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PDF RT9080 Data sheet ( Hoja de datos )

Número de pieza RT9080
Descripción 600mA Low-Dropout Linear Regulator
Fabricantes Richtek Technology 
Logotipo Richtek Technology Logotipo



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®
RT9080
2μA IQ, 600mA Low-Dropout Linear Regulator
General Description
Features
The RT9080 is a low-dropout (LDO) voltage regulators with
enable function that operates from 1.2V to 5.5V. It provides
up to 600mA of output current and offers low-power
operation in miniaturized packaging.
The features of low quiescent current as low as 2μA and
almost zero disable current is ideal for powering the battery
equipment to a longer service life. The RT9080 is stable
with the ceramic output capacitor over its wide input range
from 1.2V to 5.5V and the entire range of output load
current (0mA to 600mA).
Ordering Information
RT9080/N-
Package Type
J5 : TSOT-23-5
QZ : ZQFN-4L 1x1 (Z-Type)
(ZDFN-4L 1x1)
Lead Plating System
G : Green (Halogen Free and Pb Free)
Output Voltage
08 : 0.8V
:
33 : 3.3V
Special Request : Any voltage between
0.8V and 3.3V under specific business
agreement
Pin Function
RT9080 : Without SNS Pin
RT9080N : With SNS Pin
Note :
Richtek products are :
RoHS compliant and compatible with the current require-
ments of IPC/JEDEC J-STD-020.
Suitable for use in SnPb or Pb-free soldering processes.
2μA Ground Current at no Load
PSRR = 75dB at 1kHz
Adjustable Output Voltage Available by Specific
Application
±2% Output Accuracy
600mA (VIN 2.3V) Output Current with EN
Low (0.1μA) Disable Current
1.2V to 5.5V Operating Input Voltage
Dropout Voltage : 0.31V at 600mA when VOUT 3V
Support Fixed Output Voltage 0.8V to 3.3V
Stable with Ceramic or Tantalum Capacitor
Current Limit Protection
Over Temperature Protection
TSOT-23-5 and ZQFN-4L 1x1 (ZDFN-4L 1x1) Packages
Available
Applications
Portable, Battery Powered Equipment
Ultra Low Power Microcontrollers
Notebook computers
Marking Information
For marking information, contact our sales representative
directly or through a Richtek distributor located in your
area.
Copyright ©2016 Richtek Technology Corporation. All rights reserved.
DS9080-00 April 2016
is a registered trademark of Richtek Technology Corporation.
www.richtek.com
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RT9080 pdf
RT9080
Parameter
Line Regulation
Load Regulation
Power Supply Rejection
Ratio
Output Voltage Noise
Output Current Limit
Enable Input Logic-High
Voltage
Logic-Low
Thermal Shutdown
Temperature
Thermal Shutdown
Hysteresis
Discharge Resistance
Symbol
LINE
LOAD
PSRR
ILIM
VIH
VIL
Test Conditions
1.2V VIN 1.5V
ILOAD = 1mA 1.5V VIN 1.8V
1.8V VIN 5.5V
1mA < ILOAD < 600mA
VIN = 3V, ILOAD = 50mA,
COUT = 1F, VOUT = 2.5V, f = 1kHz
COUT = 1F,
ILOAD = 150mA,
BW = 10Hz to
100kHz,
VIN = VOUT + 1V
VOUT = 0.8V
VOUT = 1.2V
VOUT = 1.8V
VOUT = 3.3V
VOUT = 90%VOUT(Normal)
VIN = 5V
VIN = 5V
TSD ILOAD = 30mA, VIN 1.5V
TSD
EN = 0V, VOUT = 0.1V
Min Typ Max
-- 0.3 0.6
-- 0.15 0.3
-- 0.13 0.35
-- 0.5 1
Unit
%
%
-- 75 --
dB
-- 26 --
-- 37 --
-- 39 -- VRMS
-- 42 --
610 1100 --
mA
0.9 --
--
-- -- 0.4
V
-- 150 --
C
-- 20 --
C
-- 80 --
Note 1. Stresses beyond those listed Absolute Maximum Ratingsmay cause permanent damage to the device. These are
stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in
the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions may
affect device reliability.
Note 2. θJA is measured at TA = 25°C on a high effective thermal conductivity four-layer test board per JEDEC 51-7.
Note 3. Devices are ESD sensitive. Handling precaution is recommended.
Note 4. The device is not guaranteed to function outside its operating conditions.
Note 5. The dropout voltage is defined as VIN VOUT, when VOUT is 98% of the normal value of VOUT.
Note 6. The specification is tested at wafer stage and guarantee by design after assembly.
Copyright ©2016 Richtek Technology Corporation. All rights reserved.
DS9080-00 April 2016
is a registered trademark of Richtek Technology Corporation.
www.richtek.com
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RT9080 arduino
Application Information
Like any low dropout linear regulator, the RT9080’s
external input and output capacitors must be properly
selected for stability and performance. Use a 1μF or larger
input capacitor and place it close to the IC's VIN and GND
pins. Any output capacitor meeting the minimum 1mΩ
ESR (Equivalent Series Resistance) and effective
capacitance larger than 1μF requirement may be used.
Place the output capacitor close to the IC's VOUT and
GND pins. Increasing capacitance and decreasing ESR
can improve the circuit's PSRR and line transient response.
Enable
The RT9080 has an EN pin to turn on or turn off the
regulator, When the EN pin is in logic high, the regulator
will be turned on. The shutdown current is almost 0μA
typical. The EN pin may be directly tied to VIN to keep the
part on. The Enable input is CMOS logic and cannot be
left floating.
Adjustable Output Voltage Setting
Because of the small input current at the SNS pin, the
RT9080N with SNS pin also can work as an adjustable
output voltage LDO. Figure 3 gives the connections for
the adjustable output voltage application. The resistor
divider from VOUT to SNS sets the output voltage when
in regulation.
The voltage on the SNS pin sets the output voltage and is
determined by the values of R1 and R2. In order to keep
a good temperature coefficient of output voltage, the values
of R1 and R2 should be selected carefully to ignore the
temperature coefficient of input current at the SNS pin. A
current greater than 50μA in the resistor divider is
recommended to meet the above requirement. The
adjustable output voltage can be calculated using the
formula given in equation 1 :
VOUT
R1 + R2
R2
VSNS
(1)
where VSNS is determined by the output voltage selections
in the ordering information of RT9080N. The maximum
adjustable output voltage can be as high as input voltage
deducted by the dropout voltage.
When we choose 51kΩ and 16kΩ as R1 and R2
respectively, and select a 0.8V output at SNS pin, the
Copyright ©2016 Richtek Technology Corporation. All rights reserved.
DS9080-00 April 2016
RT9080
adjustable output voltage will be set to around 3.35V. Its
temperature coefficient in Figure 4 is still perfect in such
kind of application.
Output Voltage vs. Temperature
3.35
3.34
3.33
3.32
3.31
3.30
3.29
3.28
-50
-25
ILOAD = 1mA
0 25 50 75
Temperature(°C)
100 125
Figure 4. Temperature Coefficient of Adjustable Output
Voltage
The minimum recommended 50μA in the resistor divider
makes the application no longer an ultra low quiescent
LDO. Figure 5 is another fine adjustable output voltage
application can keep the LDO still operating in low power
consumption. The fine tune range is recommended to be
less than 50mV (R1 91kΩ) in order to keep a good
temperature coefficient of the output voltage.
RT9080N
VIN
1µF
VOUT
SNS
EN
GND
R1
56pF/NC
1µF
Figure 5. Fine Adjustable Output Voltage Application
Circuit
There isn't extra current consumption in the above
application. But the temperature coefficient of output
voltage will be degraded by the input current at SNS pin.
If the tuning range is larger than 50mV, a compensation
capacitor (56pF) is required to keep the stability of output
voltage. The fine adjustable output voltage is calculated
using the formula given in equation2 :
VOUT VSNS + ISNS R1
(2)
is a registered trademark of Richtek Technology Corporation.
www.richtek.com
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