LTM4602
4
4602fa
Effi ciency vs Load Current
w
ith 5V
IN
(FCB = 0)
Effi ciency vs Load Current
with 12V
IN
(
FCB = 0
)
Effi ciency vs Load Current
with 20V
IN
(FCB = 0)
1.2V Transient Response 1.5V Transient Response
1.8V Transient Res
p
onse 2.5V Transient Res
p
onse 3.3V Transient Res
p
onse
(See Figure 21 for all curves)
V
OUT
50mV/DIV
1.2V AT 3A/μs LOAD STEP
C
OUT
= 1 × 22μF, 6.3V CERAMICS
330μF, 4V SANYO POSCAP
I
OUT
2A/DIV
20μs/DIV
4602 G05
1.5V AT 3A/μs LOAD STEP
C
OUT
= 1 × 22μF, 6.3V CERAMICS
330μF, 4V SANYO POSCAP
20μs/DIV
4602 G06
V
OUT
50mV/DIV
I
OUT
2A/DIV
1.8V AT 3A/μs LOAD STEP
C
OUT
= 1 × 22μF, 6.3V CERAMICS
330μF, 4V SANYO POSCAP
20μs/DIV
4602 G07
V
OUT
50mV/DIV
I
OUT
2A/DIV
2.5V AT 3A/μs LOAD STEP
C
OUT
= 1 × 22μF, 6.3V CERAMICS
330μF, 4V SANYO POSCAP
20μs/DIV
4602 G08
V
OUT
50mV/DIV
I
OUT
2A/DIV
3.3V AT 3A/μs LOAD STEP
C
OUT
= 1 × 22μF, 6.3V CERAMICS
330μF, 4V SANYO POSCAP
20μs/DIV
4602 G09
V
OUT
50mV/DIV
I
OUT
2A/DIV
LOAD CURRENT (A)
0
EFFICIENCY (%)
30
40
50
100
70
2
4
4602 G01
80
90
60
6
8
0.8V
OUT
1.2V
OUT
1.5V
OUT
1.8V
OUT
2.5V
OUT
3.3V
OUT
*
*FOR 5V TO 3.3V CONVERSION,
SEE FREQUENCY ADJUSTMENT
IN APPLICATIONS INFORMATION
LOAD CURRENT (A)
0
30
EFFICIENCY (%)
40
50
100
70
2
4
4602 G02
80
90
60
6
8
0.8V
OUT
1.2V
OUT
1.5V
OUT
1.8V
OUT
2.5V
OUT
3.3V
OUT
3.3V
OUT
(950kHz)*
*950kHz INSTEAD OF 1.3MHz
INCREASES 3.3V EFFICIENCY 2%
LOAD CURRENT (A)
0
EFFICIENCY (%)
50
60
70
8
4602 G03
40
30
2
4
6
100
90
80
1.2V
OUT
1.5V
OUT
1.8V
OUT
2.5V
OUT
3.3V
OUT
Li
g
ht
L
oa
d
Effi
c
i
ency vs
Load Current with 12V
IN
(FCB > 0.7V, <5V)
LOAD CURRENT (A)
0
EFFICIENCY (%)
60
80
100
0.8
4602 G04
40
50
70
90
30
0.20.1
0.40.3
0.6 0.7 0.9
0.5
1
1.2V
OUT
1.5V
OUT
1.8V
OUT
2.5V
OUT
3.3V
OUT
TYPICAL PERFORMANCE CHARACTERISTICS
5
4602fa
LTM4602
Start-Up, No Load, I
OUT
= 0A
Start-Up, I
OUT
= 6A
(
Resistive Load
)
Short-Circuit Protection,
I
OUT
= 0A
Short-Circuit Protection,
I
OUT
= 6A
V
IN
to V
OUT
Step-Down Ratio
(See Figure 21 for all curves)
V
IN
(V)
0
5.5
5.0
4.5
4.0
3.5
3.0
2.5
2.0
1.5
1.0
0.5
0
515
4602 G14
10 20
V
OUT
(V)
5V
3.3V
2.5V
1.8V
1.5V
1.2V
f
ADJ
= OPEN
SEE FREQUENCY ADJUSTMENT DISCUSSION
FOR 12V
IN
TO 5V
OUT
AND 5V
IN
TO 3.3V
OUT
CONVERSION
0.6V
V
IN
= 12V
V
OUT
= 1.5V
C
OUT
= 1 × 22μF, 6.3V X5R
330μF, 4V SANYO POSCAP
NO EXTERNAL SOFT-START CAPACITOR
200μs/DIV
4602 G10
V
OUT
0.5V/DIV
I
IN
0.5A/DIV
V
IN
= 12V
V
OUT
= 1.5V
C
OUT
= 1 × 22μF, 6.3V X5R
330μF, 4V SANYO POSCAP
NO EXTERNAL SOFT-START CAPACITOR
500μs/DIV
4602 G11
V
OUT
0.5V/DIV
I
IN
0.5A/DIV
V
IN
= 12V
V
OUT
= 1.5V
C
OUT
= 1 × 22μF, 6.3V X5R
330μF, 4V SANYO POSCAP
NO EXTERNAL SOFT-START CAPACITOR
20μs/DIV
4602 G12
V
OUT
0.5V/DIV
I
IN
0.5A/DIV
V
IN
= 12V
V
OUT
= 1.5V
C
OUT
= 1 × 22μF, 6.3V X5R
330μF, 4V SANYO POSCAP
NO EXTERNAL SOFT-START CAPACITOR
20μs/DIV
4602 G13
V
OUT
0.5V/DIV
I
IN
0.5A/DIV
TYPICAL PERFORMANCE CHARACTERISTICS
LTM4602
6
4602fa
V
IN
(Bank 1): Power Input Pins. Apply input voltage be-
tween these pins and PGND pins. Recommend placing
input decoupling capacitance directly between V
IN
pins
and PGND pins.
f
ADJ
(Pin A15): A 110k resistor from V
IN
to this pin sets
the one-shot timer current, thereby setting the switching
frequency. The LTM4602 switching frequency is typically
850kHz. An external resistor to ground can be selected to
reduce the one-shot timer current, thus lower the switching
frequency to accommodate a higher duty cycle step down
requirement. See the applications section.
SV
IN
(Pin A17): Supply Pin for Internal PWM Controller. Leave
this pin open or add additional decoupling capacitance.
EXTV
CC
(Pin A19): External 5V supply pin for controller. If
left open or grounded, the internal 5V linear regulator will
power the controller and MOSFET drivers. For high input
voltage applications, connecting this pin to an external
5V will reduce the power loss in the power module. The
EXTV
CC
voltage should never be higher than V
IN
.
V
OSET
(Pin A21): The Negative Input of The Error Amplifi er.
Internally, this pin is connected to V
OUT
with a 100k precision
resistor. Different output voltages can be programmed with
additional resistors between the V
OSET
and SGND pins.
COMP (Pin B23): Current Control Threshold and Error
Amplifi er Compensation Point. The current comparator
threshold increases with this control voltage. The voltage
ranges from 0V to 2.4V with 0.8V corresponding to zero
sense voltage (zero current).
SGND (Pin D23): Signal Ground Pin. All small-signal
components should connect to this ground, which in turn
connects to PGND at one point.
RUN/SS (Pin F23): Run and Soft-Start Control. Forcing
this pin below 0.8V will shut down the power supply.
Inside the power module, there is a 1000pF capacitor
which provides approximately 0.7ms soft-start time with
200μF output capacitance. Additional soft-start time can
be achieved by adding additional capacitance between the
RUN/SS and SGND pins. The internal short-circuit latchoff
can be disabled by adding a resistor between this pin and
the V
IN
pin. This pullup resistor must supply a minimum
5μA pull up current.
FCB (Pin G23): Forced Continuous Input. Grounding this
pin enables forced continuous mode operation regardless
of load conditions. Tying this pin above 0.63V enables
discontinuous conduction mode to achieve high effi ciency
operation at light loads. There is an internal 4.75k resistor
between the FCB and SGND pins.
PGOOD (Pin J23): Output Voltage Power Good Indicator.
When the output voltage is within 10% of the nominal
voltage, the PGOOD is open drain output. Otherwise, this
pin is pulled to ground.
PGND (Bank 2): Power ground pins for both input and
output returns.
V
OUT
(Bank 3): Power Output Pins. Apply output load
between these pins and PGND pins. Recommend placing
High Frequency output decoupling capacitance directly
between these pins and PGND pins.
(See Package Description for Pin Assignment)
E
C
A
RUN/SS
FCB
PGOOD
V
IN
BANK 1
PGND
BANK 2
V
OUT
BANK 3
COMP
SGND
EXTV
CC
V
OSET
f
ADJ
SV
IN
TOP VIEW
35
24
79
68
11 13
10 12
15 17
14 16
19 21
18 20 22
94
95 96 97 98
99 100 101 102 103
104
93
82
71
60
49
24
23
22
21
20
1918171676543
2
40
51
62
73
84 85 86 87 88 89 90 91
74 75 76 77 78 79 80
63 64 65 66 67 68 69
52 53 54 55 56 57 58
42 43 44 45 46 47
92
81
70
59
48
11109
13 14 15
26 27 28 29 30 31
33 34 35 36 37 38
41
1
8
12
25
32
39
50
61
72
83
1 23
B
D
F
G
H
J
L
M
N
P
R
T
K
4602 PN01
PIN FUNCTIONS

LTM4602IV#PBF

Mfr. #:
Manufacturer:
Analog Devices / Linear Technology
Description:
Switching Voltage Regulators 20V, 6A Step-down Module Regulator
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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