This paper particularly introduces each circuit schematics and terminal signal processing methods . the radio frequency channel is analyzed in detail 對實現(xiàn)系統(tǒng)的各部分電路及終端的信號處理方法作了較為詳細(xì)的介紹。
Information technology - international standardized profiles fvt2nn - virtual terminal basic class - register of control object type definitions - fvt2114 - terminal signal titles control object 信息技術(shù).國際標(biāo)準(zhǔn)數(shù)據(jù)區(qū)fvt2nn .虛擬終端的基本分類.控制對象類型定義寄存器.第16部分: fvt2114 .終端信號標(biāo)題控制對象
The zfp28 cdna sequence is 4104 bp and contains a 2076 bp orf that encodes and 868 amino acids protein with an n - terminal signal peptide , two krab domain , and 14 c - termianal c2h2 zinc finger motifs Zfp28基因長4076個堿基,含8個外顯子,在基因組dna上長18kb 。它編碼的蛋白質(zhì)全長868個氨基酸,含1個信號肽, 2個krab框和14個c2h2型的鋅指。
The complete human znf325 cdna sequence is 2697bp and contains a 1389 - bp open reading frame ( orf ) that encodes a 462 amino acid protein with 15 zinc finger c2h2 motifs . the complete human znf359 cdna sequence is 3270bp and contains a 1932 - bp open read ing frame ( orf ) that encodes a 643 amino acid protein with an n - terminal krab domain and 16 c - terminus zinc finger c2h2 motifs . the zfp28 cdna sequence is 4104bp and contains a 2076 - bp open reading frame ( orf ) that encodes an 868 amino acid protein with an n - terminal signal peptide , two krab domains and 14 c - terminal c2h2 zinc finger motifs Znf325長2697個堿基,含有一個長為1389個堿基的開放閱讀框,編碼一個長為462個氨基酸的蛋白質(zhì),它包含15個c2h2型鋅指結(jié)構(gòu); znf359長3270個堿基,含有一個長為1932個堿基的開放閱讀框,編碼一個長為643個氨基酸的蛋白質(zhì),它包含一個n -端krab結(jié)構(gòu)域和16個c -端c2h2型鋅指結(jié)構(gòu); zfp28長4104個堿基,含有一個長為2076個堿基的開放閱讀框,編碼一個長為868個氨基酸的蛋白質(zhì),它包含一個n -端信號肽,兩個krab結(jié)構(gòu)域和14個c -端c2h2型鋅指結(jié)構(gòu)。
Secondly , a network based on multi - terminal components modeling methodology was applied to model mems at system - level by the analogy and mixed - signal modeling tool of vhdl - ams , for the system - level model of mems is a mixed signal model , which has attributes of multi - energy domains coupling , multi - signals mixed and interacting between discrete - event subsystems and continuous - time subsystems . with this method , the whole system can be divided into some subsystems defined as multi - terminal components ; the behavior of the subsystems depends only on their terminal signals ; the information exchange between subsystems was done by the signals at their terminals . the continuous - time systems or discrete - event systems can be modeled and simulated with this method , which satisfied the requirements of nonlinear systems and large signals analysis 同時,針對mems的系統(tǒng)級模型是一個混合信號模型,具有多能量域耦合、多信號混合、離散事件子系統(tǒng)與連續(xù)時間子系統(tǒng)交互的特點,使用vhdl - ams作為混合信號模型建模的工具,采用多端口組件網(wǎng)絡(luò)建模方法建立了mems系統(tǒng)級模型,把微型機電系統(tǒng)分解為多個子系統(tǒng)或組件,各子系統(tǒng)被定義為多端口組件,子系統(tǒng)的內(nèi)部行為通過其端口行為來描述,子系統(tǒng)間的能量與信號的交換通過組件的端口映射來實現(xiàn),從而實現(xiàn)了對連續(xù)時間系統(tǒng)和離散事件系統(tǒng)的建模與仿真,滿足了非線性系統(tǒng)以及大信號分析要求。