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LM1086IT-ADJ/NOPB Datasheet(PDF) 8 Page - Texas Instruments

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No. de pieza LM1086IT-ADJ/NOPB
Descripción Electrónicos  LM1086IT-5.0-NOPB
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Fabricante Electrónico  TI1 [Texas Instruments]
Página de inicio  http://www.ti.com
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LM1086IT-ADJ/NOPB Datasheet(HTML) 8 Page - Texas Instruments

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LM1086
SNVS039H – JUNE 2000 – REVISED MAY 2013
www.ti.com
APPLICATION NOTE
GENERAL
Figure 18 shows a basic functional diagram for the LM1086-Adj (excluding protection circuitry) . The topology is
basically that of the LM317 except for the pass transistor. Instead of a Darlingtion NPN with its two diode voltage
drop, the LM1086 uses a single NPN. This results in a lower dropout voltage. The structure of the pass transistor
is also known as a quasi LDO. The advantage a quasi LDO over a PNP LDO is its inherently lower quiescent
current. The LM1086 is specified to provide a minimum dropout voltage 1.5V over temperature, at full load.
Figure 18. Basic Functional Diagram for the LM1086, excluding Protection circuitry
OUTPUT VOLTAGE
The LM1086 adjustable version develops at 1.25V reference voltage, (VREF), between the output and the adjust
terminal. As shown in figure 2, this voltage is applied across resistor R1 to generate a constant current I1. This
constant current then flows through R2. The resulting voltage drop across R2 adds to the reference voltage to
sets the desired output voltage.
The current IADJ from the adjustment terminal introduces an output error . But since it is small (120uA max), it
becomes negligible when R1 is in the 100
Ω range.
For fixed voltage devices, R1 and R2 are integrated inside the devices.
Figure 19. Basic Adjustable Regulator
STABILITY CONSIDERATION
Stability consideration primarily concern the phase response of the feedback loop. In order for stable operation,
the loop must maintain negative feedback. The LM1086 requires a certain amount series resistance with
capacitive loads. This series resistance introduces a zero within the loop to increase phase margin and thus
increase stability. The equivalent series resistance (ESR) of solid tantalum or aluminum electrolytic capacitors is
used to provide the appropriate zero (approximately 500 kHz).
8
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