PIC18F2585/2680/4585/4680
DS39625C-page 76
Preliminary
2007 Microchip Technology Inc.
TABLE 5-2:
REGISTER FILE SUMMARY (PIC18F2585/2680/4585/4680)
File Name
Bit 7
Bit 6
Bit 5
Bit 4
Bit 3
Bit 2
Bit 1
Bit 0
Value on
POR, BOR
Details
on page:
TOSU
—
Top-of-Stack Upper Byte (TOS<20:16>)
---0 0000
TOSH
Top-of-Stack High Byte (TOS<15:8>)
0000 0000
TOSL
Top-of-Stack Low Byte (TOS<7:0>)
0000 0000
STKPTR
STKFUL
STKUNF
—
Return Stack Pointer
00-0 0000
PCLATU
—
—bit 21(1)
Holding Register for PC<20:16>
---0 0000
PCLATH
Holding Register for PC<15:8>
0000 0000
PCL
PC Low Byte (PC<7:0>)
0000 0000
TBLPTRU
—
bit 21
Program Memory Table Pointer Upper Byte (TBLPTR<20:16>)
--00 0000
TBLPTRH
Program Memory Table Pointer High Byte (TBLPTR<15:8>)
0000 0000
TBLPTRL
Program Memory Table Pointer Low Byte (TBLPTR<7:0>)
0000 0000
TABLAT
Program Memory Table Latch
0000 0000
PRODH
Product Register High Byte
xxxx xxxx
PRODL
Product Register Low Byte
xxxx xxxx
INTCON
GIE/GIEH
PEIE/GIEL
TMR0IE
INT0IE
RBIE
TMR0IF
INT0IF
RBIF
0000 000x
INTCON2
RBPU
INTEDG0
INTEDG1
INTEDG2
—TMR0IP
—RBIP
1111 -1-1
INTCON3
INT2IP
INT1IP
—
INT2IE
INT1IE
—
INT2IF
INT1IF
11-0 0-00
INDF0
Uses contents of FSR0 to address data memory – value of FSR0 not changed (not a physical register)
N/A
POSTINC0
Uses contents of FSR0 to address data memory – value of FSR0 post-incremented (not a physical register)
N/A
POSTDEC0
Uses contents of FSR0 to address data memory – value of FSR0 post-decremented (not a physical register)
N/A
PREINC0
Uses contents of FSR0 to address data memory – value of FSR0 pre-incremented (not a physical register)
N/A
PLUSW0
Uses contents of FSR0 to address data memory – value of FSR0 pre-incremented (not a physical register),
value of FSR0 offset by W
N/A
FSR0H
—
Indirect Data Memory Address Pointer 0 High
---- xxxx
FSR0L
Indirect Data Memory Address Pointer 0 Low Byte
xxxx xxxx
WREG
Working Register
xxxx xxxx
INDF1
Uses contents of FSR1 to address data memory – value of FSR1 not changed (not a physical register)
N/A
POSTINC1
Uses contents of FSR1 to address data memory – value of FSR1 post-incremented (not a physical register)
N/A
POSTDEC1
Uses contents of FSR1 to address data memory – value of FSR1 post-decremented (not a physical register)
N/A
PREINC1
Uses contents of FSR1 to address data memory – value of FSR1 pre-incremented (not a physical register)
N/A
PLUSW1
Uses contents of FSR1 to address data memory – value of FSR1 pre-incremented (not a physical register),
value of FSR1 offset by W
N/A
FSR1H
—
Indirect Data Memory Address Pointer 1 High
---- xxxx
FSR1L
Indirect Data Memory Address Pointer 1 Low Byte
xxxx xxxx
BSR
—
Bank Select Register
---- 0000
INDF2
Uses contents of FSR2 to address data memory – value of FSR2 not changed (not a physical register)
N/A
POSTINC2
Uses contents of FSR2 to address data memory – value of FSR2 post-incremented (not a physical register)
N/A
POSTDEC2
Uses contents of FSR2 to address data memory – value of FSR2 post-decremented (not a physical register)
N/A
PREINC2
Uses contents of FSR2 to address data memory – value of FSR2 pre-incremented (not a physical register)
N/A
PLUSW2
Uses contents of FSR2 to address data memory – value of FSR2 pre-incremented (not a physical register),
value of FSR2 offset by W
N/A
FSR2H
—
Indirect Data Memory Address Pointer 2 High
---- xxxx
FSR2L
Indirect Data Memory Address Pointer 2 Low Byte
xxxx xxxx
Legend: x = unknown, u = unchanged, - = unimplemented, q = value depends on condition
Note 1:
Bit 21 of the PC is only available in Test mode and Serial Programming modes.
2:
3:
These registers and/or bits are not implemented on PIC18F2X8X devices and are read as ‘0’. Reset values are shown for PIC18F4X8X
devices; individual unimplemented bits should be interpreted as ‘—’.
4:
The PLLEN bit is only available in specific oscillator configuration; otherwise, it is disabled and reads as ‘0’. See Section 2.6.4 “PLL in 5:
The RE3 bit is only available when Master Clear Reset is disabled (CONFIG3H<7> = 0); otherwise, RE3 reads as ‘0’. This bit is read-only.
6:
RA6/RA7 and their associated latch and direction bits are individually configured as port pins based on various primary oscillator modes.
When disabled, these bits read as ‘0’.
7:
CAN bits have multiple functions depending on the selected mode of the CAN module.
8:
This register reads all ‘0’s until the ECAN technology is set up in Mode 1 or Mode 2.
9:
These registers are available on PIC18F4X8X devices only.