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MC9S12P64CFT 参数 Datasheet PDF下载

MC9S12P64CFT图片预览
型号: MC9S12P64CFT
PDF下载: 下载PDF文件 查看货源
内容描述: 微控制器 [Microcontrollers]
分类和应用: 微控制器外围集成电路时钟
文件页数/大小: 566 页 / 7414 K
品牌: FREESCALE [ Freescale ]
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Serial Communication Interface (S12SCIV5)  
for every zero bit. No pulse is transmitted for every one bit. When receiving data, the IR pulses should be  
detected using an IR photo diode and transformed to CMOS levels by the IR receive decoder (external  
from the MCU). The narrow pulses are then stretched by the infrared submodule to get back to a serial bit  
stream to be received by the SCI.The polarity of transmitted pulses and expected receive pulses can be  
inverted so that a direct connection can be made to external IrDA transceiver modules that uses active low  
pulses.  
The infrared submodule receives its clock sources from the SCI. One of these two clocks are selected in  
the infrared submodule in order to generate either 3/16, 1/16, 1/32 or 1/4 narrow pulses during  
transmission. The infrared block receives two clock sources from the SCI, R16XCLK and R32XCLK,  
which are configured to generate the narrow pulse width during transmission. The R16XCLK and  
R32XCLK are internal clocks with frequencies 16 and 32 times the baud rate respectively. Both  
R16XCLK and R32XCLK clocks are used for transmitting data. The receive decoder uses only the  
R16XCLK clock.  
11.4.1.1 Infrared Transmit Encoder  
The infrared transmit encoder converts serial bits of data from transmit shift register to the TXD pin. A  
narrow pulse is transmitted for a zero bit and no pulse for a one bit. The narrow pulse is sent in the middle  
of the bit with a duration of 1/32, 1/16, 3/16 or 1/4 of a bit time. A narrow high pulse is transmitted for a  
zero bit when TXPOL is cleared, while a narrow low pulse is transmitted for a zero bit when TXPOL is set.  
11.4.1.2 Infrared Receive Decoder  
The infrared receive block converts data from the RXD pin to the receive shift register. A narrow pulse is  
expected for each zero received and no pulse is expected for each one received. A narrow high pulse is  
expected for a zero bit when RXPOL is cleared, while a narrow low pulse is expected for a zero bit when  
RXPOL is set. This receive decoder meets the edge jitter requirement as defined by the IrDA serial infrared  
physical layer specification.  
11.4.2 LIN Support  
This module provides some basic support for the LIN protocol. At first this is a break detect circuitry  
making it easier for the LIN software to distinguish a break character from an incoming data stream. As a  
further addition is supports a collision detection at the bit level as well as cancelling pending transmissions.  
11.4.3 Data Format  
The SCI uses the standard NRZ mark/space data format. When Infrared is enabled, the SCI uses RZI data  
format where zeroes are represented by light pulses and ones remain low. See Figure 11-15 below.  
S12P-Family Reference Manual, Rev. 1.13  
378  
Freescale Semiconductor  
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