驅動程序溝通著硬件和應用軟件,而驅動工程師則溝通著硬件工程師和應用 軟件工程師。隨著通信、電子行業的迅速發展,全世界每天都會有大量的新芯片 被生產,大量的新電路板被設計,因此,也會有大量設備驅動需要開發。這些設 備驅動,或運行在簡單的單任務環境中,或運行在 VxWor ks、Li nux、Wi ndows 等多任務操作系統環境中,發揮著不可替代的作用。
上傳時間: 2015-10-31
上傳用戶:fyzg
放墨香商業版本, 巨陵-蠻牛掉元寶,願意打的就是高手 開放包袱商人會帶備稀而物品給各位大俠購買 本服轉身請登入官網轉身 本服遊戲幣個人上限是40億 如果帶多了 轉圖重登都會變回40億 全球最強防外掛系統,打造2016年最公平的墨湘 本服承諾,絕無任何嚴重bug,保證遊戲穩定運行 本服禁止空白名,定期自動清理帶空名的玩家
標簽: 墨香
上傳時間: 2016-04-11
上傳用戶:西子灣灣
簡單命令使用grep等的使用 [zorro@isch ~]$ history 1 ifconfig 2 su 3 exit 4 ls 5 cd Desktop/ 6 ls 7 tar zxcf VMwareTools-8.4.5-324285.tar.gz 8 tar zxvf VMwareTools-8.4.5-324285.tar.gz 9 cd vmware-tools-distrib/ 10 ls 11 ./vmware-install.pl 12 su 13 ls 14 cd .. 15 ls 16 rm VMwareTools-8.4.5-324285.tar.gz 17 rm -r vmware-tools-distrib 18 ls 19 make 20 ls 21 cd redis/ 22 quit 23 ls 24 ca redis/ 25 cd redis/ 26 cd redis-2.8.17 27 make 28 cd redis-2.8.17 29 ls 30 cd redis-2.8.17 31 cd str 32 cd src 33 ls 34 ./redis-cli 35 ls 36 cd redis-2.8.17 tar.gz 37 make 38 cd src 39 ./redis-server .. /redis.conf 40 ./redis-cli 41 ./redis-server ../redis.conf 42 vi test1.sh 43 ./test1.sh 44 vi test.sh 45 ./test.sh 46 ls 47 chmod 777 test.sh 48 ./test.sh 49 vi express 50 $ grep –n ‘the’ express 51 clear 52 grep -n 'the' express 53 vi express 54 grep -n 'the' express 55 grep -vn 'the'express 56 grep -vn 'the' express 57 grep -in 'the' express 58 vi test2.c 59 grep -l 'the' *.c 60 grep -n 't[ae]st' express 61 grep -n 'oo' express 62 grep -n '[^g]oo' express 63 grep -n '[a^z]oo' express 64 grep -n '[0^9]' express 65 grep -n '^the' express 66 vi express 67 sed -e 'd' express 68 sed -e '1d' express 69 sed -e '1~7d' express 70 sed -e '$d' express 71 sed -e '1,/^$/d' express 72 ls 73 cd 74 pwd 75 history [zorro@isch ~]$
標簽: 簡單命令使用
上傳時間: 2016-05-24
上傳用戶:12345678gan
理想的放大器 目前,廠商在線性IC研發上都有重大的突破。使IC型運算放大器的特性和理想相當接近。尤其在低頻操作下,OP Amp電路的工作情形實在太像一個理想放大器,幾乎與理論的推測完全相符?!硐氲姆糯笃髟摼邆涫颤N特性?
標簽: 算放大器原理
上傳時間: 2016-07-16
上傳用戶:WALTER
迴歸分析的基本假設 (一)固定自變項假設(fixed variable) (二)線性關係假設(linear relationship) (三)常態性假設(normality)
標簽: 回歸分析 主成分分析
上傳時間: 2016-10-11
上傳用戶:Gower's
The AP2406 is a 1.5Mhz constant frequency, slope compensated current mode PWM step-down converter. The device integrates a main switch and a synchronous rectifier for high efficiency without an external Schottky diode. It is ideal for powering portable equipment that runs from a single cell lithium-Ion (Li+) battery. The AP2406 can supply 600mA of load current from a 2.5V to 5.5V input voltage. The output voltage can be regulated as low as 0.6V. The AP2406 can also run at 100% duty cycle for low dropout operation, extending battery life in portable system. Idle mode operation at light loads provides very low output ripple voltage for noise sensitive applications. The AP2406 is offered in a low profile (1mm) 5-pin, thin SOT package, and is available in an adjustable version and fixed output voltage of 1.2V, 1.5V and 1.8V
上傳時間: 2017-02-23
上傳用戶:w124141
可完整移除 Excel 其他非預設格式。
標簽: Excel
上傳時間: 2017-10-23
上傳用戶:ufo1234
Lithium–sulfur batteries are a promising energy-storage technology due to their relatively low cost and high theoretical energy density. However, one of their major technical problems is the shuttling of soluble polysulfides between electrodes, resulting in rapid capacity fading. Here, we present a metal–organic framework (MOF)-based battery separator to mitigate the shuttling problem. We show that the MOF-based separator acts as an ionic sieve in lithium–sulfur batteries, which selectively sieves Li+ ions while e ciently suppressing undesired polysulfides migrating to the anode side. When a sulfur-containing mesoporous carbon material (approximately 70 wt% sulfur content) is used as a cathode composite without elaborate synthesis or surface modification, a lithium–sulfur battery with a MOF-based separator exhibits a low capacity decay rate (0.019% per cycle over 1,500 cycles). Moreover, there is almost no capacity fading after the initial 100 cycles. Our approach demonstrates the potential for MOF-based materials as separators for energy-storage applications.
上傳時間: 2017-11-23
上傳用戶:653357637
Lithium–sulfur (Li–S) batteries with high energy density and long cycle life are considered to be one of the most promising next-generation energy-storage systems beyond routine lithium-ion batteries. Various approaches have been proposed to break down technical barriers in Li–S battery systems. The use of nanostructured metal oxides and sulfides for high sulfur utilization and long life span of Li–S batteries is reviewed here. The relationships between the intrinsic properties of metal oxide/sulfide hosts and electrochemical performances of Li–S batteries are discussed. Nanostructured metal oxides/ sulfides hosts used in solid sulfur cathodes, separators/interlayers, lithium- metal-anode protection, and lithium polysulfides batteries are discussed respectively. Prospects for the future developments of Li–S batteries with nanostructured metal oxides/sulfides are also discussed.
上傳時間: 2017-11-23
上傳用戶:653357637
kai li de dao hang GPS之家-專業版243
上傳時間: 2017-12-15
上傳用戶:cyrs