LTC3707-SYNC
4
3707sfa
TYPICAL PERFORMANCE CHARACTERISTICS
OUTPUT CURRENT (A)
0.001
0
EFFICIENCY (%)
10
30
40
50
100
70
0.01
0.1
1
3707 G01
20
80
90
60
10
FORCED
CONTINUOUS
MODE
CONSTANT
FREQUENCY
(BURST DISABLE)
Burst Mode
OPERATION
V
IN
= 15V
V
OUT
= 5V
OUTPUT CURRENT (A)
0.001
EFFICIENCY (%)
70
80
10
3707 G02
60
50
0.01
0.1
1
100
90
V
IN
= 10V
V
IN
= 15V
V
IN
= 7V
V
IN
= 20V
V
OUT
= 5V
INPUT VOLTAGE (V)
5
EFFICIENCY (%)
70
80
3707 G03
60
50
15
25
35
100
V
OUT
= 5V
I
OUT
= 3A
90
Effi ciency vs Output Current
and Mode (Figure 13)
Effi ciency vs Output Current
(Figure 13)
Effi ciency vs Input Voltage
(Figure 13)
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 LTC3707E-SYNC is guaranteed to meet performance
specifi cation from 0°C to 85°C. Specifi cations over the –40°C to 85°C
operating temperature range are assured by design, characterization
and correlation with statistical process controls. The LTC3707I-SYNC
is guaranteed to meet performance specifi cations over the full –40°C
to 85°C operating temperature range.
Note 3: T
J
is calculated from the ambient temperature T
A
and power
dissipation P
D
according to the following formulas:
LTC3707-SYNC: T
J
= T
A
+ (P
D
• 95 °C/W)
Note 4: The IC is tested in a feedback loop that servos V
ITH1, 2
to a
specifi ed voltage and measures the resultant V
OSENSE1, 2
.
Note 5: Dynamic supply current is higher due to the gate charge being
delivered at the switching frequency. See Applications Information.
Note 6: Rise and fall times are measured using 10% and 90% levels.
Delay times are measured using 50% levels.
Note 7: The minimum on-time condition is specifi ed for an inductor
peak-to-peak ripple current ≥40% of I
MAX
(see minimum on-time
considerations in the Applications Information section).
ELECTRICAL CHARACTERISTICS
SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS
I
PLLFLTR
Phase Detector Output Current
Sinking Capability
Sourcing Capability
f
PLLIN
< f
OSC
f
PLLIN
> f
OSC
–15
15
μA
μA
3.3V Linear Regulator
V
3.3OUT
3.3V Regulator Output Voltage No Load
l
3.20 3.35 3.45 V
V
3.3IL
3.3V Regulator Load Regulation I
3.3
= 0 to 10mA 0.5 2 %
V
3.3VL
3.3V Regulator Line Regulation 6V < V
IN
< 30V 0.05 0.2 %
PGOOD Output
V
PGL
PGOOD Voltage Low I
PGOOD
= 2mA 0.1 0.3 V
I
PGOOD
PGOOD Leakage Current V
PGOOD
= 5V
±1
μA
V
PG
PGOOD Trip Level, Either Controller V
OSENSE
with Respect to Set Output Voltage
V
OSENSE
Ramping Negative
V
OSENSE
Ramping Positive
–6
6
–7.5
7.5
–9.5
9.5
%
%
The l denotes the specifi cations which apply over the full operating
temperature range, otherwise specifi cations are at T
A
= 25°C. V
IN
= 15V, V
RUN/SS1, 2
= 5V unless otherwise noted.
LTC3707-SYNC
5
3707sfa
INPUT VOLTAGE (V)
05
0
SUPPLY CURRENT (μA)
400
1000
10
20
25
3707 G04
200
800
600
15
30
BOTH
CONTROLLERS ON
SHUTDOWN
CURRENT (mA)
0
EXTV
CC
VOLTAGE DROP (mV)
150
200
40
3707 G05
100
50
0
10
20
30
TEMPERATURE (°C)
–50
INTV
CC
AND EXTV
CC
SWITCH VOLTAGE (V)
4.95
5.00
5.05
25 75
3707 G06
4.90
4.85
–25 0
50 100 125
4.80
4.70
4.75
INTV
CC
VOLTAGE
EXTV
CC
SWITCHOVER THRESHOLD
TYPICAL PERFORMANCE CHARACTERISTICS
INPUT VOLTAGE (V)
0
4.8
4.9
5.1
15 25
3707 G07
4.7
4.6
510
20 30
4.5
4.4
5.0
INTV
CC
VOLTAGE (V)
I
LOAD
= 1mA
DUTY FACTOR (%)
0
0
V
SENSE
(mV)
25
50
75
20 40 60 80
3707 G08
100
PERCENT ON NOMINAL OUTPUT VOLTAGE (%)
0
V
SENSE
(mV)
40
50
60
100
3707 G09
30
20
0
25
50
75
10
80
70
V
RUN/SS
(V)
0
0
V
SENSE
(mV)
20
40
60
80
1234
3707 G10
56
V
SENSE(CM)
= 1.6V
COMMON MODE VOLTAGE (V)
0
V
SENSE
(mV)
72
76
80
4
3707 G11
68
64
60
1
2
3
5
V
ITH
(V)
0
V
SENSE
(mV)
30
50
70
90
2
3707 G12
10
–10
20
40
60
80
0
–20
–30
0.5
1
1.5
2.5
Maximum Current Sense
Threshold vs V
RUN/SS
(Soft-Start)
Maximum Current Sense Threshold
vs Sense Common Mode Voltage
Current Sense Threshold
vs I
TH
Voltage
Internal 5V LDO Line Regulation
Maximum Current Sense Threshold
vs Duty Factor
Maximum Current Sense Threshold
vs Percent of Nominal Output
Voltage (Foldback)
Supply Current vs Input Voltage
and Mode (Figure 13) EXTV
CC
Voltage Drop
INTV
CC
and EXTV
CC
Switch
Voltage vs Temperature
LTC3707-SYNC
6
3707sfa
TYPICAL PERFORMANCE CHARACTERISTICS
TEMPERATURE (°C)
–50 –25
70
V
SENSE
(mV)
74
80
0
50
75
3707 G17
72
78
76
25
100
125
OUTPUT CURRENT (A)
0
0
DROPOUT VOLTAGE (V)
1
2
3
4
0.5 1.0 1.5 2.0
3707 G18
2.5 3.0 3.5 4.0
R
SENSE
= 0.015Ω
R
SENSE
= 0.010Ω
V
OUT
= 5V
TEMPERATURE (°C)
–50 –25
0
RUN/SS CURRENT (μA)
0.2
0.6
0.8
1.0
75 10050
1.8
3707 G25
0.4
0 25 125
1.2
1.4
1.6
V
IN
= 15V
V
OUT
= 5V
5ms/DIV
3707 G19
V
RUN/SS
5V/DIV
V
OUT
5V/DIV
I
OUT
2A/DIV
V
IN
= 15V
V
OUT
= 5V
LOAD STEP = 0A TO 3A
Burst Mode OPERATION
20μs/DIV
3707 G20
V
OUT
200mV/DIV
I
OUT
2A/DIV
V
IN
= 15V
V
OUT
= 5V
LOAD STEP = 0A TO 3A
CONTINUOUS MODE
20μs/DIV
3707 G21
V
OUT
200mV/DIV
I
OUT
2A/DIV
Soft-Start Up (Figure 13) Load Step (Figure 13) Load Step (Figure 13)
Maximum Current Sense
Threshold vs Temperature
Dropout Voltage vs Output Current
(Figure 13) RUN/SS Current vs Temperature
LOAD CURRENT (A)
0
NORMALIZED V
OUT
(%)
–0.2
–0.1
4
3707 G13
–0.3
–0.4
1
2
3
5
0.0
FCB = 0V
V
IN
= 15V
FIGURE 1
V
RUN/SS
(V)
0
0
V
ITH
(V)
0.5
1.0
1.5
2.0
2.5
1
234
3707 G14
56
V
OSENSE
= 0.7V
V
SENSE
COMMON MODE VOLTAGE (V)
0
I
SENSE
(μA)
0
3707 G15
–50
–100
24
50
100
6
Load Regulation V
ITH
vs V
RUN/SS
SENSE Pins Total Source Current

LTC3707IGN-SYNC#TRPBF

Mfr. #:
Manufacturer:
Analog Devices / Linear Technology
Description:
Switching Voltage Regulators High Efficiency, 2-Phase Synchronous Step-Down Switching Regulator
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union