MIC5310
Dual 150mA µCap LDO in 2mm x 2mm MLF
®
General Description
The MIC5310 is a tiny Dual Ultra Low Dropout
(ULDO™) linear regulator ideally suited for portable
electronics due to its high power supply ripple
rejection (PSRR) and ultra low output noise. The
MIC5310 integrates two high-performance 150mA
ULDOs into a tiny 2mm x 2mm leadless MLF
®
package, which provides exceptional thermal package
characteristics.
The MIC5310 is a µCap design which enables
operation with very small ceramic output capacitors
for stability, thereby reducing required board space
and component cost. The combination of extremely
low-drop-out voltage, high power supply rejection and
exceptional thermal package characteristics makes it
ideal for powering RF/noise sensitive circuitry, cellular
phone camera modules, imaging sensors for digital
still cameras, PDAs, MP3 players and WebCam
applications
The MIC5310 ULDO™ is available in fixed-output
®
voltages in the tiny 8-pin 2mm x 2mm leadless MLF
package which occupies less than half the board area
of a single SOT-6 package. Additional voltage options
are available. For more information, contact Micrel
marketing department.
Data sheets and support documentation are found on
the Micrel web site
www.micrel.com.
Features
•
•
•
•
•
•
•
•
•
•
•
•
2.3V to 5.5V input voltage range
Ultra-low dropout voltage ULDO™ 35mV @ 150mA
High PSRR - >70dB @ 1KHz
Ultra-low output noise: 30µV
RMS
±2% initial output accuracy
Tiny 8-pin 2mm x 2mm MLF
®
leadless package
Excellent Load/Line transient response
Fast start up time: 30µs
µCap stable with 1µF ceramic capacitor
Thermal shutdown protection
Low quiescent current: 75µA per output
Current limit protection
Applications
•
•
•
•
•
•
Mobile phones
PDAs
GPS receivers
Portable electronics
Portable media players
Digital still and video cameras
Typical Application
ULDO is a trademark of Micrel, Inc.
MLF and
MicroLeadFrame
are registered trademarks of Amkor Technology, Inc.
Micrel Inc. • 2180 Fortune Drive • San Jose, CA 95131 • USA • tel +1 (408) 944-0800 • fax + 1 (408) 474-1000 •
http://www.micrel.com
March 2011
M9999-032411-C
Micrel, Inc.
RF Power Supply Circuit
MIC5310
Block Diagram
MIC5310 Fixed Block Diagram
March 2011
2
M9999-032411-C
Micrel, Inc.
MIC5310
Ordering Information
Functional
Part number
MIC5310-1.8/1.5YML
MIC5310-1.8/1.8YML
MIC5310-1.8/1.6YML
MIC5310-2.5/1.8YML
MIC5310-2.5/2.5YML
MIC5310-2.6/1.85YML
MIC5310-2.6/1.8YML
MIC5310-2.7/2.7YML
MIC5310-2.8/1.5YML
MIC5310-2.8/1.8YML
MIC5310-2.8/2.6YML
MIC5310-2.8/2.8YML
MIC5310-2.85/1.85YML
MIC5310-2.85/2.6YML
MIC5310-2.85/2.85YML
MIC5310-2.9/1.5YML
MIC5310-2.9/1.8YML
MIC5310-2.9/2.9YML
MIC5310-3.0/1.8YML
MIC5310-3.0/2.5YML
MIC5310-3.0/2.6YML
MIC5310-3.0/2.8YML
MIC5310-3.0/2.85YML
MIC5310-3.0/3.0YML
MIC5310-3.3/1.5YML
MIC5310-3.3/1.8YML
MIC5310-3.3/2.5YML
MIC5310-3.3/2.6YML
MIC5310-3.3/2.8YML
MIC5310-3.3/2.85YML
MIC5310-3.3/2.9YML
MIC5310-3.3/3.0YML
MIC5310-3.3/3.2YML
MIC5310-3.3/3.3YML
Notes:
1.
2.
3.
Over bar symbol ( ¯ ) may not be to scale. Over bar at Pin 1.
Other voltage options available. Contact Micrel for more details.
MLF® is a GREEN RoHS compliant package. Lead finish is NiPdAu. Mold compound is Halogen Free.
Ordering
Part Number
MIC5310-GFYML
MIC5310-GGYML
MIC5310-GWYML
MIC5310-JGYML
MIC5310-JJYML
MIC5310-KDYML
MIC5310-KGYML
MIC5310-LLYML
MIC5310-MFYML
MIC5310-MGYML
MIC5310-MKYML
MIC5310-MMYML
MIC5310-NDYML
MIC5310-NKYML
MIC5310-NNYML
MIC5310-OFYML
MIC5310-OGYML
MIC5310-OOYML
MIC5310-PGYML
MIC5310-PJYML
MIC5310-PKYML
MIC5310-PMYML
MIC5310-PNYML
MIC5310-PPYML
MIC5310-SFYML
MIC5310-SGYML
MIC5310-SJYML
MIC5310-SKYML
MIC5310-SMYML
MIC5310-SNYML
MIC5310-SOYML
MIC5310-SPYML
MIC5310-SRYML
MIC5310-SSYML
Marking
GFZ
GGZ
GWZ
JGZ
JJZ
KDZ
KGZ
LLZ
MFZ
MGZ
MKZ
MMZ
NDZ
NKZ
NNZ
OFZ
OGZ
OOZ
PGZ
PJZ
PKZ
PMZ
PNZ
PPZ
SFZ
SGZ
SJZ
SKZ
SMZ
SNZ
SOZ
SPZ
SRZ
SSZ
1
V
OUT1
/V
OUT22
1.8V/1.5V
1.8V/1.8V
1.8V/1.6V
2.5V/1.8V
2.5V/2.5V
2.6V/1.85
2.6V/1.8V
2.7V/2.7V
2.8V/1.5V
2.8V/1.8V
2.8V/2.6V
2.8V/2.8V
2.85V/1.85V
2.85V/2.6V
2.85V/2.85V
2.9V/1.5V
2.9V/1.8V
2.9V/2.9V
3.0V/1.8V
3.0V/2.5V
3.0V/2.6V
3.0V/2.8V
3.0V/2.85V
3.0V/3.0V
3.3V/1.5V
3.3V/1.8V
3.3V/2.5V
3.3V/2.6V
3.3V/2.8V
3.3V/2.85V
3.3V/2.9V
3.3V/3.0V
3.3V/3.2V
3.3V/3.3V
Junction
Temperature Range
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
–40°C to +125°C
Package
3
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
8-Pin 2x2 MLF
®
March 2011
3
M9999-032411-C
Micrel, Inc.
MIC5310
Pin Configuration
8-Pin 2mm x 2mm MLF (ML)
Top View
Pin Description
Pin Number
1
2
3
4
5
6
7
8
–
Pin Name
VIN
GND
BYP
EN2
EN1
NC
VOUT2
VOUT1
EP
Pin Function
Supply Input.
Ground
Reference Bypass: Connect external 0.1µF to GND to reduce output noise.
May be left open when bypass capacitor is not required.
Enable Input (regulator 2). Active High Input. Logic High = On; Logic Low = Off;
Do not leave floating.
Enable Input (regulator 1). Active High Input. Logic High = On; Logic Low = Off;
Do not leave floating.
Not internally connected
Regulator Output – LDO2
Regulator Output – LDO1
Exposed Pad. Connect EP to GND.
March 2011
4
M9999-032411-C
Micrel, Inc.
MIC5310
Absolute Maximum Ratings
(1)
Supply Voltage (V
IN
) .....................................0V to +6V
Enable Input Voltage (V
EN
)...........................0V to +6V
Power Dissipation...........................Internally Limited
(3)
Lead Temperature (soldering, 3sec ...................260°C
Storage Temperature (T
S
) ................. -65°C to +150°C
ESD Rating
(4)
.........................................................2kV
Operating Ratings
(2)
Supply voltage (V
IN
)............................... +2.3V to +5.5V
Enable Input Voltage (V
EN
).............................. 0V to V
IN
Junction Temperature ......................... -40°C to +125°C
Junction Thermal Resistance
MLF-8 (θ
JA
) ............................................... 90°C/W
Electrical Characteristics
(5)
V
IN
= EN1 = EN2 = V
OUT
+ 1.0V; higher of the two regulator outputs, I
OUTLDO1
= I
OUTLDO2
= 100µA; C
OUT1
= C
OUT2
= 1µF;
C
BYP
= 0.1µF; T
J
= 25°C,
bold
values indicate –40°C
≤
T
J
≤
+125°C, unless noted.
Parameter
Output Voltage Accuracy
Line Regulation
Load Regulation
Dropout Voltage (Note
6)
Conditions
Variation from nominal V
OUT
Variation from nominal V
OUT
; –40°C to +125°C
V
IN
= V
OUT
+ 1V to 5.5V; I
OUT
= 100µA
I
OUT
= 100µA to 150mA
I
OUT
= 100µA
I
OUT
= 50mA
I
OUT
= 100mA
I
OUT
= 150mA
Ground Current
EN1 = High; EN2 = Low; I
OUT
= 100µA to 150mA
EN1 = Low; EN2 = High; I
OUT
= 100µA to 150mA
EN1 = EN2 = High; I
OUT1
= 150mA, I
OUT2
= 150mA
Ground Current in Shutdown
Ripple Rejection
Current Limit
Output Voltage Noise
Enable Inputs (EN1 / EN2)
Enable Input Voltage
Enable Input Current
Logic Low
Logic High
V
IL
≤
0.2V
V
IH
≥
1.0V
Turn-on Time (See Timing Diagram)
Turn-on Time (LDO1 and 2)
Notes:
1. Exceeding the absolute maximum rating may damage the device.
2. The device is not guaranteed to function outside its operating rating.
3. The maximum allowable power dissipation of any T
A
(ambient temperature) is P
D(max)
= (T
J(max)
– T
A
) /
θ
JA
. Exceeding the maximum allowable
power dissipation will result in excessive die temperature, and the regulator will go into thermal shutdown.
4. Devices are ESD sensitive. Handling precautions recommended. Human body model, 1.5k in series with 100pF.
5. Specification for packaged product only.
6. Dropout voltage is defined as the input-to-output differential at which the output voltage drops 2% below its nominal V
OUT
. For outputs below
2.3V, the dropout voltage is the input-to-output differential with the minimum input voltage 2.3V.
Min
-2.0
-3.0
Typ
Max
+2.0
+3.0
Units
%
%
%/V
%/V
%
mV
mV
mV
mV
µA
µA
µA
µA
dB
dB
0.02
0.5
0.1
12
25
35
85
85
150
0.01
70
65
300
550
30
0.3
0.6
2.0
50
75
100
120
120
190
2
EN1 = EN2 = 0V
f = 1kHz; C
OUT
= 1.0µF; C
BYP
= 0.1µF
f = 20kHz; C
OUT
= 1.0µF; C
BYP
= 0.1µF
V
OUT
= 0V
C
OUT
= 1.0 µF; C
BYP
= 0.1µF; 10Hz to 100kHz
950
mA
µV
RMS
0.2
1.1
0.01
0.01
30
100
V
V
µA
µA
µs
C
OUT
= 1.0µF; C
BYP
= 0.01µF
March 2011
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M9999-032411-C