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ST72361AR4-Auto 데이터시트(PDF) 173 Page - STMicroelectronics |
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ST72361AR4-Auto 데이터시트(HTML) 173 Page - STMicroelectronics |
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173 / 279 page ![]() ST72361xx-Auto LINSCI serial communication interface (LIN master/slave) Doc ID 12468 Rev 3 173/279 15.8.7 Extended transmit prescaler division register (SCIETPR) Read/ write Reset value: 0000 0000 (00h) Bits 7:0 = ETPR[7:0] 8-bit Extended Transmit Prescaler Register. The extended baud rate generator is activated when a value other than 00h is stored in this register. The clock frequency from the 16 divider (see Figure 79) is divided by the binary factor set in the SCIETPR register (in the range 1 to 255). The extended baud rate generator is not active after a reset. Note: In LIN slave mode, the conventional and extended baud rate generators are disabled. 15.9 LIN mode - functional description. The block diagram of the Serial Control Interface, in LIN slave mode is shown in Figure 81. It uses six registers: ● 3 control registers: SCICR1, SCICR2 and SCICR3 ● 2 status registers: the SCISR register and the LHLR register mapped at the SCIERPR address ● A baud rate register: LPR mapped at the SCIBRR address and an associated fraction register LPFR mapped at the SCIETPR address The bits dedicated to LIN are located in the SCICR3. Refer to the register descriptions in Section 15.10: LIN mode register descriptionfor the definitions of each bit. 15.9.1 Entering LIN mode To use the LINSCI in LIN mode the following configuration must be set in SCICR3 register: ● Clear the M bit to configure 8-bit word length. ● Set the LINE bit. Master To enter master mode the LSLV bit must be reset In this case, setting the SBK bit will send 13 low bits. Then the baud rate can programmed using the SCIBRR, SCIERPR and SCIETPR registers. In LIN master mode, the conventional and/ or extended prescaler define the baud rate (as in standard SCI mode) Slave Set the LSLV bit in the SCICR3 register to enter LIN slave mode. In this case, setting the SBK bit will have no effect. 7 0 ETPR7 ETPR6 ETPR5 ETPR4 ETPR3 ETPR2 ETPR1 ETPR0 |
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