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AMS2930AM-X bảng dữ liệu(PDF) 7 Page - Advanced Monolithic Systems

tên linh kiện AMS2930AM-X
Giải thích chi tiết về linh kiện  Battery Powered Systems
PDF  9 Pages
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nhà sản xuất  ADMOS [Advanced Monolithic Systems]
Trang chủ  http://www.advanced-monolithic.com
Logo ADMOS - Advanced Monolithic Systems

AMS2930AM-X bảng dữ liệu(HTML) 7 Page - Advanced Monolithic Systems

  AMS2930AM-X Datasheet HTML 1Page - Advanced Monolithic Systems AMS2930AM-X Datasheet HTML 2Page - Advanced Monolithic Systems AMS2930AM-X Datasheet HTML 3Page - Advanced Monolithic Systems AMS2930AM-X Datasheet HTML 4Page - Advanced Monolithic Systems AMS2930AM-X Datasheet HTML 5Page - Advanced Monolithic Systems AMS2930AM-X Datasheet HTML 6Page - Advanced Monolithic Systems AMS2930AM-X Datasheet HTML 7Page - Advanced Monolithic Systems AMS2930AM-X Datasheet HTML 8Page - Advanced Monolithic Systems AMS2930AM-X Datasheet HTML 9Page - Advanced Monolithic Systems  
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www.advanced-monolithic.com
updated April 24, 2009
AMS2930
TYPICAL PERFORMANCE CHARACTERISTICS (Continued)
Maximum Power Dissipation (TO-263)
1
2
3
4
AMBIENT TEMPERATURE (° C)
10 20 30 40 50 60 70 80 90 100
0
0
θ
JA = 32° C/W
0.01
0.1
100
0
25
50
75
150
OUTPUT CURRENT (mA)
Output Capacitor ESR
1
10
V
O = 5V
C
OUT= 100µF
100
3.0
4.0
On/Off Treshold
2.2
2.4
2.6
2.8
3.2
3.4
3.6
3.8
3
6
9
12
15
18
21
24
0
2.0
ONN
OFF
OUTPUT VOLTAGE (V)
θ
JA = 37° C/W
θ
JA = 50° C/W
θ
JA = 73° C/W
AMS2930C ADJUSTABLE
STABLE
REGION
125
APPLICATION HINTS
The AMS2930 series require an output capacitor for device
stability. The value required depends on the application circuit and
other factors.
Because high frequency characteristics of electrolytic capacitors
depend greatly on the type and even the manufacturer, the value of
capacitance that works well with AMS2930 for one brand or type
may not necessary be sufficient with an electrolytic of different
origin. Sometimes actual bench testing will be the only means to
determine the proper capacitor type and value. To obtain stability
in all general applications a high quality 100
µF aluminum
electrolytic or a 47
µF tantalum electrolytic can be used.
A critical characteristic of the electrolytic capacitors is their
performance over temperature. The AMS2930 is designed to
operate to -40
°C, but some electrolytics will freeze around -30°C
therefore becoming ineffective. In such case the result is
oscillation at the regulator output. For all application circuits
where cold operation is necessary, the output capacitor must be
rated to operate at the minimum temperature. In applications
where the regulator junction temperature will never be lower than
25
°C the output capacitor value can be reduced by a factor of two
over the value required for the entire temperature range (47
µF for
a high quality aluminum or 22
µF for a tantalum electrolytic
capacitor).
With higher output currents, the stability of AMS2930 decreases.
Considering the fact that in many applications the AMS2930 is
operated at only a few milliamps (or less) of output current, the
output capacitor value can be reduced even further. For example, a
circuit that is required to deliver a maximum of 10mA of output
current from the regulator output will need an output capacitor of
only half the value compared to the same regulator required to
deliver the full output current of 150mA.
In the case of AMS2930C (adjustable), the minimum value of
output capacitance is a function of the output voltage. As a general
rule, with higher output voltages the value of the output
capacitance decreases, since the internal loop gain is reduced.
In order to determine the minimum value of the output capacitor,
for an application circuit, the entire circuit including the capacitor
should be bench tested at minimum operating temperatures and
maximum operating currents. To maintain internal power
dissipation and die heating to a minimum, the input voltage should
be maintain at 0.6V above the output. Worst-case occurs just after
input power is applied and before the die had the chance to heat
up. After the minimum capacitance value has been found for the
specific brand and type of electrolytic capacitor, the value should
be doubled for actual use to cover for production variations both
in the regulator and the capacitor.



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