微电脑型单相交流集合式电表(单相二线系统) 特点: 精确度0.25%满刻度±1位数 可同时量测与显示交流电压,電流,頻率,瓦特,(功率因數/視在功率) 交流電壓,電流,瓦特皆為真正有效值(TRMS) 交流電流,瓦特之小數點可任意設定 瓦特單位W或KW可任意設定 CT比可任意設定(1至999) 輸入與輸出絕緣耐压 2仟伏特/1分鐘( 突波測試強度4仟伏特(1.2x50us) 數位RS-485界面 (Optional) 主要规格: 精确度: 0.1% F.S.±1 digit (Frequency) 0.25% F.S.±1 digit(ACA,ACV,Watt,VA) 0.25% F.S. ±0.25o(Power Factor) (-.300~+.300) 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 过载显示: "doFL" 显示值范围: 0~600.0V(Voltage) 0~999.9Hz(Frequency)(<20% for voltage INPUT) 0~19999 digit adjustable(Current,Watt,VA) 取样时间: 2 cycles/sec. RS-485通讯位址: "01"-"FF" RS-485传输速度: 19200/9600/4800/2400 selective RS-485通信协议: Modbus RTU mode 温度系数: 100ppm/℃ (0-50℃) 显示幕: Red high efficiency LEDs high 10.16 mm(0.4") 参数设定方式: Touch switches 记忆型式: Non-volatile E²PROM memory 绝缘抗阻: >100Mohm with 500V DC 绝缘耐压能力: 2KVac/1 min. (INPUT/output/power) 1600 Vdc (INPUT/output) 突波测试: ANSI c37.90a/1974,DIN-IEC 255-4 impulse voltage 4KV(1.2x50us) 使用环境条件: 0-50℃(20 to 90% RH non-condensed) 存放环境条件: 0-70℃(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: 2015-01-03
上传用户:几何公差
集合式直流电能表(小功率的) 特点: 精确度0.05%满刻度±1位数 可同时量测与显示/直流电压/电流/瓦特(千瓦)/瓦特小时(千瓦小时) 电压输入(DC0-99.99V/0-600.0V)自动变档功能 显示范围0-9999(电流/瓦特/千瓦),0至99999999(八位數瓦特小时)可任意规划 数位RS-485 界面 (Optional) 主要规格: 辅助电源消耗功率:<0.35VA(DC12V/DC24V) <0.5VA(DC48V) <1.5VA(AC90-240V(50/60Hz)) 精确度: 0.05% F.S. ±1 digit (23 ±5℃) 输入范围:Auto range(DC0-99.99V/0-600.0V(DC voltage)) 输入抗阻:>5MΩ(DC voltage) 取样时间:10 cycles/second(total) 过载显示: " doFL " 显示值范围: 0-9999 digit(DCA/W(KW)) 0-9999999.999 digit(WH/(KWH)) RS-485传输速度: 19200/9600/4800/2400 selective RS-485通讯位址: "01"-"FF"(0-255) RS-485通信协议: Modbus RTU mode 温度系数: 50ppm/℃ (0-50℃) 显示幕:Bight Red LEDs high 10.16 mm(0.4") 参数设定方式: Touch switches 记忆方式: Non-volatile E²PROM memory 绝缘耐压能力:2KVac/1min.(INPUT/output)(RS-485(Isolating)) 1600 Vdc (INPUT/output) (RS-485(Isolating)) 使用环境条件: 0-50℃(20 to 90% RH non-condensed) 存放环境条件: 0-70℃(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: 2013-11-20
上传用户:s363994250
特点: 精确度0.25%满刻度±1位數 可量测交流瓦特/乏爾/功率因數/相角 显示范围0- ±19999可任意规划 输入与输出绝缘耐压2仟伏特/1分钟(INPUT/output/power)) 突波测试强度4仟伏特(1.2x50us) 2组警报功能 (Optional) 15BIT类比输出功能 (Optional) 数位RS-485界面 (Optional)
上传时间: 2013-11-08
上传用户:330402686
Logger iButton devices have gained a lot of popularity with researchers. Although free evaluation software is easy to use and welldocumented, the choices and INPUTs that need to be made can sometimes be challenging. This application note explains technicalterms that are common with temperature logger iButtons and how they relate to each other. Additionally, it presents an algorithm tohelp users choose the necessary INPUT parameters, including the sample rate based on a user's needs and the available memory tostore the data.
上传时间: 2013-11-16
上传用户:xywhw1
Delta-sigma ADCs, with their high accuracy and high noiseimmunity, are ideal for directly measuring many typesof sensors. Nevertheless, INPUT sampling currents canoverwhelm high source impedances or low-bandwidth,micropower signal conditioning circuits. The LTC®2484family of delta sigma converters solves this problem bybalancing the INPUT currents, thussimplifying or eliminatingthe need for signal conditioning circuits.
上传时间: 2015-01-03
上传用户:潜水的三贡
在集成电路内建自测试的过程中,电路的测试功耗通常显著高于正常模式产生的功耗,因此低功耗内建自测试技术已成为当前的一个研究热点。为了减少被测电路内部节点的开关翻转活动率,研究了一种随机单输入跳变(Random Single INPUT Change,RSIC)测试向量生成器的设计方案,利用VHDL语言描述了内建自测试结构中的测试向量生成模块,进行了计算机模拟仿真并用FPGA(EP1C6Q240C8)加以硬件实现。实验结果证实了这种内建自测试原理电路的正确性和有效性。
上传时间: 2013-10-08
上传用户:llwap
The high defi nition multimedia interface (HDMI) is fastbecoming the de facto standard for passing digitalaudio and video data in home entertainment systems.This standard includes an I2C type bus called a displaydata channel (DDC) that is used to pass extended digitalinterface data (EDID) from the sinkdevice (such as adigital TV) to the source device (such as a digital A/Vreceiver). EDID includes vital information on the digitaldata formats that the sink device can accept. The HDMIspecifi cation requires that devices have less than 50pFof INPUT capacitance on their DDC bus lines, which canbe very diffi cult to meet. The LTC®4300A’s capacitancebuffering feature allows devices to pass the HDMI DDCINPUT capacitance compliance test with ease.
上传时间: 2013-11-21
上传用户:tian126vip
基于通用集成运算放大器,利用MASON公式设计了一个多功能二阶通用滤波器,能同时或分别实现低通、高通和带通滤波,也能设计成一个正交振荡器。电路的极点频率和品质因数能够独立、精确地调节。电路使用4个集成运放、2个电容和11个电阻,所有集成运放的反相端虚地。利用计算机仿真电路的通用滤波功能、极点频率和品质因数的独立控制和正交正弦振荡,从而证明该滤波器正确有效。 Abstract: A new multifunctional second-order filter based on OPs was presented by MASON formula. Functions, such as high-pass, band-pass, low-pass filtering, can be realized respectively and simultaneously, and can become a quadrature oscillator by modifying resistance ratio. Its pole angular frequency and quality factor can be tuned accurately and independently. The circuit presented contains four OPs, two capacitors, and eleven resistances, and inverting INPUT of all OPs is virtual ground. Its general filtering, the independent control of pole frequency and quality factor and quadrature sinusoidal oscillation were simulated by computer, and the result shows that the presented circuit is valid and effective.
上传时间: 2013-10-09
上传用户:13788529953
温湿度传感器 sht11 仿真程序 sbit out =P3^0; //加热口 //sbit INPUT =P1^1;//检测口 //sbit speek =P2^0;//报警 sbit clo =P3^7;//时钟 sbit ST =P3^5;//开始 sbit EOC =P3^6;//成功信号 sbit gwei =P3^4;//个位 sbit swei =P3^3;//十位 sbit bwei =P3^2;//百位 sbit qwei =P3^1;//千位 sbit speak =P0^0;//报警音 sbit bjled =P0^1;//报警灯 sbit zcled =P0^2;//正常LED int count; uchar xianzhi;//取转换结果 uchar seth;//高时间 uchar setl;//低时间 uchar seth_mi;//高时间 uchar setl_mi;//低时间 bit hlbz;//高低标志 bit clbz; bit spbz; ///定时中断程序/// void t0 (void) interrupt 1 using 0 { TH0=(65536-200)/256;//5ms*200=1000ms=1s TL0=(65536-200)%256; clo=!clo;//产生时钟 if(count>5000) { if(hlbz) { if(seth_mi==0){seth_mi=seth;hlbz=0;out=0;} else seth_mi--; } if(!hlbz) { if(setl_mi==0){setl_mi=setl;hlbz=1;out=1;} else setl_mi--; } count=0; } else count++; } ///////////// ///////延时/////// delay(int i) { while(--i); } ///////显示处理/////// xianshi() { int abcd=0; int i; for (i=0;i<5;i++) { abcd=xianzhi; gwei=1; swei=1; bwei=1; qwei=1; P1=dispcode[abcd/1000]; qwei=0; delay(70); qwei=1; abcd=abcd%1000; P1=dispcode[abcd/100]; bwei=0; delay(70); bwei=1; abcd=abcd%100; P1=dispcode[abcd/10]; swei=0; delay(70); swei=1; abcd=abcd%10; P1=dispcode[abcd]; gwei=0; delay(70); gwei=1; } } doing() { if(xianzhi>100) {bjled=0;speak=1;zcled=1;} else {bjled=1;speak=0;zcled=0;} } void main(void) { seth=60;//h60秒 setl=90;//l90秒 seth_mi=60;//h60秒 setl_mi=90;//l90秒 TMOD=0X01;//定时0 16位工作模式 TH0=(65536-200)/256; TL0=(65536-200)%256; TR0=1; //开始计时 ET0=1; //开定时0中断 EA=1; //开全中断 while(1) { ST=0; _nop_(); ST=1; _nop_(); ST=0; // EOC=0; xianshi(); while(!EOC) { xianshi(); } xianzhi=P2; xianshi(); doing(); } }
上传时间: 2013-10-16
上传用户:黄蛋的蛋黄
超声波传感器适用于对大幅的平面进行静止测距。普通的超声波传感器测距范围大概是 2cm~450cm,分辨率3mm(淘宝卖家说的,笔者测试环境没那么好,个人实测比较稳定的 距离10cm~2m 左右,超过此距离就经常有偶然不准确的情况发生了,当然不排除笔者技术 问题。) 测试对象是淘宝上面最便宜的SRF-04 超声波传感器,有四个脚:5v 电源脚(Vcc),触发控制端(Trig),接收端(Echo),地端(GND) 附:SRF 系列超声波传感器参数比较 模块工作原理: 采用IO 触发测距,给至少10us 的高电平信号; 模块自动发送8个40KHz 的方波,自动检测是否有信号返回; 有信号返回,通过IO 输出一高电平,高电平持续的时间就是超声波从发射到返回的时间.测试距离=(高电平时间*声速(340m/s))/2; 电路连接方法 Arduino 程序例子: constintTrigPin = 2; constintEchoPin = 3; floatcm; voidsetup() { Serial.begin(9600); pinMode(TrigPin, OUTPUT); pinMode(EchoPin, INPUT); } voidloop() { digitalWrite(TrigPin, LOW); //低高低电平发一个短时间脉冲去TrigPin delayMicroseconds(2); digitalWrite(TrigPin, HIGH); delayMicroseconds(10); digitalWrite(TrigPin, LOW); cm = pulseIn(EchoPin, HIGH) / 58.0; //将回波时间换算成cm cm = (int(cm * 100.0)) / 100.0; //保留两位小数 Serial.print(cm); Serial.print("cm"); Serial.println(); delay(1000); }
上传时间: 2013-11-01
上传用户:xiaoyuer