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COM81C17 датащи(PDF) 9 Page - SMSC Corporation |
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COM81C17 датащи(HTML) 9 Page - SMSC Corporation |
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9 / 18 page ![]() 9 Table 4 - COM81C17 Status Registers Description (Bits 0-7) BIT DESCRIPTION 0 CP1 - This reflects the inverted state of the control pin CP1. 1 CP2 - This is active only when the nCP2 pin is programmed be to an input. It is set by its corresponding input pin and reflects the inverted state of the control pin nCP2. When the CP2 pin is programmed as an output, this bit is forced to a zero. 2 TX SHIFT REGISTER EMPTY - This signals the processor that the Transmit Shift Register is empty. A typical program will usually load the last character of a transmission and then monitor the TX SHIFT REGISTER EMPTY bit to determine when it is a safe time for disabling transmission. This bit is set when the Transmitter Shift Register has completed transmission of a character, and no new character has been loaded in the Transmit Buffer Register. This bit is also set by asserting internal reset. This bit is cleared by: A) Loading the TX Buffer Register 3 PARITY ERROR - This signals the processor that the character stored in the Receive Character Buffer was received with an incorrect number of binary "1" bits. This bit is set when the received character in the Receiver Buffer Register has an incorrect parity bit and parity has been enabled. This bit is cleared by: A) Setting Reset Errors in the Control Register B) Asserting internal reset 4 OVERRUN ERROR - This is set whenever a byte stored in the Receive Character Buffer is overwritten with a new byte from the Receive Shift Register before being transferred to the processor. This bit is cleared by: A) Setting Reset Errors in the Control Register B) Asserting internal reset 5 FRAMING ERROR - This is set whenever a byte in the Receive Character Buffer was received with an incorrect bit format ("0" stop bits). This bit is cleared by: A) Setting Reset Errors in the Control Register B) Asserting internal reset 6 TX BUFFER EMPTY - This signals the processor that the Transmit Buffer Register is empty and that the TPUART can accept a new character for transmission. This bit is set when: A) A character has been loaded from the Transmit Buffer Register to the Transmit Shift Register B) Asserting the TRANSMIT RESET bit in the Control Register C) Asserting internal reset This bit is cleared by: A) Writing to the Transmit Buffer Register This bit is initially set when the transmitter logic is enabled by setting the TX Enable bit in the Control Register (also TX Buffer is empty because of reset). Data can be overwritten if a consecutive write is performed while TX Buffer Empty is zero. |
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