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TheResearchAndIPDesignOfSMBusBasedSmartBattery
- 本文研究了SMBus 规范,介绍了典型的基于片上系统(SoC)设计的知识产权核(IP)实现,采用自顶向下 (Top-down)的集成电路设计方法完成了设计,并架构了基于总线功能模型(BFM)的验证平台 完成功能仿真,顺利完成了逻辑综合和时序仿真。FPGA 验证和投片后测试均表明设计具有 良好的性能。-This paper studies the SMBus specification, based on the introduction of the typical system
s3c6410_user_manual_rev1[1].1
- This PDF file is s3c6410 usrer manual. s3c6410 SOC chip use ARM11 core.
IntegrationofSystem-On-ChipSimulationModels
- SOC仿真模型的整合 丹麦技术大学 硕士论文 通过SystemC来建立SOC仿真模型-Integration of System-On-Chip Simulation Models Technical University of Denmark Master Thesis Reaching deep sub-micron technology within the near future makes it possible to implement comple
Reusable_Embedded_In_Circuit_Emulator
- Reusable Embedded In-Circuit Emulator for a Microprocessor Core in an SOC Reusable Embedded In Circuit Emulator Structure and Software and Hardware and Fireware and Document and Tool and Soc Sturcture
Reusable_Embedded_In-Circuit_Emulator_for_a_Microp
- Reusable Embedded In-Circuit Emulator for a Microprocessor Core in an SOC
RT3050_5x_V2.0_081408_0902
- The RT3052 SOC combines Ralink’s 802.11n draft compliant 2T2R MAC/BBP/RF, a high performance 384MHz MIPS24KEc CPU core, 5-port integrated 10/100 Ethernet switch/PHY, an USB OTG and a Gigabit Ethernet MAC. With the RT3052, there are ver
Heart-rate-signal-acquisition
- 介绍了一种基于SoC的简单心率测量方法。整体系统设计包括模拟电路模块和C51 CPU核。其中CPU核是数字处理部分,用来处理心率信号和其它应用的输出信号。经过模拟电路模块,心率信号被转换成脉冲信号,然后把脉冲信号作为心率估算的输入信号进行计算。整个系统工作在一片芯片上。-It describes a simple method of measuring heart rate-based SoC. Overall system design includes analog circuit mod
Hi3518E
- Hi3518E 720p IP-Cam SOC Hi3518E Processor Core ARM9@Max. 440 MHz, 16 KB I-cache, and 16 KB D-cache
LC930_AR9331-WiFi-module
- LC930 是深圳灵卡技术推出的低成本,较低功耗,高性能嵌入式WiFi模块。采用高通AR9331一体化单芯片WIFI无线SOC解决方案. 内部集成CPU,WIFI基带,PA,使产品体积显著减小。LC930引出了众多功能接口,例如:串口,SPI主设备口,网口,USB口,I2S接口,GPIO口等,使得LC930可以广泛应用在无线数据传输,多媒体音视频传输,无线数据存储等应用场合。 LC930是一款基于高通Atheros ARA9331的芯片,8 MB Flash,64MB DDR2的全新功能WIFI
基于SOC的手持式频谱仪的软件设计与实现_邓嘉
- 一篇比较好介绍以zynq为核心设计嵌入linux系统的文献(A good introduction to zynq as the core design embedded Linux system documentation)
电池SOC估算
- 电池荷电状态的估算是电池管理系统的核心内容估算准确与否,将直接影响到电池管理系统的决策和控制。在结合开路电压法、安时法的基础上。充分利用扩展卡尔曼滤波法的修正功能综合考虑电池充放电倍率、温度和充放电循环次数等因素对电池的影晌,提出了卡尔曼滤波修正算法,并将其应用在插电式混合动力汽车电池管理系统中。(The estimation of battery charge state is the core content of battery management system. Whether th