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TL16C752BTPTREP Arkusz danych(PDF) 4 Page - Texas Instruments

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Numer części TL16C752BTPTREP
Szczegółowy opis  3.3-V DUAL UART WITH 64-BYTE FIFO
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Producent  TI [Texas Instruments]
Strona internetowa  http://www.ti.com
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TL16C752B-EP
3.3-V DUAL UART WITH 64-BYTE FIFO
SGLS153 – FEBRUARY 2003
4
POST OFFICE BOX 655303
DALLAS, TEXAS 75265
functional block diagram
Control Signals
Modem Control Signals
Divisor
Bus
Interface
Control
and
Status Block
Status Signals
Control Signals
Status Signals
Baud Rate
Generator
UART_CLK
Receiver Block
Logic
Receiver FIFO
64-Byte
Vote
Logic
Transmitter Block
Logic
Transmitter FIFO
64-Byte
RX
RX
TX
TX
NOTE: The vote logic determines whether the RX data is a logic 1 or 0. It takes three samples of the RX line and uses a majority vote to determine
the logic level received. The vote logic operates on all bits received.
functional description
The TL16C752B-EP UART is pin-compatible with the ST16C2550 UART. It provides more enhanced features.
All additional features are provided through a special enhanced feature register.
The UART performs a serial-to-parallel conversion on data characters received from peripheral devices or
modems and parallel-to-parallel conversion on data characters transmitted by the processor. The complete
status of each channel of the TL16C752B-EP UART can be read at any time during functional operation by the
processor.
The TL16C752B-EP can be placed in an alternate mode (FIFO mode) relieving the processor of excessive
software overhead by buffering received/transmitted characters. Both the receiver and transmitter FIFOs can
store up to 64 bytes (including three additional bits of error status per byte for the receiver FIFO) and have
selectable or programmable trigger levels. Primary outputs RXRDY and TXRDY allow signalling of DMA
transfers.
The TL16C752B-EP has selectable hardware flow control and software flow control. Hardware flow control
significantly reduces software overhead and increases system efficiency by automatically controlling serial data
flow using the RTS output and CTS input signals. Software flow control automatically controls data flow by using
programmable Xon/Xoff characters.
The UART includes a programmable baud rate generator that can divide the timing reference clock input by a
divisor between 1 and (216–1).


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