参数资料
型号: X40421V14I-CT1
厂商: Intersil
文件页数: 12/25页
文件大小: 0K
描述: IC VOLT MON DUAL SUP/SW 14-TSSOP
标准包装: 2,500
类型: 多压监控器
监视电压数目: 2
输出: 开路漏极或开路集电极
复位: 低有效
复位超时: 可调节/可选择
电压 - 阀值: 1.6V,2.9V
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 14-TSSOP(0.173",4.40mm 宽)
供应商设备封装: 14-TSSOP
包装: 带卷 (TR)
X40420, X40421
Figure 10. Byte Write Sequence
Signals from
the Master
S
t
a
r
t
Slave
Address
Byte
Address
Data
S
t
o
p
SDA Bus
0
Signals from
the Slave
A
C
K
A
C
K
A
C
K
Page Write
The device is capable of a page write operation. It is
initiated in the same manner as the byte write opera-
tion; but instead of terminating the write cycle after the
first data byte is transferred, the master can transmit
an unlimited number of 8-bit bytes. After the receipt of
each byte, the device will respond with an acknowl-
edge, and the address is internally incremented by
one. The page address remains constant. When the
counter reaches the end of the page, it “rolls over” and
goes back to ‘0’ on the same page.
Figure 11. Page Write Operation
This means that the master can write 16 bytes to the
page starting at any location on that page. If the master
begins writing at location 10, and loads 12 bytes, then
the first 6 bytes are written to locations 10 through 15,
and the last 6 bytes are written to locations 0 through 5.
Afterwards, the address counter would point to location
6 of the page that was just written. If the master sup-
plies more than 16 bytes of data, then new data over-
writes the previous data, one byte at a time.
Signals from
the Master
S
t
a
r
t
Slave
Address
Byte
Address
Data
(1)
(1 ≤ n ≤ 16)
Data
(n)
S
t
o
p
SDA Bus
1 0 1
0 0
0
Signals from
the Slave
A
C
K
A
C
K
A
C
K
A
C
K
Figure 12. Writing 12 bytes to a 16-byte Page Starting at Location 10
6 Bytes
6 Bytes
address
=5
address pointer
ends here
Addr = 6
address
10
address
n-1
The master terminates the Data Byte loading by issuing
a stop condition, which causes the device to begin the
nonvolatile write cycle. As with the byte write operation,
all inputs are disabled until completion of the internal
write cycle. See Figure 11 for the address, acknowl-
edge, and data transfer sequence.
12
May 25, 2006
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