签: gerber-to-protel file is
上传时间: 2013-09-18
上传用户:liuxinyu2016
ID 型号厂家用途构造沟道v111(V) ixing(A) pdpch(W) waixing 1 2SJ11 东芝DC, LF A, JChop P 20 -10m 100m 4-2 2 2SJ12 东芝DC, LF A,J Chop P 20 -10m 100m 4-2 3 2SJ13 东芝DC, LF A, JChop P 20 -100m 600m 4-35 4 2SJ15 富士通DC, LF A J P 18 -10m 200m 4-1 5 2SJ16 富士通DC, LF A J P 18 -10m 200m 4-1 6 2SJ17 C-MIC J P 20 0.5m 10m 4-47 7 2SJ18 LF PA J(V) P 170 -5 63 4-45 8 2SJ19 NEC LF D J(V) P 140 -100m 800m 4-41 9 2SJ20 NEC LF PA J(V) P 100 -10 100 4-42 10 2SJ22 C-MIC J P 80 0.5m 50m 4-48 11 2SJ39 三菱LF A J P 50 -10m .15/CH 4-81 12 2SJ40 三菱LF A,A-SW J P 50 -10m 300m 4-151 13 2SJ43 松下LF A J P 50 20m 250m 4-80A 14 2SJ44 NEC LF LN A J P 40 -10m 400m 4-53A 15 2SJ45 NEC LF A J P 40 -10m 400m 4-53A 16 2SJ47 日立LF PA MOS P -100 -7 100 4-28A 17 2SJ48 日立LF PA, HS MPOSSW P -120 -7 100 4-28A 18 2SJ49 日立LF PA,HS PMSOWS P -140 -7 100 4-28A 19 2SJ49(H) 日立HS PSW MOS P -140 -7 100 4-28A 20 2SJ50 日立LF/HF PA,HMSO SPSW P -160 -7 100 4-28A 21 2SJ50(H) 日立HS PSW MOS P -160 -7 100 4-28A 22 2SJ51 日立LF LN A J P 40 -10m 800m 4-97A 23 2SJ55 日立LF/HF PA,HMSO SPSW P -180 -8 125 4-28A
上传时间: 2013-10-10
上传用户:13162218709
本小节将回顾运算放大器增益带宽乘积 (GBWP) 即 G×BW 概念。在计算 AC闭环增益以前需要 GBWP 这一参数。首先,我们需要 GBWP(有时也称作GBP),用于计算运算放大器闭环截止频率。另外,我们在计算运算放大器开环响应的主极点频率 f0 时也需要 GBWP。在 f0 以下频率,第 2 部分的 DC 增益误差计算方法有效,因为运算放大器的开环增益为恒定;该增益等于 AOL_DC。但是,超出 f0 频率以后,则必须使用 AC计算方法,我们将在后面小节详细讨论。
上传时间: 2014-07-14
上传用户:yczrl