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UMP Models
25-40W, Single Output, DC/DC Converters
OBSOLETE PRODUCT
Last time buy: 04 January 2013
FEATURES
Higher operating temperatures
potted
Fully
Designed to meet UL1950 and
EN60950-1 (basic insulation)
mark available (75V-input models)
isolated, 1500Vdc guaranteed
Fully
25/30/35/40W output power
Standard pinout! Smaller size!
2" x 3" package fits 3" x 3" footprint
New
12V or 15V outputs
5V,
input voltage ranges:
Four
10-36V, 18-36V
18-75V, 36-75V
efficiency (to 85%)
High
under and overvoltage lockout
Input
trim and on/off control
V
OUT
cations and customs for OEMs
Modifi
Typical unit
PRODUCT OVERVIEW
DATEL’s UMP Models are fully potted, 25-40 Watt DC/
DC converters designed to meet UL1950 and EN60950-
1 safety standards. The combination of the UMP's
higher efficiencies and thermally conductive potting
compound enables these devices to achieve higher
operating temperatures without derating. The 2" x 3"
UMP "footprint" conforms with the standard pinout
and pin geometries of most 3" x 3" devices (a 33%
space savings) while delivering as much as 60% more
power (40W vs. 25W).
Applicable to a wide range of telecom, computer
and other OEM applications, UMP Model DC/DC’s
operate from four input voltage ranges (10-36V for
"Q12" models, 18-36V for "D24" models, 18-75V for
"Q48" models, and 36-75V for "D48" models). Avail-
able output voltages are 5, 12 and 15 Volts.
For reliability and affordability, DATEL exploits
contemporary, high-speed, automatic assembly to
construct the UMP’s traditional, field-proven, SMT-
on-pcb designs. Devices employ corrosion-resistant
metal cases with plastic headers. Heat generating
transformer cores and power semiconductors are
mounted directly to the cases, which have threaded
inserts for add-on heat sinks or pcb mounting. De-
vices are specified for –40 to +100°C operation and
derating information is provided for operation with/
without heat sinks and forced air flow.
All devices feature input pi filters, input undervolt-
age and overvoltage shutdown, output overvoltage
protection, output current limiting, and thermal
shutdown. UL, CSA, EN and IEC compliance testing is
available (75V-input devices will be CE marked) as are
full EMI/EMC characterizations.
SIMPLIFIED BLOCK DIAGRAM
+V
IN
+V
OUT
COMMON
–V
IN
PWM
CONTROLLER
UVLO & OVLO
COMPARATORS
ON/OFF
CONTROL
ISOLATION
REFERENCE &
ERROR AMP
TRIM
CASE
Figure 1. Simplified Schematic
Typical topology is shown
For full details go to
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MDC_UMP25-40W_B04
Page 1 of 9
UMP Models
Performance Specifications and Ordering Guide
➀
Output
Model
UMP-5/5-Q12
UMP-5/6-Q48
UMP-5/7-D24
UMP-5/8-D48
UMP-12/2.1-Q12
UMP-12/2.5-Q48
UMP-12/3-D24
UMP-12/3.3-D48
UMP-15/1.7-Q12
UMP-15/2-Q48
UMP-15/2.5-D24
UMP-15/2.65-D48
25-40W, Single Output, DC/DC Converters
Input
Regulation (Max.)
Load
➂
Line
±0.5%
±0.5%
±0.5%
±0.5%
±0.5%
±0.5%
±0.5%
±0.5%
±0.5%
±0.5%
±0.5%
±0.5%
±1%
±1%
±1%
±1%
±1%
±1%
±1%
±1%
±1%
±1%
±1%
±1%
V
OUT
(Volts)
5
5
5
5
12
12
12
12
15
15
15
15
I
OUT
(Amps)
5
6
7
8
2.1
2.5
3
3.3
1.7
2
2.5
2.65
R/N (mVp-p)
➁
Typ.
Max.
75
80
75
75
100
100
100
100
100
100
100
100
100
110
100
100
150
150
150
150
150
150
150
150
V
IN
Nom.
(Volts)
24
48
24
48
24
48
24
48
24
48
24
48
Range
(Volts)
10-36
18-75
18-36
36-75
10-36
18-75
18-36
36-75
10-36
18-75
18-36
36-75
I
IN
➃
(mA)
50/1366
25/799
25/1796
25/1026
50/1326
30/770
25/1825
25/1004
50/1341
30/770
25/1879
25/1008
Efficiency
Min.
Typ.
77%
79%
82%
82%
80%
82%
82%
83%
80%
82%
83%
83%
79%
80%
83%
84%
82%
83%
84%
85%
82%
83%
84%
85%
Package
(Case,
Pinout)
C11, P14
C11, P14
C11, P14
C11, P14
C11, P14
C11, P14
C11, P14
C11, P14
C11, P14
C11, P14
C11, P14
C11, P14
➀
Typical at T
A
= +25°C under nominal line voltage and full-load conditions unless otherwise noted.
➁
Ripple/Noise (R/N) measured over a 20MHz bandwidth.
➂
10 to 100% load.
➃
Nominal line voltage, no-load/full-load conditions.
➄
RoHS-6 compliance does not claim EU RoHS exemption 7b–lead in solder.
P A R T
N U M B E R
S T R U C T U R E
O U T P U T
P O W E R
C O N S I D E R A T I O N S
U MP
-
5
/
8
-
D48
-
C
Output Configuration:
U
= Unipolar
Fully Potted Metal Package
Nominal Output Voltage:
5, 12 or 15 Volts
Maximum Output Current
in Amps
M E C H A N I C A L
RoHS-6 hazardous substance
compliant
(Note 5)
I N P U T VO LTAG E R A N G E :
Q12
= 10-36 Volts (24V nominal)
D24
= 18-36 Volts (24V nominal)
Q48
= 18-75 Volts (48V nominal)
D48
= 36-75 Volts (48V nominal)
*
Contact Murata Power Solutions
(Datel) for availability.
UMP Model DC/DC Converters are classified, by output power, into 25,
30, 35 and 40 Watt devices. For the single-output devices listed above, the
maximum available output power is the product of the nominal output voltage
and the maximum allowable output current indicated within the part number
(see Part Number Structure). A UMP-5/6-Q48, for example, can source
6 Amps from its 5V output (over its entire 18-75V input voltage range) deliv-
ering an output power of 30 Watts. A UMP-5/8-D48 can deliver
40 Watts.
S P E C I F I C A T I O N S
Optional Heat Sink Kit
(Part Number HS-23 <non-RoHS> or HS-23-C <RoHS>)
3.04
(77.22)
METAL
CASE
INSULATED
BASE
0.040 ±0.002 DIA.
(1.016 ±0.051)
2.500
(63.50)
0.27
(6.86)
3.00
(76.20)
0.20
(5.08)
2.600
(66.04)
0.40
(10.16)
0.55
(13.97)
0.20 MIN
(5.08)
Case C11
I/O Connections
Pin Function P14
1
No Pin
2
–Input
3
+Input
4
Case **
5 On/Off Control*
6
No Pin
7
No Pin
8
Common
9
+V
OUT
10
Trim
* See note 3 on next page.
** The case must be grounded
for most applications.
1.200
(30.48)
2.00
(50.80)
0.42
(10.67)
1
6
2
1.200
(30.48)
7
1.600
2.04
(40.64)
4 EQ. SP. @ (51.82)
0.400 (10.16)
3
(4) THREADED INSERTS
#4-40 THD THRU
8
TOP VIEW
4
0.120 DIA. (3.048)
(4 PLACES)
9
10
BOTTOM VIEW
0.10
(2.54)
0.50
(12.70)
5
0.22
(5.59)
2.600
(66.04)
DIMENSIONS ARE IN INCHES (MM)
0.22
(5.59)
MATERIAL: BLACK ANODIZED ALUMINUM
4 MOUNTING SCREWS AND 0.009 (0.229) THERMAL PAD INCLUDED
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MDC_UMP25-40W_B04
Page 2 of 9
UMP Models
Typical @ T
A
= +25°C under nominal line voltage and full-load conditions, unless noted.
➀
Performance/Functional Specifications
Input
Input Voltage Range:
Q12 Models
D24 Models
Q48 Models
D48 Models
Undervoltage Lockout:
Q12 Models
D24 Models
Q48 Models
D48 Models
Input Current
Input Filter Type
➁
Overvoltage Shutdown:
D24 and Q12 Models
D48 and Q48 Models
Reverse-Polarity Protection
On/Off Control
(Pin 5)
➂
V
OUT
Accuracy
(50% load)
Temperature Coefficient
Ripple/Noise
(20MHz BW)
Line/Load Regulation
Efficiency
Isolation Voltage
Isolation Capacitance
Current Limiting
Overvoltage Protection
Transient Response
(50% load step)
Switching Frequency
Operating Temperature
(ambient):
Without Derating
With Derating
Maximum Case Temperature
Storage Temperature
Relative Humidity
Safety
Dimensions
Shielding
Case Connection
Case Material
Flammability Rating
Pin Material
Weight
25-40W, Single Output, DC/DC Converters
Absolute Maximum Ratings
Input Voltage:
Q12/D24 Models
Q48/D48 Models
Input Reverse-Polarity Protection
Output Overvoltage Protection
5V Outputs
12V Outputs
15V Outputs
Output Current
44 Volts
88 Volts
Current must be <6A. Brief
duration only. Fusing recommended.
6.8 Volts, limited duration
15 Volts, limited duration
18 Volts, limited duration
Current limited. Max. current and
short-circuit duration are model
dependent.
–40 to +105°C
+300°C
10-36 Volts (24V nominal)
18-36 Volts (24V nominal)
18-75 Volts (48V nominal)
36-75 Volts (48V nominal)
9 Volts
17 Volts
17 Volts
34 Volts
See Ordering Guide
Pi
40 Volts
80 Volts
Yes (Instantaneous, 6A maximum)
TTL high (or open) = on, low = off
Storage Temperature
Lead Temperature
(soldering, 10 sec.)
Output
±1%, maximum
±0.02% per °C
See Ordering Guide
See Ordering Guide
See Ordering Guide
1500Vdc, minimum
130pF
Continuous, auto-recovery
Zener/transorb clamp, magnetic feedback
These are stress ratings. Exposure of devices to greater than any of these
conditions may adversely affect long-term reliability. Proper operation under
conditions other than those listed in the Performance/Functional Specifications
Table is not implied.
T E C H N I C A L
N O T E S
Floating Outputs
Since these are isolated DC/DC converters, their outputs are "floating." Us-
ers may ground either the Common (pin 8) for normal usage or the positive
side (+Output, pin 9) to effectively reverse the output polarity.
Filtering and Noise Reduction
All UMP 25-40 Watt DC/DC Converters achieve their rated ripple and noise
specifications without the use of external input/output capacitors. In critical
applications, input/output ripple and noise may be further reduced by install-
ing electrolytic capacitors across the input terminals and/or low-ESR tanta-
lum or electrolytic capacitors across the output terminals. The caps should
be located as close to the power converters as possible. Typical values are
listed in the tables below. In many applications, using values greater than
those listed will yield better results.
To Reduce Input Ripple
Q12/D24 Models
Q48/D48 Models
To Reduce Output Ripple
5V Outputs
12/15V Outputs
Input Fusing
Certain applications and/or safety agencies may require the installation of
fuses at the inputs of power conversion components. For DATEL UMP
DC/DC Converters, you should use slow-blow type fuses with values no
greater than the following:
V
IN
Range
Q12
D24
Q48
D48
Fuse Value
4A
4A
3A
2A
47µF, 50V
10µF, 100V
47µF, 10V, Low ESR
22µF, 20V, Low ESR
Dynamic Characteristics
200µsec max. to ±1.5% of final value
165kHz (±10%)
Environmental
–40 to +50°C (model dependent)
to +100°C (See Derating Curves)
+100°C
–40 to +105°C
To 85°C /85% RH, non-condensing
Physical
UL/cUL/EN/IEC 60950-1
2.04" x 3.04" x 0.55" (51.8 x 77.2 x 14mm)
5-sided
Pin 4
Aluminum, black anodized finish
with plastic header
UL94V-0
Gold-plated copper alloy with nickel
underplate
6 ounces (170 grams)
➀
These converters require a minimum 10% output loading to maintain specified regulation.
Operation under no-load conditions will not damage these devices; however they may not
meet all listed specifications.
➁
Deleted.
➂
Applying voltage to the Control pin with no input power applied can damage the converter.
➃
Listed spec is for input-to-output. Input-to-case and output-to-case isolation is 1000Vdc min.
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MDC_UMP25-40W_B04
Page 3 of 9
UMP Models
25-40W, Single Output, DC/DC Converters
Temperature Derating and Electrical Performance Curves
Q12 Models (25 Watts)
25
30
Q48 Models (30 Watts)
20
25
Output Power (Watts)
Output Power (Watts)
20
15
15
Natural Convection Cooling
10
150 Linear Feet Per Minute
5
300 Linear Feet Per Minute
10
Natural Convection Cooling
150 Linear Feet Per Minute
5
300 Linear Feet Per Minute
0
–40
0
0
40
45
50
55
60
65
70
75
80
85
90
95
100
–40
0
30
35
40
45
50
55
60
65
70
75
80
85
90
95
100
Ambient Temperature (°C)
Ambient Temperature (°C)
Figure 2a. Temperature Derating Without Heat Sink
25
Figure 3a. Temperature Derating Without Heat Sink
30
20
25
Output Power (Watts)
Output Power (Watts)
20
15
15
Natural Convection Cooling
10
150 Linear Feet Per Minute
300 Linear Feet Per Minute
5
10
Natural Convection Cooling
150 Linear Feet Per Minute
5
300 Linear Feet Per Minute
0
–40
0
0
40
45
50
55
60
65
70
75
80
85
90
95
100
–40
0
30
35
40
45
50
55
60
65
70
75
80
85
90
95
100
Ambient Temperature (°C)
Ambient Temperature (°C)
Figure 2b. Temperature Derating With Heat Sink
Figure 3b. Temperature Derating With Heat Sink
Model UMP-5/5-Q12
82.5
80
82
86
Model UMP-5/6-Q48
75
70
78
Efficiency (%)
65
Efficiency @ 10V
IN
Efficiency @ 12V
IN
55
Efficiency @ 24V
IN
Efficiency @ 36V
IN
50
Efficiency (%)
74
Efficiency @ 18V
IN
70
Efficiency @ 24V
IN
Efficiency @ 48V
IN
66
Efficiency @ 72V
IN
60
45
0.56
1.11
1.67
2.22
2.78
3.33
3.89
4.44
5
62
0.67
1.33
2
2.67
3.33
4
4.67
5.33
6
Output Current (Amps)
Output Current (Amps)
Figure 2c. Efficiency vs. Output Current and Input Voltage
Figure 3c. Efficiency vs. Output Current and Input Voltage
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MDC_UMP25-40W_B04
Page 4 of 9
UMP Models
25-40W, Single Output, DC/DC Converters
Temperature Derating and Electrical Performance Curves
D24 Models (35 Watts)
35
D48 Models (40Watts)
40
35
30
30
Output Power (Watts)
Output Power (Watts)
25
25
20
15
10
20
15
Natural Convection Cooling
10
150 Linear Feet Per Minute
300 Linear Feet Per Minute
5
Natural Convection Cooling
150 Linear Feet Per Minute
300 Linear Feet Per Minute
5
0
–40
0
30
35
40
45
50
55
60
65
70
75
80
85
90
95
100
0
–40 0
30
35
40
45
50
55
60
65
70
75
80
85
90
95
100
Ambient Temperature (°C)
Ambient Temperature (°C)
Figure 4a. Temperature Derating Without Heat Sink
Figure 5a. Temperature Derating Without Heat Sink
35
40
35
30
30
Output Power (Watts)
Output Power (Watts)
25
25
20
15
10
5
0
Natural Convection Cooling
150 Linear Feet Per Minute
300 Linear Feet Per Minute
20
15
Natural Convection Cooling
10
150 Linear Feet Per Minute
300 Linear Feet Per Minute
5
0
–40
0
30
35
40
45
50
55
60
65
70
75
80
85
90
95
100
–40
0
30
35
40
45
50
55
60
65
70
75
80
85
90
95
100
Ambient Temperature (°C)
Ambient Temperature (°C)
Figure 4b. Temperature Derating With Heat Sink
Figure 5b. Temperature Derating With Heat Sink
Model UMP-5/7-D24
88
88
86
86
84
84
82
Model UMP-5/8-D48
Efficiency (%)
Efficiency (%)
82
80
78
76
74
Efficiency @ 36V
IN
Efficiency @ 48V
IN
Efficiency @ 72V
IN
72
80
Efficiency @ 18V
IN
Efficiency @ 24V
IN
78
Efficiency @ 36V
IN
76
70
74
0.77
1.56
2.33
3.11
3.89
4.67
5.44
6.22
7
68
0.5
1
2
3
4
5
6
7
8
Output Current (Amps)
Output Current (Amps)
Figure 4c. Efficiency vs. Output Current and Input Voltage
Figure 5c. Efficiency vs. Output Current and Input Voltage
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Page 5 of 9