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AS2843D-8 데이터 시트보기 (PDF) - Astec Semiconductor => Silicon Link

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AS2843D-8
Astec
Astec Semiconductor => Silicon Link Astec
AS2843D-8 Datasheet PDF : 20 Pages
First Prev 11 12 13 14 15 16 17 18 19 20
Current Mode Controller
AS384x
RT
= VREG ¥
ID
1
1
(KL) D Ð (KH) D
D
D
(KL) D Ð (KH) D
Table 1. RT vs Maximum Duty Ratio
(2)
RT (½)
Dmax
470
22%
1
(0.736) D
(0.432)
1
D
= 582 ¥
D
(0.736) D
D
(0.432) D
560
37%
683
50%
750
54%
KL
=
VREG VL 0.736
VREG
820
(3)
910
1,000
58%
63%
66%
KH
=
VREG VH
VH
0.432
(
(4)
where fosc is the oscillator frequency, D is the
maximum duty ratio, VH is the oscillatorÕs upper
trip point, VL is the lower trip point, VR is the Ref-
erence voltage, ID is the discharge current.
Table 1 lists some common values of RT and the
corresponding maximum duty ratio. To select the
timing components; first, use Table 1 or equation
(2) to determine the value of RT that will yield the
desired maximum duty ratio. Then, use equation
(1) to calculate the value of CT. For example, for
a switching frequency of 250 kHz and a maxi-
mum duty ratio of 50%, the value of RT, from
Table 1, is 683 ½. Applying this value to equation
(1) and solving for CT gives a value of 4700 pF. In
practice, some fine tuning of the initial values
may be necessary during design. However, due
to the advanced design of the AS3842 oscillator,
once the final values are determined, they will
yield repeatable results, thus eliminating the
need for additional trimming of the timing compo-
nents during manufacturing.
1.3.2 Oscillator enhancements
The AS3842 oscillator is trimmed to provide
guaranteed duty ratio clamping. This means that
the discharge current (ID ) is trimmed to a value
1,200
1,500
1,800
2,200
2,700
3,300
3,900
4,700
5,600
6,800
8,200
10,000
18,000
72%
77%
81%
85%
88%
90%
91%
93%
94%
95%
96%
97%
98%
that compensates for all of the tolerances within
the device (such as the tolerances of VREG, prop-
agation delays, the oscillator trip points, etc.)
which have an effect on the frequency and max-
imum duty ratio. For example, if the combined
tolerances of a particular device are 0.5% above
nominal, then ID is trimmed to 0.5% above nomi-
nal. This method of trimming virtually eliminates
the need to trim external oscillator components
during power supply manufacturing. Standard
3842 devices specify or trim only for a specific
value of discharge current. This makes precise
ASTEC Semiconductor
13

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