參數(shù)資料
型號(hào): SC16C752
廠商: NXP Semiconductors N.V.
英文描述: Dual UART with 64-byte FIFO
中文描述: 雙UART具有64字節(jié)FIFO
文件頁(yè)數(shù): 7/47頁(yè)
文件大?。?/td> 604K
代理商: SC16C752
Philips Semiconductors
SC16C752
Dual UART with 64-byte FIFO
Product data
Rev. 04 — 20 June 2003
7 of 47
9397 750 11635
Koninklijke Philips Electronics N.V. 2003. All rights reserved.
The SC16C752 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 (2
16
1).
6.1 Trigger levels
The SC16C752 provides independent selectable and programmable trigger levels for
both receiver and transmitter DMA and interrupt generation. After reset, both
transmitter and receiver FIFOs are disabled and so, in effect, the trigger level is the
default value of one byte. The selectable trigger levels are available via the FCR. The
programmable trigger levels are available via the TLR.
6.2 Hardware flow control
Hardware flow control is comprised of Auto-CTS and Auto-RTS. Auto-CTS and
Auto-RTS can be enabled/disabled independently by programming EFR[7:6].
With Auto-CTS, CTS must be active before the UART can transmit data.
Auto-RTS only activates the RTS output when there is enough room in the FIFO to
receive data and de-activates the RTS output when the RX FIFO is sufficiently full.
The halt and resume trigger levels in the TCR determine the levels at which RTS is
activated/deactivated.
If both Auto-CTS and Auto-RTS are enabled, when RTS is connected to CTS, data
transmission does not occur unless the receiver FIFO has empty space. Thus,
overrun errors are eliminated during hardware flow control. If not enabled, overrun
errors occur if the transmit data rate exceeds the receive FIFO servicing latency.
Fig 3.
Autoflow control (Auto-RTS and Auto-CTS) example.
RX
FIFO
SERIAL-TO-
PARALLEL
FLOW
CONTROL
TX
FIFO
PARALLEL-
TO-SERIAL
FLOW
CONTROL
PARALLEL-
TO-SERIAL
FLOW
CONTROL
SERIAL-TO-
PARALLEL
FLOW
CONTROL
TX
FIFO
RX
FIFO
UART 1
UART 2
D7-D0
RX
TX
RTS
CTS
TX
RX
CTS
RTS
D7-D0
002aaa228
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