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ST7LITE39 数据表(PDF) 114 Page - STMicroelectronics |
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ST7LITE39 数据表(HTML) 114 Page - STMicroelectronics |
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114 / 167 page ![]() ST7LITE3 114/167 LINSCI ™ SERIAL COMMUNICATION INTERFACE (LIN Mode) (Cont’d) CONTROL REGISTER 2 (SCICR2) Read/Write Reset Value: 0000 0000 (00h) Bits 7:2 Same function as in SCI mode, please re- fer to Section 11.5.8 SCI Mode Register Descrip- tion. Bit 1 = RWU Receiver wake-up. This bit determines if the SCI is in mute mode or not. It is set and cleared by software and can be cleared by hardware when a wake-up sequence is recognized. 0: Receiver in active mode 1: Receiver in mute mode Notes: – Mute mode is recommended for detecting only the Header and avoiding the reception of any other characters. For more details please refer to Section 11.5.9.3 LIN Reception. – In LIN slave mode, when RDRF is set, the soft- ware can not set or clear the RWU bit. Bit 0 = SBK Send break. This bit set is used to send break characters. It is set and cleared by software. 0: No break character is transmitted 1: Break characters are transmitted Note: If the SBK bit is set to “1” and then to “0”, the transmitter will send a BREAK word at the end of the current word. CONTROL REGISTER 3 (SCICR3) Read/Write Reset Value: 0000 0000 (00h) Bit 7= LDUM LIN Divider Update Method. This bit is set and cleared by software and is also cleared by hardware (when RDRF=1). It is only used in LIN Slave mode. It determines how the LIN Divider can be updated by software. 0: LDIV is updated as soon as LPR is written (if no Auto Synchronization update occurs at the same time). 1: LDIV is updated at the next received character (when RDRF=1) after a write to the LPR register Notes: - If no write to LPR is performed between the set- ting of LDUM bit and the reception of the next character, LDIV will be updated with the old value. - After LDUM has been set, it is possible to reset the LDUM bit by software. In this case, LDIV can be modified by writing into LPR / LPFR registers. Bit 6:5 = LINE, LSLV LIN Mode Enable Bits. These bits configure the LIN mode: The LIN Master configuration enables: The capability to send LIN Synch Breaks (13 low bits) using the SBK bit in the SCICR2 register. The LIN Slave configuration enables: – The LIN Slave Baud Rate generator. The LIN Divider (LDIV) is then represented by the LPR and LPFR registers. The LPR and LPFR reg- isters are read/write accessible at the address of the SCIBRR register and the address of the SCIETPR register – Management of LIN Headers. – LIN Synch Break detection (11-bit dominant). – LIN Wake-Up method (see LHDM bit) instead of the normal SCI Wake-Up method. – Inhibition of Break transmission capability (SBK has no effect) – LIN Parity Checking (in conjunction with the PCE bit) Bit 4 = LASE LIN Auto Synch Enable. This bit enables the Auto Synch Unit (ASU). It is set and cleared by software. It is only usable in LIN Slave mode. 0: Auto Synch Unit disabled 1: Auto Synch Unit enabled. Bit 3 = LHDM LIN Header Detection Method This bit is set and cleared by software. It is only us- able in LIN Slave mode. It enables the Header De- tection Method. In addition if the RWU bit in the 7 0 TIE TCIE RIE ILIE TE RE RWU SBK 7 0 LDUM LINE LSLV LASE LHDM LHIE LHDF LSF LINE LSLV Meaning 0 x LIN mode disabled 1 0 LIN Master Mode 1 1 LIN Slave Mode |
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