CG1052U016V3C中文资料

CDE Cornell Dubilier • 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8561 • Fax: (508)996-3830 • 85 ºC, Screw Terminal CapacitorsHighlightsHigh reliability at 85 ºC Screw Terminal Long Life•••SpecificationsCapacitance Range:Voltage Range: Capacitance Tolerance: Operating Temperature:Ripple Current Multipliers:40 to 160,000 µF10 to 450 WVdc–10% +75% (10 - 150 WVdc)–10% +50% (151 - 450 WVdc)–40 ºC to +85 ºCAmbient Temperature25 ºC 35 ºC 45 ºC 55 ºC 65 ºC 85 ºC 2.001.881.721.581.421.00Rated Ripple Multiplier Voltage 120 Hz 400 Hz 1000 Hz 2500 Hz 10 kHz 10 to 75 1.000 1.050 1.085 1.135 1.15076 to 250 1.000 1.075 1.125 1.155 1.210251 to 4501.0001.0801.1301.1751.230DC Leakage Cu r rent:QA Stability Test:I = 3 √CV after 5 minutes Not to exceed 4.0 mA C = Capacitance in µF V = Rated VoltageI = Leakage current in mAApply WVdc for 2000 h @ 85 ºCCapacitance change ±15% from initial limits DC leakage current: 200% of limit ESR: 175% of limit•••RatingsTypical Max Ripple CatalogESR 120 Hz Cap Part Number120 Hz +85 ºC Dia.Length(µF)(Ω)(A) RMS (Inches)(Inches)10 WVdc ( 15 Vdc Surge )160,000 CG164U010X5L 0.00627.13 5.62516 WVdc ( 20 Vdc Surge )2,500 CG252U016R2C 0.047 3.9 1.375 2.1256,500CG652U016R2C 0.039 4.3 1.375 2.12510,500 CG1052U016V3C0.0277.62.0003.125Typical Max Ripple Catalog ESR 120 Hz Cap Part Number120 Hz +85 ºC Dia.Length(µF)(Ω)(A) RMS (Inches)(Inches)16 WVdc ( 20 Vdc Surge )12,000 CG123U016R3C 0.024 6.4 1.375 3.12518,000 CG183U016R4C 0.0188.3 1.375 4.12521,000 CG213U016U3C 0.01210.5 1.750 3.12527,000 CG273U016V3C 0.01211.4 2.000 3.12540,000 CG403U016V4C 0.00914.72.0004.125Type CG screw terminal, aluminum electrolytic capacitors have excellent reliability and are good for 2000 hours at 85 ºC at full rated voltage.Click here to see: Hardware & Mounting OptionsClick here to see: Mechanical DetailsRatingsTypical Max RippleCatalog ESR120 HzCap Part Number120 Hz+85 ºC Dia.Length (µF)(Ω)(A) RMS(Inches)(Inches)25 WVdc ( 40 Vdc Surge )1,500 CG152U025R2C .058 3.5 1.375 2.125 2,800 CG282U025R3C 0.036 5.2 1.375 3.125 3,300 CG332U025R2C 0.043 4.1 1.375 2.125 4,500 CG452U025U3C 0.00614.8 1.750 3.125 6,000 CG602U025V3C 0.0297.3 2.000 3.125 6,300 CG632U025R3C 0.028 5.9 1.375 3.125 8,500 CG852U025V4C 0.0229.4 2.000 4.125 9,200 CG922U025R4C 0.0227.5 1.375 4.125 10,000 CG103U025U3C 0.0267.1 1.750 3.125 13,000 CG133U025V3C 0.0248.0 2.000 3.125 20,000 CG203U025V4C 0.01910.1 2.000 4.125 20,000 CG203U025X4C 0.01912.9 3.000 4.125 32,000 CG323U025W4C 0.01015.9 2.500 4.125 48,000 CG483U025X4C 0.00525.2 3.000 4.12535 WVdc ( 50 Vdc Surge )1,100 CG112U035R2C 0.063 3.4 1.375 2.125 2,100 CG212U035R3C 0.039 5.0 1.375 3.125 2,300 CG232U035R2C 0.051 3.8 1.375 2.125 4,300 CG432U035R3C 0.030 5.7 1.375 3.125 9,500 CG952U035V3C 0.0257.9 2.000 3.125 11,000 CG113U035W4C 0.02111.0 2.500 4.125 11,000 CG113U035U4C 0.0209.1 1.750 4.125 14,000 CG143U035V4C 0.01810.4 2.000 4.125 22,000 CG223U035W4C 0.01115.2 2.500 4.125 33,000 CG333U035X4C 0.00623.0 3.000 4.12550 WVdc ( 75 Vdc Surge )800 CG801U050R2C 0.072 3.2 1.375 2.125 1,500 CG152U050R2C 0.058 3.5 1.375 2.125 1,500 CG152U050R3C 0.044 4.7 1.375 3.125 2,000 CG202U050R4C 0.033 6.1 1.375 4.125 2,500 CG252U050U3C 0.037 6.0 1.750 3.125 2,900 CG292U050R3C 0.036 5.2 1.375 3.125 3,300 CG332U050V3C 0.035 6.7 2.000 3.125 4,300 CG432U050R4C 0.026 6.9 1.375 4.125 4,500 CG452U050V4C 0.0268.6 2.000 4.125 5,000 CG502U050U3C 0.029 6.7 1.750 3.125 6,500 CG652U050V3C 0.0179.6 2.000 3.125 7,300 CG732U050W4C 0.02310.5 2.500 4.125 7,400 CG742U050U4C 0.0228.7 1.750 4.125 9,500 CG952U050V4C 0.01312.2 2.000 4.125 10,000 CG103U050X4C 0.01315.6 3.000 4.125 15,000 CG153U050W4C 0.00916.8 2.500 4.125 16,500 CG1652U050X5L 0.01020.5 3.000 5.625 22,000 CG223U050X4C 0.00622.5 3.000 4.125 33,000 CG333U050X5L 0.00529.0 3.000 5.62575 WVdc ( 100 Vdc Surge )600 CG601U075R2C 0.085 2.9 1.375 2.125 800 CG801U075R2C 0.072 3.2 1.375 2.125 1,000 CG102U075R3C 0.053 4.3 1.375 3.125 1,500 CG152U075R4C 0.037 5.8 1.375 4.125 1,500 CG152U075R3C 0.045 4.7 1.375 3.125 2,000 CG202U075U3C 0.039 5.8 1.750 3.125 2,500 CG252U075V3C 0.036 6.6 2.000 3.125 2,600 CG262U075U3C 0.035 6.1 1.750 3.125Typical Max RippleCatalog ESR120 HzCap Part Number120 Hz+85 ºC Dia.Length (µF)(Ω)(A) RMS(Inches)(Inches)75 WVdc ( 100 Vdc Surge )3,300 CG332U075V3C 0.0228.4 2.000 3.125 3,450 CG3451U075V4C 0.0278.5 2.000 4.125 4,900 CG492U075V4C 0.01511.3 2.000 4.125 7,900 CG792U075W4C 0.01214.5 2.500 4.125 8,200 CG822U075X4C 0.01216.3 3.000 4.125 11,000 CG113U075X4C 0.00918.8 3.000 4.125 12,500 CG1252U075X5L 0.00921.8 3.000 5.625100 WVdc ( 135 Vdc Surge )400 CG401U100R2C 0.180 2.0 1.375 2.125 1,000 CG102U100R4C 0.068 4.3 1.375 4.125 1,300 CG132U100U3C 0.066 4.5 1.750 3.125 1,700 CG172U100W4C 0.050 5.7 1.750 4.125 2,250 CG2251U100V4C 0.0367.3 2.000 4.125 2,500 CG252U100V4C 0.0308.0 2.000 4.125 3,600 CG362U100W4C 0.02011.3 2.500 4.125 4,000 CG402U100W4C 0.01911.5 2.500 4.125150 WVdc ( 185 Vdc Surge )275 CG2750U150R2C 0.170 2.1 1.375 2.125 500 CG501U150R3C 0.103 3.1 1.375 3.125 1,550 CG1551U150V4C 0.052 6.1 2.000 4.125 2,500 CG252U150W4C 0.0309.2 2.500 4.125 3,600 CG362U150X4C 0.0229.4 3.000 4.125 5,600 CG562U150X3L 0.01417.0 3.000 3.625200 WVdc ( 250 Vdc Surge )180 CG181T200R2C 0.280 1.6 1.375 2.125 450 CG451T200R4C 0.120 3.2 1.375 4.125 550 CG551T200U3C 0.150 3.0 1.750 3.125 750 CG751T200V3C 0.102 3.9 2.000 3.125 1,000 CG102T200V4C 0.085 4.8 2.000 4.125 1,650 CG1651T200W4C 0.0507.8 2.500 4.125 2,450 CG2451T200X4C 0.0349.7 3.000 4.125 3,800 CG382T200X5L 0.02313.2 3.000 5.625250 WVdc ( 300 Vdc Surge )140 CG141T250R2C 0.310 1.5 1.375 2.125 375 CG3750T250R4C 0.130 3.1 1.375 4.125 600 CG601T250V3C 0.091 4.1 2.000 3.125 800 CG801T250V4C 0.072 4.6 2.000 4.125 3,000 CG302T250X5L 0.02014.2 3.000 5.625300 WVdc ( 350 Vdc Surge )525 CG5250T300V3C 0.095 4.0 2.000 3.125350 WVdc ( 400 Vdc Surge )100 CG101T350R2C 0.720 1.0 1.375 2.125 180 CG181T350R3C 0.500 1.4 1.375 3.125 250 CG251T350R4C 0.290 2.1 1.375 4.125 400 CG401T350V3C 0.260 2.4 2.000 3.125 550 CG551T350V4C 0.180 3.3 2.000 4.125 2,000 CG202T350X5L 0.0618.1 3.000 5.625400 WVdc ( 475 Vdc Surge )325CG3250T400V4C 0.220 3.0 2.000 4.125450 WVdc ( 525 Vdc Surge )40CG400T450R2C 3.2400.5 1.375 2.125 110CG111T450R4C 1.220 1.0 1.375 4.125 240CG241T450V4C 0.330 2.4 2.000 4.125CDE Cornell Dubilier • 1605 E. Rodney French Blvd. • New Bedford, MA 02744 • Phone: (508)996-8561 • Fax: (508)996-3830 • 。

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华汕电子 1020晶体管芯片说明书

华汕电子 1020晶体管芯片说明书
汕头华汕电子器件有限公司
PNP S I L I C O N T R A N S I S T O R
1020 晶体管芯片说明书
█ 芯片简介
█ 管芯示意图
芯片尺寸:4 英寸(100mm)
芯片代码:A075AJ-00
芯片厚度:240±20µm
管芯尺寸:750×750µm 2
焊位尺寸:B 极 165×170µm2;E 极 150×165µm2
集电极— 发射极饱和电压 基极— 发射极饱和电压 特征频率 共基极输出电容
最小值 典型值 最大值 单位
测试条件
-50
V IC=-100µA ,IE=0
-50
V IC=-10mA,IB=0
-5
V IE=-100µA ,IC=0
-1
µA VCB=-50V,IE=0
-1
µA VEB=-5V,IC=0
70
240
█ 电参数(Ta=25℃)CEO BVEBO ICBO IEBO hFE
VCE(sat) VBE(sat) fT Cob
符号说明 集电极— 基极击穿电压 集电极— 发射极击穿电压 发射极— 基极击穿电压 集电极— 基极截止电流 发射极— 基极截止电流 直流电流增益
电极金属:铝
背面金属:金
典型封装:2SA1020
█ 极限值(Ta=25℃)(TO-92L)
Tstg——贮存温度………………………………… -55~150℃ Tj——结温…………………………………………… 150℃ PC——集电极功率耗散( Ta=25℃)…………………900mW VCBO——集电极—基极电压……………………………-50V VCEO——集电极—发射极电压…………… ……………- 50 V VEBO —— 发射极— 基极电压…………………… ………-5 V IC——集电极电流………………………………………-2A IB——基极电流…………………………………………-0.5A

奇美-夏普-日立-友达-三星-LG逻辑板维修资料

奇美-夏普-日立-友达-三星-LG逻辑板维修资料

V260B1-C01 配机芯有:8K60MAX1518包括一个高性能升压调节器、两个线性稳压控制器以及大电流运算放大器,用于有源矩阵薄膜晶体管(TFT )液晶显示器(LCD )。

器件还包括一个逻辑控制、具有可调节延时的高压开关。

V315B3-C01 配机芯有8M19TPS65161的20、21、22:电源输入Vin; 此IC 与外围电配合可产生几路电压:VGH :23V V AAP :13.5V VGL :负5V VDA : VON : VOFF : VLOGIC :3.3V 等32寸奇美屏驱动板(屏供电12V )V320B1-C03 配机芯有:8M10FP5138:电源管理芯片,升压、降压、升降压转换IC ,驱动能力强,可以很好的提供LCD 屏正负偏设计方案,各组电压输出稳定,还可以适用于7—12寸LED 液晶屏背光升压垣流驱动。

有短路保护、开路保护、软启动功能,工作电压1.8—15V ,工作电流5.5mA 。

1脚:FB 反馈 2脚:SCP 保护/软启动 3脚:VCC 供电 4脚:CTL 控制 5脚:OUT 输出 6脚:GND 地 7脚:OSC 振荡 8脚:COMP 补偿V296W1-C1,X7 配机芯有:8TG5V296W1-C1逻辑板电路主要有三大部分组成:1.由U4(CM2651B-KQ )为核心的时序与逻辑控制电路,主要功能是将串行的LVDS 信号变成并行的控制信号,用于薄腊晶体管的控制或驱动;2.由U7—U11(HX8904TA 、HX8904SA )为核心的伽玛放大电路,主要是将伽玛信号进行适当的放大,控制薄膜晶体管,实现画面对比度的调整;3.由UP1(FA3269A V )为核心的DC-DC 变换电路,主是是将主板送来的5V 供电变成VGH (20V )、VDA (15V )、VGL (—5V )、V5V (5V )、VDD (3.3V )等等,用于屏驱动供电,此逻辑板损坏的最多的地方就是这部分,易损坏元件为UP1、QP5、DP3、UP2、RP37、LP2电感等等。

32位并行IO口扩展芯片

32位并行IO口扩展芯片

//设定 8166-2 工作模式为 8 位的串入并出模式 //输出禁止
LE=1;
//输出锁存开
CSN=0;
//片选有效
for (j=0;j<5;j++)
{
SBUF= SendBuff [j]; //发送数据到 8166
while(TI==0);
TI=0;
}
LE=0; //输出数据锁存
1 概述
GM8166 芯片通过串入并出、并入串出、并入并出转换完成 I/O 口的扩展。最高工作频率为 10MHz,用于配合 MCU 完成对多个外围电路的控制和信号采集工作。同时具备 SPI 总线接口, 满足了更多需求。设计时充分考虑了抗电磁干扰和工作温度范围,完全适用于工业领域。
2 应用领域
★通信设备:IC 卡话机,雷达控制 ★安防电路:报警器,消防控制 ★仪器仪表:电表控制,多路采集 ★工业控制:印刷机械控制,注塑机控制,机车控制,相机控制 ★金融机具:POS 机,IC 卡机具
GM8166
3.2 级连功能应用示例
数据传输超过 32 位时,用户可通过 CData 口实现级连输入/输出,达到位数的扩展。 例如用户需要进行 40 位数据的转换,用两片 8166 实现。 硬件接口见图 2 所示:
RXD TXD
P1.2
P1.3 P1.1 P1.0
8051
P1.6 P1.7
P2.0
P1.4 P1.5
旧版文档页数当前版本文档页数主题和旧版本相比的主要变化如果您有技术交付或价格方面的任何问题请联系成都国腾微电子有限公司的相关办公室或当地的代理商或访问我们的网站
成都国腾微电子有限公司
GM8166
32 位并行 I/O 口扩展芯片

单片机原理、接口及应用

单片机原理、接口及应用

补充 单片机总线与存储器 的扩展
单片机原理及应用教案
杨维剑
2864为8KB EEPROM维持电流 为60mA,典型读出时间为200~350ns, 字节编程写入时间为10~20µ s,芯片 内有电压提升电路,编程时不必增高 压,单一+5V供电。引脚和6264, 2764兼容,引脚配置见右图。 8XX51扩展2864硬件电路如下图 所示。图中2864即可作为数据存储器, 有又可作为程序存储器。由于只扩展 了一片,片选端接地。
图9-9
四川理工学院
杨维剑
1. 外部数据RAM的读周期时序
补充 单片机总线与存储器 的扩展
单片机原理及应用教案
杨维剑
四川理工学院
杨维剑
补充 单片机总线与存储器 的扩展
单片机原理及应用教案
杨维剑
在ALE的上升沿,把外部程序存储器的指令读入后就 开始了对片外RAM的读过程。 ALE高电平期间,在P0处于高阻三态后,根据指令 间址提供的地址,P2口输出外部RAM的高8位地址 A15~A8 ,P0端口输出低8位地址A7~A0 ;在ALE下跳沿, P0输出的低8位地址被锁存在锁存器中,随后P0又进入高阻 三态,RD信号有效后,被选中的RAM的数据出现在数据 总线上,P0 处于输入状态,CPU从P0 读入外部RAM的数 据。
7 4 L S 3 73
. . .
. . .
Q7
. . .
A7
D1 D0
Q1 Q0 OE
A1 A0
G
6264 RAM
D7
. . .
D1 D0
图 9 .8
8X X5 1扩展62 64 外部数据RA M
四川理工学院
杨维剑
补充 单片机总线与存储器 的扩展

LPC1700_um_32

LPC1700_um_32
销售与服务网络
广州周立功单片机发展有限公司
地址:广州市天河北路 689 号光大银行大厦 12 楼 F4 邮编:510630 电话:(020)38730972 38730976 38730916 38730917 38730977 传真:(020)38730925 网址:
地址:成都市一环路南二段 1 号数码同人港 401 室(磨 子桥立交西北角) 电话:(028) 85439836 85437446 传真:(028) 85437市深南中路 2070 号电子科技大厦 C 座 4 地址:武汉市洪山区广埠屯珞瑜路 158 号 12128 室(华
西安办事处
地址:西安市长安北路 54 号太平洋大厦 1201 室 电话:(029)87881296 83063000 87881295 传真:(029)87880865
广州周立功单片机发展有限公司
第 32 章
目录
第 32 章 Flash存储器接口和编程···················································································· 1
传真:(010)82614433
传真:(023)68796439
杭州周立功
地址:杭州市天目山路 217 号江南电子大厦 502 室 电话:(0571)89719480 89719481 89719482
89719483 89719448 89719485 传真:(0571) 89719494
成都周立功
LPC1700 系列微控制器
第第 3322 章章 FFllaasshh 存存储储器器接接口口和和编编程程
用用户户手手册册 RReevv0000..0044

imxrt1052中文版使用手册

imxrt1052中文版使用手册

IMXRT1052中文版使用手册一、引言本手册是为使用NXP IMXRT1052系列微控制器的用户编写的,提供了关于该设备的基本操作和使用的详细指南。

通过阅读本手册,您将了解如何配置和使用IMXRT1052微控制器,并了解其各种特性和功能。

二、设备概述IMXRT1052是一款高性能、低功耗的实时控制器,适用于各种嵌入式应用。

它具有丰富的外设接口、强大的处理能力和高度的可定制性,能够满足各种复杂的需求。

三、硬件连接在将IMXRT1052微控制器连接到您的硬件系统时,请遵循以下步骤:1.连接电源:将电源连接到IMXRT1052的电源引脚,确保电压稳定且符合微控制器的要求。

2.连接外设:根据需要连接外设,如GPIO、UART、SPI等,确保连接正确且可靠。

3.连接调试接口:如果需要进行调试,请连接适当的调试接口。

四、电源管理IMXRT1052具有高效的电源管理功能,可以根据需要进行电源配置。

请参考相关文档以了解更多关于电源管理的信息。

五、系统配置为了正确配置和使用IMXRT1052,您需要按照以下步骤进行系统配置:1.启动配置:通过串行通信或其他方式启动配置过程。

2.配置时钟系统:选择适当的时钟源和频率,以满足您的应用需求。

3.配置外设:根据需要配置外设接口,如GPIO、UART、SPI等。

4.配置中断和唤醒:根据需要配置中断和唤醒源。

5.保存配置:完成配置后,保存配置到非易失存储器中。

六、外设接口IMXRT1052具有丰富的外设接口,如GPIO、UART、SPI、I2C等。

请参考相关文档以了解更多关于每个接口的信息和操作指南。

七、固件更新为了保持IMXRT1052微控制器的固件最新并利用新功能,您可以按照以下步骤进行固件更新:1.准备工作:在进行固件更新之前,请确保您已经备份了当前设备的固件,以防更新过程中出现问题。

同时,确保您已经了解了新固件的功能和注意事项。

2.下载固件:从NXP官方网站或其他可信来源下载最新版本的IMXRT1052固件。

DS1052E型数字示波器使用说明书(同名12572)

DS1052E型数字示波器使用说明概述DS1052E型示波器以优异的技术指标及众多功能特性的完美结合,向用户提供了简单而功能明晰的前面板,以进行所有的基本操作。

各通道的标度和位置旋钮提供了直观的操作,完全符合传统仪器的使用习惯,用户不必花大量的时间去学习和熟悉示波器的操作,即可熟练使用。

为加速调整,便于测量,用户可直接按AUTO键,立即获得适合的波形显现和档位设置。

除易于使用之外,示波器还具有更快完成测量任务所需要的高性能指标和强大功能。

通过1GSa/s的实时采样和25GSa/s的等效采样,可在示波器上观察更快的信号。

强大的触发和分析能力使其易于捕获和分析波形。

清晰的液晶显示和数学运算功能,便于用户更快更清晰地观察和分析信号问题。

技术性能双模拟通道,每通道带宽:50MHz。

高清晰彩色液晶显示系统:320×234分辨率。

支持即插即用闪存式USB存储设备以及USB接口打印机,并可通过USB存储设备进行软件升级。

模拟通道的波形亮度可调。

自动波形、状态设置〔AUTO 〕。

波形、设置、CSV和位图文件存储以及波形和设置再现。

精细的延迟扫描功能,轻易兼顾波形细节与概貌。

自动测量20种波形参数。

自动光标跟踪测量功能。

独特的波形录制和回放功能。

内嵌FFT。

实用的数字滤波器,包含LPF,HPF,BPF,BRF。

Pass/Fail检测功能,光电隔离的Pass/Fail输出端口。

多重波形数学运算功能。

独一无二的可变触发灵敏度,适应不同场合下特殊测量要求。

多国语言菜单显示。

弹出式菜单显示,用户操作更方便、直观。

中英文帮助信息显示及支持中英文输入。

第一章示波器的初步操作说明DS1052E示波器向用户提供简单而功能明晰的前面板,以进行基本的操作。

面板上包括旋钮和功能按键。

显示屏右侧的一列5个灰色按键为菜单操作键〔自上而下定义为1号至5号〕。

通过它们,您可以设置当前菜单的不同选项;其它按键为功能键,通过它们,您可以进入不同的功能菜单或直接获得特定的功能应用。

莫加 UC 系列产品说明书

Entry-level Arm-based 64-bit ComputersDual-core, 2-GB RAMCompact Dual-core, 2-GB RAM Built-in LTEValue-added Arm-based 64-bit ComputersQuad-core, 4-GB RAMQuad-core, 4-GB RAM5G/CAN/serial IsolationBuilt-in LTEMoxa Industrial LinuxMoxa's Debian-based industrial-grade stable Linux distribution for long-term projectsFeatures and Benefits5Debian-based distribution that can use all standard Debian packages5Developed as per IEC 62443-4-1 and compliant with IEC 62443-4-2 industrialcybersecurity standards (Moxa Industrial Linux 3 Secure)5Long-term support until 2027 for Moxa Industrial Linux 1 and 2031 for MoxaIndustrial Linux 35Wireless connection management utility with automatic network keep alive andfailover5Ready-to-use APIs and library to ease access to hardware and I/O interfaces5Crash-free robust file system5Over-the air (OTA) software updatesWireless-ready Arm-based 32-bit Computers Built-in cellular or Wi-Fi module, RF type approvals, and carrier approvalsBuilt-in LTE Cat.1Built-in LTECat.1 and Wi-FiBuilt-in LTECat.1 and Wi-FiBuilt-in LTECat.4 with Wi-Fi expansion1. Wireless module is built-in. Refer to the Wireless Connection and Expansion Modules section for details.2. Wireless module must be purchased separately. Refer to the Wireless Connection and Expansion Modules section for details.1 mPCIe for cellular/Wi-Fi1 mPCIe forcellular/Wi-Fi1 mPCIe forcellular/Wi-Fi1 mPCIe forcellular/Wi-Fi1 mPCIe for cellular 1mPCIe for Wi-Fi1 mPCIe forcellular/Wi-FiArm-based 32-bit Computers With Wireless Options Flexibility to add cellular or Wi-Fi capability when needed1. Wireless module must be purchased separately. Refer to the Wireless Connection and Expansion Modules section for details.1 LAN,1 serial2 LAN 2 LAN,2 serial2 LAN,2 serial2 LAN,4 serial2 LAN,4 serial2 LAN,1 serial2 LAN,2 serial3 LAN,8 serialStandard Arm-based 32-bit Computers Low power consumption and small form factorWireless Connectivity and Expansion Modules* Details of cellular and Wi-Fi support with a list of wireless accessory models* Antennas must be purchased separatelyLast updated: Aug. 15, 2023. All specifications are subject to change without notice.。

海尔微系统UMC32产品说明书

USER MANUAL 1.41Table of ContentsProduct Description (3)Hardware Setup (4)Standard Mode (DIP Switch #10 = Off) (5)Extended mode (DIP Switch #10 = ON) (6)MIDI Channel / Device Driver Identification (7)Indicator LED (7)Shift Pin / Firmware Update (7)Precautions (8)Example Connections (9)Pin Diagram (10)Mechanical Specifications (10)Electrical Specifications (11)Troubleshooting (11)Limited Warranty (12)Disclaimer (12)Product DescriptionThe UMC32 is an OEM/DIY product that allows Electronic Musicians, Multimedia Artists and Experimenters the ability to create custom user interfaces to control any software application that supports the MIDI protocol. The UMC32 provides the essential core (microcontroller, power supply, USB functionality) to allow the user to easily implement their choice of control elements (example: switches, pots and or faders). In short, the UMC32 will allow you to build your own USB-MIDI controller.Features•Easy to implement with minimal effort and little or no electronics experience.•32 analog and/or digital inputs provide MIDI note or continuous controller data to your host application.•Small printed circuit board (1.6” x 2.7”) allows creating portable end devices•No programming is necessary. Onboard DIP switches allow simple configuration of MIDI note or controller data.•USB bus powered. A single USB cable handles power and data.•Upgradeable firmware via Windows XP / Vista bootloader utility.•True plug-and-play (USB-MIDI class compliant drivers are provided by the operating system) •Compatible with Mac OS X 10.5.x(Leopard), Mac OS X 10.4.x(Tiger), Windows Vista / XP / 2000.•90 day limited warranty, 30 day money back guarantee (USA Only).Hardware SetupBefore proceeding it is strongly recommended that you read and understand the precautions section of this manual. Failure to observe the recommendations may void your warranty. The UMC32 offers two operating modes, analog and digital. By setting the onboard DIP switch appropriately, various control layouts can be achieved. The UMC32 ships with the all DIP switches in the on position (all inputs digital). In order to change from the default setting, please remove the protective tape (if present). It is important to note that all unused channels be set to digital mode (factory default) in order to suppress spurious controller data be sent to your host application.Analog Mode:Channels that are configured as analog inputs are sampled and converted into MIDI continuous controller (CC#) messages and sent to your host application. Analog mode is usually the choice when connecting a potentiometer or fader. For the sake of simplicity, each input channel maps directly to its corresponding continuous controller (CC) number on MIDI channel 1. For example assume that input channel 1 on the UMC has a fader connected to it and is configured for analog input. When the fader is changed it will output controller messages on CC#01, MIDI channel 1.Digital Mode:Digital mode is usually selected to determine the state of a switch for triggering MIDI notes. Channels that are configured for digital mode will output MIDI note data on channel 1. For example when a button is pressed then a note on message will be sent, when the button is released a note off message will be sent.Standard Mode (DIP Switch #10 = Off)Extended mode (DIP Switch #10 = ON)Past UMC users should take note that the previous UMC32 datasheet did not specify the state at which DIP 10 should be set. For users who are updating an existing device please ensure that DIP10 is in the OFF position prior to installing the 1.41 firmware. This will guarantee continued operation of the new firmware with your existing setup. For new projects DIP 10 offers a pathway to new features in the device, to access these features simply place the DIP in the ON position. Setting the DIP switched to combinations not listed below will cause the device to simply blink on and off.1 2 3 4 5 6 7 8 9 10Diagnostic Mode ON ON ON ON ON ON ON ON ON ON32 Channel Output Only Mode OFF ON OFF ON OFF ON OFF ON OFF ONEven ch Digital w/ Odd ch LEDs OFF ON OFF ON ON ON ON ON ON ON Diagnostic Mode:This is the test we use at the factory to make sure that the UMC’s hardware is to specification. To run this test you’ll need to devise a way to connect channels 01-08 together, 09-16 together, 17-24 together, and 25-32 together. DO NOT connect anything to the +5V or Ground lines as they are not used here. Now plug in the USB cable to the UMC to provide power. The firmware will cycle thru and check each line to make sure that there isn’t a defect with the PCB. If there is a problem with your hardware the LED will flash on and off at fast. If the test was OK, it will flash slower at around ½ second.32 Channel Output Only Mode:In this mode all MIDI Note On/Off data that is received by the UMC32 is converted into logic level signal on the UMC’s outputs. This is useful for connecting LED’s, transistors and relays. For normal/safe operation it is recommended that the per channel load current (sourcing or sinking) per be less than 10mA.C2(Note #36) = UMC Channel 01C#2(Note #37) = UMC Channel 02Etc…* Please note that in this mode the Shift Pin has no effect in this mode.Even ch Digital w/ Odd ch LEDs:In this mode all Odd UMC channels are configured as digital inputs, while all even UMC channels are configured as digital outputs. The even channels are for driving LED to help the user track the state of the corresponding digital input. For instance, press the switch that is connected to input 1, the note on message will be sent and the LED connected to channel 2 will turn on. Release the switch (to send the note off), the LED will remain on. Press the same switch again, note on sent, LED turns off. Release the switch, note off sent, LED stays off. The LED's will also update their on or off state according to the current shift mode. Thus making the tracking of 64 on/off states is possible. To connect an LED to a UMC channel that is configured as an output you MUST have a resistor in series with the LED and the channel output. It does not matter if the resistor is connected to the anode or cathode of the LED. To find the correct resistance use the online calculator provided by Linear Electronics at /1led.wiz. The source voltage parameter will be +5V (the UMC’s working voltage), the diode forward current should be 8mA, the diode forward voltage will depend on your LED. Most red LED’s are 1.8 - 2.2 volts. See the datasheet of your LED to obtain forward voltage parameters.MIDI Channel / Device Driver IdentificationAll UMC32’s ship with a default of MIDI channel 1. Changing the MIDI channel is possible by running the firmware update utility and selecting the appropriate firmware. For example you purchased 2 UMCs and want to connect them to the same PC/Mac. You decide that the first UMC is to be left at channel 1, while the second you want configured to output on channel 2. To do this, you would first download the latest firmware from the Hale website. The zip file will contain multiple firmware revisions with “.DLD” extensions. Next download and install the UMC32’s firmware update utility, follow the directions provided by the utility and select the appropriate firmware. In this case you would select “umc32_v141_Dev02.dld”, This is the correct file for Device 2 / Midi channel 02. Apart from changing the MIDI channel, the firmware also contains a unique USB Product ID (PID) as well as a unique Driver Name. As there are many implementations by host applications and operating system driver this is a full-proof way of uniquely identifying each UMC that is connected to your system.Indicator LEDThe indicator LED (LED1) can be found next to the USB connector. This LED provides information about the state of the UMC. When connected, your computer will recognize the UMC and load the class compliant USB-MIDI class device driver that is provided by your operating system. The LED will stay on until communication with your host application begins. At this point the LED will flicker when MIDI traffic between the host application and the UMC occurs.Shift Pin / Firmware UpdateWhen the Shift pin (P1[3] pictured below) is pulled to ground all MIDI note on/off messages will be transposed by 32 notes. Simply place a single pole single throw normally open (SPST/NO) switch between P1[3] and ground. The shift pin does not affect MIDI continuous controller (CC) data.When the UMC is plugged into the USB port it first checks the state of the shift pin, if it is pulledlow (your switch is being held) then the UMC will enter bootloader mode and prepare to accept afirmware update. Information regarding firmware updates will be made available on our website at PrecautionsThe UMC is designed to protect against short circuits, over current conditions, transient voltages andelectrostatic discharge. However, we ask that you observe some simple guidelines when working withthe UMC. Failure to do so may cause damage to your equipment and/or void your product warranty.o Do not solder any wires or attempt to make any modifications to the UMC directly.o Do not connect the “+V” (+5 Volts DC) terminal to G (Ground). When this occurs, it is commonly referred to as a “short circuit”.o Always unplug the USB cable from the device before modifying connections on the UMC.o As with all electronic devices, observe proper ESD handling practices. Always handle the printed circuit board (PCB) by the edges, never touch the top or bottom.o Never allow the UMC to touch a wet or conductive surface.o Do not use any external voltage source to power devices that are connected to the UMC.o You may use the +5V and Ground to power other devices such as LED’s however the maximum recommended load current per pin is 50mA.o As an additional precaution, we strongly recommend using a powered USB hub when experimenting with the device. Once you have finalized your project, and are sure you do not have any short circuitsthen you may connect the UMC directly to your computer’s USB input. This is especially importantwhen interfacing with a laptop, as damage to your laptop could be substantial.o This product is offered to the end user in a non-enclosed OEM form, it is the responsibility of the end user of this product to ensure that they comply with local regulations pertaining to unintentional radiofrequency emissions. In the United States, this pertains to FCC rules and regulations, Part 15,Section B.Example ConnectionsAlthough there are a seemingly infinite number of types of control elements (potentiometers, switches etc.) that you can connect to the UMC, here are a few examples of how to connect the most common types.Pin DiagramMechanical SpecificationsPlease note that an alternative method to mounting the UMC to your enclosure via screws and standoffs is to simply use double backed 3M VHB tape. Be sure that everything is working correctly before affixing tochassis as any attempt to remove UMC affixed via from the chassis will place stress on the circuit board.Regardless of the mounting method you choose, please take care that the exposed solder joints on thebottom of the UMC do not make contact with your enclosure.Electrical SpecificationsExceeding the absolute maximum ratings below may cause permanent damage to the device.•Storage temperature: -20ºC to + 70ºC•Operating temperature: 0ºC to + 50ºC•Operating voltage (power supplied via USB bus): 5.4 Volts DC max•Max recommended current per channel 8mA•Maximum device current: *200mA (R1 & R2 PCB’s with a “C” PTC)•Maximum device current: *250mA (R1 & R2 PCB’s with a “D” PTC)•Maximum device current: *500mA (R2 PCB’s with a “F” marked PTC)*Check the component marking for PTC1 TroubleshootingHere is a list of common questions we anticipate you may run into. We will periodically add to this as new questions arise.Q1: A few pots are generating data even though I’m not moving them.Verify that the pots are clean (CAIG Labs DeoxIT D5 works very well). If you have long wiresconsider making them shorter. Generally speaking you should try to keep wire lengths as short aspossible. You might also try placing a 0.1uF capacitor across the power and ground inputs of yourpotentiometer or fader. (Example: # BC1084CT-ND).Q2: Adjacent channels appear to affect one another.Check the resistance with your multi-meter between the signal inputs of each channel. It should readat least 1 Mega ohm. Also verify that your DIP switch pack is set correctly. Channels with switchesattached to them should be set for digital. Channels with fader or rotary potentiometers should be setfor analog mode. All unconnected channels should be set for digital mode.Q3: My MIDI application is seeing a lot of spurious controller data from the UMC, I do not have any control elements connected to those channels.Each time the USB is plugged into the UMC, it checks the state of the DIP pack to set each channelto analog or digital mode. Channels that are left “floating” or in an undetermined state will generatenoise unless that are pulled high or low with an external resistor. Any channel that is set for analogmode must be connected to a source (potentiometer) or it must be connected to a 10K resistor that isconnected to ground or +5 volts. Double check the DIP switches to confirm that they are set correctlythen restart the UMC.Q3: I plug the UMC into my USB port but it appears to be dead.Disconnect the UMC from the USB bus immediately and check for any short circuits. Reboot yourcomputer and/or power cycle your USB hub. Make sure that the Shift pin (P1[3]) is not connectedwhen connecting the USB cable as this will cause the unit to startup in the bootloader mode.Q4: What to do when you receive an OS error about a surge of a USB device.This generally happens when the user short circuits the +5V and power lines. See Q3 for remedy.Q5: When I turn a pot one way (clockwise), my application turns it another (counter clockwise).Swap the V+ and G lines on your potentiometer, or perform a controller invert in your host software.Q6: If I disconnect the UMC while my host application is running, then re-connect again the host does not see the UMC.In our testing, Mac OS X had no problems with this. Depending on the application under WindowsXP you may need to re-launch your host application.Q7: How do I change the default MIDI output mapping ?Since the UMC will always be connected to a computer and since most modern MIDI hostapplications have a “Learn” function we felt that this option was unnecessary. If customer feedbackon this issue is strong we can provide a firmware update and or a utility.Limited WarrantyHale Microsystems LLC warrants this product to be free of manufacturing defects for a period of 90 days (USA only). If you feel that there is a defect with your device, please email technical support with a detailed descriptionoftheproblem:*********************.Inmostcaseswewillissueareplacement.Pleasenote that the unit must be shipped back in its original packaging and be in original saleable condition. We will not accept the return of any product that has been modified beyond factory condition.DisclaimerNeither the whole nor any part of the information contained herein or the product described in this datasheet may be adapted or reproduced in any material or electronic form without the prior written consent of the copyright holder. This product and its documentation are supplied on an as-is basis, and no warranty as to their suitability for any particular purpose is either made or implied. Hale Microsystems LLC will not accept any claim for damages whatsoever arising as a result of use or failure of this product. Your statutory rights are not affected. This product is not intended for use in any medical appliance, device or system in which the failure of the product might reasonable be expected to result in personal injury. This document provides preliminary information that may be subject to change without notice.。

DWU1052 DHD1052项目器技术用户手册说明书

Technical User Manual020-000857-01Q Series DWU1052/DHD1052ProjectorDWU1052/DHD1052 User's Manual (detailed) Operating Guide – Technical Supported signals for COMPUTER INResolution (H x V)Signal mode H. frequency(kHz)V. frequency(Hz)Rating720 x 400TEXT37.985VESA 640 x 480VGA (60Hz)31.559.9VESAVGA (72Hz)37.972.8VESAVGA (75Hz)37.575VESAVGA (85Hz)43.385VESA 800 x 600SVGA (56Hz)35.256.3VESASVGA (60Hz)37.960.3VESASVGA (72Hz)48.172.2VESASVGA (75Hz)46.975VESASVGA (85Hz)53.785.1VESA 832 x 624Mac 16” mode49.774.5-1024 x 768XGA (60Hz)48.460VESAXGA (70Hz)56.570.1VESAXGA (75Hz)6075VESAXGA (85Hz)68.785VESA 1152 x 8641152 x 864 (75Hz)67.575VESA 1280 x 768W-XGA (60Hz)47.760VESA 1280 x 8001280 x 800 (60Hz)49.760VESA 1280 x 1024SXGA (60Hz)6460VESASXGA (75Hz)8075VESASXGA (85Hz)91.185VESA *1 1366 x 768WXGA (60Hz)47.759.8VESA 1440 x 900WXGA+ (60Hz)55.959.9VESA 1600 x 900WXGA++ (60Hz)6060VESA 1680 x 1050WSXGA+ (60Hz)65.360VESA 1600 x 1200UXGA (60Hz)7560VESA 1920 x 1080Full HD (60Hz)67.560VESA *2 1920 x 1200W-UXGA (60Hz)Reduced Blanking7460VESA *1) Only for DHD1052 *2) Only for DWU1052(continued on next page)Supported signals for HDMI / HDBaseTResolution (H x V)Signal mode H. frequency(kHz)V. frequency(Hz)Rating720 x 400TEXT37.985VESA 640 x 480VGA (60Hz)31.559.9VESAVGA (72Hz)37.972.8VESAVGA (75Hz)37.575VESAVGA (85Hz)43.385VESA 800 x 600SVGA (56Hz)35.256.3VESASVGA (60Hz)37.960.3VESASVGA (72Hz)48.172.2VESASVGA (75Hz)46.975VESASVGA (85Hz)53.785.1VESA 832 x 624Mac 16” mode49.774.5-1024 x 768XGA (60Hz)48.460VESAXGA (70Hz)56.570.1VESAXGA (75Hz)6075VESAXGA (85Hz)68.785VESA 1152 x 8641152 x 864 (75Hz)67.575VESA 1280 x 768W-XGA (60Hz)47.760VESA 1280 x 8001280 x 800 (60Hz)49.760VESA 1280 x 1024SXGA (60Hz)6460VESASXGA (75Hz)8075VESASXGA (85Hz)91.185VESA 1366 x 768WXGA (60Hz)47.759.8VESA 1440 x 900WXGA+ (60Hz)55.959.9VESA 1600 x 900WXGA++ (60Hz)6060VESA 1400 x 1050SXGA+ (60Hz)65.260VESA 1680 x 1050WSXGA+ (60Hz)65.360VESA 1600 x 1200UXGA (60Hz)7560VESA *1 1920 x 1200W-UXGA (60Hz)Reduced Blanking7460VESA *1) Only for DWU1052(continued on next page)Resolution (H x V)Signal mode H. frequency(kHz)V. frequency(Hz)Rating720(1440) x 480i480i15.760CEA 720(1440) x 576i576i15.650CEA 720 x 480p480p31.560CEA 720 x 576p576p31.350CEA 1280 x 720p720p (50Hz)37.550CEA720p (60Hz)4560CEA 1920 x 1080i1080i (50Hz)28.150CEA1080i (60Hz)33.860CEA 1920 x 1080p1080p (50Hz)56.350CEA1080p (60Hz)67.560CEA (continued on next page)Supported signals for DVI-DResolution (H x V)Signal mode H. frequency(kHz)V. frequency(Hz)Rating720 x 400TEXT37.985VESA 640 x 480VGA (60Hz)31.559.9VESAVGA (72Hz)37.972.8VESAVGA (75Hz)37.575VESAVGA (85Hz)43.385VESA 800 x 600SVGA (56Hz)35.256.3VESASVGA (60Hz)37.960.3VESASVGA (72Hz)48.172.2VESASVGA (75Hz)46.975VESASVGA (85Hz)53.785.1VESA 832 x 624Mac 16” mode49.774.5-1024 x 768XGA (60Hz)48.460VESAXGA (70Hz)56.570.1VESAXGA (75Hz)6075VESAXGA (85Hz)68.785VESA 1152 x 8641152 x 864 (75Hz)67.575VESA 1280 x 768W-XGA (60Hz)47.760VESA 1280 x 8001280 x 800 (60Hz)49.760VESA 1280 x 1024SXGA (60Hz)6460VESASXGA (75Hz)8075VESASXGA (85Hz)91.185VESA 1366 x 768WXGA (60Hz)47.759.8VESA 1440 x 900WXGA+ (60Hz)55.959.9VESA 1600 x 900WXGA++ (60Hz)6060VESA 1400 x 1050SXGA+ (60Hz)65.260VESA 1680 x 1050WSXGA+ (60Hz)65.360VESA 1600 x 1200UXGA (60Hz)7560VESA *1 1920 x 1200W-UXGA (60Hz)Reduced Blanking7460VESA *1) Only for DWU1052(continued on next page)Resolution (H x V)Signal mode H. frequency(kHz)V. frequency(Hz)Rating720(1440) x 480i480i15.760CEA 720(1440) x 576i576i15.650CEA 720 x 480p480p31.560CEA 720 x 576p576p31.350CEA 1280 x 720p720p (50Hz)37.550CEA720p (60Hz)4560CEA 1920 x 1080i1080i (50Hz)28.150CEA1080i (60Hz)33.860CEA 1920 x 1080p1080p (50Hz)56.350CEA1080p (60Hz)67.560CEA (continued on next page)Supported signals for SDI/DIGITAL1Resolution (H x V)Signal mode H. frequency(kHz)V. frequency(Hz)Rating720 x 480i480i15.760SMPTE 720 x 576i576i15.650SMPTE 1280 x 720p720p (50Hz)37.550SMPTE720p (60Hz)4560SMPTE 1920 x 1080i1080i (50Hz)28.150SMPTE1080i (60Hz)33.860SMPTE 1920 x 1080sf1080i (25Hz)28.150SMPTE1080i (30Hz)33.860SMPTE 1920 x 1080p1080p (50Hz)56.350SMPTE1080p (60Hz)67.560SMPTE Only support 3G-SDI Level-A signal.NOTE• Be sure to check jack type, signal level, timing and resolution before connecting this projector to a PC.• Some PCs may have multiple display screen modes. Use of some of these modes is not possible with this projector.• Depending on the input signal, full-size display may not be possible in some cases. Refer to the number of display pixels above.• The signal is converted to the projector’s panel resolution before being displayed. The best display performance is achieved if the resolutions of the input signal and projector panel are identical.• Automatic adjustment may not function correctly with some input signals.• The image may not be displayed correctly when the input sync signal is a composite sync or a sync on G.• The illustrations in this manual are for illustrative purposes. They may differ slightly from your projector.A•V • H/V. sync. signal: TTL level (positive/negative)• Composite sync. signal: TTL level<Component video signal>• V ideo signal: Y with composite sync, Analog, 1.0±0.1Vp-p, 75Ω terminatedCb/Pb, Analog, 0.7±0.1Vp-p, 75Ω terminated Cr/Pr, Analog, 0.7±0.1Vp-p 75Ω terminated• System: 480i@60, 480p@60, 576i@50, 720p@50/60, 1080i@50/60, 1080p@50/60Pin SignalPin Signal1Video Red, Cr/Pr 9(No connection)2Video Green, Y 10Ground 3Video Blue, Cb/Pb 11(No connection)4(No connection)12A : SDA (DDC data) B : (No connection)5Ground13H. sync / Composite sync.6Ground Red, Ground Cr/Pr 14V. sync.7Ground Green, Ground Y 15A : SCL (DDC clock)B : (No connection)8Ground Blue, Ground Cb/PbNOTICE ►Use the cables with straight plugs, not L-shaped ones, as the input ports of the projector are recessed.►Only the signal that is input from the COMPUTER IN can be output from the MONITOR OUT port.DVI-DDVI-D jack (digital to digital)PinSignalPinSignalPinSignal1T.M.D.S. Data2 -9T.M.D.S. Data1 -17T.M.D.S. Data0 -2T.M.D.S. Data2 +10T.M.D.S. Data1 +18T.M.D.S. Data0 +3T.M.D.S. Data2/4 Shield 11T.M.D.S. Data1/3 Shield 19T.M.D.S. Data0/5 Shield 4-12-20-5-13-21-6DDC Clock 14+5V Power22T.M.D.S. Clock Shield 7DDC Data 15Ground (for +5V)23T.M.D.S. Clock +8-16Hot Plug Detect24T.M.D.S. Clock -E CPin SignalPin SignalPin Signal1T.M.D.S. Data2 +8T.M.D.S. Data0 Shield 15SCL 2T.M.D.S. Data2 Shield 9T.M.D.S. Data0 -16SDA3T.M.D.S. Data2 -10T.M.D.S. Clock +17DDC/CEC Ground 4T.M.D.S. Data1 +11T.M.D.S. Clock Shield 18+5V Power 5T.M.D.S. Data1 Shield 12T.M.D.S. Clock -19Hot Plug Detect6T.M.D.S. Data1 -13CEC7T.M.D.S. Data0 +14Reserved (N.C. on device)G CONTROL D-sub 9pin plug* A bout the details of RS-232C communication,refer to the next section.Pin SignalPin SignalPin Signal1(No connection)4(No connection)7RTS 2RD 5Ground 8CTS3TD6(No connection)9(No connection)• System: NTSC, PAL, SECAM, PAL-M, PAL-N, NTSC4.43, PAL(60Hz)FRJ-45 jackPin Signal Pin Signal Pin Signal 1HDBaseT0+4HDBaseT2+7HDBaseT3+2HDBaseT0-5HDBaseT2-8HDBaseT3-3HDBaseT1+6HDBaseT1-I LAN RJ-45 jackPin Signal Pin Signal Pin Signal1TX+4-7-2TX-5-8-3RX+6RX-REMOTE CONTROL K IN, L OUTØ3.5 stereo mini jackM SDI/DIGITAL1BNC jack x1• S D/HD/3G-SDI signal, Digital, 0.8V±10%, 75Ω terminated• System:SD-SDI signal: conforming to SMPTE ST 259-C standardYCBCR 4:2:2 10-bit480i, 576iSingle link HD-SDI signal: conforming to SMPTE ST 292 standardYPBPR 4:2:2 10-bit720p@50/60, 1080i@50/60, 1080sf@25/30 3G-SDI Level-A signal: conforming to SMPTE ST 424 standardYPBPR 4:2:2 10-bit1080p@50/60RS-232C cable(cross)CD (1) (1) - RD(2) (2) RD TD (3) (3) TD DTR (4) (4) - GND (5) (5) GND DSR (6) (6) - RTS (7) (7) RTS DTS (8) (8) CTSRI (9)(9) -When the projector connects to the computer by RS-232C communication, the projector can be controlled with RS-232C commands from the computer.For details of RS-232C commands, refer to RS-232C Communication / Network command table (&21).Connection1.Turn off the projector and the computer.2. Connect the projector's CONTROL port and the computer's RS-232C port with a RS-232C cable (cross). Use the cable that fulfi lls the specifi cationshown in fi gure.3.Turn the computer on, and turn the projector on after the computer has started up.4. Set the COMMUNICATION TYPE to OFF in the COMMUNICATION menu of the OPTION - SERVICE menu.CONTROL port of the projectorRS-232C port of the computerCommunication settings1. Protocol19200bps, 8N12. Command format(h shows hexadecimal)Byte Number0123456789101112Command ActionHeader DataHeadercode PacketDatasizeCRCflag Action TypeSettingcode L H L H L H L H L H L H<SET>Change setting todesired value [(cL)(cH)]by [(bL)(bH)].BEh EFh03h06h00h (aL)(aH)01h00h(bL)(bH)(cL)(cH)<GET>Read projectorinternal setup value [(bL)(bH)] .(aL)(aH)02h00h(bL)(bH)00h00h<INCREMENT>Increment setup value[(bL)(bH)] by 1.(aL)(aH)04h00h(bL)(bH)00h00h<DECREMENT>Decrement setup value[(bL)(bH)] by 1.(aL)(aH)05h00h(bL)(bH)00h00h<EXECUTE> Run acommand [(bL)(bH)].(aL)(aH)06h00h(bL)(bH)00h00h [Header code] [Packet] [Data size]Set [BEh, EFh, 03h, 06h, 00h] to byte number 0 to 4.[CRC flag]For byte number 5 and 6, refer to RS-232C Communication / Networkcommand table(&21).[Action]Set functional code to byte number 7 and 8.<SET> = [01h, 00h], <GET> = [02h, 00h], <INCREMENT> = [04h, 00h]<DECREMENT> = [05h, 00h], <EXECUTE> = [06h, 00h]Refer to the Communication command table (&above).[Type] [Setting code]For byte number 9 to 12, refer to RS-232C Communication / Networkcommand table(&21).3. Response code / Error code(h shows hexadecimal)(1) A CK reply: 06hWhen the projector receives the Set, Increment, Decrement or Executecommand correctly, the projector changes the setting data for the specified item by [Type], and it returns the code.(2) N AK reply: 15hWhen the projector cannot understand the received command, the projector returns the error code.In such a case, check the sending code and send the same command again.(3) E rror reply: 1Ch + 0000hWhen the projector cannot execute the received command for any reasons, the projector returns the error code.In such a case, check the sending code and the setting status of the projector.(4) D ata reply: 1Dh + xxxxhWhen the projector receives the GET command correctly, the projector returns the response code and 2 bytes of data.NOTE • For connecting the projector to your devices, read the manual for each devices, and connect them correctly with suitable cables.• Operation cannot be guaranteed when the projector receives an undefined command or data.• Provide an interval of at least 40ms between the response code and any other code.• The projector outputs test data when the power supply is switched ON, and when the lamp is lit. Ignore this data.• Commands are not accepted during warm-up.• When the data length is greater than indicated by the data length code, the projector ignores the excess data code. Conversely when the data length is shorter than indicated by the data length code, the projector returns the error code to the computer.orFor HDBaseT connection - CAT-5e or greater- shielded type (connectors included) - straight cable - single cableWhen the projector connects to the network, the projector can be controlled with RS-232C commands from the computer with web browser.For details of RS-232C commands, refer to RS-232C Communication / Network command table (&21).Connection1.Turn off the projector and the computer.2. If you use wired LAN, connect the projector's LAN or HDBaseT TMport to the computer's LAN or HDBaseT port with a LAN cable. Use the cable that fulfi llsthe specifi cation shown in fi gure. If you use wireless LAN, insert the USB wireless adapter into the WIRELESS port of the projector.3.Turn the computer on, and turn the projector on after the computer has started up.NOTE • If data is transferred using wireless and wired LAN at the same time, the projector may not be able to process the data correctly.Communication PortThe following two ports are assigned for the command control.TCP #23TCP #9715Configure the following items from a web browser when command control is used. Port SettingsNetwork Control Port1 (Port: 23)Port openClick the [Enable] checkbox to open [NetworkControl Port1 (Port: 23)] to use TCP #23.Default setting is EnableAuthenticationClick the [Enable] check box for the[Authentication] setting when authenticationis required.Default setting is Disable.Network Control Port2 (Port: 9715)Port openClick the [Enable] check box to open [NetworkControl Port2 (Port: 9715)] to use TCP#9715.Default setting is Enable.AuthenticationClick the [Enable] check box for the[Authentication] setting when authenticationis required.Default setting is Enable.When the authentication setting is enabled, the following settings are required. Security SettingsNetwork Control AuthenticationPasswordEnter the required authentication password.Confirm this setting is the same for [NetworkControl Port1 (Port: 23)] and [NetworkControl Port2 (Port: 9715)].Default setting is blank.Re-enterAuthenticationPasswordCommand control settings[TCP #23]1. Command formatSame as RS-232C communication, refer to RS-232C Communication command format.2. Response code / Error code(h shows hexadecimal)Four of the response / error code used for TCP#23 are the same as RS-232C Communication (1)~(4). One authentication error reply (5) is added.(1) A CK reply : 06hRefer to RS-232C communication (&14).(2) N AK reply : 15hRefer to RS-232C communication (&14).(3) E rror reply : 1Ch + 0000hRefer to RS-232C communication (&14).(4) D ata reply : 1Dh + xxxxhRefer to RS-232C communication (&14).(5) A uthentication error reply : 1Fh + 0400hWhen authentication error occurs, the projector returns the error code.[TCP #9715]1. Command formatThe commands that some datum are added to the head and the end of the ones of TCP#9715 are used.Header Data length RS-232C command Check sum Connection ID0×020×0D13 bytes 1 byte 1 byte [Header]02, Fixed[Data Length]RS-232C commands byte length (0×0D, Fixed)[RS-232C commands]Refer to RS-232C Communication command format (&13).[Check Sum]This is the value to make zero on the addition of the lower 8 bits from the header to the checksum.[Connection ID]Random value from 0 to 255 (This value is attached to the reply data).NOTE • Operation cannot be guaranteed when the projector receives an undefined command or data.• Provide an interval of at least 40ms between the response code and any other code.• Commands are not accepted during warm-up.NOTE • For the transmission of the second or subsequent commands, the authentication data can be omitted for the same connection.2. Response code / Error code (h shows hexadecimal)The connection ID is attached for the TCP#23's response / error codes are used. The connection ID is the same as the sending command format.(1) ACK reply: 06h + ××h(××h : connection ID)(2) NAK reply: 15h + ××h(3) Error reply: 1Ch + 0000h + ××h (4) Data reply: 1Dh + xxxxh + ××h(5) Authentication error reply: 1Fh + 0400h + ××h (6)P rojector busy reply: 1Fh + ××××h + ××h When the projector is too busy to receive the command, the projector returns the error code.In such a case, check the sending code and send the same command again.Automatic Connection BreakThe TCP connection will be automatically disconnected after there is no communication for 30 seconds after being established.AuthenticationThe projector does not accept commands without authentication successwhen authentication is enabled. The projector uses a challenge response type authentication with an MD5 (Message Digest 5) algorithm.When the projector is connected to a LAN, a random 8 bytes will be returned if authentication is enabled. Bind this received 8 bytes and the authentication password, and digest the data with the MD5 algorithm, and add it in front of the commands to send.Following is a sample of authentication process. Authentication password: password (example) Random 8 bytes: a572f60c (example)1) S elect a projector and receive the random 8 bytes from the projector. → a572f60c2)B ind the random 8 bytes and the authentication password. → a572f60cpassword3)D igest this bound with MD5 algorithm. → e3d97429adffa11bce1f7275813d4bde4)A dd this code in front of the commands and send the data. → e3d97429adffa11bce1f7275813d4bde + [command].5)W hen the sent data is correct, the command will be performed and the reply data will be returned. Otherwise, an authentication error will be returned.This projector is equipped with NETWORK BRIDGE function.When the projector connects to the computer by wired or wireless LAN communication, an external device that is connected with this projector by RS-232C communication can be controlled from the computer as a network terminal. For details, see the 7. Network Bridge function in the Network Guide.NOTE • If data is transferred using wireless and wired LAN at the same time, the projector may not be able to process the data correctly.Connection1. If you use wired LAN, connect the computer's LAN port and the projector'sLAN port with a LAN cable. Use the cable that fulfi lls the specifi cation shown in fi gure. If you use wireless LAN, insert the USB wireless adapter into the projector's WIRELESS port.2. Connect the projector's CONTROL port and the RS-232C port of the devicesthat you want to control with a RS-232C cable.3. Turn the computer on, and turn the projector on after the computer hasstarted up.4. Set the COMMUNICATION TYPE to NETWORK BRIDGE in theCOMMUNICATION menu of the OPTION - SERVICE menu.Communication settingsFor communication setting, use the COMMUNICATION menu in the OPTION - SERVICE menu.Item ConditionBAUD RATE4800bps / 9600bps / 19200bps / 38400bpsData length8 bit (fixed)PARITY NONE/ODD/EVENStart bit 1 bit (fixed)Stop bit 1 bit (fixed)Transmission method HALF-DUPLEX/FULL-DUPLEXNOTE • For connecting the projector to your devices, read the manual for each devices, and connect them correctly with suitable cables.• Turn off the power and unplug both the projector and other devices before connecting them.• For details of Transmission method, refer to 7.4 Transmission method in the Network Guide.Names Operation Type Header CRCCommand Data Action Type Setting codePower SetTurn off BE EF0306 002A D301 0000 6000 00Turn on BE EF0306 00BA D201 0000 6001 00GetBE EF0306 0019 D302 0000 6000 00[Example return]00 00 01 00 02 00[Off] [On] [Cool down]Input Source SetCOMPUTER IN BE EF0306 00FE D201 0000 2000 00 LAN BE EF0306 00CE D501 0000 200B 00HDMI 1BE EF0306 000E D201 0000 2003 00HDMI 2BE EF0306 006E D601 0000 200D 00DVI-D BE EF0306 00AE D401 0000 2009 00HDBaseT BE EF0306 00AE DE01 0000 2011 00 SDI/DIGITAL 1 BE EF0306 005E DE01 0000 2012 00 VIDEO BE EF0306 006E D301 0000 2001 00Get BE EF0306 00CD D202 0000 2000 00Error Status GetBE EF0306 00D9 D802 0020 6000 00 [Example return]00 00 01 00 02 00 03 00[Normal] [Cover error] [Fan error] [Lamp error]04 00 05 00 07 00 08 00[Temp error] [Air flow error] [Cold error] [Filter error] 0F 00 10 00 13 00 23 00 [Shutter error] [Lens Shift error] [Lamp-1 warning] [Lamp-2 warning]41 00[Humidity error]40 00, 42 00, 43 00, 44 00, 50 00, 51 00, 54 00, 55 00, 56 00[Other error]52 00 53 00 60 00[Color Wheel error] [Dynamic Iris error] [AC blackout error]FOCUS Increment BE EF0306 006A 9304 0000 2400 00 Decrement BE EF0306 00BB 9205 0000 2400 00ZOOM Increment BE EF0306 0096 9204 0001 2400 00 Decrement BE EF0306 0047 9305 0001 2400 00LENS SHIFT - V Increment BE EF0306 00D2 9204 0002 2400 00 Decrement BE EF0306 0003 9305 0002 2400 00LENS SHIFT - H Increment BE EF0306 002E 9304 0003 2400 00 Decrement BE EF0306 00FF 9205 0003 2400 00LENS SHIFTCENTERINGExecute BE EF0306 00B8 9306 0004 2400 00 LENS SHIFTDEFAULTPOSITIONExecute BE EF0306 00D4 9506 0019 2400 00LENS MEMORYINDEX Set1BE EF0306 004B 9201 0007 2400 002BE EF0306 00DB 9301 0007 2401 003BE EF0306 002B 9301 0007 2402 00 Get BE EF0306 0078 9202 0007 2400 00Action Type Setting code LENS MEMORYLOADExecute BE EF0306 00E8 9006 0008 2400 00 LENS MEMORYSAVEExecute BE EF0306 0014 9106 0009 2400 00 LENS MEMORYCLEARExecute BE EF0306 0050 9106 000A 2400 00 LENS MEMORYFOCUSGet BE EF0306 0028 9102 000B 2400 00 LENS MEMORYZOOMGet BE EF0306 005C 9002 000C 2400 00 LENS MEMORYLENS SHIFT - VGet BE EF0306 00A0 9102 000D 2400 00 LENS MEMORYLENS SHIFT - HGet BE EF0306 00E4 9102 000E 2400 00 LENS MEMORYLENS TYPE Get BE EF0306 0018 9002 000F 2400 00MAGNIFYGet BE EF0306 007C D202 0007 3000 00 Increment BE EF0306 001A D204 0007 3000 00 Decrement BE EF0306 00CB D305 0007 3000 00MAGNIFY Position HGet BE EF0306 00C8 D702 0010 3000 00 Increment BE EF0306 00AE D704 0010 3000 00 Decrement BE EF0306 007F D605 0010 3000 00MAGNIFY Position VGet BE EF0306 0034 D602 0011 3000 00 Increment BE EF0306 0052 D604 0011 3000 00 Decrement BE EF0306 0083 D705 0011 3000 00FREEZE SetNORMAL BE EF0306 0083 D201 0002 3000 00FREEZE BE EF0306 0013 D301 0002 3001 00Get BE EF0306 00B0 D202 0002 3000 00SHUTTER SetOFF BE EF0306 00F3 9301 0005 2400 00ON BE EF0306 0063 9201 0005 2401 00 Get BE EF0306 00C0 9302 0005 2400 00PbyP/PIP SetOFF BE EF0306 003E 2601 0010 2300 00PbyP BE EF0306 00AE 2701 0010 2301 00PIP BE EF0306 005E 2701 0010 2302 00 Get BE EF0306 000D 2602 0010 2300 00PbyP MAIN SIZE SetSMALL BE EF0306 00F2 0701 0011 237F 00MIDDLE BE EF0306 0002 4601 0011 2380 00LARGE BE EF0306 0092 4701 0011 2381 00Get BE EF0306 00F1 2702 0011 2300 00Action Type Setting codePbyP RIGHT SOURCE SetCOMPUTER IN BE EF0306 0086 2701 0012 2300 00 HDMI 1BE EF0306 0076 2701 0012 2303 00HDMI 2BE EF0306 0016 2301 0012 230D 00DVI-D BE EF0306 00D6 2101 0012 2309 00HDBaseT BE EF0306 00D6 2B01 0012 2311 00 SDI / DIGITAL 1BE EF0306 0026 2B01 0012 2312 00 VIDEO BE EF0306 0016 2601 0012 2301 00Get BE EF0306 00B5 2702 0012 2300 00PbyP MAIN AREA SetLEFT BE EF0306 007A 2601 0013 2300 00RIGHT BE EF0306 00EA 2701 0013 2301 00Get BE EF0306 0049 2602 0013 2300 00PbyP LEFT SOURCE SetCOMPUTER IN BE EF0306 00F2 2601 0015 2300 00 HDMI 1BE EF0306 0002 2601 0015 2303 00HDMI 2BE EF0306 0062 2201 0015 230D 00DVI-D BE EF0306 00A2 2001 0015 2309 00HDBaseT BE EF0306 00A2 2A01 0015 2311 00 SDI / DIGITAL 1 BE EF0306 0052 2A01 0015 2312 00 VIDEO BE EF0306 0062 2701 0015 2301 00Get BE EF0306 00C1 2602 0015 2300 00PIP POSITION SetTOP LEFT BE EF0306 0002 2301 0001 2300 00 TOP RIGHT BE EF0306 0092 2201 0001 2301 00 BOTTOM LEFT BE EF0306 0062 2201 0001 2302 00 BOTTOM RIGHT BE EF0306 00F2 2301 0001 2303 00 Get BE EF0306 0031 2302 0001 2300 00PIP MAIN AREA SetPRIMARY BE EF0306 0032 2201 0005 2300 00 SECONDARY BE EF0306 00A2 2301 0005 2301 00 Get BE EF0306 0001 2202 0005 2300 00PIP PRIMARY SOURCE SetCOMPUTER IN BE EF0306 00CE 2301 0004 2300 00 HDMI 1BE EF0306 003E 2301 0004 2303 00HDMI 2BE EF0306 005E 2701 0004 230D 00DVI-D BE EF0306 009E 2501 0004 2309 00HDBaseT BE EF0306 009E 2F01 0004 2311 00 SDI / DIGITAL 1 BE EF0306 006E 2F01 0004 2312 00 VIDEO BE EF0306 005E 2201 0004 2301 00Get BE EF0306 00FD 2302 0004 2300 00PIP SECONDARY SOURCE SetCOMPUTER IN BE EF0306 0046 2301 0002 2300 00 HDMI 1BE EF0306 00B6 2301 0002 2303 00HDMI 2BE EF0306 00D6 2701 0002 230D 00DVI-D BE EF0306 0016 2501 0002 2309 00HDBaseT BE EF0306 0016 2F01 0002 2311 00 SDI / DIGITAL 1 BE EF0306 00E6 2F01 0002 2312 00 VIDEO BE EF0306 00D6 2201 0002 2301 00Get BE EF0306 0075 2302 0002 2300 00PbyP/PIPSWAPExecute BE EF0306 0001 2706 0016 2300 00Action Type Setting codePbyP / PIP FRAME LOCK SetLEFT / PRIMARY BE EF0306 004A 2701 0017 2300 00 RIGHT /SECONDARY BE EF0306 00DA 2601 0017 2301 00 Get BE EF0306 0079 2702 0017 2300 00PICTURE MODE SetSTANDARD BE EF0306 0083 F501 00BA 3006 00NATURAL BE EF0306 0023 F601 00BA 3000 00CINEMA BE EF0306 00B3 F701 00BA 3001 00DYNAMIC BE EF0306 00E3 F401 00BA 3004 00 BOARD(BLACK)BE EF0306 00E3 EF01 00BA 3020 00 BOARD(GREEN)BE EF0306 0073 EE01 00BA 3021 00 WHITEBOARD BE EF0306 0083 EE01 00BA 3022 00 DAYTIME BE EF0306 00E3 C701 00BA 3040 00 DICOM SIM.BE EF0306 0073 C601 00BA 3041 00USER-1BE EF0306 00E3 FB01 00BA 3010 00USER-2BE EF0306 0073 FA01 00BA 3011 00USER-3BE EF0306 0083 FA01 00BA 3012 00Get BE EF0306 0010 F602 00BA 3000 00BRIGHTNESSGet BE EF0306 0089 D202 0003 2000 00 Increment BE EF0306 00EF D204 0003 2000 00 Decrement BE EF0306 003E D305 0003 2000 00BRIGHTNESSResetExecute BE EF0306 0058 D306 0000 7000 00CONTRASTGet BE EF0306 00FD D302 0004 2000 00 Increment BE EF0306 009B D304 0004 2000 00 Decrement BE EF0306 004A D205 0004 2000 00CONTRASTResetExecute BE EF0306 00A4 D206 0001 7000 00GAMMA Set1 DEFAULT BE EF0306 0007 E901 00A1 3020 001 CUSTOM BE EF0306 0007 FD01 00A1 3010 002 DEFAULT BE EF0306 0097 E801 00A1 3021 002 CUSTOM BE EF0306 0097 FC01 00A1 3011 003 DEFAULT BE EF0306 0067 E801 00A1 3022 003 CUSTOM BE EF0306 0067 FC01 00A1 3012 004 DEFAULT BE EF0306 00F7 E901 00A1 3023 004 CUSTOM BE EF0306 00F7 FD01 00A1 3013 005 DEFAULT BE EF0306 00C7 EB01 00A1 3024 005 CUSTOM BE EF0306 00C7 FF01 00A1 3014 006 DEFAULT BE EF0306 0057 EA01 00A1 3025 006 CUSTOM BE EF0306 0057 FE01 00A1 3015 007 DEFAULT BE EF0306 00A7 EA01 00A1 3026 007 CUSTOM BE EF0306 00A7 FE01 00A1 3016 008 DEFAULT BE EF0306 0037 EB01 00A1 3027 008 CUSTOM BE EF0306 0037 FF01 00A1 3017 00Get BE EF0306 00F4 F002 00A1 3000 00Action Type Setting codeUser GAMMA Point 1Get BE EF0306 0008 FE02 0090 3000 00 Increment BE EF0306 006E FE04 0090 3000 00 Decrement BE EF0306 00BF FF05 0090 3000 00User GAMMAPoint 1 ResetExecute BE EF0306 0058 C206 0050 7000 00User GAMMA Point 2Get BE EF0306 00F4 FF02 0091 3000 00 Increment BE EF0306 0092 FF04 0091 3000 00 Decrement BE EF0306 0043 FE05 0091 3000 00User GAMMAPoint 2 ResetExecute BE EF0306 00A4 C306 0051 7000 00User GAMMA Point 3Get BE EF0306 00B0 FF02 0092 3000 00 Increment BE EF0306 00D6 FF04 0092 3000 00 Decrement BE EF0306 0007 FE05 0092 3000 00User GAMMAPoint 3 ResetExecute BE EF0306 00E0 C306 0052 7000 00User GAMMA Point 4Get BE EF0306 004C FE02 0093 3000 00 Increment BE EF0306 002A FE04 0093 3000 00 Decrement BE EF0306 00FB FF05 0093 3000 00User GAMMAPoint 4 ResetExecute BE EF0306 001C C206 0053 7000 00User GAMMA Point 5Get BE EF0306 0038 FF02 0094 3000 00 Increment BE EF0306 005E FF04 0094 3000 00 Decrement BE EF0306 008F FE05 0094 3000 00User GAMMAPoint 5 ResetExecute BE EF0306 0068 C306 0054 7000 00User GAMMA Point 6Get BE EF0306 00C4 FE02 0095 3000 00 Increment BE EF0306 00A2 FE04 0095 3000 00 Decrement BE EF0306 0073 FF05 0095 3000 00User GAMMAPoint 6 ResetExecute BE EF0306 0094 C206 0055 7000 00User GAMMA Point 7Get BE EF0306 0080 FE02 0096 3000 00 Increment BE EF0306 00E6 FE04 0096 3000 00 Decrement BE EF0306 0037 FF05 0096 3000 00User GAMMAPoint 7 ResetExecute BE EF0306 00D0 C206 0056 7000 00User GAMMA Point 8Get BE EF0306 007C FF02 0097 3000 00 Increment BE EF0306 001A FF04 0097 3000 00 Decrement BE EF0306 00CB FE05 0097 3000 00User GAMMAPoint 8 ResetExecute BE EF0306 002C C306 0057 7000 00。

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