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CAT24C323J-30TE13 View Datasheet(PDF) - Catalyst Semiconductor => Onsemi

Part NameCAT24C323J-30TE13 Catalyst
Catalyst Semiconductor => Onsemi Catalyst
DescriptionSupervisory circuits with I2C serial CMOS E2EPROM, precision reset controller and watchdog timer
CAT24C323J-30TE13 Datasheet PDF : 12 Pages
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CAT24C323/643
Advanced
Immediate/Current Address Read
The CAT24CXXX’s address counter contains the ad-
dress of the last byte accessed, incremented by one. In
other words, if the last READ or WRITE access was to
address N, the READ immediately following would ac-
cess data from address N+1. If N=E (where E=4095 for
24C323 and E=8191 for 24C643),then the counter will
‘wrap around’ to address 0 and continue to clock out
data. After the CAT24CXXX receives its slave address
information (with the R/W bit set to one), it issues an
acknowledge, then transmits the 8-bit byte requested.
The master device does not send an acknowledge, but
will generate a STOP condition.
Selective/Random Read
Selective/Random READ operations allow the Master
device to select at random any memory location for a
READ operation. The Master device first performs a
‘dummy’ write operation by sending the START condi-
tion, slave address and byte addresses of the location it
wishes to read. After CAT24CXXX acknowledges, the
Master device sends the START condition and the slave
address again, this time with the R/W bit set to one.
The CAT24CXXX then responds with its acknowledge
and sends the 8-bit byte requested. The master device
does not send an acknowledge but will generate a STOP
condition.
Sequential Read
The Sequential READ operation can be initiated by
either the Immediate Address READ or Selective READ
operations. After the CAT24CXXX sends the initial 8-bit
byte requested, the Master will respond with an ac
knowledge which tells the device it requires more data.
The CAT24CXXX will continue to output an 8-bit byte for
each acknowledge sent by the Master. The operation
will terminate when the Master fails to respond with an
acknowledge, thus sending the STOP condition.
The data being transmitted from CAT24CXXX is output-
ted sequentially with data from address N followed by
data from address N+1. The READ operation address
counter increments all of the CAT24CXXX address bits
so that the entire memory array can be read during one
operation. If more than E (where E= 4095 for 24C323
and E=8191 for 24C643) bytes are read out, the counter
will ‘wrap around’ and continue to clock out data bytes.
Figure 10. Selective Read Timing
S
T
BUS ACTIVITY: A SLAVE
MASTER R ADDRESS
T
BYTE ADDRESS
A15–A8
A7–A0
S
T
A SLAVE
R ADDRESS
T
S
T
DATA
O
P
SDA LINE S
XXX *
S
P
A
A
A
C
C
C
K
K
K
A
N
C
O
K
A
C
K
Figure 11. Sequential Read Timing
BUS ACTIVITY: SLAVE
MASTER ADDRESS
SDA LINE
A
C
K
* = Don't care bit for 24WC32
X= Don't care bit
DATA n
DATA n+1
DATA n+2
A
A
A
C
C
C
K
K
K
Doc. No. 25084-00 12/98
10
S
T
DATA n+x
O
P
P
N
O
A
C
K
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CAT24C323(32K), CAT24C643 (64K)

DESCRIPTION
The CAT24C323/643 is a single chip solution to three popular functions of EEPROM memory, precision reset controller and watchdog timer. The 24C323(32K) and 24C643 (64K) feature a I
2C Serial CMOS EEPROM Catalyst advanced CMOS technology substantially reduces device power requirements. The 24C323/643 features a 32-byte page and is available in 8-pin DIP or 8-pin SOIC packages.The reset function of the 24C323/643 protects the system during brown out and power up/down conditions.During system failure the watchdog timer feature protects the microcontroller with a reset signal. 24C323 features active low reset on pin 2 and active high reset on pin 7. 24C323/643 features watchdog timer on the WDI input pin (pin 1).

FEATURES
■Watchdog Timer Input (WDI)
■ Programmable Reset Threshold
■ 400 KHz I2C Bus Compatible
■ 2.7 to 6 Volt Operation
■ Low Power CMOS Technology
■ 32 - Byte Page Write Buffer
■Built-in inadvertent write protection
— VCC Lock Out
■  Active High or Low Reset Outputs
— Precision Power Supply Voltage Monitoring
—  5V, 3.3V and 3V options
■ 1,000,000 Program/Erase Cycles
■ 100 Year Data Retention
■8-Pin DIP or 8-Pin SOIC
■Commercial, Industrial and Automotive Temperature Ranges

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