曙光天闊I840r-H服務(wù)器是曙光公司最新推出的一款支持英特爾最新四路多核處理器的企業(yè)級服務(wù)器,創(chuàng)新的全獨(dú)立總線可徹底釋放多至4顆64位Intel XeonMP多核處理器(包括Intel最新推出的Dunnington CPU)的強(qiáng)勁性能,最高達(dá)256GBFB-DIMM內(nèi)存和具備可選集成高性能RAID的8塊熱插拔2.5寸SAS磁盤或5塊熱插拔3.5寸SAS磁盤,提供強(qiáng)大的功能以運(yùn)行關(guān)鍵任務(wù),滿足資源密集型應(yīng)用的需要。先進(jìn)的管理和存儲技術(shù),具有更好的可擴(kuò)充性和高可用性。作為曙光天闊系列服務(wù)器中的高端產(chǎn)品,I840r-H多核服務(wù)器是高端企業(yè)級用戶的最佳選擇,非常適用于金融、證券、交通、郵政、電信、能源等對服務(wù)器性能、可擴(kuò)展性及可靠性要求苛刻的行業(yè)數(shù)據(jù)中心和遠(yuǎn)程的企業(yè)環(huán)境。
上傳時間: 2013-12-10
上傳用戶:zhangxin
1.增加的設(shè)備支持: Atmel AT91SAM9Rxx Cirrus Logic CS7401xx-IQZ Luminary Micro LM3S576x, LM3S5752, LM3S5747, LM3S573x, LM3S5662, LM3S5652, LM3S5632, LM3S3759, LM3S3749, and LM3S3739 NXP LPC32XX and LPC2460 STMicroelectronics STR912FAZ4X, STR912FAW4X, STR911FAW4X, STR911FAM4X, STR910FAW32, and STR910FAZ32 2.修改了NXP LPC23XX/24XX的頭文件庫 3.增加了ST-LINK II的調(diào)試支持 4.增加了對Cortex-M3 內(nèi)核芯片的RTX Event Viewer 的支持 5.增加了MCBSTM32: STM32 FLASH OPTION BYTES PROGRAMMING 6.增加了ULINK2對Cortex-M3的SWV功能的調(diào)試 7.增強(qiáng)了使用GNU在MDK下調(diào)試M1,M3,ARM7,ARM9的調(diào)試功能( Using μVision with CodeSourcery GNU ARM Toolchain.) 8.增加了大量經(jīng)典開發(fā)板例程 Boards目錄列表: ├─Embest 深圳市英蓓特公司開發(fā)板例程 │ ├─AT91EB40X-40008 │ ├─S3CEB2410 │ ├─ATEBSAM7S │ ├─LPC22EB06-I │ ├─LPCEB2000-A │ ├─LPCEB2000-B │ ├─LPCEB2000-S │ ├─str710 │ ├─str711 │ ├─str730 │ ├─str750 │ ├─STR912 │ ├─STM32V100 │ ├─STM32R100 │ ├─ATEB9200 ├─ADI ADI半導(dǎo)體的芯片例程 │ ├─ADuC702X │ └─ADuC712x ├─Atmel Atmel半導(dǎo)體的芯片例程 │ ├─AT91RM9200-EK │ ├─AT91SAM7A3-EK │ ├─AT91SAM7S-EK │ ├─AT91SAM7SE-EK │ ├─AT91SAM7X-EK │ ├─AT91SAM9260-EK │ ├─AT91SAM9261-EK │ ├─AT91SAM9263-EK ├─Keil Keil公司的開發(fā)板例程 │ ├─MCB2100 │ ├─MCB2103 │ ├─MCB2130 │ ├─MCB2140 │ ├─MCB2300 │ ├─MCB2400 │ ├─MCB2900 │ ├─MCBLM3S │ ├─MCBSTM32 │ ├─MCBSTR7 │ ├─MCBSTR730 │ ├─MCBSTR750 │ └─MCBSTR9 ├─Luminary Luminary半導(dǎo)體公司的芯片例程 │ ├─ek-lm3s1968 │ ├─ek-lm3s3748 │ ├─ek-lm3s3768 │ ├─dk-lm3s101 │ ├─dk-lm3s102 │ ├─dk-lm3s301 │ ├─dk-lm3s801 │ ├─dk-lm3s811 │ ├─dk-lm3s815 │ ├─dk-lm3s817 │ ├─dk-lm3s818 │ ├─dk-lm3s828 │ ├─ek-lm3s2965 │ ├─ek-lm3s6965 │ ├─ek-lm3s811 │ └─ek-lm3s8962 ├─NXP NXP半導(dǎo)體公司的芯片例程 │ ├─LH79524 │ ├─LH7A404 │ └─SJA2510 ├─OKI OKI半導(dǎo)體公司的芯片例程 │ ├─ML674000 │ ├─ML67Q4003 │ ├─ML67Q4051 │ ├─ML67Q4061 │ ├─ML67Q5003 │ └─ML69Q6203 ├─Samsung Samsung半導(dǎo)體公司的芯片例程 │ ├─S3C2440 │ ├─S3C44001 │ └─S3F4A0K ├─ST ST半導(dǎo)體公司的芯片例程 │ ├─CQ-STARM2 │ ├─EK-STM32F │ ├─STM32F10X_EVAL │ ├─STR710 │ ├─STR730 │ ├─STR750 │ ├─STR910 │ └─STR9_DONGLE ├─TI TI半導(dǎo)體公司的芯片例程 │ ├─TMS470R1A256 │ └─TMS470R1B1M ├─Winbond Winbond半導(dǎo)體公司的芯片例程 │ └─W90P710 └─ ...
上傳時間: 2013-10-13
上傳用戶:zhangliming420
智能卡是一種集成電路卡(IC card),以電子貨幣形式流通于市場,也可用作身份證明或健康卡。它繼承了磁卡以及其他IC卡的所有優(yōu)點(diǎn),并有極高的安全、保密、防偽能力。本書對三種IC卡(存儲器卡、邏輯加密卡和智能卡)和磁卡的物理結(jié)構(gòu)、邏輯特性、實(shí)現(xiàn)技術(shù)和應(yīng)用系統(tǒng)等進(jìn)行了較為全面的論述,較詳細(xì)地闡明了有關(guān)的國際標(biāo)準(zhǔn)、安全保密體制和讀寫設(shè)備(讀卡器)等,并以自動柜員機(jī)ATM和銷售點(diǎn)終端POS為重點(diǎn)介紹了卡的應(yīng)用技術(shù)和應(yīng)用系統(tǒng)。
標(biāo)簽: 智能卡技術(shù)
上傳時間: 2013-11-19
上傳用戶:蟲蟲蟲蟲蟲蟲
This example provides a description of how to use the USART with hardware flowcontrol and communicate with the Hyperterminal.First, the USART2 sends the TxBuffer to the hyperterminal and still waiting fora string from the hyperterminal that you must enter which must end by '\r'character (keypad ENTER button). Each byte received is retransmitted to theHyperterminal. The string that you have entered is stored in the RxBuffer array. The receivebuffer have a RxBufferSize bytes as maximum. The USART2 is configured as follow: - BaudRate = 115200 baud - Word Length = 8 Bits - One Stop Bit - No parity - Hardware flow control enabled (RTS and CTS signals) - Receive and transmit enabled - USART Clock disabled - USART CPOL: Clock is active low - USART CPHA: Data is captured on the second edge - USART LastBit: The clock pulse of the last data bit is not output to the SCLK pin
上傳時間: 2013-10-31
上傳用戶:yy_cn
This example shows how to update at regulate period the WWDG counter using theEarly Wakeup interrupt (EWI). The WWDG timeout is set to 262ms, refresh window set to 41h and the EWI isenabled. When the WWDG counter reaches 40h the EWI is generated and in the WWDGISR the counter is refreshed to prevent a WWDG reset and led connected to PC.07is toggled.The EXTI line9 is connected to PB.09 pin and configured to generate an interrupton falling edge.In the NVIC, EXTI line9 to 5 interrupt vector is enabled with priority equal to 0and the WWDG interrupt vector is enabled with priority equal to 1 (EXTI IT > WWDG IT). The EXTI Line9 will be used to simulate a software failure: once the EXTI line9event occurs (by pressing Key push-button on EVAL board) the correspondent interruptis served, in the ISR the led connected to PC.07 is turned off and the EXTI line9pending bit is not cleared. So the CPU will execute indefinitely EXTI line9 ISR andthe WWDG ISR will never be entered(WWDG counter not updated). As result, when theWWDG counter falls to 3Fh the WWDG reset occurs.If the EXTI line9 event don抰 occurs the WWDG counter is indefinitely refreshed inthe WWDG ISR which prevent from WWDG reset. If the WWDG reset is generated, after resuming from reset a led connected to PC.06is turned on. In this example the system is clocked by the HSE(8MHz).
上傳時間: 2013-11-11
上傳用戶:gundamwzc
protues的英文對照
上傳時間: 2013-11-20
上傳用戶:lyson
不懂英文人用
上傳時間: 2014-03-28
上傳用戶:manlian
555定時器
上傳時間: 2013-10-21
上傳用戶:Amygdala
protues的英文對照
上傳時間: 2013-10-13
上傳用戶:playboys0
不懂英文人用
上傳時間: 2013-10-18
上傳用戶:fac1003
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