参数资料
型号: 24VL014/P
厂商: Microchip Technology
文件页数: 9/30页
文件大小: 0K
描述: IC EEPROM 1KBIT 400KHZ 8DIP
标准包装: 60
格式 - 存储器: EEPROMs - 串行
存储器类型: EEPROM
存储容量: 1K (128 x 8)
速度: 100kHz,400kHz
接口: I²C,2 线串口
电源电压: 1.5 V ~ 3.6 V
工作温度: -20°C ~ 85°C
封装/外壳: 8-DIP(0.300",7.62mm)
供应商设备封装: 8-PDIP
包装: 管件
产品目录页面: 1443 (CN2011-ZH PDF)
24VL014
6.0
6.1
WRITE OPERATIONS
Byte Write
The higher order four bits of the word address remain
constant. If the master should transmit more than 16
bytes prior to generating the Stop condition, the
address counter will roll over and the previously
Following the Start signal from the master, the device
code (4 bits), the Chip Select bits (3 bits) and the R/W
bit (which is a logic low) are placed onto the bus by the
master transmitter. The device will acknowledge this
control byte during the ninth clock pulse. The next byte
transmitted by the master is the word address and will
be written into the Address Pointer of the 24VL014.
After receiving another Acknowledge signal from the
24VL014, the master device will transmit the data word
received data will be overwritten. As with the byte write
operation, once the Stop condition is received, an
internal write cycle will begin (Figure 6-2). If an attempt
is made to write to the protected portion of the array
when the hardware write protection has been enabled,
the device will acknowledge the command, but no data
will be written. The write cycle time must be observed
even if write protection is enabled.
to be written into the addressed memory location. The
24VL014 acknowledges again and the master
generates a Stop condition. This initiates the internal
write cycle and the 24VL014 will not
generate Acknowledge signals during this time
(Figure 6-1). If an attempt is made to write to the
protected portion of the array when the hardware write
protection has been enabled, the device will
acknowledge the command, but no data will be written.
The write cycle time must be observed even if write
protection is enabled.
Note:
Page write operations are limited to writing
bytes within a single physical page,
regardless of the number of bytes
actually being written. Physical page
boundaries start at addresses that are
integer multiples of the page buffer size (or
‘page size’) and end at addresses that are
integer multiples of [page size – 1]. If a
Page Write command attempts to write
across a physical page boundary, the
result is that the data wraps around to the
beginning of the current page (overwriting
6.2
Page Write
data previously stored there), instead of
being written to the next page, as might be
The write-control byte, word address and the first data
byte are transmitted to the 24VL014 in the same way
as in a byte write. But instead of generating a Stop
condition, the master transmits up to 15 additional data
bytes to the 24VL014 that are temporarily stored in the
expected. It is therefore necessary that the
application software prevent page write
operations that would attempt to cross a
page boundary.
on-chip page buffer and will be written into the memory
6.3
Write Protection
once the master has transmitted a Stop condition.
Upon receipt of each word, the four lower order
Address Pointer bits are internally incremented by one.
The WP pin must be tied to V CC or V SS . If tied to V CC ,
the entire array will be write-protected (00h-7Fh). If the
WP pin is tied to V SS , write operations to all address
locations are allowed. Write protection is not available
on the SOT-23 package; for this package, write
operations are always enabled.
FIGURE 6-1:
BYTE WRITE
Bus Activity
Master
S
T
A
R
T
Control
Byte
Word
Address
Data
S
T
O
P
SDA Line
S
P
A
A
A
Bus Activity
FIGURE 6-2:
PAGE WRITE
C
K
C
K
C
K
S
Bus Activity
Master
T
A
R
T
Control
Byte
Word
Address (n)
Data (n)
Data (n +1)
Data (n + 15)
S
T
O
P
SDA Line
S
P
A
A
A
A
A
Bus Activity
C
K
C
K
C
K
C
K
C
K
? 2009 Microchip Technology Inc.
DS22129A-page 9
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