參數(shù)資料
型號(hào): MSM6242BGS-K
廠商: LAPIS SEMICONDUCTOR CO LTD
元件分類: 時(shí)鐘/數(shù)據(jù)恢復(fù)及定時(shí)提取
英文描述: 0 TIMER(S), REAL TIME CLOCK, PDSO24
封裝: 0.430 INCH, 1.27 MM PITCH, PLASTIC, SOP-24
文件頁(yè)數(shù): 5/24頁(yè)
文件大?。?/td> 293K
代理商: MSM6242BGS-K
OKI Semiconductor
MSM6242B
12/23
FEDL6242B-02
CD REGISTER (Control D Register)
a)
HOLD (D0) –
Setting this bit to a "1" inhibits the 1Hz clock to the S1 counter, at which
time the Busy status bit can be read. When Busy = 0, register's S
1 to W
can be read or written. During this procedure if a carry occurs the S1
counter will be incremented by 1 second after HOLD = 0 (this condition
is guaranteed as long as HOLD = 1 does not exceed 1 second in
duration). If CS1 = 0 then HOLD = 0 irrespective of any condition.
b)
BUSY (D1) –
Status bit which shows the interface condition with microcontroller/
microprocessors. As for the method of writing into and reading from
S
1 to W (address φ to C), refer to the flow chart described in Figure 10.
c)
IRQ FLAG (D2) – This status bit corresponds to the output level of the STD.P output.
When STD.P = 0, then IRQ = 1; when STD.P = 1, then IRQ = 0. The IRQ
FLAG indicates that an interrupt has occurred to the microcomputer if
IRQ = 1. When D0 of register C
E (MASK) = 0, then the STD.P output
changes according to the timing set by D3 (t
1) and D2 (t0) of register E.
When D1 of register E (ITRPT/STND) = 1 (interrupt mode), the STD.P
output remains low until the IRQ FLAG is written to a "0". When IRQ
= 1 and timing for a new interrupt occurs, the new interrupt is ignored.
When ITRPT/STND = 0 (Standard Pulse Output mode) the STD.P
output remains low until either "0" is written to the IRQ FLAG;
otherwise, the IRQ FLAG automatically goes to "0" after 7.8125 ms.
When writing the HOLD or 30 second adjust bits of register D, it is
necessary to write the IRQ FLAG bit to a "1".
d)
±30 ADJ (D3) –
When 30-second adjustment is necessary, a "1" is written to bit D3
during which time the internal clock registers should not be read from
or written to 125
s after bit D3 = 1 it will automatically return to a "0",
and at that time reading or writing of registers can occur.
For example
t1 = 0 and t0 = 1 when required to a
unit of second;
t1 = 1 and t0 = 0 when required to a
unit of minute; and
t1 = 1 and t0 = 1 when required to a
unit of hour;
t1
*1
t0
*2
ITRPT/STND
1
MASK
0
Reading Method 2 when Not Using HOLD Bit
IRQ FLAG
0
IRQ FLAG = 0
WAIT t
TIME DATA READ
REGISTER CD READ
Normal read
YES
NO
See Note
below
Retried the reading, since a
carry occurred during the
operation.
(Note)
Do this process within the following
time requirements by combination
between t1 and t0:
t1 = 0 and t0 = 1 . . . Less than 1 second
t1 = 1 and t0 = 0 . . . Less than 1 minute
t1 = 1 and t0 = 1 . . . Less than 1 hour
t : 12 HOUR MODE . . . 35
s
24 HOUR MODE . . . 3
s
Initialization only at power ON
*1 and *2 represent the minimum required
time out.
t1
*1
t0
*2
ITRPT/STND
1
MASK
0
Reading Method 3 when Not Using HOLD Bit
IRQ FLAG
0
IRQ FLAG = 1
WAIT t
TIME DATA READ
REGISTER CD READ
YES
NO
The other IC causes
the interruption.
The interruption is caused by
this IC due to the occurrence
of a carry.
The IRQ FLAG is cleared to
read the next time data.
Initialization only at power ON
*1 and *2 represent the minimum required
time unit.
CPU senses the
interruption.
END
For example
t1 = 0 and t0 = 1 when required to a
unit of second;
t1 = 1 and t0 = 0 when required to a
unit of minute; and
t1 = 1 and t0 = 1 when required to a
unit of hour;
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