AML M1 Internal Intro v03 - 2010-03
- 格式:ppt
- 大小:3.49 MB
- 文档页数:60
3D打印机——Marlin固件全中文解析#ifndef CONFIGURATION_H#define CONFIGURATION_H// This configuration file contains the basic settings.// Advanced settings can be found in Configuration_adv.h// BASIC SETTINGS: select your board type, temperature sensor type, axis scaling, and endstop configuration//////////基本设置包括:主板类型,温度传感器类型,轴设置,限位开关配置//===================================================== ======================//============================= DELTA Printer===============================//===================================================== ======================// For a Delta printer replace the configuration files with the files in the// example_configurations/delta directory.////////////对于三角洲并联打印机,请找到固件里“example_configurations”文件夹下的“delta”子文件夹,并将其中的Configuration.h和Configuration_adv.h两个头文件拷贝到固件文件夹下,替换原先固件里的这两个头文件,并针对delta打印机作相应参数配置。
aml中chemo free的定义-概述说明以及解释1.引言1.1 概述概述部分的内容可以如下编写:引言部分将介绍AML(急性髓系白血病)以及chemo-free治疗的定义和意义。
AML是一种恶性肿瘤,主要起源于骨髓中的干细胞,并且迅速扩散到其他组织和器官。
由于其快速进展和复杂的细胞遗传学特征,AML 一直被认为是较难治疗的白血病类型之一。
在过去的几十年中,化疗一直是AML的主要治疗方法。
化疗的基本原理是使用化学药物通过杀死白血病细胞来减少白血病负荷,但同时也会对正常细胞造成严重的副作用。
化疗常常导致患者免疫力下降、恶心呕吐、脱发等不良反应,并且需要长时间的住院治疗和恢复期。
然而,随着医学研究和技术的进步,人们开始寻求更加安全和有效的AML治疗方法,特别是对于无法耐受化疗或无法获得传统治疗效果的患者。
Chemo-free治疗成为了一个备受关注的研究领域。
Chemo-free治疗指的是在不使用化疗药物的情况下,采用其他方法来抑制白血病细胞的增长和扩散,以达到AML治疗的目的。
Chemo-free治疗的意义在于减少患者遭受的副作用和治疗相关的并发症,提高生活质量。
与传统的化疗相比,Chemo-free治疗方案可能包括靶向治疗药物、免疫疗法和基因治疗等新的药物和方法。
这些新型治疗方法的出现为AML患者带来了新的治疗希望。
本文将深入探讨AML的背景介绍以及Chemo-free治疗的定义、意义和相关研究进展。
通过对Chemo-free治疗的研究和应用现状的分析,旨在为AML患者寻找更加安全和有效的治疗方案提供参考和思路。
随着对AML疾病和治疗的深入研究,相信Chemo-free治疗将会成为AML治疗领域的重要突破,进一步改善患者的预后和生活质量。
1.2文章结构文章结构部分的内容可以包括以下几个方面:1.2 文章结构本文将按照以下结构进行阐述:首先,我们将概述AML(急性髓细胞白血病)的背景和相关知识。
其次,我们将详细介绍chemo-free(无化疗)治疗的定义及其在AML治疗中的意义。
Be Your Window To TheWorldSelling PointsModern AM271P 11MWindows 10 Home - MSI consiglia Windows 11 Pro perle aziendeAggiornamento GRATUITO a Windows 11*Pannello da 27" IPS con risoluzione 1920 x 1080 FHDProcessori Intel® Tiger Lake con memorie DDR4Webcam FHD inclusaTecnologie MSI Anti-sfarfallio e Riduzione luce blu perridurre lo stress degli occhiTecnologia Instant Display rende il tuo AIO un secondomonitor senza dover effettuare il rebootDesign di archiviazione rapida ti aiuta ad aggiornare iltuo HDD da 2.5''USB 3.2 Gen 2 Type C per collegare e ricaricare i tuoidispositivi mobiliSistema di raffreddamento Silent PRO per le massimeprestazioniPicture and logos System I/O-Ports1.2x USB3.2 Gen 2 Type C2x USB3.2 Gen 2 Type A2.3.1x Mic-in/Headphone-out combo4.1x Switchable 2.5” Storage5.5-Way Navigator6.1x DC-in7.1x Kensington Lock1x HDMI in8.9.1x HDMI out10.2x USB 2.0 Type A1x RJ45 LAN11.12.1x USB 2.0 Type ASpecificationOperating Systems Windows N/ADisplay Screen Size27" (69 cm)Active Display Area (mm)597.888(H) × 336.312(V) Curvature FlatPanel Type IPSResolution1920x1080 (FHD)Pixel pitch0.3114(H)X0.3114(V) Brightness (nits)300Contrast Ratio1000:1Signal Frequency56~84.5 KHz(H) / 50~75 Hz(V) Response Time (GTG)14msView Angles178°(H)/178°(V)Surface Treatment Anti-GlareTouch Screen Non-touchDisplay Colors16.7MI/O Ports Lock type KensingtonProcessor CPU model Intel Core i5-1135G7 CPU Clock 2.4GHzCPU Cores4CPU TDP28WCPU Cache8 MB Intel® Smart Cache CPU Threads8Chipset Motherboard Chipset N/AMemory Memory Capacity8GB(8GB*1) Memory Type DDR4 SDRAM Memory Speed1600(3200)MHz Memory Module Form Factor SO-DIMM Memory Slot (Total/Free)2/1Memory Max Capacity Max 64GBStorage Total SSD Storage Capacity512GBTotal HDD Storage Capacity N/AM.2 Slot (1) Installed SSD512GB*1M.2 Slot (1) Interface PCIe GEN3x4 w/o DRAM NVMe M.2 Slot (1) Form Factor M.2-2280 M-KEYM.2 slots (Total/Free)1/0HDD (1) RPM N/AHDD (1) Form Factor N/AHDD (1) Interface N/A3.5" Drive Bays (Total/Free)0/2.5" Drive Bays (Total/Free)1/1ODD(Type)N/AODD Height N/AODD Type N/ACommunications LAN Controller Realtek RTL8111H Wireless LAN Controller INTEL/AX201.NGWG.NVW Wireless LAN standard802.11ax 2x2+BT Bluetooth Version 5.2Audio Audio Codec Realtek ALC233 Audio Support 2.1 Channel HD AudioI/O Ports (Front)USB 10Gbps (USB 3.2 Gen 2 Type-A)2 USB 10Gbps (USB 3.2 Gen 2 Type-C)2 Mic-in/Headphone-out combo1I/O Ports (Rear)USB 480Mbps (USB 2.0 Type A)2LAN Ports (RJ45)1HDMI™1x (v2.0) HDMI™ in1Power AC Adapter Output120W Battery N/A Battery Whrs N/AIn The Box Keyboard Interface WIRELESS Mouse Interface WIRELESS Power Cord1AC Adaptor1 Warranty Card1Quick Guide3User Manual N/A VESA Mount kit N/A Keyboard RF1430W Mouse MA04WInput Device WebCam external webcamRegulatory Compliance Storage Operating Temperature Range0° C ~ 35° C ; -20° C ~ 60° C Storage Operating Humidity Range0% ~ 85%;0% ~ 90%CertificationsFCC(Class B)CB/CEUL(CUL)BSMIVCCIRCM(C-Tick)Design Adjustment (Tilt)-4°~20°Adjustment (Height)0~130mmProduct Dimension with Stand (WxDxH)Product Dimension with Stand (WxDxH) (mm)611.75 x 169.96 x 436.06 Product Dimension with Stand (WxDxH) (inch)24.08 x 6.69 x 17.17Dimension & Weight Weight (Net kg)7.42 Weight (Gross kg)10 Product Dimension with Holder (WxDxH) (mm)N/A Product Dimension with Holder (WxDxH) (inch)N/A Inside Carton Dimension with Holder (WxDxH) (mm)N/A Inside Carton Dimension with Holder (WxDxH) (inch)N/A Inside Carton Dimension with Stand (WxDxH) (mm)N/A Inside Carton Dimension with Stand (WxDxH) (inch)N/A Outer Carton Dimension with Holder (WxDxH) (mm)N/AWarranty Warranty36MBarcode Info EAN4719072889715。
实习七、二次开发技术AML(Arc Macro Language),是用户在NT Arc/Info 中的ARC环境下用于二次开发的宏语言。
它主要包括设置用户环境、输入源指令、指令流控制、变量操作指令、程序实验和监视指令、对话环境指令、坐标输入指令、数学和三角函数、字符串操作功能、用户文件输入输出功能、文件管理功能、用户输入功能等。
通过ARC系统,AML能用于执行各种任务,例如:自动执行一系列动作类似于批处理、生成用户自己的命令集、编制菜单以及用户界面设计。
一、AML语言中的几个基本知识1、基本概念①.操作符:算术运算符:加,减,乘,除,乘方(+ - * /**)在AML语言中操作符的组合表达式运算规则为从左到右执行,有括号先括号,多层(最多四层)括号先里后外。
各种运算符的优先级是先函数、再括号、再乘方、再乘除最后加减,表达式书写时操作符,括号的两边必须有空格。
例如:2+3*5+(4-1)的书写格式和运算步骤如下:2 +3 * 5 +(4 - 1 )= 2 + 3 *5 + 3 = 2 + 15 + 3 = 20②.变量名:AML语言中,变量名由字符或数字组成,字符不区分大小写。
在变量名前加'.'表示为全局变量。
变量在使用过程中为区别于字符串,变量用%%括起来。
(如 %.path%)在部分函数、命令中规定使用变量参数时,引用的变量不能用%%括起来。
(如 &sv .path c:\arcinfo)变量在被定义或赋值后,可保存其值,直到被重新定义或赋值。
变量不需要先声明,在使用时即可作为字符型,也可作为数值型等。
③.函数AML语言中,有多种功能的函数,常用于数学计算、字符串操作、文件操作、用户输入等功能。
在使用中函数名用[]括起来,并且需要对函数的返回值做操作。
(如 &type [getcover *] ; edit [getcover *] ;&sv cover_name [getcover *])④.命令AML语言的大多数命令可在各模块中使用。
得宝一体机自诊断代码 Document number:BGCG-0857-BTDO-0089-2022得宝一体机自诊断代码!!!(详细)作者:南方维修…????文章来源:本站原创????点击数:518????更新时间:2005-5-11????显示方式原因检测时序E001主电机(M1)不正常;主电机基板装置不正常;主基板装置不正常;编码传感器(PS7)不正常当印鼓旋转指示灯亮,编码传感器;(PS7)在1秒内不能检查边缘E002升降电机(M2)不正常;升降上限传感器(PS9)不正常;升降下限传感器(MS6)不正常;驱动基板不正常;主基板不正常;升降机运作不正常当升降电机(M2)向上运动秒内升降机不能到达上限自检信息指示灯亮当升降电机(M2)向下运动在9秒内升降机不能到达下限自检信息指示灯亮E003裁切电机(M5)不正常;在操作侧(MS1)上的裁切限位不正常;在非操作侧(MS2)的裁切限位不正常;驱动基板不正常;主基板装置不正常;蜡纸在裁切装置部分卡纸裁切电机在裁切电机驱动信号发出3秒内不能到达可移动裁切刀的限位开关自检指示灯亮E004组合指示灯不正常;变压器装置不正常;CCD不正常;AD基板不正常;主基板不正常组合灯亮度检测,由CCD接收的光量不能到达规定值(只履行一次光量检查,电源闭合)E005油墨滚筒升\降电机不正常电机在油墨滚筒升\降电机驱动信号送出15秒内不能触及相关开关E006触压电机不正常送出触压电机旋转指示令后25秒内,电机未能触及相关开关E0081\F基板装置不正常;IPC1\F基板装置不正常;在在线制版时,主基板装置和1\F基板装置之间出现信息错误E009直流稳压电源不正常;热敏头基板不正常;热敏头不正常开始制版时,热敏头驱动电压没有达到规定值E201ADF出故障E301A分类机传送电机出故障E302A分类机箱装置出故障E303B分类机传送电机出故障E304B分类机箱装置出故障E305分类机桥电路电机故障E306A分类机订书机出故障E307B分类机订书机出故障得宝DP一体机操作代码序号分类说明00版本显示ROM版本显示01功能检测滚筒转速显示/调节排纸带速/油墨滚筒升降电机动作/触压开关操作03动作检测纸带分组器动作检测04动作检测补充油墨SP05传感器和开关显示排版\天地限位\天地中心\原稿盖板\返回位置的各传感器用[0][1]或2位数值表示传感器状态印刷键:按下此键表示[显示1],释放此键[显示2]显示1[????**]?? 卸版传感器的接收光量(PS3)????????????[00]—[63无蜡纸≤45??有蜡纸≥无蜡纸时的值PS05?? 显示2[****]?? 天地限位传感器(PS10)遮光=1???? 天地中心传感器(PS11)遮光=1?? 原稿压板传感器(PS2)??遮光=1???? 停止位置传感器(PS1)??遮光=1SP06传感器开关显示A/C模式传感器\B方式检验传感器\编码器\压印辊传感器\滚筒停止\堵纸传感器\着版、卸版位置传感器\卡纸\印鼓停止位置,卡纸位置检测传感器原稿方式键:文字方式键显示传感器状态清单如下用0 和1 表示传感器状态按下印刷键,显示如下状况显示 1[*??*??*??*]编码检验(PS7)?????? 0或1每读8次在0和1之间转换升降机上限传感器(PS9)??遮光=1A/C方式检测传感器(PS30)遮光=1B方式检测传感器(PS30)遮光=1如果按下印刷键并立刻松开,会出现下列状态显示2[****]印鼓蜡纸着版/脱版位置传感器??(PS6)??遮光=1卡纸传感器接收光????遮光=1???? 印鼓停止/卡纸检测位置传感器??遮光=1P滚筒传感器(PS7)遮光=1原稿方式键下表为图像方式键显示状态如果按下印刷键并立即松开,会出现下列显示显示3[****]卡纸传感器接收光量??0----255?????????????????? 缺纸-----剩纸07传感器开关显示切刀限位开关(限位)\滚筒转动开关(有无转动)\版纸设置\纸开关\滚筒盖开关??用0和1显示开关的状态??印刷键:按下此键显示 [显示1],松开此键,出现[显示2]??显示1?? [****]???? 滚筒旋转开关(SW3)???? PUSH=1????裁切刀限位开关(返操作侧)(MS2)??PUSH=1裁切刀限位开关(操作侧)(MS1)??PUSH=1[****]??前盖开关 SW (MS5)盖?? 打开 =0??用纸开关SW(MS7)?????? PUSH=1??升降下限开关SW(MS6)??PUSH=0??蜡纸调节开关SW(SW4)??PUSH=108传感器开关显示扫描器\CCD传感器\接纸板检测开关(升降机下降)\卷芯满开关\给纸板设置开关\滚筒有无用0和1表示开关状态按下印刷键即可显示显示??[****]滚筒检测开关 SW(MS4)??????滚筒检测=1升降机下限开关SW(SW2)???? PUSH=1卷蕊已满开关SW(MS8)?????? PUSH=1上盖开/关检测开关SW(MS2)??盖子打开=009动作检测DP2050=》》》滚筒停止位置检测??DP31===》蜡纸着版位置,卡纸检测位置,蜡纸脱版位置,印鼓停止位置10动作检测灯管\扫描电机运动检查11传感器开关显示原稿浓度值显示12动作检测AD电路板存储13传感器开关显示末端标志传感器按下印刷键显示下列开关状态显示 [****]??LO触压限位开关?? 开=1?? 触压中心开关??开=1?? 油墨滚升/降开关??开=1 ??按下印刷键并立即松开,将会出现下列状态显示[**]??尾部标志传感器(PS3)的接收光量?? 00??6314总计数??制版总数显示重新设置15动作检测供墨电机运行检测16调整\说明联机制版时,制版开始位置的修正17运行检测检测切刀电机运行18运行检测检测反转电机运行19总计数显示印刷总数,重新设置20运行检测检测版夹电机的运行及版夹夹紧位置21功能检测ADF功能检测22调整\说明在制版边纵向倍率补正量设定23调整\说明图象方式与原稿扫描暗度的确定000 标准------0011—100—111为最大24调整\说明印刷边纵向倍率修正量设定000 标准------0011—100—111为最大(1等级:)25调整\说明应用自动进稿器时,修正原稿基底的白色度000 标准------0011—100—111为最大26调整\说明修正图像方式下原稿浓度白基底的白色度000 标准------0011—100—111为最大27调整\说明将所有帮助程序进行初始化处理28调整\说明纸带分组器,蜂鸣器,磁卡计数器的设定29调整\说明调节蜡纸纵向进给长度(蜡纸头余量的调节)000 标准------0011—100—111为最大PS30运行检测测试文本的制版和印刷 ===》》测试样张31调整\说明预印刷张数设定0000(0张)------0001(1)----0010(2)----0011(3)-〉---1111(15张)32调整\说明首张印速\卸版故障检测设置*0**??第一张约45转????*1**??JOG速度(15转)33调整\说明文字方式白度补正 (原稿浓度白基底修正)000* ----*-001----*010----*011—*100—*101----*110-最大标准值---*11135调整\说明扫描器顶端的起始阅读位置0***标准 ----1***----*000----*001—*010—*011----*100---*101--*110--*11136调整\说明扫描器纵向边(操作边)起始阅读位置0***标准 ----1***----*000----*001—*010—*011----*100---*101--*110--*111 37调整\说明应用扫描器时制版的起始位置0***标准 ----1***----*000----*001—*010—*011----*100---*101--*110--*11140调整\说明当使用扫描器时,修正轮廓最亮处的浓度状态41调整\说明自动复位设置\重复计数显示42调整\说明纸张选择规格设定43调整\说明热敏头电阻值设定44调节/参数调节设置热敏头电阻值级别的设定45调节/参数调节特殊用纸长度设定(下位4Bit)46调节/参数设置特殊用纸长度设定(上位4Bit)47调节/参数调节特殊用纸宽度设定(下位4Bit)48调整\说明横向扫描时缩小量的调节49调整\说明读取侧中心倍率设定50调整\说明文字方式原稿读取浓度设定51调整\说明调整测试文本的制版浓度52调整\说明联机条件设定53调整\说明联机制版时横向(操作侧)制版开始位置调整54调节/参数调节主基板分类机功能检测55调整\说明油墨检测,切刀运转方式设定56调整\说明联机制版时,横向制版开始位置调整57调整\说明选择控制语言开关59末端传感器设置(图像档H--13)60调节/参数调节选择自动清除方式和良好启动方式61调节/参数调节显示参数62调节/参数设置。
MJ系列微电脑控制器维修说明书盟立自動化科技(上海)有限公司MIRLE AUTOMATION TECHNOLOGY (SHANGHAI)CO., LTD.工業控制器系統應用部制目錄一、檢修流程(硬體,軟體) (1)二、順序控制電路板錯誤碼 (5)三、MMI板當機處理 (7)四、螢幕警告訊息 (8)五、熒屏警告資訊解說 (11)六、MJ系列控制器規格及電路板 (19)控制器規格 (19)控制器電路板 (20)LCD顯示卡說明 (20)CPU/MMI板說明 (20)A. 綜合板:(I/O底板) (20)B. 溫度模組說明 (20)C. P.F模組說明 (23)D. 並列輸出模組 (25)E. 並列輸入模組 (26)LCD操作面板(顯示及操作模組) (27)電源(SWITCH POWER) (28)七、附錄 (29)一、檢修流程(硬體,軟體)二、順序控制電路板錯誤碼錯誤碼是由順序控制電路板D11~D15五個LED所組成,以二進位(Binary)來表示,故有32個錯誤碼,分別敍述如下:說明:1、 "●":表示LED ON (亮)"○":表示LED OFF (暗)2、符號排列方式由最高位元D11到最低位元D15。
D15 D14 D13 D12 D11○○○○○3、錯誤碼爲"9200"表示系統正常,但此時LED D11會一秒閃爍一次。
4、在錯誤碼之前有"○"符號者,表示爲順序控制電路板問題,其餘爲外部元件(電阻尺、ENCODER...等)或其他電路板問題. 。
5、維修時,若IC是直接焊在電路板上,請將電路板送修。
錯誤碼15 14 13 12 11 故障原因可能故障元件9200 ○○○○○系統正常無故障元件⊙9201 ○○○○●CPU U25-MC68OOOP12⊙9202 ○○○●○EPROM U8&U9⊙9203 ○○○●●EPROM U8-27C5l2⊙9204 ○○●○○EPROM U9-27C512⊙9205 ○○●○●WORK RAM U15&U16⊙9206 ○○●●○WORK RAM U15-HY6264ALP-10 ⊙9207 ○○●●●WORK RAM U16-HY6264ALP-10 ⊙9208 ○●○○○BACKUP RAM U4&U5⊙9209 ○●○○●BACKUP RAM U4-M5l257L-10⊙9210 ○●○●○BACKUP RAM U5-M5l257L-109211 ○●○●●人機板U12&U209212 ○●●○○人機板U12-IDT7132LAl00P 9212 ○●●○○人機板U12-IDT7132LAl00P 9213 ○●●○●人機板U20-IDT7142LA1OOP 9214 ○●●●○射膠電阻尺電阻尺9215 ○●●●●動模電阻尺電阻尺9216 ●○○○○頂針電阻尺電阻尺9217 ●○○○●射座電阻尺電阻尺9218 ●○○●○溫度板U09-ADC ICL7109 9219 ●○○●●系統TIMER U29-8253-59220 ●○●○○位置板U9-AD5749221 ●○●○●預留9222 ●○●●○溫度板U10-8253-59223 ●○●●●溫度板U11-8253-59224 ●●○○○溫度板U12-8253-5⊙9225 ●●○○●電池電力不足鋰碘電池9226 ●●○●○溫度板U13-8253-59227 ●●○●●預留9228 ●●●○○LADDER CHKSUM ERR. LOWER 9229 ●●●○●LADDER CHKSUM ERR. UPPER 9230 ●●●●○WATCHDOG9231 ●●●●●系統異常注:9228~9229當LADDER以DOWNLOAD方式時,才可能發生此故障。
QUICK START GUIDEModero S Series Any Mount KitReplacement Guide© 2016 Harman. All rights reserved. Modero, Modero S Series, AMX, AV FOR AN IT WORLD, HARMAN, and their respective logos are registeredtrademarks of HARMAN. Oracle, Java and any other company or brand name referenced may be trademarks/registered trademarks of theirrespective companies.AMX does not assume responsibility for errors or omissions. AMX also reserves the right to alter specifications without prior notice at any time.The AMX Warranty and Return Policy and related documents can be viewed/downloaded at .3000 RESEARCH DRIVE, RICHARDSON, TX 75082 | 800.222.0193 | 469.624.8000 | +1.469.624.7400 | fax 469.624.7153AMX (UK) LTD, AMX by HARMAN - Unit C, Auster Road, Clifton Moor, York, YO30 4GD United Kingdom • +44 1904-343-100 • /eu/Last Revised: 3/31/201693-2265-26 REV: B IMPORTANT: READ THIS FIRST!This guide includes additional instructions for the installation of the MSA-AMK/2-07and MSA-AMK/2-10 Modero S Series Any Mount Kits. This guide should be read firstbefore continuing the installation of the Any Mount Kit.IMPORTANT: You should have already installed the Any Mount Kit back box beforestarting this installation. For more information, please refer to the MSA-AMK/2-xx QuickStart Guide, available from .InstallationThe MSD-701-L/2, MSD-1001-L/2 Modero S Series wall-mount touch panels andRMBK-701 and RMBK-1001 AMX RoomBook Scheduling Touch Panels use a RJ-45cable to provide both power and connectivity to the touch panel (FIG.1).In some panels, the insulator sleeve on the connector cable may be too long, preventingproper flexing of the cable and ultimately binding between the touch panel and the AnyMount Kit back box (FIG.2).The MSA-AMK/2-07 and MSA-AMK/2-10 Any Mount Kits come with an alternate RJ-45connector cable (ECA2265-05), in order to replace the connector cable, if necessaryand facilitate installation of the touch panel into the Any Mount Kit.The new RJ-45 connector cable may be recognized both by the length of the insulationsleeve, but also by the tag with the cable’s part number at the end of the sleeve (FIG.2).Replacing the RJ-45 Connector Cable1.From the bottom of the touch panel, gently remove the male cable connectorfrom its outlet (FIG.3).2.Carefully install the cable connector on the new RJ-45 connector cable to theoutlet on the touch panel.3.Pull sufficient Ethernet cable from the gang box to allow you to connect theEthernet cable to the connector cable.4.Test the incoming wiring by applying power. Verify that the panel is receivingpower and functioning properly to prevent repetition of the installation.5.Make certain that the path of the RJ-45 connector cable goes straight through thecenter hole in the Any Mount Kit back box (FIG.4). Insure that the connectorcable will not fold up or bind in the slot below the center hole.6.Continue with the installation of the touch panel onto the Any Mount Kit back box.Ethernet/RJ-45 Connections and WiringThe following table lists the pinouts, signals, and pairing for the Ethernet RJ-45connector.Additional Documentation•For information on installing the MSA-AMK/2-07 and MSA-AMK/2-10 Modero SSeries Any Mount Kits, refer to the MSA-AMK/2-xx Quick Start Guide.•For information on Installing Modero S Series touch panels, refer to the Modero SSeries Installation and Hardware Reference Guide.•For information on installing AMX RoomBook Scheduling Panels, refer to the AMXRoomBook Scheduling Touch Panels Instruction Manual.FIG. 1 MSD-701-L/2 Wall Mount Touch Panel (rear)FIG. 2RJ-45 connector cables, old and newFIG. 3 RJ-45 connector cable inserted into MSD-701-L/2 connectorMSD-701-L/2Touch PanelRJ-45 ConnectorCableReplacement RJ-45Connector CableOld RJ-45Connector CableSleeveLengthSleeveLength(ECA2265-05)Touch Panel (bottom)RJ-45 Connector CableCable ConnectorFIG. 4 MSA-AMK/2-701 Any Mount Kit back box, path of connector cablePin Signals Connections Pairing1TX + 1 --------- 1 1 --------- 22TX - 2 --------- 23RX + 3 --------- 3 3 --------- 64PoE power 4 --------- 45PoE power 5 --------- 5 4 --------- 56RX - 6 --------- 67PoE power7 --------- 77 --------- 88PoE power8 --------- 8FIG. 5 RJ-45 wiring diagramAny Mount KitBack BoxPath ofConnector CableWall Surface。
Product Guide Product Code UC-AM1( and DO-BOX-AM1 )Version 0.1Copyright InformationEquinox guarantees that its products will be free from defects of material and workmanship under normal use and service, and these products will perform to current specifications in accordance with, and subject to, the Company’s standard warranty which is detailed in Equinox’s Purchase Order Acknowledgement.Equinox reserves the right to change specifications detailed in this document without notice and does not represent a commitment on the part of the manufacturer. The information and circuit diagrams described in this document are furnished under license agreement or non –disclosure agreement and may be used or copied only in accordance with the terms of the agreement.© 1998, 1999 Copyright Equinox technologies UK, Limited. All rights reserved.Atmel™ and AVR™ are trademarks of the Atmel Corporation.Microsoft, MS-DOS, Windows™, Windows 95™, Windows 98™ and Windows NT™ are registered trademarks of the Microsoft Corporation.IBM, PC and PS/2 are registered trademarks of International Business Machines Corporation.Every effort was made to ensure accuracy in this manual and to give appropriate credit to persons, companies and trademarks referenced herein.ContentsIntroduction…………AM1/4Hardware overview…………AM1/5Jumper Configurations…………AM1/6Module Specifications…………AM1/7External Interface Connectors…………AM1/8Equinox Technologies UK Limited3 Atlas house, St Georges Square, Bolton, England BL12HBTelephone Sales : +44 (0) 1204 529000Fax+44 (0) 1204 535555E-mail********************** Web site For technical support on this product please e-mail us at:************************IntroductionT he AM1 is a feature - packed applicationsmodule, specifically designed to interface directly to a range of “microcontroller personality modules” from Equinox. The choice of different personality modules allows the AM1 to be used for testing and evaluation of a wide range of microcontrollers. This compact module carries a wealth of microcontroller peripheral applications including LED display, push-button switches, piezo sounder, Analogue to Digital Conversion ( for microcontrollers with an integrated analogue comparator ), Serial Data Communication and Stepper Motor driver . Typically this module can be used with the AVR microcontroller family from Atmel, the 8051 variants from a range of manufacturers ( And any others we should mention ). The AM1 is now supplied as standard in Equinox Microcontroller development systems.Module Highlights8 × Light Emitting diodes (LED’s)5 × Push Button SwitchesRS-232 Communications Driver Circuitry Simple Analogue to Digital (A/D) Convertor using on – chip comparatorOn – board regulated Power supply Stepper Motor Driver / high current outputs LCD character display interface connector Piezo sounderHardware Overview18 17 16 15 14 13Key :1Microcontroller Personality Module Connector2LED-s × 83RV1 Internal Analogue Signal / LCD backlight adjuster 4Analogue Reference Input / Ramp Output5External Analogue Signal Input6LK1 LCD Backlight control jumper7External Power Supply Ground screw terminal8Unregulated External Power Supply screw terminal9Regulated External Power Supply screw terminal10Power Supply Input +9 to +26v DC Unregulated11Serial Communications (RS-232) Connector12Stepper Motor Drive screw terminals13Push Button switches × 514LK3 Stepper CHB Port/pin selection jumper15LK2 RV1 function selection jumper16LK4 Sounder Enable/Disable jumper17Piezo Sounder18LCD connection socketJumper configurationsKey Link1-22-3 6LK1LCD Backlight – via buffered o/p CHA or continuous CHA Cont 15LK2RV1 function : LCD contrast / Analogue input LCD AIN 14LK3Select Control signal for Stepper Motor CHB*Pin 15*Pin4 16LK4Enable / Disable Sounder On -* The signals on pins 4 and 15 of the Personality Module have different functions depending on the microcontroller used. See Device Support section.Module SpecificationsUC-AM1 Technical specificationPower input …………..: CON3 +9volts DC nominal ( +25 volts max )CON2 +9V DC unregulated, or +5V DC regulated.Power Connectors…….:.CON7 standard 2.5mm ROKA type – centre positiveAccepts Equinox Power SupplyCON4Screw terminals to accept external bench PSU.Pin 1 +5VPin 2 +9VPin3 0VSerial Port…………….;3-wire asynchronous communications interface, TxD, RxD, GND (RS-232compatible )Serial connector………:CON39 way female D-type connector, PC compatible via 1:1 cablePin 2 – TxD Output from microcontroller / user circuitPin 3 – RxD Input to microcontroller / user circuitPin 5 – GND Signal Ground connectionA/D Convertor……….:CON5Screw terminals to accept external inputSupports simple single slope comparator techniqueGND Signal GroundREF Voltage ramp from 65uA current source into 100nF approxAIN Analogue signal input – Max range 0V to +5V (clamped )into built – in noise filter 10K/100nf approx. Sounder……………..:Piezo typeOther I/O…………….: 5 switches and 8 LED’s on microcontroller port pinsCON216-way box header : LCD character display connectorfor Hitachi 44780 – controlled or compatible displays ( 4-bit nibble mode )CON1Screw terminals to accept external load4 buffered outputs at up to 1A and full unregulated supply voltage.Capable of driving relays, solenoids, stepper motors. Personality Module connector….:25 – way female D-type connector, compatible with EquinoxMicrocontroller Personality ModulesExternal Interface ConnectionsThe LCD Connector:LCD connector Pin-OutThe RS 232 Serial PortRS232 D connector Pin-Out( Connections are shown “looking into” UC-AM1 board connector )Pin:Signal Name AM1 Signal 1V SS (GND)0V 2V DD VCC3V ORV1 via LK2 (1-2)4RSPA45R/W PA56E PA67NC No connection 8NC No connection 9NC No connection 10NC No connection 11DB4PA012DB5PA113DB6PA214DB7PA315Backlight V IN or CHA via 240Ω( selectable by LK1 )16GND0V21615Pin:Signal Name AM1 Signal 2TXD TXD 3RXD RXD 5GND0V。
aml芯片AML芯片是一种可编程逻辑装置,它具有快速自动化的特点。
它是基于Lattice Semiconductor公司的ECP5系列FPGA技术,并在此基础上进行了一些优化和改进。
该芯片具有低功耗、高可靠性、易于使用的特点,在许多领域有着广泛的应用。
首先,AML芯片具有低功耗的特点。
它采用了低功耗的CMOS工艺,使得芯片的功耗大大降低。
与传统的ASIC芯片相比,AML芯片的功耗可以降低80%以上。
这样一来,使用AML芯片的设备能够延长电池寿命,减少能源消耗,节约成本。
其次,AML芯片具有高可靠性。
该芯片采用了ECP5系列FPGA技术,具有可重构的特性。
这意味着,即使在生产过程中出现了问题,也可以通过重新编程来修复。
这种可编程性使得AML芯片具有较高的容错性,可以在故障发生时自动调整,确保系统的正常运行。
另外,AML芯片还具有易于使用的特点。
它提供了友好的开发工具和接口,使得开发人员能够快速上手。
同时,AML芯片支持多种编程语言和开发环境,如Verilog、VHDL和C语言等,开发人员可以根据自己的需求选择合适的编程方式。
此外,AML芯片还提供了丰富的功能库,开发人员可以直接调用,简化开发过程。
除了以上特点,AML芯片还具有较高的性能和灵活性。
它采用了先进的架构和算法,具有较高的时钟频率和处理性能,可以满足不同应用场景的需求。
同时,AML芯片还支持多种外设的接口,如USB、I2C和SPI等,可以与其他设备进行快速、稳定的通信。
这种灵活性使得AML芯片在各种应用中发挥重要作用,如嵌入式系统、通信设备、智能家居等领域。
综上所述,AML芯片是一种具有低功耗、高可靠性、易于使用的可编程逻辑装置。
它在电子行业中有着广泛的应用,成为解决各种问题的理想选择。
无论是在节能减排、提高系统可靠性还是简化开发过程等方面,AML芯片都展现出了其独特的优势和潜力。
NuMicro® FamilyArm® Cortex-A35-based Microprocessor NuMaker-HMI-MA35D1-S1User ManualEvaluation Board for NuMicro® MA35D1 SeriesNUMAKER-HMI-MA35D1-S1 USER MANUAL M-m UThe 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 andmicroprocessor 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 (9)1.1NuMaker-SOM-MA35D16A81 Board (11)1.2NuMaker-BASE-MA35D1B1 Board (12)1.37’’ TFT LCD Daughter Board (13)1.4Board Part Number and Information (14)2FEATURES (15)2.1NuMaker-SOM-MA35D16A81 Features (15)2.2NuMaker-BASE-MA35D1B1 Features (15)2.37’’ TFT LCD Daughter Board Features (16)3HARDWARE CONFIGURATION (17)3.1NuMaker-SOM-MA35D16A81 Board (17)3.1.1Front View (17)3.1.2Rear View (17)3.1.3Power Input (17)3.1.4RTC Wake-up Control (18)3.1.5PMIC (18)3.1.6eMMC NAND Flash (19)3.1.7RGMII Gigabit PHY (20)NUMAKER-HMI-MA35D1-S1 USER MANUAL Maker Nu-mbed NUC472 User Manual3.1.8High Speed Connectors (21)3.2NuMaker-BASE-MA35D1B1 Board (26)3.2.1Front View (26)3.2.2Rear View (26)3.2.3Power and Ground (27)3.2.4High Speed Connectors (27)3.2.5QSPI Flash (31)3.2.6NAND Flash (32)3.2.7SD Card Slot (33)3.2.8HS USB2.0 Connectors (33)3.2.9Power-on Setting (33)3.2.10G igabit Ethernet Transformers and RJ45 Ports (36)3.2.11C MOS Sensor Capture Connectors (36)3.2.12E xternal Bus Interface (EBI) Connector (38)3.2.13E ADC Connector (40)3.2.14U ART (41)3.2.15R S485 (42)3.2.16C AN FD (42)3.2.17S WJ, SWD and ETM (43)3.2.18U SB Virtual COM (VCOM) Port (45)3.2.19R eset and RTC Wake-up Key Buttons (45)3.2.20T FT LCD Connector (45)3.2.21A udio Codec (48)3.2.22S IM Card Slot (49)3.2.23K ey Buttons, LEDs and Buzzer (49)3.2.24M EMS Digital Microphone (50)3.2.25M EMS G-Sensor (50)3.37’’ TFT LCD Daughter Board (51)3.3.1Front View (51)3.3.2Rear View (51)3.3.3Connectors (52)4QUICK START (53)4.1Hardware Setup and Power On (53)4.1.1Insert SD Card (53)4.1.2Configure Power-on Setting (53)4.1.3Power On the NuMaker-BASE-MA35D1B1 Board (54)4.1.4VCOM Port (Optional) (55)4.2Embedder Demos (56)4.2.1H.264 Video Playback (56)4.2.2ML People Counting (56)4.2.32D Accelerator (57)NUMAKER-HMI-MA35D1-S1 USER MANUAL M-m U4.2.4VoIP Demonstration (57)4.2.5Data Security (58)4.2.6Keyword Spotting by RTP M4 (58)5SUPPORTING RESOURCES (60)5.1Documents (60)5.2Software (60)6HARDWARE SCHEMATICS (62)6.1NuMaker-SOM-MA35D16A81 Schematics (62)6.1.1System Block (62)6.1.2PMIC, Crystal and Power Filter Schematic (63)6.1.3Power Group 0, 2, 4 and 5 Schematic (64)6.1.4Power Group 1 Schematic (65)6.1.5Power Group 3 (eMMC1_PJ) Schematic (66)6.1.6Power Group 6, 7, ADC and USB Schematic (67)6.1.7Power Group 8 (RGMII0_PE) Schematic (68)6.1.8Power Group 9 (RGMII1_PF) Schematic (69)6.1.9DDR PHY Schematic (70)6.1.10P CB Placement (71)6.2NuMaker-BASE-MA35D1B1 Schematics (73)6.2.1Power Schematic (73)6.2.2SOM Connectors Schematic (74)6.2.3Power-on Setting and NAND Flash Schematic (75)6.2.4SD0 Schematic (76)6.2.5QSPI0 Schematic (77)6.2.6EADC0 Schematic (78)6.2.7RGMII0_PE Schematic (79)6.2.8RGMII1_PF Schematic (80)6.2.9HSUSB 0/1 Schematic (81)6.2.10C CAP 0/1 Connector Schematic (82)6.2.11L CM Connector Schematic (83)6.2.12E BI Connector Schematic (84)6.2.13N AU88C22 Audio Codec Schematic (85)6.2.14S IM Card Schematic (86)6.2.15R S232 Schematic (87)6.2.16R S485 Schematic (88)6.2.17C AN FD Schematic (89)6.2.18K ey Buttons, LEDs and Buzzer Schematic (90)6.2.19S WJ, SWD and ETM Connectors Schematic (91)6.2.20N UC123 VCOM Schematic (92)6.2.21M EMS Digital Microphone Schematic (93)6.2.22M EMS G-Sensor Schematic (94)6.2.23P CB Placement (95)NUMAKER-HMI-MA35D1-S1 USER MANUAL Maker Nu-mbed NUC472 User Manual6.37’’ TFT LCD Daughter Board Schematic (97)7REVISION HISTORY (98)List of FiguresFigure 1-1 NuMaker-HMI-MA35D1-S1 Board from SOM Side (10)Figure 1-2 NuMaker-HMI-MA35D1-S1 Board from TFT LCD Side (10)Figure 1-3 NuMaker-SOM-MA35D16A81 Board (11)Figure 1-4 NuMaker-BASE-MA35D1B1 Board (12)Figure 1-5 7’’ TFT LCD Daughter Board (13)Figure 3-1 Front View of NuMaker-SOM-MA35D16A81 (17)Figure 3-2 Rear View of NuMaker-SOM-MA35D16A81 (17)Figure 3-3 Front View of NuMaker-BASE-MA35D1B1 (26)Figure 3-4 Rear View of NuMaker-BASE-MA35D1B1 (27)Figure 3-5 Front View of 7’’ TFT LCD Daughter Board (51)Figure 3-6 Rear View of 7’’ TFT LCD Daughter Board (52)Figure 4-1 SD0 Standard-SD Card Slot (CON4) (53)Figure 4-2 Power-on Setting DIP Switch (SW4) (53)Figure 4-3 Power Jack (CON1) and Slide Switch (SW1) (54)Figure 4-4 USB VCOM Port (CON21) (55)Figure 4-5 Main Screen of Demonstration (56)Figure 4-6 H.264 Video Playback Demonstration (56)Figure 4-7 ML People Counting Demonstration (57)NUMAKER-HMI-MA35D1-S1 USER MANUAL M-m U Figure 4-8 2D Accelerator Demonstration (57)Figure 4-9 VoIP Demonstration (58)Figure 4-10 Data Security Demonstration (58)Figure 4-11 Keyword Spotting by RTP M4 Demonstration (59)Figure 5-1 Nuvoton Website (60)Figure 5-2 MA35D1 GitHub Resources (61)Figure 6-1 System Block (62)Figure 6-2 PMIC, Crystal and Power Filter Schematic (63)Figure 6-3 Power Group 0, 2, 4 and 5 Schematic (64)Figure 6-4 Power Group 1 Schematic (65)Figure 6-5 Power Group 3 (eMMC1_PJ) Schematic (66)Figure 6-6 Power Group 6, 7, ADC and USB Schematic (67)Figure 6-7 Power Group 8 (RGMII0_PE) Schematic (68)Figure 6-8 Power Group 9 (RGMII1_PF) Schematic (69)Figure 6-9 DDR PHY Schematic (70)Figure 6-10 Front PCB Placement of NuMaker-SOM-MA35D16A81 Board (71)Figure 6-11 Rear PCB Placement of NuMaker-SOM-MA35D16A81 Board (72)Figure 6-12 Power Schematic (73)Figure 6-13 SOM Connectors Schematic (74)Figure 6-14 Power-on Setting and NAND Flash Schematic (75)Figure 6-15 SD0 Schematic (76)Figure 6-16 QSPI0 Schematic (77)Figure 6-17 EADC0 Schematic (78)Figure 6-18 RGMII0_PE Schematic (79)Figure 6-19 RGMII1_PF Schematic (80)Figure 6-20 HSUSB 0/1 Schematic (81)Figure 6-21 CCAP 0/1 Connectors Schematic (82)Figure 6-22 LCM Connector Schematic (83)Figure 6-23 EBI Connector Schematic (84)Figure 6-24 NAU88C22 Audio Codec Schematic (85)Figure 6-25 SIM Card Schematic (86)Figure 6-26 RS232 Schematic (87)Figure 6-27 RS485 Schematic (88)Figure 6-28 CAN FD Schematic (89)Figure 6-29 Key Buttons, LEDs and Buzzer Schematic (90)Figure 6-30 SWJ, SWD and ETM Connectors Schematic (91)Figure 6-31 NUC123 VCOM Schematic (92)Figure 6-32 MEMS Digital Microphone Schematic (93)NUMAKER-HMI-MA35D1-S1 USER MANUAL Maker Nu-mbed NUC472 User ManualFigure 6-33 MEMS G-Sensor Schematic (94)Figure 6-34 Front PCB Placement of NuMaker-BASE-MA35D1B1 Board (95)Figure 6-35 Rear PCB Placement of NuMaker-BASE-MA35D1B1 Board (96)Figure 6-36 7’’ TFT LCD Daughter Board Schematic (97)List of TablesTable 1-1 Board Part Number and Information (14)Table 3-1 RTC Power Control Pins of MA35D1 (18)Table 3-2 PMIC (U2) Output Voltage (19)Table 3-3 PMIC (U2) Control Pins (19)Table 3-4 eMMC1 NAND Flash Device (U3) Pin Function (20)Table 3-5 RGMII0 PHY (U4) Pin Funciton (20)Table 3-6 RGMII1 PHY (U5) Pin Funciton (21)Table 3-7 SOM Connector 1 (P1) Pin Function (23)Table 3-8 SOM Connector 2 (P2) Pin Function (25)Table 3-9 SOM Connector 1 (CON2) Pin Function (29)Table 3-10 SOM Connector 2 (CON3) Pin Function (31)Table 3-11 QSPI0 Flash (U8) Pin Function (32)Table 3-12 NAND Flash (U4) Pin Function (32)Table 3-13 SD0 Standard-SD Card Slot (CON4) Pin Function (33)Table 3-14 Secure Boot Options (34)Table 3-15 Booting Source QSPI0 and SD/eMMC IO Voltage Options (34)Table 3-16 Booting Source Options (34)Table 3-17 Page Size Options for NAND Flash Booting Source (34)NUMAKER-HMI-MA35D1-S1 USER MANUAL M-m U Table 3-18 ECC Options for NAND Flash Booting Source (35)Table 3-19 Options for SD Card 0/1 or eMMC 0/1 NAND Flash Device Booting Source (35)Table 3-20 4/8-bit Options for eMMC NAND Flash Device Booting Source (35)Table 3-21 1-bit Options for QSPI0 NAND/NOR Flash Booting Source (35)Table 3-22 Options for USBD or USBH Booting Source (36)Table 3-23 USBH Port 0/1 Options for USBH Booting Source (36)Table 3-24 Over-current High/Low-active Detect Options for USBH Booting Source (36)Table 3-25 CCAP0 Connector (CON7) Pin Function (37)Table 3-26 CCAP1 Connector (CON8) Pin Function (38)Table 3-27 EBI Connector (CON10) Pin Function (40)Table 3-28 EADC0 Connector (J6) Pin Function (41)Table 3-29 UART0 Port, Ground VSS and Tamper Pin Connector (J1) Pin Function (41)Table 3-30 UART11 (U21, CON13) Pin Function (41)Table 3-31 UART16 (U22, CON14) Pin Function (42)Table 3-32 UART12 (U23, CON15) Pin Function (42)Table 3-33 UART14 (U24, CON16) Pin Function (42)Table 3-34 CAN1 (U25, CON17) Pin Function (43)Table 3-35 CAN3 (U26, CON18) Pin Function (43)Table 3-36 SWJ Interface (CON19) Pin Function (44)Table 3-37 SWD Interface (J8) Pin Function (44)Table 3-38 ETM Interface (CON20) Pin Function (45)Table 3-39 NUC123 ICE Interface (J9) Pin Function (45)Table 3-40 LCM Connecor (CON9) Pin Function (48)Table 3-41 I2S0 (U18) Pin Function (48)Table 3-42 I2C2 (U18) Pin Function (48)Table 3-43 Audio Codec (U18) Control Pin Function (49)Table 3-44 SC0 SIM Card Connector (CON12) Pin Function (49)Table 3-45 Key Buttons (KEY_1, KEY_2, KEY_3) Pin Function (49)Table 3-46 LEDs (LEDG4, LEDR1) Pin Function (50)Table 3-47 MEMS Digital Mircrophone (U31) Pin Function (50)Table 3-48 MEMS G-Sensor (U32) Pin Function (50)Table 4-1 SD/eMMC Booting Source Configuration on Power-on Setting (54)Table 4-2 SD0 Booting Source Configuration on Power-on Setting (54)NUMAKER-HMI-MA35D1-S1 USER MANUAL Maker Nu-mbed NUC472 User Manual1 OVERVIEWThe NuMaker-HMI-MA35D1-S1 is an evaluation board for Nuvoton NuMicro MA35D1 series microprocessors, and consists of three parts: a NuMaker-SOM-MA35D16A81 SOM board, a NuMaker-BASE-MA35D1B1 base board and a 7” TFT-LCD daughter board. The SOM board integrates corecomponents to simplify the system design, based on MA35D16A887C (BGA312 package, and stackinga 256 MB DDR), PMIC power solution, a 16 GB eMMC Flash, and two Gigabit Ethernet PHY. TheNuMaker-HMI-MA35D1-S1 has rich peripherals such as 2 sets of Gigabit Ethernet, USB2.0 high-speedhost and device, 2 sets of CAN FD, and SPI, I2C, UART, RS-485 serial communication ports for usersto facilitate the evaluation in HMI and industrial control, home appliances, 2-wheel cluster, medicaldevice, new energy applications, ML (Machine Learning) or your creative applications.There are two evaluation boards for the MA35D1 series, NuMaker-HMI-MA35D1-S1 and NuMaker-IoT-MA35D1-A1, which are ideal for HMI and edge gateway applications, respectively. For more details onHMI applications, please refer to NuMaker-HMI-MA35D1-S1 User Manual. For more details on edgegateway applications, please refer to NuMaker-IoT-MA35D1-A1 User Manual.The NuMicro MA35D1 series is a heterogeneous multi-core microprocessor targeted to high-end edgeIIoT gateway. It is based on dual 64-bit Arm Cortex-A35 cores with speed up to 1 GHz, and one 180MHz Arm Cortex-M4 core. Based on the high-performance cores, the MA35D1 series facilities the tinyAI/ML for edge computing.The MA35D1 supports 16-bit DDR2 and DDR3/DDR3L SDRAM. For an easy system design andmanufacture, the MA35D1 series also offers LQFP and BGA packages stacked with the DDR2/DDR3LSDRAM and density up to 512 MB, which significantly reduces PCB layer, size and electromagneticinterference (EMI).The MA35D1 series is a trusted system for IoT products' security requirements. It includes severaladvanced security mechanisms such as Nuvoton Trusted Secure Island (TSI) an isolated securehardware unit, TrustZone, secure boot, tamper-detection, built-in cryptographic accelerators, and aTRNG, as well as Key Store and OTP memory. All the security operations are performed in the TSI toprotect sensitive and high-value data. The features also satisfy customers in IEC 62443 certificationNUMAKER-HMI-MA35D1-S1 USER MANUAL M-m U requirements.For high-end edge IIoT gateway requirements, the MA35D1 series provides multiple advanced and high-speed connection interfaces, such as Gigabit Ethernet, SDIO3.0, USB 2.0 HS, and CAN FD, for edgegateway and new energy applications.For HMI applications, the MA35D1 series provides a LCD display controller with the resolution up to1920x1080 at 60 FPS, a 2D graphic engine, a JPEG and a H.264 decoder integrated for better graphicalHMI effects and video playback.Figure 1-1 NuMaker-HMI-MA35D1-S1 Board from SOM SideFigure 1-2 NuMaker-HMI-MA35D1-S1 Board from TFT LCD Side1.1 NuMaker-SOM-MA35D16A81 BoardThe NuMaker-SOM-MA35D16A81 board contains an on-board target chip MA35D16A887C packagedin a MCP type with internal DDR3L 256 MB SDRAM, a PMIC device DA9062-3A to supply the powersto the target chip MA35D16A887C and dedicated peripherals on this SOM board, an eMMC NANDFlash memory device, two Gigabit Ethernet (RGMII) PHY devices, a battery input header and a PMICreset key button.Figure 1-3 NuMaker-SOM-MA35D16A81 BoardNUMAKER-HMI-MA35D1-S1 USER MANUAL M-m U1.2 NuMaker-BASE-MA35D1B1 BoardThe NuMaker-BASE-MA35D1B1 board contains rich peripherals, including two high speed connectorsto connect the NuMaker-SOM-MA35D16A81 board, serial SPI NAND and parallel NAND Flash memorydevices, a Standard-SD memory card slot, two Gigabit Ethernet transformers and RJ45 ports, two HighSpeed USB ports (Host/Device and Host), an audio codec with microphone and headset jack, a 24-bitRGB LCD with touch connector, an External Bus Interface (EBI) connector, two CMOS sensor inputconnectors, eight channels of ADC input, two RS232 COM ports, two RS485 connectors, two CAN FDconnectors, three user key buttons and two user LEDs.NUMAKER-HMI-MA35D1-S1 USER MANUAL Maker Nu-mbed NUC472 User ManualFigure 1-4 NuMaker-BASE-MA35D1B1 Board1.3 7’’ TFT LCD Daughter BoardThis daughter board contains a 7’’4-wire resistive touch TFT LCD panel with pixel resolution of1024x600. (TH0701024600NYR50L1 + AN-3748A)Figure 1-5 7’’ TFT LCD Daughter BoardNUMAKER-HMI-MA35D1-S1 USER MANUAL M-m U1.4 Board Part Number and InformationThe following table lists the part number of this evaluation board (EVB) based on the MA35D16A887C microprocessors, and the PCB names of three parts: NuMaker-SOM-MA35D16A81 SOM board, NuMaker-BASE-MA35D1B1 base board and 7” TFT-LCD daughter board.Part Number of EVB SOM Board BASE Board 7” TFT LCD Daughter BoardNuMaker-HMI-MA35D1-S1NuMaker-SOM-MA35D16A81 V2.xNuMaker-BASE-MA35D1B1 V2.xNuMaker TFT-LCD7 Table 1-1 Board Part Number and InformationNUMAKER-HMI-MA35D1-S1 USER MANUAL Maker Nu-mbed NUC472 User Manual2 FEATURES2.1 NuMaker-SOM-MA35D16A81 Features●Target Chip: MA35D16A887C (BGA 312-Ball) MCP package with DDR3L (256 MB), whichcan run up to 800 MHz●Power–DC 5V input from the NuMaker-BASE-MA35D1B1 board through the SOM high speedconnector–PMIC DA9062-3A:◆Four DC/DC: To supply 1.2V Core power, 1.2V CPU power, 1.35V DDR3L Memorypower and 3.3V I/O power◆Four LDO: To supply 3.0V RTC power, 1.8V I/O power, 2.5V PLL power and3.3V/1.8V eMMC NAND Flash power–Battery input header (J48): Independent DC 3.3V input to V BAT for RTC power (Optional)●Memory Devices–An on-board eMMC NAND Flash memory device (16 GB)●Two Gigabit Ethernet (RGMII) PHY devices●Two 120-pin high speed connectors to connect with NuMaker-BASE-MA35D1B1 board●One PMIC reset key button2.2 NuMaker-BASE-MA35D1B1 Features●Power:NUMAKER-HMI-MA35D1-S1 USER MANUAL M-m U –5V/2A Power Jack and Slide Switch●Debug/Trace:–UART0 debug port: USB Virtual COM (VCOM) port–Debug/Trace ports: SWJ (JTAG+SWD), ETM and SWD connectors●Memory Devices–An on-board Quad SPI NAND Flash device (512 MB)–An on-board NAND Flash device (1 GB)–Standard-SD (SD2.0) memory card slot●One power-on setting DIP-Switch for evaluation booting source selection●Two 120-pin high speed connectors to connect with NuMaker-SOM-MA35D16A81 board●Two sets of Gigabit Ethernet ports: Two Gigabit Ethernet transformer devices and two RJ45port connectors●Two sets of high speed USB ports: One Host/Device port and one Host port●Two camera capture (CMOS sensor) header connectors●One LCM connector to connect with 7’’ 1024x600 LCD da ughter board●One audio codec with microphone input and speaker output●One SIM card slot●One External Bus Interface (EBI) header connector●Two sets of UART transceivers and DB9 connectors●Two sets of RS485 transceivers and header connectors●Two sets of CAN FD transceivers and header connectors●One 8-channel ADC header connector●MEMS Mircrophone●MEMS G-Sensor●Three user key buttons●Two user LEDs●One set of buzzer pads2.3 7’’ TFT LCD Daughter Board Features●One LCD FPC connector to connect with 7’’ 1024x600 TFT LCD panel●One 4-wire resistive touch FPC connector●One connector to connect with NuMaker-BASE-MA35D1B1 board NUMAKER-HMI-MA35D1-S1 USER MANUAL Maker Nu-mbed NUC472 User ManualNUMAKER-HMI-MA35D1-S1 USER MANUALM-m U3HARDWARE CONFIGURATION3.1NuMaker-SOM-MA35D16A81 Board3.1.1Front ViewFigure 3-1 shows the main components and connectors from the front side of NuMaker-SOM-MA35D16A81 board. ●Target Chip (U1): MA35D16A887C (BGA312) MCP package with DDR3L (256MB).RGMII1 Gigabit PHY(U5, RTL8211FDI-CG)RGMII0Gigabit PHY(U4, RTL8211FDI-CG)Target Chip(U1, MA35D16A887C)eMMC NAND Flash (U3, THGBMJG7C2LBAU8)PMIC(U2, DA9062-3A)Battery Input(J48)PMIC Reset Key(SW1)Figure 3-1 Front View of NuMaker-SOM-MA35D16A813.1.2 Rear ViewFigure 3-2 shows the main components and connectors from the rear side of NuMaker-SOM-MA35D16A81 board.SOMHigh Speed Connector (P2, DF40C-120DP-0.4V (51))SOMHigh Speed Connector (P1, DF40C-120DP-0.4V (51))Figure 3-2 Rear View of NuMaker-SOM-MA35D16A813.1.3Power Input●5V Input (P2.1~6): DC 5V power input for the NuMaker-SOM-MA35D16A81 board that supplied from the base board through the pin 1 to pin 6 of SOM high speed connector P2.3.1.4 RTC Wake-up Control●Battery Input Connector (J48): DC 3V battery input connector to provide an additional optionalpower to keep the RTC power from the V BAT pin of MA35D1 when the system is power off.●RTC Wake-up Control Pins: The RTC_RPWR and RTC_nRWAKE pins of MA35D1 are the RTCwake-up control pins to control the related DC/DC power whether output voltages or not.Pin No. Pin Name of MA35D1 Function DescriptionU1.E7 RTC_RPWR*1RTC wake-up output pin for external DC/DC (forexample, the PMIC device DA9062-3A (U2) on thisNuMaker-SOM-MA35D16A81 board) enable pincontrol.U1.G5 RTC_nRWAKE*2*3RTC wake-up interrupt input with internal pull-high Note *1: This RTC_RPWR output pin of MA35D1 is not wired directly to the SYS_EN input pin (pin30) of PMIC device DA9062-3A (U2) on this NuMaker-SOM-MA35D16A81 board by default. (TheR89 resistor is NC, but R88 resistor is mounted on board by default)Note *2: This RTC_nRWAKE input pin is wired directly to the RTC Wakeup key button (SW3) onNuMaker-BASE-MA35D1B1 board and the R90 resistor is mounted on board by default.Note *3: This RTC_nRWAKE pin is internal pull-high. If user does not use the RTC wake-up interruptfunction, please pull this pin to low (the R90 is mounted on board by default). In this condition, useralso needs to disable the PWRST bit (RTC_PWRCTL[6]) of the RTC Power Control Register byclearing it for saving the RTC power consumption.Table 3-1 RTC Power Control Pins of MA35D13.1.5 PMIC NUMAKER-HMI-MA35D1-S1 USER MANUAL Maker Nu-mbed NUC472 User Manual●PMIC Reset Key Button (SW1): Press this key to pull the nRESETREQ (pin 16) of PMIC deviceDA9062-3A (U2) low to reset this PMIC device to supply the output voltages and control thenRESET signal following the default power-on sequence stored in the internal configuredinitialization.●PMIC (U2): After systerm power-on and pull the SYS_EN (pin 30) of the PMIC device DA9062-3A(U2) to high, the PMIC will follows the configured power-on sequence to supply all necessary anddifferent voltages to the target chip MA35D16A887C and dedicated peripherals on this NuMaker-SOM-MA35D16A81 board, and release the nRESET signal from low to high at the last onesequence step.U2.# Pin Name Output Voltage / MAX. CurrentU2.26 VBUCK1 DC 1.2V ~ 1.34V / 2.5AU2.27 VBUCK2 DC 1.2V / 2.5AU2.25 VBUCK3 DC 3.3V / 2AU2.24 VBUCK4*1DC 1.35V or 1.8V / 2AU2.1 VLDO1 DC 3V / 100mAU2.2 VLDO2 DC 1.8V / 300mAU2.9 VLDO3 DC 2.5V / 300mAU2.11 VLDO4*2DC 3.3V or 1.8V / 300mANote *1: The output voltage of VBUCK4 depends on the status of U2.28 pin and to supply the voltageto the internal DDR memory and DDR PHY of the target chip MA35D16A887C (MCP package withDDR3L SDRAM memory). By default, the U2.28 pin is pull-down to force VBUCK4 pin of PMIC tooutput 1.35V on this NuMaker-SOM-MA35D16A81 board.Note *2: No connection (NC) by default. For more detailed information about how to change the outputvoltage on VLDO4, please refer to the PMIC DA9062-3A Application Note on Nuvoton website.Table 3-2 PMIC (U2) Output VoltageU2.# Pin Name GPIO Function / Pin Nameof MA35D1U2.13 SDA PMIC_I2C0_SDA / PD6*1U2.14 SCL PMIC_I2C0_SCL / PD7*2U2.37 nIRQ PMIC_nIRQ / PA15*3U2.30 SYS_EN*4RTC_RPWR*5Note *1: This PD6 pin is dedicated as PMIC_I2C0_SDA function for controlling external PMIC bydefault.Note *2: This PD7 pin is dedicated as PMIC_I2C0_SCL function for controlling external PMIC bydefault.Note *3: This PA15 pin is dedicated as PMIC_nIRQ input function from external PMIC by default.Note *4: This SYS_EN input pin of PMIC device DA9062-3A (U2) is controlled by RTC_RPWR outputof MA35D1 by default. (The R89 resistor is mounted, but R88 resistor is NC by default)NUMAKER-HMI-MA35D1-S1 USER MANUAL M-m U Note *5: This RTC_RPWR output pin state of MA35D1 is controlled by RTC internal logic and theRTC_nRWAKE input pin state of the target chip MA35D16A887C. The RTC_nRWAKE input pin iscontrolled directly by the RTC Wake-up key (SW3) on NuMaker-BASE-MA35D1B1 board by default.(The R90 resistor is NC by default)Table 3-3 PMIC (U2) Control Pins3.1.6 eMMC NAND FlasheMMC1 NAND Flash Memory Device (U3): An on-board eMMC NAND Flash memory device (PTE7A0MI-16GI, 16 GB) for optional booting source. The booting source depends on the Power-on Setting by the status of DIP Switch (SW4) on the NuMaker-BASE-MA35D1B1 board.Function Name GPIO pin of MA35D1eMMC1_DAT4 PJ0eMMC1_DAT5 PJ1eMMC1_DAT6 PJ2eMMC1_DAT7 PJ3- PJ4*- PJ5*eMMC1_CMD PJ6eMMC1_CLK PJ7eMMC1_DAT0 PJ8eMMC1_DAT1 PJ9eMMC1_DAT2 PJ10eMMC1_DAT3 PJ11Note *: No connection (NC) by default.Table 3-4 eMMC1 NAND Flash Device (U3) Pin Function3.1.7 RGMII Gigabit PHY●RGMII0 Gigabit PHY (U4): The RGMII0 MAC of MA35D1 needs an external Gigabit PHY(RTL8211FDI) to transform signal and pass these 4-pair differential signals to the Ethernettransformer on NuMaker-BASE-MA35D1B1 board through the SOM high speed connector P1.Function Name GPIO pin of MA35D1RGMII0_MDC PE0RGMII0_MDIO PE1RGMII0_TXCTL PE2RGMII0_TXD0 PE3RGMII0_TXD1 PE4 NUMAKER-HMI-MA35D1-S1 USER MANUAL Maker Nu-mbed NUC472 User ManualRGMII0_RXCLK PE5RGMII0_RXCTL PE6RGMII0_RXD0 PE7RGMII0_RXD1 PE8RGMII0_RXD2 PE9RGMII0_RXD3 PE10RGMII0_TXCLK PE11RGMII0_TXD2 PE12RGMII0_TXD3 PE13Table 3-5 RGMII0 PHY (U4) Pin Funciton●RGMII1 Gigabit PHY (U5): The RGMII1 MAC of MA35D1 needs an external Gigabit PHY(RTL8211FDI) to transform signal and pass these 4-pair differential signals to the Ethernettransformer on NuMaker-BASE-MA35D1B1 board through the SOM high speed connector P1.Function Name GPIO pin of MA35D1RGMII1_MDC PF0RGMII1_MDIO PF1RGMII1_TXCTL PF2RGMII1_TXD0 PF3RGMII1_TXD1 PF4RGMII1_RXCLK PF5RGMII1_RXCTL PF6RGMII1_RXD0 PF7RGMII1_RXD1 PF8RGMII1_RXD2 PF9RGMII1_RXD3 PF10RGMII1_TXCLK PF11RGMII1_TXD2 PF12RGMII1_TXD3 PF13Table 3-6 RGMII1 PHY (U5) Pin Funciton3.1.8 High Speed ConnectorsSOM High Speed Connectors (P1 and P2): Two 120-pin high speed connectors (DF40C-120DP-0.4V (51)) to connect with the NuMaker-BASE-MA35D1B1 board.NUMAKER-HMI-MA35D1-S1 USER MANUAL M-m U Pin No. GPIO of MA35D1 or Function pin Pin No. GPIO of MA35D1 or Function pin1 PL42 nRESET3 PL54 RTC_nRWAKE5 PN146 VSS7 PD15 8 PN159 PN12 10 PK1511 PN13 12 PK1413 PN7 14 PK1315 PN6 16 PK1217 PN5 18 PL319 PN4 20 PL221 PN3 22 PL123 PN2 24 PL025 PN1 26 PJ1527 PN0 28 PJ1429 VSS 30 PJ1331 PN10 32 PJ1233 VSS 34 PL1535 PN11 36 PL1437 VSS 38 PL1339 PD9 40 PL1241 PD8 42 PL1143 PC4 44 PL1045 PC5 46 PD1447 PC0 48 PA1449 VSS50 PA1351 PC1 52 PA1253 VSS 54 PA1155 PC2 56 PA1057 PC3 58 PA9 NUMAKER-HMI-MA35D1-S1 USER MANUAL Maker Nu-mbed NUC472 User Manual59 PC7 60 PA861 PC6 62 PA763 VSS 64 PA665 E_MDIP0 66 PA567 E_MDIN0 68 PA469 VSS 70 PA371 E_MDIP1 72 PA273 E_MDIN1 74 PA175 VSS 76 PA077 E_MDIP2 78 PF1479 E_MDIN2 80 E_LED081 VSS 82 E_LED183 E_MDIP3 84 E_LED285 E_MDIN3 86 F_LED087 VSS 88 F_LED189 F_MDIP0 90 F_LED291 F_MDIN0 92 EADC0_CH793 VSS 94 EADC0_CH395 F_MDIP1 96 EADC0_CH697 F_MDIN1 98 EADC0_CH299 VSS 100 EADC0_CH5101 F_MDIP2 102 EADC0_CH1103 F_MDIN2 104 EADC0_CH4105 VSS 106 EADC0_CH0107 F_MDIP3 108 VSS109 F_MDIN3 110 HSUSB0_D+111 VSS 112 HSUSB0_D-113 PE15 114 VSS115 PE14 116 HSUSB1_D+117 HSUSB0_ID 118 HSUSB1_D-119 PF15 120 VSSNUMAKER-HMI-MA35D1-S1 USER MANUAL M-m U Table 3-7 SOM Connector 1 (P1) Pin FunctionPin No. GPIO of MA35D1 or Function pin Pin No. GPIO of MA35D1 or Function pin1 VDD5V2 VDD5V3 VDD5V4 VDD5V5 VDD5V6 VDD5V7 VSS 8 VSS9 PH3 10 PH411 PH2 12 PH513 PH1 14 PH615 PH0 16 PH717 PI15 18 PC1219 PI14 20 PC1321 PI13 22 PC1423 PI12 24 PC1525 PI11 26 PH1227 PI10 28 PH1329 PI9 30 PH1431 PI8 32 PH1533 PB15 34 VSS35 PB14 36 PG1037 PB13 38 VSS39 PB12 40 PG941 PB11 42 PG843 PB10 44 PK445 PB9 46 PK547 PB8 48 PK649 PK3 50 PK751 PK2 52 PM1553 PK1 54 PM1455 PK0 56 PM13 NUMAKER-HMI-MA35D1-S1 USER MANUAL Maker Nu-mbed NUC472 User Manual57 PI7 58 PM1259 PI6 60 VSS61 PI5 62 PL663 PI4 64 VSS65 PI3 66 PG1567 PI2 68 PG1469 PI1 70 PG1371 PI0 72 PG1273 PD13 74 PG1175 PD12 76 PG777 PD11 78 PG679 PD10 80 PG581 PL9 82 PG483 PL8 84 PG385 PL7 86 PG2。
AML41CBA2AML41GBA2AML41GBA2AML41CBA2Advanced Manual LineIN FRONT OF THE PANELCoordinated,attractive appearance.AML features innovations designed by in-dustrial designers to achieve the best bal-ance of human factors and aesthetic ap-pearance.Operator height,bezel size,and the compatibility of square and rect-angular shapes blend with other compo-nents to harmonize your panel.There’s no visual clutter to distract from man/machine communication.This comprehensive line of lighted and unlighted manual controls features:ɀPushbuttons for high andintermediate frequency functions;ɀRocker and paddle switches,with 2or 3positions,for less frequent control functions;ɀPlus lighted indicators andannunciators which complement AML’s universal appeal.Various controls can be matched with their functions to accommodate the most natural and efficient habit pattern reflex.Keylock operated switches can be used to assure ‘‘authorized personnel only’’access.Display flexibility.AML offers a choice of five legend sizes,four button heights,full or split section display,and illumination by incandescent lamps,LED’s or neons.Colors are bright and uniform,providing a strong definition and good visibility.(Non-illuminated devices have the same attrac-tive colors.)Color display options include:ɀTransmitted color —color can be distinguished whether lamp is On or Off.ɀDead front —display appears black,until illumination causes legend and color to appear.ɀProjected color —white display is diffused with color when illuminated.BEHIND THE PANELAML’s simple,cost effective design pro-vides many behind-panel benefits for the designer and installer/user.Simple to install.They snap in from the panel front individually or in vertical or horizontal strips;or in subpanel mounted strips and matrices that can be pre-as-sembled and pre-wired to assure accu-rate alignment and efficient panel build-ing.Electrical flexibility.Solid state switches with Hall effect integrated circuits interface directly with microprocessors and other logic level devices.These IC’s were first applied in MICRO SWITCH solid state keyboards.Today,many MICRO SWITCH products incorporate the Hall effect technology to meet a wide range of position sensing and manual control needs.Electronic control switches with gold or silver contacts,and 1,2,or 4poles,will handle up to 3amps.Including an encod-ed version which generates different bi-nary coded outputs merely by changing cam-keyed buttons.Power duty switches meet line discon-nect application needs with10-amp push-buttons and 15-amp paddle and rocker switches.Easy to wire.All AML devices present single level termination.This means fas-ter,easier,neater,and more economical wiring.And there is a choice of solder,quick-connect,push-on,and printed cir-cuittermination.MATING RECEPTACLESThe.110×.020quick-connect/solder ter-minal (types 2and 8)is designed for use with receptacles that comply with the UL standard for insertion and withdrawal forces.Maximum insertion force is 12lbs.max.,withdrawal force is 14lbs.These receptacles are supplied by:AMP Inc.,Berg,Augat,Hollingsworth,MALCO,Zierick,and others.Refer to Thomas Reg-ister or the Yellow Pages for the location of your local supplier.ManualsAdvanced Manual LineFEATURESɀComplete selection of pushbutton, rocker and paddle(toggle type) switches accommodates different functions and promotes operator efficiency.ɀSolid state,electronic,and power duty control.ɀFull or split screen incandescent display switches and indicators provide vivid transmitted color, projected color(for neutral display when unlit),and dead front(hidden color).ɀWide-angle visibility LED and line voltage neon display switches and indicators.ɀAnnunciators back-lighted by LED’s enable high density message display.ɀKeylock switches available for controlled access applications.ɀAll AML terminations at the same shallow depth(1.7in./43,1mm)for convenient wiring or PC board termination.ɀSnap-in surface mount or sub-panel (hidden bezel)mount with mounting hardware.ɀPad printed legends with a clear polyurethane overcoat available in a choice of five standard sizes.ɀMetric design for worldwide accept-ance.ɀUL recognized,CSA certification.ɀSelected listings are certified by VDE and CE.(For compliance status, contact the800number.)MICRO SWITCH AML Advanced ManualLine combines functional flexibility withelectrical versatility to provide a broadrange of options to choose from.EASY TORELAMPRelamping of T-1-3/4incandescentAML91lamps is accomplished from thefront of the panel without tools.(AML92T-1-3/4LEDs can be added in the samemanner.)FULL GUARD BEZEL OPTIONAs an alternative to standard height be-zels(.06in./1,5mm),pushbutton switch-es can be furnished with full guard bezelsextending.19in./5.0mm from the mount-ing surface.In the free position,standardbuttons are flush with full guard bezels.The raised bezel guards against acciden-tal operation by someone leaning againstor dropping something on a control con-sole.High Intensity LEDs For Full-face AML Lighted DisplayAML92SeriesɀFull-face illumination for high visibility lighted colors.ɀAdvanced illumination technology combines high-intensity LED in standardT-1-3/4wedge base lamp package.ɀEasy plug-in installation in AML lighted switches and indicators.ɀLow operating temperature permits high density,continuous operation withminimal heat build-up.AML92Series LEDs have a quad chip assembled in a T-1-3/4wedge base lamp package.They provide full-face illumination when used with lighted pushbutton, rocker and paddle switches,or indicators equipped with incandescent lamp sockets.For ordering information,refer to page58.Advanced Manual LineAML CHARACTERISTICSAML 10Series AML 20Series AML 30SeriesAML 40SeriesElectrical/Mechnical Life*N/A Pushbuttons–Momentary 1,000,00025,000(silver)/100,000(gold)25,000---Pushbuttons–Alternate 25,00025,00025,000---Rockers 25,00025,00025,000---Paddles25,00025,00025,000---Agency Ratings (May not apply to every series division)UL File E53576File E12252File E12252File E58932CSA File LR4442File LR4442File LR4442File LR4442VDE NoneFile 0630/10.78+File 0630/10.78++NoneCERating 1710Rating 1710No.4275.5788No.4275.5788*95%Survival+Exception:Four-Pole AML’s are not included in VDE Approval++Exception:Only the 2-pole AML33and AML34are certified by VDEAML ELECTRICAL DATA ɀAML10SeriesElectrical CharacteristicsAbsolute Maximum Rating 4Switching TimeMax.Output LeakageVoltage Integrated Supply Output Current Rise Fall Supply Externally Loads Circuit Current Voltage max.10%to 90%to Voltage Applied to to Storage Function (Max.)(Operated)(Released)90%10%(V S )Output Output Temperature 5VDC 3.5mA +.4Volt 2.0µA1.0µsec 1.0µsec –.5to +7.0–.5Volt min.20mA –40°C to Sinking 1(Released)(Sinking (Sinking (Sinking VDC +15Volts max.(Sinking)+65°C 6.5mA 8mA)8mA)8mA)0°to +65°C (Off condition)(–40°to (Operated —(+32°to +149°F)no load)+149°F)6-16VDC 6.5mA @+.4Volt 20µA1.5µsec 0.5µsec –1.2to +20+20VDC max.in 40mA–40°C to Sinking 26VDC.(Sinking (Sinking (Sinking VDCOff condition only +65°C 10.0mA @20mA 20mA)20mA)–0.5VDC min.in(–40°to 16VDC max.)Off or On +149°F)(Plus load condition.current)34.5-24VDC Sinking5V 7.0mA (Released)24V 9.0mA (Released)14.0mA (Operated-no load)+.4Volt (Sinking 10mA)10µA1.5µsec (Sinking 10mA)0.5µsec (Sinking 10mA)–30to +30VDC –0.5Volt min.+24Volts max.(Off condition)20mA (Sinking)–40−C to +65°C (–40°to +149°F)1Over temperature range of 0°to +55°C (+32°to 2Over temperature range of 0°to +55°C (+32°to 4As with all solid state components,performance can be +131°F)and supply voltage of 4.5to 5.5VDC.+131°F)and supply voltage of 16VDC.expected to deteriorate as rating limits are approached;however,they will not be damaged unless the limits are exceeded.3At 24°C.(+75°F)ɀAML20SeriesContacts Voltage Current Load Type Silver 250VAC 2Amps 75%Power Factor or125VAC 3Amps 75%Power FactorGold-plated Silver24VDC 2Amps ResistiveGold125VAC/DC100mAResistiveɀAML30SeriesCurrentVoltage Pushbuttons Rockers or Paddles Load Type 125VAC 10amps 15amps 60%power factor 250VAC10amps15amps60%power factorLighted IndicatorsTo order lamps see page58.FEATURESɀPushbutton style indicators match display of standard bezel lighted switches.Choice of incandescentor LED illumination.ɀLens style indicators use a special cap-like button which covers the bezel to present a larger display area, without affecting family appearance. Up to3-lamp split screen capability. Incandescentillumination.AML41AML41 (Use AML51push-(Use AML51-J/-K/-Lbuttons only.lens buttons only.Page42.)Page42.)AML41INCANDESCENT DISPLAY INDICATORS ORDER GUIDEAML41C B A2Pushbutton LensStyle:Style:AML41C AML41J B A2 Square1lamp ckt.AML41DSquare2lamp ckts.AML41FRectangular1lamp ckt.AML41GRectangular2lamp ckts.Rectangular1lamp ckt.AML41KRectangular2lamp ckts.AML41LRectangular3lamp ckts.Black No lampinstalledB6V Lamp*C14V Lamp*E28V Lamp*.110×.020(Solder or Quick-Connect)3.025×.025(PrintedCircuitor Push-On)*Lamps will be installed per each lamp circuit specified in the Housing Type.Examples:AML41CBA2Square(pushbutton style)indicatorhousing with one lamp circuit;black be-zel;.110×.020termination.AML41JBA2Rectangular(lens style)indicator hous-ing with one lamp circuit;black bezel;.110×.020termination.AML42C AML42S(Use AML52-C/-Apushbuttons only.Page43.)AML42LED DISPLAY INDICATORS ORDER GUIDELEDs are not replaceable.AML42S B C2Housing Bezel LED Color/Terminal Type/Type Color Voltage Diode ProtectionAML42C B Red28Square Black B V*.110×.020.110×.0201LED C5V(Solder or Q.C.)w/diode toD10V protect LEDAML42S E15V3Compact F24V.025×.02591LED Yellow Green(Printed Circuit.025×.025H V*R V*or Push-On)w/diode toJ5V S5V protect LEDK10V T10VL15V W15VM24V X24V*See LED application data,page58,for thesedevices without current-limiting resistor.Example:AML42SBC2Compact indicator with black bezel;5voltred LED;.110×.020termination.If you need detailed product information, or help choosing the right product for your application, see our Interactive Catalog . Use the Interactive Catalog to access the most complete and up-to-date information available.The Interactive Catalog provides an extensive collection of product specifications, application data, and technical literature that can be searched based on criteria you select.This PDF catalog information was published in November 2000.Sensing and Control Honeywell Inc.11 West Spring StreetFreeport, IL 61032/sensingSensing and ControlInteractive Catalog...Click this icon to try the Interactive Catalog.Interactive Catalog Supplements Catalog PDFsMounting Dimensions(For Reference Only)AML11/12and21/22SWITCHES Note:Top of full guard bezel housing AML27SWITCHESAML41C/D and AML42C INDICATORS.19/5,0from panel.PUSHBUTTONSKEYLOCKFor terminal locations,see page49.For terminal locations,see page50.AML14/16and AML24/26SWITCHES AML13/15and23/25SWITCHESROCKERS PADDLESFor terminal locations,see page49/50.For terminal locations,see page49/50.AML41INDICATOR AML42INDICATOR TERMINAL TYPESLENS STYLE MINIATUREFor terminal locations,see page50.NOTE1Dimensions are mm or mm/ININSolder Hole will accept two#22AWGStranded Conductor(per NEMA publicationDC-21976)ManualsMounting Dimensions(For Reference Only)AML31/32SWITCHES AML34/36SWITCHESPUSHBUTTON ROCKERAML33/35SWITCHES TERMINAL LOCATIONSPADDLE PUSHBUTTON ROCKER AND PADDLEPANEL CUTOUT FOR SINGLE-STATIONFRONT-OF-PANEL MOUNTINGRecommended panel thickness:.060-.187/1,52-4,75NOTES1Dimensions are mm or mm/ININMounting Dimensions (For Reference Only)TERMINAL LOCATIONS FOR AML10SWITCHESPUSHBUTTONSSolder and Quick-ConnectPrinted CircuitIlluminated devices shown (non-illuminated devices do not have lamp terminals).ROCKERS AND PADDLES Solder and Quick-ConnectPrinted CircuitOne Integrated Circuit Two Integrated Circuits One Integrated Circuit Two Integrated CircuitsIlluminated devices shown (non-illuminated devices do not have lamp terminals)TERMINAL LOCATIONS FOR AML41INDICATORSSolder and Quick-Connect1Incandescent Lamp Circuit 1Incandescent Lamp Circuit 2Incandescent Lamp Circuits 2Incandescent Lamp Circuits 1-3Incandescent Lamp CircuitsManufacturer’s logo on this side of housing4–Lamp terminals are not provided for non-illuminated devicesMounting Dimensions(For Reference Only) TERMINAL LOCATIONS FOR AML20SWITCHESPUSHBUTTON SWITCHESSolder or Quick-ConnectANNUNCIATORS AML45SERIESMULTI-STATION FRONT-PANEL MOUNTING Panel cutouts(See page 48 for panel punch manufacturer.)Square Switches &Indicators Rect.Switches &Indicators Annunciator(.8)(No.of units)—.045*(1.20)(No.of units)—.045*(.40)(No.of units)—.045*(20,3)(No.of units)—1,14*(30,5)(No.of units)—1,14*(10,1)(No.of units)—1,14*For each barrier,add .053/1,35*Note:If barriers are used,do not subtract .045in./1,14mm from the panel cutoutformula.(.045in./1,14mm is the allowance for the width of the bezel.)AML61MULTI-STATION SUBPANEL MOUNTING Panel cutouts for AML61Mounting Bracket Orientation Width LengthA*in..810mm 20,57(.810)(No.of units)B in..810mm20,57(1.210)(No.of units)C or D*in. 1.210mm 27,94(.810)(No.of units)*More than two cans with mounting brackets required for strips of more than 10units.AML61MOUNTING CENTERSMounting Centers/Numberof CansMounting BracketOrientation123456789101112‘‘A’’or ‘‘C’’in. 1.285 2.095 2.905 3.715 4.525 5.335 6.145 6.9557.7658.5759.38510.195mm 32,6453,2173,7994,36114,94135,51156,08176,66197,23217,81238,38258,95‘‘B’’in. 1.685 2.895 4.105 5.315 6.5257.7358.94510.155mm 42,8073,53104,27135,00165,74196,48227,20257,94‘‘D’’or ‘‘E’’in.on C L .807 1.614 2.421 3.228 4.035 4.842 5.649 6.4567.2638.0708.877mmon C L20,5041,0061,4981,99102,49122,99143,48163,98184,48204,98225,48Tolerance ⍧±.015CDEBAAML75PANEL SEAL ACCESSORY Panel cutoutsMultiple panel sealed units should not be mounted together in a single elongated slot,since this would create an unsealed space between each unit.Side-by-side mounting can be achieved, per the center-to-center dimensions shown in the drawing.(Dotted lines in-dicate the seal bases which are abutting at front of panel.)AML75seals are not designed for use with the AML61mountingsystem.NOTE:Suggested cutout dimensions arebased on an.125⍯/3,18mm panel thick-ness.Individual preferences for inpanel fitmay require measurement of assembliesbefore panels are cut.AML76SWITCH GUARDACCESSORYPANELCUTOUTSManualsAML41CBA2AML41GBA2AML41GBA2AML41CBA2。
MOLM13 ( (人急性髓原白血病细胞)产品编号产品名称包装C6600 MOLM13 ( (人急性髓原白血病细胞) 1支/瓶产品简介:Organism Tissue Morphology Culture Properties Homo sapiens (Human) Peripheral blood Round Suspension本细胞株详细信息如下:General InformationCell Line Name MOLM13 (Human Acute Myeloid Leukemia Cells)Synonyms MOLM13; Molm13; Molm 13Organism Homo sapiens (Human)Tissue Peripheral bloodCell Type -Morphology RoundDisease -Strain -Biosafety Level* 1Age at Sampling 20 yearsGender MaleGenetics -Ethnicity -Applications -Category Cancer cell line* Biosafety classification is based on U.S. Public Health Service Guidelines, it is the responsibility of the customer to ensure that their facilities comply with biosafety regulations for their own country.CharacteristicsKaryotype -Virus Susceptibility -Derivation -Clinical Data 20 years; maleAntigen Expression -Receptor Expression -Oncogene -Genes Expressed -Gene expression databases ArrayExpress: E-MTAB-2770; E-MTAB-3610; GEO: GSM482509; GSM887329; GSM888405; GSM1374688; GSM1374689; GSM1446738; GSM1670124Metastasis -Tumorigenic -Effects -Comments -Culture Method Doubling Time ~50 hrsMethods for Passages Split cells to new flask with fresh medium. No need to treat them enzymatically to detach them from the surface of the culture vessel.Medium RPMI-1640+10~20% FBSSpecial Remarks -Medium Renewal -Subcultivation Ratio -Growth Condition 95% air+ 5% CO2, 37ºCFreeze medium DMEM (high glucose)+20% FBS+10% DMSO,也可以订购碧云天的细胞冻存液(C0210)。
FADEDRAWThe 4° Loft Sleeve allows you to adjust the loft, lie and face angle of the M1 driver: • Each of the 12 sleeve movements increases or decreases loft 0.50 - 0.75° • Each of the 12 Sleeve movements increases or decreases lie angle 0.50 - 0.75° • Each of the 12 Sleeve movements increases or decreases face angle 1.0 - 2.0°The M1 460 and 440 Front Track consists of one 15-gram weight to provide a range of draw, neutral and fade ball flights:• Fade – Position the weight towards the toe• Neutral – Position the weight in the center of the track • Draw – Position the weight towards the heel TOUR FIT SYSTEMTUNING MANUALAdjusting the M1 driver is simple by way of a 3 step system created to allow golfers to optimize launch conditions. Follow these steps to ensure you are achieving high launch and low spin to complement your ideal shot shape. The adjustable back weight in the M1 adds the ability to adjust spin, launch and playability to ensure all golfers can maximize their distance.ADJUSTING THE M1Adjusting the M1 family is simple with the TaylorMade torque wrench. Use the wrench to loosen the screw in the center of each weight, then slide the weight to the desired location and lock it in place by tightening the screw until you hear an audible “click” noise from the wrench.In order to adjust the Loft Sleeve, loosen the screw in the heel until the clubhead releases from the shaft. Align the desired loft as marked on the sleeve with the line on the back of the hosel and tighten the screw until you hear an audible “click” noise.1. LOFT, LIE & FACE ANGLE - LOFT SLEEVE2. BALL FLIGHT - FRONT TRACK WEIGHT SYSTEMThe Sliding Weight System consists of one 25-gram weight to provide a range of draw, neutral and fade ball flights:• Fade – Position the weight towards the toe• Neutral – Position the weight in the center of the track • Draw – Position the weight towards the heel BALL FLIGHT - SLIDING WEIGHT SYSTEMThe Back Track system of M1 460 has one 12-gram weight (M1 440 has one 15-gram weight), which adjusts for a range of high, medium and low spin & trajectory:• High Spin / Higher Trajectory / Maximum Forgiveness –Move back weight towards the back “HIGH” setting • Medium Spin / Mid Trajectory – Move back weightto the center setting to provide medium spin & trajectory • Low Spin / Low Trajectory – Move back weighttowards the front “LOW” setting to decrease spin & trajectory The 4° Loft Sleeve allows you to adjust the loft, lie and face angle of the M1 fairway:• Each of the 12 sleeve movements increases or decreases loft 0.50 - 0.75°• Each of the 12 Sleeve movements increases or decreases lie angle 0.50 - 0.75°• Each of the 12 Sleeve movements increases or decreases face angle 1.0 - 2.0°M1 FAIRWAYThe M1 fairway utilizes the same Loft Sleeve and Sliding Weight System technologies found in the M1 driver to create a precise fit for ideal launch characteristics.LOFT, LIE & FACE ANGLE - LOFT SLEEVE3. SPIN & TRAJECTORY CONTROL - BACK TRACK WEIGHT SYSTEMLOW SPIN & TRAJECTORYHIGH SPIN & TRAJECTORYMEDIUM SPIN & TRAJECTORYWarning: Failure to adjust the club as instructed may result in injury or damage to property.8.57.757.06.57.07.758.59.2510.010.510.09.259.58.758.07.58.08.759.510.2511.011.511.010.2510.59.759.08.59.09.7510.511.2512.012.512.011.2512.011.2510.510.010.511.2512.012.7513.514.013.512.7556.056.557.2558.058.559.2560.059.2558.558.057.2556.5±0-300-500-600-500-300±0+300+500+600+500+300Square 2° Open 3° Open 4° Open 3° Open 2° Open Square 2° Closed 3° Closed 4° Closed 3° Closed 2° Closed8.5SETTING9.510.512.0LIE ANGLE SPIN FACE ANGLE The Front Track consists of one 27-gram weight to provide a range of draw, neutral and fade ball flights:• Fade – Position the weight towards the toe• Neutral – Position the weight in the center of the track • Draw – Position the weight towards the heel BALL FLIGHT - SLIDING WEIGHT SYSTEMThe 3° Loft Sleeve allows you to adjust the loft, lie and face angle of the M1 rescue:• Each of the 12 sleeve movements increases or decreases loft by 0.50°• Each of the 12 Sleeve movements increases or decreases lie angle by 0.50°• Each of the 12 Sleeve movements increases or decreases face angle 1.0°M1 RESCUEThe M1 Rescue utilizes the same Loft Sleeve and Sliding Weight System technologies found in the M1 driver and fairway to create a precise fit for ideal launch characteristics.LOFT, LIE & FACE ANGLE - LOFT SLEEVE© 2016 Taylor Made Golf Company, Inc.M1 DRIVERLOFT HIGHER+2°LOFTHIGHER1.5°LOFT HIGHER+2°FADENEUTRALDRAWFADENEUTRALDRAWNEUTRALSETTING SPIN (RPM)LAUNCH HIGH +1ºMEDIUM ±0ºLOW-1º+150±0-150。