1. 要双向传输数据
2. 有时结构设计需要很长的连接线,这时就得加强LCD的驱动了,双向的加强驱动电路麻烦,
也浪费IO,造渗竖成程序的通用性不强。
3. 要查询LCD的数据,说明没有建立LCD数据显示缓存,实时查询处理更新数据很困难
建议如下:
1. 建立一个显示缓存区,用一个线程来处理LCD的数据刷新,这样你其他的顷银程序在需要更新显示
内容时,只需要处理RAM中的数据即可。
2. 单向驱动,LCD_DIR直接设置成输入状态,
LCD底层驱动把数据保持时间和指令保持时间丛乎大算好,保证传输的有效率。
标准的一般都是这个程序#include <reg52.h>
#include <math.h>
#define lcd_data P1
sbit cs1=P2^3
sbit cs2=P2^4
sbit di=P2^0
sbit rw=P2^1
sbit e=P2^2
void delay(int t)
{
int i,j,k
for(i=0i<ti++)
{ for(j=0j<255j++)
k++}
}
void write_com_l(unsigned int command)
{
cs1=1
rw=0
di=0
lcd_data=command
e=1
e=0
cs1=0
}
void write_data_l(unsigned int data0)
{
cs1=1
rw=0
di=1
lcd_data=data0
e=1
e=0
cs1=0
}
void write_com_r(unsigned int command)
{
cs2=1
rw=0
di=0
lcd_data=command
e=1
e=0
cs2=0
}
void write_data_r(unsigned int data0)
{
cs2=1
rw=0
di=1
lcd_data=data0
e=1
e=0
cs2=0
}
void disp0()
{
unsigned int i,j
for (i=0i<8i++)
{write_com_l(0xb8+i)
write_com_r(0xb8+i)
write_com_l(0x40)
write_com_r(0x40)
for (j=0j<64j++)
{write_data_l(0xaa)
write_data_r(0xaa)
}
}
}
void disp1()
{
unsigned int i,j
for (i=0i<8i++)
{write_com_l(0xb8+i)
write_com_r(0xb8+i)
write_com_l(0x40)
write_com_r(0x40)
for (j=0j<64j++)
{write_data_l(0x55)
write_data_r(0x55)
}
}
}
void disp2()
{
unsigned int i,j
for (i=0i<8i++)
{write_com_l(0xb8+i)
write_com_r(0xb8+i)
write_com_l(0x40)
write_com_r(0x40)
for (j=0j<64j++)
{write_data_l(0x0f)
write_data_r(0x0f)
}
}
}
void disp3()
{
unsigned int i,j
for (i=0i<8i++)
{write_com_l(0xb8+i)
write_com_r(0xb8+i)
write_com_l(0x40)
write_com_r(0x40)
for (j=0j<64j++)
{write_data_l(0xf0)
write_data_r(0xf0)
}
}
}
void init_lcd() //初始化LCD清屏
{
write_com_l(0x3e)
write_com_r(0x3e)
write_com_l(0x3f)
write_com_r(0x3f)
write_com_l(0xc0)
write_com_r(0xc0)
write_com_l(0xb8)
write_com_r(0xb8)
write_com_l(0x40)
write_com_r(0x40)
for(1)
{
disp0()
delay(0x0ff)
disp1()
delay(0x0ff)
disp2()
delay(0x0ff)
disp3()
delay(0x0ff)
}
}
void main()
{
IE=0x81
init_lcd()
}
void innt0 () interrupt 0
{
do {}while(1)
}
#define uchar unsigned char#define uint unsigned int
#define LCDdatabus P3
把这或渣堆东西剪游团闭切到头文件中,定义位置神裂往前提
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