FDC37C665GT_07 SMSC [SMSC Corporation], FDC37C665GT_07 Datasheet - Page 28

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FDC37C665GT_07

Manufacturer Part Number
FDC37C665GT_07
Description
High-Performance Multi-Mode Parallel Port Super I/O Floppy Disk Controllers
Manufacturer
SMSC [SMSC Corporation]
Datasheet
DIGITAL OUTPUT REGISTER (DOR)
Address 3F2 READ/WRITE
The DOR controls the drive select and motor
enables of the disk interface outputs. It also
BIT 0 and 1 DRIVE SELECT
These two bits a are binary encoded for the four
drive selects DS0-DS3, thereby allowing only
one drive to be selected at a time.
BIT 2 nRESET
A logic "0" written to this bit resets the Floppy
disk controller.
until a logic "1" is written to this bit.
software reset does not affect the DSR and CCR
registers, nor does it affect the other bits of the
DOR register.
required is 100ns, therefore toggling this bit by
consecutive writes to this register is a valid
method of issuing a software reset.
BIT 3 DMAEN
PC/AT and Model 30 Mode:
Writing this bit to logic "1" will enable the DRQ,
nDACK, TC and FINTR outputs. This bit being
a logic "0" will disable the nDACK and TC
inputs, and hold the DRQ and FINTR outputs in
a high impedance state. This bit is a logic "0"
after a reset and in these modes.
PS/2 Mode: In this mode the DRQ, nDACK, TC
and FINTR pins are always enabled. During a
reset, the DRQ, nDACK, TC, and FINTR pins
will remain enabled, but this bit will be cleared to
a logic "0".
RESET
COND.
The minimum reset duration
This reset will remain active
MOT
EN3
7
0
MOT
EN2
6
0
MOT
EN1
5
0
This
MOT
EN0
28
4
0
contains the enable for the DMA logic and
contains a software reset bit. The contents of
the DOR are unaffected by a software reset.
The DOR can be written to at any time.
BIT 4 MOTOR ENABLE 0
This bit controls the MTR0 disk interface output.
go active.
BIT 5 MOTOR ENABLE 1
This bit controls the MTR1 disk interface output.
go active.
BIT 6 MOTOR ENABLE 2
This bit controls the MTR2 disk interface output.
go active.
BIT 7 MOTOR ENABLE 3
This bit controls the MTR3 disk interface output.
active.
A logic "1" in this bit will cause the output pin to
A logic "1" in this bit will cause the output pin to
A logic "1" in this bit will cause the output pin to
A logic "1" in this bit causes the output to go
DMAEN nRESE
3
0
Table 3 - Drive Activation Values
DRIVE
0
1
2
3
2
T
0
DRIVE
SEL1
1
0
DOR VALUE
DRIVE
1CH
2DH
4EH
8FH
SEL0
0
0

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