1a low dropout linear regulator cja1117b-xxx

JIANGSU CHANGJIANG ELECTRONICS TECHNOLOGY CO., LTD
1A LOW DROPOUT LINEAR REGULATOR
CJA1117B-XXX
GENERAL DESCRIPTION
The CJA1117B-XXX is a series of low dropout three-terminal regulators with a dropout of 1.15V at
1A output current.
The CJA1117B-XXX series provides current limiting and thermal shutdown. Its circuit includes a
trimmed bandgap. reference to assure output voltage accuracy to be within 1%. Current limit is trimmed
to ensure specified. output current and controlled short-circuit current. On-chip thermal shutdown
provides protection against any combination of overload and ambient temperature that would create
excessive junction temperature.
The CJA1117B-XXX has an adjustable version, that can provide the output voltage from 1.25V to 5V with
only 2 external resistors.
FEATURES
z Low Dropout Voltage: 1.15V at 1A Output Current
z Trimmed Current Limit
z On-Chip Thermal Shutdown
z Three-Terminal Adjustable or Fixed 1.8V, 2.5V, 3.3V, 5V
z Operation Junction Temperature: 0 ℃ to125℃
APPLICATIONS
z
PC Motherboard
z
LCD Monitor
z
Graphic Card
z
DVD-Video Player
z
NIC/Switch
z
Telecom Modem
z
ADSL Modem
z
Printer and other peripheral Equipment
PACKAGE AND PIN CONFIGURATIONS
SOT – 89-3L
1. ADJ/GND
2. OUTPUT
3.IN
B, Jun,2012
ORDERING INFORMATION
Package
Operating Junction Temperature Range
Part NO.
CJA1117B-ADJ
CJA1117B-1.8
SOT-89-3L
0 to 125℃
CJA1117B-2.5
CJA1117B-3.3
CJA1117B-5.0
ABOSLUTE MAXIMUM RATINGS (Ta=25℃ unless otherwise noted)
Parameter
Symbol
Value
Unit
Vi
20
V
Input Voltage
Tj
150
℃
Storage Temperature
Tstg
-65~+150
℃
Lead Temperature (Soldering, 10sec.)
TL
300
℃
VESD
600
V
Maximum Junction Temperature
ESD Voltage (Machine Model)
Note 1: Stresses greater than those listed under ”Absolute Maximum Ratings” may cause permanent
damage to the device. These are stress ratings only, and functional of the device at these or any other
conditions beyond those indicated under “Recommended Operating Conditions” is not implied. Exposure
to “Absolute Maximum Ratings” for extended periods may affect device reliability.
RECOMMENDED OPERATING CONDITIONS
Parameter
Symbol
Value
Unit
Input Voltage
Vi
15
V
Operating Junction Temperature
Tj
0~+125
℃
B, Jun,2012
ELECTRICAL CHARACTERISTICS (VIN≤10V, TJ=25℃ unless otherwise specified. )
Parameter
Reference Voltage
Symbol
VIROC
Part NO.
CJA1117B-ADJ
CJA1117B-1.8
CJA1117B-2.5
Output Voltage
VO
CJA1117B-3.3
CJA1117B-5.0
Line Regulation
LNR
Test
conditions
Min
Typ
Max
IOUT=10mA, VIN -VOUT =2V
1.231
1.250
1.269
10mA≤IOUT≤1A, 2V≤VIN -VOUT ≤12V
1.225
1.250
1.275
IOUT=10mA, VIN=3.8V
1.773
1.8
1.827
10mA≤IOUT≤1A, 3.3V≤VIN ≤12V
1.764
1.8
1.836
IOUT=10mA, VIN=4.5V
2.463
2.5
2.538
10mA≤IOUT≤1A, 4V≤VIN ≤12V
2.450
2.5
2.550
IOUT=10mA, VIN=5.3V
3.251
3.3
3.350
10mA≤IOUT≤1A, 4.8V≤VIN ≤12V
3.234
3.3
3.366
IOUT=10mA, VIN=7.0V
4.925
5.0
5.075
4.9
5.0
5.1
0.035
0.2
10mA≤IOUT≤1A, 6.5V≤VIN ≤12V
CJA1117B-ADJ
IOUT=10mA, 1.5V≤VIN -VOUT ≤12V
CJA1117B-1.8
IOUT=10mA, 1.5V≤VIN -VOUT ≤10.2V
1
7
CJA1117B-2.5
IOUT=10mA, 1.5V≤VIN -VOUT ≤9.5V
1
7
CJA1117B-3.3
IOUT=10mA, 1.5V≤VIN -VOUT ≤8.7V
1
7
CJA1117B-5.0
IOUT=10mA, 1.5V≤VIN -VOUT ≤7V
1
10
0.2
0.4
CJA1117B-ADJ
LDR
CJA1117B-2.5
VIN-VOUT=2V, 10mA≤IOUT ≤1A
10
CJA1117B-3.3
12
CJA1117B-5.0
15
Dropout Voltage
VD
ΔVREF=1%, IOUT=1.0A
Current Limit
Ilimit
VIN-VOUT=2V
1.3
1
Adjust Pin Current
Minimum
Load Current
Quiescent Current
Ripple Rejection
IL
1.5V≤VIN -VOUT ≤12V (ADJ only)
Iq
VIN= VOUT+1.25V
RR
f=120Hz,COUT=22μFTantalum,
Thermal Shutdown
%
mV
%
V
A
60
120
μA
1.7
5
μA
5
10
mA
%
0.003
%
SOT-89-3L
25
℃/W
Junction Temperature
150
℃
25
℃
Thermal
Shutdown Hysteresis
60
mV
0.3
TA=25℃, 10Hz≤f ≤10kHz
RθJC*
V
%
TA=125℃, 1000hrs
Junction to Case
V
0.5
RMS Output
Thermal Resistance,
V
dB
Long-Term Stability
(% of VOUT)
V
75
VIN-VOUT=3V, IOUT=1A
Temperature Stability
Noise
V
10
CJA1117B-1.8
Load Regulation
Unit
* With package soldering to copper area over backside ground plane or internal power plane RθJA can vary from 46 ℃/W to
>90℃/W depending on mounting technique and the size of the copper area
B, Jun,2012
FUNCTIONAL BLOCK DIAGRAM
TYPICAL APPLICATION CIRCUIT
B, Jun,2012