System Control Registers
399
SLAU723A – October 2017 – Revised October 2018
Copyright © 2017–2018, Texas Instruments Incorporated
System Control
Table 4-164. PCTIMER Register Field Descriptions
Bit
Field
Type
Reset
Description
31-8
RESERVED
R
0x0
7
P7
R/W
0x1
General-Purpose Timer 7 Power Control. The Pn bit encodings do
not apply if the corresponding bit in the RCGCTIMER, SCGCTIMER
or DCGCTIMER register is clear.
0x0 = Timer 7 module is not powered and does not receive a clock.
In this case, the state of the module is not retained. This
configuration provides the lowest power consumption state.
0x1 = Timer 7 module is powered but does not receive a clock. In
this case, the module is inactive.
6
P6
R/W
0x1
General-Purpose Timer 6 Power Control. The Pn bit encodings do
not apply if the corresponding bit in the RCGCTIMER, SCGCTIMER
or DCGCTIMER register is clear.
0x0 = Timer 6 module is not powered and does not receive a clock.
In this case, the state of the module is not retained. This
configuration provides the lowest power consumption state.
0x1 = Timer 6 module is powered but does not receive a clock. In
this case, the module is inactive.
5
P5
R/W
0x1
General-Purpose Timer 5 Power Control. The Pn bit encodings do
not apply if the corresponding bit in the RCGCTIMER, SCGCTIMER
or DCGCTIMER register is clear.
0x0 = Timer 5 module is not powered and does not receive a clock.
In this case, the state of the module is not retained. This
configuration provides the lowest power consumption state.
0x1 = Timer 5 module is powered but does not receive a clock. In
this case, the module is inactive.
4
P4
R/W
0x1
General-Purpose Timer 4 Power Control. The Pn bit encodings do
not apply if the corresponding bit in the RCGCTIMER, SCGCTIMER
or DCGCTIMER register is clear.
0x0 = Timer 4 module is not powered and does not receive a clock.
In this case, the state of the module is not retained. This
configuration provides the lowest power consumption state.
0x1 = Timer 4 module is powered but does not receive a clock. In
this case, the module is inactive.
3
P3
R/W
0x1
General-Purpose Timer 3 Power Control. The Pn bit encodings do
not apply if the corresponding bit in the RCGCTIMER, SCGCTIMER
or DCGCTIMER register is clear.
0x0 = Timer 3 module is not powered and does not receive a clock.
In this case, the state of the module is not retained. This
configuration provides the lowest power consumption state.
0x1 = Timer 3 module is powered but does not receive a clock. In
this case, the module is inactive.
2
P2
R/W
0x1
General-Purpose Timer 2 Power Control. The Pn bit encodings do
not apply if the corresponding bit in the RCGCTIMER, SCGCTIMER
or DCGCTIMER register is clear.
0x0 = Timer 2 module is not powered and does not receive a clock.
In this case, the state of the module is not retained. This
configuration provides the lowest power consumption state.
0x1 = Timer 2 module is powered but does not receive a clock. In
this case, the module is inactive.
1
P1
R/W
0x1
General-Purpose Timer 1 Power Control. The Pn bit encodings do
not apply if the corresponding bit in the RCGCTIMER, SCGCTIMER
or DCGCTIMER register is clear.
0x0 = Timer 1 module is not powered and does not receive a clock.
In this case, the state of the module is not retained. This
configuration provides the lowest power consumption state.
0x1 = Timer 1 module is powered but does not receive a clock. In
this case, the module is inactive.