14.4.5.1 Slow data tolerance
shows how much a slow received frame can be misaligned without causing a
noise error or a framing error. The slow stop bit begins at RT8 instead of RT1 but arrives
in time for the stop bit data samples at RT8, RT9, and RT10.
MSB
R
T1
R
T2
R
T3
R
T4
R
T5
R
T6
R
T7
R
T8
R
T9
R
T1
0
R
T1
1
R
T1
2
R
T1
3
R
T1
4
R
T1
5
R
T1
6
DATA
SAMPLES
RECEIVER
RT CLOCK
STOP
Figure 14-4. Slow data
For an 8-bit data and 1 stop bit character, data sampling of the stop bit takes the receiver
9 bit times x 16 RT 10 RT cycles =154 RT cycles.
With the misaligned character shown in
, the receiver counts 154 RT cycles at
the point when the count of the transmitting device is 9 bit times x 16 RT 3 RT
cycles = 147 RT cycles.
The maximum percent difference between the receiver count and the transmitter count of
a slow 8-bit data and 1 stop bit character with no errors is:
((154 - 147) / 154) x 100 = 4.54%
For a 9-bit data or 2 stop bits character, data sampling of the stop bit takes the receiver 10
bit times x 16 RT 10 RT cycles = 170 RT cycles.
With the misaligned character shown in
, the receiver counts 170 RT cycles at
the point when the count of the transmitting device is 10 bit times x 16 RT 3 RT
cycles = 163 RT cycles.
The maximum percent difference between the receiver count and the transmitter count of
a slow 9-bit or 2 stop bits character with no errors is:
((170 - 163) / 170) X 100 = 4.12%
For a 9-bit data and 2 stop bit character, data sampling of the stop bit takes the receiver
11 bit times x 16 RT 10 RT cycles = 186 RT cycles.
With the misaligned character shown in
, the receiver counts 186 RT cycles at
the point when the count of the transmitting device is 11 bit times x 16 RT 3 RT
cycles = 179 RT cycles.
The maximum percent difference between the receiver count and the transmitter count of
a slow 9-bit and 2 stop bits character with no errors is: ((186 - 179) / 186) X 100 = 3.76%
Functional description
MC9S08PA4 Reference Manual, Rev. 5, 08/2017
290
NXP Semiconductors
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