參數(shù)資料
型號: SC16C750IB64
廠商: NXP SEMICONDUCTORS
元件分類: 微控制器/微處理器
英文描述: Universal Asynchronous Receiver/Transmitter (UART) with 64-byte FIFO
中文描述: 1 CHANNEL(S), 3M bps, SERIAL COMM CONTROLLER, PQFP64
封裝: 10 X 10 MM, 1.40 MM HEIGHT, PLASTIC, MS-026, SOT-314-2, LQFP-64
文件頁數(shù): 12/45頁
文件大?。?/td> 598K
代理商: SC16C750IB64
Philips Semiconductors
SC16C750
UART with 64-byte FIFO
Product data
Rev. 04 — 20 June 2003
12 of 45
9397 750 11623
Koninklijke Philips Electronics N.V. 2003. All rights reserved.
6.5 Programmable baud rate generator
The SC16C750 supports high speed modem technologies that have increased input
data rates by employing data compression schemes. For example, a 33.6 kbit/s
modem that employs data compression may require a 115.2 kbit/s input data rate.
A 128.0 kbit/s ISDN modem that supports data compression may need an input
data rate of 460.8 kbit/s.
A single baud rate generator is provided for the transmitter and receiver, allowing
independent TX/RX channel control. The programmable Baud Rate Generator is
capable of accepting an input clock up to 48 MHz, as required for supporting a
3 Mbits/s data rate. The SC16C750 can be configured for internal or external clock
operation. For internal clock oscillator operation, an industry standard microprocessor
crystal (parallel resonant/22-33 pF load) is connected externally between the XTAL1
and XTAL2 pins (see
Figure 4
). Alternatively, an external clock can be connected to
the XTAL1 pin to clock the internal baud rate generator for standard or custom rates
(see
Table 5
).
The generator divides the input 16
×
clock by any divisor from 1 to 2
16
1. The
SC16C750 divides the basic crystal or external clock by 16. The frequency of the
BAUDOUT output pin is exactly 16
×
(16 times) of the selected baud rate
(BAUDOUT = 16 Baud Rate). Customized baud rates can be achieved by selecting
the proper divisor values for the MSB and LSB sections of baud rate generator.
Programming the Baud Rate Generator registers DLM (MSB) and DLL (LSB)
provides a user capability for selecting the desired final baud rate. The example in
Table 5
shows selectable baud rates when using a 1.8432 MHz crystal.
For custom baud rates, the divisor value can be calculated using the following
equation:
(1)
Fig 4.
Crystal oscillator connection.
002aaa169
X1
1.8432 MHz
C1
22 pF
C2
47 pF
X
X
X1
1.8432 MHz
C1
47 pF
C2
100 pF
X
X
1.5 k
Divisor (in decimal)
XTAL1 clock frequency
serial data rate
16
----------------------------------------------------------
=
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