cat93c5612pi-45te13 Catalyst Semiconductor, cat93c5612pi-45te13 Datasheet - Page 8

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cat93c5612pi-45te13

Manufacturer Part Number
cat93c5612pi-45te13
Description
Supervisory Circuits With Microwire Serial Cmos E2prom, Precision Reset Controller Watchdog Timer
Manufacturer
Catalyst Semiconductor
Datasheet
CAT93CXXXX
can then continue to clock in 8-bit (16-bit for x16 format)
data to be written to the next higher address. Internally,
the address pointer is incremented after each group of
eight clocks (16 clocks for x16 format). If the host
transmits more than 16 bytes (8 words for x16 format)
the address counter ‘wraps around’ and previously
transmitted data will be overwritten.
After receiving a WRITE command, address and the
data, the CS (Chip Select) pin must be deselected for a
minimum of t
self clocking clear and data store cycle of the memory
location specified in the instruction. The clocking of the
SK pin is not necessary after the device has entered the
self clocking mode. The ready/busy status of the
CAT93CXXXX can be determined by selecting the de-
vice and polling the DO pin. Since this device features
Auto-Clear before write, it is NOT necessary to erase a
memory location before it is written into.
Figure 4. Write Instruction Timing
Figure 5. Erase Instruction Timing
Stock No. 21084-01 2/98
DO
CS
SK
DO
CS
DI
SK
DI
CSMIN
1
1
. The falling edge of CS will start the
0
1
1
1
A N
A N
A N-1
A N-1
HIGH-Z
HIGH-Z
A 0
9-92
D N
A 0
Erase
Upon receiving an ERASE command and address, the
CS (Chip Select) pin must be deasserted for a minimum
of t
clear cycle of the selected memory location. The clock-
ing of the SK pin is not necessary after the device has
entered the self clocking mode. The ready/busy status of
the CAT93CXXXX can be determined by selecting the
device and polling the DO pin. Once cleared, the content
of a cleared location returns to a logical “1” state.
CSMIN
D 0
. The falling edge of CS will start the self clocking
t SV
t SV
t EW
t CS
t EW
STATUS
VERIFY
STATUS VERIFY
BUSY
t CS
BUSY
Advanced Information
READY
READY
HIGH-Z
STANDBY
t HZ
STANDBY
t HZ
HIGH-Z

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