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Mini57
Apr. 06, 2017
Page 193 of 475
Rev.1.00
MINI5
7
S
E
RI
E
S
TECH
NIC
A
L R
E
F
E
RE
N
CE
MA
N
UA
L
pin is detected to reset CNT as 0 and then
starts counting, while the 2nd 1 to 0 transition
stops counting.
1
0
01
Rising Edge Trigger:
The 1st 0 to 1 transition to on ACMPOx (x=
0~1) pin is detected to reset CNT as 0 and
then starts counting, while the 2nd 0 to 1
transition stops counting.
1
0
10
Level Change Trigger:
An 1 to 0 transition on ACMPOx (x= 0~1) pin is
detected to reset CNT as 0 and then starts
counting, while 0 to 1 transition stops counting.
1
0
11
Level Change Trigger:
A 0 to 1 transition on ACMPOx (x= 0~1) pin is
detected to reset CNT as 0 and then starts
counting, while 1 to 0 transition stops counting.
Table 6.6-1 Input Capture Mode Operation
6.6.5.12 Continuous Capture Mode
Timer0/1 provide Continuous Capture mode to obtain timer counter value automatically when
edges occurs on input capture signal.
When CCAPEN (TIMER_CCAPCTL[0]) set to high, the Continuous Capture mode will be
enabled. CNTSEL (TIMER_CCAPCTL[3:2]) is 00, means timer0 counter value will be latched
when edge of input capture signal changed. CNTSEL is 1 means timer1 counter value will be
latched.
After CCAPEN enabled, if edge of input capture signal changed, the first rising edge will latch the
timer counter value to TIMER_CCAP0 then set CAPR1F (TIMER_CCAPCTL[8]) to high. When
CAPR1F is high, the first falling edge will latch the timer counter value to TIMER_CCAP1 and
then set CAPF1F (TIMER_CCAPCTL[9]) to high. When CAPF1F is high, the second rising edge
will latch timer counter value to TIMER_CCAP2 and then set CAPR2F (TIMER_CCAPCTL[10]) to
high.
When CAPR2F is high, the second falling edge will latch the timer counter value to
TIMER_CCAP3 and then set CAPF2F (TIMER_CCAPCTL[11]) to high.
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