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What is ADP3306?

This electronic component, produced by the manufacturer "Analog Devices", performs the same function as "High Accuracy anyCAP 100 mA Low Dropout Linear Regulator".


ADP3306 Datasheet PDF - Analog Devices

Part Number ADP3306
Description High Accuracy anyCAP 100 mA Low Dropout Linear Regulator
Manufacturers Analog Devices 
Logo Analog Devices Logo 


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a
High Accuracy anyCAP™*
100 mA Low Dropout Linear Regulator
ADP3301
FEATURES
High Accuracy (Over Line and Load Regulations
at +25؇C): ؎0.8%
Ultralow Dropout Voltage: 100 mV Typical @ 100 mA
Requires Only CO = 0.47 F for Stability
anyCAP™* = Stable with All Types of Capacitors
Current and Thermal Limiting
Low Noise
Dropout Detector
Low Shutdown Current: 1 A
Several Fixed Voltage Options
3.0 V to 12 V Supply Range
–20؇C to +85؇C Ambient Temperature Range
Thermally Enhanced SO-8 Package
Excellent Line and Load Regulations
APPLICATIONS
Cellular Telephones
Notebook, Palmtop Computers
Battery Powered Systems
Portable Instruments
Post Regulator for Switching Supplies
Bar Code Scanners
GENERAL DESCRIPTION
The ADP3301 is a member of the ADP330x family of precision
low dropout anyCAP™* voltage regulators. The ADP3301
stands out from the conventional LDOs with a novel architec-
ture, an enhanced process and a new package. Its patented
design includes a noninverting wideband driver and a stage that
permits the use of an internal “pole splitting” capacitor to
stabilize the feedback loop with a single output capacitor as
small as 0.47 µF. This device is stable with any type of capacitor
regardless of its ESR (Equivalent Serial Resistance) value,
including ceramic types (MLCC) for space restricted applica-
tions. The ADP3301 achieves exceptional accuracy of ± 0.8% at
room temperature and ± 1.4% overall accuracy over tempera-
ture, line and load regulations. The dropout voltage of the
ADP3301 is only 100 mV (typical) at 100 mA.
In addition to the new architecture and process, ADI’s new
proprietary thermally enhanced package (Thermal Coastline)
can handle 1 W of power dissipation without external heat sink
or large copper surface on the PC board. This keeps PC board
real estate to a minimum and makes the ADP3301 very
attractive for use in portable equipment.
*anyCAP is a trademark of Analog Devices Inc.
FUNCTIONAL BLOCK DIAGRAM
IN
ERR
SD
Q2
Q1
THERMAL
PROTECTION
DRIVER
GND
ADP3301
CC
Gm
BANDGAP
REF
OUT
R1
R2
The ADP3301 operates with a wide input voltage range from
3 V to 12 V and delivers a load current in excess of 100 mA. It
features an error flag that signals when the device is about to
lose regulation or when the short circuit or thermal overload
protection is activated. Other features include shutdown and
optional noise reduction capabilities. The ADP330x anyCAP™*
LDO family offers a wide range of output voltages and output
current levels from 50 mA to 300 mA:
ADP3300 (50 mA, SOT-23)
ADP3302 (100 mA, Dual Output)
ADP3304 (100 mA, Dual Output with Separate Grounds)
ADP3303 (200 mA)
ADP3306 (300 mA)
VIN
C1
0.47µF
NR 3
ADP3301-5.0
7
IN
8
1
OUT
2
ERR 6
5
ON
OFF
4
GND
R1
330k
EOUT
VOUT = +5V
C2
0.47µF
Figure 1. Typical Application Circuit
REV. 0
Information furnished by Analog Devices is believed to be accurate and
reliable. However, no responsibility is assumed by Analog Devices for its
use, nor for any infringements of patents or other rights of third parties
which may result from its use. No license is granted by implication or
otherwise under any patent or patent rights of Analog Devices.
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 617/329-4700 World Wide Web Site: http://www.analog.com
Fax: 617/326-8703
© Analog Devices, Inc., 1997

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ADP3306 equivalent
5.02
5.01
VOUT = 5V
5.00
4.99
50, 0.47µF LOAD
4.98
VIN
7.5
7.0
0 20 40 60 80 100 120 140 160 180 200
TIME – µs
Figure 11. Line Transient Response
5.02
5.01
5.00
4.99
4.98
VOUT = 5V
5k, 0.47µF LOAD
VIN
7.5
7.0
0 40 80 120 160 200 240 280 320 360 400
TIME – µs
Figure 12. Line Transient Response
ADP3301
0.02
5.01
5.00
4.99
CL = 0.47µF
VOUT = 5V
I(VOUT)
100
1
0 200 400 600 800 1000
TIME – µs
Figure 13. Load Transient for 1 mA
to 100 mA Pulse
3.304
3.302
3.300
3.298
CL = 10µF
VOUT = 3.3V
I(VOUT)
100
10
0 100 200 300 400 500
TIME – µs
Figure 14. Load Transient for 10 mA
to 100 mA Pulse
4
C = 0.47µF
R = 33ON 3.3V OUTPUT
3 VOUT = 3.3V
2
VOUT
1
0
5
VSD
0
0 5 10 15 20 25 30 35 40 45 50
TIME – µs
Figure 17. Turn-Off
3.5 3.3V
VOUT
0
400
300
IOUT
200
100
0
0 12 3 45
TIME – sec
Figure 15. Short Circuit Current
0
–10 a. 0.47µF, RL = 33k
b. 0.47µF, RL = 33
–20 c. 10µF, RL = 33k
–30 d. 10µF, RL = 33
–40
–50
–60
–70 b d
a
VOUT = 3.3V
b
d
c
–80
–90
ac
–100
10 100
1k
10k 100k 1M 10M
FREQUENCY – Hz
Figure 18. Power Supply Ripple
Rejection
VOUT = 5V
8
6 CL = 0.47µF, RL = 5k
4
5.0V
2
0 CL = 10µF, RL = 5k
5
0
0 40 80 120 160 200
TIME – µs
Figure 16. Turn-On
10
0.47µF BYPASS
PIN 7, 8 TO PIN 3
VOUT = 5V, CL = 0.47µF,
IL = 1mA, CNR = 0
1
VOUT = 3.3V, CL = 0.47µF,
IL = 1mA, CNR = 0
0.1 VOUT = 2.7-5.0V, CL = 10µF,
IL = 1mA, CNR = 10nF
0.01
100
1k 10k
FREQUENCY – Hz
100k
Figure 19. Output Noise Density
REV. 0
–5–


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