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PDF 21054E Data sheet ( Hoja de datos )

Número de pieza 21054E
Descripción 16K1.8VI2CSERIALEEPROM
Fabricantes MicrochipTechnology 
Logotipo MicrochipTechnology Logotipo



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24AA16
16K 1.8V I2CSerial EEPROM
FEATURES
• Single supply with operation down to 1.8V
• Low power CMOS technology
- 1 mA active current typical
- 10 µA standby current typical at 5.5V
- 3 µA standby current typical at 1.8V
• Organized as 8 blocks of 256 bytes (8 x 256 x 8)
• 2-wire serial interface bus, I2Ccompatible
• Schmitt trigger, filtered inputs for noise suppres-
sion
• Output slope control to eliminate ground bounce
• 100 kHz (1.8V) and 400 kHz (5V) compatibility
• Self-timed write cycle (including auto-erase)
• Page-write buffer for up to 16 bytes
• 2 ms typical write cycle time for page-write
• Hardware write protect for entire memory
• Can be operated as a serial ROM
• ESD protection > 4,000V
• 10,000,000 erase/write cycles guaranteed
• Data retention > 200 years
• 8-pin DIP, 8-lead or 14-lead SOIC packages
• Available for extended temperature ranges
- Commercial (C):
- Industrial (I):
0˚C to +70°C
-40°C to +85°C
DESCRIPTION
The Microchip Technology Inc. 24AA16 is a 1.8 volt 16K
bit Electrically Erasable PROM. The device is orga-
nized as eight blocks of 256 x 8-bit memory with a 2-
wire serial interface. Low voltage design permits oper-
ation down to 1.8 volts with standby and active currents
of only 3 µA and 1 mA, respectively. The 24AA16 also
has a page-write capability for up to 16 bytes of data.
The 24AA16 is available in the standard 8-pin DIP and
both 8-lead and 14-lead surface mount SOIC pack-
ages.
I2C is a trademark of Philips Corporation.
PACKAGE TYPES
PDIP
A0 1
A1 2
A2 3
VSS 4
8 VCC
7 WP
6 SCL
5 SDA
8-lead
SOIC
A0
A1
1
2
A2 3
VSS 4
14-lead SOIC
NC 1
A0 2
A1 3
NC 4
A2 5
VSS
6
NC 7
BLOCK DIAGRAM
WP
8 VCC
7 WP
6 SCL
5 SDA
14 NC
13 VCC
12 WP
11 NC
10 SCL
9 SDA
8 NC
HV GENERATOR
I/O
CONTROL
LOGIC
MEMORY
CONTROL
LOGIC
XDEC
SDA SCL
EEPROM
ARRAY
PAGE LATCHES
YDEC
VCC SENSE AMP
VSS R/W CONTROL
© 1996 Microchip Technology Inc.
DS21054E-page 1
This document was created with FrameMaker 4 0 4

1 page




21054E pdf
24AA16
3.6 Device Addressing
A control byte is the first byte received following the start
condition from the master device. The control byte con-
sists of a 4-bit control code, for the 24AA16 this is set as
1010 binary for read and write operations. The next three
bits of the control byte are the block select bits (B2, B1,
B0). They are used by the master device to select which
of the eight 256 word blocks of memory are to be
accessed. These bits are in effect the three most signifi-
cant bits of the word address. It should be noted that the
protocol limits the size of the memory to eight blocks of
256 words, therefore the protocol can support only one
24AA16 per system.
The last bit of the control byte defines the operation to
be performed. When set to one a read operation is
selected, when set to zero a write operation is selected.
Following the start condition, the 24AA16 monitors the
SDA bus checking the device type identifier being
transmitted, upon a 1010 code the slave device outputs
an acknowledge signal on the SDA line. Depending on
the state of the R/W bit, the 24AA16 will select a read
or write operation.
Operation
Control
Code
Block Select
R/W
Read
Write
1010
1010
Block Address
Block Address
1
0
FIGURE 3-2: CONTROL BYTE
ALLOCATION
START
READ/WRITE
SLAVE ADDRESS
R/W A
1 0 1 0 B2 B1 B0
X = Don’t care
4.0 WRITE OPERATION
4.1 Byte Write
Following the start condition from the master, the
device code (4 bits), the block address (3 bits), and the
R/W bit which is a logic low is placed onto the bus by
the master transmitter. This indicates to the addressed
slave receiver that a byte with a word address will follow
after it has generated an acknowledge bit during the
ninth clock cycle. Therefore the next byte transmitted by
the master is the word address and will be written into
the address pointer of the 24AA16. After receiving
another acknowledge signal from the 24AA16 the mas-
ter device will transmit the data word to be written into
the addressed memory location. The 24AA16 acknowl-
edges again and the master generates a stop condi-
tion. This initiates the internal write cycle, and during
this time the 24AA16 will not generate acknowledge
signals (Figure 4-1).
4.2 Page Write
The write control byte, word address and the first data
byte are transmitted to the 24AA16 in the same way as
in a byte write. But instead of generating a stop condi-
tion the master transmits up to sixteen data bytes to the
24AA16 which are temporarily stored in the on-chip
page buffer and will be written into the memory after the
master has transmitted a stop condition. After the
receipt of each word, the four lower order address
pointer bits are internally incremented by one. The
higher order seven bits of the word address remains
constant. If the master should transmit more than 16
words prior to generating the stop condition, the
address counter will roll over and the previously
received data will be overwritten. As with the byte write
operation, once the stop condition is received an inter-
nal write cycle will begin (Figure 4-2).
FIGURE 4-1:
BUS ACTIVITY
MASTER
BYTE WRITE
S
T
A
R
CONTROL
BYTE
T
WORD
ADDRESS
SDA LINE
S
BUS ACTIVITY
A
C
K
FIGURE 4-2:
BUS ACTIVITY
MASTER
SDA LINE
PAGE WRITE
S
T
A CONTROL
R BYTE
T
S
BUS ACTIVITY
WORD
ADDRESS (n)
AA
CC
KK
DATA n
DATA
S
T
O
P
P
AA
CC
KK
DATA n + 1
DATA n + 15
S
T
O
P
P
AAA
CCC
KKK
© 1996 Microchip Technology Inc.
DS21054E-page 5

5 Page





21054E arduino
24AA16
24AA16 Product Identification System
To order or to obtain information (e.g., on pricing or delivery), please use the listed part numbers, and refer to the factory or the listed
sales offices.
24AA16 -
/P
Package:
P = Plastic DIP (300 mil Body), 8-lead
SL = Plastic SOIC (150 mil Body), 14-lead
SN = Plastic SOIC (150 mil Body), 8-lead
Temperature
Range:
Blank = 0°C to +70°C
I = -40°C to +85°C
Device:
24AA16
24AA16T
1.8K, 16K I2C Serial EEPROM
1.8K, 16K I2C Serial EEPROM (Tape and Reel)
© 1996 Microchip Technology Inc
DS21054E-page 11

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