交流电压,电流转换器 特点: 精确度0.25%满刻度(RMS) 多种输入,输出选择 输入与输出绝缘耐压2仟伏特/1分钟 冲击电压测试5仟伏特(1.2x50us) (IEC255-4,ANSI C37.90a/1974) 突波电压测试2.5仟伏特(0.25ms/1MHz) (IEC255-4) 尺寸小,稳定性高 2:主要规格 精确度:0.25%F.S.(RMS) (23 ±5℃) 输入负载: <0.2VA(voltage) <0.2VA(current) 最大过载能力: Current related input:3 x rated continuous 10 x rated 30 sec. ,25 x rated 3sec. 50 x rated 1sec. Voltage related input:maximum 2x rated continuous 输出反应时间: <250ms (0~90%) 输出负载能力: <10mA for voltage mode <10V for current mode 输出涟波: <0.1% F.S. 归零调整范围: 0~±5% F.S. 最大值调整范围: 0~±10% F.S. 温度系数: 100ppm/℃ (0~50℃) 隔离特性: Input/Output/Power/Case 绝缘抗阻: >100Mohm with 500V DC 绝缘耐压能力: 2KVac/1 min. (input/output/power) 行动测试: ANSI C37.90a/1974,DIN-IEC 255-4 impulse voltage 5KV (1.2 x 50us) 突波测试: 2.5KV-0.25ms/1MHz 使用环境条件: -20~60℃(20 to 90% RH non-condensed) 存放环境条件: -30~70℃(20 to 90% RH non-condensed) CE认证: EN 55022:1998/A1:2000 Class A EN 61000-3-2:2000 EN 61000-3-3:1995/A1:2001 EN 55024:1998/A1:2001
上传时间: 2013-11-09
上传用户:非衣2016
Abstract: What can be simpler than designing with CMOS and BiCMOS? These technologies are very easy to use butthey still require careful design. This tutorial discusses the odd case of circuits that seem to work but exhibit somepeculiar behaviors—including burning the designer's fingers!
上传时间: 2013-11-03
上传用户:dick_sh
Sensors for pressure, load, temperature, acceleration andmany other physical quantities often take the form of aWheatstone bridge. These sensors can be extremely linearand stable over time and temperature. However, mostthings in nature are only linear if you don’t bend them toomuch. In the case of a load cell, Hooke’s law states that thestrain in a material is proportional to the applied stress—as long as the stress is nowhere near the material’s yieldpoint (the “point of no return” where the material ispermanently deformed).
上传时间: 2013-11-13
上传用户:墙角有棵树
Differential Nonlinearity: Ideally, any two adjacent digitalcodes correspond to output analog voltages that are exactlyone LSB apart. Differential non-linearity is a measure of theworst case deviation from the ideal 1 LSB step. For example,a DAC with a 1.5 LSB output change for a 1 LSB digital codechange exhibits 1⁄2 LSB differential non-linearity. Differentialnon-linearity may be expressed in fractional bits or as a percentageof full scale. A differential non-linearity greater than1 LSB will lead to a non-monotonic transfer function in aDAC.Gain Error (Full Scale Error): The difference between theoutput voltage (or current) with full scale input code and theideal voltage (or current) that should exist with a full scale inputcode.Gain Temperature Coefficient (Full Scale TemperatureCoefficient): Change in gain error divided by change in temperature.Usually expressed in parts per million per degreeCelsius (ppm/°C).Integral Nonlinearity (Linearity Error): Worst case deviationfrom the line between the endpoints (zero and full scale).Can be expressed as a percentage of full scale or in fractionof an LSB.LSB (Lease-Significant Bit): In a binary coded system thisis the bit that carries the smallest value or weight. Its value isthe full scale voltage (or current) divided by 2n, where n is theresolution of the converter.Monotonicity: A monotonic function has a slope whose signdoes not change. A monotonic DAC has an output thatchanges in the same direction (or remains constant) for eachincrease in the input code. the converse is true for decreasing codes.
标签: Converters Defini DAC
上传时间: 2013-10-30
上传用户:stvnash
Calculation of the Differential Impedance of Tracks on FR4 substrates There is a discrepancy between calculated and measured values of impedance for differential transmission lineson FR4. This is especially noticeable in the case of surface microstrip configurations. The anomaly is shown tobe due to the nature of the substrate material. This needs to be considered as a layered structure of epoxy resinand glass fibre. Calculations, using Boundary Element field methods, show that the distribution of the electricfield within this layered structure determines the apparent dielectric constant and therefore affects theimpedance. Thus FR4 cannot be considered to be uniform dielectric when calculating differential impedance.
上传时间: 2014-12-24
上传用户:DE2542
交流瓦特/瓦特小时,乏尔/乏尔小时转换器 特点: 精确度0.25%满刻度 多种输入,输出选择 输入与输出绝缘耐压2仟伏特/1分钟 冲击电压测试5仟伏特(1.2x50us) 突波电压测试2.5仟伏特(0.25ms/1MHz) (IEC255-4) 尺寸小,稳定性高 主要规格: 精确度: 0.25% F.S. (23 ±5℃) 输入负载: <0.2VA (Voltage) <0.2VA (Current) 最大过载能力: Current related input:3 x rated continuous 10 x rated 30 sec. ,25 x rated 3sec. 50 x rated 1sec. Voltage related input:maximum 2 x rated continuous 输出反应速度: < 250ms(0~90%) 输出负载能力: < 10mA for voltage mode < 10V for current mode 输出之涟波 : < 0.1% F.S. 脉波输出型态: Photocouple of open collector (max.30V/40mA) 归零调整范围: 0~±5% F.S. 最大值调整范围: 0~±10% F.S. 温度系数: 100ppm/℃ (0~50℃) 隔离特性: Input/Output/Power/Case 绝缘阻抗: >100Mohm with 500V DC 绝缘耐压能力: 2KVac/1 min. (input/output/power/case) 突波测试: ANSI C37.90a/1974,DIN-IEC 255-4 impulse voltage 5KV(1.2x50us) 使用环境条件: -20~60℃(20 to 90% RH non-condensed) 存放环境条件: -30~70℃(20 to 90% RH non-condensed) CE认证: EN 55022:1998/A1:2000 Class A EN 61000-3-2:2000 EN 61000-3-3:1995/A1:2001 EN 55024:1998/A1:2001
上传时间: 2013-11-11
上传用户:wettetw
Abstract: Rail splitting is creating an artificial virtual ground as a reference voltage. It is used to set the signalto match the op amp's "sweet spot." An op amp has the most linear- and distortion-free qualities at that sweetspot. Typically, the sweet spot occurs near the center between the single power rail and ground. In the case ofa number of signals, the virtual ground can control channel DC errors when multiplexing or switching thesignals.
上传时间: 2013-10-23
上传用户:wushengwu
The latest generation of Texas Instruments (TI) boardmountedpower modules utilizes a pin interconnect technologythat improves surface-mount manufacturability.These modules are produced as a double-sided surfacemount(DSSMT) subassembly, yielding a case-less constructionwith subcomponents located on both sides of theprinted circuit board (PCB). Products produced in theDSSMT outline use the latest high-efficiency topologiesand magnetic-component packaging. This providescustomers with a high-efficiency, ready-to-use switchingpower module in a compact, space-saving package. Bothnonisolated point-of-load (POL) switching regulators andthe isolated dc/dc converter modules are being producedin the DSSMT outline.TI’s plug-in power product line offers power modules inboth through-hole and surface-mount packages. The surfacemountmodules produced in the DSSMT outline use asolid copper interconnect with an integral solder ball fortheir
上传时间: 2013-10-10
上传用户:1184599859
附件为:LCD12864显示汉字和数字的程序与电路 /* 自定义延时子函数 */ void delayms(uchar z) { int x,y; for(x=z;x>0;x--) for(y=110;y>0;y--); } /* 判断LCD忙信号状态 */ void buys() { int dat; RW=1; RS=0; do { P0=0x00; E=1; dat=P0; E=0; dat=0x80 & dat; } while(!(dat==0x00)); } /* LCD写指令函数 */ void w_com(uchar com) { //buys(); RW=0; RS=0; E=1; P0=com; E=0; } /* LCD写数据函数 */ void w_date(uchar date) { //buys(); RW=0; RS=1; E=1; P0=date; E=0; } /* LCD选屏函数 */ void select_screen(uchar screen) { switch(screen) { case 0: //选择全屏 CS1=0; CS2=0; break; case 1: //选择左屏 CS1=0; CS2=1; break; case 2: //选择右屏 CS1=1; CS2=0; break; /* case 3: //选择右屏 CS1=1; CS2=1; break; */ } } /* LCDx向上滚屏显示 */ void lcd_rol() { int x; for(x=0;x<64;x++) { select_screen(0); w_com(0xc0+x); delayms(500); } } /* LCD清屏函数:清屏从第一页的第一列开始,总共8页,64列 */ void clear_screen(screen) { int x,y; select_screen(screen); //screen:0-选择全屏,1-选择左半屏,2-选择右半屏 for(x=0xb8;x<0xc0;x++) //从0xb8-0xbf,共8页 { w_com(x); w_com(0x40); //列的初始地址是0x40 for(y=0;y<64;y++) { w_date(0x00); } } } /* LCD显示汉字字库函数 */ void lcd_display_hanzi(uchar screen,uchar page,uchar col,uint mun) { //screen:选择屏幕参数,page:选择页参数0-3,col:选择列参数0-3,mun:显示第几个汉字的参数 int a; mun=mun*32; select_screen(screen); w_com(0xb8+(page*2)); w_com(0x40+(col*16)); for ( a=0;a<16;a++) { w_date(hanzi[mun++]); } w_com(0xb8+(page*2)+1); w_com(0x40+(col*16)); for ( a=0;a<16;a++) { w_date(hanzi[mun++]); } } /* LCD显示字符字库函数 */ void lcd_display_zifuk(uchar screen,uchar page,uchar col,uchar mun) { //screen:选择屏幕参数,page:选择页参数0-3,col:选择列参数0-7,mun:显示第几个汉字的参数 int a; mun=mun*16; select_screen(screen); w_com(0xb8+(page*2)); w_com(0x40+(col*8)); for ( a=0;a<8;a++) { w_date(zifu[mun++]); } w_com(0xb8+(page*2)+1); w_com(0x40+(col*8)); for ( a=0;a<8;a++) { w_date(zifu[mun++]); } } /* LCD显示数字字库函数 */ void lcd_display_shuzi(uchar screen,uchar page,uchar col,uchar mun) { //screen:选择屏幕参数,page:选择页参数0-3,col:选择列参数0-7,mun:显示第几个汉字的参数 int a; mun=mun*16; select_screen(screen); w_com(0xb8+(page*2)); w_com(0x40+(col*8)); for ( a=0;a<8;a++) { w_date(shuzi[mun++]); } w_com(0xb8+(page*2)+1); w_com(0x40+(col*8)); for ( a=0;a<8;a++) { w_date(shuzi[mun++]); } } /* LCD初始化函数 */ void lcd_init() { w_com(0x3f); //LCD开显示 w_com(0xc0); //LCD行初始地址,共64行 w_com(0xb8); //LCD页初始地址,共8页 w_com(0x40); //LCD列初始地址,共64列 } /* LCD显示主函数 */ void main() { //第一行 int x; lcd_init(); //LCD初始化 clear_screen(0); //LCD清屏幕 lcd_display_shuzi(1,0,4,5); //LCD显示数字 lcd_display_shuzi(1,0,5,1); //LCD显示数字 lcd_display_hanzi(1,0,3,0); //LCD显示汉字 lcd_display_hanzi(2,0,0,1); //LCD显示汉字 //LCD字符汉字 lcd_display_hanzi(2,0,1,2); //LCD显示汉字 //第二行 lcd_display_zifuk(1,1,2,0); //LCD显示字符 lcd_display_zifuk(1,1,3,0); //LCD显示字符 lcd_display_zifuk(1,1,4,0); //LCD显示字符 lcd_display_zifuk(1,1,5,4); //LCD显示字符 lcd_display_shuzi(1,1,6,8); //LCD显示字符 lcd_display_shuzi(1,1,7,9); //LCD显示字符 lcd_display_shuzi(2,1,0,5); //LCD显示字符 lcd_display_shuzi(2,1,1,1); //LCD显示字符 lcd_display_zifuk(2,1,2,4); lcd_display_zifuk(2,1,3,1); lcd_display_zifuk(2,1,4,2); lcd_display_zifuk(2,1,5,3); //第三行 for(x=0;x<4;x++) { lcd_display_hanzi(1,2,x,3+x); //LCD显示汉字 } for(x=0;x<4;x++) { lcd_display_hanzi(2,2,x,7+x); //LCD显示汉字 } //第四行 for(x=0;x<4;x++) { lcd_display_zifuk(1,3,x,5+x); //LCD显示汉字 } lcd_display_shuzi(1,3,4,7); lcd_display_shuzi(1,3,5,5); lcd_display_shuzi(1,3,6,5); lcd_display_zifuk(1,3,7,9); lcd_display_shuzi(2,3,0,8); lcd_display_shuzi(2,3,1,9); lcd_display_shuzi(2,3,2,9); lcd_display_shuzi(2,3,3,5); lcd_display_shuzi(2,3,4,6); lcd_display_shuzi(2,3,5,8); lcd_display_shuzi(2,3,6,9); lcd_display_shuzi(2,3,7,2); while(1); /* while(1) { // LCD向上滚屏显示 lcd_rol(); } */ }
上传时间: 2013-11-08
上传用户:aeiouetla
C51 中的关键字关键字 用途 说明auto 存储种类说明 用以说明局部变量,缺省值为此break 程序语句 退出最内层循环case 程序语句 Switch 语句中的选择项char 数据类型说明 单字节整型数或字符型数据const 存储类型说明 在程序执行过程中不可更改的常量值continue 程序语句 转向下一次循环default 程序语句 Switch 语句中的失败选择项do 程序语句 构成do..while 循环结构double 数据类型说明 双精度浮点数else 程序语句 构成if..else 选择结构enum 数据类型说明 枚举extern 存储种类说明 在其他程序模块中说明了的全局变量flost 数据类型说明 单精度浮点数for 程序语句 构成for 循环结构goto 程序语句 构成goto 转移结构if 程序语句 构成if..else 选择结构int 数据类型说明 基本整型数long 数据类型说明 长整型数register 存储种类说明 使用CPU 内部寄存的变量return 程序语句 函数返回short 数据类型说明 短整型数signed 数据类型说明 有符号数,二进制数据的最高位为符号位sizeof 运算符 计算表达式或数据类型的字节数static 存储种类说明 静态变量struct 数据类型说明 结构类型数据swicth 程序语句 构成switch 选择结构typedef 数据类型说明 重新进行数据类型定义union 数据类型说明 联合类型数据unsigned 数据类型说明 无符号数数据void 数据类型说明 无类型数据volatile 数据类型说明 该变量在程序执行中可被隐含地改变while 程序语句 构成while 和do..while 循环结构ANSIC 标准关键字关键字 用途 说明bit 位标量声明 声明一个位标量或位类型的函数sbit 位标量声明 声明一个可位寻址变量
标签: C51
上传时间: 2013-10-08
上传用户:waves_0801