NUC130产品中文简介
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尊敬的浪潮英信服务器用户本手册介绍了英信NF130服务器硬件的技术特点与软件的设置安装过程请将我方产品的包装物交废品收购站回收利用以利于污染预防未经浪潮集团有限公司许可任何单位和个人不得以任何形式复制本用户手册本手册中的内容如有变动恕不另行通知请向浪潮集团有限公司垂询浪潮Pentium奔腾是Intel 公司的注册商标Windows是微软公司的注册商标声 明 在正式使用英信NF130服务器之前方可开始使用英信NF130服务器在使用英信NF130服务器过程中2请将机器的详细配置反映给我们的客户服务中心请不要和任何其他型号机器的相应设备混用我们希望您首先和相应软件的提供商联系共同解决您碰到的问题您购买的产品可能和手册中的描述有所不同6.本手册中涉及的各软硬件产品的标识7.我们特别提醒您8.以上声明中浪潮集团有限公司拥有对以上声明的最终解释权如果对该电池使用不当可以引起爆炸危险关于本手册第一章加电运行系统设置这一章介绍英信NF130服务器BIOS设置情况系统硬件这一章介绍英信NF130服务器的硬件安装情况IDE RAID这一章介绍如何在英信NF130服务器上配置第五章疑难解答在这一章中以避免您在操作中出现不必要的失误希望广大用户能够包涵目 录第一章 快速使用指南.....................................................11.1 开始使用英信NF130服务器.........................................11.2 英信NF130服务器技术特性.........................................31.3 随机软件说明.....................................................4第二章 系统设置.........................................................52.1 设置系统BIOS.....................................................52.2 主板跳线设置....................................................14第三章 系统硬件........................................................163.1 安装处理器......................................................163.2 安装内存........................................................183.3 安装硬盘........................................................203.4 安装板卡........................................................21第四章 IDE RAID........................................................ 224.1 IDE RAID设置....................................................22第五章 安装操作系统....................................................295.1 安装 Windows 2000 Server........................................295.2 安装RedHat Linux 7.3............................................345.3 安装Redflag Linux Server 3.0....................................395.4 安装Netware 5.0.................................................43第六章 疑难解答........................................................486.1 常见故障解决....................................................486.2 技术支持信息....................................................49请将我方产品的包装物交给废品收购站回收利用1第一章 快速使用指南1.1开始使用英信NF130服务器一然后用裁纸刀把包装箱的封条打开把主机从包装箱中抬出如果有缺漏请您与供货商联系放置服务器请为NF130服务器选择合适的机柜和放置地点通风良好并且远离热源电动机等设备表1-1注:如果要将机器安装到机柜中NF130服务器快速使用指南 -- 352永不停顿的浪潮英信服务器英信NF130三光驱 2USB接口 4 千兆网卡指示灯 6硬盘状态指示灯后面板示意图1鼠标接口 3USB接口 5VGA接口 7百兆网卡接口 93四显示器2连接好键盘34系统的连接完成1.2 英信NF130服务器技术特性一 支持单P4处理器 系统总线533MHz兼容400MHz支持PC2100/1600 DDR ECC Unbuffer内存 2个IDE通道 支持ATA 66/100/133 IDE硬盘8M显存 1个PS/2鼠标接口 4个USB接口 符合ATX 12V规范4永不停顿的浪潮英信服务器英信NF130二支持WOL2CPU温度及散热风扇转速的监测定时开机功能1.3 随机软件说明英信NF130服务器随机带有如下软件导航软件光盘2. 浪潮英信服务器管理软件光盘2. IDE RAID Driver for Redhat7.3. 支持Redhat Linux7.3操作系统的IDE RAID控制器驱动程序但我们建议您妥善保存5第二章 系统设置前 言BIOS设置是指利用专用的设置程序来调整系统和硬件参数随着硬件种类的增多由于对系统的正常运行有很大影响或者降低系统的运行性能建议您使用系统出厂时的默认值请记录下相应的初始设置可以根据记录的初始设置重新恢复在未理解各参数表示的意义前本章主要对常用设置作详细说明2.1 设置系统BIOS加电启动服务器Press TAB to show Post screen,DEL to enter SETUP系统可进入BIOS设置程序您可以通过箭头方向键进行项选择永不停顿的浪潮英信服务器英信NF130入子菜单Quit 67和使用IDE Primary Master/Slave选中该项后使用Auto默认设置为8永不停顿的浪潮英信服务器英信NF130Pri.M Maxtor xxx外接普通IDE硬盘时会有此项Virus Warning此项用来设定IDE硬盘引导扇区病毒入侵警报功能如果程序企图在此区中写入信息并且发出蜂鸣报警First/Scond/Third Boot Device该项用于在启动系统或安装操作系统时使用系统的默认设置为Boot Other Device选择该项进行参数设置Enabled93DRAM Data Integrity Mode此项设置使能系统DRAM的ECC检测功能+/-Non-ECC进行参数设置10永不停顿的浪潮英信服务器英信NF1304.Integrated Peripherals该部分可实现对主板整合接口设备的设置On-Chip Primary/Secondary PCI IDE选择两个预设值Enabled可以激活主板上的两个普通IDE通道USB Controller此项用来设定是否允许系统使用USB设备 USB 2.0 Controller此项用来设定是否支持USB2.0标准的设备+/-进行参数设置11Power Management Setup进行参数设置Enabled.SoftBTTN 此项设置机器电源开关的功能方式+/-默认设置12永不停顿的浪潮英信服务器英信NF1306建议使用系统的默认设置可以实时显示CPU的温度Shutdown Temperature此项用来设置CPU温度达到设置的上限时默认设置为DisabledCPU Clock Ratio此项用来设定外频和处理器内部时钟频率的倍数关系13检时不能正确显示CPU频率Load Fail-Safe Defaults自动载入系统最安全的设置Load Fail-Safe Defaults(Y/N)?,键入Y回车确认此项自动载入的参数未对系统的性能进行优化选中该项回车Load Optimized Defaults(Y/N)?,键入Y回车确认此项自动载入的参数针对系统进行了优化Setup Supervisor/User Password Setting此项可以设置系统超级用户口令和用户口令可以防止未被授权的人更改系统的配置系统每次开机都会要求输入密码口令选中此项Enter Password:此时注意大小写退出BIOS设置后选中此项直接按回车并确认后Save & Exit Setup保存当前修改后的参数选择该项永不停顿的浪潮英信服务器英信NF130提示取消操作否则按ESC设置程序不保存修改后的参数并退出BIOS否则直接回车取消操作1415一JBAT1CMOS跳线有三个引脚Pin1 默认 清除CMOS3引脚1从插座上拔下电源线插头3引脚 把跳线帽恢复到1 连接好电源线2短接EnableDisable永不停顿的浪潮英信服务器英信NF130第三章 系统硬件本章将指导用户如何安装系统硬件静电释放可能损坏服务器组件在进行与系统硬件相关的操作时12不要触摸板卡上芯片的请放回各自的防静电袋持拿处理器时打开机箱所示16173先把导风架移走轻轻放下放置合适后图3. 1图3. 218永不停顿的浪潮英信服务器英信NF1304散热片上的螺丝要与主板上的4个固定孔柱对好然后将散热片风扇的电源插头插在主板的CPU风扇电源插座上3.2 安装内存如果您要扩展或更换英信NF130服务器内存这样可以确保系统的稳定性不要用力过大关闭系统电源将内存插槽两端的固定卡向两侧打开图3.3注 意193注意内存条上的缺口和内存插槽上的凸起要吻合注意把两边的卡销卡好图3.4图3.54将机箱盖安装好20永不停顿的浪潮英信服务器英信NF1303.3 安装硬盘英信NF130服务器支持ATA-133/100/66 IDE硬盘.如果您要扩展此类设备1断开交流电源线缆34将其三个固定孔与机箱中间硬盘固定架上的尖凸对应好把硬盘完全固定如图3.6所示进行完以上操作后213.4 安装板卡为确保系统的稳定性推荐使用我们测试认证过的相应型号的产品断开交流电电缆 将板卡插入转接卡的PCI槽并用螺丝固定然后用力下压安装了PCI卡的固定支架 进行完以上操作后22永不停顿的浪潮英信服务器英信NF130第四章 IDE RAID4.1 IDE RAID设置一 开机启动检测2按<Ctrl - F>进入IDE RAID设置主菜单MBFastTrak133(tm)23二自动设置菜单中[Auto Setup Options Menu]为可设置部分1Optimize Array for 改变选项设置Performance: 表示RAID0表示RAID1 [Performace]Typical Application to use ] Up [24永不停顿的浪潮英信服务器英信NF130该操作只有当步骤 1 设置为选中使用/DESKTOP表示应用于服务器表示应用于音频/视频编辑4如果是创建RAID1N系统提示查看磁盘分配菜单如ChannelDo you want the disk image to be duplicated to another?(Yes/No)Y - Create and duplicateN - Create OnlyArray has been created.<Press any key to reboot >25Capacity四查看阵列菜单通过上进入下一级菜单按[ESC]键Delete Array键进入Delete Array菜单]Up [26永不停顿的浪潮英信服务器英信NF130删除阵列步骤如下2系统提示4退出菜单并重新启动机器Rebuild Array使RAID阵列恢复正常1并进入IDE RAID 主设置菜单]Up [27354按回车键继续按回车键继续重建结束后Controller Configuration键进入Controller Configuration菜单[Rebuild Array Menu]Array No RAID Mode Total Drv Capacity(MB) StatusArray 1 Mirror 2 81000 CriticalArray 2 ------- ------- ------- -------Array 3 ------- ------- ------- -------Array 4 ------- ------- ------- -------[ Enable[System Resources Configuration]Channel 1 Interrupt B I/O Port ,Space] change Option [ESC] Exit28永不停顿的浪潮英信服务器英信NF130在菜单中项默认设置为第五章 安装操作系统本章介绍的各操作系统的安装方法都是针对配置了IDE RAID的系统Netware5.0操作系统时可以作为安装参考Windows 2000 Server(中文版)安装光盘+补丁程序IDE RAID Driver for Windows/Netware驱动程序软盘(随机带)浪潮导航软件光盘USB软驱安装步骤1Press TAB to Show Post Screen,DEL to enter SETUP 进入BIOS设置程序具体设置可参考手册中系统设置部分按任意键3Press F6 if you need to install a third partySCSI or RAID Driver......系统开始加载文件2930永不停顿的浪潮英信服务器英信NF1304Setup was unable to load support for the massstorage device you specified...根据提示插入驱动程序软盘在驱动程序列表中选择系统显示界面系统显示R要开始安装Windows 2000要修复Windows 2000中文版的安装要停止安装Windows 2000并退出安装程序继续安装Windows 2000许可协议用户可通过按<Page Down>浏览协议内容9以下列表显示这台计算机上的现有磁盘分区和尚未划分的空间要在尚未划分的空间中创建磁盘分区删除所选磁盘分区用户可根据实际情况选择在此选中按下<C>键3110要回到前一个屏幕而不创建新磁盘分区最大新磁盘分区为 XXX MB单位MB否则在后面系统将提示您重新分区11在此选中没有格式化的选择的磁盘分区没有经过格式化使用上移和下移箭头键选择所需的文件系统请按ESC系统默认选择建议使用请稍候系统会显示格式化进度条32永不停顿的浪潮英信服务器英信NF130安装程序格式化完新的分区后请稍候系统会显示文件复制进度条取出驱动程序软盘和光盘提示插入安装光盘安装程序提示以便正确安装Windows 2000 Server15如键盘和鼠标等16区域设置根据需要进行设置17自定义您的Windows 2000 软件姓名然后单击<下一步>25个字符Windows 2000 Server支持两种授权模式每服务器V33客户端访问许可证设置20根据实际情况设置计算机名不能超过14个字符根据实际需要22单击<下一步>安装[开始]菜单项目保存设置然后继续下一步正在完成Windows 2000安装向导单击<完成>系统重启后输入用户名和密码26配置服务器如果不需要配置27前的勾去掉安装Windows 2000 Server操作系统的补丁程序在导航光盘中找到补丁程序 安装完成后重启系统34永不停顿的浪潮英信服务器英信NF13030在点击鼠标右键Windows 2000 Server安装过程基本结束可以作为安装参考RedHat Linux 7.3 安装光盘IDE RAID Driver for RedHat 7.3在安装操作系统前确认USB 2.0 Con-troller 项设置为Disabled安装步骤12时系统提示选择按回车继续Welcome to Red Hat Linux在提示符后依次键入如下命令35#cd /tmp#mknod sda b 8 0#mkdir /mnt/floppy将USB软驱连接到机器前置USB接口然后依次键入如下命令时返回到单击<Next>继续English8界面单击<Next>继续选择GenericInstall Type选择并根据需要本安装过程以选择Server为例36永不停顿的浪潮英信服务器英信NF13011我们在此选择系统提示,点击<Yes>继续选择,单击<Next>继续you have selected to remove all partitions......15.在单击<Next>继续Boot Loader Configuration17界面然后单击<Next>继续Network ConfigurationNetmask 等参数19Firewall Configuration在此我们采用默认设置20Additional Language Support在此我们采用默认设置21Time zone selectionAsia/shanghai22Account Configuration最少6位根据需要选择要安装的组件37我们建议选择安装GNOME24Graphical Interface(X) ConfigurationATI Rage XL25窗口系统将开始复制文件需要按照提示更换安装光盘Boot Disk Creation如果不需要27Monitor Configuration单击<Next> 继续安装Customize Graphics Configuration在下方的单击<Next> 继续安装Congratulations Ctrl+Alt+F2依次键入如下命令setup is complete.umount floppydisk and press ......"后键返回到注 意38永不停顿的浪潮英信服务器英信NF130单击<Exit>按钮系统重新引导配置网卡百兆网卡的驱动程序在安装系统时已自动加载1进入图形界面System2点击Add然后点击<Next>继续eth1配置IP地址Subnet Mask对话框中选择eth1在出现的对话框中选择Yes完成配置会看到/SCSI/FastFrak.0的提示再次重新启动系统后395.3 安装Redflag Linux Server3.0本安装过程为Redflag Linux Server3.0的基本安装步骤具体如何设置有关选项安装前需要准备确认USB 2.0 Con-troller 项设置为Disabled1系统从CD-ROM中执行引导程序提示符后键入expert3界面选择Cancel, 按<Enter>键继续us5installation method6I don't have any special device drivers loaded foryour system......Add Devices7what kind of device would you like to addSCSI8Promise FastTrak 100 ide-raid注 意40永不停顿的浪潮英信服务器英信NF1309时10界面选择Agree, 然后点击<下一步>继续正确输入产品序列号13定制软件包在此必须选择定制软件包无法正常安装千兆网卡驱动全部选中14本安装过程选择然后点击<下一步>继续 注Save表示把当前的分区表信息写入到硬盘中放弃当前的改动点击<Add>Partition TypeSize(Megs)交换分区的容量至少为16M在/Size(Megs)建议最少为1G提示时4118选择需要格式化的分区如果选中 "在格式化时检查坏块"将在格式化的过程中检查坏磁道系统进入配置用户界面Root删除在添加普通用户时必须按20可根据自己的需要进行设置21如果不想改变选项22点击<确定>继续并显示安装进度进入创建引导盘界面启动Linux系统创建引导软盘然后单击<下一步>就会完成引导软盘的制作选中然后单击<下一步>继续进入安装完成界面取注 意注 意42永不停顿的浪潮英信服务器英信NF130出安装光盘配置网卡在桌面点击控制面板网络设定客户任务主机名和IP网络设备在弹出的窗口中点击从eepro100百兆网卡按照如下步骤压缩包复制到指定目录# cp e1000-4.2.17.tar.gz /usr/local/src# cd /usr/local/src# tar zxvf e1000-4.2.17.tar.gz# cd e1000-4.2.17/src# make# make install# insmod e1000# reboot2. 重启系统后按照提示进入完成对网卡IP435.4 安装NetWare 5.0本安装过程为Novell NetWare 5.0 的基本安装步骤具体如何设置有关选项Novell Netware 5.0 操作系统光盘DOS 启动软盘DOS系统下的IDE CDROM驱动软盘网卡驱动盘IDE RAID Driver for Windows/Netware软盘安装准备将USB软驱连接到机器上创建一主DOS分区编辑Config.sys 和Autoexec.bat 文件步骤如下44永不停顿的浪潮英信服务器英信NF130注意 在A:\> 提示符下键入Install ,按<Enter> 开始安装在DOS 提示符下改变目录到CD-ROM 盘符(如D:)启动安装...Chinese simplified...4 按[PageDown]浏览许可协议或直接按[F10]键接受协议Welcome to the Netware server installation... new server...C:\nwserver , 按[Enter]键继续Select the regional settings for the server 按[Enter]键继续选择<Continue>系统开始拷贝文件当系统出现如下提示时45用上下箭头键选择 IDEATA[INS]键进入界面依次按[INS]键系统从软盘读取文件按[ENTER]键继续 按[ENTER]键继续 按[ENTER]键继续然后选择系统开始加载驱动The following device drivers were detected forthis server.Add,Change,or delete device drivers as needed." 界面 MPS14Hotplug Support Module Optional。
ICP Tool Revision HistoryNuEclipseRevision HistoryThe information described in this document is the exclusive intellectual property ofNuvoton Technology Corporation and shall not be reproduced without permission from Nuvoton.Nuvoton is providing this document only for reference purposes of NuMicro ® microcontroller based systemdesign. Nuvoton assumes no responsibility for errors or omissions.All data and specifications are subject to change without notice.For additional information or questions, please contact: Nuvoton Technology Corporation .TABLE OF CONTENTS1REVISION HISTORY (3)2SUPPORTED MICROCONTROLLER (4)3RESOURCES (8)ICP Tool Revision HistoryICP Tool Revision History1 Revision History Version Release Date Description1.02.022 2023/03/21 • Added supported microcontroller:– Nuvoton M0 Family: M091 Series.– Nuvoton M7 Family: KM1M7C Series.1.02.021 2022/11/15 • Added supported microcontroller:– Nuvoton M0 Family: M0A23OC1ACU, M0A23EC1ACU, M029GGC0AE.– Nuvoton M23 Family: NUC1263 Series, M2354LJFCE.1.02.020 2022/06/24 • Added supported microcontroller:– NuMicro M4 Family: M467H3SJHAE, M467H3KJHAE, M467H3JJHAE, M460KGCAE, M460SGCAE, M460AGCAE, M460LGCAE, M460YGCAE.– NuMicro MA35 Family: MA35D16H8A7C and MA35D16H0A7C.1.02.019 2022/04/29 • Added supported microcontroller:– NuMicro MA35 Family: MA35D1 series.• Upgraded eclipse version from Mars to 2021 and supported 64bits OS only.1.01.019 2021/12/01 • Added supported microcontroller:– NuMicro M4 Family: M460, I94100 series.– NuMicro M7 Family: KM1M7A.1.01.018 2021/03/12 • Added supported microcontroller:– NuMicro M0 Family: M030G/M031G series.– NuMicro M23 Family: NUC1262 series.1.01.017 2020/09/30 • Added supported microcontroller:– NuMicro M0 Family: M030G, M071, M0A21 series.– NuMicro M23 Family: M251 series.– NuMicro M4 Family: M471 series.1.01.016 2020/03/06 • Added supported microcontroller:– NuMicro M0 Family: M031BT, NUC1311 series.– NuMicro M23 Family: M2354 series.– NuMicro M4 Family: M479 series.1.01.015 2019/08/09 • Added supported microcontroller:– NuMicro M0 Family: M031 series.– NuMicro M23 Family: M261 series.– NuMicro M4 Family: M480LD series.ICP Tool Revision History 2Supported MicrocontrollerProduct Line Series Part NumberNuMicro®M0 FamilyM0A21M0A21EB1AC, M0A21EC1AC, M0A21OB1AC, M0A21OC1AC,M0A23EC1AC, M0A23OC1AC, M0A23EC1ACU, M0A23OC1ACU M029G/M030G/M031GM029GGC0AE, M030GGD1AE, M030GGC1AE, M030GTC1AE,M030GTD1AE M030GGC0AE, M030GTC0AE, M031GGD2AE,M031GTD2AE, M031GGC2AE, M031GTC2AE, M031GGC1AE,M031GTC1AEM031M030FD2AE, M030LD2AE, M030TD2AE, M031BTYD2AN, M031BTYE3AN,M031EB0AE, M031EC1AE, M031FB0AE, M031FC1AE, M031KG6AE,M031KG8AE, M031KIAAE, M031LC2AE, M031LD2AE, M031LE3AE,M031LG6AE, M031LG8AE, M031SC2AE, M031SD2AE, M031SE3AE,M031SG6AE, M031SG8AE, M031SIAAE, M031TB0AE, M031TC1AE,M031TD2AE, M031TE3AE, M032EC1AE, M032FC1AE, M032KG6AE,M032KG8AE, M032KIAAE, M032LC2AE, M032LD2AE, M032LE3AE,M032LG6AE, M032LG8AE, M032SE3AE, M032SG6AE, M032SG8AE,M032SIAAE, M032TC1AE, M032TD2AEM071M071MC2AE, M071MD2AE, M071R1D3AE, M071R1E3AE, M071SD3AE,M071SE3AE, M071VG4AEM091M091TC2AE, M091TD2AE, M091YC2AE, M091YD2AEM051DNM0516LDN, M0516ZDN, M052LDN, M052ZDN, M054LDN, M054ZDN,M058LDN, M058ZDNM051DEM0515LDE, M0516LDE, M0516ZDE, M052LDE, M052ZDE, M054LDE,M054ZDE, M058LDE, M058MDE, M058ZDEM0518AE M0518LC2AE, M0518LD2AE, M0518SC2AE, M0518SD2AEM0519AE M0519LD3AE, M0519LE3AE, M0519SD3AE, M0519SE3AE, M0519VE3AEM0564M0564LE4AE, M0564LG4AE, M0564SE4AE, M0564SG4AE, M0564VG4AEM058SAN M058SFAN, M058SLAN, M058SSAN, M058SZANMINI51DEMINI51FDE, MINI51LDE, MINI51QDE, MINI51TDE, MINI51ZDE,MINI52FDE, MINI52LDE, MINI52QDE, MINI52TDE, MINI52ZDE,MINI54FDE, MINI54FHC, MINI54LDE, MINI54QDE, MINI54TDE,MINI54ZDEMINI55MINI55LDE, MINI55TDE, MINI55ZDEMINI57MINI57EDE, MINI57FDE, MINI57TDE, MINI57XDEMINI58MINI58FDE, MINI58LDE, MINI58QDE, MINI58TDE, MINI58ZDENano100ANNano100LC2AN, Nano100LD2AN, Nano100LD3AN, Nano100SC2AN,Nano100SD2AN, Nano100SD3AN, Nano100VD2AN, Nano100VD3AN,Nano100ZC2AN, Nano100ZD2AN, Nano100ZD3AN, Nano120LC2AN,Nano120LD2AN, Nano120LD3AN, Nano120SC2AN, Nano120SD2AN,Nano120SD3AN, Nano120VD2AN, Nano120VD3AN, Nano120ZC2AN,ICP Tool Revision History Nano120ZD2AN, Nano120ZD3AN, Nano130VD3ANNano100BN Nano100KC2BN, Nano100KD2BN, Nano100KD3BN, Nano100KE3BN,Nano100LC2BN, Nano100LD2BN, Nano100LD3BN, Nano100LE3BN,Nano100ND2BN, Nano100ND3BN, Nano100NE3BN, Nano100SC2BN,Nano100SD2BN, Nano100SD3BN, Nano100SE3BN, Nano100WE3BN,Nano110KC2BN, Nano110KD2BN, Nano110KD3BN, Nano110KE3BN,Nano110RC2BN, Nano110RD2BN, Nano110RD3BN, Nano110SC2BN,Nano110SD2BN, Nano110SD3BN, Nano110SE3BN, Nano120KC2BN,Nano120KD2BN, Nano120KD3BN, Nano120KE3BN, Nano120LC2BN,Nano120LD2BN, Nano120LD3BN, Nano120LE3BN, Nano120SC2BN,Nano120SD2BN, Nano120SD3BN, Nano120SE3BN, Nano130KC2BN,Nano130KD2BN, Nano130KD3BN, Nano130KE3BN, Nano130SC2BN,Nano130SD2BN, Nano130SD3BN, Nano130SE3BNNano103 Nano103SD3AE, Nano103LD3AE, Nano103ZD3AENano102/112AN Nano102LB1AN, Nano102LC2AN, Nano102SC2AN, Nano102ZB1AN,Nano102ZC2AN, Nano112LB1AN, Nano112LC2AN, Nano112RB1AN,Nano112RC2AN, Nano112SB1AN, Nano112SC2AN, Nano112VC2ANNUC029AN NUC029LAN, NUC029TANNUC029AE NUC029FAE, NUC029TAENUC029xDE NUC029LDE, NUC029SDENUC029xEE NUC029LEE, NUC029SEENUC029xGE NUC029KGE, NUC029LGE, NUC029SGENUC029ZAN NUC029ZANNUC130/140CN NUC130LC1CN, NUC130LD2CN, NUC130LE3CN, NUC130RC1CN,NUC130RD2CN, NUC130RE3CN, NUC130VE3CN, NUC140LC1CN,NUC140LD2CN, NUC140LE3CN, NUC140RC1CN, NUC140RD2CN,NUC140RE3CN, NUC140VE3CNNUC100/120DN NUC100LC1DN, NUC100LD1DN, NUC100LD2DN, NUC100LD3DN,NUC100LE3DN, NUC100RC1DN, NUC100RD1DN, NUC100RD2DN,NUC100RD3DN, NUC100RE3DN, NUC100VD2DN, NUC100VD3DN,NUC100VE3DE, NUC100VE3DN, NUC120LC1DN, NUC120LD1DN,NUC120LD2DE, NUC120LD2DN, NUC120LD3DN, NUC120LE3DN,NUC120RC1DN, NUC120RD1DN, NUC120RD2DN, NUC120RD3DN,NUC120RE3DN, NUC120VD2DN, NUC120VD3DN, NUC120VE3DN,NUC122LC1DN, NUC122LD2DN, NUC122SC1DN, NUC122SD2DN,NUC122ZC1DN, NUC122ZD2DNNUC121 NUC121SC2AE, NUC121LC2AE, NUC121ZC2AE, NUC125SC2AE,NUC125LC2AE, NUC125ZC2AENUC123AN NUC123LC2AN1, NUC123LD4AN0, NUC123SC2AN1, NUC123SD4AN0,NUC123ZC2AN1, NUC123ZD4AN0NUC123AE NUC123LC2AE1, NUC123LD4AE0, NUC123SC2AE1, NUC123SD4AE0,NUC123ZC2AE1, NUC123ZD4AE0ICP Tool Revision HistoryNUC126NUC126LE4AE, NUC126LG4AE, NUC126NE4AE, NUC126SE4AE,NUC126SG4AE, NUC126VG4AENUC1261NUC1261LG4AE, NUC1261LE4AE, NUC1261NE4AE, NUC1261SG4AE,NUC1261SE4AENUC131AENUC131LC2AE, NUC131LC2AEU, NUC131LD2AE, NUC131LD2AEU,NUC131SC2AE, NUC131SC2AEU, NUC131SD2AE, NUC131SD2AEU NUC1311NUC1311LC2AE, NUC1311LD2AENUC200/220ANNUC200LC2AN, NUC200LD2AN, NUC200LE3AN, NUC200SC2AN,NUC200SD2AN, NUC200SE3AN, NUC200VE3AN, NUC220LC2AN,NUC220LD2AN, NUC220LE3AN, NUC220SC2AN, NUC220SD2AN,NUC220SE3AN, NUC220VE3ANNUC230/240AENUC230LC2AE, NUC230LD2AE, NUC230LE3AE, NUC230SC2AE,NUC230SD2AE, NUC230SE3AE, NUC230VE3AE, NUC240LC2AE,NUC240LD2AE, NUC240LE3AE, NUC240SC2AE, NUC240SD2AE,NUC240SE3AE, NUC240VE3AENUC2201NUC2201LE3AE, NUC2201SE3AENuMicro®M23 FamilyM251M251EC2AE, M251FC2AE, M251KE3AE, M251KG6AE, M251LC2AE,M251LD2AE, M251LE3AE, M251LG6AE, M251SC2AE, M251SD2AE,M251SE3AE, M251SG6AE, M251ZC2AE, M251ZD2AE, M252EC2AE,M252FC2AE, M252KE3AE, M252KG6AE, M252LC2AE, M252LD2AE,M252LE3AE, M252LG6AE, M252SC2AE, M252SD2AE, M252SE3AE,M252SG6AE, M252ZC2AE, M252ZD2AE, M254KE3AE, M254SD3AE,M254SE3AE, M256KE3AE, M256SE3AE, M258KE3AE, M258SE3AE,M254SD2AE, M256MD2AE, M256SD2AE, M254MD2AE, M258KG6AE,M254KG6AE, M258SG6AE, M254SG6AEM253M253LD3AE, M253LE3AE, M253ZE3AEM261M261ZIAAE, M261SIAAE, M261KIAAE, M262ZIAAE, M262SIAAE,M262KIAAE, M263ZIAAE, M263SIAAE, M263KIAAEM2351M2351KIAAE, M2351SFSIAAP, M2351SIAAE, M2351ZIAAEM2354M2354KJFAE, M2354LJFAE, M2354SJFAE, M2354LJFCENUC1262NUC1262LE4AE, NUC1262NE4AE, NUC1262SE4AENUC1263NUC1263LD4AE, NUC1263ND4AE, NUC1263SD4AE, NUC1263ZD4AENDA102NDA102SD2, NDA102SE3NuMicro®M4 FamilyM451M451LC3AE, M451LD3AE, M451LE6AE, M451LG6AE, M451MLC3AE,M451MLD3AE, M451MLE6AE, M451MLG6AE, M451MSC3AE,M451MSD3AE M451RC3AE, M451RD3AE, M451RE6AE, M451RG6AE,M451VE6AE, M451VG6AE, M452LC3AE, M452LD3AE, M452LE6AE,M452LG6AE, M452RD3AE, M452RE6AE, M452RG6AE, M453LC3AE,M453LD3AE, M453LE6AE, M453LG6AE, M453RD3AE, M453RE6AE,M453RG6AE, M453VD3AE, M453VE6AE, M453VG6AE, M4TKVG6AE,M4TKVE6AE, M4TKRG6AE, M4TKRE6AE, M4TKLG6AE, M4TKLE6AEM4521M4521LD6AE, M4521LE6AE, M4521RD6AE, M4521RE6AE, M4521SD6AE, M4521SE6AEM460M467SJHAE, M467KJHAE, M467JJHAE, M467HJHAE, M467H3KJHAE, M467H3JJHAE, M467SJHAN, M467KJHAN, M467JJHAN, M467HJHAN, M467S2JHAE, M467K2JHAE, M467J2JHAE, M467H2JHAE, M463KGCAE, M463VGCAE, M463SGCAE, M463LGCAE, M463YGCAE, M460KGCAE, M460SGCAE, M460LGCAE, M460YGCAEM471M471KI8AE, M471MD6AE, M471R1D6AE, M471R1E6AE, M471SD6AE, M471SE6AE, M471VG7AE, M471VI8AE, M471CI8AEM479M479SG8AEE, M479LG8AEE, M479NG8AEEM480M481SIDAE, M481LIDAE, M481ZIDAE, M482KIDAE, M482SIDAE, M482LIDAE, M482ZIDAE, M483KIDAE, M483SIDAE, M485KIDAE, M485SIDAE, M485LIDAE, M487JIDAE, M487KIDAE, M487SIDAE, M487KMCANM480LD M481SGCAE, M481SE8AE, M481SGCAE2A, M481LGCAE, M481LE8AE, M481ZGCAE, M481ZE8AE, M482KGCAE, M482SGCAE, M482SE8AE, M482LGCAE, M482LE8AE, M482ZGCAE, M482ZE8AE, M483KGCAE, M483SGCAE, M483SE8AE, M483KGCAE2A, M483SGCAE2ANUC442/472AE NUC442JG8AE, NUC442JI8AE, NUC442KG8AE, NUC442KI8AE, NUC442RG8AE, NUC442RI8AE, NUC442VG8AE, NUC442VI8AE, NUC472HG8AE, NUC472HI8AE, NUC472JG8AE, NUC472JI8AE, NUC472KG8AE, NUC472KI8AE, NUC472VG8AE, NUC472VI8AENUC505NUC505YO13Y, NUC505DS13Y, NUC505DSA, NUC505DL13Y, NUC505DLA, NUC505YLA2Y, NUC505YLAKM1M4BF0KM1M4BF02KXW/E, KM1M4BF02GXY/G, KM1M4BF03KXW/E, KM1M4BF03GXY/G, KM1M4BF04KXW/E, KM1M4BF04GXY/G, KM1M4BF05KXW/E, KM1M4BF05GXY/GKM1M4BF5KM1M4BF52KXW/E, KM1M4BF52GXY/G, KM1M4BF53KXW/E, KM1M4BF53GXY/G, KM1M4BF54KXW/E, KM1M4BF54GXY/G, KM1M4BF55KXW/E, KM1M4BF55GXY/GARM® Cortex®-M7 MCUs KM1M7AF0KM1M7AF00N/M/K, KM1M7AF02N/M/KKM1M7AF5KM1M7AF50N/M/K, KM1M7AF52N/M/KKM1M7CFKM1M7CF03N/K, KM1M7CF04N/K, KM1M7CF05N/K, KM1M7CF06N/K,KM1M7CF13N/K, KM1M7CF14N/K, KM1M7CF15N/K, KM1M7CF16N/KNuMicro® A35 Family MA35D1MA35D16F787C, MA35D16H8A7C, MA35D16A887C, MA35D16H0A7C,MA35D16A087C, MA35D16F987CICP Tool Revision HistoryICP Tool Revision History 3ResourcesWebsite Details NuEclipse on https:///tool-and-software/ide-and-compiler/•Download the latest NuEclipse installation file.•View the NuEclipse revision history.NuTool on GitHubhttps:///OpenNuvoton/Nuvoton_Tools•Check the open source example code of NuEclipse for easierdevelopment.https:///OpenNuvoton/Nuvoton_Tools/blob/master/Latest_NuLink_Firmware/README.md•View the Nu-Link firmware revision history.Important NoticeUsing this software indicates your acceptance of the disclaimer hereunder: THIS SOFTWARE IS FOR YOUR REFERENCE ONLY AND PROVIDED "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. YOUR USING THIS SOFTWARE/FIRMWARE IS BASED ON YOUR OWN DISCRETION, IN NO EVENT SHALL THE COPYRIGHT OWNER OR PROVIDER BE LIABLE TO ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.。
ARM® Cortex®-M032-bit MicrocontrollerNuMicro® FamilyNuTiny-SDK-NANO130User ManualThe information described in this document is the exclusive intellectual property of Nuvoton Technology Corporation and shall not be reproduced without permission from Nuvoton. Nuvoton is providing this document only for reference purposes of NuMicro microcontroller based system design. Nuvoton assumes no responsibility for errors or omissions.All data and specifications are subject to change without notice.For additional information or questions, please contact: Nuvoton Technology Corporation.Table of Contents1OVERVIEW (3)2NUTINY-SDK-NANO130 INTRODUCTION (4)2.1NuTiny -SDK-NANO130 Jumper Description (5)2.1.1Power Setting (5)2.1.2Debug Connector (5)2.1.3USB Connector (5)2.1.4Extended Connector (5)2.1.5Button (5)2.1.6Power Connector (5)2.2Pin Assignment for Extended Connector (6)2.3NuTiny-SDK-NANO130 PCB Placement (9)3How to Start NuTiny-SDK-NANO130 on the Keil μVision® IDE (10)3.1Keil uVision® IDE Software Download and Install (10)3.2Nuvoton Nu-Link Driver Download and Install (10)3.3Hardware Setup (10)3.4Example Program (11)4How to Start NuTiny-SDK-NANO130 on the IAR Embedded Workbench (12)4.1IAR Embedded Workbench Software Download and Install (12)4.2Nuvoton Nu-Link Driver Download and Install (12)4.3Hardware Setup (12)4.4Example Program (13)5NuTiny-SDK-NANO130 Schematic (14)5.1NuTiny-EVB-NANO130 Schematic (14)GPIO for 128 pin Schematic (15)5.2Nu-Link-Me Schematic (16)5.35.44x42 TN LCD Schematic (17)6REVISION HISTORY (18)1 OVERVIEWNuTiny-SDK-NANO130 is the specific development tool for NuMicro®NANO130 series. Userscan use NuTiny-SDK-NANO130 to develop and verify the application program easily.NuTiny-SDK-NANO130 includes two portions. One is NuTiny-EVB-NANO130 and the other is Nu-Link-Me. NuTiny-EVB-NANO130 is the evaluation board and Nu-Link-Me is its Debug Adaptor.Thus, users do not need other additional ICE or debug equipments.NuTiny-SDK-NANO130_TNLCD includes one 4x42 LCD panel for NuTiny-EVB-NANO130. Userscan connect NuTiny-SDK-NANO130_TNLCD to NuTiny-EVB-NANO130 to develop and verify theapplication.Figure 1-1 NuTiny-SDK-NANO130 with NuTiny-SDK-NANO130_TNLCDNUTINY-SDK-NANO130 USER MANUAL2 NUTINY-SDK-NANO130 INTRODUCTIONNuTiny-SDK-NANO130 uses the NANO130KE3BN as the target microcontroller. Figure 2-1 is NuTiny-SDK-NANO130 for NANO130 series, the left portion is called NuTiny-EVB-NANO130 and the right portion is Debug Adaptor called Nu-Link-Me. Figure 2-2 is NuTiny-SDK-NANO130_TNLCD for NuTiny-SDK-NANO130 LCD display applications.NuTiny-EVB-NANO130 is similar to other development boards. Users can use it to develop and verify applications to emulate the real behavior. The on board chip covers NANO130 series features. The NuTiny-EVB-NANO130 can be a real system controller to design users’ target systems.The Nu-Link-Me is a Debug Adaptor. The Nu-Link-Me Debug Adaptor connects your PC's USB port to your target system (via Serial Wired Debug Port) and allows you to program and debug embedded programs on the target hardware. To use Nu-Link-Me Debug adaptor with IAR or Keil,please refer to “Nuvoton NuMicro ® IAR ICE driver user manual “or Nuvoton NuMicro ®Keil ICE driver user manual” in detail. These two documents will be stored in the local hard disk when the user installs each driver.VDD33 (JP2)Reset Button (SW1)I/O LEDTarget Chip ICE Controller USB Connector (ICE J2)ICE ControllerExtended Connector (JP16, JP17)GND (JP3)Extended Connector (JP15, JP11)USB Connector (J1)Button (SW2)Extended Connector (JP5, JP1)Extended Connector (JP7, JP6)Figure 2-1 NuTiny-SDK-NANO130 (PCB Board)Extended Connector (JP5, JP1)Extended Connector (JP7, JP6)4x42 TNLCD PanelFigure 2-2 NuTiny-SDK-NANO130_TNLCD (PCB Board)2.1NuTiny -SDK-NANO130 Jumper Description2.1.1 Power Setting●JP2: V DD33 Voltage connecter in NuTiny-EVB-NANO130●ICE J2: USB port in Nu-Link-Me●J1: USB port in NuTiny-EVB-NANO130X: Unused.2.1.2 Debug Connector●JP4: Connector in target board (NuTiny-EVB-NANO130) for connecting with Nuvoton ICEadaptor (Nu-Link-Me)●ICE JP8: Connector in ICE adaptor (Nu-Link-Me) for connecting with a target board(NuTiny-EVB-NANO130)2.1.3 USB Connector●J1: Micro USB Connector in NuTiny-EVB-NANO130 connected to a PC USB port●ICE J2: Micro USB Connector in Nu-Link-Me connected to a PC USB port2.1.4 Extended Connector●JP11, JP15, JP16, and JP17: Show all chip pins in NuTiny-EVB-NANO130●JP1, JP5, JP6, JP7: Show all chip pins in NuTiny-EVB-NANO130, and connected toNuTiny-SDK-NANO130_TNLCD2.1.5 Button●SW1: Reset button in NuTiny-EVB-NANO130●SW2: PC.12 button in NuTiny-EVB-NANO1302.1.6 Power Connector●JP2: V DD connector in NuTiny-EVB-NANO130●JP3: GND connector in NuTiny-EVB-NANO1302.2Pin Assignment for Extended ConnectorNuTiny-EVB-NANO130 provides NANO130KE3BN on board and the extended connector for LQFP128-pin. Table 2-1 is the pin assignment for NANO130KE3BN.NUTINY-SDK-NANO130 USER MANUALTable 2-1 Pin Assignment for NANO130NUTINY-SDK-NANO130 USER MANUALNuTiny-SDK-NANO130 PCB Placement2.3Users can refer to Figure 2-2 for the NuTiny-SDK-NANO130 PCB placement and Figure 2-4 for the NuTiny-SDK-NANO130_TNLCD PCB placement.Figure 2-3 NuTiny-SDK-NANO130 PCB PlacementFigure 2-4 NuTiny-SDK-NANO130_TNLCD PCB Placement3 HOW TO START NUTINY-SDK-NANO130 ON THE KEIL ΜVISION® IDE3.1Keil uVision® IDE Software Download and InstallPlease visit the Keil company website () to download the Keil μVision®IDE and install the RVMDK.3.2Nuvoton Nu-Link Driver Download and InstallPlease visit the Nuvoton company NuMicro®website (/NuMicro) to download “NuMicro®Keil μVision®IDE driver” file. When the Nu-Link driver has been well downloaded, please unzip the file and execute the “Nu-Link_Keil_Driver.exe” to install the dri ver.Hardware Setup3.3The hardware setup is shown as Figure 3-1.Figure 3-1 Hardware SetupExample Program3.4This example demonstrates the ease of downloading and debugging an application on a NuTiny-SDK-NANO130 board. It can be found on Figure 3-2 list directory and downloaded from Nuvoton NuMicro® website.ProjectFigure 3-2 Example DirectoryTo use this example:Connects the NuTuny-SDK-NANO130_TNLCD to NuTiny-SDK-NANO130. The LCD panel willdisplay a NUVOTON logo.⏹Start μVision®⏹Project-OpenOpen the SYS.uvproj project file⏹ Project - BuildCompile and link the SYS application⏹ Flash – DownloadProgram the application code into on-chip Flash ROM⏹Start debug modeUsing the debugger commands, youmay:◆ Review variables in the watchwindow◆ Single step through code◆ Reset the device◆ Run the applicationNUTINY-SDK-NANO130 USER MANUAL4 HOW TO START NUTINY-SDK-NANO130 ON THE IAR EMBEDDEDWORKBENCH4.1IAR Embedded Workbench Software Download and InstallPlease connect to IAR company website () to download the IAR Embedded Workbench and install the EWARM.4.2Nuvoton Nu-Link Driver Download and InstallPlease visit the Nuvoton company NuMicro®website (/NuMicro ) to download the “NuMicro®IAR EWARM Driver” file. When the Nu-Link driver has been well downloaded, please unzip the file and execute the “Nu-Link_Keil_Driver.exe” to install the driver.4.3Hardware SetupThe hardware setup is shown as Figure 4-1.Figure 4-1 Hardware SetupNUTINY-SDK-NANO130 USER MANUALExample Program4.4This example demonstrates the ease of downloading and debugging an application on a NuTiny-SDK-NANO130 board. It can be found on Figure 4-2 list directory and downloaded fromNuvoton NuMicro ®website.ProjectFigure 4-2 Example DirectoryTo use this example:Connects the NuTuny-SDK-NANO130_TNLCD to NuTiny-SDK-NANO130. The LCD panel will display a NUVOTON logo.⏹ Start IAR Embedded Workbench ⏹Project – Download and DebugProgram the application code into on-chip Flash ROM ⏹ File-Open-WorkspaceOpen the SYS.eww workspace file⏹Single step through code ⏹Project - MakeCompile and link the SYS application⏹ Reset the device⏹Run the application5 NUTINY-SDK-NANO130 SCHEMATIC5.1NuTiny-EVB-NANO130 SchematicNuTiny-EVB-Nano130-LQFP128 V1.2GPIO for 128 pin Schematic5.2NuTiny-EVB-Nano130-LQFP128 V1.2NUTINY-SDK-NANO130 USER MANUALNu-Link-Me Schematic5.3Nu-Link-Me V1.5NuTiny-SDK-NANO130_TNLCD Schematic5.4NuTiny-EVB-TNLCD-Nano130-LQFP128 V1.0NUTINY-SDK-NANO130 USER MANUAL6 REVISION HISTORY2012.10.16 1.00 1. Initially issued.2013.01.08 1.01 1. Change the value of C7 and C8 in the schematicsfrom 10 pF to 6 pF.2018.02.26 1.02 1. Updated the figure of NuTiny-SDK-NANO130 PCBBoard in chapter 1.2. Updated th descriptions in chapter 2.3. Updated the example program descriptions inchapter 3 and 4.4. Updated NuTiny-SDK-NANO130 schematics inchapter 5.Important NoticeNuvoton Products are neither intended nor warranted for usage in systems or equipment, any malfunction or failure of which may cause loss of human life, bodily injury or severe property damage. Such applications are deemed, “Insecure Usage”.Insecure usage includes, but is not limited to: equipment for surgical implementation, atomic energy control instruments, airplane or spaceship instruments, the control or operation of dynamic, brake or safety systems designed for vehicular use, traffic signal instruments, all types of safety devices, and other applications intended to support or sustain life.All Insecure Usage shall be made at customer’s risk, and in the event that third parties lay claims to Nuvoton as a result of customer’s Insecu re Usage, customer shall indemnify the damages and liabilities thus incurred by Nuvoton.。
data sheetMultifunctional 130 series wireless access points (APs) maximize mobile device performance in extremely high-density Wi-Fi environments.These ultra-high-performance 802.11n APs deliver wireless data rates up to 450 Mbps per radio and employ three spatial streams to support 50% more throughput and mobile devices than previous-generation APs.The AP-135 and IAP-135 APs feature a 2.4-GHz and 5-GHz radio, each with 3x3 MIMO and three integrated omni-directional downtilt antennas. The AP-134 and IAP-134 models feature the same radios with three (combined, diplexed) external antenna connectors.WI-FI CLIeNt OPtIMIZatIONTo eliminate sticky client behavior, every Aruba AP comes with ClientMatch™ technology, which continuously gathers session performance metrics and utilizes this data to steer mobile devices to the best AP and radio on the WLAN, even while users roam.Best-IN-CLass RF MaNaGeMeNtAll Aruba APs include Adaptive Radio Management™ technology, which is essential to creating the most reliable, high-performance WLANs. ARM™ manages the 2.4-GHz and 5-GHz radio bands to optimize Wi-Fi client performance and ensures that APs stay clear of RF interference.The 130 series can be configured to provide part-time or dedicated air monitoring for spectrum analysis and wireless intrusion protection, VPN tunnels to extend remote locations to corporate resources, and wireless mesh connections where Ethernet drops are not available.ARubA 130 SERIES ACCESS POINTSMaximize the performance of mobile devicesChOOse YOUR OPeRatING MOdeThe 130 series of APs offers a choice of operating modes to meet your unique management and deployment requirements.• Controller-managed mode. When managed by Aruba Mobility Controllers, 130 series APs offer centralized configuration, data encryption, policy enforcement and network services, as well as distributed and centralized traffic forwarding. Please refer to the Aruba Mobility Controller data sheets for more details.• Aruba Instant™ mode. In Aruba Instant mode, a single AP automatically distributes the network configuration to other Instant APs in the WLAN. Simply power-up one Instant AP, configure it over the air, and plug in the other APs – the entire process takes about five minutes. For large installations across multiple sites, the Aruba Activate™ service significantly reduces deployment time by automating device provisioning, firmware upgrades, and inventory management. With Aruba Activate, Instant APs are factory-shipped to any site and configure themselves when powered up.If WLAN and network requirements change, a built-in migration path allows 130 series Instant APs to become partof a WLAN that is centrally managed by a Mobility Controller.advaNCed FeatURes• Spectrum Analysis: -Spectrum analyzer remotely scans the 2.4-GHz and5-GHz radio bands to identify sources of RF interference. • Security: -With an OpenDNS service subscription, Aruba Instantdelivers integrated web filtering, malware and botnetprotection to every device connected to the WLAN -Integrated Trusted Platform Module (TPM) for securestorage of credentials and keys -SecureJack-capable for secure tunneling of wiredEthernet trafficOPeRatING MOdes• 802.11a/b/g/n Aruba Instant AP• 802.11a/b/g/n Mobility Controller-managed AP• Air monitor (AM)• Secure enterprise mesh• Remote AP (RAP) when used with a Mobility Controller WIReLess RadIO sPeCIFICatIONs• AP type: Dual-radio, dual-band 802.11n indoor• Software-configurable dual radio supports 2.4 GHzand 5 GHz• 3x3 MIMO 802.11n with three spatial streams and up to450 Mbps per radio• Supported frequency bands (country-specificrestrictions apply): -2.400 to 2.4835 GHz -5.150 to 5.250 GHz -5.250 to 5.350 GHz -5.470 to 5.725 GHz -5.725 to 5.850 GHz• Available channels: Dependent upon configuredregulatory domain• Dynamic frequency selection (DFS) optimizes the use ofavailable RF spectrum• Supported radio technologies: -802.11b: Direct-sequence spread-spectrum (DSSS) -802.11a/g/n: Orthogonal frequency divisionmultiplexing (OFDM) -802.11n: 3x3 MIMO with three spatial streams• Supported modulation types: -802.11b: bPSK, QPSK, CCK -802.11a/g/n: bPSK, QPSK, 16-QAM, 64-QAM• Transmit power: Configurable in increments of 0.5 dBm• Maximum (aggregate, conducted total) transmit power(limited by local regulatory requirements): -2.4-GHz band: +23 dbm (18 dbm per chain) -5-GHz bands: +23 dbm (18 dbm per chain)• Maximum ratio combining (MRC) for improvedreceiver performance• Cyclic delay diversity for improved downlink RF performance • Short guard interval for 20-MHz and 40-MHz channels • Space-Time block Coding (STbC) for increased range and improved reception• Low-density parity check (LDPC) for high-efficiency errorcorrection and increased throughput• Transmit beam-forming (TxbF) for increased reliabilityin signal delivery (Supported in hardware; currently notenabled in software)• Association rates (Mbps): -802.11b: 1, 2, 5.5, 11 -802.11a/g: 6, 9, 12, 18, 24, 36, 48, 54 -802.11n: MCS0 to MCS23 (6.5 Mbps to 450 Mbps)• 802.11n high-throughput (HT) support: HT 20/40• 802.11n packet aggregation: A-MPDu, A-MSDu POWeR• 48 volts DC 802.3af power over Ethernet (PoE) or802.3at PoE+ -Note: when using 802.3af POE, the second Ethernet port is disabled. It is enabled when using an 802.3at POEpower source (or direct DC power).• 12 volts DC external AC supplied power (adaptersold separately)• Maximum power consumption: 12.5 watts aNteNNas• AP-134 and IAP-134: Three RP-SMA connectors forexternal dual-band antennas. Internal loss betweenradio interface and external antenna connectors (due to diplexing circuitry): 1.5 db in 2.4 GHz and 3.0 db in 5 GHz. • AP-135 and IAP-135: Six integrated downtilt omni-directional antennas for 3x3 MIMO with maximumantenna gain of 3.5 dbi in 2.4 GHz and 4.5 dbi in 5 GHz INteRFaCes• Network: Two 10/100/1000bASE-T Ethernet (RJ-45),auto-sensing link speed and MDI/MDX• Ethernet ports support 802.3az Energy Efficient Ethernet (EEE)• 48 volts DC 802.3af PoE or 802.3at PoE+ interoperablewith intellisource power sourcing equipment (both ports)• Other: One RJ-45 console interfaceMOUNtING• Included with AP: -Mounting brackets for attaching to 9/16” and 15/16”T-bar drop-tile ceiling -Kensington security lock point• Optional mounting kits: -AP-130-MNT: Aruba 130 series AP mount kit containsone flat-surface wall/ceiling mount bracket. -AP-130-MNT-C2: Aruba 130 series AP mount kit containstwo ceiling-grid rail adapters for interlude and silhouettestyle rails. -AP-130-MNT-W2: Aruba 130 series AP mount kit contains one flat-surface wall/ceiling secure mount cradle. MeChaNICaL• Dimensions/weight (unit): -170 mm x 170 mm x 45 mm (6.69” x 6.69” x 1.77”) -760 g (1.68 lb)• Dimensions/weight (shipping): -285 mm x 240 mm x 70 mm (11.22” x 9.45” x 2.76”) -1,050 g (2.31 lb)eNvIRONMeNtaL• Operating: -Temperature: 0° C to +50° C (+32° F to +122° F) -Humidity: 5% to 95% non-condensing• Storage and transportation temperature range: -Temperature: -40° C to +70° C (-40° F to +158° F) ReGULatORY• FCC/Industry of Canada• CE Marked• R&TTE Directive 1995/5/EC• Low Voltage Directive 72/23/EEC• EN 300 328• EN 301 489• EN 301 893• uL/IEC/EN 60950• EN 60601-1-1, EN60601-1-2For more country-specific regulatory information and approvals, please see your Aruba representative.CeRtIFICatIONs• Cb Scheme Safety, cTuVus• uL2043 plenum rating• Wi-Fi certified 802.11a/b/g/nWaRRaNtY• Limited lifetime warrantyMINIMUM aRUBaOs veRsION• ArubaOS 6.1.1.0 on an Aruba Mobility Controller • Aruba Instant 2.0.0.3 softwareMaximum capability of the hardware provided. Maximum transmit power is limited by local regulatory settings. RF performance numbers for IAP-134 and AP-134 are slightly lower due to additional internal RF circuitry.2.450 GHz5.500 GHzIaP-135 aNd aP-135 aNteNNa PatteRN PLOtsH-Plane, 20 degrees down-tilt2.450 GHz 5.500GHzE-plane, AP facing down©2014 Aruba Networks, Inc. Aruba Networks®, Aruba The Mobile Edge Company® (stylized), Aruba Mobilty Management System®, People Move. Networks Must Follow.®, Mobile Edge Architecture®, RFProtect®, Green Island®, ETIPS®, ClientMatch®, bluescanner™ and The All Wireless Workspace Is Open For business™ are all Marks of Aruba Networks, Inc. in the united States and certain other countries. The preceding list may not necessarily be complete and the absence of any mark from this list does not mean that it is not an Aruba Networks, Inc. mark. All rights reserved. Aruba Networks, Inc. reserves the right to change, modify, transfer, or otherwise revise this publication and the product specifications without notice. While Aruba Networks, Inc. uses commercially reasonable efforts to ensure the accuracy of the specifications contained in this document, Aruba Networks, Inc. will assume no responsibility for any errors or omissions. DS_AP130Series_0922141344 CrossmAn Ave | sunnyvAle, CA 940891.866.55.AruBA | T: 1.408.227.4500 | FAX: 1.408.227.4550 |**********************。
ARM Cortex™-M0 NuMicro™ 家族NuMicro™家族是新唐公司最新的,片内外设具有优异特色和连通性的,基于ARM®Cortex™-M0 的32-位微控制器产品线。
NuMicro™ 家族是基于ARM®Cortex™-M0的低功耗,高性能微控制器;它的速度达到45DMIPS 和SRAM 达到16K字节;内置Flash型EPROM 达到128K 字节,具有ISP,IAP 和ICP功能的应用使FLASH编程和升级更加快捷和灵便。
片内连通性的外设提供高速UART,SPI,I2C,I2S,CAN总线和USB 2.0全速器件接口功能。
内置混合信号单元提供8通道12-位AD转换器和2个模拟比较器并具有更高的集成度。
NuMicro™家族设计成可在宽电源电压范围内使用,更高的噪声抑制能力和工业/汽车温度等级能够满足汽车,工作控制,数据通信和消费产品的应用。
NuMicro™家族提供行业领先的与传统8-bit 微控制器成本相当的32位性能的ARM®Cortex™-M0 微控制器。
特性基于ARM® Cortex™-M0 的中央处理器内核运行速度达到50MHz一个24-位系统定时器支持低功耗睡眠模式单周期32-位硬件乘法器具有32路中断输入和每路4级优先级的NVIC SWD串行调试接口Flash 存储器SRAM GPIO、定时器、PWM、RTC 8 通道12-位ADC连通性UARTSPI/SSII2CI2SUSB 2.0CAN、LIN 总线应用领域工业控制数据通信USB 应用消费类产品马达控制汽车电子*状态:P= 量产,S=样品,UD=研发,UD (时间)= 研发(计划时间),EOL=停产。
*状态:P= 量产,S=样品,UD=研发,UD (时间)= 研发(计划时间),EOL=停产。
*状态:P= 量产,S=样品,UD=研发,UD (时间)= 研发(计划时间),EOL=停产。
NUC130 前期系列Cortex™-M032 位单片机1 概述NUC130 系列为32位单片机,内建ARM® Cortex™-M0内核,用于工业控制及相关需要丰富信号通讯界面的应用场合。
Cortex™-M0为ARM公司最新处理器内核并拥有与传统8位元产品之匹敌的价格。
NUC130 Cortex™-M0内核系列最高可运行至50MHz外部时钟,具有32K/64K/128K字节内建Flash存储器,4K/8K/16K字节内建SRAM。
并内建有定时器,看门狗定时器,RTC,PDMA,UART,SPI/SSP,I2C, PWM定时器, GPIO, LIN, CAN,12位ADC,模拟比较器,低电压检测和节电侦测功能。
2 特性2.1 NUC130 特性•内核–ARM® Cortex™-M0 内核最高运行50MHz.–一个 24-位系统定时器.–低功耗睡眠模式–单指令32位硬件乘法器–嵌套向量中断控制器NVIC 用于控制32个中断源,每个中断源可设置为4个优先级–支持串行线调试(SWD)及2个观察点/4个断点•宽电压工作范围由2.5V 至 5.5V存储器ROM• FLASH–32K/64K/128K 字节FLASH ROM 用于存储程序代码–4kB FLASH 用于存储ISP引导代码–支持 ISP/IAP 编程升级–512 字节一页FLASH擦除模式–在128K字节系统中可配置数据FLASH地址区域,在32K/64K字节系统中包含4K字节数据FLASH区域–在仿真界面下,支持2线ICP升级方式–支持外部编程器并行高速编程模式存储器• SRAM–4K/8K/16K 字节内建SRAM.–支持 PDMA 模式(外围 DMA)• PDMA–支持9通道 PDMA 用于SRAM和周边设备的自动数据传输.•时钟控制–针对不同应用可灵活选择时钟–内建22MHz 振荡器(精度可调整在 1%之内) 可用于系统运行,以及低功耗10KHz RC振荡器用于看门狗及睡眠模式唤醒等功能–支持一组PLL, 高至 50MHz, 用于更速的系统运行.–外部 12MHz 晶振输入用于USB及精准的时序运作–外部 32 kHz 晶振输入用于RTC及低功耗模式操作.• GPIO–四种I/O模式:准双向模式推挽输出模式开漏输出模式高阻输入模式–TTL/Schmitt 触发输入可选.–I/O 管脚可被定义为边沿/电平触发模式的中断源.•支持大电流驱动/灌入I/O•定时器–4 组带8 位预分频的24位定时器.–定时计数自动重载.•看门狗定时器–由配置位配置默认打开/关闭模式。
新唐单⽚机最全选型表NuMicro? 单⽚机家族1Mini51 Base Series ⾼集成、低价位、低管脚、⾼性能32位微控制器Contact us: NuMicro@/doc/84abc79a6edb6f1afe001f27.htmlNuMicro? 单⽚机家族Mini51 系列NuMicro ? 是新唐科技新⼀代32位微控制器,采⽤ARM 公司低功耗、具精简指令代码特性的Cortex ?-M0与Cortex ?-M4处理器为核⼼,适合⼴泛的微控制器应⽤领域。
NuMicro ? Cortex ?-M0家族⽬前已量产系列有:NUC100系列与NUC200系列;带有USB 2.0全速设备的低功耗NUC120/NUC122/NUC123系列与NUC220系列;内嵌最多2組CAN 总线NUC130/131/140与NUC230/240系列;⾼性价⽐的M051/M0518系列;低管脚、低价位的Mini51系列;超低功耗运⾏的Nano100/102/112系列,0.65uA (待機功耗,内存数据保存),内嵌LCD 驱动 Nano110/112 系列, USB 2.0全速设备的超低功耗Nano120系列;⾼整合度 LCD 驱动与USB 2.0全速设备的超低功耗 Nano130系列。
Cortex ?-M4家族之⾼性能NUC442/472系列,其包含丰富外设,如以太⽹、USB OTG 和⾼速设备、双CAN 总线等等;具⾼整合度的M451系列,其带有USB OTG 和全速设备,CAN 总线,可调电压接⼝(VAI),⾼分辨率PWM 。
NuMicro ?家族的Cortex ?-M0与Cortex ?-M4微处理器为各种应⽤提供了32位最佳的性价⽐选择。
NuMicro ? Mini51系列为32位单⽚机,内建ARM ? Cortex ?-M0 内核最⾼可运⾏⾄24MHz ,具4K/8K/16K 字节Flash 内存、2K 字节内建SRAM 、可配置的数据Flash(与程序Flash 内存共享)、2K 独⽴Flash 字节作为在线系统编程(In System Programming)⽤途。
【方案介紹】本方案采用MTK3360/AC8317硬件平台, 单块核心板集成了UI、GPS、DVD、视频解码、蓝牙、屏驱动等车机的绝大部分功能,外围电路只需加上收音、功放和电源即可构成车载娱乐系统。
本文主要介绍该方案的SOC周边收音机、辅助MCU、CAN/LIN总线和音频功放的解决方案,对核心SOC方案感兴趣的用户请和品佳集团联系。
【方案特色】方案整合度高;使用NXP Car Tuner收音效果好、可满足不同级别的市场需求;MCU运行速率快、外设丰富;同时汇出各器件的主要性能特点。
【系統方塊圖】【規格說明】本方案有用到相关主要器件介绍:NXP Car TunerNXP 的单芯片、低中频收音方案一直走在市场的前沿。
突破性新技术的采用保证了性能、功能方面的领先,集成度不断提高使得开发变得更为简单,PCB空间逐步减小,整体成本也在不断降低。
如TEF668x、TEF665x、TEA685x三系列收音芯片管脚兼容,性能从高到低全面覆盖,可使产品形成高中低搭配,方便客户的选择。
下面分别介绍:1. NXP TEF668x(Lithio)系列TEF668x低中频调谐器高性能单芯片是单芯片无线电IC,包括AM/FM无线电调谐器和软件定义的无线电信号处理。
它们扩展了恩智浦半导体广泛的、行业成熟的汽车无线电单调谐器产品组合,提供出色的无线电性能、最广泛的功能和最先进的软件算法,同时优化了系统成本。
HVQFN封装占用最小的PCB空间,并适用于双层和多层PCB。
无线电接收器包括最高功能集、AM/FM前端、调谐合成器、信道过滤、FM信道均衡、FM多路改善、解调、FM立体声解码、弱信号处理、噪声抑制和RDS,并提供与DARC解调器/解码器的接口。
功能框图:功能特点:• 包含调谐器和软件定义无线电处理的免校准数字接收器• 基于命令的高级用户接口,兼具高度控制灵活性和易控性。
• FM支持65 MHz-108 MHz,AM覆盖LW、MW和全部SW• 完全集成的调谐系统,具有低相位噪声和快速调谐• 最先进的FM改进型多路抑制、FM信道均衡、FM立体声解码• 高动态范围Σ-Δ中频ADC• 数字IF信号处理,包括:抽选、转换到基带、AGC控制、I/Q校正、可变IF带宽滤波(PACS)和解调• TEF6688基带I²S输出,支持带外部数字无线电协处理器(SAF356X或SAF360X)的高清无线电和DRM1• AM和FM噪声消隐、信号质量检测和弱信号处理• 高级RDS和RBDS解调和解码• 一个I²S输入和一个I²S输出• 单个3.3V电源电压• 快速模式I²C总线(400 kHz)• 符合AEC-Q100标准应用领域:高端车载AM/FM产品选型指南:2. NXP TEF665x(Atomic2)系列TEF665x是单芯片无线电IC,包括AM/FM无线电调谐器和软件定义的无线电信号处理。
NuMicro™ NUC130 产品简介ARM Cortex™-M032-位微控制器NuMicro™ FamilyNUC130 产品简介The information described in this document is the exclusive intellectual property ofNuvoton Technology Corporation and shall not be reproduced without permission from Nuvoton. Nuvoton is providing this document only for reference purposes of NuMicro microcontroller based system design. Nuvoton assumes no responsibility for errors or omissions.All data and specifications are subject to change without notice.For additional information or questions, please contact: Nuvoton Technology Corporation.Contents1概述 (6)2特性 (7)2.1NuMicro™ NUC130特征 – Automotive Line (7)3编号信息列表及管脚名称定义 (11)3.1NuMicro™ NUC130产品选型指南 (11)3.1.1NuMicro™ NUC130 Automotive Line 选型指南 (11)3.2管脚配置 (12)3.2.1NuMicro™ NUC130管脚图 (12)3.3管脚功能描述 (15)3.3.1NuMicro™ NUC130 管脚定义 (15)4框图 (23)4.1NuMicro™NUC130 框图 (23)4.1.1NuMicro™ NUC130 框图 (23)5电气特性 (24)5.1绝对最大额定值 (24)5.2DC 电气特性 (25)5.2.1NuMicro™ NUC130/NUC140 DC 电气特性 (25)5.3AC 电气特性 (29)5.3.1外部 4~24 MHz 高速振荡器 (29)5.3.2外部 4~24 MHz 高速晶振 (29)5.3.3外部 32.768 kHz 低速晶振 (31)5.3.4内部 22.1184 MHz 高速振荡器 (31)5.3.5内部 10 kHz 低速振荡器 (31)5.4模拟量特性 (32)5.4.112-位 SARADC 规格 (32)5.4.2LDO 规格和电源管理 (33)5.4.3低压复位说明 (34)5.4.4欠压检测说明 (34)5.4.5上电复位说明 (5 V) (34)5.4.6温度传感器说明 (35)5.4.7比较器说明 (35)5.4.8USB PHY 说明 (36)5.5SPI 动态特性 (38)6封装定义 (40)6.1100L LQFP (14x14x1.4 mm footprint 2.0mm) (40)6.264L LQFP (10x10x1.4mm footprint 2.0 mm) (41)6.348L LQFP (7x7x1.4mm footprint 2.0mm) (42)7版本历史 (43)图图 3-1 NuMicro™ NUC100系列选型码 (11)图 3-2 NuMicro™ NUC130 LQFP 100-pin 管脚图 (12)图 3-3 NuMicro™ NUC130 LQFP 64-pin 管脚图 (13)图 3-4 NuMicro™ NUC130 LQFP 48-pin 管脚图 (14)图 4-1 NuMicro™ NUC130 框图 (23)图 5-1 典型晶振应用电路 (30)图 5-2 SPI主机动态特性时序图 (39)图 5-3 SPI 从机动态特性时序图 (39)表表 1-1所支持的接口列表 (6)1 概述NuMicro™ NUC100系列是32位的内嵌ARM® Cortex™-M0核的微控制器,适用于工业控制和需要丰富的通信接口的应用领域,Cortex™-M0是ARM最新的32位嵌入式处理器,拥有与传统8051单片机之匹敌的价格优势。
NuMicro™ NUC100 系列包括NUC100, NUC120, NUC130和NUC140 。
NuMicro™ NUC130 Automotive Line带CAN功能,内嵌Cortex™-M0内核,最高可运行至50 MHz,内建32K/64K/128K字节的Flash存储器,以及4K/8K/16K字节SRAM,4K字节用于存储ISP引导代码的ROM,和4K字节的数据 Flash 存储器。
另外还有丰富的外设,如定时器,看门狗定时器,RTC,PDMA,UART,SPI,I2C,I2S,PWM 定时器,GPIO,LIN,CAN,PS/2,12位ADC,模拟比较器,低电压复位控制和欠压检测功能。
Product Line UART SPI I2C USB LIN CAN PS/2 I2S NUC100●●●●●NUC120 ●●●●●●NUC130 ●●●●●●●NUC140 ●●●●●●●●表 1-1 所支持的接口列表2 特性该器件的功能依赖于产品线和他们的子系统产品。
2.1 NuMicro™ NUC130特征 – Automotive Line•内核– ARM® Cortex™-M0 内核最高允许 50 MHz– 一个 24-位系统定时器– 支持低功耗睡眠模式– 单周期32位硬件乘法器– 嵌套向量中断控制器(NVIC)用于控制32个中断源,每个中断源可设置为4个优先级– 支持串行线调试(SWD)带2个观察点/4个断点•内建 LDO,宽电压工作范围 2.5 V 到 5.5 V• Flash 存储器– 32K/64K/128K 字节 Flash 用于存储程序代码– 4KB flash 用于存储ISP引导代码– 支持在系统编程 (ISP)方式更新应用程序– 支持512 字节单页擦除– 在128K字节系统中可配置数据FLASH地址和大小,在32K字节和64K字节系统中固定为4K字节数据– 通过SWD/ICE接口,支持2 线 ICP升级方式– 支持外部编程器并行高速编程模式• SRAM 存储器– 4K/8K/16K 字节内建 SRAM– 支持 PDMA 模式• PDMA (Peripheral DMA)– 支持9通道 PDMA 用于SRAM和周边设备的自动数据传输•时钟控制– 针对不同应用可灵活选择时钟– 内部 22.1184 MHz 高速振荡器可用于系统运行在+25 ℃,VDD = 5.0 V时, 精度校正到± 1 %℃℃和 VDD = 2.5 V ~ 5.5 V范围内, 精度为± 3 %在-40 ~ +85– 内部低功耗 10 KHz 低速振荡器用于看门狗及掉电模式唤醒等功能– 支持一组PLL, 高至 50 MHz, 用于高性能的系统运行– 外部 4~24 MHz 晶振输入用于精准的定时操作– 外部 32.768 kHz 晶振输入用于 RTC 及低功耗模式操作• GPIO– 四种 I/O 模式:准双向模式推挽输出模式开漏输出模式高阻输入模式– TTL/Schmitt 触发输入可选– I/O 引脚可被配置为边沿/电平触发模式的中断源– 支持大电流驱动和灌入 I/O 模式• Timer– 支持4组32位定时器, 每个定时器有一个24位向上计数定时器和一个8位预分频计数器– 每个定时器有独立的时钟源– 提供 one-shot, periodic, toggle and continuous 计数操作模式– 支持事件计数功能– 支持输入捕捉功能• Watchdog Timer– 多路时钟源– 从1.6ms 到26.0sec 有8个可选的定时溢出周期(取决于所选的时钟源)– WDT 可用作掉电模式/睡眠模式的唤醒– 看门狗定时溢出的中断/复位选择• RTC– 通过频率补偿寄存器(FCR) 支持软件频率补偿功能– 支持RTC计数(秒,分,小时) 及万年历功能(日,月,年)– 支持闹铃寄存器(秒,分,小时,日,月,年)– 可选择为12小时制或24小时– 闰年自动识别– 支持周期时间滴答中断,包括8个可选周期1/128, 1/64, 1/32, 1/16, 1/8, 1/4, 1/2 和 1 秒– 支持唤醒功能• PWM/Capture– 内建四个16位PWM产生器,可输出8路PWM或4组互补配对PWM– 每个PWM产生器配有一个时钟源选择器,一个时钟分频器,一个8位时钟预分频和一个用于互补配对PWM的死区发生器– 8路16位捕捉定时器(共享PWM定时器)提供8路输入的上升/下降沿的捕捉功能– 支持捕捉(Capture)中断• UART– 最多三组UART控制器– 支持流控 (TXD, RXD, CTS 和 RTS)– UART0 带 64-字节 FIFO 用于高速模式– UART1/2 (可选)带16-字节 FIFO 用于标准模式– 支持 IrDA (SIR) 和 LIN 功能– 支持 RS-485 9 位模式和方向控制– 可编程波特率发生器频率高至1/16系统时钟– 支持 PDMA 模式• SPI– 最高支持4组 SPI 控制器– 主机速率高至 32 MHz,从机高至 10 MHz (芯片工作在 5V 状态时)– 支持 SPI 主机/从机模式– 全双工同步串行数据传输– 可变数据长度(从1位到 32 位)传输模式– 可设置MSB 或LSB 在前的传输模式– 在时钟上升沿或下降沿接收还是发送是独立配置的– 当作为主机时2条从机片选线,作为从机时1条从机片选线– 支持 32-bit 传输模式下的字节睡眠模式– 支持 PDMA 模式– 支持三线无从机选择信号的双向接口•I2C– 最多支持2组 I2C 设备– 主机/从机模式– 主从机之间双向数据传输– 多主机总线支持(无中心主机)– 多主机间同时传输数据仲裁,避免总线上串行数据损坏– 总线采用串行同步时钟,可实现设备之间以不同的速率传输– 串行同步时钟可作为握手方式控制总线上数据暂停及恢复传送– 可编程的时钟适用于不同速率控制– I2C总线上支持多地址识别(4个从机地址带mask选项)•I2S– 外部音频 CODEC 接口– 可作主机也可作从机模式– 能处理 8, 16,24 和 32 位字– 支持单声道和立体声的音频数据– 支持I2S 和最高有效位数据格式– 提供两组 8 字的FIFO数据缓存,一组用于发送,一组用于接收– 缓冲区超过可编程边界时,产生中断请求– 支持两组DMA请求,一组用于发送,另一组用于接收• PS/2 设备控制器– 禁止 Host 通信和请求发送检测– 接收帧错误检测– 可编程的 1 到 16 字节的发送缓冲以减少CPU的负担– 数据据接收的双缓冲– 软件可控总线• CAN 2.0– 支持 CAN 2.0A 和 2.0B 协议– 位传输速率最高至1M bit/s– 32个报文对象– 每个报文对象有其自己的标识符掩码– 可编程的 FIFO 模式(链接报文对象)– 可屏蔽中断– 时间触发的CAN应用中禁用自动重传模式– 支持掉电模式唤醒功能•支持EBI(外部总线接口)(仅100-pin and 64-pin 封装系列)– 可访问的空间:8位模式为64KB 或16位模式为 128KB– 支持8bit/16bit 数据宽度– 在16位数据宽度模式下支持字节写入• ADC– 12位ADC,转换速率达 700K SPS– 最多 8 通道单端模式输入或4 通道差分模式输入– 单一扫描模式/单周期扫描模式/连续扫描模式– 每个通道有独立的结果寄存器– 扫描使能通道– 阈电压侦测– 软件编程或外部管脚触发开始转换– 支持 PDMA 模式•模拟比较器(Analog Comparator)– 2组模拟比较器模块– 负端电位可选择外部输入或内部频带间隙电压– 比较结果改变可作为中断触发条件– 支持掉电模式唤醒功能•内建温度传感器, 1℃分辨率•欠压检测(Brown-Out detector)– 支持四级检测电压:4.5 V/3.8 V/2.7 V/2.2 V– 支持欠压中断和复位选择•低压复位– 阈电压:2.0 V•工作温度:-40℃~85℃•封装:– 无铅封装(RoHS)– LQFP 100-pin / 64-pin / 48-pin3 编号信息列表及管脚名称定义3.1 NuMicro ™ NUC130产品选型指南3.1.1 NuMicro ™ NUC130 Automotive Line 选型指南各总线节目编号APROM RAMData FlashISP Loader ROMI/OTimerUART SPI I 2C USB LIN CAN I 2S Comp.PWMADC RTC EBIISP ICP封装NUC130LC1CN 32 KB 4 KB 4 KB 4 KB up to 354x32-bit 3 12- 211 1 4 8x12-bit v - v LQFP48NUC130LD2CN 64 KB8 KB4 KB4 KB up to 354x32-bit3 12- 211 14 8x12-bit v - v LQFP48NUC130LE3CN 128 KB 16 KB Definable 4 KB up to 354x32-bit 3 12- 211 1 4 8x12-bit v - v LQFP48NUC130RC1CN 32 KB 4 KB 4 KB 4 KB up to 494x32-bit 3 22- 211 2 6 8x12-bit v v v LQFP64NUC130RD2CN 64 KB8 KB4 KB4 KB up to 494x32-bit3 22- 211 2 6 8x12-bit v v v LQFP64NUC130RD3CN 128 KB 16 KB Definable4 KB up to 494x32-bit 3 22- 211 2 6 8x12-bit v v v LQFP64NUC130VE3CN 128 KB 16 KB Definable4 KB up to 804x32-bit342-211288x12-bitvvvLQFP100图 3-1 NuMicro ™ NUC100系列选型码3.2 管脚配置3.2.1 NuMicro™ NUC130管脚图3.2.1.1 NuMicro™ NUC130 LQFP 100 pinNUC130LQFP 100-pin图 3-2 NuMicro™ NUC130 LQFP 100-pin 管脚图3.2.1.2 NuMicro™ NUC130 LQFP 64 pin图 3-3 NuMicro™ NUC130 LQFP 64-pin 管脚图3.2.1.3 NuMicro ™ NUC130 LQFP 48 pinX 32IL /P A .11A /P A .10C L /P A .9I 2C 0S D A /P A .8R X D 1/P B .4876543图 3-4 NuMicro ™ NUC130 LQFP 48-pin 管脚图3.3 管脚功能描述3.3.1 NuMicro™ NUC130 管脚定义3.3.1.1 NuMicro™ NUC130 管脚定义管脚号LQFP 100 LQFP64LQFP48管脚名称管脚类型描述1 PE.15 I/O 通用数字输入/输出管脚2 PE.14 I/O 通用数字输入/输出管脚3 PE.13 I/O 通用数字输入/输出管脚PB.14 I/O 通用数字输入/输出管脚/INT0 I /INT0:外部中断1输入管脚4 1SPISS31 I/O SPISS31: SPI3 2nd从机选择管脚PB.13 I/O 通用数字输入/输出管脚CPO1 O Comparator1输出管脚5 2AD1 I/O EBI地址/数据总线 bit1PB.12 I/O 通用数字输入/输出管脚CPO0 O Comparator0输出管脚CLKO O 分频器输出管脚6 3 1AD0 I/O EBI地址/数据总线 bit07 4 2X32O O 外部 32.768 kHz 晶振输出管脚8 5 3X32I I 外部 32.768 kHz 晶振输入管脚PA.11 I/O 通用数字输入/输出管脚4I2C1SCL I/O I2C1SCL: I2C1 时钟管脚9 6nRD O EBI读使能输出管脚PA.10 I/O 通用数字输入/输出管脚5I2C1SDA I/O I2C1SDA: I2C1 数据输入/输出管脚10 7nWR O EBI写使能输出管脚PA.9 I/O 通用数字输入/输出管脚11 8 6I2C0SCL I/O I2C0SCL: I2C0 时钟管脚管脚号LQFP 100 LQFP64LQFP48管脚名称管脚类型描述PA.8 I/O 通用数字输入/输出管脚12 9 7I2C0SDA I/O I2C0SDA: I2C0 数据输入/输出管脚PD.8 I/O 通用数字输入/输出管脚13SPISS30 I/O SPISS30:SPI3从机选择管脚PD.9 I/O 通用数字输入/输出管脚14SPICLK3 I/O SPICLK3:SPI3串行时钟管脚PD.10 I/O 通用数字输入/输出管脚15MISO30 I/O MISO30: SPI3 MISO (主机输入,从机输出) 脚PD.11 I/O 通用数字输入/输出管脚16MOSI30 I/O MOSI30: SPI3 MOSI (主机输出,从机输入) 脚PD.12 I/O 通用数字输入/输出管脚17MISO31 I/O MISO31:SPI32nd MISO (主机输入,从机输出) 脚PD.13 I/O 通用数字输入/输出管脚18MOSI31 I/O MOSI31:SPI32nd MOSI (主机输出,从机输入) 脚PB.4 I/O 通用数字输入/输出管脚19 10 8RXD1 I RXD1:UART1数据接收输入管脚PB.5 I/O 通用数字输入/输出管脚20 11 9TXD1 O TXD1:UART1数据发送输出管脚PB.6 I/O 通用数字输入/输出管脚RTS1 O RTS1:UART1请求发送输出管脚21 12ALE O EBI地址锁存使能输出管脚PB.7 I/O 通用数字输入/输出管脚CTS1 I CTS1:UART1清发送输出管脚22 13nCS O EBI片选使能输出管脚23 14 10LDO P LDO输出管脚24 15 11VDD P 电源供应管脚,为IO端口、内部PLL电路LDO源和数字功能提供电源25 16 12VSS P 地管脚号LQFP 100 LQFP64LQFP48管脚名称管脚类型描述26 PE.12 I/O 通用数字输入/输出管脚27 PE.11 I/O 通用数字输入/输出管脚28 PE.10 I/O 通用数字输入/输出管脚29 PE.9 I/O 通用数字输入/输出管脚30 PE.8 I/O 通用数字输入/输出管脚31 PE.7 I/O 通用数字输入/输出管脚PB.0 I/O 通用数字输入/输出管脚32 17 13RXD0 I RXD0:UART0数据接收输入管脚PB.1 I/O 通用数字输入/输出管脚33 18 14TXD0 O TXD0:UART0数据发送输出管脚PB.2 I/O 通用数字输入/输出管脚RTS0 O RTS0:UART0请求发送输出管脚nWRL O EBI低字节写使能输出管脚34 19 15T2EX I Timer2外部捕捉输入管脚PB.3 I/O 通用数字输入/输出管脚CTS0 I CTS0:UART0清发送输入管脚nWRH O EBI高字节写使能输出管脚35 20 16T3EX I Timer3外部捕捉输入管脚PD.6 I/O 通用数字输入/输出管脚36 21 17CANRX0 I CAN Bus0 RX 输入PD.7 I/O 通用数字输入/输出管脚37 22 18CANTX0 O CAN Bus0 TX 输出PD.14 I/O 通用数字输入/输出管脚38 23 19RXD2 I RXD2:UART2数据接收输入管脚PD.15 I/O 通用数字输入/输出管脚39 24 20TXD2 O TXD2:UART2数据发送输出管脚40 PC.5 I/O 通用数字输入/输出管脚管脚号LQFP 100 LQFP64LQFP48管脚名称管脚类型描述MOSI01 I/O MOSI01:SPI02nd MOSI (主机输出,从机输入) 脚PC.4 I/O 通用数字输入/输出管脚41MISO01 I/O MISO01:SPI02nd MISO (主机输入,从机输出) 脚PC.3 I/O 通用数字输入/输出管脚MOSI00 I/O MOSI00: SPI0 MOSI (主机输出,从机输入) 脚42 25 21I2SDO O I2SDO:I2S 数据输出PC.2 I/O 通用数字输入/输出管脚MISO00 I/O MISO00: SPI0 MISO (主机输入,从机输出) 脚43 26 22I2SDI I I2SDI:I2S 数据输入PC.1 I/O 通用数字输入/输出管脚SPICLK0 I/O SPICLK0:SPI0串行时钟管脚44 27 23I2SBCLK I/O I2SBCLK:I2S bit 时钟管脚PC.0 I/O 通用数字输入/输出管脚SPISS00 I/O SPISS00:SPI0从机选择管脚45 28 24I2SLRCL K I/O I2SLRCLK:I2S 左右声道时钟46 PE.6 I/O 通用数字输入/输出管脚PE.5 I/O 通用数字输入/输出管脚PWM5 I/O PWM5:PWM输出/Capture 输入47 29T1EX I Timer1外部捕捉输入管脚PB.11 I/O 通用数字输入/输出管脚TM3 I/O TM3:Timer3事件计数输入/切换输出48 30PWM4 I/O PWM4:PWM输出/Capture输入PB.10 I/O 通用数字输入/输出管脚31TM2 I/O TM2:Timer2事件计数输入/切换输出49SPISS01 I/O SPISS01: SPI0 2nd从机选择管脚PB.9 I/O 通用数字输入/输出管脚5032TM1 I/O TM1:Timer1事件计数输入/切换输出管脚号LQFP 100 LQFP64LQFP48管脚名称管脚类型描述 SPISS11I/O SPISS11: SPI1 2nd从机选择管脚51 PE.4 I/O 通用数字输入/输出管脚52 PE.3 I/O 通用数字输入/输出管脚53 PE.2 I/O 通用数字输入/输出管脚PE.1 I/O 通用数字输入/输出管脚54PWM7 I/O PWM7:PWM输出/Capture 输入PE.0 I/O 通用数字输入/输出管脚55PWM6 I/O PWM6:PWM输出/Capture 输入PC.13 I/O 通用数字输入/输出管脚56MOSI11 I/O MOSI11:SPI12nd MOSI (主机输出,从机输入) 脚PC.12 I/O 通用数字输入/输出管脚57MISO11 I/O MISO11:SPI12nd MISO (主机输入,从机输出) 脚PC.11 I/O 通用数字输入/输出管脚58 33MOSI10 I/O MOSI10: SPI1 MOSI (主机输出,从机输入) 脚PC.10 I/O 通用数字输入/输出管脚59 34MISO10 I/O MISO10: SPI1 MISO (主机输入,从机输出) 脚PC.9 I/O 通用数字输入/输出管脚60 35SPICLK1 I/O SPICLK1: SPI1 串行时钟管脚PC.8 I/O 通用数字输入/输出管脚SPISS10 I/O SPISS10:SPI1从机选择管脚61 36MCLK O EBI时钟输出PA.15 I/O 通用数字输入/输出管脚PWM3 I/O PWM3:PWM输出/Capture 输入62 37 25I2SMCLK O I2SMCLK:I2S 主机时钟输出管脚PA.14 I/O 通用数字输入/输出管脚PWM2 I/O PWM2:PWM输出/Capture 输入63 38 26AD15 I/O EBI地址/数据总线 bit15管脚号LQFP 100 LQFP64LQFP48管脚名称管脚类型描述PA.13 I/O 通用数字输入/输出管脚PWM1 I/O PWM1:PWM输出/Capture 输入64 39 27AD14 I/O EBI地址/数据总线bit14PA.12 I/O 通用数字输入/输出管脚PWM0 I/O PWM0:PWM输出/Capture 输入65 40 28AD13 I/O EBI地址/数据总线 bit1366 41 29ICE_DAT I/O 调试器的串行数据管脚67 42 30ICE_CK I 调试器的串行时钟管脚68 VDD P 电源供应管脚,为IO端口、内部PLL电路LDO源和数字电路提供电源69 VSS P 地70 43 31AVSS AP 模拟电路地PA.0 I/O 通用数字输入/输出管脚71 44 32ADC0 AI ADC0:ADC模拟输入PA.1 I/O 通用数字输入/输出管脚ADC1 AI ADC1:ADC模拟输入72 45 33AD12 I/O EBI地址/数据总线 bit12PA.2 I/O 通用数字输入/输出管脚ADC2 AI ADC2:ADC模拟输入73 46 34AD11 I/O EBI地址/数据总线 bit11PA.3 I/O 通用数字输入/输出管脚ADC3 AI ADC3:ADC模拟输入74 47 35AD10 I/O EBI地址/数据总线 bit10PA.4 I/O 通用数字输入/输出管脚ADC4 AI ADC4:ADC模拟输入75 48 36AD9 I/O EBI地址/数据总线 bit9PA.5 I/O 通用数字输入/输出管脚76 49 37ADC5 AI ADC5:ADC模拟输入管脚号LQFP 100 LQFP64LQFP48管脚名称管脚类型描述AD8 I/O EBI地址/数据总线 bit8PA.6 I/O 通用数字输入/输出管脚ADC6 AI ADC6:ADC模拟输入77 50 38AD7 I/O EBI地址/数据总线 bit7PA.7 I/O 通用数字输入/输出管脚ADC7 AI ADC7:ADC模拟输入SPISS21 I/O SPISS21: SPI2 2nd从机选择管脚78 51 39AD6 I/O EBI地址/数据总线 bit679 VREF AP ADC参考电压输入80 52 40AVDD AP 内部模拟电路电源PD.0 I/O 通用数字输入/输出管脚81SPISS20 I/O SPISS20:SPI2从机选择管脚PD.1 I/O 通用数字输入/输出管脚82SPICLK2 I/O SPICLK2:SPI2串行时钟管脚PD.2 I/O 通用数字输入/输出管脚83MISO20 I/O MISO20: SPI2 MISO (主机输入,从机输出) 脚PD.3 I/O 通用数字输入/输出管脚84MOSI20 I/O MOSI20: SPI2 MOSI (主机输出,从机输入) 脚PD.4 I/O 通用数字输入/输出管脚85MISO21 I/O MISO21:SPI22nd MISO (主机输入,从机输出) 脚PD.5 I/O 通用数字输入/输出管脚86MOSI21 I/O MOSI21:SPI22nd MOSI (主机输出,从机输入) 脚PC.7 I/O 通用数字输入/输出管脚CPN0 AI CPN0:Comparator0负端输入管脚87 53 41AD5 I/O EBI地址/数据总线 bit5PC.6 I/O 通用数字输入/输出管脚88 54 42CPP0 AI CPP0:Comparator0正端输入管脚管脚号LQFP 100 LQFP64LQFP48管脚名称管脚类型描述AD4 I/O EBI地址/数据总线 bit4PC.15 I/O 通用数字输入/输出管脚CPN1 AI CPN1:Comparator1负端输入管脚89 55AD3 I/O EBI地址/数据总线 bit3PC.14 I/O 通用数字输入/输出管脚CPP1 AI CPP1:Comparator1正端输入管脚90 56AD2 I/O EBI地址/数据总线 bit2PB.15 I/O 通用数字输入/输出管脚/INT1 I /INT1:外部中断0输入管脚91 57 43T0EX I Timer0外部捕捉输入92 58 44XT1_OUT O 外部 4~24 MHz 晶振输出管脚93 59 45XT1_IN I 外部 4~24 MHz 晶振输入管脚94 60 46/RESET I 外部复位输入:低有效,置低复位MCU为初始状态,带内部上拉。