21 FN6682.3 December 6, 2011 Bits 0, 1, 2 contain the Day of the week information which sets the Day of the Week that DST ends. Note " />
參數(shù)資料
型號(hào): ISL12023IVZ
廠商: Intersil
文件頁數(shù): 14/29頁
文件大?。?/td> 0K
描述: IC RTC/CLDR TEMP SNSR 14-TSSOP
產(chǎn)品培訓(xùn)模塊: Solutions for Industrial Control Applications
標(biāo)準(zhǔn)包裝: 960
類型: 時(shí)鐘/日歷
特點(diǎn): 警報(bào)器,夏令時(shí),閏年,SRAM
存儲(chǔ)容量: 128B
時(shí)間格式: HH:MM:SS(12/24 小時(shí))
數(shù)據(jù)格式: YY-MM-DD-dd
接口: I²C,2 線串口
電源電壓: 2.7 V ~ 5.5 V
電壓 - 電源,電池: 1.8 V ~ 5.5 V
工作溫度: -40°C ~ 85°C
安裝類型: 表面貼裝
封裝/外殼: 14-TSSOP(0.173",4.40mm 寬)
供應(yīng)商設(shè)備封裝: 14-TSSOP
包裝: 管件
ISL12023
21
FN6682.3
December 6, 2011
Bits 0, 1, 2 contain the Day of the week information which sets
the Day of the Week that DST ends. Note that Day of the week
counts from 0 to 6, like the RTC registers. The default for the
DST Reverse Day of the Week is 00h (normally Sunday).
Bits 3, 4, 5 contain the Week of the Month information that sets
the week that DST ends. The range is from 1 to 5, and Week 7 is
used to indicate the last week of the month. The default for the
DST Reverse Week of the Month is 00h.
DST Date Reverse
DstDtRv controls which Date DST ends. The format for the Date is
the same as for the RTC register, from 1 to 31. The default value
for DST Date Reverse is 00h. The DstDtRv is only effective if the
DwRvE = 0.
DST Hour Reverse
DstHrRv controls the hour that DST ends. The RTC hour and
DstHrFd registers have the same formats except there is no
Military bit for DST hour. The user sets the DST hour with the
same format as used for the RTC hour (AM/PM or MIL) but
without the MIL bit, and the DST will still advance as if the MIL bit
were there. The default value for DST hour Reverse is 00h
TEMP Registers (TEMP)
The temperature sensor produces an analog voltage output
which is input to an A/D converter and produces a 10-bit
temperature value in degrees Kelvin. TK07:00 are the LSBs of the
code, and TK09:08 are the MSBs of the code. The temperature
result is actually the average of two successive temperature
measurements to produce greater resolution for the temperature
control. The output code can be converted to degrees Centigrade
(°C) by first converting from binary to decimal, dividing by 2, and
then subtracting 273d, as shown in Equation 3.
The practical range for the temp sensor register output is from 446d
to 726d, or -50°C to +90°C. The temperature compensation
function is only guaranteed over -40°C to +85°C. The TSE bit must
be set to “1” to enable temperature sensing.
NPPM Registers (NPPM)
The NPPM value is exactly 2x the net correction required to bring
the oscillator to 0ppm error. The value is the combination of
oscillator Initial Correction (IPPM) and crystal temperature
dependent correction (CPPM).
IPPM is used to compensate the oscillator offset at room
temperature and is controlled by the ITR0 and BETA registers,
which are fixed during factor test.
The CPPM compensates the oscillator frequency fluctuation over
temperature. It is determined by the temperature (T), crystal
curvature parameter (ALPHA), and crystal turnover temperature
(XT0). T is the result of the temp sensor/ADC conversion, whose
decimal result is 2x the actual temperature in Kelvin. ALPHA is from
either the ALPHA (cold) or ALPHAH (hot) register depending on T,
and XT0 is from the XT0 register.
NPPM is governed by Equation 4:
NPPM = IPPM(ITR0,BETA) + ALPHA x (T-T0)2
where:
T is the reading of the ADC, result is 2 x temperature in degrees
Kelvin.
or
Note that NPPM can also be predicted from the FATR and FDTR
register by the relationship (all values in decimal):
NPPM = 2*(BETA*FATR - (FDTR-16))
XT0 Registers (XT0)
TURNOVER TEMPERATURE (XT<3:0>)
The apex of the Alpha curve occurs at a point called the turnover
temperature, or XT0. Crystals normally have a turnover
temperature between +20°C and +30°C, with most occurring
near +25°C.
The ISL12023 has a preset turnover temperature corresponding
to the crystal in the module. This value is recalled on initial
power-up and should never be changed for best temperature
compensation performance, although the user may override this
preset value if so desired.
Table 26 shows the values available, with a range from +17.5°C
to +32.5°C in +0.5°C increments. The default value is 00000b
or +25°C.
TABLE 24.
TEMP
7654321
0
TK0L
TK07 TK06 TK05 TK04 TK03 TK02 TK01 TK00
TK0M
000000
TK09 TK08
Temperature in °C
[(TK <9:0>)/2] - 273
=
(EQ. 3)
TABLE 25. TURNOVER TEMPERATURE
ADDR
7
6543210
2Ch
0
XT4XT3
XT2XT1
XT0
TABLE 26. XT0 VALUES
XT<4:0>
TURNOVER TEMPERATURE
01111
32.5
01110
32.0
01101
31.5
01100
31
01011
30.5
01010
30
01001
29.5
NPPM
IPPM CPPM
+
=
NPPM
IPPM
ALPHA
T T0
()
2
4096
----------------------------------------------------
+
=
(EQ. 4)
ALPHA
α 2048
=
T
2 298
() XT0
+
=
(EQ. 5)
T
596 XT0
+
=
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