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X1228S14-4.5A 参数 Datasheet PDF下载

X1228S14-4.5A图片预览
型号: X1228S14-4.5A
PDF下载: 下载PDF文件 查看货源
内容描述: 实时时钟/日历/ CPU监控器, EEPROM [Real Time Clock/Calendar/CPU Supervisor with EEPROM]
分类和应用: 外围集成电路光电二极管监控可编程只读存储器电动程控只读存储器电可擦编程只读存储器时钟
文件页数/大小: 31 页 / 568 K
品牌: XICOR [ XICOR INC. ]
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X1228  
The best way to analyze the RTC circuit is to power it  
up and read the real time clock as time advances, or if  
the chip has the PHZ output, look at the output of that  
pin on an oscilloscope (after enabling it with the control  
register, and using a pullup resistor for an open-drain  
output). Alternatively, the X1226/1286/1288 devices  
have an IRQ- output which can be checked by setting  
an alarm for each minute. Using the pulse interrupt  
mode setting, the once-per-minute interrupt functions  
as an indication of proper oscillation.  
Figure 16. Supercapactor charging circuit  
2.7-5.5V  
VCC  
Vback  
Supercapacitor  
VSS  
Since the battery switchover occurs at Vcc=Vback-  
0.1V (see Figure 16), the battery voltage must always  
be lower than the Vcc voltage during normal operation  
or the battery will be drained. A second consideration  
is the trip point setting for the system RESET- function,  
known as Vtrip. Vtrip is set at the factory at levels for  
systems with either Vcc = 5V or 3.3V operation, with  
the following standard options:  
Backup Battery Operation  
Many types of batteries can be used with the Xicor  
RTC products. 3.0V or 3.6V Lithium batteries are  
appropriate, and sizes are available that can power a  
Xicor RTC device for up to 10 years. Another option is  
to use a supercapacitor for applications where Vcc may  
disappear intermittently for short periods of time.  
Depending on the value of supercapacitor used,  
backup time can last from a few days to two weeks  
(with >1F). A simple silicon or Schottky barrier diode  
can be used in series with Vcc to charge the superca-  
pacitor, which is connected to the Vback pin. Do not  
use the diode to charge a battery (especially lithium  
batteries!).  
V
V
V
V
= 4.63V 3%  
= 4.38V 3%  
= 2.85V 3%  
= 2.65V 3%  
TRIP  
TRIP  
TRIP  
TRIP  
The summary of conditions for backup battery opera-  
tion is given in Table 8:  
Table 8. Battery Backup Operation  
1. Example Application, Vcc=5V, Vback=±.3V  
Condition  
a. Normal Operation  
Vcc  
5.00  
5.00  
Vback  
3.00  
0
Vtrip  
4.38  
4.38  
Iback  
<<1µA  
0
Reset  
Notes  
H
H
b. Vcc on with no battery  
Timekeeping  
only  
c. Backup Mode  
0–1.8  
1.8-3.0  
4.38  
<2µA  
L
2. Example Application, Vcc=±.±V,Vback=±.3V  
Condition  
a. Normal Operation  
Vcc  
3.30  
3.30  
Vback  
3.00  
0
Vtrip  
2.65  
2.65  
Iback  
<<1µA  
0
Reset  
H
H
b. Vcc on with no battery  
Timekeeping  
only  
c. Backup Mode  
0–1.8  
1.8–3.0*  
> Vcc  
2.65  
2.65  
<2µA*  
L
d. UNWANTED - Vcc ON, Vback  
powering  
Internal  
Vcc=Vback  
2.65 - 3.30  
up to 3mA  
H
*since Vback>2.65V is higher than Vtrip, the battery is powering the entire device  
Characteristics subject to change without notice. 26 of 31  
REV 1.3 3/24/04  
www.xicor.com  
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