Railway
Automation
Datacom
IPC
Industry
Measurement
Telecom
Automobile
Boat
Charger
Medical
PV
PART NUMBER STRUCTURE
RDL03 - 48
Series Name
S
05 W -
Input
Voltage
(VDC)
Output
Quantity
Output
Voltage
(VDC)
Input
Range
24:9~36
48:18~75
110:43~160
S:Single
3P3:3.3
05:5
09:9
12:12
15:15
24:24
4:1
D: Dual
M3
Operating Ambient
Temperature
Options
:-40~+100℃
M3:-55~+100℃
05:±5
12:±12
15:±15
P-DUKE Technology Co., Ltd.
www.pduke.com
2022.08.19
Page 1
RDL03W
Series
TECHNICAL SPECIFICATION All specifications are typical at nominal input, full load and 25℃ unless otherwise noted
Output Current
@Full Load
Input Current
@ No Load
VDC
mA
mA
%
μF
3.3
5
9
12
15
24
±5
±12
±15
3.3
5
9
12
15
24
±5
±12
±15
3.3
5
9
12
15
24
±5
±12
±15
700
600
333
250
200
125
±300
±125
±100
700
600
333
250
200
125
±300
±125
±100
700
600
333
250
200
125
±300
±125
±100
4
4
4
4
4
4
6
6
8
4
4
4
4
4
4
6
6
8
2
2
2
2
2
2
2
2
2
76
81
81
83
83
82
80
82
82
75
81
81
82
82
82
80
82
82
76
80
81
82
83
83
80
83
81
1100
550
340
240
240
90
±340
±170
±90
1100
550
340
240
240
90
±340
±170
±90
1100
550
340
240
240
90
±340
±170
±90
Model
Number
Input Range
Output Voltage
VDC
RDL03-24S3P3W
RDL03-24S05W
RDL03-24S09W
RDL03-24S12W
RDL03-24S15W
RDL03-24S24W
RDL03-24D05W
RDL03-24D12W
RDL03-24D15W
RDL03-48S3P3W
RDL03-48S05W
RDL03-48S09W
RDL03-48S12W
RDL03-48S15W
RDL03-48S24W
RDL03-48D05W
RDL03-48D12W
RDL03-48D15W
RDL03-110S3P3W
RDL03-110S05W
RDL03-110S09W
RDL03-110S12W
RDL03-110S15W
RDL03-110S24W
RDL03-110D05W
RDL03-110D12W
RDL03-110D15W
9 ~ 36
9 ~ 36
9 ~ 36
9 ~ 36
9 ~ 36
9 ~ 36
9 ~ 36
9 ~ 36
9 ~ 36
18 ~ 75
18 ~ 75
18 ~ 75
18 ~ 75
18 ~ 75
18 ~ 75
18 ~ 75
18 ~ 75
18 ~ 75
43 ~ 160
43 ~ 160
43 ~ 160
43 ~ 160
43 ~ 160
43 ~ 160
43 ~ 160
43 ~ 160
43 ~ 160
INPUT SPECIFICATIONS
Parameter
Conditions
Operating input voltage range
Start up time
Constant resistive load
Input surge voltage
1 second, max.
Input filter
Remote ON/OFF
Referred to –Vin pin
24Vin(nom)
48Vin(nom)
110Vin(nom)
Power up
Remote ON/OFF
24Vin(nom)
48Vin(nom)
110Vin(nom)
DC-DC ON
DC-DC OFF
Input current of Ctrl pin
Remote off input current
Efficiency
Min.
Typ.
9
18
43
24
48
110
50
50
0.5
Maximum
Capacitor Load
Max.
Unit
36
75
VDC
160
75
ms
75
50
100
VDC
185
Capacitor type
Open or 0 ~ 0.5VDC
3 ~ 12VDC
3.5
mA
2.5
mA
P-DUKE Technology Co., Ltd.
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2022.08.19
Page 2
RDL03W
OUTPUT SPECIFICATIONS
Parameter
Voltage accuracy
Line regulation
Load regulation
Cross regulation
Ripple and noise
Temperature coefficient
Transient response recovery time
Over load protection
Short circuit protection
Conditions
Low Line to High Line at Full Load
No Load to Full Load
Asymmetrical load 25%/100% FL
Measured by 20MHz bandwidth
With a 1μF/50V X7R MLCC
Typ.
-1.0
-0.2
-0.5
-1.0
-5.0
50
Max.
Unit
+1.0
+0.2
+0.5
+1.0
+5.0
%
%
75
mVp-p
%
%
-0.02
Isolation voltage
1 minute
Isolation resistance
Isolation capacitance
Switching frequency
500VDC
Safety approvals
IEC/ EN/ UL62368-1
Standard approvals
EN50155
EN45545-2
+0.02
%/℃
250
μs
180
%
Continuous, automatics recovery
Conditions
Min.
Input to Output
Input (Output) to Case
110Vin
Others
Typ.
3000
1500
1
270
360
Operating case temperature
M3 version
Max.
Unit
VDC
300
400
GΩ
100
pF
330
kHz
440
UL:E193009
CB:UL(Demko)
Copper
None
Silicone (UL94 V-0)
5.9g (0.21oz)
5.535 x 106 hrs
MIL-HDBK-217F, Full load
ENVIRONMENTAL SPECIFICATIONS
Parameter
Maximum case temperature
Storage temperature range
Thermal shock
Shock
Vibration
Relative humidity
Single
Dual
Dual
25% load step change
% of Iout rated; Hiccup mode
GENERAL SPECIFICATIONS
Parameter
Case material
Base material
Potting material
Weight
MTBF
Min.
Series
Conditions
Min.
With derating
With derating
-40
-55
-55
Typ.
Max.
Unit
+100
℃
+100
100
℃
+125
℃
MIL-STD-810F
EN61373, MIL-STD-810F
EN61373, MIL-STD-810F
5% to 95% RH
P-DUKE Technology Co., Ltd.
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2022.08.19
Page 3
RDL03W
EMC SPECIFICATIONS
Parameter
EMI
EMS
ESD
Radiated immunity
Fast transient
Surge
Conditions
Level
EN55032, EN50121-3-2
EN55035, EN50121-3-2
EN61000-4-2
EN61000-4-3
EN61000-4-4
With external components
RDL03-24□□□W
With an aluminum electrolytic capacitor
(Nippon chemi-con KY series, 220μF/100V)
and a TVS (SMDJ70A, 70V, 3000Watt peak
pulse power) to connect in parallel.
RDL03-48□□□W
With an aluminum electrolytic capacitor
(Nippon chemi-con KY series, 220μF/100V)
and a TVS (SMDJ120A, 120V, 3000Watt
peak pulse power) to connect in parallel.
RDL03-110□□□W
With an aluminum electrolytic capacitor
(Nippon chemi-con KXJ series, 150μF/200V)
and a TVS (SMB250A, 250V, 600Watt peak
pulse power) to connect in parallel.
±2kV
EN61000-4-5
Series
Class A, Class B
Air ± 8kV and Contact ± 6kV
20V/m
± 2kV
Perf. Criteria A
Perf. Criteria A
Perf. Criteria A
RDL03-24□□□W
With an aluminum electrolytic capacitor
(Nippon chemi-con KY series, 220μF/100V)
and a TVS (SMDJ70A, 70V, 3000Watt peak
pulse power) to connect in parallel.
RDL03-48□□□W
With an aluminum electrolytic capacitor
(Nippon chemi-con KY series, 220μF/100V)
and a TVS (SMDJ120A, 120V, 3000Watt
peak pulse power) to connect in parallel.
Perf. Criteria A
RDL03-110□□□W
With an aluminum electrolytic capacitor
(Nippon chemi-con KXJ series, 150μF/200V)
and a TVS (SMB250A, 250V, 600Watt peak
pulse power) to connect in parallel.
Conducted immunity
EN61000-4-6
10Vr.m.s
Power frequency magnetic field
EN61000-4-8
100A/m continuous; 1000A/m 1 second
CAUTION: This power module is not internally fused. An input line fuse must always be used.
Perf. Criteria A
Perf. Criteria A
CHARACTERISTIC CURVE
RDL03-110S05W Derating Curve
RDL03-110S05W Efficiency vs. Input Voltage
RDL03-110S05W Efficiency vs. Output Load
P-DUKE Technology Co., Ltd.
www.pduke.com
2022.08.19
Page 4
RDL03W
Series
FUSE CONSIDERATION
This power module is not internally fused. An input line fuse must always be used.
This encapsulated power module can be used in a wide variety of applications, ranging from simple stand-alone operation to an integrated part of
sophisticated power architecture.
To maximum flexibility, internal fusing is not included; however, to achieve maximum safety and system protection, always use an input line fuse.
The input line fuse suggest as below:
Model
RDL03-24□□□W
RDL03-48□□□W
RDL03-110□□□W
Fuse Rating
(A)
0.8
0.5
0.16
Fuse Type
Slow-Blow
Slow-Blow
Slow-Blow
The table based on the information provided in this data sheet on inrush energy and maximum DC input current at low Vin.
MECHANICAL DRAWING
PIN CONNECTION
PIN
SINGLE
1
-Vin
2
+Vin
3
Ctrl
6
+Vout
7
-Vout
8
NC
9
Case
10
Stand off
11
Stand off
12
Case
DUAL
-Vin
+Vin
Ctrl
+Vout
Common
-Vout
Case
Stand off
Stand off
Case
1. All dimensions in inch [mm]
2. Tolerance :x.xx±0.02 [x.x±0.5]
x.xxx±0.01 [x.xx±0.25]
3. Pin dimension tolerance ±0.004[0.10]
* Case pins should not be connected to any circuit.
P-DUKE Technology Co., Ltd.
www.pduke.com
2022.08.19
Page 5
RDL03W
Series
RECOMMENDED PAD LAYOUT
All dimensions in inch[mm]
Pad size(lead free recommended)
Through hole 1.2.3.6.7.8: Φ0.031[0.80]
Through hole 9.12: Φ0.051[1.30]
Top view pad 1.2.3.6.7.8: Φ0.039[1.00]
Top view pad 9.12: Φ0.064[1.63]
Bottom view pad 1.2.3.6.7.8: Φ0.063[1.60]
Bottom view pad 9: Φ0.102[2.60]
Bottom view pad 12:Groove R0.039[1.00]L0.102[2.60]
Area 9.10.11.12 don't layout
Area 10.11 size: Φ0.159[4.05]
Area 9.12 size:Groove R0.098[2.50]L0.220[5.60]
The layout distance between Pin3 and Pin6 is at least 3mm
* We recommend putting PCB trace on bottom side.
THERMAL CONSIDERATIONS
The power module operates in a variety of thermal environments.
However, sufficient cooling should be provided to help ensure reliable operation of the unit.
Heat is removed by conduction, convection, and radiation to the surrounding environment.
Proper cooling can be verified by measuring the point as the figure below.
The temperature at this location should not exceed “Maximum case temperature”.
When operating, adequate cooling must be provided to maintain the test point temperature at or below “Maximum case temperature”.
You can limit this temperature to a lower value for extremely high reliability.
Thermal test condition with vertical direction by natural convection (20LFM).
TOP VIEW
P-DUKE Technology Co., Ltd.
Tel
Fax
Email
Web
Add
+886-4-2359-0668
+886-4-2359-1337
sales@pduke.com
www.pduke.com
No. 36, 22nd Rd., Taichung Industrial Park,
Taichung, Taiwan, R.O.C.
2022.08.19
Page 6