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ST72361 数据表(PDF) 151 Page - STMicroelectronics |
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ST72361 数据表(HTML) 151 Page - STMicroelectronics |
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151 / 224 page ![]() ST72361 151/224 10.8 LINSCI SERIAL COMMUNICATION INTERFACE (LIN Master Only) 10.8.1 Introduction The Serial Communications Interface (SCI) offers a flexible means of full-duplex data exchange with external equipment requiring an industry standard NRZ asynchronous serial data format. The SCI of- fers a very wide range of baud rates using two baud rate generator systems. 10.8.2 Main Features ■ Full duplex, asynchronous communications ■ NRZ standard format (Mark/Space) ■ Dual baud rate generator systems ■ Independently programmable transmit and receive baud rates up to 500K baud. ■ Programmable data word length (8 or 9 bits) ■ Receive buffer full, Transmit buffer empty and End of Transmission flags ■ 2 receiver wake-up modes: – Address bit (MSB) – Idle line ■ Muting function for multiprocessor configurations ■ Separate enable bits for Transmitter and Receiver ■ 4 error detection flags: – Overrun error – Noise error – Frame error – Parity error ■ 5 interrupt sources with flags: – Transmit data register empty – Transmission complete – Receive data register full – Idle line received – Overrun error detected ■ Transmitter clock output ■ Parity control: – Transmits parity bit – Checks parity of received data byte ■ Reduced power consumption mode ■ LIN Synch Break send capability 10.8.3 General Description The interface is externally connected to another device by three pins (see Figure 88 on page 153). Any SCI bidirectional communication requires a minimum of two pins: Receive Data In (RDI) and Transmit Data Out (TDO): – SCLK: Transmitter clock output. This pin outputs the transmitter data clock for synchronous trans- mission (no clock pulses on start bit and stop bit, and a software option to send a clock pulse on the last data bit). This can be used to control pe- ripherals that have shift registers (e.g. LCD driv- ers). The clock phase and polarity are software programmable. – TDO: Transmit Data Output. When the transmit- ter is disabled, the output pin returns to its I/O port configuration. When the transmitter is ena- bled and nothing is to be transmitted, the TDO pin is at high level. – RDI: Receive Data Input is the serial data input. Oversampling techniques are used for data re- covery by discriminating between valid incoming data and noise. Through these pins, serial data is transmitted and received as frames comprising: – An Idle Line prior to transmission or reception – A start bit – A data word (8 or 9 bits) least significant bit first – A Stop bit indicating that the frame is complete. This interface uses two types of baud rate generator: – A conventional type for commonly-used baud rates, – An extended type with a prescaler offering a very wide range of baud rates even with non-standard oscillator frequencies. |
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