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PC87306 Datasheet(PDF) 73 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor.
Part # PC87306
Description  PC87306 SuperI/OTM Enhanced Sidewinder Lite Floppy Disk Controller, Keyboard Controller, Real-Time Clock, Dual UARTs, Infrared Interface, IEEE 1284 Pa
PDF  110 Pages
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Manufacturer  NSC [National Semiconductor (TI)]
Direct Link  http://www.national.com
Logo NSC - National Semiconductor (TI)

PC87306 Datasheet(HTML) 73 Page - National Semiconductor (TI)

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80 Parallel Port (Continued)
3 If WAIT is low during the host read cycle then the EPP
pulls IOCHRDY low
When WAIT goes high the EPP stops pulling IOCHRDY
to low
4 When IOCHRDY goes high it causes RD to go high if
WAIT is high during the host read cycle then the EPP
does not pull IOCHRDY to low
5 When RD goes high it causes the EPP to pull ASTRB
high
Only when ASTRB is high can the EPP change PD0 – 7
After ASTRB goes high the EPP puts D0 – 7 in TRI-
STATE
TLC12379 – 43
FIGURE 8-2 EPP 17 Address Read
EPP 17 Data Write and Data Read
This procedure writes to the selected peripheral device or
register See also
Figure 8-3
An EPP 17 data write operation is similar to the EPP 17
address write operation and an EPP 17 data read opera-
tion is similar to the EPP 17 address read operation except
that the data strobe (DSTRB signal) and a data register
replace the address strobe (ASTRB signal) and the address
register respectively
EPP Zero Wait State (ZWS) Address WriteRead Opera-
tion (both 17 and 19)
The following procedure performs a short write to the se-
lected peripheral device or register
ZWS should be configured as follows bit 5 of FCR is 1 and
bit 6 of FCR is 0
1 The host writes a byte to the EPP address register WR
goes low to latch D0 – 7 into the data register The latch
drives the data register onto PD0 – 7
2 The EPP first pulls WRITE low and then pulls ASTRB
low to indicate that data has been sent
3 If WAIT is high during the host write cycle ZWS goes low
and IOCHRDY goes high
4 When the host pulls WR high the EPP pulls ASTRB
ZWS and WRITE to high
Only when WRlTE and ASTRB are high can the EPP
change PD0 – 7
5 If the peripheral is fast enough to pull WAIT low before
the host terminates the write cycle
the EPP pulls
IOCHRDY to low but does not pull ZWS to low thus
carrying out a normal (non-ZWS EPP 17) write opera-
tion
Note
A read operation is similar except for the data direction and the
activation of RD instead of WR
EPP Zero Wait State (ZWS) Data WriteRead Operation
(both 17 and 19)
An EPP 17 and 19 Zero Wait State data writeread opera-
tion is similar to the EPP Zero Wait State address writeread
operation with the exception that the data strobe (DSTRB
signal) and a data register replace the address strobe
(ASTRB signal) and the address register respectively See
Figure 8-3
TLC12379 – 44
FIGURE 8-3 EPP Write with ZWS
EPP 19 Address Write
The following procedure selects a peripheral or register
See also
Figure 8-4
1 The host writes a byte to the EPP address register
2 The EPP pulls IOCHRDY low and waits for WAIT to go
low
3 When WAIT goes low the EPP pulls WRITE to low drives
the latched byte onto PD0 – 7
If WAIT was already low steps 2 and 3 occur concurrent-
ly
4 The EPP pulls ASTRB low and waits for WAIT to go high
5 When WAIT goes high the EPP stops pulling IOCHRDY
low pulls ASTRB high and waits for WAIT to go low
6 Only if no EPP write is pending when WAIT goes low (or
when bit 7 of PTR is 1 and the direction is changed to
Backwards by setting bit 5 of CTR to 1) the EPP pulls
WRITE to high
If an EPP write is pending WRITE remains low and the
EPP may change PD0 – 7
73



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