参数资料
型号: SC16C752BIB48,128
厂商: NXP Semiconductors
文件页数: 47/47页
文件大小: 0K
描述: IC DUAL UART 64BYTE 48LQFP
标准包装: 2,000
通道数: 2,DUART
FIFO's: 64 字节
电源电压: 2.5V,3.3V,5V
带自动流量控制功能:
带故障启动位检测功能:
带调制解调器控制功能:
安装类型: 表面贴装
封装/外壳: 48-LQFP
供应商设备封装: 48-LQFP(7x7)
包装: 带卷 (TR)
其它名称: 935274411128
SC16C752BIB48-F
SC16C752BIB48-F-ND
SC16C752B
All information provided in this document is subject to legal disclaimers.
NXP B.V. 2010. All rights reserved.
Product data sheet
Rev. 6 — 30 November 2010
9 of 47
NXP Semiconductors
SC16C752B
5 V, 2.2 V and 2.5 V dual UART, 5 Mbit/s (max.), with 64-byte FIFOs
6.2.2 Auto-CTS
The transmitter circuitry checks CTSn before sending the next data byte. When CTSn is
active, the transmitter sends the next byte. To stop the transmitter from sending the
following byte, CTSn must be de-asserted before the middle of the last stop bit that is
currently being sent. The auto-CTS function reduces interrupts to the host system. When
flow control is enabled, CTSn level changes do not trigger host interrupts because the
device automatically controls its own transmitter. Without auto-CTS, the transmitter sends
any data present in the transmit FIFO and a receiver overrun error may result.
6.3 Software flow control
Software flow control is enabled through the enhanced feature register and the modem
control register. Different combinations of software flow control can be enabled by setting
different combinations of EFR[3:0]. Table 3 shows software flow control options.
When CTSn is LOW, the transmitter keeps sending serial data out.
When CTSn goes HIGH before the middle of the last stop bit of the current byte, the transmitter finishes sending the current
byte, but is does not send the next byte.
When CTSn goes from HIGH to LOW, the transmitter begins sending data again.
Fig 6.
CTS functional timing
Start
byte 0 to 7
Stop
TXn
CTSn
002aaa227
Start
byte 0 to 7
Stop
Table 3.
Software flow control options (EFR[0:3])
EFR[3]
EFR[2]
EFR[1]
EFR[0]
TX, RX software flow controls
0
X
no transmit flow control
1
0
X
transmit Xon1, Xoff1
0
1
X
transmit Xon2, Xoff2
1
X
transmit Xon1, Xon2, Xoff1, Xoff2
X
0
no receive flow control
X
1
0
receiver compared Xon1, Xoff1
X
0
1
receiver compares Xon2, Xoff2
10
11
transmit Xon1, Xoff1
receiver compares Xon1 and Xon2, Xoff1 and Xoff2
01
11
transmit Xon2, Xoff2
receiver compares Xon1 and Xon2, Xoff1 and Xoff2
1
transmit Xon1, Xon2, Xoff1, Xoff2
receiver compares Xon1 and Xon2, Xoff1 and Xoff2
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