参数资料
型号: X40626V14
厂商: Intersil
文件页数: 7/22页
文件大小: 0K
描述: IC SUPERVISOR CPU DUAL 14-TSSOP
标准包装: 190
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: 最小为 100 ms
电压 - 阀值: 2.93V,4.38V
工作温度: 0°C ~ 70°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: 管件
X40626
Table 1. Write Protect Enable Bit and WP Pin Function
Memory Array not
Memory Array
Block Protect
WP
LOW
HIGH
HIGH
WPEN
X
0
1
Block Protected
Writes OK
Writes OK
Writes OK
Block Protected
Writes Blocked
Writes Blocked
Writes Blocked
Bits
Writes OK
Writes OK
Writes Blocked
WPEN Bit
Writes OK
Writes OK
Writes Blocked
Protection
Software
Software
Hardware
Writing to the Control Register
Changing any of the nonvolatile bits of the control reg-
ister requires the following steps:
– Write a 02H to the Control Register to set the Write
Enable Latch (WEL). This is a volatile operation, so
there is no delay after the write. (Operation pro-
ceeded by a start and ended with a stop).
– Write a 06H to the Control Register to set both the
Register Write Enable Latch (RWEL) and the WEL
bit. This is also a volatile cycle. The zeros in the data
byte are required. (Operation proceeded by a start
and ended with a stop).
– Write a value to the Control Register that has all the
control bits set to the desired state. This can be rep-
resented as 0xys t 01 r in binary, where xy are the
WD bits, and rst are the BP bits. (Operation pre-
ceeded by a start and ended with a stop). Since this
is a nonvolatile write cycle it will take up to 10ms to
complete. The RWEL bit is reset by this cycle and
the sequence must be repeated to change the non-
volatile bits again. If bit 2 is set to ‘1’ in this third step
( 0xys t 11 r ) then the RWEL bit is set, but the WD1,
WD0, BP2, BP1 and BP0 bits remain unchanged.
Writing a second byte to the control register is not
allowed. Doing so aborts the write operation and
returns a NACK.
– A read operation occurring between any of the previ-
ous operations will not interrupt the register write
operation.
7
– The RWEL bit cannot be reset without writing to the
nonvolatile control bits in the control register, power
cycling the device or attempting a write to a write
protected block.
To illustrate, a sequence of writes to the device con-
sisting of [02H, 06H, 02H] will reset all of the nonvola-
tile bits in the Control Register to 0. A sequence of
[02H, 06H, 06H] will leave the nonvolatile bits
unchanged and the RWEL bit remains set.
SERIAL INTERFACE
Serial Interface Conventions
The device supports a bidirectional bus oriented proto-
col. The protocol defines any device that sends data
onto the bus as a transmitter, and the receiving device
as the receiver. The device controlling the transfer is
called the master and the device being controlled is
called the slave. The master always initiates data
transfers, and provides the clock for both transmit and
receive operations. Therefore, the devices in this fam-
ily operate as slaves in all applications.
Serial Clock and Data
Data states on the SDA line can change only during
SCL LOW. SDA state changes during SCL HIGH are
reserved for indicating start and stop conditions. See
Figure 5.
FN8119.0
March 28, 2005
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