LTC1438/LTC1439
4
14389fb
The denotes the specifications which apply over the full operating
temperature range. T
A
= 25°C, V
IN
= 15V, V
RUN/SS1,2
= 5V unless otherwise noted.
ELECTRICAL CHARACTERISTICS
Note 1: Absolute Maximum Ratings are those values beyond which the life
of the device may be impaired.
Note 2: T
J
is calculated from the ambient temperature T
A
and power
dissipation P
D
according to the following formulas:
LTC1438CG, LTC1439CG: T
J
= T
A
+ (P
D
)(95°C/W)
LTC1439CGW: T
J
= T
A
+ (P
D
)(85°C/W)
Note 3: The LTC1438 and LTC1439 are tested in a feedback loop which
servos V
OSENSE1,2
to the balance point for the error amplifier
(V
ITH1,2
= 1.19V).
Note 4: Dynamic supply current is higher due to the gate charge being
delivered at the switching frequency. See Applications Information.
Note 5: Oscillator frequency is tested by measuring the C
OSC
charge and
discharge current (I
OSC
) and applying the formula:
f
OSC
(kHz) = 8.4(10
8
)[C
OSC
(pF) + 11]
–1
(1/I
CHG
+ 1/I
DISC
)
–1
Note 6: The auxiliary regulator is tested in a feedback loop which servos
V
AUXFB
to the balance point for the error amplifier. For applications with
V
AUXDR
> 9.5V, V
AUXFB
uses an internal resistive divider. See Applications
Information section.
Note 7: The LTC1439EG is guaranteed to meet performance specifications
from 0°C to 70°C. Specifications over the –40°C to 85°C operating
temperature range are assured by design, characterization and correlation
with statistical process controls.
SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS
Low-Battery Comparator
V
SATLBO
LBO Saturation Voltage I
LBO
= 1.6mA, V
LBI
= 1.1V 0.6 1 V
I
LLBO
LBO Leakage V
LBO
= 12V, V
LBI
= 1.4V 0.01 1 µA
V
THLB1
LBI Trip Voltage High to Low Transition on LBO 1.16 1.19 1.22 V
I
INLB1
LBI Input Current V
LBI
= 1.19V 150 nA
V
HYSLBO
LBO Hysteresis 20 mV
Auxiliary Regulator/Comparator
I
AUXDR
AUXDR Current V
EXTVCC
= 0V
Max Current Sinking Capability V
AUXDR
= 4V, V
AUXFB
= 1.0V, V
AUXON
= 5V 10 15 mA
Control Current V
AUXDR
= 5V, V
AUXFB
= 1.5V, V
AUXON
= 5V 1 5 µA
Leakage when OFF V
AUXDR
= 24V, V
AUXFB
= 1.5V, V
AUXON
= 0V 0.01 1 µA
I
INAUXFB
AUXFB Input Current V
AUXFB
= 1.19V, V
AUXON
= 5V 0.01 1 µA
I
INAUXON
AUXON Input Current V
AUXON
= 5V 0.01 1 µA
V
THAUXON
AUXON Trip Voltage V
AUXDR
= 4V, V
AUXFB
= 1V 1.0 1.19 1.4 V
V
SATAUXDR
AUXDR Saturation Voltage I
AUXDR
= 1.6mA, V
AUXFB
= 1V, V
AUXON
= 5V 0.4 0.8 V
V
AUXFB
AUXFB Voltage V
AUXON
= 5V, 11V < V
AUXDR
< 24V (Note 6) 11.5 12.0 12.5 V
V
AUXON
= 5V, 3V < V
AUXDR
< 7V 1.14 1.19 1.24 V
V
THAUXDR
AUXFB Divider Disconnect Voltage V
AUXON
= 5V (Note 6); Ramping Negative 7.5 8.5 9.5 V
LTC1438/LTC1439
5
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LOAD CURRENT (A)
0.001
50
EFFICIENCY (%)
55
65
70
75
100
85
0.01 0.1
1
1435 G03
60
90
95
80
10
Adaptive Power
MODE
CONTINUOUS
MODE
V
IN
= 10V
V
OUT
= 5V
R
SENSE
= 0.033
Burst Mode
®
OPERATION
TYPICAL PERFORMANCE CHARACTERISTICS
U
W
Efficiency vs Input Voltage
V
OUT
= 3.3V
V
IN
– V
OUT
Dropout Voltage
vs Load Current
Efficiency vs Load Current
V
ITH
Pin Voltage vs Output Current
Load Regulation
Input Supply Current
vs Input Voltage
EXTV
CC
Switch Drop
vs INTV
CC
Load Current
INPUT VOLTAGE (V)
0
70
EFFICIENCY (%)
75
80
85
90
100
5
10 15 20
1438 G01
25 30
95
I
LOAD
= 1A
I
LOAD
= 100mA
V
OUT
= 3.3V
Efficiency vs Input Voltage
V
OUT
= 5V
INPUT VOLTAGE (V)
0
70
EFFICIENCY (%)
75
80
85
90
100
5
10 15 20
1438 G02
25 30
95
I
LOAD
= 1A
I
LOAD
= 100mA
V
OUT
= 5V
LOAD CURRENT (A)
0
0
V
IN
– V
OUT
(V)
0.2
0.1
0.3
0.4
0.5
0.5 1.0 1.5 2.0
1438 G04
2.5 3.0
R
SENSE
= 0.033
V
OUT
DROP OF 5%
M1, M2: Si4412
LOAD CURRENT (A)
0
V
OUT
(%)
0
0.5
1.0 1.5 2.0
1438 G05
2.5 3.0
0.25
0.50
0.75
–1.00
–1.25
–1.50
R
SENSE
= 0.033
OUTPUT CURRENT (%)
0
V
ITH
(V)
1.0
2.0
3.0
0.5
1.5
2.5
20 40 60 80
1438 G06
10010030507090
Burst Mode
OPERATION CONTINUOUS/Adaptive
Power MODE
INPUT VOLTAGE (V)
0
0
SUPPLY CURRENT (mA)
SHUTDOWN CURRENT (µA)
0.5
1.0
1.5
2.0
2.5
0
5
10
15
20
25
30
35
5
10 15 20
1438 G07
25 30
SHUTDOWN
CURRENT
5V OFF
3.3V ON
5V AND
3.3V ON
5V ON
3.3V OFF
INTV
CC
LOAD CURRENT (mA)
0
EXTV
CC
– INTV
CC
(mV)
200
300
20
1438 G09
100
0
5
10
15
25 30
–45°C
25°C
70°C
INTV
CC
Regulation
vs INTV
CC
Load Current
INTV
CC
LOAD CURRENT (mA)
0
INTV
CC
% CHANGE, NORMALIZED (V)
0
1
5040
1438 G08
–1
–2
10
20
30
2
70°C
25°C
EXTV
CC
= 0V
Burst Mode is a registered trademark of Linear Technology Corporation.
LTC1438/LTC1439
6
14389fb
TYPICAL PERFORMANCE CHARACTERISTICS
U
W
Normalized Oscillator Frequency
vs Temperature
Transient Response
Transient Response
Maximum Current Sense
Threshold Voltage vs Temperature
I
LOAD
= 50mA to 1A 1438 G14
I
LOAD
= 1A to 3A 1438 G15
RUN/SS Pin Current
vs Temperature
V
OUT
50mV/DIV
V
OUT
50mV/DIV
V
OUT
20mV/DIV
V
ITH
200mV/DIV
I
LOAD
= 50mA 1438 G16
Burst Mode Operation
Auxiliary Regulator Load
Regulation
SFB1 Pin Current vs Temperature
Soft Start: Load Current vs Time
1438 G17
RUN/SS
5V/DIV
INDUCTOR
CURRENT
1A/DIV
TEMPERATURE (°C)
–40
FREQUENCY (%)
5
10
35 85
1438 G10
f
O
–15 10
60 110 135
–5
–10
TEMPERATURE (°C)
–40
0
RUN/SS CURRENT (µA)
1
2
3
4
–15 10 35 60
1438 G11
85 110 135
TEMPERATURE (°C)
–40
SFB CURRENT (µA)
–1.50
0.25
0
35 85
1438 G12
0.75
–1.00
–15 10
60 110 135
–1.25
–1.50
TEMPERATURE (°C)
–40
146
CURRENT SENSE THRESHOLD (mV)
148
150
152
154
–15 10 35 60
1438 G13
85 110 135
AUXILIARY LOAD CURRENT (mA)
0
AUXILIARY OUTPUT VOLTAGE (V)
12.0
12.1
12.2
160
1438 G18
11.9
11.8
11.7
40
80
120
200
EXTERNAL PNP: 2N2907A

LTC1439IGW#PBF

Mfr. #:
Manufacturer:
Analog Devices / Linear Technology
Description:
Switching Voltage Regulators 2x Hi Eff, L N, Sync Buck Sw Regs
Lifecycle:
New from this manufacturer.
Delivery:
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