SGM2028
500mA, Ultra Low Dropout,
Low Power, RF Linear Regulators
GENERAL DESCRIPTION
FEATURES
The SGM2028 is a low-power, low-noise, low-dropout,
500mA Guaranteed Output Current
CMOS linear voltage regulator that operates from a
Ultra Low Dropout Voltage
2.5V to 5.5V input voltage. It is the perfect choice for
Low Output Noise
low voltage, low power applications. A low ground
Thermal-Overload Protection
current makes this part attractive for battery operated
Output Current Limit
power systems. The SGM2028 also offers ultra low
High PSRR (73dB at 1kHz)
dropout voltage to prolong battery life in portable
SGM2028-2.8, SGM2028-3.0 and SGM2028-ADJ:
electronics. Systems requiring a quiet voltage source,
110kΩ Pull Down Resistor at EN Pin
such as RF applications, will benefit from the
SGM2028-3.3: No Pull Down Resistor at EN Pin
SGM2028’s ultra low output noise (30µVRMS) and high
Available Fixed Output Voltages: 2.8V, 3.0V and
PSRR. An external noise bypass capacitor connected
3.3V
to the device’s BP pin can further reduce the noise
Adjustable Output from 1.2V to 5.0V
level.
-40℃ to +85℃ Operating Temperature Range
Other features include output current limit and thermal
Available in Green SOT-23-5 Package
shutdown protection.
The SGM2028 is available in Green SOT-23-5 package.
It operates over an ambient temperature range of -40℃
APPLICATIONS
to +85℃.
Cellular Telephones
Cordless Telephones
PCMCIA Cards
Modems
MP3 Player
Hand-Held Instruments
Palmtop Computers
Electronic Planners
Portable/Battery-Powered Equipment
SG Micro Corp
www.sg-micro.com
OCTOBER 2016 –REV. B. 3
500mA, Ultra Low Dropout,
Low Power, RF Linear Regulators
SGM2028
PACKAGE/ORDERING INFORMATION
SPECIFIED
PACKAGE
TEMPERATURE
DESCRIPTION
RANGE
ORDERING
NUMBER
PACKAGE
MARKING
PACKING
OPTION
-40℃ to +85℃
SGM2028-2.8YN5G/TR
S58XX
Tape and Reel, 3000
SOT-23-5
-40℃ to +85℃
SGM2028-3.0YN5G/TR
G68XX
Tape and Reel, 3000
3.3
SOT-23-5
-40℃ to +85℃
SGM2028-3.3YN5G/TR
S55XX
Tape and Reel, 3000
ADJ
SOT-23-5
-40℃ to +85℃
SGM2028-ADJYN5G/TR
S4BXX
Tape and Reel, 3000
MODEL
VOUT (V)
SGM2028-2.8
2.8
SOT-23-5
SGM2028-3.0
3.0
SGM2028-3.3
SGM2028-ADJ
NOTE: XX = Date Code.
Green (RoHS & HSF): SG Micro Corp defines "Green" to
mean Pb-Free (RoHS compatible) and free of halogen
substances. If you have additional comments or questions,
please contact your SGMICRO representative directly.
MARKING INFORMATION
YYY X X
Date code - Month ("A" = Jan. "B" = Feb. … "L" = Dec.)
Date code - Year ("A" = 2010, "B" = 2011 …)
Chip I.D.
For example: S55GJ (2016, October)
ABSOLUTE MAXIMUM RATINGS
IN to GND ............................................................ -0.3V to 6V
Output Short-Circuit Duration....................................... Infinite
EN to GND .............................................. -0.3V to (VIN +0.3V)
OUT, BP/FB to GND .............................. -0.3V to (VIN + 0.3V)
Power Dissipation, PD @ TA = +25℃
SOT-23-5 ..................................................................... 0.34W
Package Thermal Resistance
SOT-23-5, θJA .......................................................... 367℃/W
Junction Temperature .................................................+150℃
Storage Temperature Range ........................ -65℃ to +150℃
Lead Temperature (Soldering, 10s) ............................+260℃
ESD Susceptibility
HBM ............................................................................. 4000V
MM ................................................................................. 400V
RECOMMENDED OPERATING CONDITIONS
Input Voltage Range ...........................................2.5V to 5.5V
Operating Temperature Range ....................... -40℃ to +85℃
OVERSTRESS CAUTION
Stresses beyond those listed may cause permanent damage
to the device. Functional operation of the device at these or
any other conditions beyond those indicated in the
operational section of the specification is not implied.
Exposure to absolute maximum rating conditions for extended
periods may affect reliability.
ESD SENSITIVITY CAUTION
This integrated circuit can be damaged by ESD if you don’t
pay attention to ESD protection. SGMICRO recommends that
all integrated circuits be handled with appropriate precautions.
Failure to observe proper handling and installation procedures
can cause damage. ESD damage can range from subtle
performance degradation to complete device failure.
Precision integrated circuits may be more susceptible to
damage because very small parametric changes could cause
the device not to meet its published specifications.
DISCLAIMER
SG Micro Corp reserves the right to make any change in
circuit design, specification or other related things if
necessary without notice at any time.
SG Micro Corp
www.sg-micro.com
OCTOBER 2016
2
500mA, Ultra Low Dropout,
Low Power, RF Linear Regulators
SGM2028
PIN CONFIGURATION
(TOP VIEW)
IN
1
GND
2
EN
3
5
OUT
4
BP/FB
SOT-23-5
PIN DESCRIPTION
PIN
NAME
FUNCTION
1
IN
Regulator Input. Supply voltage can range from 2.5V to 5.5V. Bypass with a 1μF
capacitor to GND.
2
GND
3
EN
Shutdown Input. A logic low reduces the supply current to 10nA. Connect to IN for
normal operation.
BP
Reference-Noise Bypass (fixed voltage version only). Bypass with a low-leakage
0.01μF ceramic capacitor for reduced noise at the output.
FB
Feedback Pin (adjustable voltage version only). This is used to set the output voltage of
the device.
4
5
OUT
SG Micro Corp
www.sg-micro.com
Ground.
Regulator Output.
OCTOBER 2016
3
500mA, Ultra Low Dropout,
Low Power, RF Linear Regulators
SGM2028
ELECTRICAL CHARACTERISTICS
(VIN = VOUT (NOMINAL) + 0.5V or 2.5V, whichever is greater, Full = -40℃ to +85℃. For SGM2028-ADJ, VOUT = 3.3V, unless
otherwise noted.)
PARAMETER
SYMBOL
Input Voltage
CONDITIONS
VIN
Output Voltage Accuracy
Maximum Output Current
IOUT = 0.1mA
(1)
Current Limit
ILIM
Ground Pin Current
IQ
No Load, VEN = 2V
TEMP
MIN
MAX
UNITS
+25℃
2.5
5.5
V
+25℃
-3
+3
%
+25℃
500
mA
+25℃
510
mA
+25℃
115
54
90
+25℃
162
270
270
420
IOUT = 100mA
Dropout Voltage (2)
IOUT = 300mA
TYP
IOUT = 500mA
220
µA
mV
Line Regulation
ΔVLNR
VIN = VOUT + 0.5V to 5.5V, IOUT = 1mA
+25℃
0.02
0.095
%/V
Load Regulation
ΔVLDR
IOUT = 0.1mA to 500mA, COUT = 1µF
+25℃
0.0025
0.0075
%/mA
en
f = 10Hz to 100kHz, CBP = 0.01µF,
COUT = 10µF
+25℃
30
Output Voltage Noise
Power Supply Rejection Ratio
PSRR
CBP = 0.1μF, IOUT = 50mA,
COUT = 1μF, VIN = VOUT + 1V
f = 217Hz
f = 1kHz
µVRMS
+25℃
77
dB
+25℃
73
dB
SHUTDOWN
VIH
EN Input Threshold
VIL
Shutdown Supply Current
Shutdown Exit Delay
IQ(SHDN)
VIN = 2.5V to 5.5V
Full
1.5
Full
0.3
V
VEN = 0.3V
+25℃
0.01
μA
CBP = 0.01μF, COUT =1μF, No Load
+25℃
30
μs
TSHDN
150
℃
ΔTSHDN
15
℃
(3)
THERMAL PROTECTION
Thermal Shutdown
Temperature
Thermal Shutdown
Hysteresis
NOTES:
1. Maximum output current is affected by PCB layout, size of metal trace, the thermal conduction path between metal layers and
the environment of the system.
2. The dropout voltage is defined as VIN - VOUT, when VOUT is 100mV below the value of VOUT for VIN = VOUT + 0.5V.
(Only applicable for VOUT = +2.5V to +5.0V.)
3. Time needed for VOUT to reach 90% of final value.
SG Micro Corp
www.sg-micro.com
OCTOBER 2016
4
500mA, Ultra Low Dropout,
Low Power, RF Linear Regulators
SGM2028
TYPICAL APPLICATION CIRCUITS
INPUT
2.5V to 5.5V
OUTPUT
OUT
IN
CIN
1μF
ON
SGM
2028-ADJ
R1
ON
OFF
GND
R2
OUTPUT
OUT
IN
CIN
1μF
COUT
1μF
FB
EN
INPUT
2.5V to 5.5V
SGM2028
OFF
BP
EN
COUT
1μF
CBP
0.01μF
GND
NOTE: Choose R2 = 47kΩ to maintain a 26μA minimum
load. Calculate the value for R1 using the following
equation:
V
R=
R2 × OUT -1
1
1.206V
SG Micro Corp
www.sg-micro.com
OCTOBER 2016
5
SGM2028
500mA, Ultra Low Dropout,
Low Power, RF Linear Regulators
TYPICAL PERFORMANCE CHARACTERISTICS
VIN = VOUT (NOMINAL) + 0.5V or 2.5V, whichever is greater, CIN = 1μF, COUT = 1μF, CBP = 0.01μF, TA = +25℃, unless otherwise
noted.
SG Micro Corp
www.sg-micro.com
OCTOBER 2016
6
500mA, Ultra Low Dropout,
Low Power, RF Linear Regulators
SGM2028
TYPICAL PERFORMANCE CHARACTERISTICS (continued)
VIN = VOUT (NOMINAL) + 0.5V or 2.5V, whichever is greater, CIN = 1μF, COUT = 1μF, CBP = 0.01μF, TA = +25℃, unless otherwise
noted.
Pow er Supply Rejection Ratio vs. Frequency
Dropout Voltage vs. Load Current
100
Dropout Voltage (mV)
350
PSRR (dB)
80
COUT = 10μF
60
CBP = 0.1μF
ILOAD = 50mA
V IN = 4.3V to 4.4V
V OUT = 3.3V
40
20
0.01
0.1
1
COUT = 1μF
10
100
TA = +85℃
300
250
200
150
TA = -40℃
100
TA = +25℃
50
SGM2028-3.3
0
1000
0
100
300
Output Voltage vs. Load Current
4
Output Voltage (V)
3.4
3.3
3.2
No Load
3.2
2.4
1.6
0.8
SGM2028-3.3
SGM2028-3.3
0
3.1
100
200
300
400
0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 5 5.5
500
Input Voltage (V)
Load Current (mA)
1.006
Normalized Output Voltage
Ground Pin Current (µA)
Normalized Output Voltage vs. Temperature
Ground Pin Current vs. Load Current
350
300
250
200
150
SGM2028-3.3
100
0
100
200
300
Load Current (mA)
SG Micro Corp
www.sg-micro.com
500
Output Voltage vs. Input Voltage
3.5
0
400
Load Current (mA)
Frequency (kHz)
Output Voltage (V)
200
400
500
1.004
Normalized to TA = +25℃
ILOAD = 0.1mA
1.002
1.000
0.998
0.996
SGM2028-3.3
0.994
-40
-15
10
35
60
85
Temperature (℃)
OCTOBER 2016
7
500mA, Ultra Low Dropout,
Low Power, RF Linear Regulators
SGM2028
TYPICAL PERFORMANCE CHARACTERISTICS (continued)
VIN = VOUT (NOMINAL) + 0.5V or 2.5V, whichever is greater, CIN = 1μF, COUT = 1μF, CBP = 0.01μF, TA = +25℃, unless otherwise
noted.
140
Ground Pin Current vs. Temperature
Ground Pin Current vs. Input Voltage
No Load
120
100
80
60
40
20
SGM2028-3.3
0
0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 5 5.5
Input Voltage (V)
SG Micro Corp
www.sg-micro.com
160
Ground Pin Current (μA)
Ground Pin Current (µA)
160
145
No Load
130
115
100
85
70
-40
SGM2028-3.3
-15
10
35
60
85
Temperature (℃)
OCTOBER 2016
8
500mA, Ultra Low Dropout,
Low Power, RF Linear Regulators
SGM2028
APPLICATION NOTE
When LDO is used in handheld products, attention must be paid to voltage spikes which could damage SGM2028.
In such applications, voltage spikes will be generated at charger interface and VBUS pin of USB interface when
charger adapters and USB equipments are hot-plugged. Besides this, handheld products will be tested on the
production line without battery. Test engineer will apply power from the connector pin which connects with positive
pole of the battery. When external power supply is turned on suddenly, the voltage spikes will be generated at the
battery connector. The voltage spikes will be very high, and it always exceeds the absolute maximum input voltage
(6.0V) of LDO. In order to get robust design, design engineer needs to clear up this voltage spike. Zener diode is a
cheap and effective solution to eliminate such voltage spike. For example, BZM55B5V6 is a 5.6V small package
Zener diode which can be used to remove voltage spikes in cell phone designs. The schematic is shown below.
Vcc
Input
IN
BZM55B5V6
1μF
C1
EN
GND
VOUT
OUT
SGM2028
C2
4.7μF
BP
0.01μF
Control
SG Micro Corp
www.sg-micro.com
OCTOBER 2016
9
PACKAGE INFORMATION
PACKAGE OUTLINE DIMENSIONS
SOT-23-5
1.90
D
e1
E1
2.59
E
0.99
b
e
0.69
0.95
RECOMMENDED LAND PATTERN (Unit: mm)
L
A
A1
θ
A2
Symbol
Dimensions
In Millimeters
MIN
MAX
c
0.2
Dimensions
In Inches
MIN
MAX
A
1.050
1.250
0.041
0.049
A1
0.000
0.100
0.000
0.004
A2
1.050
1.150
0.041
0.045
b
0.300
0.500
0.012
0.020
c
0.100
0.200
0.004
0.008
D
2.820
3.020
0.111
0.119
E
1.500
1.700
0.059
0.067
E1
2.650
2.950
0.104
0.116
e
0.950 BSC
e1
SG Micro Corp
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0.037 BSC
1.900 BSC
0.075 BSC
L
0.300
0.600
0.012
0.024
θ
0°
8°
0°
8°
TX00033.000
PACKAGE INFORMATION
TAPE AND REEL INFORMATION
REEL DIMENSIONS
TAPE DIMENSIONS
P2
W
P0
Q1
Q2
Q1
Q2
Q1
Q2
Q3
Q4
Q3
Q4
Q3
Q4
B0
Reel Diameter
K0
A0
P1
Reel Width (W1)
DIRECTION OF FEED
NOTE: The picture is only for reference. Please make the object as the standard.
KEY PARAMETER LIST OF TAPE AND REEL
Reel
Diameter
Reel Width
W1
(mm)
A0
(mm)
B0
(mm)
K0
(mm)
P0
(mm)
P1
(mm)
P2
(mm)
W
(mm)
Pin1
Quadrant
SOT-23-5
7″
9.5
3.20
3.20
1.40
4.0
4.0
2.0
8.0
Q3
SG Micro Corp
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TX10000.000
DD0001
Package Type
PACKAGE INFORMATION
CARTON BOX DIMENSIONS
NOTE: The picture is only for reference. Please make the object as the standard.
KEY PARAMETER LIST OF CARTON BOX
Length
(mm)
Width
(mm)
Height
(mm)
Pizza/Carton
7″ (Option)
368
227
224
8
7″
442
410
224
18
SG Micro Corp
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DD0002
Reel Type
TX20000.000