LTC3814-5
4
38145fc
Note 1: Stresses beyond those listed under Absolute Maximum Ratings
may cause permanent damage to the device. Exposure to any Absolute
Maximum Rating condition for extended periods may affect device
reliability and lifetime.
Note 2: The LTC3814-5 is tested under pulsed load conditions such that
T
J
T
A
. The LTC3814E-5 is guaranteed to meet performance specifi cations
from 0°C to 85°C. Specifi cations over the –40°C to 125°C operating
junction temperature range are assured by design, characterization and
correlation with statistical process controls. The LTC3814I-5 is guaranteed
to meet performance specifi cations over the full –40°C to 125°C operating
junction temperature range.
Note 3: T
J
is calculated from the ambient temperature T
A
and power
dissipation P
D
according to the following formula:
LTC3814-5: T
J
= T
A
+ (P
D
• 38°C/W)
SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS
PG Delay PGOOD Delay V
FB
Falling 125 µs
V
CC
Regulators
V
EXTVCC
EXTV
CC
Switchover Voltage
EXTV
CC
Rising
EXTV
CC
Hysteresis
l
4.5
0.1
4.7
0.25 0.4
V
V
V
INTVCC,1
INTV
CC
Voltage from EXTV
CC
6V < V
EXTVCC
< 15V 5.2 5.5 5.8 V
V
EXTVCC,1
V
EXTVCC
- V
INTVCC
at Dropout I
CC
= 20mA, V
EXTVCC
= 5V 75 150 mV
V
LOADREG,1
INTV
CC
Load Regulation from EXTV
CC
I
CC
= 0mA to 20mA, V
EXTVCC
= 10V 0.01 %
V
INTVCC,2
INTV
CC
Voltage from NDRV Regulator Linear Regulator in Operation 5.2 5.5 5.8 V
V
LOADREG,2
INTV
CC
Load Regulation from NDRV I
CC
= 0mA to 20mA, V
EXTVCC
= 0 0.01 %
I
NDRV
Current into NDRV Pin V
NDRV
– V
INTVCC
= 3V 20 40 60 µA
V
CCSR
Maximum Supply Voltage Trickle Charger Shunt Regulator 15 V
I
CCSR
Maximum Current into NDRV/INTV
CC
Trickle Charger Shunt Regulator,
INTV
CC
≤ 16.7V (Note 8)
10 mA
Note 4: The LTC3814-5 is tested in a feedback loop that servos V
FB
to the
reference voltage with the I
TH
pin forced to a voltage between 1V and 2V.
Note 5: The dynamic input supply current is higher due to the power
MOSFET gate charging being delivered at the switching frequency
(Q
G
• f
SW
).
Note 6: Guaranteed by design. Not subject to test.
Note 7: This IC includes overtemperature protection that is intended
to protect the device during momentary overload conditions. Junction
temperature will exceed 125°C when overtemperature protection is active.
Continuous operation above the specifi ed maximum operating junction
temperature may impair device reliability.
Note 8: I
CC
is the sum of current into NDRV and INTV
CC
.
Overcurrent Operation
The
l denotes specifi cations which apply over the full operating
temperature range, otherwise specifi cations are at T
A
= 25°C (Note 2), INTV
CC
= V
BOOST
= V
RNG
= V
EXTVCC
= V
NDRV
= V
OFF
= 5V, unless
otherwise specifi ed.
ELECTRICAL CHARACTERISTICS
TYPICAL PERFORMANCE CHARACTERISTICS
Load Transient Response
Start-Up
V
OUT
200mV/DIV
100μs/DIV
FRONT PAGE CIRCUIT
V
IN
= 12V
0A TO 4A LOAD STEP
38145 G01
I
OUT
2A/DIV
V
OUT
10V/DIV
1ms/DIV
FRONT PAGE CIRCUIT
V
IN
= 12V
I
LOAD
= 1A
38145 G02
RUN/SS
4V/DIV
I
L
5A/DIV
V
OUT
10V/DIV
200µs/DIV
FRONT PAGE CIRCUIT
V
IN
= 12V
V
RNG
= 1V
R
SHORT
= 1
38145 G03
I
L
5A/DIV
LTC3814-5
5
38145fc
Effi ciency vs Load Current
Frequency vs Input Voltage Frequency vs Load Current
I
TH
Voltage vs Load Current
Off-Time vs I
OFF
Current
Off-Time vs Temperature
TYPICAL PERFORMANCE CHARACTERISTICS
Current Sense Threshold
vs I
TH
Voltage
Maximum Current Sense
Threshold vs V
RNG
Voltage
Maximum Current Sense
Threshold vs Temperature
LOAD (A)
EFFICIENCY (%)
90
95
85
80
100
38145 G04
V
IN
= 12V
V
IN
= 24V
V
IN
= 36V
V
OUT
= 50V
04
123 5
INPUT VOLTAGE (V)
5
FREQUENCY (kHz)
260
280
300
13
240
220
200
7
9
11
15
38145 G05
I
LOAD
= 0A
I
LOAD
= 1A
FRONT PAGE CIRCUIT
LOAD CURRENT (A)
0
FREQUENCY (kHz)
260
280
300
240
220
200
1
2
3
4
38145 G06
V
IN
= 5V
V
IN
= 12V
FRONT PAGE CIRCUIT
LOAD CURRENT (A)
I
TH
VOLTAGE (V)
1
2
0
3
38145 G07
FRONT PAGE CIRCUIT
V
IN
= 12V
V
RNG
= 1V
04
123 5
I
TH
VOLTAGE (V)
0
–400
CURRENT SENSE THRESHOLD (mV)
–200
–300
–100
0
100
200
400
0.5
1 1.5 2
38145 G08
2.5 3
300
V
RNG
= 2V
1.4V
1V
0.7V
0.5V
I
OFF
CURRENT (µA)
10
10
OFF-TIME (ns)
100
1000
10000
100 1000 10000
38145 G09
V
OFF
= INTV
CC
TEMPERATURE (°C)
–50
OFF-TIME (ns)
640
660
680
25 75
38145 G10
620
600
–25 0
50 100 125
580
560
I
OFF
= 300µA
V
RNG
VOLTAGE (V)
0.5
MAXIMUM CURRENT SENSE THRESHOLD (mV)
200
38145 G11
100
0
1 1.5
300
400
2
TEMPERATURE (°C)
–50 –25
190
MAXIMUM CURRENT SENSE THRESHOLD (mV)
210
240
0
50
75
38145 G12
200
230
220
25
100
125
V
RNG
= INTV
CC
LTC3814-5
6
38145fc
TYPICAL PERFORMANCE CHARACTERISTICS
Reference Voltage
vs Temperature
Driver Pulldown R
DS(ON)
vs Temperature
Driver Peak Source Current
vs Supply Voltage
Driver Pulldown R
DS(ON)
vs Supply Voltage
EXTV
CC
Switch Resistance
vs Temperature
INTV
CC
Current vs Temperature
INTV
CC
Shutdown Current
vs Temperature
Driver Peak Source Current
vs Temperature
TEMPERATURE (°C)
–50 –25
0.797
REFERENCE VOLTAGE (V)
0.799
0.803
0.802
0
50
75
38145 G14
0.798
0.801
0.800
25
100
125
TEMPERATURE (°C)
–50
0.5
PEAK SOURCE CURRENT (A)
1.0
1.5
–25 0 25 50
38145 G15
75 100 125
V
BOOST
= V
INTVCC
= 5V
TEMPERATURE (°C)
–50
R
DS(ON)
(Ω)
1.25
1.50
1.75
25 75
38145 G16
1.00
0.75
–25 0
50 100 125
0.50
0.25
V
BOOST
= V
INTVCC
= 5V
DRV
CC
/BOOST VOLTAGE (V)
4 5 7 9 11 13
PEAK SOURCE CURRENT (A)
3.0
2.5
2.0
1.5
1.0
0.5
0
6 8 10 12
38145 G17
14
DRV
CC
/BOOST VOLTAGE (V)
4
R
DS(ON)
(Ω)
0.6
0.8
0.9
1.0
1.1
6
8
91413
38145 G21
0.7
57
10
11
12
TEMPERATURE (°C)
–50
4
5
7
25 75
38145 G19
3
2
–25 0
50 100 125
1
0
6
RESISTANCE (Ω)
TEMPERATURE (°C)
–50 –25
0
INTV
CC
CURRENT (mA)
2
5
0
50
75
38145 G20
1
4
3
25
100
125
INTV
CC
= 5V
TEMPERATURE (°C)
–50
INTV
CC
CURRENT (µA)
25
38145 G21
200
100
–25 0 50
0
400
300
75 100 125
INTV
CC
= 5V

LTC3814IFE-5#PBF

Mfr. #:
Manufacturer:
Analog Devices / Linear Technology
Description:
Switching Voltage Regulators 60V C Mode Sync Boost Cntr
Lifecycle:
New from this manufacturer.
Delivery:
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