参数资料
型号: ISL1220IUZ
厂商: Intersil
文件页数: 6/20页
文件大小: 0K
描述: IC RTC LP BATT BACK SRAM 10MSOP
产品培训模块: Solutions for Industrial Control Applications
标准包装: 98
类型: 时钟/日历
特点: 警报器,闰年,SRAM
存储容量: 8B
时间格式: HH:MM:SS(12/24 小时)
数据格式: YY-MM-DD-dd
接口: I²C,2 线串口
电源电压: 2.7 V ~ 5.5 V
电压 - 电源,电池: 1.8 V ~ 5.5 V
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 10-TFSOP,10-MSOP(0.118",3.00mm 宽)
供应商设备封装: 10-MSOP
包装: 管件
14
FN6315.0
June 22, 2006
Below are examples of both Single Event and periodic
Interrupt Mode alarms.
Example 1 – Alarm set with single interrupt (IM = ”0”)
A single alarm will occur on January 1 at 11:30am.
A. Set Alarm registers as follows:
B. Also the ALME bit must be set as follows:
xx indicate other control bits
After these registers are set, an alarm will be generated when
the RTC advances to exactly 11:30am on January 1 (after
seconds changes from 59 to 00) by setting the ALM bit in the
status register to “1” and also bringing the IRQ output low.
Example 2 – Pulsed interrupt once per minute (IM = ”1”)
Interrupts at one minute intervals when the seconds register
is at 30 seconds.
A. Set Alarm registers as follows:
B. Set the Interrupt register as follows:
xx indicate other control bits
Once the registers are set, the following waveform will be
seen at IRQ-:
Note that the status register ALM bit will be set each time the
alarm is triggered, but does not need to be read or cleared.
User Registers
Addresses [12h to 19h]
These registers are 8 bytes of battery-backed user memory
storage.
I2C Serial Interface
The ISL1220 supports a bidirectional bus oriented protocol.
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 the master and the
device being controlled is the slave. The master always
initiates data transfers and provides the clock for both
transmit and receive operations. Therefore, the ISL1220
operates as a slave device in all applications.
All communication over the I2C interface is conducted by
sending the MSB of each byte of data first.
Protocol Conventions
Data states on the SDA line can change only during SCL
LOW periods. SDA state changes during SCL HIGH are
reserved for indicating START and STOP conditions (See
Figure 12). On power up of the ISL1220, the SDA pin is in
the input mode.
All I2C interface operations must begin with a START
condition, which is a HIGH to LOW transition of SDA while
SCL is HIGH. The ISL1220 continuously monitors the SDA
and SCL lines for the START condition and does not
respond to any command until this condition is met (See
Figure 12). A START condition is ignored during the
power-up sequence.
All I2C interface operations must be terminated by a STOP
condition, which is a LOW to HIGH transition of SDA while
SCL is HIGH (See Figure 12). A STOP condition at the end
of a read operation or at the end of a write operation to
memory only places the device in its standby mode.
An acknowledge (ACK) is a software convention used to
indicate a successful data transfer. The transmitting device,
either master or slave, releases the SDA bus after
transmitting eight bits. During the ninth clock cycle, the
ALARM
REGISTER
BIT
DESCRIPTION
76
543210
HEX
SCA
0
000000
00h
Seconds disabled
MNA
1
0
110000
B0h Minutes set to 30,
enabled
HRA
10
010001
91h
Hours set to 11,
enabled
DTA
1
0
000001
81h
Date set to 1,
enabled
MOA
1
0
000001
81h
Month set to 1,
enabled
DWA
0
000000
00h
Day of week
disabled
CONTROL
REGISTER
BIT
DESCRIPTION
7654
3210
HEX
INT
0
1
x
0000
x0hEnable Alarm
ALARM
REGISTER
BIT
DESCRIPTION
76543210 HEX
SCA
10110000 B0h Seconds set to 30,
enabled
MNA
00000000 00h Minutes disabled
HRA
00000000 00h Hours disabled
DTA
00000000 00h Date disabled
MOA
00000000 00h Month disabled
DWA
00000000 00h Day of week disabled
CONTROL
REGISTER
BIT
DESCRIPTION
76543210 HEX
INT
1 1 x x 0000
x0hEnable Alarm and Int
Mode
60 SEC
RTC AND ALARM REGISTERS ARE BOTH “30” SEC
ISL1220
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