SN32F260 Series
32-Bit Cortex-M0 Micro-Controller
SONiX TECHNOLOGY CO., LTD
Page 72
Version 1.5
0
CAP0RE
Capture on CT16Bn_CAP0 rising edge: a sequence of 0 then 1 on
CT16Bn_CAP0 will cause CAP0 to be loaded with the contents of TC.
0: Disable.
1: Enable.
R/W
0
6.7.13 CT16Bn Capture 0 register (CT16Bn_CAP0) (n=0)
Address Offset: 0x84
Each Capture register is associated with a device pin and may be loaded with the counter/timer value when a specified
event occurs on that pin. The settings in the Capture Control register determine whether the capture function is
enabled, and whether a capture event happens on the rising edge of the associated pin, the falling edge, or on both
edges.
Bit
Name
Description
Attribute
Reset
31:16
Reserved
R
0
15:0
CAP0[15:0]
Timer counter capture value.
R
0
6.7.14 CT16Bn External Match register (CT16Bn_EM)(n=1)
Address Offset: 0x88
The External Match register provides status of CT16Bn_PWM [22:0]. If the match outputs are configured as PWM
output, the function of the external match registers is determined by the
PWM rules
.
Bit
Name
Description
Attribute
Reset
31:23
Reserved
R
0
22
EM22
When the TC and MR22 are equal, this bit will act according to EMC22
bits, and also drive the state of CT16Bn_PWM22 output.
R/W
0
21
EM21
When the TC and MR21 are equal, this bit will act according to EMC21
bits, and also drive the state of CT16Bn_PWM21 output.
R/W
0
20
Reserved
R
0
19
EM19
When the TC and MR19 are equal, this bit will act according to EMC19
bits, and also drive the state of CT16Bn_PWM19 output.
R/W
0
18
EM18
When the TC and MR18 are equal, this bit will act according to EMC18
bits, and also drive the state of CT16Bn_PWM18 output.
R/W
0
17
EM17
When the TC and MR17 are equal, this bit will act according to EMC17
bits, and also drive the state of CT16Bn_PWM17 output.
R/W
0
16
EM16
When the TC and MR16 are equal, this bit will act according to EMC16
bits, and also drive the state of CT16Bn_PWM16 output.
R/W
0
15
EM15
When the TC and MR15 are equal, this bit will act according to EMC15
bits, and also drive the state of CT16Bn_PWM15 output.
R/W
0
14
EM14
When the TC and MR14 are equal, this bit will act according to EMC14
bits, and also drive the state of CT16Bn_PWM14 output.
R/W
0
13
EM13
When the TC and MR13 are equal, this bit will act according to EMC13
bits, and also drive the state of CT16Bn_PWM13 output.
R/W
0
12
EM12
When the TC and MR12 are equal, this bit will act according to EMC12
bits, and also drive the state of CT16Bn_PWM12 output.
R/W
0
11
EM11
When the TC and MR11 are equal, this bit will act according to EMC11
bits, and also drive the state of CT16Bn_PWM11 output.
R/W
0
10
EM10
When the TC and MR10 are equal, this bit will act according to EMC10
bits, and also drive the state of CT16Bn_PWM10 output.
R/W
0
9
EM9
When the TC and MR9 are equal, this bit will act according to EMC9 bits,
and also drive the state of CT16Bn_PWM9 output.
R/W
0
8
EM8
When the TC and MR8 are equal, this bit will act according to EMC8 bits,
and also drive the state of CT16Bn_PWM8 output.
R/W
0
7
EM7
When the TC and MR7 are equal, this bit will act according to EMC7 bits,
and also drive the state of CT16Bn_PWM7 output.
R/W
0
6
EM6
When the TC and MR6 are equal, this bit will act according to EMC6 bits,
and also drive the state of CT16Bn_PWM6 output.
R/W
0
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