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DAP011 查看數據表(PDF) - ON Semiconductor

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DAP011 Datasheet PDF : 24 Pages
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DAP011/DAP011C
The recurrence in hiccup mode can easily be adjusted by
either reducing the timer or increasing the VCC capacitor.
Figure 26 details the various time portion a hiccup is made
of:
VCC
UVLOhigh
t3
UVLOlow
t1 t2
t’1
Latch−off phase level
t’2
Logic reset level
Drv
100 ms
100 ms
Figure 26. The Burst Period is Ensured by the VCC Capacitor Charge/Discharge Cycle
If by design we have selected a 22 mF VCC capacitor, it
becomes easy to evaluate the burst period and its duty−cycle.
This can be done by properly identifying all time events on
Figure 26 and applying the classical formula:
t
+
DV @
i
C
(eq. 1)
t1: I = ICC3 = 600 mA, DV = 9 – 6.5 = 2.5 V ³ t1 =
91 ms
t2: I = 3 mA, DV = 12.8 – 6.5 = 6.3 ³ t1 = 46 ms
t3: I = 600 mA, DV= 12.8 – 6.5 = 6.3 V ³ t1 = 231ms
t’1 = t1 = 91 ms
t’2 = t2 = 46 ms
The total period duration is thus the sum of all these events
which leads to Tfault = 505 ms. If Tpulse = 100 ms, then our
burst duty−cycle equals 100/(505+100) 16.5%, which is
good. Should the user like to further decrease or, to the
contrary, increase this duty−cycle, changing the VCC
capacitor is an easy job.
Latch−off and Overvoltage Protection
Speedking features a fast comparator that permanently
monitors Pin 2 level. Figure 27 details how it is internally
arranged:
Rupper
VCC aux
+
aux
C1
10 nF
2
Rlower
+
+
Vlatch
20 ms time constant
S
Q
Q
latched
fault
R
5 V reset
Figure 27. A Comparator Monitors Pin 2 and Latches
Off the Part in Case the Threshold is Reached
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