31-18 |
RESERVED |
R |
0x0 |
|
17 |
P17 |
R/W |
0x1 |
GPIO Port T Power Control. The Pn bit encodings do not apply if the corresponding bit in the RCGCGPIO, SCGCGPIO, or DCGCGPIO register is clear.
0x0 = GPIO port T 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 = GPIO port T is powered but does not receive a clock. In this case, the module is inactive.
|
16 |
P16 |
R/W |
0x1 |
GPIO Port S Power Control. The Pn bit encodings do not apply if the corresponding bit in the RCGCGPIO, SCGCGPIO, or DCGCGPIO register is clear.
0x0 = GPIO port S 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 = GPIO port S is powered but does not receive a clock. In this case, the module is inactive.
|
15 |
P15 |
R/W |
0x1 |
GPIO Port R Power Control. The Pn bit encodings do not apply if the corresponding bit in the RCGCGPIO, SCGCGPIO, or DCGCGPIO register is clear.
0x0 = GPIO port R 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 = GPIO port R is powered but does not receive a clock. In this case, the module is inactive.
|
14 |
P14 |
R/W |
0x1 |
GPIO Port Q Power Control. The Pn bit encodings do not apply if the corresponding bit in the RCGCGPIO, SCGCGPIO, or DCGCGPIO register is clear.
0x0 = GPIO port Q 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 = GPIO port Q is powered but does not receive a clock. In this case, the module is inactive.
|
13 |
P13 |
R/W |
0x1 |
GPIO Port P Power Control. The Pn bit encodings do not apply if the corresponding bit in the RCGCGPIO, SCGCGPIO, or DCGCGPIO register is clear.
0x0 = GPIO port P 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 = GPIO port P is powered but does not receive a clock. In this case, the module is inactive.
|
12 |
P12 |
R/W |
0x1 |
GPIO Port N Power Control. The Pn bit encodings do not apply if the corresponding bit in the RCGCGPIO, SCGCGPIO, or DCGCGPIO register is clear.
0x0 = GPIO port N 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 = GPIO port N is powered but does not receive a clock. In this case, the module is inactive.
|
11 |
P11 |
R/W |
0x1 |
GPIO Port M Power Control. The Pn bit encodings do not apply if the corresponding bit in the RCGCGPIO, SCGCGPIO, or DCGCGPIO register is clear.
0x0 = GPIO port M 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 = GPIO port M is powered but does not receive a clock. In this case, the module is inactive.
|
10 |
P10 |
R/W |
0x1 |
GPIO Port L Power Control. The Pn bit encodings do not apply if the corresponding bit in the RCGCGPIO, SCGCGPIO, or DCGCGPIO register is clear.
0x0 = GPIO port L 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 = GPIO port L is powered but does not receive a clock. In this case, the module is inactive.
|
9 |
P9 |
R/W |
0x1 |
GPIO Port K Power Control. The Pn bit encodings do not apply if the corresponding bit in the RCGCGPIO, SCGCGPIO, or DCGCGPIO register is clear.
0x0 = GPIO port K 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 = GPIO port K is powered but does not receive a clock. In this case, the module is inactive.
|
8 |
P8 |
R/W |
0x1 |
GPIO Port J Power Control. The Pn bit encodings do not apply if the corresponding bit in the RCGCGPIO, SCGCGPIO, or DCGCGPIO register is clear.
0x0 = GPIO port J 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 = GPIO port J is powered but does not receive a clock. In this case, the module is inactive.
|
7 |
P7 |
R/W |
0x1 |
GPIO Port H Power Control. The Pn bit encodings do not apply if the corresponding bit in the RCGCGPIO, SCGCGPIO, or DCGCGPIO register is clear.
0x0 = GPIO port H 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 = GPIO port H is powered but does not receive a clock. In this case, the module is inactive.
|
6 |
P6 |
R/W |
0x1 |
GPIO Port G Power Control. The Pn bit encodings do not apply if the corresponding bit in the RCGCGPIO, SCGCGPIO, or DCGCGPIO register is clear.
0x0 = GPIO port G 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 = GPIO port G is powered but does not receive a clock. In this case, the module is inactive.
|
5 |
P5 |
R/W |
0x1 |
GPIO Port F Power Control. The Pn bit encodings do not apply if the corresponding bit in the RCGCGPIO, SCGCGPIO, or DCGCGPIO register is clear.
0x0 = GPIO port F 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 = GPIO port F is powered but does not receive a clock. In this case, the module is inactive.
|
4 |
P4 |
R/W |
0x1 |
GPIO Port E Power Control. The Pn bit encodings do not apply if the corresponding bit in the RCGCGPIO, SCGCGPIO, or DCGCGPIO register is clear.
0x0 = GPIO port E 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 = GPIO port E is powered but does not receive a clock. In this case, the module is inactive.
|
3 |
P3 |
R/W |
0x1 |
GPIO Port D Power Control. The Pn bit encodings do not apply if the corresponding bit in the RCGCGPIO, SCGCGPIO, or DCGCGPIO register is clear.
0x0 = GPIO port D 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 = GPIO port D is powered but does not receive a clock. In this case, the module is inactive.
|
2 |
P2 |
R/W |
0x1 |
GPIO Port C Power Control. The Pn bit encodings do not apply if the corresponding bit in the RCGCGPIO, SCGCGPIO, or DCGCGPIO register is clear.
0x0 = GPIO port C 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 = GPIO port C is powered but does not receive a clock. In this case, the module is inactive.
|
1 |
P1 |
R/W |
0x1 |
GPIO Port B Power Control. The Pn bit encodings do not apply if the corresponding bit in the RCGCGPIO, SCGCGPIO, or DCGCGPIO register is clear.
0x0 = GPIO port B 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 = GPIO port B is powered but does not receive a clock. In this case, the module is inactive.
|
0 |
P0 |
R/W |
0x1 |
GPIO Port A Power Control. The Pn bit encodings do not apply if the corresponding bit in the RCGCGPIO, SCGCGPIO, or DCGCGPIO register is clear.
0x0 = GPIO port A 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 = GPIO port A is powered but does not receive a clock. In this case, the module is inactive.
|