AT24C02A/04A/08A
3
pin is connec ted to V
CC
, the write protection feature is
enabled and operates as shown in the following table.
Memory Organization
AT24C02A, 2K SERIAL EEPROM:
Internally organized
with 256 pages of 1-byte each, the 2K requires an 8 bit
data word address for random word addressing.
AT24C04A, 4K SERIAL EEPROM:
The 4K is internally
organized with 256 pages of 2-bytes each. Rand om word
addressing requires a 9 bit data word address.
AT24C08A, 8K SERIAL EEPROM:
The 8K is internally
organized with 4 blocks of 256 pages of 4-bytes each.
Random word addressing requires a 10 bit data word
address.
Note: 1. This parameter is characterized and is not 100% tested.
Note: 1. V
IL
min and VIH max are reference only and are not tested.
WP Pin
Status
Part of the Array Protected
24C02A 24C04A 24C08A
At V
CC
Upper Half
(1K) Array
Upper Half
(2K) Array
Full (8K)
Array
At GND Normal Read/Write Operation s
Pin Capacitance
Applicable over recommended operating range from TA = 25°C, f = 1.0 MHz, VCC = +1.8V.
Symbol Test Condition Max Units Conditions
C
I/O
Input/Output Capacitance (SDA) 8 pF V
I/O
= 0V
C
IN
Input Capacitance (A0, A1, A2, SCL) 6 pF VIN = 0V
DC Characteristics
Applicable over recommended operating range from: TAI = -40°C to +85°C, VCC = +1.8V to +5.5V, TAC = 0°C to +70°C,
V
CC
= +1.8V to +5.5V (unless otherwise noted).
Symbol Parameter Test Condition Min Typ Max Units
V
CC1
Supply Voltage 1.8 5.5 V
V
CC2
Supply Voltage 2.5 5.5 V
V
CC3
Supply Voltage 2.7 5.5 V
V
CC4
Supply Voltage 4.5 5.5 V
I
CC
Supply Current VCC = 5.0V READ at 100 kHz 0.4 1.0 mA
I
CC
Supply Current VCC = 5.0V WRITE at 100 kHz 2.0 3.0 mA
I
SB1
Standby Current VCC = 1.8V VIN = VCC or V
SS
0.6 3.0
µ
A
I
SB2
Standby Current VCC = 2.5V VIN = VCC or V
SS
1.4 4.0
µ
A
I
SB3
Standby Current VCC = 2.7V VIN = VCC or V
SS
1.6 4.0
µ
A
I
SB4
Standby Current VCC = 5.0V VIN = VCC or V
SS
8.0 18.0
µ
A
I
LI
Input Leakage Current VIN = VCC or V
SS
0.10 3.0
µ
A
I
LO
Output Leakage Current V
OUT
= V
CC
or V
SS
0.05 3.0
µ
A
V
IL
Input Low Level
(1)
-0.6 VCC x 0.3 V
V
IH
Input High Level
(1)
VCC x 0.7 VCC + 0.5 V
V
OL2
Output Low Level VCC = 3.0V IOL = 2.1 mA 0.4 V
V
OL1
Output Low Level VCC = 1.8V IOL = 0.15 mA 0.2 V