參數(shù)資料
型號: LT1120ACN8
廠商: LINEAR TECHNOLOGY CORP
元件分類: 基準(zhǔn)電壓源/電流源
英文描述: Octal Buffers/Drivers With 3-State Outputs 20-SOIC 0 to 70
中文描述: 2.46 V-2.54 V ADJUSTABLE POSITIVE REGULATOR, PDIP8
封裝: PLASTIC, DIP-8
文件頁數(shù): 6/8頁
文件大?。?/td> 217K
代理商: LT1120ACN8
6
LT1120A
APPLICATIO
S I
N
FOR
ATIO
U
W
U
Reference
Internal to the LT1120A is a 2.5V trimmed class B output
reference. The reference was designed to be able to source
or sink current so it could be used in supply splitting
applications as well as a general purpose reference for
external circuitry. The design of the reference allows it to
source and sink typically 4mA. The available source and
sink current decreases as temperature increases. It is
sometimes desirable to decrease the AC output imped-
ance by placing an output capacitor on Pin 6. The reference
in the LT1120A becomes unstable with large capacitive
loads placed directly on it. When using an output capaci-
tor, about 20
should be used to isolate the capacitor
from the reference pin. This 20
resistor can be placed
directly in series with the capacitor or alternatively the
reference line can have 20
placed in series with it and
then a capacitor to ground. This is shown in Figure 1. Other
than placing large capacitive loads on the reference, no
other precautions are necessary and the reference is
stable with nominal stray capacitances.
1120A AI01
20
+
6
10
μ
F
OUTPUT
REF
20
6
10
μ
F
REF
+
OUTPUT
OR
Figure 1. Bypassing Reference
Overload Protection
The main regulator in the LT1120A is current limited at
approximately 250mA. The current limit is stable with both
input voltage and temperature.
Like most other IC regulators, a minimum load is required
on the output of the LT1120A to maintain regulation. For
most standard regulators this is normally specified at
5mA. Of course, for a micropower regulator this would be
a tremendously large current. The output current must be
large enough to absorb all the leakage current of the pass
transistor at the maximum operating temperature. It also
affects the transient response; low output currents have
long recovery times from load transients. At high operat-
ing temperatures the minimum load current increases and
having too low of a load current may cause the output to
go unregulated. Devices are tested for minimum load
current at high temperature. The output voltage setting
resistors to the feedback terminal can usually be used to
provide the minimum load current.
Frequency Compensation
The LT1120A is frequency compensated by a dominant
pole on the output. An output capacitor of 10
μ
F is usually
large enough to provide good stability.
Increasing the
output capacitor above 10
μ
F further improves stability.
In order to ensure stability, a feedback capacitor is needed
between the output pin and the feedback pin. This is
because stray capacitance can form another pole with the
large value of feedback resistors used with the LT1120A.
Also, a feedback capacitor minimizes noise pickup and
improves ripple rejection.
With the large dynamic operating range of the output
current, 10000:1, frequency response changes widely.
Low AC impedance capacitors are needed to insure
stability. While solid tantalum are best, aluminum
electrolytics can be used but larger capacitor values may
be needed.
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