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M37270EFSP 参数 Datasheet PDF下载

M37270EFSP图片预览
型号: M37270EFSP
PDF下载: 下载PDF文件 查看货源
内容描述: 单片8位CMOS单片机结合闭合字幕解码器和屏幕显示控制器 [SINGLE-CHIP 8-BIT CMOS MICROCOMPUTER with CLOSED CAPTION DECODER and ON-SCREEN DISPLAY CONTROLLER]
分类和应用: 解码器显示控制器瞄准线计算机
文件页数/大小: 95 页 / 1505 K
品牌: RENESAS [ RENESAS TECHNOLOGY CORP ]
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MITSUBISHI MICROCOMPUTERS  
M37270MF-XXXSP  
M37270EF-XXXSP, M37270EFSP  
SINGLE-CHIP 8-BIT CMOS MICROCOMPUTER with CLOSED CAPTION DECODER  
and ON-SCREEN DISPLAY CONTROLLER  
PIN DESCRIPTION (continued)  
Output port  
Output  
Ports P60–P62, P65–P67 are a 6–bit output port. The output structure is N-channel open-  
drain output.  
P60–P62,  
P65–P67  
Input port  
Input  
Input  
Ports P63 and P64 are 2-bit input port.  
P63/OSC1/  
XCIN,  
P64/OSC2/  
XCOUT  
Clock input for OSD  
Clock output for OSD  
Sub-clock output  
Sub-clock input  
I/O for data slicer  
P63 pin is also used as OSD clock input pin OSC1.  
Output  
Output  
Input  
P64 pin is also used as OSD clock output pin OSC2. The output structure is CMOS output.  
P64 pin is also used as sub-clock output pin XCOUT. The output structure is CMOS output.  
P63 pin is also used as sub-clock input pin XCIN.  
CVIN  
Input  
Input composite video signal through a capacitor.  
Input  
VHOLD  
RVCO  
HLF  
Connect a capacitor between VHOLD and VSS.  
Connect a resistor between RVCO and VSS.  
Connect a filter using of a capacitor and a resistor between HLF and VSS.  
This is a horizontal synchronizing signal input for OSD.  
This is a vertical synchronizing signal input for OSD.  
Input  
Input  
HSYNC  
VSYNC  
HSYNC input  
VSYNC input  
Note : As shown in the memory map (Figure 3), port P0 is accessed as a memory at address 00C016 of zero page. Port P0 has the port P0  
direction register (address 00C116 of zero page) which can be used to program each bit as an input (“0”) or an output (“1”). The pins  
programmed as “1” in the direction register are output pins. When pins are programmed as “0,” they are input pins. When pins are  
programmed as output pins, the output data are written into the port latch and then output. When data is read from the output pins, the  
output pin level is not read but the data of the port latch is read. This allows a previously-output value to be read correctly even if the  
output “L” voltage has risen, for example, because a light emitting diode was directly driven. The input pins are in the floating state, so the  
values of the pins can be read. When data is written into the input pin, it is written only into the port latch, while the pin remains in the  
floating state.  
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