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PC87309VLJ датащи(PDF) 107 Page - National Semiconductor (TI) |
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PC87309VLJ датащи(HTML) 107 Page - National Semiconductor (TI) |
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107 / 192 page ![]() Enhanced Serial Port with IR -UART2 (Logical Device 2) 107 www.national.com 5.8.3 Transmission Deferral This feature allows software to send high-speed data in Pro- grammed Input/Output (PIO) mode without the risk of gen- erating a transmitter underrun. Transmission deferral is available only in Extended mode and when the TX_FIFO is enabled. When transmission de- ferral is enabled (TX_DFR bit in the MCR register set to 1) and the transmitter becomes empty, an internal flag is set and locks the transmitter. If the CPU now writes data into the TX_FIFO, the transmitter does not start sending the data until the TX_FIFO level reaches 14 at which time the internal flag is cleared. The internal flag is also cleared and the transmitter starts transmitting when a time-out condition is reached. This prevents some bytes from being in the TX_FIFO indefinitely if the threshold is not reached. The time-out mechanism is implemented by a timer that is enabled when the internal flag is set and there is at least one byte in the TX_FIFO. Whenever a byte is loaded into the TX_FIFO the timer gets reloaded with the initial value. If no bytes are loaded for a 64- µsec time, the timer times out and the internal flag is cleared, thus enabling the transmitter. 5.9 AUTOMATIC FALLBACK TO A NON-EXTENDED UART MODE The automatic fallback feature supports existing legacy software packages that use the 16550 UART by automati- cally turning off any Extended mode features and switches the UART to Non-Extended mode when either of the LB- GD(L) or LBGD(H) ports in bank 1 is read from or written to by the CPU. This eliminates the need for user intervention prior to run- ning a legacy program. In order to avoid spurious fallbacks, alternate baud registers are provided in bank 2. Any program designed to take ad- vantage of the UART’s extended features, should not use LBGD(L) and LBGD(H) to change the baud. It should use the BGD(L) and BGD(H) registers instead. Access to these ports will not cause fallback. Fallback can occur in any mode. In Extended UART mode, fallback is always enabled. In this case, when a fallback oc- curs, the following happens: q Transmission and Reception FIFOs switch to 16 levels. q A value of 13 is selected for the Baud Generator Prescaler q The BTEST and ETDLBK bits in the EXCR1 register are cleared. q UART mode is selected. q A switch to a Non-Extended UART mode occurs. When a fallback occurs in a Non-Extended UART mode, the last two of the above actions do not take place. No switch to UART mode occurs if either SIR or Sharp-IR mode was selected. This prevents spurious switching to UART mode when a legacy program running in infrared mode accesses the Baud Generator Divisor Registers from bank 1. Fallback from a Non-Extended mode can be disabled by setting the LOCK bit in register EXCR2. When LOCK is set to 1 and the UART is in a Non-Extended mode, two scratch registers overlaid with LBGD(L) and LBGD(H) are enabled. Any attempted CPU access of LBGD(L) and LBGD(H) ac- cesses the scratch registers, and the baud setting is not af- fected. This feature allows existing legacy programs to run faster than 115.2 Kbps. 5.10 OPTICAL TRANSCEIVER INTERFACE This module implements a flexible interface for the external infrared transceiver. Several signals are provided for this purpose. A transceiver module with one or two reception signals, or two transceiver modules can interface directly with this module without any additional logic. Since various operational modes are supported by this module, the transmitter power as well as the receiver filter in the transceiver module must be configured according to the selected mode. This module provides four interface pins to control the infra- red transceiver. ID/IRSL(2-0) are three I/O pins and ID3 is an Input pin. All of these pins are powered up as inputs. When in input mode, they can be used to read the identifi- cation data of Plug-n-Play infrared adapters. When in output mode, the logic levels of IRSL(2-0) can be either controlled directly by the software by setting bits 2-0 of the IRCFG1 register, or they can be automatically select- ed by this module whenever the operation mode changes. The automatic transceiver configuration is enabled by set- ting the AMCFG bit (bit 7) in the IRCFG4 register to 1. It al- lows the low-level functional details of the transceiver module being used to be hidden from the software drivers. The operation mode settings for the automatic configuration are determined by various bit fields in the Infrared Interface Configuration registers (IRCFG[4-1]) that must be pro- grammed when the UART is initialized. The ID0/IRSL0/IRRX2 pin can also be used as an input to support an additional infrared reception signal. In this case, however, only two configuration pins are available. The IRSL0_DS and IRSL21_DS bits in the IRCFG4 register determines the direction of IRSL(2-0). 5.11 BANK 0 – GLOBAL CONTROL AND STATUS REGISTERS In the Non-Extended modes of operation, bank 0 is compat- ible with both the 16450 and the 16550. Upon reset, this module defaults to the 16450 mode. In the Extended mode, all the Registers (except RXD/ TXD) offer additional fea- tures. TABLE 5-2. Bank 0 Serial Controller Base Registers Offset Register Name Description 00h RXD/ TXD Receiver Data Port/ Transmitter Data Port 01h IER Interrupt Enable Register 02h EIR/ FCR Event Identification Register/ FIFO Control Register 03h LCR/ BSR Link Control Register/ Bank Select Register 04h MCR Modem Control Register 05h LSR Link Status Register 06h MSR Modem Status Register 07h SCR/ ASCR Scratch Register/ Auxiliary Status and Control Register |
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