华为敏捷园区解决方案终端安全技术白皮书(Forescout)1 用户准入检查,保证身份合法: 在用户访问网络访问之前验证用户的身份,只有合法的用户才允许接入网络。这就是 基于用户身份的准入机制,包括 802.1x,Portal,MAC bypass 这几种典型的认证方式。 准入检查由客户端+网络设备+AAA 服务器组成。在 Agile Campus 解决方案中,AAA 服务器可以使用自研的 Agile controller-Campus 1.0,也可以与第三方 Server 对接,例 如 Cisco ISE 系统。 2 终端合规性检查,保证终端合规: 检查用户使用的终端是否符合企业制定的安全策略,例如防病毒和操作系统补丁策 略。可疑或有问题的主机将被隔离或限制网络接入范围,直到它经过修补或采取了相 应的安全措施为止。 终端合规检查由客户端+服务器组成,该系统可以独立部署。若需要将合规检查结果作 为 NAC 控制条件,AAA 系统必须与终端合规检查服务器实现联动。 在 Agile Campus 解决方案中,终端合规检查采用集成第三方厂家方式实现。 3 业务随行,保证用户业务一致性体验 基于安全组的策略规划,实现全网策略的统一部署与自动同步,确保全网策略一致, 让用户自由移动时享受一致的业务体验。 业务随行由网络设备+AAA 服务器+策略服务器组成。在 Agile Campus 解决方案中,若 客户希望同时部署终端合规检查和业务随行,需要部署 Agile controller-Campus 1.0, 同时集成合规检查服务器。
标签: 华为敏捷园区
上传时间: 2022-02-28
上传用户:
Single chip TFT-LCD controller/Driver with On-chip Frame Memory (FM) Display Resolution: 240*RGB (H) *320(V) Frame Memory Size: 240 x 320 x 18-bit = 1,382,400 bits LCD Driver Output Circuits- Source Outputs: 240 RGB Channels- Gate Outputs: 320 Channels- Common Electrode Output Display Colors (Color Mode)- Full Color: 262K, RGB=(666) max., Idle Mode Off- Color Reduce: 8-color, RGB=(111), Idle Mode On Programmable Pixel Color Format (Color Depth) for Various Display Data input Format- 12-bit/pixel: RGB=(444)- 16-bit/pixel: RGB=(565)- 18-bit/pixel: RGB=(666) MCU Interface- Parallel 8080-series MCU Interface (8-bit, 9-bit, 16-bit & 18-bit)- 6/16/18 RGB Interface(VSYNC, HSYNC, DOTCLK, ENABLE, DB[17:0])- Serial Peripheral Interface(SPI Interface)- VSYNC Interface
上传时间: 2022-03-04
上传用户:
CH341系列编程器芯片usb转串口Altium Designer AD原理图库元件库CSV text has been written to file : 1.9 - CH341系列编程器芯片.csvLibrary Component Count : 56Name Description----------------------------------------------------------------------------------------------------CH311Q PC debug port monitorCH331T Mini USB Disk controllerCH340G CH340H USB to TTL Serial / UART, USB to IrDACH340T USB to TTL Serial / UART, USB to IrDACH340R USB to IrDA, USB to RS232 SerialCH340S_P USB to Print Port / ParallelCH340S_S USB to TTL Serial / UART, pin compatible with CH341CH341A_S USB to TTL Serial / UART / I2C/IICCH341S_P USB to Print Port / ParallelCH341A_P USB to Print Port / ParallelCH341S_S USB to TTL Serial / UARTCH341S_X USB to EPP Parallel / SPI / I2C/IICCH341A_X USB to EPP Parallel / SPI / I2C/IICCH341T USB to TTL Serial / UART / I2C/IICCH345T USB to MidiCH352L_M PCI to 8255 mode 2 Parallel for MCU and 16C550 UART / IrDACH352L_P PCI to Print Port / Parallel and 16C550 UART / IrDACH352L_S PCI to Dual 16C550 UART, TTL Serial*2 / IrDA*1CH362L PCI Device / Slave only for RAM / Expansion ROMCH364F Member of CH364 chipsetsCH364P PCI Device / Slave Embedded Flash ROM, for Expansion ROMCH365P PCI Device / Slave, for I/O port or RAM / ROMCH372T USB Device / Slave for MCU, ParallelCH372A USB Device / Slave for MCU, ParallelCH372V USB Device / Slave for MCU, ParallelCH374S USB Host & Device / Slave for MCU, parallel / SPICH374T USB Host & Device / Slave for MCU, parallel / SPICH375S USB Host & Device / Slave for MCU, parallel / UART SerialCH375A USB Host & Device / Slave for MCU, parallel / UART SerialCH375V USB Host & Device / Slave for MCU, parallel / UART SerialCH411G FDC MFM encode and decodeCH421A Dual port bufferCH421S Dual port bufferCH423D I2C/IIC I/O expander, 16 GPO + 8 GPIO, 128 LEDs DriveCH423S I2C/IIC I/O expander, 16 GPO + 8 GPIO, 128 LEDs DriveCH423D_D I2C/IIC I/O expander, 16 GPO + 8 GPIO, 128 LEDs DriveCH423S_D I2C/IIC I/O expander, 16 GPO + 8 GPIO, 128 LEDs DriveCH423G I2C/IIC I/O expander, 6 GPO + 5 GPIOCH432Q Dual 16C550 UART with IrDA, parallel / SPICH432T SPI Dual 16C550 UART with IrDACH450K 6 Digits / 48 LEDs Drive & 8x6 Keyboard, I2C/IICCH450H 6 Digits / 48 LEDs Drive & 8x6 Keyboard, I2C/IICCH450L 8 Digits / 64 LEDs Drive & 8x8 Keyboard, I2C/IICCH451L 8 Digits / 64 LEDs Drive & 8x8 Keyboard, 4 Wire Interface, SPICH451S 8 Digits / 64 LEDs Drive & 8x8 Keyboard, 4 Wire Interface, SPICH451D 8 Digits / 64 LEDs Drive & 8x8 Keyboard, 4 Wire Interface, SPICH452L_2 8 Digits / 64 LEDs Drive & 8x8 Keyboard, I2C/IICCH452L_4 8 Digits / 64 LEDs Drive & 8x8 Keyboard, 4 Wire Interface, SPICH452S_2 8 Digits / 64 LEDs Drive & 8x8 Keyboard, I2C/IICCH452S_4 8 Digits / 64 LEDs Drive & 8x8 Keyboard, 4 Wire Interface, SPICH453S 16 Digits / 128 LEDs Drive, I2C/IICCH453D 16 Digits / 128 LEDs Drive, I2C/IICPCI 32Bit PCI Bus, simple / short cardPCI32 32Bit PCI BusUSB USB Port
标签: ch341 编程芯片 usb 串口 altium designer
上传时间: 2022-03-13
上传用户:
一种通用微型飞行控制器设计 105页摘 要 微小型无人机(Micro/Mini UnmannedAerial Vehicle,M【,AV)在现代军事和国民经济中发 挥着越来越重要的作用。飞行控制器是无人机系统的核心,它自动采集无人机的各种飞行参数, 输出舵面/油门指令以控制无人机的姿态和轨迹,使无人机能在没有人工操纵干预的情况下自主 飞行,完成预定的任务。因此,研制高性能的飞行控制器对改善无人机的飞行性能以及提高任 务完成效率都具有重要的意义。 本文着重研究一种通用微型飞行控制器(General Micro Flight controller,GMFC),以适用 于小型/微型固定翼飞行器、旋翼飞行器、飞艇以及移动机器人的控制。论文的主要工作涉及 GMFC的硬件设计与软件实现,具体内容包括: 1)分析了微型飞行控制器在国内外的研究现状和发展趋势,根据任务需求和设计指标确定 一种通用型、微型化、低功耗、高性能、低成本的嵌入式微型飞行控制器的整体方案。 2)设计了基于ARM的通用微型飞行控制器的硬件系统,包括主控模块、惯性测量单元、 静压高度计、遥控信号接收单元、数据通信模块、电源模块、附加传感器模块等;完成了整个 控制器的PCB制作以及对所有电路的调试工作,使得系统运作正常。 3)研究了基于卡尔曼滤波算法的姿态参考系统,并对姿态参考系统的静态性能和动态性能 进行测试。 4)设计了小型四旋翼飞行器本体平台并对其进行动力学建模仿真; 5)在此基础上,结合四旋翼飞行器试验平台设计了飞行控制律,开发了GMFC的软件系 统,并开展物理实验验证。
标签: 飞行控制器
上传时间: 2022-03-15
上传用户:zhaiyawei
CAN 是 controller Area Network 的缩写,是 ISO 国际标准化的串行通信协议。CAN总线有两个ISO国际标准:ISO11898 和 ISO11519。ISO11898 定义了通信速率为 125 kbps~1 Mbps 的高速 CAN 通信标准,属于闭环总线,传输速率可达1Mbps,总线长度 ≤ 40米。ISO11519 定义了通信速率为 10~125 kbps 的低速 CAN 通信标准,属于开环总线,传输速率为40kbps时,总线长度可达1000米描述了can通信协议
上传时间: 2022-03-24
上传用户:默默
驱动芯片资料ST7735S规格书132RGB x 162dot 262K Color with Frame Memory Single-Chip TFT controller/Driver
标签: 驱动芯片
上传时间: 2022-03-24
上传用户:
对某四轮独立驱动电动汽车轮毂电机进行研究,设计一种永磁无刷直流电机控制器.以STM32F103RBT6芯片为基础,对电机驱动电路、采样电路和保护电路分别进行硬件设计与分析;同时,采用模块化软件设计方案,对该控制器的软件系统进行升级.实验验证表明:所设计的电机控制器能使电机响应迅速、转速稳定、无超调,且电动车动力输出性能良好.A permanent magnet brushless direct current motor controller was designed by studying the hub motor of a four-wheel independent drive electric vehicle.Based on STM32 F103RBT6 chip,the hardware design and analysis of motor drive circuit,sampling circuit and protection circuit were carried out respectively.At the same time,modular software design scheme was adopted to upgrade the software system of the controller.Experimental results show that the designed motor controller can ensure the motor fast response,stable speed,no overshoot,and good power output performances.
上传时间: 2022-03-26
上传用户:qingfengchizhu
以STC12C5A60S2单片机为控制核心,采用2.4G(JF24D)无线遥控模块进行无线发射与接收,设计了一种双电机遥控船模控制系统.该系统通过切换档杆实现前进后退,方向盘左右转动、暂停按钮等控制直流电机的正转、反转、暂停,使得电机驱动的遥控船模实现前进后退、左右转向、暂停等功能,有效解决了驱动功率小和船模之间相互干扰等问题,可广泛应用于遥控船模领域.Using STC12C5A60S2 single-chip microcomputer as the controller and 2.4 G(JF24D)wireless remote control module for wireless transmission and reception, a dual-motor remote control ship model control system is designed. The system realizes forward and backward by switching the gear lever. The steering wheel rotates left and right and the pause button controls the forward, reverse and pause of the dc motor. The remote controller of ship model driven by the motor realizes forward and backward, left and right steering, pause and other functions. The ship model control system can effectively solve the problems of small driving power and mutual interference between ship models, and can be widely used in the field of remote controller of ship model.
上传时间: 2022-03-27
上传用户:
CAN总线是汽车上应用最广泛的车载网络总线,具有实时性强、可靠性高、成本低等优点。鉴于此,介绍了一种利用飞思卡尔系列单片机MC9S12XS128作为控制器,利用其内部的MSCAN模块、CAN收发器TJA1040等外围元件进行CAN总线通信节点设计。该设计能够实现CAN总线数据的发送与接收,可应用于汽车及其他各种CAN总线通信系统。CAN bus is the most widely used on-board network bus in automobiles. It has the advantages of realtime, high reliability and low cost. In view of this,this paper introduces the design of CAN bus communication node by using Freescale MC9S12XS128 as controller,using its internal MSCAN module,CAN transceiver TJA1040 and other peripheral components. This design can realize the sending and receiving of CAN bus data,and can be used in automobile and other CAN bus communication systems.
上传时间: 2022-03-27
上传用户:
数字示波器功能强大,使用方便,但是价格相对昂贵。本文以Ti的MSP430F5529为主控器,以Altera公司的EP2C5T144C8 FPGA器件为逻辑控制部件设计数字示波器。模拟信号经程控放大、整形电路后形成方波信号送至FPGA测频,根据频率值选择采用片上及片外高速AD分段采样。FPGA控制片外AD采样并将数据输入到FIFO模块中缓存,由单片机进行频谱分析。测试表明:简易示波器可以实现自动选档、多采样率采样、高精度测频及频谱分析等功能。Digital oscilloscope is powerful and easy to use, but also expensive. The research group designed a low-cost digital oscilloscope, the chip of MSP430F5529 of TI is chosen as the main controller and the device of EP2C5T144C8 of Altera company is used as the logic control unit. Analog signal enter the programmable amplifier circuit, shaping circuit and other pre-processing circuit. The shaped rectangular wave signal is sent to FPGA for measure the frequency. According to the frequency value to select AD on-chip or off-chip high-speed AD for sampling. FPGA controls the off-chip AD sampling and buffers AD data by FIFO module. The single chip microcomputer receives the data, and do FFT for spectrum analysis. The test shows that the simple oscilloscope can realize automatic gain selection, sampling at different sampling rates, high precision frequency measurement and spectrum analysis.
上传时间: 2022-03-27
上传用户: