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  • MPC106 PCI Bridge/Memory Contr

    In this document, the term Ô60xÕ is used to denote a 32-bit microprocessor from the PowerPC architecture family that conforms to the bus interface of the PowerPC 601ª, PowerPC 603ª, or PowerPC 604 microprocessors. Note that this does not include the PowerPC 602ª microprocessor which has a multiplexed address/data bus. 60x processors implement the PowerPC architecture as it is speciÞed for 32-bit addressing, which provides 32-bit effective (logical) addresses, integer data types of 8, 16, and 32 bits,and ßoating-point data types of 32 and 64 bits (single-precision and double-precision).1.1 Overview The MPC106 provides an integrated high-bandwidth, high-performance, TTL-compatible interface between a 60x processor, a secondary (L2) cache or additional (up to four total) 60x processors, the PCI bus,and main memory. This section provides a block diagram showing the major functional units of the 106 and describes brießy how those units interact.Figure 1 shows the major functional units within the 106. Note that this is a conceptual block diagram intended to show the basic features rather than an attempt to show how these features are physically implemented on the device.

    標(biāo)簽: Bridge Memory Contr MPC

    上傳時(shí)間: 2013-10-08

    上傳用戶:18711024007

  • 單片機(jī)外圍線路設(shè)計(jì)

    當(dāng)拿到一張CASE單時(shí),首先得確定的是能用什么母體才能實(shí)現(xiàn)此功能,然后才能展開對(duì)外圍硬件電路的設(shè)計(jì),因此首先得了解每個(gè)母體的基本功能及特點(diǎn),下面大至的介紹一下本公司常用的IC:?jiǎn)涡酒鉀Q方案• SN8P1900 系列–  高精度 16-Bit  模數(shù)轉(zhuǎn)換器–  可編程運(yùn)算放大器 (PGIA)•  信號(hào)放大低漂移: 2V•  放大倍數(shù)可編程: 1/16/64/128  倍–  升壓- 穩(wěn)壓調(diào)節(jié)器 (Charge-Pump Regulator)•  電源輸入: 2.4V ~ 5V•  穩(wěn)壓輸出: e.g. 3.8V at SN8P1909–  內(nèi)置液晶驅(qū)動(dòng)電路 (LCD Driver)–  單芯片解決方案 •  耳溫槍  SN8P1909 LQFP 80 Pins• 5000 解析度量測(cè)器 SN8P1908 LQFP 64 Pins•  體重計(jì)  SN8P1907 SSOP 48 Pins單芯片解決方案• SN8P1820 系列–  精確的12-Bit  模數(shù)轉(zhuǎn)換器–  可編程運(yùn)算放大器 (PGIA)• Gain Stage One: Low Offset 5V, Gain: 16/32/64/128• Gain Stage One: Low Offset 2mV, Gain: 1.3 ~ 2.5–  升壓- 穩(wěn)壓調(diào)節(jié)器•  電源輸入: 2.4V ~ 5V•  穩(wěn)壓輸出: e.g. 3.8V at SN8P1829–  內(nèi)置可編程運(yùn)算放大電路–  內(nèi)置液晶驅(qū)動(dòng)電路 –  單芯片解決方案 •  電子醫(yī)療器 SN8P1829 LQFP 80 Pins 高速/低功耗/高可靠性微控制器• 最新SN8P2000 系列– SN8P2500/2600/2700 系列– 高度抗交流雜訊能力• 標(biāo)準(zhǔn)瞬間電壓脈沖群測(cè)試 (EFT): IEC 1000-4-4• 雜訊直接灌入芯片電源輸入端• 只需添加1顆 2.2F/50V 旁路電容• 測(cè)試指標(biāo)穩(wěn)超 4000V (歐規(guī))– 高可靠性復(fù)位電路保證系統(tǒng)正常運(yùn)行• 支持外部復(fù)位和內(nèi)部上電復(fù)位• 內(nèi)置1.8V 低電壓偵測(cè)可靠復(fù)位電路• 內(nèi)置看門狗計(jì)時(shí)器保證程序跳飛可靠復(fù)位– 高抗靜電/栓鎖效應(yīng)能力– 芯片工作溫度有所提高: -200C ~ 700C     工規(guī)芯片溫度: -400C ~ 850C 高速/低功耗/高可靠性微控制器• 最新 SN8P2000 系列– SN8P2500/2600/2700 系列– 1T  精簡(jiǎn)指令級(jí)結(jié)構(gòu)• 1T:  一個(gè)外部振蕩周期執(zhí)行一條指令•  工作速度可達(dá)16 MIPS / 16 MHz Crystal–  工作消耗電流 < 2mA at 1-MIPS/5V–  睡眠模式下消耗電流 < 1A / 5V額外功能• 高速脈寬調(diào)制輸出 (PWM)– 8-Bit PWM up to 23 KHz at 12 MHz System Clock– 6-Bit PWM up to 93 KHz  at 12 MHz System Clock– 4-Bit PWM up to 375 KHz  at 12 MHz System Clock• 內(nèi)置高速16 MHz RC振蕩器 (SN8P2501A)• 電壓變化喚醒功能• 可編程控制沿觸發(fā)/中斷功能– 上升沿 / 下降沿 / 雙沿觸發(fā)• 串行編程接口

    標(biāo)簽: 單片機(jī) 線路設(shè)計(jì)

    上傳時(shí)間: 2013-10-21

    上傳用戶:jiahao131

  • Xilinx UltraScale:新一代架構(gòu)滿足您的新一代架構(gòu)需求(EN)

      中文版詳情瀏覽:http://www.elecfans.com/emb/fpga/20130715324029.html   Xilinx UltraScale:The Next-Generation Architecture for Your Next-Generation Architecture    The Xilinx® UltraScale™ architecture delivers unprecedented levels of integration and capability with ASIC-class system- level performance for the most demanding applications.   The UltraScale architecture is the industr y's f irst application of leading-edge ASIC architectural enhancements in an All Programmable architecture that scales from 20 nm planar through 16 nm FinFET technologies and beyond, in addition to scaling from monolithic through 3D ICs. Through analytical co-optimization with the X ilinx V ivado® Design Suite, the UltraScale architecture provides massive routing capacity while intelligently resolving typical bottlenecks in ways never before possible. This design synergy achieves greater than 90% utilization with no performance degradation.   Some of the UltraScale architecture breakthroughs include:   • Strategic placement (virtually anywhere on the die) of ASIC-like system clocks, reducing clock skew by up to 50%    • Latency-producing pipelining is virtually unnecessary in systems with massively parallel bus architecture, increasing system speed and capability   • Potential timing-closure problems and interconnect bottlenecks are eliminated, even in systems requiring 90% or more resource utilization   • 3D IC integration makes it possible to build larger devices one process generation ahead of the current industr y standard    • Greatly increased system performance, including multi-gigabit serial transceivers, I/O, and memor y bandwidth is available within even smaller system power budgets   • Greatly enhanced DSP and packet handling   The Xilinx UltraScale architecture opens up whole new dimensions for designers of ultra-high-capacity solutions.

    標(biāo)簽: UltraScale Xilinx 架構(gòu)

    上傳時(shí)間: 2013-11-13

    上傳用戶:瓦力瓦力hong

  • XAPP740利用AXI互聯(lián)設(shè)計(jì)高性能視頻系統(tǒng)

    This application note covers the design considerations of a system using the performance features of the LogiCORE™ IP Advanced eXtensible Interface (AXI) Interconnect core. The design focuses on high system throughput through the AXI Interconnect core with F MAX  and area optimizations in certain portions of the design. The design uses five AXI video direct memory access (VDMA) engines to simultaneously move 10 streams (five transmit video streams and five receive video streams), each in 1920 x 1080p format, 60 Hz refresh rate, and up to 32 data bits per pixel. Each VDMA is driven from a video test pattern generator (TPG) with a video timing controller (VTC) block to set up the necessary video timing signals. Data read by each AXI VDMA is sent to a common on-screen display (OSD) core capable of multiplexing or overlaying multiple video streams to a single output video stream. The output of the OSD core drives the DVI video display interface on the board. Performance monitor blocks are added to capture performance data. All 10 video streams moved by the AXI VDMA blocks are buffered through a shared DDR3 SDRAM memory and are controlled by a MicroBlaze™ processor. The reference system is targeted for the Virtex-6 XC6VLX240TFF1156-1 FPGA on the Xilinx® ML605 Rev D evaluation board

    標(biāo)簽: XAPP 740 AXI 互聯(lián)

    上傳時(shí)間: 2013-11-14

    上傳用戶:fdmpy

  • 采用高速串行收發(fā)器Rocket I/O實(shí)現(xiàn)數(shù)據(jù)率為2.5 G

    摘要: 串行傳輸技術(shù)具有更高的傳輸速率和更低的設(shè)計(jì)成本, 已成為業(yè)界首選, 被廣泛應(yīng)用于高速通信領(lǐng)域。提出了一種新的高速串行傳輸接口的設(shè)計(jì)方案, 改進(jìn)了Aurora 協(xié)議數(shù)據(jù)幀格式定義的弊端, 并采用高速串行收發(fā)器Rocket I/O, 實(shí)現(xiàn)數(shù)據(jù)率為2.5 Gbps的高速串行傳輸。關(guān)鍵詞: 高速串行傳輸; Rocket I/O; Aurora 協(xié)議 為促使FPGA 芯片與串行傳輸技術(shù)更好地結(jié)合以滿足市場(chǎng)需求, Xilinx 公司適時(shí)推出了內(nèi)嵌高速串行收發(fā)器RocketI/O 的Virtex II Pro 系列FPGA 和可升級(jí)的小型鏈路層協(xié)議———Aurora 協(xié)議。Rocket I/O支持從622 Mbps 至3.125 Gbps的全雙工傳輸速率, 還具有8 B/10 B 編解碼、時(shí)鐘生成及恢復(fù)等功能, 可以理想地適用于芯片之間或背板的高速串行數(shù)據(jù)傳輸。Aurora 協(xié)議是為專有上層協(xié)議或行業(yè)標(biāo)準(zhǔn)的上層協(xié)議提供透明接口的第一款串行互連協(xié)議, 可用于高速線性通路之間的點(diǎn)到點(diǎn)串行數(shù)據(jù)傳輸, 同時(shí)其可擴(kuò)展的帶寬, 為系統(tǒng)設(shè)計(jì)人員提供了所需要的靈活性[4]。但該協(xié)議幀格式的定義存在弊端,會(huì)導(dǎo)致系統(tǒng)資源的浪費(fèi)。本文提出的設(shè)計(jì)方案可以改進(jìn)Aurora 協(xié)議的固有缺陷,提高系統(tǒng)性能, 實(shí)現(xiàn)數(shù)據(jù)率為2.5 Gbps 的高速串行傳輸, 具有良好的可行性和廣闊的應(yīng)用前景。

    標(biāo)簽: Rocket 2.5 高速串行 收發(fā)器

    上傳時(shí)間: 2013-11-06

    上傳用戶:smallfish

  • 8259 VHDL代碼

    a8259 可編程中斷控制 altera提供 The a8259 is designed to simplify the implementation of the interrupt interface  in 8088 and 8086  based microcomputer systems. The device is known as a programmable interrupt controller.  The a8259 receives and prioritizes up to 8 interrupts,  and in the cascade mode, this can be expanded up to  64 interrupts. An asynchronous reset and a clock input have been added to improve operation and reliability.

    標(biāo)簽: 8259 VHDL 代碼

    上傳時(shí)間: 2014-11-29

    上傳用戶:zhyiroy

  • NIOSII用戶定制指令

    With the Altera Nios II embedded processor, you as the system designercan accelerate time-critical software algorithms by adding custominstructions to the Nios II processor instruction set. Using custominstructions, you can reduce a complex sequence of standard instructionsto a single instruction implemented in hardware. You can use this featurefor a variety of applications, for example, to optimize software innerloops for digital signal processing (DSP), packet header processing, andcomputation-intensive applications. The Nios II configuration wizard,part of the Quartus® II software’s SOPC Builder, provides a graphicaluser interface (GUI) used to add up to 256 custom instructions to theNios II processor

    標(biāo)簽: NIOSII 用戶 定制 指令

    上傳時(shí)間: 2013-11-07

    上傳用戶:swing

  • lpc2292/lpc2294 pdf datasheet

    The LPC2292/2294 microcontrollers are based on a 16/32-bit ARM7TDMI-S CPU with real-time emulation and embedded trace support, together with 256 kB of embedded high-speed flash memory. A 128-bit wide memory interface and a unique accelerator architecture enable 32-bit code execution at the maximum clock rate. For critical code size applications, the alternative 16-bit Thumb mode reduces code by more than 30 pct with minimal performance penalty. With their 144-pin package, low power consumption, various 32-bit timers, 8-channel 10-bit ADC, 2/4 (LPC2294) advanced CAN channels, PWM channels and up to nine external interrupt pins these microcontrollers are particularly suitable for automotive and industrial control applications as well as medical systems and fault-tolerant maintenance buses. The number of available fast GPIOs ranges from 76 (with external memory) through 112 (single-chip). With a wide range of additional serial communications interfaces, they are also suited for communication gateways and protocol converters as well as many other general-purpose applications. Remark: Throughout the data sheet, the term LPC2292/2294 will apply to devices with and without the /00 or /01 suffix. The suffixes /00 and /01 will be used to differentiate from other devices only when necessary.

    標(biāo)簽: lpc datasheet 2292 2294

    上傳時(shí)間: 2014-12-30

    上傳用戶:aysyzxzm

  • DN492-雙單片降壓集成溫度監(jiān)控模塊

      Multioutput monolithic regulators are easy to use and fi tinto spaces where multichip solutions cannot. Nevertheless,the popularity of multioutput regulators is temperedby a lack of options for input voltages above 30V andsupport of high output currents. The LT3692A fi lls thisgap with a dual monolithic regulator that operates frominputs up to 36V. It also includes a number of channeloptimization features that allow the LT3692A’s per-channelperformance to rival that of multichip solutions.

    標(biāo)簽: 492 DN 降壓 溫度監(jiān)控

    上傳時(shí)間: 2014-01-03

    上傳用戶:Huge_Brother

  • LPC1850 Cortex-M3內(nèi)核微控制器數(shù)據(jù)手冊(cè)

    The LPC1850/30/20/10 are ARM Cortex-M3 based microcontrollers for embeddedapplications. The ARM Cortex-M3 is a next generation core that offers systemenhancements such as low power consumption, enhanced debug features, and a highlevel of support block integration.The LPC1850/30/20/10 operate at CPU frequencies of up to 150 MHz. The ARMCortex-M3 CPU incorporates a 3-stage pipeline and uses a Harvard architecture withseparate local instruction and data buses as well as a third bus for peripherals. The ARMCortex-M3 CPU also includes an internal prefetch unit that supports speculativebranching.The LPC1850/30/20/10 include up to 200 kB of on-chip SRAM data memory, a quad SPIFlash Interface (SPIFI), a State Configuration Timer (SCT) subsystem, two High-speedUSB controllers, Ethernet, LCD, an external memory controller, and multiple digital andanalog peripherals.

    標(biāo)簽: Cortex-M 1850 LPC 內(nèi)核微控制器

    上傳時(shí)間: 2014-12-31

    上傳用戶:zhuoying119

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