PIC18F2455/2550/4455/4550
DS39632E-page 122
2009 Microchip Technology Inc.
10.4
PORTD, TRISD and LATD
Registers
PORTD is an 8-bit wide, bidirectional port. The corre-
sponding Data Direction register is TRISD. Setting a
TRISD bit (= 1) will make the corresponding PORTD
pin an input (i.e., put the corresponding output driver in
a high-impedance mode). Clearing a TRISD bit (= 0)
will make the corresponding PORTD pin an output (i.e.,
put the contents of the output latch on the selected pin).
The Data Latch register (LATD) is also memory
mapped. Read-modify-write operations on the LATD
register read and write the latched output value for
PORTD.
All pins on PORTD are implemented with Schmitt
Trigger input buffers. Each pin is individually
configurable as an input or output.
Each of the PORTD pins has a weak internal pull-up. A
single control bit, RDPU (PORTE<7>), can turn on all
the pull-ups. This is performed by setting RDPU. The
weak pull-up is automatically turned off when the port
pin is configured as a digital output or as one of the
other multiplexed peripherals. The pull-ups are
disabled on a Power-on Reset. The PORTE register is
Three of the PORTD pins are multiplexed with outputs,
P1B, P1C and P1D, of the Enhanced CCP module. The
operation of these additional PWM output pins is
covered in greater detail in Section 16.0 “Enhanced
PORTD can also be configured as an 8-bit wide
Streaming Parallel Port (SPP). In this mode, the input
buffers are TTL. For additional information on con-
figuration and uses of the SPP, see Section 18.0
EXAMPLE 10-4:
INITIALIZING PORTD
Note:
PORTD is only available on 40/44-pin
devices.
Note:
On a Power-on Reset, these pins are
configured as digital inputs.
Note:
When the Enhanced PWM mode is used
with either dual or quad outputs, the MSSP
functions of PORTD are automatically
disabled.
CLRF
PORTD
; Initialize PORTD by
; clearing output
; data latches
CLRF
LATD
; Alternate method
; to clear output
; data latches
MOVLW
0CFh
; Value used to
; initialize data
; direction
MOVWF
TRISD
; Set RD<3:0> as inputs
; RD<5:4> as outputs
; RD<7:6> as inputs
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