The SLIN-06E2A power modules are non-isolated dc-dc converters
that can deliver up to 6 A of output current. These modules operate
over a wide input voltage range (VIN = 4.5 – 14 Vdc) and provide a
precisely regulated output voltage from 0.59 to 5.5 Vdc,
programmable via an external resistor.
Features include remote on/off, adjustable output voltage, over
current and over temperature protection. A new feature, the Tunable
LoopTM, allows the user to optimize the dynamic response of the
converter to match the load with reduced amount of output
capacitance leading to savings on cost and PWB area.
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4.5 - 14 VDC Input
0.59 - 5.5 VDC @ 6 A Output
Wide Input Voltage Range
Fixed Switching Frequency
Power Good Signal
Remote Sense
Remote On/Off
Ability to Sink and Source Current
Cost Efficient Open Frame Design
Over Temperature Protection
Output Over Current Protection
Tunable LoopTM (a Registered Trademark of Lineage Power Systems) to
Optimize Dynamic Output Voltage Response
Certificated to UL/CSA 62368-1
Class II, Category 2, Non-Isolated DC-DC Converter (refer to IPC-9592B)
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Distributed Power Architectures
Intermediate Bus Voltage Applications
Telecommunications Equipment
Servers and Storage Applications
Networking Equipment
Industrial Equipment
SLIN-06E2A
2
MODEL
NUMBER
OUTPUT
VOLTAGE
INPUT
VOLTAGE
MAX. OUTPUT
CURRENT
0.59 - 5.5 VDC
4.5 - 14 VDC
6A
MAX. OUTPUT
POWER
TYPICAL EFFICIENCY
SLIN-06E2A0G
SLIN-06E2A0R
SLIN-06E2ALG
33 W
91%
SLIN-06E2ALR
S
LIN
Mounting Type
Series
Code
Surface Mount
-
06
E
2A
Output
Current
Input Voltage
Range
Sequencing or
not
SLIN
Series
6A
PARAMETER
4.5 - 14 V
without
Sequencing
DESCRIPTION
x
y
Active Logic
Package Type
L – Active Low
G – Tray Package
0 – Active High
R – Tape and Reel Package
MIN
TYP
MAX
Continuous non-operating Input Voltage
-0.3
-
15
V
Ambient Temperature
-40
-
85
C
Storage Temperature
-55
-
125
C
-
-
2000
m
Altitude
UNITS
NOTE: Stresses in excess of the absolute maximum ratings can cause permanent damage to the device. These are absolute stress ratings only,
functional operation of the device is not implied at these or any other conditions in excess of those given in the operations sections of the data
sheet. Exposure to absolute maximum ratings for extended periods can adversely affect the device reliability.
All specifications are typical at 25°C unless otherwise stated.
PARAMETER
DESCRIPTION
MIN
TYP
4.5
-
14
V
-
16
55
6.5
-
A
mA
mA
-
1.2
-
mA
-
86
-
mA
I t Inrush Current Transient
-
-
1
A2s
Input Ripple Rejection (120 Hz)
-
50
-
dB
Turn-on Voltage Threshold
-
-
4.3
V
Turn-off Voltage Threshold
3.4
-
-
V
Hysteresis
0.4
-
-
V
Operating Input Voltage
Input Current (full load)
Input Current (no load)
Test at 9 V input voltage
Vo = 0.6 V
Vo = 3.3 V
Remote Off Input Current
Input Reflected Ripple Current (pk-pk)
VIN = 4.5 to 14 V
VIN = 12.0 Vdc, module disabled
5 Hz to 20 MHz, 1 uH source impedance; VIN =
0 to 14 V, Io = Iomax; See Test Configurations
2
MAX
UNIT
CAUTION: This converter is not internally fused. An input line fuse must be used in application.
This power module can be used in a wide variety of applications, ranging from simple standalone operation to an integrated part of sophisticated
power architecture. To preserve maximum flexibility, internal fusing is not included; however, to achieve maximum safety and system protection,
always use an input line fuse. The safety agencies require a fast-acting fuse with a maximum rating of 6A. Based on the information provided in
this data sheet on inrush energy and maximum dc input current, the same type of fuse with a lower rating can be used. Refer to the fuse
manufacturer’s data sheet for further information.
Note: Unless otherwise indicated, specifications apply over entire operating input voltage range, resistive load, and temperature conditions.
tech.support@psbel.com
SLIN-06E2A
3
All specifications are typical at nominal input, full load at 25°C unless otherwise stated.
PARAMETER
DESCRIPTION
with 0.5% tolerance for external resistor
used to set output voltage
Over entire operating input voltage range,
resistive load, and temperature conditions
until end of life
Output Voltage Set Point
Output Voltage
Adjustment Range
Remote Sense Range
MIN
TYP
MAX
UNIT
-1.5
-
1.5
%Vo,set
-2.5
-
2.5
%Vo,set
0.59
-
5.5
V
-
-
0.5
V
Load Regulation
VO ≥ 2.5 V
VO < 2.5 V
IO = IO, min to IO, max
-
-
10
5
mV
mV
Line Regulation
VO ≥ 2.5 V
VO < 2.5 V
VIN = VIN, min to VIN, max
-
-
0.4
10
%Vo,set
mV
-
-
0.4
%Vo,set
-
50
100
mV
Ripple and Noise (RMS)
5 Hz to 20 MHz BW, VIN = VIN, nom and
IO = IO, min to IO, max Co = 0.1 µF // 10 µF
ceramic capacitors)
-
20
38
mV
Output Current Range
In either sink or source mode
0
-
6
A
Output DC Current Limit
Hiccup Mode
-
-
200
%Io,max
Output Short-Circuit Current
Vo ≤ 250 mV, Hiccup Mode
-
170
-
mA
Without the Tunable LoopTM
With the Tunable LoopTM
With the Tunable LoopTM
Case 1: On/Off input is enabled and then
input power is applied (delay from instant at
which VIN = VIN, min until Vo = 10% of Vo, set)
0
0
0
-
47
1000
3000
µF
µF
µF
-
2
-
ms
-
2
-
ms
-
4
-
ms
-
-
3
%Vo,set
Temperature Regulation
Ripple and Noise (pk-pk)
Output Capacitance
Turn-On Delay Time
Output Voltage Rise Time
Output Voltage Overshoot
ESR ≥ 1 mΩ
ESR ≥ 0.15 mΩ
ESR ≥ 10 mΩ
Case 2: Input power is applied for at least
one second and then the On/Off input is
enabled (delay from instant at which Von/Off
is enabled until Vo =10% of Vo, set)
Time for Vo to rise from 10% of Vo, set to
90% of Vo, set
Vin = Vin, min to Vin, max, Io = Io, min to
Io, max, With or without maximum external
capacitance
Notes:
1.
Some output voltages may not be possible depending on the input voltage.
2.
External capacitors may require using the new Tunable LoopTM feature to ensure that the module is stable as well as getting the
best transient response (See the Tunable LoopTM section for details).
3.
Unless otherwise indicated, specifications apply over entire operating input voltage range, resistive load, and temperature
conditions.
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Europe, Middle East
+353 61 49 8941
North America
+1 866 513 2839
© 2021 Bel Power Solutions & Protection
BCD.20127_AK
SLIN-06E2A
4
PARAMETER
Efficiency
DESCRIPTION
MIN
TYP
Vo = 0.6 V
69.3
Vo = 1.2 V
80.7
Vo = 1.8 V
Vo = 2.5 V
Vin = 12 VDC, Ta = 25°C
Io = Io, max , Vo = Vo,set
-
Vo = 3.3 V
85.3
88.1
MAX
UNIT
-
%
90.8
Vo = 5.0 V
93.6
Switching Frequency
-
600
-
kHz
Over Temperature Protection
-
140
-
C
PGOOD (Power Good)
Output Voltage Limit for PGOOD
Signal Interface Open Drain, Vsupply 5 Vdc
90
-
110
%Vo,set
Pulldown resistance of PGOOD pin
-
7
50
Ω
Weight
-
1.95
-
Dimensions (L × W × H)
g
0.48 x 0.48 x 0.285
inch
12.19 x 12.19 x 7.25
mm
Note: Unless otherwise indicated, specifications apply over entire operating input voltage range, resistive load, and temperature conditions.
tech.support@psbel.com
5
85
95
80
90
75
85
EFFICIENCY, (%)
EFFICIENCY, (%)
SLIN-06E2A
Vin=4.5V
70
Vin=12V
65
Vin=14V
80
Vin=4.5V
Vin=12V
75
Vin=14V
70
60
0
1
2
3
4
5
0
6
1
OUTPUT CURRENT, IO (A)
95
100
90
95
EFFICIENCY, (%)
EFFICIENCY, (%))
4
5
6
Figure 2. Vo = 1.2 V
85
Vin=4.5V
Vin=12V
Vin=14V
75
70
90
85
Vin=4.5V
Vin=12V
80
Vin=14V
75
70
0
1
2
3
4
5
6
0
1
OUTPUT CURRENT, IO (A)
3
4
5
6
Figure 4. Vo = 2.5 V
100
95
95
90
90
EFFICIENCY, (%)
100
Vin=4.5V
85
2
OUTPUT CURRENT, IO (A)
Figure 3. Vo = 1.8 V
EFFICIENCY, (%))
3
OUTPUT CURRENT, IO (A)
Figure 1. Vo = 0.6 V
80
2
Vin=12V
Vin=14V
80
75
Vin=8V
85
Vin=12V
Vin=14V
80
75
70
70
0
1
2
3
4
5
6
0
OUTPUT CURRENT, IO (A)
1
2
3
4
5
6
OUTPUT CURRENT, IO (A)
Figure 5. Vo = 3.3 V
Figure 6. Vo = 5.0 V
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Europe, Middle East
+353 61 49 8941
North America
+1 866 513 2839
© 2021 Bel Power Solutions & Protection
BCD.20127_AK
SLIN-06E2A
7
7
6
6
OUTPUT CURRENT, Io (A)
OUTPUT CURRENT, Io (A)
6
5
2m/s
(400LFM)
4
1m/s
(200LFM)
Standard Part
(85°C)
3
0.5m/s
(100LFM)
Ruggedized (D)
Part (105°
C)
NC
2
5
2m/s
(400LFM)
4
3
65
75
85
95
105
55
65
O
NC
95
Figure 7. Vo = 0.6 V
Figure 8. Vo = 1.2 V
7
6
6
5
2m/s
(400LFM)
1m/s
(200LFM)
Standard Part
(85°C)
3
85
AMBIENT TEMPERATURE, TA OC
7
4
75
AMBIENT TEMPERATURE, TA C
OUTPUT CURRENT, Io (A)
OUTPUT CURRENT, Io (A)
0.5m/s
(100LFM)
Ruggedized (D)
Part (105°
C)
2
55
0.5m/s
(100LFM)
Ruggedized (D)
Part (105°
C)
105
5
2m/s
(400LFM)
4
1m/s
(200LFM)
Standard Part
(85°C)
3
0.5m/s
(100LFM)
Ruggedized (D)
Part (105°
C)
NC
NC
2
2
55
65
75
85
95
55
105
85
Figure 10. Vo = 2.5 V
6
6
5
2m/s
(400LFM)
1m/s
(200LFM)
Standard Part
(85°C)
0.5m/s
(100LFM)
Ruggedized (D)
Part (105°
C)
NC
65
75
85
95
105
105
5
2m/s
(400LFM)
4
1m/s
(200LFM)
Standard Part
(85°C)
3
0.5m/s
(100LFM)
Ruggedized (D)
Part (105°
C)
NC
2
2
55
95
Figure 9. Vo = 1.8 V
7
3
75
AMBIENT TEMPERATURE, TA OC
7
4
65
AMBIENT TEMPERATURE, TA OC
OUTPUT CURRENT, Io (A)
OUTPUT CURRENT, Io (A)
1m/s
(200LFM)
Standard Part
(85°C)
55
65
75
85
AMBIENT TEMPERATURE, TA OC
AMBIENT TEMPERATURE, TA OC
Figure 11. Vo = 3.3 V
Figure 12. Vo = 5.0 V
95
105
tech.support@psbel.com
SLIN-06E2A
OUTPUT VOLTAGE
VO (V) (10Mv/div)
OUTPUT VOLTAGE
VO (V) (10Mv/div)
7
TIME, t (1s/div)
TIME, t (1s/div)
Figure 14. Vo = 1.2 V, Io = Io,max
OUTPUT VOLTAGE
VO (V) (10Mv/div)
OUTPUT VOLTAGE
VO (V) (10Mv/div)
Figure 13. Vo = 0.6 V, Io = Io,max
TIME, t (1s/div)
TIME, t (1s/div)
Figure 16. Vo = 2.5 V, Io = Io,max
OUTPUT VOLTAGE
VO (V) (20Mv/div)
OUTPUT VOLTAGE
VO (V) (10Mv/div)
Figure 15. Vo = 1.8 V, Io = Io,max
TIME, t (1s/div)
Figure 17. Vo = 3.3 V, Io = Io,max
TIME, t (1s/div)
Figure 18. Vo = 5.0 V, Io = Io,max
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Europe, Middle East
+353 61 49 8941
North America
+1 866 513 2839
© 2021 Bel Power Solutions & Protection
BCD.20127_AK
SLIN-06E2A
OUTPUT VOLTAGE
VO (V) (200Mv/div)
OUTPUT CURRENT,
IO (A) (2Adiv)
OUTPUT CURRENT,
IO (A) (2Adiv)
OUTPUT VOLTAGE
VO (V) (200Mv/div)
8
TIME, t (20s /div)
TIME, t (20s /div)
Figure 19. Transient Response to Dynamic Load Change
Figure 20. Transient Response to Dynamic Load Change
OUTPUT VOLTAGE
VO (V) (200Mv/div)
from 0% 50% to 0%. Vo = 1.2 V
OUTPUT CURRENT,
IO (A) (2Adiv)
OUTPUT CURRENT,
IO (A) (2Adiv)
OUTPUT VOLTAGE
VO (V) (200Mv/div)
from 0% 50% to 0%. Vo = 0.6 V
TIME, t (20s /div)
TIME, t (20s /div)
Figure 21. Transient Response to Dynamic Load Change
Figure 22. Transient Response to Dynamic Load Change
OUTPUT VOLTAGE
VO (V) (200Mv/div)
from 0% 50% to 0%. Vo = 2.5 V
OUTPUT CURRENT,
IO (A) (2Adiv)
OUTPUT CURRENT,
IO (A) (2Adiv)
OUTPUT VOLTAGE
VO (V) (200Mv/div)
from 0% 50% to 0%. Vo = 1.8 V
TIME, t (20s /div)
Figure 23. Transient Response to Dynamic Load Change
from 0% 50% to 0%. Vo = 3.3 V
TIME, t (20s /div)
Figure 24. Transient Response to Dynamic Load Change
from 0% 50% to 0%. Vo = 5.0 V
tech.support@psbel.com
SLIN-06E2A
ON/OFF VOLTAGE
VON/OFF (V) (5V/div)
OUTPUT VOLTAGE
VO (V) (200Mv/div)
ON/OFF VOLTAGE OUTPUT VOLTAGE
VO (V) (500Mv/div)
VON/OFF (V) (5V/div)
9
TIME, t (2 ms/div)
TIME, t (2 ms/div)
Figure 26. Start-up Using On/Off Voltage
(Io = Io,max), Vo = 0.6 V
(Io = Io,max), Vo = 1.2 V
ON/OFF VOLTAGE
VON/OFF (V) (10V/div)
OUTPUT VOLTAGE
VO (V) (500Mv/div)
ON/OFF VOLTAGE OUTPUT VOLTAGE
VO (V) (1V/div)
VON/OFF (V) (1V/div)
Figure 25. Start-up Using On/Off Voltage
TIME, t (2 ms/div)
TIME, t (2 ms/div)
(Io = Io,max), Vo = 2.5 V
ON/OFF VOLTAGE OUTPUT VOLTAGE
VO (V) (2V/div)
VON/OFF (V) (5V/div)
Figure 28. Start-up Using On/Off Voltage
(Io = Io,max), Vo = 1.8 V
ON/OFF VOLTAGE OUTPUT VOLTAGE
VO (V) (1V/div)
VON/OFF (V) (5V/div)
Figure 27. Start-up Using On/Off Voltage
TIME, t (2 ms/div)
TIME, t (2 ms/div)
Figure 29. Start-up Using On/Off Voltage
Figure 30. Start-up Using On/Off Voltage
(Io = Io,max), Vo = 3.3 V
(Io = Io,max), Vo = 5.0 V
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Europe, Middle East
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North America
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BCD.20127_AK
SLIN-06E2A
ON/OFF VOLTAGE OUTPUT VOLTAGE
VO (V) (200Mv/div)
Vin(V) (5V/div)
ON/OFF VOLTAGE OUTPUT VOLTAGE
VO (V) (500Mv/div)
Vin (V) (5V/div)
10
TIME, t (2 ms/div)
TIME, t (2 ms/div)
Figure 32. Start-up Using Input Voltage
(VIN = 12V, Io = Io,max ), Vo = 0.6 V
(VIN = 12V, Io = Io,max ), Vo = 1.2 V
INPUT VOLTAGE
Vin(V) (5V/div)
OUTPUT VOLTAGE
VO (V) (1V/div)
ON/OFF VOLTAGE OUTPUT VOLTAGE
Vin (V) (5V/div) VO (V) (500Mv/div)
Figure 31. Start-up Using Input Voltage
TIME, t (2 ms/div)
TIME, t (2 ms/div)
(VIN = 12V, Io = Io,max ), Vo = 2.5 V
ON/OFF VOLTAGE OUTPUT VOLTAGE
VO (V) (2V/div)
Vin (V) (5V/div)
Figure 34. Start-up Using Input Voltage
(VIN = 12V, Io = Io,max ), Vo = 1.8 V
ON/OFF VOLTAGE OUTPUT VOLTAGE
VO (V) (1V/div)
Vin (V) (5V/div)
Figure 33. Start-up Using Input Voltage
TIME, t (2 ms/div)
TIME, t (2 ms/div)
Figure 35. Start-up Using Input Voltage
Figure 36. Start-up Using Input Voltage
(VIN = 12V, Io = Io,max ), Vo = 3.3 V
(VIN = 12V, Io = Io,max ), Vo = 5.0 V
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SLIN-06E2A
11
Input Reflected Ripple Current Test Setup.
CURRENT PROBE
TO OSCILLOSCOPE
LTEST
VIN(+)
BATTERY
1μH
CIN
CS 1000μF
Electrolytic
2x100μF
Tantalum
E.S.R.