LTC3858
4
3858fc
ELECTRICAL CHARACTERISTICS
The l denotes the specifi cations which apply over the full operating
junction temperature range, otherwise specifi cations are at T
A
= 25°C (Note 2). V
IN
= 12V, V
RUN1,2
= 5V, EXTV
CC
= 0V unless
otherwise noted.
SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS
BG/TG t
1D
Bottom Gate Off to Top Gate On Delay
Top Switch-On Delay Time
C
LOAD
= 3300pF Each Driver 30 ns
t
ON(MIN)
Minimum On-Time (Note 7) 95 ns
INTV
CC
Linear Regulator
V
INTVCCVIN
Internal V
CC
Voltage 6V < V
IN
< 38V, V
EXTVCC
= 0V 4.85 5.1 5.35 V
V
LDOVIN
INTV
CC
Load Regulation I
CC
= 0mA to 50mA, V
EXTVCC
= 0V 0.7 1.1 %
V
INTVCCEXT
Internal V
CC
Voltage 6V < V
EXTVCC
< 13V 4.85 5.1 5.35 V
V
LDOEXT
INTV
CC
Load Regulation I
CC
= 0mA to 50mA, V
EXTVCC
= 8.5V 0.6 1.1 %
V
EXTVCC
EXTV
CC
Switchover Voltage EXTV
CC
Ramping Positive 4.5 4.7 4.9 V
V
LDOHYS
EXTV
CC
Hysteresis Voltage 250 mV
Oscillator and Phase-Locked Loop
f
25k
Programmable Frequency R
FREQ
= 25k, PLLIN/MODE = DC Voltage 105 kHz
f
65k
Programmable Frequency R
FREQ
= 65k, PLLIN/MODE = DC Voltage 375 440 505 kHz
f
105k
Programmable Frequency R
FREQ
= 105k, PLLIN/MODE = DC Voltage 835 kHz
f
LOW
Low Fixed Frequency V
FREQ
= 0V, PLLIN/MODE = DC Voltage 320 350 380 kHz
f
HIGH
High Fixed Frequency V
FREQ
= INTV
CC
, PLLIN/MODE = DC Voltage 485 535 585 kHz
f
SYNC
Synchronizable Frequency PLLIN/MODE = External Clock
l
75 850 kHz
PGOOD1 and PGOOD2 Outputs
V
PGL
PGOOD Voltage Low I
PGOOD
= 2mA 0.2 0.4 V
I
PGOOD
PGOOD Leakage Current V
PGOOD
= 5V ±1 µA
V
PG
PGOOD Trip Level V
FB
with Respect to Set Regulated Voltage
V
FB
Ramping Negative
Hysteresis
–13 –10
2.5
–7 %
%
V
FB
with Respect to Set Regulated Voltage
V
FB
Ramping Positive
Hysteresis
710
2.5
13 %
%
t
PG
Delay for Reporting a Fault (PGOOD Low) 25 µs
Note 1: Stresses beyond those listed under Absolute Maximum Ratings
may cause permanent damage to the device. Exposure to any Absolute
Maximum Ratings for extended periods may affect device reliability and
lifetime.
Note 2: The LTC3858 is tested under pulsed conditions such that T
J
≈ T
A
.
The LTC3858E 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 LTC3858I is guaranteed over the
full –40°C to 125°C operating junction temperature range. Note that
the maximum ambient temperature is determined by specifi c operating
conditions in conjunction with board layout, the rated package thermal
resistance and other environmental factors.
Note 3: T
J
is calculated from the ambient temperature T
A
and power
dissipation P
D
according to the following formula:
T
J
= T
A
+ (P
D
• 34°C/W)
Note 4: The LTC3858 is tested in a feedback loop that servos V
ITH1,2
to a
specifi ed voltage and measures the resultant V
FB1,2
. The specifi cation at
85°C is not tested in production. This specifi cation is assured by design,
characterization and correlation to production testing at 125°C.
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 ≥ of 40% I
MAX
(See Minimum On-Time
Considerations in the Applications Information section).
LTC3858
5
3858fc
TYPICAL PERFORMANCE CHARACTERISTICS
Effi ciency and Power Loss
vs Output Current
Effi ciency vs Output Current
Load Step (Burst Mode Operation)
Load Step
(Forced Continuous Mode)
Load Step (Pulse-Skipping Mode)
Inductor Current at Light Load Soft-Start
Effi ciency vs Input Voltage
OUTPUT CURRENT (A)
0.0001
40
EFFICIENCY (%)
50
60
70
80
0.001 0.01 0.1 1 10
3858 G02
30
20
10
0
90
100
V
IN
= 5V
V
IN
= 12V
V
OUT
= 3.3V
FIGURE 12 CIRCUIT
INPUT VOLTAGE (V)
0
EFFICIENCY (%)
90
92
94
40
3858 G03
88
86
84
80
10
20
30
5
15
25
35
82
98
96
FIGURE 12 CIRCUIT
V
OUT
= 3.3V
I
OUT
= 4A
OUTPUT CURRENT (A)
0.0001
40
EFFICIENCY (%)
POWER LOSS (mW)
50
60
70
80
0.001 0.01 0.1 1 10
3858 G01
30
20
10
0
90
100
10
100
1000
1
0.1
10000
FIGURE 12 CIRCUIT
V
IN
= 12V
V
OUT
= 3.3V
Burst Mode
OPERATION
PULSE-
SKIPPING
MODE
FORCED
CONTINUOUS
MODE
V
OUT
100mV/DIV
AC-
COUPLED
I
L
2A/DIV
20µs/DIV
3858 G04
V
OUT
= 3.3V
FIGURE 12 CIRCUIT
V
OUT
100mV/DIV
AC-
COUPLED
I
L
2A/DIV
20µs/DIV
3858 G05
V
OUT
= 3.3V
FIGURE 12 CIRCUIT
V
OUT
100mV/DIV
AC-
COUPLED
I
L
2A/DIV
20µs/DIV
3858 G06
V
OUT
= 3.3V
FIGURE 12 CIRCUIT
Burst Mode
OPERATION
2A/DIV
FORCED
CONTINUOUS
MODE
PULSE-
SKIPPING
MODE
2µs/DIV
3858 G07
V
OUT
= 3.3V
I
LOAD
= 200µA
FIGURE 12 CIRCUIT
V
OUT2
2V/DIV
V
OUT1
2V/DIV
20ms/DIV
3858 G08
FIGURE 12 CIRCUIT
LTC3858
6
3858fc
TYPICAL PERFORMANCE CHARACTERISTICS
Total Input Supply Current
vs Input Voltage
EXTV
CC
Switchover and INTV
CC
Voltages vs Temperature
INTV
CC
Line Regulation
Maximum Current Sense Voltage
vs I
TH
Voltage
SENSE
Pin Input Bias Current
Maximum Current Sense
Threshold vs Duty Cycle
Foldback Current Limit Quiescent Current vs Temperature
Shutdown Current vs Temperature
INPUT VOLTAGE (V)
5
SUPPLY CURRENT (µA)
350
20
3858 G10
200
100
10 15 25
50
0
400
300
250
150
30 35 40
300µA LOAD
FIGURE 12 CIRCUIT
V
OUT
= 3.3V
ONE CHANNEL ON
NO LOAD
TEMPERATURE (°C)
–45
EXTV
CC
AND INTV
CC
VOLTAGE (V)
5.4
30
3858 G11
4.8
4.4
–20 5 55
4.2
4.0
5.6
5.2
5.0
4.6
80 105 130
INTV
CC
EXTV
CC
RISING
EXTV
CC
FALLING
INPUT VOLTAGE (V)
0
5.0
INTV
CC
VOLTAGE (V)
5.1
5.1
5.2
5.2
5101520
3858 G12
25 30 35 40
V
SENSE
COMMON MODE VOLTAGE (V)
0
–600
SENSE
CURRENT (µA)
–500
–550
–450
–400
–300
–350
–200
–250
0
5
10 15 20
3858 G14
25
–50
–100
–150
FEEDBACK VOLTAGE (V)
0
0
MAXIMUM CURRENT SENSE VOLTAGE (mV)
10
30
40
50
0.6
90
3858 G16
20
0.3
0.1
0.7
0.4
0.2
0.8
0.5 0.9
60
70
80
I
LIM
= INTV
CC
I
LIM
= FLOAT
I
LIM
= GND
I
TH
PIN VOLTAGE
0
CURRENT SENSE THRESHOLD (mV)
40
60
80
0.6 1.0
3858 G13
20
0
0.2 0.4
0.8 1.2 1.4
–20
–40
PULSE SKIPPING
FORCED CONTINUOUS
Burst Mode OPERATION
(FALLING)
Burst Mode OPERATION
(RISING)
I
LIM
= GND
I
LIM
= FLOAT
I
LIM
= INTV
CC
5% DUTY CYCLE
DUTY CYCLE (%)
0
MAXIMUM CURRENT SENSE VOLTAGE (mV)
40
60
80
3858 G15
20
0
20
40
50
100
80
60
10
30
90
70
I
LIM
= INTV
CC
I
LIM
= FLOAT
I
LIM
= GND
TEMPERATURE (°C)
–45
110
QUIESCENT CURRENT (µA)
190
–20
30
55 130
3858 G17
230
210
150
130
170
5
80
105
PLLIN/MODE = 0
V
IN
= 12V
V
OUT
= 3.3V
ONE CHANNEL ON
TEMPERATURE (°C)
–45
SHUTDOWN CURRENT (µA)
8
9
10
30 80
3858 G18
7
6
–20 5
55 105 130
5
4

LTC3858IUH#TRPBF

Mfr. #:
Manufacturer:
Analog Devices / Linear Technology
Description:
Switching Voltage Regulators Low IQ, Dual, 2-Phase Synchronous Step-Down Controller
Lifecycle:
New from this manufacturer.
Delivery:
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