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同步<b>开关噪声</b>

  • 280W移相全桥软开关DC

    移相控制的全桥PWM变换器是最常用的中大功率DC/DC变换电路拓扑形式之一。移相PWM控制方式利用开关管的结电容和高频变压器的漏电感或原边串联电感作为谐振元件,使开关管能进行零电压开通和关断,从而有效地降低了电路的开关损耗和开关噪声,减少了器件开关过程中产生的电磁干扰,为变换器提高开关频率、提高效率、减小尺寸及减轻质量提供了良好的条件。然而,传统的移相全桥变换器的输出整流二极管存在反向恢复过程,会引起寄生振荡,二极管上存在很高的尖峰电压,需增加阻容吸收回路进行抑制,文献提出了两种带箝位二极管的拓扑,可以很好地抑制寄生振荡。本文采取文献提出的拓扑结构,设计了一台280 W移相全桥软开关DC/DC变换器,该变换器输入电压为194~310 V,输出电压为76V。

    标签: 280W 移相全桥 软开关

    上传时间: 2014-08-30

    上传用户:thing20

  • 信号完整性知识基础(pdf)

    现代的电子设计和芯片制造技术正在飞速发展,电子产品的复杂度、时钟和总线频率等等都呈快速上升趋势,但系统的电压却不断在减小,所有的这一切加上产品投放市场的时间要求给设计师带来了前所未有的巨大压力。要想保证产品的一次性成功就必须能预见设计中可能出现的各种问题,并及时给出合理的解决方案,对于高速的数字电路来说,最令人头大的莫过于如何确保瞬时跳变的数字信号通过较长的一段传输线,还能完整地被接收,并保证良好的电磁兼容性,这就是目前颇受关注的信号完整性(SI)问题。本章就是围绕信号完整性的问题,让大家对高速电路有个基本的认识,并介绍一些相关的基本概念。 第一章 高速数字电路概述.....................................................................................51.1 何为高速电路...............................................................................................51.2 高速带来的问题及设计流程剖析...............................................................61.3 相关的一些基本概念...................................................................................8第二章 传输线理论...............................................................................................122.1 分布式系统和集总电路.............................................................................122.2 传输线的RLCG 模型和电报方程...............................................................132.3 传输线的特征阻抗.....................................................................................142.3.1 特性阻抗的本质.................................................................................142.3.2 特征阻抗相关计算.............................................................................152.3.3 特性阻抗对信号完整性的影响.........................................................172.4 传输线电报方程及推导.............................................................................182.5 趋肤效应和集束效应.................................................................................232.6 信号的反射.................................................................................................252.6.1 反射机理和电报方程.........................................................................252.6.2 反射导致信号的失真问题.................................................................302.6.2.1 过冲和下冲.....................................................................................302.6.2.2 振荡:.............................................................................................312.6.3 反射的抑制和匹配.............................................................................342.6.3.1 串行匹配.........................................................................................352.6.3.1 并行匹配.........................................................................................362.6.3.3 差分线的匹配.................................................................................392.6.3.4 多负载的匹配.................................................................................41第三章 串扰的分析...............................................................................................423.1 串扰的基本概念.........................................................................................423.2 前向串扰和后向串扰.................................................................................433.3 后向串扰的反射.........................................................................................463.4 后向串扰的饱和.........................................................................................463.5 共模和差模电流对串扰的影响.................................................................483.6 连接器的串扰问题.....................................................................................513.7 串扰的具体计算.........................................................................................543.8 避免串扰的措施.........................................................................................57第四章 EMI 抑制....................................................................................................604.1 EMI/EMC 的基本概念..................................................................................604.2 EMI 的产生..................................................................................................614.2.1 电压瞬变.............................................................................................614.2.2 信号的回流.........................................................................................624.2.3 共模和差摸EMI ..................................................................................634.3 EMI 的控制..................................................................................................654.3.1 屏蔽.....................................................................................................654.3.1.1 电场屏蔽.........................................................................................654.3.1.2 磁场屏蔽.........................................................................................674.3.1.3 电磁场屏蔽.....................................................................................674.3.1.4 电磁屏蔽体和屏蔽效率.................................................................684.3.2 滤波.....................................................................................................714.3.2.1 去耦电容.........................................................................................714.3.2.3 磁性元件.........................................................................................734.3.3 接地.....................................................................................................744.4 PCB 设计中的EMI.......................................................................................754.4.1 传输线RLC 参数和EMI ........................................................................764.4.2 叠层设计抑制EMI ..............................................................................774.4.3 电容和接地过孔对回流的作用.........................................................784.4.4 布局和走线规则.................................................................................79第五章 电源完整性理论基础...............................................................................825.1 电源噪声的起因及危害.............................................................................825.2 电源阻抗设计.............................................................................................855.3 同步开关噪声分析.....................................................................................875.3.1 芯片内部开关噪声.............................................................................885.3.2 芯片外部开关噪声.............................................................................895.3.3 等效电感衡量SSN ..............................................................................905.4 旁路电容的特性和应用.............................................................................925.4.1 电容的频率特性.................................................................................935.4.3 电容的介质和封装影响.....................................................................955.4.3 电容并联特性及反谐振.....................................................................955.4.4 如何选择电容.....................................................................................975.4.5 电容的摆放及Layout ........................................................................99第六章 系统时序.................................................................................................1006.1 普通时序系统...........................................................................................1006.1.1 时序参数的确定...............................................................................1016.1.2 时序约束条件...................................................................................1066.2 源同步时序系统.......................................................................................1086.2.1 源同步系统的基本结构...................................................................1096.2.2 源同步时序要求...............................................................................110第七章 IBIS 模型................................................................................................1137.1 IBIS 模型的由来...................................................................................... 1137.2 IBIS 与SPICE 的比较.............................................................................. 1137.3 IBIS 模型的构成...................................................................................... 1157.4 建立IBIS 模型......................................................................................... 1187.4 使用IBIS 模型......................................................................................... 1197.5 IBIS 相关工具及链接..............................................................................120第八章 高速设计理论在实际中的运用.............................................................1228.1 叠层设计方案...........................................................................................1228.2 过孔对信号传输的影响...........................................................................1278.3 一般布局规则...........................................................................................1298.4 接地技术...................................................................................................1308.5 PCB 走线策略............................................................................................134

    标签: 信号完整性

    上传时间: 2013-11-01

    上传用户:xitai

  • 高速PCB基础理论及内存仿真技术(经典推荐)

    第一部分 信号完整性知识基础.................................................................................5第一章 高速数字电路概述.....................................................................................51.1 何为高速电路...............................................................................................51.2 高速带来的问题及设计流程剖析...............................................................61.3 相关的一些基本概念...................................................................................8第二章 传输线理论...............................................................................................122.1 分布式系统和集总电路.............................................................................122.2 传输线的RLCG 模型和电报方程...............................................................132.3 传输线的特征阻抗.....................................................................................142.3.1 特性阻抗的本质.................................................................................142.3.2 特征阻抗相关计算.............................................................................152.3.3 特性阻抗对信号完整性的影响.........................................................172.4 传输线电报方程及推导.............................................................................182.5 趋肤效应和集束效应.................................................................................232.6 信号的反射.................................................................................................252.6.1 反射机理和电报方程.........................................................................252.6.2 反射导致信号的失真问题.................................................................302.6.2.1 过冲和下冲.....................................................................................302.6.2.2 振荡:.............................................................................................312.6.3 反射的抑制和匹配.............................................................................342.6.3.1 串行匹配.........................................................................................352.6.3.1 并行匹配.........................................................................................362.6.3.3 差分线的匹配.................................................................................392.6.3.4 多负载的匹配.................................................................................41第三章 串扰的分析...............................................................................................423.1 串扰的基本概念.........................................................................................423.2 前向串扰和后向串扰.................................................................................433.3 后向串扰的反射.........................................................................................463.4 后向串扰的饱和.........................................................................................463.5 共模和差模电流对串扰的影响.................................................................483.6 连接器的串扰问题.....................................................................................513.7 串扰的具体计算.........................................................................................543.8 避免串扰的措施.........................................................................................57第四章 EMI 抑制....................................................................................................604.1 EMI/EMC 的基本概念..................................................................................604.2 EMI 的产生..................................................................................................614.2.1 电压瞬变.............................................................................................614.2.2 信号的回流.........................................................................................624.2.3 共模和差摸EMI ..................................................................................634.3 EMI 的控制..................................................................................................654.3.1 屏蔽.....................................................................................................654.3.1.1 电场屏蔽.........................................................................................654.3.1.2 磁场屏蔽.........................................................................................674.3.1.3 电磁场屏蔽.....................................................................................674.3.1.4 电磁屏蔽体和屏蔽效率.................................................................684.3.2 滤波.....................................................................................................714.3.2.1 去耦电容.........................................................................................714.3.2.3 磁性元件.........................................................................................734.3.3 接地.....................................................................................................744.4 PCB 设计中的EMI.......................................................................................754.4.1 传输线RLC 参数和EMI ........................................................................764.4.2 叠层设计抑制EMI ..............................................................................774.4.3 电容和接地过孔对回流的作用.........................................................784.4.4 布局和走线规则.................................................................................79第五章 电源完整性理论基础...............................................................................825.1 电源噪声的起因及危害.............................................................................825.2 电源阻抗设计.............................................................................................855.3 同步开关噪声分析.....................................................................................875.3.1 芯片内部开关噪声.............................................................................885.3.2 芯片外部开关噪声.............................................................................895.3.3 等效电感衡量SSN ..............................................................................905.4 旁路电容的特性和应用.............................................................................925.4.1 电容的频率特性.................................................................................935.4.3 电容的介质和封装影响.....................................................................955.4.3 电容并联特性及反谐振.....................................................................955.4.4 如何选择电容.....................................................................................975.4.5 电容的摆放及Layout ........................................................................99第六章 系统时序.................................................................................................1006.1 普通时序系统...........................................................................................1006.1.1 时序参数的确定...............................................................................1016.1.2 时序约束条件...................................................................................1063.2 高速设计的问题.......................................................................................2093.3 SPECCTRAQuest SI Expert 的组件.......................................................2103.3.1 SPECCTRAQuest Model Integrity .................................................2103.3.2 SPECCTRAQuest Floorplanner/Editor .........................................2153.3.3 Constraint Manager .......................................................................2163.3.4 SigXplorer Expert Topology Development Environment .......2233.3.5 SigNoise 仿真子系统......................................................................2253.3.6 EMControl .........................................................................................2303.3.7 SPECCTRA Expert 自动布线器.......................................................2303.4 高速设计的大致流程...............................................................................2303.4.1 拓扑结构的探索...............................................................................2313.4.2 空间解决方案的探索.......................................................................2313.4.3 使用拓扑模板驱动设计...................................................................2313.4.4 时序驱动布局...................................................................................2323.4.5 以约束条件驱动设计.......................................................................2323.4.6 设计后分析.......................................................................................233第四章 SPECCTRAQUEST SIGNAL EXPLORER 的进阶运用..........................................2344.1 SPECCTRAQuest Signal Explorer 的功能包括:................................2344.2 图形化的拓扑结构探索...........................................................................2344.3 全面的信号完整性(Signal Integrity)分析.......................................2344.4 完全兼容 IBIS 模型...............................................................................2344.5 PCB 设计前和设计的拓扑结构提取.......................................................2354.6 仿真设置顾问...........................................................................................2354.7 改变设计的管理.......................................................................................2354.8 关键技术特点...........................................................................................2364.8.1 拓扑结构探索...................................................................................2364.8.2 SigWave 波形显示器........................................................................2364.8.3 集成化的在线分析(Integration and In-process Analysis) .236第五章 部分特殊的运用...............................................................................2375.1 Script 指令的使用..................................................................................2375.2 差分信号的仿真.......................................................................................2435.3 眼图模式的使用.......................................................................................249第四部分:HYPERLYNX 仿真工具使用指南............................................................251第一章 使用LINESIM 进行前仿真.......................................................................2511.1 用LineSim 进行仿真工作的基本方法...................................................2511.2 处理信号完整性原理图的具体问题.......................................................2591.3 在LineSim 中如何对传输线进行设置...................................................2601.4 在LineSim 中模拟IC 元件.....................................................................2631.5 在LineSim 中进行串扰仿真...................................................................268第二章 使用BOARDSIM 进行后仿真......................................................................2732.1 用BOARDSIM 进行后仿真工作的基本方法...................................................2732.2 BoardSim 的进一步介绍..........................................................................2922.3 BoardSim 中的串扰仿真..........................................................................309

    标签: PCB 内存 仿真技术

    上传时间: 2013-11-07

    上传用户:aa7821634

  • 全国第四届java技术与应用交流论文集 一、专题综述 1.JXT--A PEER-TO-PEER TECHNOLOG.. 2.JAVA智能卡技术及其它世界各国的广泛.. 3.选择java

    全国第四届java技术与应用交流论文集 一、专题综述 1.JXT--A PEER-TO-PEER TECHNOLOG.. 2.JAVA智能卡技术及其它世界各国的广泛.. 3.选择java战略决策 .... 二、Java平台的应用与开发 A.多级网站模式中数据同步机制的研究 B.构件与java平台下的电子商务构件开发 C.一个用JAVA实现的并行计算的应用实例 .... 三、Java技术与应用 1.JAVA子集部分求值器的约束时间分析 2.基于J2EE的电子书店 3.用JAVA语言实现网上定餐

    标签: java PEER-TO-PEER TECHNOLOG JAVA

    上传时间: 2014-06-21

    上传用户:杜莹12345

  • 红外解码程序

    /*  * _168ZHONGDUAN2.c  *  * Created: 2014/11/2 15:12:45  *  Author: lenovo  */  #include <avr/io.h> #include <avr/iom168pa.h> #include <avr/interrupt.h> #include <util/delay.h> #include <avr/eeprom.h> //#include <util/delay_basic.h> //unsigned char const SEGtable[]={0x3f,0x06,0x5b,0x4f,0x66,0x6d,0x7d,0x07,0x7f,0x6f,0x40}; #define BIT(x) (1<<(x)) #include<avr/signal.h>       #include<avr/pgmspace.h>  #include<util/delay.h>  #include<avr/eeprom.h> #define setb(val,bitn) (val|=(1<<(bitn)))//设置某IO口某位为1 #define clr(val,bitn) (val&=~(1<<(bitn)))//设置某IO口某位为0 #define get(val,bitn) (val&(1<<(bitn)))//读取某位状态 //uchar ACT[8] ={0xfe,0xfd,0xfb,0xf7,0xef,0xdf,0xbf,0x7f}; #define CPL_BIT(x,y) (x^=(1<<y)) #define CLR_BIT(x,y) (x&=~(1<<y)) #define  SET_1(a,b) a|=(1<<b)   #define  CLE_0(a,b) a&=~(1<<b)    /*------宏定义------*/  #include <avr/wdt.h> #include <avr/sleep.h>    #include <avr/interrupt.h> #include <avr/pgmspace.h> #include <util/delay.h> #include <avr/eeprom.h> #define setb(val,bitn) (val|=(1<<(bitn)))//设置某IO口某位为1 #define clr(val,bitn) (val&=~(1<<(bitn)))//设置某IO口某位为0 #define get(val,bitn) (val&(1<<(bitn)))//读取某位状态  #define uint8  unsigned char  #define uint16 unsigned int  #define   P_LCDCS1 setb(PORTB,5)  #define  P_LCDCS0 clr(PORTB,5)  #define   P_LCDRST1 setb(PORTB,1)  #define   P_LCDRST0 clr(PORTB,1)  #define  P_LCDRS1 setb(PORTB,2)  #define   P_LCDRS0 clr(PORTB,2)  #define  P_LCDDAT1 setb(PORTB,4)  #define   P_LCDDAT0 clr(PORTB,4)  #define P_LCDCLK1 setb(PORTB,3)  #define   P_LCDCLK0 clr(PORTB,3) //#define     LCD_ //-----页地址定义----- #define     Page1       0 #define     Page2       1 #define     Page3       2 #define     Page4       3 #define     Page5       4 #define     Page6       5 #define     Page7       6 #define     Page8       7 //-----列地址定义-----每8列地址增1 #define     List8_1        0 #define     List8_2        7 #define     List8_3        15 #define     List8_4        23 #define     List8_5        31 #define     List8_6        39 #define     List8_7        47 #define     List8_8        55 #define     List8_9        63 #define     List8_10       71 #define     List8_11       79 #define     List8_12       87 #define     List8_13       95 #define     List8_14       103 #define     List8_15       111 #define     List8_16       119 //#define     List8_17       127 //-----列地址定义-----每16列地址增1 #define     List16_1        0 #define     List16_2        15 #define     List16_3        31 #define     List16_4        47 #define     List16_5        63 #define     List16_6        79 #define     List16_7        95 #define     List16_8        111 //---------------------------------- #define     STR_CHARG       "Charge"    //提示充电 #define     STR_PRCE        "%"         //电量百分比 #define     STR_ERR         "Err" //出错显示 #define     STR_OFF         "OFF"  //关机显示 //待机显示 #define     STR_WAIT1         "Portable UPS"  #define     STR_WAIT2         "110V/60HZ"  #define     STR_WAIT3         "Select:DC OR AC"  #define     STR_WAIT4         "BATTERY:"  //开机显示 #define     STR_OUTSTATUS      "Out Status:"  #define     STR_DCOUT12V         "DC12V"  #define     STR_DCOUT5V         "DC5V"  #define     STR_ACOUT         "AC110V" //#define     STR_MAOHAO         ":"   //====================================== extern uint8  LOCKA[2][16] ; //extern uint8 code BATS[10][16] ; extern uint8  BAT2S[12][32] ; extern uint8  NC[] ; extern uint8  mao_hao[] ; extern uint8  num1[] ; extern uint8  num2[] ; extern uint8 num3[] ; extern uint8  num4[] ; extern uint8  num5[] ; extern uint8 num6[] ; extern uint8  num7[] ; extern uint8  num8[] ; extern uint8  num9[] ; extern uint8  Tab_Ascii_8x16[95][16] ; extern uint8  Tab_Ascii_5x7[95][5] ; extern uint8  zhuang1[] ; extern uint8  tai1[] ; extern uint8  shi1[] ; extern uint8  yong1[] ; //---------------------------------- //extern void LcdWriteCommand(uint8 data1) ; extern void Display_Graphic_32x32(uint8 page,uint8 column,uint8 *dp) ; extern void Display_Graphic_32x16(uint8 page,uint8 column,uint8 *dp) ; extern void Display_Graphic_16x16(uint8 page,uint8 column,uint8 *dp) ; extern void Display_Graphic_8x16(uint8 page,uint8 column,uint8 *dp) ; extern void Display_String_8x16(uint8 page,uint8 column,uint8 *text) ; extern void Display_Num_8x16(uint8 page,uint8 column,uint8 Num) ; extern void Display_Digital_8x16(uint8 page,uint8 column,uint8 *a) ; extern void Display_Nop_8x16(uint8 page,uint8 column,uint8 DatLong) ; extern void Display_String_5x7(uint8 page,uint8 column,uint8 *text) ; extern void Full_Display(void) ; extern void Clear_Screen(void) ; extern void Init_lcd12864(void) ; //#endif   //========c12864.c============================================== /*************************************************** LCD:晶联讯电子 JLX12864G-086-PN(不带字库IC-UC1701X) 仅支持串行驱动方式 ***************************************************/ //#include "global.h"  //#include "c12864.h"   #define     Tab_Ascii_8x16_CALL1  //粗体字形 #define     Tab_Ascii_8x16_CALL2  //细体字形 #define     Tab_Ascii_5x7_CALL #define     Display_Graphic_32x32_CALL #define     Display_Graphic_32x16_CALL #define     Display_Graphic_16x16_CALL #define     Display_Graphic_8x16_CALL #define     Display_String_8x16_CALL     //显示字符串 #define     Display_Num_8x16_CALL        //显示单个数据0-9 #define     Display_Digital_8x16_CALL    //显示数据0-9999 #define     Display_Nop_8x16_CALL        //填充8*16的空字符N个 #define     Display_String_5x7_CALL #define     Full_Display_CALL   //==============================================================================  uint8 aa[]={0,1,2,3,4,5,6,7,8,9};   uint8 LOCKA[2][16]={ //--   童锁符号  -- //--    此字体下对应的点阵为:宽x高=16x16   -- //0x00, 0x00, 0xc0, 0xe0, 0xf0, 0xd8, 0xcc, 0xc4, 0xc4, 0xcc, 0xd8, 0xf0, 0xe0, 0xc0, 0x00, 0x00, //0x00, 0x00, 0x3f, 0x3f, 0x3f, 0x3f, 0x3f, 0x3f, 0x3f, 0x3f, 0x3f, 0x3f, 0x3f, 0x3f, 0x00, 0x00, 0x00, 0x00, 0xc0, 0xe0, 0xb0, 0x98, 0x8c, 0x8c, 0x8c, 0x8c, 0x98, 0xb0, 0xe0, 0xc0, 0x00, 0x00, 0x00, 0x00, 0x3f, 0x3f, 0x3f, 0x3f, 0x3f, 0x3f, 0x3f, 0x3f, 0x3f, 0x3f, 0x3f, 0x3f, 0x00, 0x00, } ; const PROGMEM uint8_t  BATS[10][16]={ //--   电池符号  -- //--    此字体下对应的点阵为:宽x高=16x16   -- 0x00, 0x00, 0x00, 0xf8, 0x08, 0x08, 0x0c, 0x0e, 0x0e, 0x0c, 0x08, 0x08, 0xf8, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x7f, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x40, 0x7f, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xf8, 0x08, 0x08, 0x0c, 0x0e, 0x0e, 0x0c, 0x08, 0x08, 0xf8, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x7f, 0x70, 0x70, 0x70, 0x70, 0x70, 0x70, 0x70, 0x70, 0x7f, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xf8, 0x08, 0x08, 0x0c, 0x0e, 0x0e, 0x0c, 0x08, 0x08, 0xf8, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x7f, 0x7e, 0x7e, 0x7e, 0x7e, 0x7e, 0x7e, 0x7e, 0x7e, 0x7f, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xf8, 0xc8, 0xc8, 0xcc, 0xce, 0xce, 0xcc, 0xc8, 0xc8, 0xf8, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x7f, 0x7f, 0x7f, 0x7f, 0x7f, 0x7f, 0x7f, 0x7f, 0x7f, 0x7f, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xf8, 0xf8, 0xf8, 0xfc, 0xfe, 0xfe, 0xfc, 0xf8, 0xf8, 0xf8, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x7f, 0x7f, 0x7f, 0x7f, 0x7f, 0x7f, 0x7f, 0x7f, 0x7f, 0x7f, 0x00, 0x00, 0x00, }; const PROGMEM uint8_t  BAT2S1[12][32]={ /*--   电池符号  --*/ /*--    此字体下对应的点阵为:宽x高=32x16   --*/ {0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xf8, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0xf8, 0xc0, 0x80}, {0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x3f, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x3f, 0x07, 0x03}, {0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xf8, 0x08, 0x08, 0xe8, 0xe8, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0xf8, 0xc0, 0x80}, {0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x3f, 0x20, 0x20, 0x2f, 0x2f, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x3f, 0x07, 0x03}, {0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xf8, 0x08, 0x08, 0xe8, 0xe8, 0x08, 0x08, 0xe8, 0xe8, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0xf8, 0xc0, 0x80}, {0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x3f, 0x20, 0x20, 0x2f, 0x2f, 0x20, 0x20, 0x2f, 0x2f, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x3f, 0x07, 0x03}, {0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xf8, 0x08, 0x08, 0xe8, 0xe8, 0x08, 0x08, 0xe8, 0xe8, 0x08, 0x08, 0xe8, 0xe8, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0xf8, 0xc0, 0x80}, {0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x3f, 0x20, 0x20, 0x2f, 0x2f, 0x20, 0x20, 0x2f, 0x2f, 0x20, 0x20, 0x2f, 0x2f, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x3f, 0x07, 0x03}, {0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xf8, 0x08, 0x08, 0xe8, 0xe8, 0x08, 0x08, 0xe8, 0xe8, 0x08, 0x08, 0xe8, 0xe8, 0x08, 0x08, 0xe8, 0xe8, 0x08, 0x08, 0x08, 0x08, 0x08, 0x08, 0xf8, 0xc0, 0x80}, {0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x3f, 0x20, 0x20, 0x2f, 0x2f, 0x20, 0x20, 0x2f, 0x2f, 0x20, 0x20, 0x2f, 0x2f, 0x20, 0x20, 0x2f, 0x2f, 0x20, 0x20, 0x20, 0x20, 0x20, 0x20, 0x3f, 0x07, 0x03}, {0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xf8, 0x08, 0x08, 0xe8, 0xe8, 0x08, 0x08, 0xe8, 0xe8, 0x08, 0x08, 0xe8, 0xe8, 0x08, 0x08, 0xe8, 0xe8, 0x08, 0x08, 0xe8, 0xe8, 0x08, 0x08, 0xf8, 0xc0, 0x80}, {0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x3f, 0x20, 0x20, 0x2f, 0x2f, 0x20, 0x20, 0x2f, 0x2f, 0x20, 0x20, 0x2f, 0x2f, 0x20, 0x20, 0x2f, 0x2f, 0x20, 0x20, 0x2f, 0x2f, 0x20, 0x20, 0x3f, 0x07, 0x03}, } ;   const PROGMEM uint8_t  BAT2S2[2][32]={ //--   电池符号 不显示 -- //--    此字体下对应的点阵为:宽x高=32x16   -- 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, } ;  uint8 NC[]={ /*--  文字: 空符号  --*/ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, } ; uint8 mao_hao[]={ /*--  文字:  : (冒号) --*/ /*--  宋体12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0xC0,0xC0,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x00,0x00,0x00}; uint8  num0[]={ /*--  文字:  0  --*/ /*--  宋体12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0xE0,0x10,0x08,0x08,0x10,0xE0,0x00,0x00,0x0F,0x10,0x20,0x20,0x10,0x0F,0x00 }; uint8  num1[]={ /*--  文字:  1  --*/ /*--  宋体12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x10,0x10,0xF8,0x00,0x00,0x00,0x00,0x00,0x20,0x20,0x3F,0x20,0x20,0x00,0x00 }; uint8  num2[]={ /*--  文字:  2  --*/ /*--  宋体12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x70,0x08,0x08,0x08,0x88,0x70,0x00,0x00,0x30,0x28,0x24,0x22,0x21,0x30,0x00  //细体 //0x08,0x0C,0x84,0xC4,0x64,0x3C,0x18,0x00,0x0E,0x0F,0x09,0x08,0x08,0x0C,0x0C,0x00, // 粗体 }; uint8  num3[]={ /*--  文字:  3  --*/ /*--  宋体12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x30,0x08,0x88,0x88,0x48,0x30,0x00,0x00,0x18,0x20,0x20,0x20,0x11,0x0E,0x00 }; uint8  num4[]={ /*--  文字:  4  --*/ /*--  宋体12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0xC0,0x20,0x10,0xF8,0x00,0x00,0x00,0x07,0x04,0x24,0x24,0x3F,0x24,0x00 }; uint8  num5[]={ /*--  文字:  5  --*/ /*--  宋体12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0xF8,0x08,0x88,0x88,0x08,0x08,0x00,0x00,0x19,0x21,0x20,0x20,0x11,0x0E,0x00 }; uint8  num6[]={ /*--  文字:  6  --*/ /*--  宋体12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0xE0,0x10,0x88,0x88,0x18,0x00,0x00,0x00,0x0F,0x11,0x20,0x20,0x11,0x0E,0x00 }; uint8  num7[]={ /*--  文字:  7  --*/ /*--  宋体12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x38,0x08,0x08,0xC8,0x38,0x08,0x00,0x00,0x00,0x00,0x3F,0x00,0x00,0x00,0x00 }; uint8  num8[]={ /*--  文字:  8  --*/ /*--  宋体12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x70,0x88,0x08,0x08,0x88,0x70,0x00,0x00,0x1C,0x22,0x21,0x21,0x22,0x1C,0x00 }; uint8  num9[]={ /*--  文字:  9  --*/ /*--  宋体12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0xE0,0x10,0x08,0x08,0x10,0xE0,0x00,0x00,0x00,0x31,0x22,0x22,0x11,0x0F,0x00 }; //=======8x16======================================================================= #ifdef  Display_String_8x16_CALL   //Tab_Ascii_8x16_CALL    const PROGMEM uint8_t Tab_Ascii_8x161[95][16]={  //粗体字形  0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, // - -  0x00,0x00,0x38,0xFC,0xFC,0x38,0x00,0x00,0x00,0x00,0x00,0x0D,0x0D,0x00,0x00,0x00, // -!-  0x00,0x0E,0x1E,0x00,0x00,0x1E,0x0E,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, // -"-  0x20,0xF8,0xF8,0x20,0xF8,0xF8,0x20,0x00,0x02,0x0F,0x0F,0x02,0x0F,0x0F,0x02,0x00, // -#-  0x38,0x7C,0x44,0x47,0x47,0xCC,0x98,0x00,0x03,0x06,0x04,0x1C,0x1C,0x07,0x03,0x00, // -$-  0x30,0x30,0x00,0x80,0xC0,0x60,0x30,0x00,0x0C,0x06,0x03,0x01,0x00,0x0C,0x0C,0x00, // -%-  0x80,0xD8,0x7C,0xE4,0xBC,0xD8,0x40,0x00,0x07,0x0F,0x08,0x08,0x07,0x0F,0x08,0x00, // -&-  0x00,0x10,0x1E,0x0E,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, // -'-  0x00,0x00,0xF0,0xF8,0x0C,0x04,0x00,0x00,0x00,0x00,0x03,0x07,0x0C,0x08,0x00,0x00, // -(-  0x00,0x00,0x04,0x0C,0xF8,0xF0,0x00,0x00,0x00,0x00,0x08,0x0C,0x07,0x03,0x00,0x00, // -)-  0x80,0xA0,0xE0,0xC0,0xC0,0xE0,0xA0,0x80,0x00,0x02,0x03,0x01,0x01,0x03,0x02,0x00, // -*-  0x00,0x80,0x80,0xE0,0xE0,0x80,0x80,0x00,0x00,0x00,0x00,0x03,0x03,0x00,0x00,0x00, // -+-  0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x10,0x1E,0x0E,0x00,0x00,0x00, // -,-  0x80,0x80,0x80,0x80,0x80,0x80,0x80,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, // ---  0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x0C,0x0C,0x00,0x00,0x00, // -.-  0x00,0x00,0x00,0x80,0xC0,0x60,0x30,0x00,0x0C,0x06,0x03,0x01,0x00,0x00,0x00,0x00, // -/-  0xF8,0xFC,0x04,0xC4,0x24,0xFC,0xF8,0x00,0x07,0x0F,0x09,0x08,0x08,0x0F,0x07,0x00, // -0-  0x00,0x10,0x18,0xFC,0xFC,0x00,0x00,0x00,0x00,0x08,0x08,0x0F,0x0F,0x08,0x08,0x00, // -1-  0x08,0x0C,0x84,0xC4,0x64,0x3C,0x18,0x00,0x0E,0x0F,0x09,0x08,0x08,0x0C,0x0C,0x00, // -2-  0x08,0x0C,0x44,0x44,0x44,0xFC,0xB8,0x00,0x04,0x0C,0x08,0x08,0x08,0x0F,0x07,0x00, // -3-  0xC0,0xE0,0xB0,0x98,0xFC,0xFC,0x80,0x00,0x00,0x00,0x00,0x08,0x0F,0x0F,0x08,0x00, // -4-  0x7C,0x7C,0x44,0x44,0xC4,0xC4,0x84,0x00,0x04,0x0C,0x08,0x08,0x08,0x0F,0x07,0x00, // -5-  0xF0,0xF8,0x4C,0x44,0x44,0xC0,0x80,0x00,0x07,0x0F,0x08,0x08,0x08,0x0F,0x07,0x00, // -6-  0x0C,0x0C,0x04,0x84,0xC4,0x7C,0x3C,0x00,0x00,0x00,0x0F,0x0F,0x00,0x00,0x00,0x00, // -7-  0xB8,0xFC,0x44,0x44,0x44,0xFC,0xB8,0x00,0x07,0x0F,0x08,0x08,0x08,0x0F,0x07,0x00, // -8-  0x38,0x7C,0x44,0x44,0x44,0xFC,0xF8,0x00,0x00,0x08,0x08,0x08,0x0C,0x07,0x03,0x00, // -9-  0x00,0x00,0x00,0x30,0x30,0x00,0x00,0x00,0x00,0x00,0x00,0x06,0x06,0x00,0x00,0x00, // -:-  0x00,0x00,0x00,0x30,0x30,0x00,0x00,0x00,0x00,0x00,0x08,0x0E,0x06,0x00,0x00,0x00, // -;-  0x00,0x80,0xC0,0x60,0x30,0x18,0x08,0x00,0x00,0x00,0x01,0x03,0x06,0x0C,0x08,0x00, // -<-  0x40,0x40,0x40,0x40,0x40,0x40,0x40,0x00,0x02,0x02,0x02,0x02,0x02,0x02,0x02,0x00, // -=-  0x00,0x08,0x18,0x30,0x60,0xC0,0x80,0x00,0x00,0x08,0x0C,0x06,0x03,0x01,0x00,0x00, // ->-  0x18,0x1C,0x04,0xC4,0xE4,0x3C,0x18,0x00,0x00,0x00,0x00,0x0D,0x0D,0x00,0x00,0x00, // -?-  0xF0,0xF8,0x08,0xC8,0xC8,0xF8,0xF0,0x00,0x07,0x0F,0x08,0x0B,0x0B,0x0B,0x01,0x00, // -@-  0xE0,0xF0,0x98,0x8C,0x98,0xF0,0xE0,0x00,0x0F,0x0F,0x00,0x00,0x00,0x0F,0x0F,0x00, // -A-  0x04,0xFC,0xFC,0x44,0x44,0xFC,0xB8,0x00,0x08,0x0F,0x0F,0x08,0x08,0x0F,0x07,0x00, // -B-  0xF0,0xF8,0x0C,0x04,0x04,0x0C,0x18,0x00,0x03,0x07,0x0C,0x08,0x08,0x0C,0x06,0x00, // -C-  0x04,0xFC,0xFC,0x04,0x0C,0xF8,0xF0,0x00,0x08,0x0F,0x0F,0x08,0x0C,0x07,0x03,0x00, // -D-  0x04,0xFC,0xFC,0x44,0xE4,0x0C,0x1C,0x00,0x08,0x0F,0x0F,0x08,0x08,0x0C,0x0E,0x00, // -E-  0x04,0xFC,0xFC,0x44,0xE4,0x0C,0x1C,0x00,0x08,0x0F,0x0F,0x08,0x00,0x00,0x00,0x00, // -F-  0xF0,0xF8,0x0C,0x84,0x84,0x8C,0x98,0x00,0x03,0x07,0x0C,0x08,0x08,0x07,0x0F,0x00, // -G-  0xFC,0xFC,0x40,0x40,0x40,0xFC,0xFC,0x00,0x0F,0x0F,0x00,0x00,0x00,0x0F,0x0F,0x00, // -H-  0x00,0x00,0x04,0xFC,0xFC,0x04,0x00,0x00,0x00,0x00,0x08,0x0F,0x0F,0x08,0x00,0x00, // -I-  0x00,0x00,0x00,0x04,0xFC,0xFC,0x04,0x00,0x07,0x0F,0x08,0x08,0x0F,0x07,0x00,0x00, // -J-  0x04,0xFC,0xFC,0xC0,0xF0,0x3C,0x0C,0x00,0x08,0x0F,0x0F,0x00,0x01,0x0F,0x0E,0x00, // -K-  0x04,0xFC,0xFC,0x04,0x00,0x00,0x00,0x00,0x08,0x0F,0x0F,0x08,0x08,0x0C,0x0E,0x00, // -L-  0xFC,0xFC,0x38,0x70,0x38,0xFC,0xFC,0x00,0x0F,0x0F,0x00,0x00,0x00,0x0F,0x0F,0x00, // -M-  0xFC,0xFC,0x38,0x70,0xE0,0xFC,0xFC,0x00,0x0F,0x0F,0x00,0x00,0x00,0x0F,0x0F,0x00, // -N-  0xF0,0xF8,0x0C,0x04,0x0C,0xF8,0xF0,0x00,0x03,0x07,0x0C,0x08,0x0C,0x07,0x03,0x00, // -O-  0x04,0xFC,0xFC,0x44,0x44,0x7C,0x38,0x00,0x08,0x0F,0x0F,0x08,0x00,0x00,0x00,0x00, // -P-  0xF8,0xFC,0x04,0x04,0x04,0xFC,0xF8,0x00,0x07,0x0F,0x08,0x0E,0x3C,0x3F,0x27,0x00, // -Q-  0x04,0xFC,0xFC,0x44,0xC4,0xFC,0x38,0x00,0x08,0x0F,0x0F,0x00,0x00,0x0F,0x0F,0x00, // -R-  0x18,0x3C,0x64,0x44,0xC4,0x9C,0x18,0x00,0x06,0x0E,0x08,0x08,0x08,0x0F,0x07,0x00, // -S-  0x00,0x1C,0x0C,0xFC,0xFC,0x0C,0x1C,0x00,0x00,0x00,0x08,0x0F,0x0F,0x08,0x00,0x00, // -T-  0xFC,0xFC,0x00,0x00,0x00,0xFC,0xFC,0x00,0x07,0x0F,0x08,0x08,0x08,0x0F,0x07,0x00, // -U-  0xFC,0xFC,0x00,0x00,0x00,0xFC,0xFC,0x00,0x01,0x03,0x06,0x0C,0x06,0x03,0x01,0x00, // -V-  0xFC,0xFC,0x00,0x80,0x00,0xFC,0xFC,0x00,0x03,0x0F,0x0E,0x03,0x0E,0x0F,0x03,0x00, // -W-  0x0C,0x3C,0xF0,0xC0,0xF0,0x3C,0x0C,0x00,0x0C,0x0F,0x03,0x00,0x03,0x0F,0x0C,0x00, // -X-  0x00,0x3C,0x7C,0xC0,0xC0,0x7C,0x3C,0x00,0x00,0x00,0x08,0x0F,0x0F,0x08,0x00,0x00, // -Y-  0x1C,0x0C,0x84,0xC4,0x64,0x3C,0x1C,0x00,0x0E,0x0F,0x09,0x08,0x08,0x0C,0x0E,0x00, // -Z-  0x00,0x00,0xFC,0xFC,0x04,0x04,0x00,0x00,0x00,0x00,0x0F,0x0F,0x08,0x08,0x00,0x00, // -[-  0x38,0x70,0xE0,0xC0,0x80,0x00,0x00,0x00,0x00,0x00,0x00,0x01,0x03,0x07,0x0E,0x00, // -\-  0x00,0x00,0x04,0x04,0xFC,0xFC,0x00,0x00,0x00,0x00,0x08,0x08,0x0F,0x0F,0x00,0x00, // -]-  0x08,0x0C,0x06,0x03,0x06,0x0C,0x08,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, // -^-  0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x20,0x20,0x20,0x20,0x20,0x20,0x20,0x20, // -_-  0x00,0x00,0x03,0x07,0x04,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, // -`-  0x00,0xA0,0xA0,0xA0,0xE0,0xC0,0x00,0x00,0x07,0x0F,0x08,0x08,0x07,0x0F,0x08,0x00, // -a-  0x04,0xFC,0xFC,0x20,0x60,0xC0,0x80,0x00,0x08,0x0F,0x07,0x08,0x08,0x0F,0x07,0x00, // -b-  0xC0,0xE0,0x20,0x20,0x20,0x60,0x40,0x00,0x07,0x0F,0x08,0x08,0x08,0x0C,0x04,0x00, // -c-  0x80,0xC0,0x60,0x24,0xFC,0xFC,0x00,0x00,0x07,0x0F,0x08,0x08,0x07,0x0F,0x08,0x00, // -d-  0xC0,0xE0,0xA0,0xA0,0xA0,0xE0,0xC0,0x00,0x07,0x0F,0x08,0x08,0x08,0x0C,0x04,0x00, // -e-  0x40,0xF8,0xFC,0x44,0x0C,0x18,0x00,0x00,0x08,0x0F,0x0F,0x08,0x00,0x00,0x00,0x00, // -f-  0xC0,0xE0,0x20,0x20,0xC0,0xE0,0x20,0x00,0x27,0x6F,0x48,0x48,0x7F,0x3F,0x00,0x00, // -g-  0x04,0xFC,0xFC,0x40,0x20,0xE0,0xC0,0x00,0x08,0x0F,0x0F,0x00,0x00,0x0F,0x0F,0x00, // -h-  0x00,0x00,0x20,0xEC,0xEC,0x00,0x00,0x00,0x00,0x00,0x08,0x0F,0x0F,0x08,0x00,0x00, // -i-  0x00,0x00,0x00,0x00,0x20,0xEC,0xEC,0x00,0x00,0x30,0x70,0x40,0x40,0x7F,0x3F,0x00, // -j-  0x04,0xFC,0xFC,0x80,0xC0,0x60,0x20,0x00,0x08,0x0F,0x0F,0x01,0x03,0x0E,0x0C,0x00, // -k-  0x00,0x00,0x04,0xFC,0xFC,0x00,0x00,0x00,0x00,0x00,0x08,0x0F,0x0F,0x08,0x00,0x00, // -l-  0xE0,0xE0,0x60,0xC0,0x60,0xE0,0xC0,0x00,0x0F,0x0F,0x00,0x0F,0x00,0x0F,0x0F,0x00, // -m-  0x20,0xE0,0xC0,0x20,0x20,0xE0,0xC0,0x00,0x00,0x0F,0x0F,0x00,0x00,0x0F,0x0F,0x00, // -n-  0xC0,0xE0,0x20,0x20,0x20,0xE0,0xC0,0x00,0x07,0x0F,0x08,0x08,0x08,0x0F,0x07,0x00, // -o-  0x20,0xE0,0xC0,0x20,0x20,0xE0,0xC0,0x00,0x40,0x7F,0x7F,0x48,0x08,0x0F,0x07,0x00, // -p-  0xC0,0xE0,0x20,0x20,0xC0,0xE0,0x20,0x00,0x07,0x0F,0x08,0x48,0x7F,0x7F,0x40,0x00, // -q-  0x20,0xE0,0xC0,0x60,0x20,0x60,0xC0,0x00,0x08,0x0F,0x0F,0x08,0x00,0x00,0x00,0x00, // -r-  0x40,0xE0,0xA0,0x20,0x20,0x60,0x40,0x00,0x04,0x0C,0x09,0x09,0x0B,0x0E,0x04,0x00, // -s-  0x20,0x20,0xF8,0xFC,0x20,0x20,0x00,0x00,0x00,0x00,0x07,0x0F,0x08,0x0C,0x04,0x00, // -t-  0xE0,0xE0,0x00,0x00,0xE0,0xE0,0x00,0x00,0x07,0x0F,0x08,0x08,0x07,0x0F,0x08,0x00, // -u-  0x00,0xE0,0xE0,0x00,0x00,0xE0,0xE0,0x00,0x00,0x03,0x07,0x0C,0x0C,0x07,0x03,0x00, // -v-  0xE0,0xE0,0x00,0x00,0x00,0xE0,0xE0,0x00,0x07,0x0F,0x0C,0x07,0x0C,0x0F,0x07,0x00, // -w-  0x20,0x60,0xC0,0x80,0xC0,0x60,0x20,0x00,0x08,0x0C,0x07,0x03,0x07,0x0C,0x08,0x00, // -x-  0xE0,0xE0,0x00,0x00,0x00,0xE0,0xE0,0x00,0x47,0x4F,0x48,0x48,0x68,0x3F,0x1F,0x00, // -y-  0x60,0x60,0x20,0xA0,0xE0,0x60,0x20,0x00,0x0C,0x0E,0x0B,0x09,0x08,0x0C,0x0C,0x00, // -z-  0x00,0x40,0x40,0xF8,0xBC,0x04,0x04,0x00,0x00,0x00,0x00,0x07,0x0F,0x08,0x08,0x00, // -{-  0x00,0x00,0x00,0xBC,0xBC,0x00,0x00,0x00,0x00,0x00,0x00,0x0F,0x0F,0x00,0x00,0x00, // -|-  0x00,0x04,0x04,0xBC,0xF8,0x40,0x40,0x00,0x00,0x08,0x08,0x0F,0x07,0x00,0x00,0x00, // -}-  0x08,0x0C,0x04,0x0C,0x08,0x0C,0x04,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, // -~- } ; #endif  //Tab_Ascii_8x16_CALL1 //=======8x16======================================================================= //#ifdef   Tab_Ascii_8x16_CALL2  // #ifdef  Display_Num_8x16_CALL  const PROGMEM uint8_t Tab_Ascii_8x162[95][16]={  //细体字形 /*--  文字:     --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, /*--  文字:  !  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0xF8,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x33,0x30,0x00,0x00,0x00, /*--  文字:  "  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x10,0x0C,0x06,0x10,0x0C,0x06,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, /*--  文字:  #  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x40,0xC0,0x78,0x40,0xC0,0x78,0x40,0x00,0x04,0x3F,0x04,0x04,0x3F,0x04,0x04,0x00, /*--  文字:  $  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x70,0x88,0xFC,0x08,0x30,0x00,0x00,0x00,0x18,0x20,0xFF,0x21,0x1E,0x00,0x00, /*--  文字:  %  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0xF0,0x08,0xF0,0x00,0xE0,0x18,0x00,0x00,0x00,0x21,0x1C,0x03,0x1E,0x21,0x1E,0x00, /*--  文字:  &  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0xF0,0x08,0x88,0x70,0x00,0x00,0x00,0x1E,0x21,0x23,0x24,0x19,0x27,0x21,0x10, /*--  文字:  '  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x10,0x16,0x0E,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, /*--  文字:  (  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0xE0,0x18,0x04,0x02,0x00,0x00,0x00,0x00,0x07,0x18,0x20,0x40,0x00, /*--  文字:  )  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x02,0x04,0x18,0xE0,0x00,0x00,0x00,0x00,0x40,0x20,0x18,0x07,0x00,0x00,0x00, /*--  文字:  *  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x40,0x40,0x80,0xF0,0x80,0x40,0x40,0x00,0x02,0x02,0x01,0x0F,0x01,0x02,0x02,0x00, /*--  文字:  +  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0xF0,0x00,0x00,0x00,0x00,0x01,0x01,0x01,0x1F,0x01,0x01,0x01,0x00, /*--  文字:  ,  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x80,0xB0,0x70,0x00,0x00,0x00,0x00,0x00, /*--  文字:  -  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x01,0x01,0x01,0x01,0x01,0x01,0x01, /*--  文字:  .  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x00,0x00,0x00,0x00,0x00, /*--  文字:  /  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0x00,0x80,0x60,0x18,0x04,0x00,0x60,0x18,0x06,0x01,0x00,0x00,0x00, /*--  文字:  0  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0xE0,0x10,0x08,0x08,0x10,0xE0,0x00,0x00,0x0F,0x10,0x20,0x20,0x10,0x0F,0x00, /*--  文字:  1  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x10,0x10,0xF8,0x00,0x00,0x00,0x00,0x00,0x20,0x20,0x3F,0x20,0x20,0x00,0x00, /*--  文字:  2  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x70,0x08,0x08,0x08,0x88,0x70,0x00,0x00,0x30,0x28,0x24,0x22,0x21,0x30,0x00, /*--  文字:  3  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x30,0x08,0x88,0x88,0x48,0x30,0x00,0x00,0x18,0x20,0x20,0x20,0x11,0x0E,0x00, /*--  文字:  4  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0xC0,0x20,0x10,0xF8,0x00,0x00,0x00,0x07,0x04,0x24,0x24,0x3F,0x24,0x00, /*--  文字:  5  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0xF8,0x08,0x88,0x88,0x08,0x08,0x00,0x00,0x19,0x21,0x20,0x20,0x11,0x0E,0x00, /*--  文字:  6  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0xE0,0x10,0x88,0x88,0x18,0x00,0x00,0x00,0x0F,0x11,0x20,0x20,0x11,0x0E,0x00, /*--  文字:  7  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x38,0x08,0x08,0xC8,0x38,0x08,0x00,0x00,0x00,0x00,0x3F,0x00,0x00,0x00,0x00, /*--  文字:  8  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x70,0x88,0x08,0x08,0x88,0x70,0x00,0x00,0x1C,0x22,0x21,0x21,0x22,0x1C,0x00, /*--  文字:  9  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0xE0,0x10,0x08,0x08,0x10,0xE0,0x00,0x00,0x00,0x31,0x22,0x22,0x11,0x0F,0x00, /*--  文字:  :  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0xC0,0xC0,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x00,0x00,0x00, /*--  文字:  ;  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0x80,0x00,0x00,0x00,0x00,0x00,0x00,0x80,0x60,0x00,0x00,0x00,0x00, /*--  文字:  <  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x80,0x40,0x20,0x10,0x08,0x00,0x00,0x01,0x02,0x04,0x08,0x10,0x20,0x00, /*--  文字:  =  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x40,0x40,0x40,0x40,0x40,0x40,0x40,0x00,0x04,0x04,0x04,0x04,0x04,0x04,0x04,0x00, /*--  文字:  >  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x08,0x10,0x20,0x40,0x80,0x00,0x00,0x00,0x20,0x10,0x08,0x04,0x02,0x01,0x00, /*--  文字:  ?  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x70,0x48,0x08,0x08,0x08,0xF0,0x00,0x00,0x00,0x00,0x30,0x36,0x01,0x00,0x00, /*--  文字:  @  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0xC0,0x30,0xC8,0x28,0xE8,0x10,0xE0,0x00,0x07,0x18,0x27,0x24,0x23,0x14,0x0B,0x00, /*--  文字:  A  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0xC0,0x38,0xE0,0x00,0x00,0x00,0x20,0x3C,0x23,0x02,0x02,0x27,0x38,0x20, /*--  文字:  B  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x08,0xF8,0x88,0x88,0x88,0x70,0x00,0x00,0x20,0x3F,0x20,0x20,0x20,0x11,0x0E,0x00, /*--  文字:  C  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0xC0,0x30,0x08,0x08,0x08,0x08,0x38,0x00,0x07,0x18,0x20,0x20,0x20,0x10,0x08,0x00, /*--  文字:  D  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x08,0xF8,0x08,0x08,0x08,0x10,0xE0,0x00,0x20,0x3F,0x20,0x20,0x20,0x10,0x0F,0x00, /*--  文字:  E  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x08,0xF8,0x88,0x88,0xE8,0x08,0x10,0x00,0x20,0x3F,0x20,0x20,0x23,0x20,0x18,0x00, /*--  文字:  F  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x08,0xF8,0x88,0x88,0xE8,0x08,0x10,0x00,0x20,0x3F,0x20,0x00,0x03,0x00,0x00,0x00, /*--  文字:  G  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0xC0,0x30,0x08,0x08,0x08,0x38,0x00,0x00,0x07,0x18,0x20,0x20,0x22,0x1E,0x02,0x00, /*--  文字:  H  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x08,0xF8,0x08,0x00,0x00,0x08,0xF8,0x08,0x20,0x3F,0x21,0x01,0x01,0x21,0x3F,0x20, /*--  文字:  I  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x08,0x08,0xF8,0x08,0x08,0x00,0x00,0x00,0x20,0x20,0x3F,0x20,0x20,0x00,0x00, /*--  文字:  J  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x08,0x08,0xF8,0x08,0x08,0x00,0xC0,0x80,0x80,0x80,0x7F,0x00,0x00,0x00, /*--  文字:  K  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x08,0xF8,0x88,0xC0,0x28,0x18,0x08,0x00,0x20,0x3F,0x20,0x01,0x26,0x38,0x20,0x00, /*--  文字:  L  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x08,0xF8,0x08,0x00,0x00,0x00,0x00,0x00,0x20,0x3F,0x20,0x20,0x20,0x20,0x30,0x00, /*--  文字:  M  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x08,0xF8,0xF8,0x00,0xF8,0xF8,0x08,0x00,0x20,0x3F,0x00,0x3F,0x00,0x3F,0x20,0x00, /*--  文字:  N  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x08,0xF8,0x30,0xC0,0x00,0x08,0xF8,0x08,0x20,0x3F,0x20,0x00,0x07,0x18,0x3F,0x00, /*--  文字:  O  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0xE0,0x10,0x08,0x08,0x08,0x10,0xE0,0x00,0x0F,0x10,0x20,0x20,0x20,0x10,0x0F,0x00, /*--  文字:  P  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x08,0xF8,0x08,0x08,0x08,0x08,0xF0,0x00,0x20,0x3F,0x21,0x01,0x01,0x01,0x00,0x00, /*--  文字:  Q  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0xE0,0x10,0x08,0x08,0x08,0x10,0xE0,0x00,0x0F,0x18,0x24,0x24,0x38,0x50,0x4F,0x00, /*--  文字:  R  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x08,0xF8,0x88,0x88,0x88,0x88,0x70,0x00,0x20,0x3F,0x20,0x00,0x03,0x0C,0x30,0x20, /*--  文字:  S  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x70,0x88,0x08,0x08,0x08,0x38,0x00,0x00,0x38,0x20,0x21,0x21,0x22,0x1C,0x00, /*--  文字:  T  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x18,0x08,0x08,0xF8,0x08,0x08,0x18,0x00,0x00,0x00,0x20,0x3F,0x20,0x00,0x00,0x00, /*--  文字:  U  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x08,0xF8,0x08,0x00,0x00,0x08,0xF8,0x08,0x00,0x1F,0x20,0x20,0x20,0x20,0x1F,0x00, /*--  文字:  V  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x08,0x78,0x88,0x00,0x00,0xC8,0x38,0x08,0x00,0x00,0x07,0x38,0x0E,0x01,0x00,0x00, /*--  文字:  W  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0xF8,0x08,0x00,0xF8,0x00,0x08,0xF8,0x00,0x03,0x3C,0x07,0x00,0x07,0x3C,0x03,0x00, /*--  文字:  X  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x08,0x18,0x68,0x80,0x80,0x68,0x18,0x08,0x20,0x30,0x2C,0x03,0x03,0x2C,0x30,0x20, /*--  文字:  Y  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x08,0x38,0xC8,0x00,0xC8,0x38,0x08,0x00,0x00,0x00,0x20,0x3F,0x20,0x00,0x00,0x00, /*--  文字:  Z  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x10,0x08,0x08,0x08,0xC8,0x38,0x08,0x00,0x20,0x38,0x26,0x21,0x20,0x20,0x18,0x00, /*--  文字:  [  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0xFE,0x02,0x02,0x02,0x00,0x00,0x00,0x00,0x7F,0x40,0x40,0x40,0x00, /*--  文字:  \  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x0C,0x30,0xC0,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x01,0x06,0x38,0xC0,0x00, /*--  文字:  ]  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x02,0x02,0x02,0xFE,0x00,0x00,0x00,0x00,0x40,0x40,0x40,0x7F,0x00,0x00,0x00, /*--  文字:  ^  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x04,0x02,0x02,0x02,0x04,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, /*--  文字:  _  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x80,0x80,0x80,0x80,0x80,0x80,0x80,0x80, /*--  文字:  `  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x02,0x02,0x04,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00, /*--  文字:  a  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x80,0x80,0x80,0x80,0x00,0x00,0x00,0x19,0x24,0x22,0x22,0x22,0x3F,0x20, /*--  文字:  b  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x08,0xF8,0x00,0x80,0x80,0x00,0x00,0x00,0x00,0x3F,0x11,0x20,0x20,0x11,0x0E,0x00, /*--  文字:  c  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0x80,0x80,0x80,0x00,0x00,0x00,0x0E,0x11,0x20,0x20,0x20,0x11,0x00, /*--  文字:  d  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0x80,0x80,0x88,0xF8,0x00,0x00,0x0E,0x11,0x20,0x20,0x10,0x3F,0x20, /*--  文字:  e  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x80,0x80,0x80,0x80,0x00,0x00,0x00,0x1F,0x22,0x22,0x22,0x22,0x13,0x00, /*--  文字:  f  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x80,0x80,0xF0,0x88,0x88,0x88,0x18,0x00,0x20,0x20,0x3F,0x20,0x20,0x00,0x00, /*--  文字:  g  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x80,0x80,0x80,0x80,0x80,0x00,0x00,0x6B,0x94,0x94,0x94,0x93,0x60,0x00, /*--  文字:  h  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x08,0xF8,0x00,0x80,0x80,0x80,0x00,0x00,0x20,0x3F,0x21,0x00,0x00,0x20,0x3F,0x20, /*--  文字:  i  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x80,0x98,0x98,0x00,0x00,0x00,0x00,0x00,0x20,0x20,0x3F,0x20,0x20,0x00,0x00, /*--  文字:  j  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0x80,0x98,0x98,0x00,0x00,0x00,0xC0,0x80,0x80,0x80,0x7F,0x00,0x00, /*--  文字:  k  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x08,0xF8,0x00,0x00,0x80,0x80,0x80,0x00,0x20,0x3F,0x24,0x02,0x2D,0x30,0x20,0x00, /*--  文字:  l  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x08,0x08,0xF8,0x00,0x00,0x00,0x00,0x00,0x20,0x20,0x3F,0x20,0x20,0x00,0x00, /*--  文字:  m  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x80,0x80,0x80,0x80,0x80,0x80,0x80,0x00,0x20,0x3F,0x20,0x00,0x3F,0x20,0x00,0x3F, /*--  文字:  n  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x80,0x80,0x00,0x80,0x80,0x80,0x00,0x00,0x20,0x3F,0x21,0x00,0x00,0x20,0x3F,0x20, /*--  文字:  o  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x80,0x80,0x80,0x80,0x00,0x00,0x00,0x1F,0x20,0x20,0x20,0x20,0x1F,0x00, /*--  文字:  p  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x80,0x80,0x00,0x80,0x80,0x00,0x00,0x00,0x80,0xFF,0xA1,0x20,0x20,0x11,0x0E,0x00, /*--  文字:  q  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0x80,0x80,0x80,0x80,0x00,0x00,0x0E,0x11,0x20,0x20,0xA0,0xFF,0x80, /*--  文字:  r  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x80,0x80,0x80,0x00,0x80,0x80,0x80,0x00,0x20,0x20,0x3F,0x21,0x20,0x00,0x01,0x00, /*--  文字:  s  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x80,0x80,0x80,0x80,0x80,0x00,0x00,0x33,0x24,0x24,0x24,0x24,0x19,0x00, /*--  文字:  t  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x80,0x80,0xE0,0x80,0x80,0x00,0x00,0x00,0x00,0x00,0x1F,0x20,0x20,0x00,0x00, /*--  文字:  u  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x80,0x80,0x00,0x00,0x00,0x80,0x80,0x00,0x00,0x1F,0x20,0x20,0x20,0x10,0x3F,0x20, /*--  文字:  v  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x80,0x80,0x80,0x00,0x00,0x80,0x80,0x80,0x00,0x01,0x0E,0x30,0x08,0x06,0x01,0x00, /*--  文字:  w  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x80,0x80,0x00,0x80,0x00,0x80,0x80,0x80,0x0F,0x30,0x0C,0x03,0x0C,0x30,0x0F,0x00, /*--  文字:  x  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x80,0x80,0x00,0x80,0x80,0x80,0x00,0x00,0x20,0x31,0x2E,0x0E,0x31,0x20,0x00, /*--  文字:  y  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x80,0x80,0x80,0x00,0x00,0x80,0x80,0x80,0x80,0x81,0x8E,0x70,0x18,0x06,0x01,0x00, /*--  文字:  z  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x80,0x80,0x80,0x80,0x80,0x80,0x00,0x00,0x21,0x30,0x2C,0x22,0x21,0x30,0x00, /*--  文字:  {  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0x00,0x80,0x7C,0x02,0x02,0x00,0x00,0x00,0x00,0x00,0x3F,0x40,0x40, /*--  文字:  |  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x00,0x00,0x00,0xFF,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0xFF,0x00,0x00,0x00, /*--  文字:  }  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x02,0x02,0x7C,0x80,0x00,0x00,0x00,0x00,0x40,0x40,0x3F,0x00,0x00,0x00,0x00, /*--  文字:  ~  --*/ /*--  Comic Sans MS12;  此字体下对应的点阵为:宽x高=8x16   --*/ 0x00,0x06,0x01,0x01,0x02,0x02,0x04,0x04,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00 }; ///#endif //#endif  //Tab_Ascii_8x16_CALL1 //=======5x7======================================================================= //#ifdef  Tab_Ascii_5x7_CALL    const PROGMEM uint8_t Tab_Ascii_5x71[95][5]={ /*全体ASCII 列表:5x7点阵*/ 0x00,0x00,0x00,0x00,0x00,//space 0x00,0x00,0x4f,0x00,0x00,//! 0x00,0x07,0x00,0x07,0x00,//" 0x14,0x7f,0x14,0x7f,0x14,//# 0x24,0x2a,0x7f,0x2a,0x12,//$ 0x23,0x13,0x08,0x64,0x62,//% 0x36,0x49,0x55,0x22,0x50,//& 0x00,0x05,0x07,0x00,0x00,//] 0x00,0x1c,0x22,0x41,0x00,//( 0x00,0x41,0x22,0x1c,0x00,//) 0x14,0x08,0x3e,0x08,0x14,//* 0x08,0x08,0x3e,0x08,0x08,//+ 0x00,0x50,0x30,0x00,0x00,//, 0x08,0x08,0x08,0x08,0x08,//- 0x00,0x60,0x60,0x00,0x00,//. 0x20,0x10,0x08,0x04,0x02,/// 0x3e,0x51,0x49,0x45,0x3e,//0 0x00,0x42,0x7f,0x40,0x00,//1 0x42,0x61,0x51,0x49,0x46,//2 0x21,0x41,0x45,0x4b,0x31,//3 0x18,0x14,0x12,0x7f,0x10,//4 0x27,0x45,0x45,0x45,0x39,//5 0x3c,0x4a,0x49,0x49,0x30,//6 0x01,0x71,0x09,0x05,0x03,//7 0x36,0x49,0x49,0x49,0x36,//8 0x06,0x49,0x49,0x29,0x1e,//9 0x00,0x36,0x36,0x00,0x00,//: 0x00,0x56,0x36,0x00,0x00,//; 0x08,0x14,0x22,0x41,0x00,//< 0x14,0x14,0x14,0x14,0x14,//= 0x00,0x41,0x22,0x14,0x08,//> 0x02,0x01,0x51,0x09,0x06,//? 0x32,0x49,0x79,0x41,0x3e,//@ 0x7e,0x11,0x11,0x11,0x7e,//A 0x7f,0x49,0x49,0x49,0x36,//B 0x3e,0x41,0x41,0x41,0x22,//C 0x7f,0x41,0x41,0x22,0x1c,//D 0x7f,0x49,0x49,0x49,0x41,//E 0x7f,0x09,0x09,0x09,0x01,//F 0x3e,0x41,0x49,0x49,0x7a,//G 0x7f,0x08,0x08,0x08,0x7f,//H 0x00,0x41,0x7f,0x41,0x00,//I 0x20,0x40,0x41,0x3f,0x01,//J 0x7f,0x08,0x14,0x22,0x41,//K 0x7f,0x40,0x40,0x40,0x40,//L 0x7f,0x02,0x0c,0x02,0x7f,//M 0x7f,0x04,0x08,0x10,0x7f,//N 0x3e,0x41,0x41,0x41,0x3e,//O 0x7f,0x09,0x09,0x09,0x06,//P 0x3e,0x41,0x51,0x21,0x5e,//Q 0x7f,0x09,0x19,0x29,0x46,//R 0x46,0x49,0x49,0x49,0x31,//S 0x01,0x01,0x7f,0x01,0x01,//T 0x3f,0x40,0x40,0x40,0x3f,//U 0x1f,0x20,0x40,0x20,0x1f,//V 0x3f,0x40,0x38,0x40,0x3f,//W 0x63,0x14,0x08,0x14,0x63,//X 0x07,0x08,0x70,0x08,0x07,//Y 0x61,0x51,0x49,0x45,0x43,//Z 0x00,0x7f,0x41,0x41,0x00,//[ 0x02,0x04,0x08,0x10,0x20,//\ 0x00,0x41,0x41,0x7f,0x00,//] 0x04,0x02,0x01,0x02,0x04,//^ 0x40,0x40,0x40,0x40,0x40,//_ 0x01,0x02,0x04,0x00,0x00,//` 0x20,0x54,0x54,0x54,0x78,//a 0x7f,0x48,0x48,0x48,0x30,//b 0x38,0x44,0x44,0x44,0x44,//c 0x30,0x48,0x48,0x48,0x7f,//d 0x38,0x54,0x54,0x54,0x58,//e 0x00,0x08,0x7e,0x09,0x02,//f 0x48,0x54,0x54,0x54,0x3c,//g 0x7f,0x08,0x08,0x08,0x70,//h 0x00,0x00,0x7a,0x00,0x00,//i 0x20,0x40,0x40,0x3d,0x00,//j 0x7f,0x20,0x28,0x44,0x00,//k 0x00,0x41,0x7f,0x40,0x00,//l 0x7c,0x04,0x38,0x04,0x7c,//m 0x7c,0x08,0x04,0x04,0x78,//n 0x38,0x44,0x44,0x44,0x38,//o 0x7c,0x14,0x14,0x14,0x08,//p 0x08,0x14,0x14,0x14,0x7c,//q 0x7c,0x08,0x04,0x04,0x08,//r 0x48,0x54,0x54,0x54,0x24,//s 0x04,0x04,0x3f,0x44,0x24,//t 0x3c,0x40,0x40,0x40,0x3c,//u 0x1c,0x20,0x40,0x20,0x1c,//v 0x3c,0x40,0x30,0x40,0x3c,//w 0x44,0x28,0x10,0x28,0x44,//x 0x04,0x48,0x30,0x08,0x04,//y 0x44,0x64,0x54,0x4c,0x44,//z 0x08,0x36,0x41,0x41,0x00,//{ 0x00,0x00,0x77,0x00,0x00,//| 0x00,0x41,0x41,0x36,0x08,//} 0x04,0x02,0x02,0x02,0x01,//~ }; //#endif  //Tab_Ascii_5x7_CALL uint8  zhuang1[]={ /*--  文字:  状  --*/ /*--  宋体12;  此字体下对应的点阵为:宽x高=16x16   --*/ 0x08,0x30,0x00,0xFF,0x20,0x20,0x20,0x20,0xFF,0x20,0xE1,0x26,0x2C,0x20,0x20,0x00, 0x04,0x02,0x01,0xFF,0x40,0x20,0x18,0x07,0x00,0x00,0x03,0x0C,0x30,0x60,0x20,0x00 }; uint8  tai1[]={ /*--  文字:  态  --*/ /*--  宋体12;  此字体下对应的点阵为:宽x高=16x16   --*/ 0x00,0x04,0x04,0x04,0x84,0x44,0x34,0x4F,0x94,0x24,0x44,0x84,0x84,0x04,0x00,0x00, 0x00,0x60,0x39,0x01,0x00,0x3C,0x40,0x42,0x4C,0x40,0x40,0x70,0x04,0x09,0x31,0x00 }; uint8  shi1[]={ /*--  文字:  使  --*/ /*--  宋体12;  此字体下对应的点阵为:宽x高=16x16   --*/ 0x40,0x20,0xF0,0x1C,0x07,0xF2,0x94,0x94,0x94,0xFF,0x94,0x94,0x94,0xF4,0x04,0x00, 0x00,0x00,0x7F,0x00,0x40,0x41,0x22,0x14,0x0C,0x13,0x10,0x30,0x20,0x61,0x20,0x00 }; uint8  yong1[]={ /*--  文字:  用  --*/ /*--  宋体12;  此字体下对应的点阵为:宽x高=16x16   --*/ 0x00,0x00,0x00,0xFE,0x22,0x22,0x22,0x22,0xFE,0x22,0x22,0x22,0x22,0xFE,0x00,0x00, 0x80,0x40,0x30,0x0F,0x02,0x02,0x02,0x02,0xFF,0x02,0x02,0x42,0x82,0x7F,0x00,0x00 }; //x=9 y=16 点阵 0-9 const PROGMEM uint8_t  lcd_numbers_lit[]={ 0x00,0xE0,0xE0,0x60,0x20,0x60,0xE0,0xE0,0x00,//0 0x00,0x7F,0x7F,0x60,0x40,0x60,0x7F,0x7F,0x00, 0x00,0x00,0x40,0x40,0xE0,0xE0,0x00,0x00,0x00,//1 0x00,0x00,0x00,0x00,0x7F,0x7F,0x00,0x00,0x00, 0x00,0xE0,0xE0,0x20,0x20,0xE0,0xE0,0xC0,0x00,//2 0x00,0x71,0x79,0x78,0x5E,0x47,0x43,0x41,0x00, 0x00,0xE0,0xE0,0x20,0x20,0xE0,0xE0,0xC0,0x00,//3 0x00,0x78,0x78,0x42,0x47,0x7F,0x7D,0x39,0x00, 0x00,0x00,0x00,0x80,0xE0,0xE0,0xE0,0x00,0x00,//4 0x00,0x0E,0x0F,0x0B,0x7F,0x7F,0x7F,0x08,0x00, 0x00,0xE0,0xE0,0xE0,0x20,0x20,0x20,0x20,0x00,//5 0x00,0x73,0x73,0x43,0x41,0x7F,0x7F,0x3E,0x00, 0x00,0xE0,0xE0,0x60,0x20,0x60,0x60,0x60,0x00,//6 0x00,0x7F,0x7F,0x43,0x43,0x7F,0x7E,0x3C,0x00, 0x00,0x20,0x20,0x20,0xA0,0xE0,0xE0,0x60,0x00,//7 0x00,0x00,0x40,0x78,0x7F,0x0F,0x01,0x00,0x00, 0x00,0xE0,0xE0,0x20,0x20,0x20,0xE0,0xE0,0x00,//8 0x00,0x7D,0x7D,0x47,0x42,0x47,0x7D,0x7D,0x00, 0x00,0xE0,0xE0,0x20,0x20,0xE0,0xE0,0x80,0x00,//9 0x00,0x67,0x6F,0x4C,0x6C,0x7F,0x3F,0x0F,0x00 }; //x=12 y=16 点阵 0-9数字 const PROGMEM uint8_t  lcd_numbers[]={ 0x00,0xF0,0xFC,0xFC,0x0E,0x02,0x02,0x0E,0xFC,0xFC,0xF0,0x00,//0 0x00,0x07,0x3F,0x3F,0x70,0x40,0x40,0x70,0x3F,0x3F,0x07,0x00, 0x00,0x00,0x00,0x08,0x08,0xFC,0xFE,0xFE,0x00,0x00,0x00,0x00,//1 0x00,0x00,0x00,0x00,0x00,0x7F,0x7F,0x7F,0x00,0x00,0x00,0x00, 0x00,0x38,0x3C,0x3E,0x06,0x02,0x86,0xFE,0xFC,0x78,0x00,0x00,//2 0x00,0x60,0x78,0x7C,0x5E,0x4F,0x43,0x41,0x40,0x40,0x00,0x00, 0x00,0x18,0x1C,0x1E,0x86,0x82,0xC6,0xFE,0x7C,0x38,0x00,0x00,//3 0x00,0x1C,0x3C,0x7C,0x60,0x40,0x61,0x7F,0x3F,0x1E,0x00,0x00, 0x00,0x00,0x80,0xC0,0xF0,0x3C,0xFE,0xFE,0xFE,0x00,0x00,0x00,//4 0x00,0x06,0x07,0x05,0x04,0x04,0x7F,0x7F,0x7F,0x04,0x04,0x00, 0x00,0x00,0xFE,0xFE,0xFE,0x62,0x62,0xE2,0xE2,0x82,0x00,0x00,//5 0x00,0x18,0x38,0x78,0x60,0x40,0x60,0x7F,0x3F,0x1F,0x00,0x00, 0x00,0xF0,0xFC,0xFC,0xCE,0x42,0xC6,0xCE,0x8E,0x0C,0x00,0x00,//6 0x00,0x0F,0x3F,0x7F,0x60,0x40,0x60,0x7F,0x3F,0x1F,0x00,0x00, 0x00,0x02,0x02,0x02,0x02,0x82,0xF2,0xFE,0x7E,0x0E,0x00,0x00,//7 0x00,0x00,0x00,0x60,0x7C,0x7F,0x1F,0x03,0x00,0x00,0x00,0x00, 0x00,0x38,0x7C,0x7E,0xC6,0x82,0x82,0xC6,0x7E,0x7C,0x38,0x00,//8 0x00,0x1E,0x3F,0x7F,0x61,0x40,0x40,0x61,0x7F,0x3F,0x1E,0x00, 0x00,0xF8,0xFC,0xFE,0x06,0x02,0x06,0xFE,0xFC,0xF0,0x00,0x00,//9 0x00,0x30,0x71,0x73,0x63,0x42,0x73,0x3F,0x1F,0x07,0x00,0x00, 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,//. 0x00,0x00,0x00,0x38,0x38,0x38,0x00,0x00,0x00,0x00,0x00,0x00, 0x00,0x80,0x80,0x80,0x80,0x80,0x80,0x80,0x80,0x80,0x80,0x00,//- 0x00,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x01,0x00 }; const PROGMEM uint8_t  Tab_Ascii_5x72[95][5]={ /*全体ASCII 列表:5x7点阵*/ 0x00,0x00,0x00,0x00,0x00,//space 0x00,0x00,0x4f,0x00,0x00,//! 0x00,0x07,0x00,0x07,0x00,//" 0x14,0x7f,0x14,0x7f,0x14,//# 0x24,0x2a,0x7f,0x2a,0x12,//$ 0x23,0x13,0x08,0x64,0x62,//% 0x36,0x49,0x55,0x22,0x50,//& 0x00,0x05,0x07,0x00,0x00,//] 0x00,0x1c,0x22,0x41,0x00,//( 0x00,0x41,0x22,0x1c,0x00,//) 0x14,0x08,0x3e,0x08,0x14,//* 0x08,0x08,0x3e,0x08,0x08,//+ 0x00,0x50,0x30,0x00,0x00,//, 0x08,0x08,0x08,0x08,0x08,//- 0x00,0x60,0x60,0x00,0x00,//. 0x20,0x10,0x08,0x04,0x02,/// 0x3e,0x51,0x49,0x45,0x3e,//0 0x00,0x42,0x7f,0x40,0x00,//1 0x42,0x61,0x51,0x49,0x46,//2 0x21,0x41,0x45,0x4b,0x31,//3 0x18,0x14,0x12,0x7f,0x10,//4 0x27,0x45,0x45,0x45,0x39,//5 0x3c,0x4a,0x49,0x49,0x30,//6 0x01,0x71,0x09,0x05,0x03,//7 0x36,0x49,0x49,0x49,0x36,//8 0x06,0x49,0x49,0x29,0x1e,//9 0x00,0x36,0x36,0x00,0x00,//: 0x00,0x56,0x36,0x00,0x00,//; 0x08,0x14,0x22,0x41,0x00,//< 0x14,0x14,0x14,0x14,0x14,//= 0x00,0x41,0x22,0x14,0x08,//> 0x02,0x01,0x51,0x09,0x06,//? 0x32,0x49,0x79,0x41,0x3e,//@ 0x7e,0x11,0x11,0x11,0x7e,//A 0x7f,0x49,0x49,0x49,0x36,//B 0x3e,0x41,0x41,0x41,0x22,//C 0x7f,0x41,0x41,0x22,0x1c,//D 0x7f,0x49,0x49,0x49,0x41,//E 0x7f,0x09,0x09,0x09,0x01,//F 0x3e,0x41,0x49,0x49,0x7a,//G 0x7f,0x08,0x08,0x08,0x7f,//H 0x00,0x41,0x7f,0x41,0x00,//I 0x20,0x40,0x41,0x3f,0x01,//J 0x7f,0x08,0x14,0x22,0x41,//K 0x7f,0x40,0x40,0x40,0x40,//L 0x7f,0x02,0x0c,0x02,0x7f,//M 0x7f,0x04,0x08,0x10,0x7f,//N 0x3e,0x41,0x41,0x41,0x3e,//O 0x7f,0x09,0x09,0x09,0x06,//P 0x3e,0x41,0x51,0x21,0x5e,//Q 0x7f,0x09,0x19,0x29,0x46,//R 0x46,0x49,0x49,0x49,0x31,//S 0x01,0x01,0x7f,0x01,0x01,//T 0x3f,0x40,0x40,0x40,0x3f,//U 0x1f,0x20,0x40,0x20,0x1f,//V 0x3f,0x40,0x38,0x40,0x3f,//W 0x63,0x14,0x08,0x14,0x63,//X 0x07,0x08,0x70,0x08,0x07,//Y 0x61,0x51,0x49,0x45,0x43,//Z 0x00,0x7f,0x41,0x41,0x00,//[ 0x02,0x04,0x08,0x10,0x20,// 0x00,0x41,0x41,0x7f,0x00,//] 0x04,0x02,0x01,0x02,0x04,//^ 0x40,0x40,0x40,0x40,0x40,//_ 0x01,0x02,0x04,0x00,0x00,//` 0x20,0x54,0x54,0x54,0x78,//a 0x7f,0x48,0x48,0x48,0x30,//b 0x38,0x44,0x44,0x44,0x44,//c 0x30,0x48,0x48,0x48,0x7f,//d 0x38,0x54,0x54,0x54,0x58,//e 0x00,0x08,0x7e,0x09,0x02,//f 0x48,0x54,0x54,0x54,0x3c,//g 0x7f,0x08,0x08,0x08,0x70,//h 0x00,0x00,0x7a,0x00,0x00,//i 0x20,0x40,0x40,0x3d,0x00,//j 0x7f,0x20,0x28,0x44,0x00,//k 0x00,0x41,0x7f,0x40,0x00,//l 0x7c,0x04,0x38,0x04,0x7c,//m 0x7c,0x08,0x04,0x04,0x78,//n 0x38,0x44,0x44,0x44,0x38,//o 0x7c,0x14,0x14,0x14,0x08,//p 0x08,0x14,0x14,0x14,0x7c,//q 0x7c,0x08,0x04,0x04,0x08,//r 0x48,0x54,0x54,0x54,0x24,//s 0x04,0x04,0x3f,0x44,0x24,//t 0x3c,0x40,0x40,0x40,0x3c,//u 0x1c,0x20,0x40,0x20,0x1c,//v 0x3c,0x40,0x30,0x40,0x3c,//w 0x44,0x28,0x10,0x28,0x44,//x 0x04,0x48,0x30,0x08,0x04,//y 0x44,0x64,0x54,0x4c,0x44,//z 0x08,0x36,0x41,0x41,0x00,//{ 0x00,0x00,0x77,0x00,0x00,//| 0x00,0x41,0x41,0x36,0x08,//} 0x04,0x02,0x02,0x02,0x01,//~ }; /////////////// #define Start_T1 TCCR1B|=_BV(CS11);TCNT1=0//复位预计分频器并开启定时器T1 #define Stop_T1 TCCR1B&=~_BV(CS11) //关闭定时器T1 //数码管的段码编码 unsigned char table[10] = {0x3f,0x06,0x5b,0x4f,0x66,0x6d,0x7d,0x07,0x7f,0x6f}; volatile unsigned char i,j,k; volatile unsigned char IRcode;                //定义一个长度为4字节的无符号long类型变量来存储代码 volatile unsigned char IR_OK=0;     //IR信号接收有效 当程序响应接收以后请马上清零 这样才会继续接收下一IR码 volatile unsigned char IR_con=0; //IR信号当前接收位 0时表示第0位即同步码(4.5ms高电平) volatile unsigned int Pulse_length=0;          //捕获的脉冲宽度 volatile unsigned char ICP_Parity=0;           //捕获中断奇偶次计数 1时为偶次 并在此时判断脉宽 volatile unsigned char address; volatile unsigned char code_data; volatile unsigned char code_data1; unsigned char clrbit; #define FREQ 8 //定义单片机工作频率为 4M /////////////// //**************************************************************** // 函数名称:DelayLcd // 函数功能:延时  // 入口参数: // 出口参数: //*****************************************************************     void DelayLcd(uint16 i)           {     uint16 j;     for(j=200;j>0;j--)         for(;i>0;i--);     //while(i--); } //**************************************************************** // 函数名称:LcdWriteCommand // 函数功能:写指令到LCD模块 // 入口参数:数据 // 出口参数: //***************************************************************** void LcdWriteCommand(uint8 data1) // {  uint8 i ;  P_LCDCS0 ;  P_LCDRS0 ;  for(i=8;i>0;i--)  {   P_LCDCLK0;   if(data1&0x80) P_LCDDAT1;   else P_LCDDAT0;   P_LCDCLK1;   data1 <<= 1;  } } //**************************************************************** // 函数名称:LcdWritedata // 函数功能:写数据到LCD模块 // 入口参数:数据 // 出口参数: //***************************************************************** void LcdWritedata(uint8 data1) // {  uint8 i;  P_LCDCS0 ;  P_LCDRS1 ;  for(i=8;i>0;i--)  {   P_LCDCLK0;   if(data1&0x80) P_LCDDAT1;   else P_LCDDAT0;   P_LCDCLK1;   data1 <<= 1;  } } //**************************************************************** // 函数名称:Lcd_SetAddr // 函数功能:设置LCD显示地址 // 入口参数: 页地址 列地址 // 出口参数: //***************************************************************** void Lcd_SetAddr(uint8 page,uint8 column) { //LcdWriteCommand(0xb0 | (y+yy)); //LcdWriteCommand(0x10 | (x>>4)); //LcdWriteCommand(0x00 | (x&0x0f));  //P_LCDCS0 ;  LcdWriteCommand(0xb0|page);   /*设置页地址*/  LcdWriteCommand((column>>4)|0x10); /*设置列地址的高4位*/  LcdWriteCommand(column&0x0f); /*设置列地址的低4位*/ } //////  void Display_Graphic_32x2(uint8 page,uint8 column,PROGMEM uint8_t  *dp) //   电池显示 0、2、4、6、8、10 {  uint8 i,j;  uint8 page_address;  uint8 column_address_L,column_address_H;  page_address = 0xb0|page;  column_address_L =(column&0x0f);  column_address_H =(column>>4)|0x10;   P_LCDCS0 ;  for(j=0;j<2;j++)  {   LcdWriteCommand(page_address+j);   /*设置页地址*/   LcdWriteCommand(column_address_H); /*设置列地址的高4位*/   LcdWriteCommand(column_address_L); /*设置列地址的低4位*/   for (i=32;i>0;i--) //写32行   {     LcdWritedata(pgm_read_byte(dp++));  /*写数据到LCD,每写完一个8位的数据后列地址自动加1*/       }   LcdWritedata(0x00);  }  P_LCDCS1 ; } //#ifdef  Display_Graphic_32x32_CALL void Display_Graphic_32x32(uint8 page,uint8 column,PROGMEM uint8_t *dp) {  uint8 i,j;  uint8 page_address;  uint8 column_address_L,column_address_H;  page_address = 0xb0|page;  column_address_L =(column&0x0f);  column_address_H =(column>>4)|0x10;   P_LCDCS0 ; &

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    /****************temic*********t5557***********************************/    #include   <at892051.h>     #include   <string.h>    #include   <intrins.h>     #include   <stdio.h>     #define    uchar    unsigned char     #define    uint     unsigned int     #define    ulong    unsigned long     //STC12C2051AD的SFR定义     sfr  WDT_CONTR = 0xe1;//stc2051的看门狗??????     /**********全局常量************/    //写卡的命令     #define    write_command0       0//写密码     #define    write_command1       1//写配置字     #define    write_command2       2//密码写数据     #define    write_command3       3//唤醒     #define    write_command4       4//停止命令     #define    TRUE       1     #define    FALSE      0     #define    OK         0     #define    ERROR      255     //读卡的时间参数us     #define ts_min          250//270*11.0592/12=249//取近似的整数     #define ts_max          304//330*11.0592/12=304     #define t1_min          73//90*11.0592/12=83:-10调整     #define t1_max          156//180*11.0592/12=166     #define t2_min          184//210*11.0592/12=194     #define t2_max          267//300*11.0592/12=276     //***********不采用中断处理:采用查询的方法读卡时关所有中断****************/     sbit p_U2270B_Standby = P3^5;//p_U2270B_Standby PIN=13     sbit p_U2270B_CFE = P3^3;//p_U2270B_CFE     PIN=6     sbit p_U2270B_OutPut = P3^7;//p_U2270B_OutPut  PIN=2     sbit wtd_sck = P1^7;//SPI总线     sbit wtd_si = P1^3;    sbit wtd_so = P1^2;    sbit iic_data = P1^2;//lcd IIC     sbit iic_clk = P1^7;    sbit led_light = P1^6;//测试绿灯     sbit led_light1 = P1^5;//测试红灯     sbit led_light_ok  = P1^1;//读卡成功标志     sbit fengmingqi = P1^5;    /***********全局变量************************************/       uchar data Nkey_a[4] = {0xA0, 0xA1, 0xA2, 0xA3};//初始密码             //uchar idata card_snr[4];   //配置字     uchar data bankdata[28] = {1,2,3,4,5,6,7,1,2,3,4,5,6,7,1,2,3,4,5,6,7,1,2,3,4,5,6,7};     //存储卡上用户数据(1-7)7*4=28     uchar data cominceptbuff[6] = {1,2,3,4,5,6};//串口接收数组ram     uchar command; //第一个命令     uchar command1;//     //uint  temp;     uchar j,i;    uchar myaddr = 8;    //uchar ywqz_count,time_count;             //ywqz jishu:     uchar bdata DATA;    sbit BIT0 = DATA^0;    sbit BIT1 = DATA^1;    sbit BIT2 = DATA^2;    sbit BIT3 = DATA^3;    sbit BIT4 = DATA^4;    sbit BIT5 = DATA^5;    sbit BIT6 = DATA^6;    sbit BIT7 = DATA^7;    uchar bdata DATA1;    sbit BIT10 = DATA1^0;    sbit BIT11 = DATA1^1;    sbit BIT12 = DATA1^2;    sbit BIT13 = DATA1^3;    sbit BIT14 = DATA1^4;    sbit BIT15 = DATA1^5;    sbit BIT16 = DATA1^6;    sbit BIT17 = DATA1^7;    bit i_CurrentLevel;//i_CurrentLevel  BIT 00H(Saves current level of OutPut pin of U2270B)     bit timer1_end;    bit read_ok = 0;    //缓存定时值,因用同一个定时器     union HLint { uint W;    struct   {    uchar H;uchar L;   }   B; };//union HLint idata a     union HLint data a;    //缓存定时值,因用同一个定时器     union HLint0 { uint W;    struct {   uchar H;   uchar L; } B; };//union HLint idata a     union HLint0 data b;    /**********************函数原型*****************/    //读写操作     void f_readcard(void);//全部读出1~7 AOR唤醒     void f_writecard(uchar x);//根据命令写不同的内容和操作     void f_clearpassword(void);//清除密码     void f_changepassword(void);//修改密码     //功能子函数     void write_password(uchar data *data p);//写初始密码或数据     void write_block(uchar x,uchar data *data p);//不能用通用指针     void write_bit(bit x);//写位     /*子函数区*****************************************************/    void delay_2(uint x)    //延时,时间x*10us@12mhz,最小20us@12mhz     {    x--; x--;    while(x)    {      _nop_();      _nop_();      x--;    }    _nop_();//WDT_CONTR=0X3C;不能频繁的复位     _nop_();    }    /////////////////////////////////////////////////////////////////////     void initial(void)    {    SCON = 0x50; //串口方式1,允许接收     //SCON  =0x50;     //01010000B:10位异步收发,波特率可变,SM2=0不用接收到有效停止位才RI=1,     //REN=1允许接收     TMOD = 0x21; //定时器1 定时方式2(8位),定时器0 定时方式1(16位)     TCON = 0x40; //设定时器1 允许开始计时(IT1=1)     TH1 = 0xfD;  //FB 18.432MHz 9600 波特率     TL1 = 0xfD;  //fd 11.0592 9600     IE = 0X90;     //EA=ES=1     TR1 = 1;     //启动定时器     WDT_CONTR = 0x3c;//使能看门狗     p_U2270B_Standby = 0;//单电源     PCON = 0x00;    IP = 0x10;//uart you xian XXXPS PT1 PX1 PT0 PX0     led_light1 = 1;    led_light = 0;    p_U2270B_OutPut = 1;    }    /************************************************/    void f_readcard()//读卡     {    EA = 0;//全关,防止影响跳变的定时器计时     WDT_CONTR = 0X3C;//喂狗     p_U2270B_CFE = 1;//      delay_2(232);  //>2.5ms            /*   //   aor    用唤醒功能来防碰撞   p_U2270B_CFE = 0; delay_2(18);//start gap>150us   write_bit(1);//10=操作码读0页   write_bit(0);       write_password(&bankdata[24]);//密码block7   p_U2270B_CFE =1 ;//    delay_2(516);//编程及确认时间5.6ms   */    WDT_CONTR = 0X3C;//喂狗     led_light = 0;    b.W = 0;    while(!(read_ok == 1))    {             //while(p_U2270B_OutPut);//等一个稳定的低电平?超时判断?              while(!p_U2270B_OutPut);//等待上升沿的到来同步信号检测1       TR0 = 1;      //deng xia jiang       while(p_U2270B_OutPut);//等待下降沿       TR0 = 0;   a.B.H = TH0;   a.B.L = TL0;   TH0 = TL0 = 0;   TR0 = 1;//定时器晚启动10个周期       //同步头       if((324 < a.W) && (a.W < 353)) ;//检测同步信号1                  else     {     TR0 = 0;     TH0 = TL0 = 0;     goto read_error;    }      //等待上升沿        while(!p_U2270B_OutPut);   TR0 = 0;   a.B.H = TH0;   a.B.L = TL0;   TH0 = TL0 = 0;   TR0 = 1;//b.N1<<=8;            if(a.B.L < 195);//0.5p       else     {     TR0 = 0;     TH0 = TL0 = 0;     goto read_error;    }      //读0~7块的数据       for(j = 0;j < 28;j++)      {       //uchar i;                  for(i = 0;i < 16;i++)//8个位        {        //等待下降沿的到来         while(p_U2270B_OutPut);                TR0 = 0;     a.B.H = TH0;     a.B.L = TL0;     TH0 = TL0 = 0;     TR0 = 1;              if(t2_max < a.W/*)&&(a.W < t2_max)*/)//1P          {         b.W >>= 2;//先左移再赋值          b.B.L += 0xc0;                             i++;        }        else if(t1_min < a.B.L/*)&&(a.B.L < t1_max)*/)//0.5p         {         b.W >>= 1;         b.B.L += 0x80;                           }        else      {      TR0 = 0;      TH0 = TL0 = 0;      goto read_error;     }        i++;        while(!p_U2270B_OutPut);//上升                   TR0 = 0;     a.B.H = TH0;     a.B.L = TL0;     TH0 = TL0 = 0;     TR0 = 1;                      if(t2_min < a.W/*)&&(a.W < t2_max)*/)//1P          {         b.W >>= 2;         i++;        }        else if(t1_min < a.B.L/*a.W)&&(a.B.L < t1_max)*/)//0.5P         //else if(!(a.W==0))         {         b.W >>= 1;         //temp+=0x00;          //led_light1=0;led_light=1;delay_2(40000);         }        else      {      TR0 = 0;      TH0 = TL0 = 0;      goto read_error;     }        i++;       }       //取出奇位        DATA = b.B.L;       BIT13 = BIT7;    BIT12 = BIT5;    BIT11 = BIT3;    BIT10 = BIT1;       DATA = b.B.H;       BIT17 = BIT7;    BIT16 = BIT5;    BIT15 = BIT3;    BIT14 = BIT1;       bankdata[j] = DATA1;      }              read_ok = 1;//读卡完成了     read_error:    _nop_();    }       }    /***************************************************/    void f_writecard(uchar x)//写卡     {    p_U2270B_CFE = 1;    delay_2(232);  //>2.5ms            //psw=0 standard write     if (x == write_command0)//写密码:初始化密码     {      uchar i;      uchar data *data p;      p = cominceptbuff;      p_U2270B_CFE = 0;   delay_2(31);//start gap>330us       write_bit(1);//写操作码1:10       write_bit(0);//写操作码0       write_bit(0);//写锁定位0       for(i = 0;i < 35;i++)      {       write_bit(1);//写数据位1       }      p_U2270B_CFE = 1;      led_light1 = 0;   led_light = 1;   delay_2(40000);//测试使用       //write_block(cominceptbuff[4],p);       p_U2270B_CFE = 1;      bankdata[20] = cominceptbuff[0];//密码存入       bankdata[21] = cominceptbuff[1];      bankdata[22] = cominceptbuff[2];      bankdata[23] = cominceptbuff[3];    }    else if (x == write_command1)//配置卡参数:初始化     {      uchar data *data p;      p = cominceptbuff;      write_bit(1);//写操作码1:10       write_bit(0);//写操作码0       write_bit(0);//写锁定位0               write_block(cominceptbuff[4],p);      p_U2270B_CFE=  1;    }    //psw=1  pssword mode     else if(x == write_command2)  //密码写数据    {      uchar data*data p;      p = &bankdata[24];      write_bit(1);//写操作码1:10       write_bit(0);//写操作码0       write_password(p);//发口令       write_bit(0);//写锁定位0       p = cominceptbuff;      write_block(cominceptbuff[4],p);//写数据            }    else if(x == write_command3)//aor    //唤醒 {      //cominceptbuff[1]操作码10 X xxxxxB       uchar data *data p;      p = cominceptbuff;      write_bit(1);//10       write_bit(0);             write_password(p);//密码       p_U2270B_CFE = 1;//此时数据不停的循环传出     }    else //停止操作码     {      write_bit(1);//11       write_bit(1);             p_U2270B_CFE = 1;         }    p_U2270B_CFE = 1;    delay_2(560);//5.6ms     }    /************************************/    void f_clearpassword()//清除密码     {    uchar data *data p;    uchar i,x;          p = &bankdata[24];//原密码     p_U2270B_CFE = 0; delay_2(18);//start gap>150us     //操作码10:10xxxxxxB     write_bit(1);    write_bit(0);              for(x = 0;x < 4;x++)//发原密码     {             DATA = *(p++);      for(i = 0;i < 8;i++)      {       write_bit(BIT0);       DATA >>= 1;      }    }    write_bit(0);//锁定位0:0     p = &cominceptbuff[0];    write_block(0x00,p);//写新配置参数:pwd=0             //密码无效:即清除密码     DATA = 0x00;//停止操作码00000000B     for(i = 0;i < 2;i++)    {    write_bit(BIT7);    DATA <<= 1;    }    p_U2270B_CFE = 1;       delay_2(560);//5.6ms     }    /*********************************/    void f_changepassword()//修改密码            {       uchar data *data p;    uchar i,x,addr;    addr = 0x07;//block7     p = &Nkey_a[0];//原密码     DATA = 0x80;//操作码10:10xxxxxxB     for(i = 0;i < 2;i++)    {      write_bit(BIT7);      DATA <<= 1;    }    for(x = 0;x < 4;x++)//发原密码     {             DATA = *(p++);      for(i = 0;i < 8;i++)      {       write_bit(BIT7);       DATA >>= 1;      }    }    write_bit(0);//锁定位0:0     p = &cominceptbuff[0];    write_block(0x07,p);//写新密码     p_U2270B_CFE = 1;    bankdata[24] = cominceptbuff[0];//密码存入     bankdata[25] = cominceptbuff[1];    bankdata[26] = cominceptbuff[2];    bankdata[27] = cominceptbuff[3];    DATA = 0x00;//停止操作码00000000B     for(i = 0;i < 2;i++)    {      write_bit(BIT7);      DATA <<= 1;    }    p_U2270B_CFE = 1;       delay_2(560);//5.6ms     }    /***************************子函数***********************************/    void write_bit(bit x)//写一位     {    if(x)    {      p_U2270B_CFE = 1;   delay_2(32);//448*11.0592/120=42延时448us       p_U2270B_CFE = 0;   delay_2(28);//280*11.0592/120=26写1     }    else    {      p_U2270B_CFE = 1;   delay_2(92);//192*11.0592/120=18       p_U2270B_CFE = 0;   delay_2(28);//280*11.0592/120=26写0     }    }    /*******************写一个block*******************/    void write_block(uchar addr,uchar data *data p)    {    uchar i,j;        for(i = 0;i < 4;i++)//block0数据     {             DATA = *(p++);      for(j = 0;j < 8;j++)      {       write_bit(BIT0);       DATA >>= 1;      }    }    DATA = addr <<= 5;//0地址     for(i = 0;i < 3;i++)    {      write_bit(BIT7);      DATA <<= 1;    }                   }    /*************************************************/    void write_password(uchar data *data p)    {    uchar i,j;        for(i = 0;i < 4;i++)//     {             DATA = *(p++);      for(j = 0;j < 8;j++)      {       write_bit(BIT0);       DATA >>= 1;      }    }        }   /*************************************************/   void main()    {    initial();    TI = RI = 0;    ES = 1;    EA = 1;  delay_2(28);   //f_readcard();     while(1) {   f_readcard();      //读卡   f_writecard(command1);  //写卡    f_clearpassword();   //清除密码     f_changepassword();    //修改密码 } }

    标签: 12345

    上传时间: 2017-10-20

    上传用户:my_lcs

  • 推挽式DC-DC开关电源设计

    随着半导体技术和电子技术的发展,开关电源的体积越来越小、质量越来越轻、效率越来越高、可靠性也越来越优良,被广泛地运用到了生活中的各个方面。DcDC开关电源是开关电源中非常常用的一种形式,因此,对DCDC开关电源的拓扑结构、反馈电路等相关知识的研究成为了理解开关电源的重要环节。论文分析了推挽式DCDC开关电源的工作原理、效率和优缺点,设计了一款输出恒定的推挽式DCDC开关电源。论文以T公司的高速PwM控制器Uc3825为核心,给出了DCDC开关电源的结构框图,详细设计了控制器、推挽式驱动、整流滤波、反馈控制等电路,讨论了变压器、开关管、整流二极管等选型问題。通过对推挽式DCDC开关电源样机的测试,结果表明,在输出功率为100W到30W时,论文设计的样机的转换效率可以达到85%以上。开关电源就是通过特定的电路,控制开关管的导通时间和关断时间,以达到输出恒定的直流电压的设备。随着电子技术的迅猛发展,开关电源涉及到的相关技术也越来越成熟,使得开关电源成为了电子设备中不可或缺的一种供电方式开关电源最早源于二十世纪五十年代的美国,当时,美国为了设计特殊需求的军用电源,提出了小型、轻量的目标,自此开始,开关电源由于其比传统的线性电源拥有的优点而广泛地运用到电子、电气设备、计算机电源、通信设备等领经过几十年的不断进步,开关电源在诸多方面都有了非常大的突破。大功率MOSFET和IGBT等功率器件技术的进步使得开关电源能向着高频化、大功率的方向发展。软开关技术可以降低开关损耗和开关噪声,可以大大提升开关电源的效率,为高频开关电源的实现提供了可能。平面变压器和平面电感技术的发展使开关电源的效率可以进一步得到提升,体积也可以大大地减小。有源功率因数校正技术的发展,使开关电源的功率因数得到了很大地提升,既解决了由电路中的非线性负载产生的谐波失真,又提高了开关电源的整机效率

    标签: 开关电源

    上传时间: 2022-03-10

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  • 基于推挽式高频变压器的开关电源

    方案论证与比较开关稳压电源主要完成数控调节、DC-DC变换环节和稳压环节,数控调节采用T公司超低功耗处理器MsP430F169单片机进行控制,DCDC变换又分升压和降压变换,本系统要求升压变换,并且电流达到2A能够稳压,达到2.5A实现过流保护,根据这一系列要求有以下可选方案。1.1控制核心选取方案比较:方案一:采用51或者AVR单片机,其功耗较高,并不自带AD、DA或者自带AD DA精度不高,采集数据不便,设置输出电压不便。方案二:采用T推出的超低功耗处理器sP430F169单片机,其自带12位高精度AD、DA,外围电路简单,便于采集输出电压和设置输出电压。因此本系统采用MSP430F169作为控制核心。12DCDC升压方案比较:方案一:采用BO0ST升压电路升压,通过调节PM占空比调节输出电压,实现升压并可调压,但是BO0ST电路的输人电流连续,输出电流断续,输出存在着较大的纹波,开关噪声大缺点,不易达到题目要求。方案二:采用推挽式变换,推挽式开关电源两个控制开关轮流交替工作,开关管驱动控制简单,输出波形非常对称,在整个周期内都向负载提供功率输出因此,输出电流瞬态响应速度很高,电压输出特性很好,是所有开关电源中电压利用率最高的开关电源。高频变压器升压,电压可调范围广,空载损耗较小,效率较高,所占体积较小。因此本设计采用了方案二。13稳压方案比较:方案一:采用单片机AD采样,获取输出电压、电流,通过程序算法调节PWM波占空比实现稳压,硬件简单、成本较低,但是在反馈调节时采集输出电压比较复杂,程序算法也相对复杂,反应速度相对硬件反馈较慢,不够精准,并且还要单独做过流保护电路

    标签: 高频 变压器 开关电源

    上传时间: 2022-03-16

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  • 同步整流开关电源的应用设计

    开关稳压电源(以下简称开关电源)问世后,在很多领域逐步取代了线性稳压电源和晶闸管相控电源。早期出现的是串联型开关电源,其主电路拓扑与线性电源相仿,但功率晶体管工作于开关状态,随着脉宽调制(PWM)技术的发展,PWM开关电源问世,它的特点是用20KHz的载波进行脉冲宽度调制,电源的效率可达65%-70%,而线性电源的效率只有30%-40%。因此,用工作频率为20 kHz的PWM开关电源替代线性电源,可大幅度节约能源,从而引起了人们的广泛关注,在电源技术发展史上被誉为20kHz革命。随着超大规模集成芯片尺寸的不断减小,电源的尺寸与微处理器相比要大得多;而航天、潜艇、军用开关电源以及用电池的便携式电子设备(如手提计算机、移动电话等)更需要小型化、轻量化的电源,因此,对开关电源提出了小型轻量要求,包括磁性元件和电容的体积重量也要小。此外,还要求开关电源效率要更高,性能更好,可靠性更高等,这一切高新要求便促进了开关电源的不断发展和进步。

    标签: 整流 开关电源

    上传时间: 2022-06-20

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  • OFDM系统中信道编码的FPGA实现及降低峰均比的研究

    低压电力线通信(PLC)具有网络分布广、无需重新布线和维护方便等优点。近年来,低压电力线通信被看成是解决信息高速公路“最后一英里”问题的一种方案,在国内外掀起了一个新的研究热潮。电力线信道中不仅存在多径干扰和子信道衰落,而且还存在开关噪声和窄带噪声,因此在电力线通信系统中,信道编码是不可或缺的重要组成部分。 本文着重研究了在FPGA上实现OFDM系统中的信道编解码方案。其中编码端由卷积码编码器和交织器组成,解码端由Viterbi译码器和解交织器组成,同时为了与PC机进行通信,还在FPGA上做了一个RS232串行接口模块,以上所有的模块均采用硬件描述语言VerilogHDL编写。另外,峰值平均功率比(PAR)较大是OFDM系统所面临的一个重要问题,必须要考虑如何降低大峰值功率信号出现的概率。本文重点研究了三种降低PAR的方法:即信号预畸变技术、信号非畸变技术和编码技术。这三种方法各有优缺点,但是迄今为止还没有一种好方法能够彻底地解决OFDM系统中较高PAR的弊病。本论文内容安排如下:第一章介绍了课题的背景,可编程器件和OFDM技术的发展历程。第二章详细介绍了OFDM的原理以及实现OFDM所采用的一些技术细节。第三章详细介绍了本课题中信道编码的方案,包括信道编码的基本原理,组成结构以及方案中采用的卷积码和交织的原理及设计。第四章详细讨论了编码方案如何在FPGA上实现,包括可编程逻辑器件FPGA/CPLD的结构特点,开发流程,以及串口通信接口、编解码器的FPGA设计。第五章详细介绍了如何降低OFDM系统中的峰值平均功率比。最后,在第六章总结全文,并对课题中需要进一步完善的方面进行了探讨。

    标签: OFDM FPGA 信道编码

    上传时间: 2013-04-24

    上传用户:520