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CC1010-RTY1 Folha de dados(PDF) 69 Page - Texas Instruments

Nome de Peças CC1010-RTY1
Descrição Electrónicos  Single Chip Very Low Power RF Transceiver with 8051-Compatible Microcontroller
PDF  150 Pages
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Fabricante Electrônico  TI2 [Texas Instruments]
Página de início  https://www.ti.com
Logo TI2 - Texas Instruments

CC1010-RTY1 Folha de dados(HTML) 69 Page - Texas Instruments

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CC1010
SWRS047A
Page 69 of 146
The clock output is high when the serial
port is idle. In reception, data is shifted in
on the rising edge of the clock. In
transmission, each new bit is set on the
falling edge of the clock.
T1M/TH1
Baudrate
(kBaud)
Fxosc =
3.6864
MHz
Fxosc =
7.3728
MHz
Fxosc =
11.0592
MHz
Fxosc =
14.7456
MHz
Fxosc =
18.4320
MHz
Fxosc =
22.1184
MHz
57.6
1/255
1/254
0/255
1/252
1/251
1/250
19.2
1/253
1/250
0/253
0/252
1/241
1/238
9.6
1/250
1/244
0/250
0/248
1/226
1/220
4.8
1/244
1/232
0/244
0/240
1/196
1/184
2.4
1/232
1/208
0/232
0/224
1/136
1/112
1.2
1/208
1/160
0/208
0/192
1/16
0/160
Table 23. Baud rate examples (SMODx=1)
16.7.2
MODE1
Mode 1 provides standard asynchronous
full duplex communication, using a total of
10 bits: 1 start bit, 8 data bits and 1 stop
bit. For receive operations, the stop bit is
stored
in
SCON0.RB8_0
(or
SCON1.RB8_1
). Data bits are received
and transmitted with their LSB first.
The baud rate for mode 1 is a function of
timer 1 overflow. Each time the timer
increments
from
its
maximum
count
(0xFF), a clock pulse is sent to the baud
rate circuit, to be further divided by 16 or
32
as
set
by
PCON.SMOD0
/
EICON.SMOD1
to give the baud rate:
overflow
Timer
Rate
Baud
1
32
2
=
SMODx
As can be seen from the equation above,
if
both
serial
ports
are
in
use
simultaneously, the baud rate is equal or
different by a factor 2.
It is common to use Timer 1 in Mode 2 (8-
bit counter with auto-reload) for baud rate
generation, although any timer mode can
be used. The Timer 1 reload value is
stored in the TH1 register, which makes
the complete baudrate using mode 2:
)
256
(
)
8
12
(
32
2
TH1
T1M
SMODx
=
system
f
Rate
Baud
T1M
in the above equation is in register
CKCON
(see page 55), and controls the
initial division in Timer 1 between 4 and
12.
Some example baud rates and reload
values are shown in Table 23. The setting
for
other
baud
rates
and
oscillator
frequencies can be determined by using
the above equation.
To transmit data in mode 1, write data to
SBUF0
/ SBUF1. Transmission is then
performed on TXD0 / TXD1 in the following
order: start bit, 8 data bits (LSB first) and
then the stop bit.
Reception begins on the falling edge of a
start bit received on RXD0 / RXD1, if
reception is enabled in SCON0.REN_0 /
SCON1.REN_1
. The data input is sampled
16 times per baud for any baud rate. Each
bit decision is performed as a majority
decision between 3 successive samples in
the middle of each baud. If the majority
decision is not equal to zero for the start
bit, the serial port will stop reception and
wait for a new start bit.
When the majority decision is made for the
stop-bit, the following conditions must be
met:
RI_0
/ RI_1 is 0
If SM2_0 / SM2_1 is set, the state of
the stop bit must be one
If these conditions are met, the received
data is buffered in SBUF0 / SBUF1, the



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