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ST72361 датащи(PDF) 142 Page - STMicroelectronics |
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ST72361 датащи(HTML) 142 Page - STMicroelectronics |
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142 / 224 page ![]() ST72361 142/224 LINSCI ™ SERIAL COMMUNICATION INTERFACE (LIN Mode) (Cont’d) 10.7.9.5 LIN Baud Rate Baud rate programming is done by writing a value in the LPR prescaler or performing an automatic resynchronization as described below. Automatic Resynchronization To automatically adjust the baud rate based on measurement of the LIN Synch Field: – Write the nominal LIN Prescaler value (usually depending on the nominal baud rate) in the LPFR / LPR registers. – Set the LASE bit to enable the Auto Synchroni- zation Unit. When Auto Synchronization is enabled, after each LIN Synch Break, the time duration between five falling edges on RDI is sampled on fCPU and the result of this measurement is stored in an internal 15-bit register called SM (not user accessible) (See Figure 7). Then the LDIV value (and its asso- ciated LPFR and LPR registers) are automatically updated at the end of the fifth falling edge. During LIN Synch field measurement, the SCI state ma- chine is stopped and no data is transferred to the data register. 10.7.9.6 LIN Slave Baud Rate Generation In LIN mode, transmission and reception are driv- en by the LIN baud rate generator Note: LIN Master mode uses the Extended or Conventional prescaler register to generate the baud rate. If LINE bit = 1 and LSLV bit = 1 then the Conven- tional and Extended Baud Rate Generators are disabled: the baud rate for the receiver and trans- mitter are both set to the same value, depending on the LIN Slave baud rate generator: with: LDIV is an unsigned fixed point number. The man- tissa is coded on 8 bits in the LPR register and the fraction is coded on 4 bits in the LPFR register. If LASE bit = 1 then LDIV is automatically updated at the end of each LIN Synch Field. Three registers are used internally to manage the auto-update of the LIN divider (LDIV): - LDIV_NOM (nominal value written by software at LPR/LPFR addresses) - LDIV_MEAS (results of the Field Synch meas- urement) - LDIV (used to generate the local baud rate) The control and interactions of these registers is explained in Figure 8 and Figure 9. It depends on the LDUM bit setting (LIN Divider Update Method) Note: As explained in Figure 8 and Figure 9, LDIV can be updated by two concurrent actions: a transfer from LDIV_MEAS at the end of the LIN Sync Field and a transfer from LDIV_NOM due to a software write of LPR. If both operations occur at the same time, the transfer from LDIV_NOM has priority. Tx = Rx = (16*LDIV) fCPU |
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