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PRODUCT OVERVIEW
The HPR4XXC Series uses advanced circuit design
and packaging technology to realize superior
reliability and performance. A 170kHz push-pull
oscillator is used in the input stage. The HPR4XXC
Series reduces beat-frequency oscillation problems
when used with high frequency isolation amplifiers.
Reduced parts count and high efficiency add to the
reliability of the HPR4XXC Series.
The high efficiency of the HPR4XXC Series means
less internal power dissipation, as low as 190mW.
With less heat to dissipate the HPR4XXC Series
can operate at higher temperatures with no
HPR4XXC
0.75 Watt Miniature SIP DC/DC Converter
degradation of reliable operation. In addition, the
high efficiency of the HPR4XXC Series means the
series is able to offer greater than 10 W/inch3 of
output power density. Operation down to no load
will not impact the reliability of the series, although
this product has a >1mA minimum load for
specifications purposes.
The HPR4XXC Series provides high isolation in a very
small package. The use of surface mounted devices
and manufacturing technologies makes it possible
to offer premium performance and low cost.
FEATURES
n
Isolation Voltage: 3000 VPK Test
High
n
Single-In-Line Package (SIP)
n
Internal Input and Output
n
Cost
Low
n
Non-Conductive Case
n
Output Power Density: 10 Watts/Inch3
High
n
Extended Temperature Range: -25°C to +85°C
n
Efficiency to 79%
High
n
Compliant
RoHS
As of October 2016, ONLY the following part numbers will be available: HPR400C; HPR404C; HPR417C
PRODUCT SELECTION CHART
Model
HPR400C
HPR402C
HPR403C
HPR404C
HPR405C
HPR407C
HPR410C
HPR411C
HPR414C
HPR417C
HPR418C
HPR422C
HPR423C
HPR401C
HPR406C
HPR408C
HPR409C
HPR412C
HPR413C
HPR415C
HPR416C
HPR419C
HPR420C
HPR421C
Nominal Input
Voltage
V
DC
5
5
5
5
5
12
12
12
15
15
24
24
24
5
12
12
12
15
15
15
15
24
24
24
Rated Output
Voltage
V
DC
5
15
±5
±12
±15
12
±12
±15
15
±15
5
±12
±15
12
5
15
±5
5
12
±5
±12
12
15
±5
Rated Output
Current
mA
150
50
±75
±30
±25
62
±30
±25
50
±25
150
±30
±25
62
150
50
±75
150
62
±75
±30
62
50
±75
Input Current
Rated Load
No Load
Typ.
Max.
mA
20
216
235
20
212
235
20
218
245
20
212
235
20
220
220
10
81
90
10
81
90
10
81
90
8
72
80
8
63
66
8
48
53
8
45
50
8
45
50
20
212
235
10
90
100
10
81
90
10
88
98
8
72
80
8
72
80
8
72
80
8
63
70
8
48
53
8
45
50
8
45
50
Reflected
Efficiency
Ripple Current
mAp-p
10
5
5
5
5
5
5
5
5
5
15
15
15
5
5
5
5
5
5
5
5
15
15
15
Recommended Alternatives
NMV0505SAC / MEV1S0505SC
NMV0515SAC / MEV1S0515SC
NMV0505SC / MEV1D0505SC
NMV0512SC / MEV1D0512SC
NMV0515SC / MEV1D0515SC
NMV1212SAC / MEV1S1212SC
NMV1212SC / MEV1D1212SC
NMV1215SC / MEV1D1215SC
NMV1515SAC / MEV1S1515SC
NMV1515SC / MEV1D1515SC
MEV1S2405SC
MEV1D2412SC
MEV1D2415SC
NMV0512SAC / MEV1S0512SC
NMV1205SAC / MEV1S1205SC
NMV1215SAC / MEV1S1215SC
NMV1205SC / MEV1D1205SC
NMV1505SAC/ MEV1S1505SC
NMV1512SAC / MEV1S1512SC
NMV1505SC / MEV1D1505SC
NMV1512SC / MEV1D1512SC
MEV1S2412SC
MEV1S2415SC
MEV1D2405SC
%
69
71
68
68
75
77
74
77
69
79
65
67
69
70
69
77
71
69
69
69
76
65
69
69
For full details go to
www.murata-ps.com/rohs
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2017-04-19 TDC_HPR4xxC.F02
Page 1 of 4
HPR4XXC
0.75 Watt Miniature SIP DC/DC Converter
SPECIFICATIONS, ALL MODELS
PARAMETER
INPUT
Voltage
Range
Specifications are at
T
A
= +25°C nominal input voltage unless otherwise specified.
CONDITIONS
MIN
4.5
10.8
13.5
21.6
TYP
5
12
15
24
MAX
5.5
13.2
16.5
26.4
750
±5
200
40
7
15
18
.05
UNITS
VDC
VDC
VDC
VDC
mW
%
mVp-p
mVrms
VDC
VDC
VDC
%/°C
%
OUTPUT
OUTPUT
Rated Power
Voltage
Setpoint Accuracy
Ripple & Noise
Rated Load, Nominal V
IN
BW = DC to 10MHz
BW =10Hz to 2MHz
Voltage (Over
Input Voltage Range) 1mA to Rated Current,
V
OUT
= 5V
1mA to Rated Current,
V
OUT
= 12V
1mA to Rated Current,
V
OUT
= 15V
Temperature
Coefficent
REGULATION
Load Regulation (All other modes)
Rated Load to 1mA Load
GENERAL
ISOLATION
Rated Voltage
Test Voltage
60 Hz, 60 Seconds
Resistance
Capacitance
Leakage Current
V
ISO
= 240VAC, 60Hz
Switching Frequency
Frequency Change
Over Line and Load
Package Weight
MTTF per MIL-HDBK-217, Rev. F*
Circuit Stress Method
Ground Benign
T
A
= +25°C
TEMPERATURE
Specification
Operation
Storage
150
30
4.75
11.40
14.25
.01
3
1000
3000
10
25
2
170
24
100
7
GENERAL
3
7.9
-25
-40
-40
+25
+85
+100
+110
VDC
Vpk
GΩ
pF
µArms
kHz
%
g
MHr
°C
°C
°C
SOLDERING INFORMATION
The HPR4XXC devices are intended for wave soldering or manual soldering.
They are not intended to be subject to surface mount processes under any circumstances.
The normal wave soldering process can be used with these devices where the device is subjected
to a maximum wave temperature of 260°C for a period of no more than 10 seconds. Within this
time and temperature range, the integrity of the device’s plastic body will not be compromised and
internal temperatures within the converter will not exceed 175°C. Care should be taken to control
manual soldering limits identical to that of wave soldering.
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2017-04-19 TDC_HPR4xxC.F02
Page 2 of 4
HPR4XXC
0.75 Watt Miniature SIP DC/DC Converter
Specifications are at T
A
= +25°C nominal input voltage and nominal load.
VOUT VS LOAD
(5Vout Models)
5.7
5.5
Vout
Vout
5.3
5.1
4.9
5.4
5.2
Vout
5.0
4.8
4.6
120
160
0
20
40
60
80
Output Current each load (mA)
VOUT VS LOAD
(15Vout Models)
VOUT VS LOAD
(±5Vout Models)
TYPICAL PERFORMANCE CURVES
12.5
12.4
12.3
12.2
12.1
12.0
11.9
0
20
40
60
80
VOUT VS LOAD
(12Vout Models)
0
40
80
Output Current (mA)
VOUT VS LOAD
(±12Vout Models)
Output Current each load (mA)
VOUT VS LOAD
(±15Vout Models)
12.6
12.5
12.4
Vout
12.3
12.2
12.1
12.0
0
15.9
15.7
Vout
16.5
16.0
15.5
Vout
15.0
14.5
14.0
15.5
15.3
15.1
10
20
30
40
14.9
0
20
40
60
80
13.5
0
0.2
0.4
0.6
0.8
1.0
Output Current each load (mA)
EFFICIENCY VS LOAD
90
Frequency (KHz)
75
Efficiency (%)
60
45
30
15
0
0
20
40
60
80
100
220
200
180
160
140
Output Current each load (mA)
OSCILLATION FREQUENCY VS
TEMPERATURE
Output Power each load (Watts)
-30
0
30
Temperature (°C)
60
90
% of Rated Load (%)
SAFE OPERATING AREA
600
LOAD CAPACITANCE vs INPUT RISE TIME
(5 Vout models)
60
LOAD CAPACITANCE vs INPUT RISE TIME
(15 Vout models)
500
50
Total Load Capacitance (uF)
Total Load Capacitance (uF)
400
40
300
30
SAFE OPERATING AREA
200
SAFE OPERATING AREA
20
100
10
0
0
5
10
15
20
25
30
35
Rise Time of Input Voltage (mS)
40
45
50
0
0
5
10
15
20
25
30
35
40
45
50
Rise Time of Input Voltage (mS)
90
LOAD CAPACITANCE vs INPUT RISE TIME
(12 Vout models)
Total Load Capacitance (uF)
80
70
60
50
40
30
20
10
0
0
5
10
15
20
25
30
35
40
45
50
Rise Time of Input Voltage (mS)
SAFE OPERATING AREA
NOTES:
1.) When operated within the SAFE OPERATING AREA as defined by the above curves, the
output voltage of HPR4XXC devices is guaranteed to be within 95% of its steady-state
value within 100 milliseconds after the input voltage has reached 95% of its steady-
state value.
2.) For dual output models, total load capacitance is the sum of the capacitances on the
plus and minus outputs.
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2017-04-19 TDC_HPR4xxC.F02
Page 3 of 4
HPR4XXC
0.75 Watt Miniature SIP DC/DC Converter
MECHANICAL
0.77±0.010"
(19.56±0.25)
FRONT
VIEW
0.240±0.010"
(6.09±0.25)
RIGHT
SIDE
VIEW
0.397±0.010"
(10.16±0.25)
1 2
0.02±0.002"
(0.51±0.05)
5 6 7
0.18±0.015"
(4.57±0.38)
0.020±0.010"
(0.51±0.25)
0.140"
MIN
(3.56)
0.010±0.002"
(0.25±0.05)
0.035±0.015"
(0.89±0.38)
BOTTOM
VIEW
PIN CONNECTIONS
1.
+VIN
2.
-VIN
5.
-VOUT
6.
COM*
7.
+VOUT
*Common pin not present on
single output models.
Notes:
All dimensions are in inches (millimeters).
GRID: 0.100 inches (2.54 millimeters)
PIN PLACEMENT TOLERANCE: ± 0.015”
MATERIAL: Lead material is phosphor
bronze; lead
finish
is 100-300 microinches
of matte tin over a barrier layer of 5-40 mi-
croinches of nickel.
ABSOLUTE MAXIMUM RATINGS
Internal Power Dissipation ...................................450mW
ShortCircuitDuration ............................................Momentary
Lead Temperature (soldering, 10 seconds max ...+300°C*)
*NOTE: Refer to Reflow Profile for SMD Models.
:
ORDERING INFORMATION
Device Family
HPR Indicates DC/DC Converter
Model Number
Selected from Table of Electrical Characteristics
RoHS Compliant Version
HPR
4XX
C
Murata Power Solutions, Inc.
11 Cabot Boulevard, Mansfield, MA 02048-1151 U.S.A.
ISO 9001 and 14001 REGISTERED
This product is subject to the following
operating requirements
and the
Life and Safety Critical Application Sales Policy:
Refer to:
http://www.murata-ps.com/requirements/
Murata Power Solutions, Inc. makes no representation that the use of its products in the circuits described herein, or the use of other
technical information contained herein, will not infringe upon existing or future patent rights. The descriptions contained herein do not imply
the granting of licenses to make, use, or sell equipment constructed in accordance therewith. Specifications are subject to change without
notice.
© 2017 Murata Power Solutions, Inc.
www.murata-ps.com/support
2017-04-19 TDC_HPR4xxC.F02
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