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S-19101C26H-N4T2U Datasheet(PDF) 11 Page - Seiko Instruments Inc

Part # S-19101C26H-N4T2U
Description  BUILT-IN DELAY CIRCUIT
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Manufacturer  SII [Seiko Instruments Inc]
Direct Link  http://www.sii.co.jp
Logo SII - Seiko Instruments Inc

S-19101C26H-N4T2U Datasheet(HTML) 11 Page - Seiko Instruments Inc

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FOR AUTOMOTIVE 105°C OPERATION VOLTAGE DETECTOR BUILT-IN DELAY CIRCUIT (EXTERNAL DELAY TIME SETTING)
Rev.1.0_01
S-19101xxxH Series
11
2. Delay circuit
The delay circuit delays the output signal to the OUT pin from the time at which the power supply voltage (VDD)
exceeds the release voltage (
+VDET) when the power supply voltage (VDD) is turned on. The output signal is not
delayed when VDD decreases to the detection voltage (
−VDET) or less (refer to "Figure 14 Operation 2").
The delay time (tD) is determined by the time constant of the built-in constant current (approx. 100 nA) and the
attached delay capacitor (CD), or the delay time (tD0) when the CD pin is open, and calculated from the following
equation. When the CD value is sufficiently large, the tD0 value can be disregarded.
tD [ms] = Delay coefficient
× CD [nF] + tD0 [ms]
Table 8 Delay Coefficient
Operation
Temperature
Delay Coefficient
Min.
Typ.
Max.
Ta =
+105°C
2.58
3.70
5.40
Ta =
+25°C
4.70
5.47
6.24
Ta =
−40°C
5.64
8.40
12.01
Table 9 Delay Time
Operation Temperature
Delay Time (tD0)
Min.
Typ.
Max.
Ta =
−40°C to +105°C
0.01 ms
0.10 ms
0.80 ms
Caution 1.
When the CD pin is open, a double pulse shown in Figure 15 may appear at release.
To avoid the double pulse, attach 100 pF or more capacitor to the CD pin. Do not apply
voltage to the CD pin from the exterior.
VOUT
Time
Figure 15
2.
Mounted board layout should be made in such a way that no current flows into or flows from
the CD pin since the impedance of the CD pin is high, otherwise correct delay time cannot be
provided.
3.
There is no limit for the capacitance of CD as long as the leakage current of the capacitor can
be ignored against the built-in constant current value. Leakage current causes deviation in
delay time. When the leakage current is larger than the built-in constant current, no release
takes place.


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