pdm2 d

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date
02/23/2015
page
1 of 6
SERIES: PDM2-D │ DESCRIPTION: DC-DC CONVERTER
FEATURES
•
•
•
•
•
•
•
•
•
•
2 W isolated output
smaller package
single/dual unregulated output
1,500 Vdc isolation
short circuit protection
extended temperature range (-40~105°C)
antistatic protection up to 8kV
UL 60950-1 approval
high efficiency at light load
efficiency up to 84%
MODEL
input
voltage
output
voltage
output
current
output
power
ripple
and noise2
efficiency
typ
(Vdc)
range
(Vdc)
(Vdc)
min
(mA)
max
(mA)
max
(W)
typ
(mVp-p)
typ
(%)
PDM2-S3-S5-D
3.3
2.97~3.63
5
40
400
2
60
78
PDM2-S5-S5-D
5
4.5~5.5
5
40
400
2
60
80
PDM2-S5-S12-D1
5
4.5~5.5
12
17
167
2
60
84
PDM2-S5-S15-D
5
4.5~5.5
15
13
133
2
75
84
PDM2-S5-D5-D1
5
4.5~5.5
±5
±20
±200
2
60
80
PDM2-S5-D7-D
5
4.5~5.5
±7
±15
±142
2
60
80
PDM2-S5-D9-D1
5
4.5~5.5
±9
±11
±111
2
60
80
1
PDM2-S5-D12-D
5
4.5~5.5
±12
±8
±83
2
60
80
PDM2-S5-D15-D1
5
4.5~5.5
±15
±7
±67
2
75
81
PDM2-S12-S5-D
12
10.8~13.2
5
40
400
2
60
80
PDM2-S12-S12-D1
12
10.8~13.2
12
17
167
2
60
82
PDM2-S12-S24-D
12
10.8~13.2
24
8
83
2
75
84
PDM2-S12-D5-D1
12
10.8~13.2
±5
±20
±200
2
60
80
PDM2-S12-D9-D
12
10.8~13.2
±9
±11
±111
2
60
80
PDM2-S12-D12-D1
12
10.8~13.2
±12
±8
±83
2
60
80
PDM2-S12-D15-D
12
10.8~13.2
±15
±7
±67
2
75
81
1
PDM2-S24-S5-D
24
21.6~26.4
5
40
400
2
60
80
PDM2-S24-S9-D1
24
21.6~26.4
9
22
222
2
60
84
PDM2-S24-S12-D
24
21.6~26.4
12
17
167
2
60
83
PDM2-S24-D5-D1
24
21.6~26.4
±5
±20
±200
2
60
80
1
PDM2-S24-D12-D
24
21.6~26.4
±12
±8
±83
2
60
80
PDM2-S24-D15-D1
24
21.6~26.4
±15
±7
±67
2
75
81
1
1
1
1
1
1
1
Notes:
1. UL approved
2. Ripple and noise are measured at 20 MHz BW by “parallel cable” method with 1 μF ceramic and 10 μF electrolytic capacitors on the output.
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CUI Inc │ SERIES: PDM2-D │ DESCRIPTION: DC-DC CONVERTER
date 02/23/2015 │ page 2 of 6
PART NUMBER KEY
PDM2 - SXX - XXX -D
Base Number
Input Voltage
Output
S = single
D = dual
Packaging Style
DIP
Output Voltage
INPUT
parameter
conditions/description
min
typ
max
units
operating input voltage
3.3 Vdc input models
5 Vdc input models
12 Vdc input models
24 Vdc input models
2.97
4.5
10.8
21.6
3.3
5
12
24
3.63
5.5
13.2
26.4
Vdc
Vdc
Vdc
Vdc
surge voltage
for maximum of 1 second
3.3 Vdc input models
5 Vdc input models
12 Vdc input models
24 Vdc input models
-0.7
-0.7
-0.7
-0.7
5
9
18
30
Vdc
Vdc
Vdc
Vdc
filter
capacitance filter
max
units
±1.2
%
OUTPUT
parameter
conditions/description
line regulation
for Vin change of 1%
min
load regulation
measured from 10%~100% load
5 Vdc output models
9 Vdc output models
12 Vdc output models
15 Vdc output models
24 Vdc output models
voltage accuracy
see tolerance envelope curve
switching frequency
100% load, nominal input voltage
temperature coefficient
at 100% load
typ
12
9
8
7
6
%
%
%
%
%
100
kHz
±0.03
%/°C
max
units
1
s
max
units
PROTECTIONS
parameter
conditions/description
min
typ
short circuit protection1
Notes:
1. The supply voltage must be discontinued at the end of the short circuit duration
SAFETY AND COMPLIANCE
parameter
conditions/description
isolation voltage
input to output for 1 minute, 1 mA max. leakage
current
1,500
Vdc
isolation resistance
input to output at 500 Vdc
1,000
MΩ
safety approvals
UL 60950-1
conducted emissions
CISPR22/EN55022, class B, external circuit required
radiated emissions
CISPR22/EN55022, class B, external circuit required
ESD
IEC/EN61000-4-2, class B, contact ± 8kV for single outputs
IEC/EN61000-4-2, class B, contact ± 6kV for dual outputs
MTBF
as per MIL-HDBK-217F @ 25°C
2
RoHS
Notes:
min
3,500,000
2011/65/EU
2. See specific models listed on page 1
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typ
hours
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CUI Inc │ SERIES: PDM2-D │ DESCRIPTION: DC-DC CONVERTER
date 02/23/2015 │ page 3 of 6
ENVIRONMENTAL
parameter
conditions/description
min
max
units
operating temperature
see derating curve
-40
105
°C
-55
125
°C
95
%
storage temperature
storage humidity
non-condensing
temperature rise
Ta=25°C, 100% load
typ
25
°C
SOLDERABILITY
parameter
conditions/description
hand soldering
wave soldering
min
typ
max
units
1.5 mm from case for 10 seconds
300
°C
see wave soldering profile
260
°C
max
units
Peak Temp. 260°C Max.
Wave Soldering Time
4 Sec. Max.
250
Temperature (°C)
200
10 Sec. Max.
150
100
50
0
MECHANICAL
Time (sec.)
parameter
conditions/description
dimensions
20.32 x 10.16 x 8.2 (0.800 x 0.400 x 0.323 inch)
min
case material
epoxy resin (UL94-V0)
weight
typ
mm
2.4
g
MECHANICAL DRAWING
units: mm[inch]
tolerance: ±0.25[±0.010]
pin section tolerance: ±0.10[±0.004]
PIN CONNECTIONS
PIN
Single Output
Dual Output
1
GND
GND
7
NC
NC
8
0V
0V
9
+Vo
+Vo
11
NO PIN
-Vo
14
Vin
Vin
Front View
Bottom View
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Top View
PCB Layout
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CUI Inc │ SERIES: PDM2-D │ DESCRIPTION: DC-DC CONVERTER
date 02/23/2015 │ page 4 of 6
DERATING CURVES
Tolerance Envelope Curve
Temperature Derating Curve
7.5
100
5
Typica
l
2.5
Load
0
2.5
Line
Load (%)
Output Voltage Accuracy (%)
10
Rated Output Voltage
-2.5
-2.5
-5
60
Safe operating area
40
20
-7.5
-7.5
80
-10
10
20
30
40
50
60
70
Output Current Percentage (%)
(Nominal Input Voltage)
80
90
100
-40
-20
0
20
40
60
EMC RECOMMENDED CIRCUIT
Figure 1
Table 1
Recommended external circuit components
LDM
Vin
Vin
C1
GND
+Vo
DC / DC
GND
85
Ambient Temperature (°C)
C out
LO AD
0V
Vin
(Vdc)
C1
LDM
3.3
4.7μF/50V
6.8μH
5
4.7μF/50V
6.8μH
12
4.7μF/50V
6.8μH
24
4.7μF/50V
6.8μH
Note:
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1. See Table 2 for Cout values
105
120
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CUI Inc │ SERIES: PDM2-D │ DESCRIPTION: DC-DC CONVERTER
date 02/23/2015 │ page 5 of 6
APPLICATION NOTES
1. Output load requirement
To ensure this module can operate efficiently and reliably, the minimum output load may not be less than 10% of the full load during
operation. If the actual output power is low, connect a resistor at the output end in parallel to increase the load.
2. Overload Protection
Under normal operating conditions, the output circuit of this product has no protection against overload. The simplest method to add
this is to add a circuit breaker to the circuit.
3. Recommended circuit
If you want to further decrease the input/output ripple, you can increase the capacitance accordingly or choose capacitors with low
ESR (see Figure 2 & Table 2). However, the capacitance of the output filter capacitor must be appropriate. If the capacitance is too
high, a startup problem might arise. For every channel of the output, to ensure safe and reliable operation, the maximum capacitance
must be less than the maximum capacitive load (see Table 3).
Figure 2
Single Output
Dual O ut put
+Vo
Vin
GND
Cout
DC DC
Cin
Vin
GND
0V
DC DC
Cin
Table 2
0V
Vo
Table 3
Dual Vo
(Vdc)
Cout
(µF)
Single Vout
(Vdc)
Max. Capacitive Load
(μF)
Dual Vout
(Vdc)
Max. Capacitive Load1
(μF)
5
10
±5
4.7
5
220
5
100
9
4.7
±9
2.2
9
220
7
100
2.2
12
2.2
±12
1
12
220
9
100
1
15/24
1
±15
0.47
15
220
12
100
220
15
100
Cin
(µF)
Single Vo
(Vdc)
3.3
4.7
5
4.7
12
24
Note:
Cout
+Vo
Cout
(µF)
Vin
(Vdc)
Note:
Cout
It’s not recommended to connect any external capacitors in
applications with less than 0.5 watt output.
24
Note:
1. For each output.
1. Operation under minimum load will not damage the converter; however, they may not meet all specifications listed.
2. Max. capacitive load tested at input voltage range and full load.
3. All specifications measured at: Ta=25°C, humidity<75%, nominal input voltage and rated output load, unless otherwise specified.
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CUI Inc │ SERIES: PDM2-D │ DESCRIPTION: DC-DC CONVERTER
date 02/23/2015 │ page 6 of 6
REVISION HISTORY
rev.
description
date
1.0
initial release
08/30/2013
1.01
added UL approval to some models
02/23/2015
The revision history provided is for informational purposes only and is believed to be accurate.
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800.275.4899
Fax 503.612.2383
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[email protected]
CUI offers a two (2) year limited warranty. Complete warranty information is listed on our website.
CUI reserves the right to make changes to the product at any time without notice. Information provided by CUI is believed to be accurate and reliable. However, no responsibility is
assumed by CUI for its use, nor for any infringements of patents or other rights of third parties which may result from its use.
CUI products are not authorized or warranted for use as critical components in equipment that requires an extremely high level of reliability. A critical component is any component of a
life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness.