HPR1XX REV M 4/03 1
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The HPR1XX Series uses advanced
circuit design and packaging technol-
ogy to deliver superior reliability and
performance. A 170kHz push-pull
oscillator is used in the input stage.
Beat-frequency oscillation problems are
reduced when using the HPR1XX Series
with high frequency isolation amplifiers.
Reduced parts count and high
efficiency add to the reliability of the
HPR1XX Series. The high efficiency of
the HPR1XX Series means less internal
power dissipation, as low as 190mW.
With reduced heat dissipation the
HPR1XX Series can operate at higher
temperatures with no degradation. In
addition, the high efficiency of the
HPR1XX Series means the series is able
to offer greater than 10 W/inch3 of
output power density. Operation down
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Product: www.cdpoweronline.com
to no load will not impact the reliability
of the series, although a >1mA minimum
load is needed to realize published
specifications.
The HPR1XX Series provides the user
a low cost converter without sacrificing
reliability. The use of surface mounted
devices and advanced manufacturing
technologies make it possible to offer
premium performance and low cost.
NOMINAL RATED RATED INPUT CURRENT REFLECTED
INPUT OUTPUT OUTPUT RIPPLE
VOLTAGE VOLTAGE CURRENT NO LOAD RATED LOAD CURRENT EFFICIENCY
MODEL (VDC) (VDC) (mA) (mA) (mA) (mAp-p) (%)
HPR100 5 5 150 20 216 10 69
HPR101 5 12 62 2 0 212 5 7 0
HPR102 5 15 50 2 0 212 5 7 1
HPR103 5 ±5 ±75 20 218 5 68
HPR104 5 ± 12 ±30 2 0 212 5 6 8
HPR105 5 ± 15 ±25 2 0 200 5 7 5
HPR106 12 5 150 10 90 5 6 9
HPR107 12 12 62 1 0 81 5 77
HPR108 12 15 50 1 0 81 5 77
HPR109 12 ±5 ±75 10 88 5 71
HPR110 12 ±1 2 ±30 10 81 5 74
HPR111 12 ±1 5 ±25 10 81 5 77
HPR112 15 5 150 8 72 5 69
HPR113 15 12 62 8 72 5 69
HPR114 15 15 50 8 72 5 69
HPR115 15 ±5 ±75 8 72 5 69
HPR116 15 ±1 2 ±30 8 63 5 76
HPR117 15 ±1 5 ±25 8 63 5 79
HPR118 24 5 150 8 48 15 65
HPR119 24 12 62 8 48 15 65
HPR120 24 15 50 8 45 15 76
HPR121 24 ±5 ±75 8 45 15 69
HPR122 24 ±1 2 ±30 8 45 15 67
HPR123 24 ±1 5 ±25 8 45 15 69
Note: Other input to output voltages may be available. Please contact factory.
PRODUCT SELECTION CHART
0.75 Watt Single Output DC/DC Converter
HPR1XX
Low Cost
Multiple Package Styles
Internal Input and Output
Filtering
Non-Conductive Case
High Output Power Density:
10 Watts/Inch3
Extended Temperature Range:
-25°C to +85°C
Efficiency to 79%
SPECIFICATIONS All specifications are typical at TA = +25°C nominal input voltage unless otherwise specified.
HPR1XX REV M 4/03 2
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50
100
150
200
250
TEMPERATURE (°C)
TIME (seconds)
235 °C MAX
220
190
30 sec MAX
(>220°C)
90 sec MAX
(>190°C)
0.730"
(18.54)
0.650"
(16.51)
0.100"
(2.54)
0.080"
(2.03)
0.040"
(1.02)
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RECOMMENDED REFLOW PROFILERECOMMENDED LAND P A TTERN
SPECIFICATIONS, ALL MODELS
Specifications are at TA = +25°C nominal input voltage unless otherwise specified.
GENERAL OUTPUT INPUT
PARAMETER CONDITIONS MIN TYP MAX UNITS
INPUT
Voltage Range 4.5 5 5 .5 VDC
10.8 12 13.2 VDC
13.5 15 16.5 VDC
21.6 24 26.4 VDC
Voltage Rise Time See Typical Performance Curves & Application Notes: "Capacitive Loading Effects on Start-Up of DC/DC Converters"
OUTPUT
Rated Power 750 mW
Voltage Setpoint Accuracy Rated Load, Nominal VIN ±5 %
Ripple & Noise BW = DC to 10MHz 45 mVp-p
BW =10Hz to 2MHz 30 mVrms
HPR103 BW = DC to 10MHz 90 mVp-p
Voltage (Over Input Voltage Range) 1mA Load, VOUT = 5V 7 VDC
1mA Load, VOUT = 12V 15 VDC
1mA Load, VOUT = 15V 18 VDC
Temperature Coefficent .01 %/°C
REGULATION
Line Regulation High Line to Low Line 1 %/%Vin
GENERAL
ISOLATION
Rated Voltage 750 VDC
Test Voltage 60 Hz, 10 Seconds 75 0 Vrms (1060pk)
Resistance 10 G
Capacitance 25 100 pF
Leakage Current VISO= 240VAC, 60Hz 2 8.5 µArms
Switching Frequency 170 kHz
Frequency Change Over Line and Load 24 %
Package Weight 2 g
MTTF per MIL-HDBK-217, Rev. E* Circuit Stress Method
Ground Benign TA = +25°C 7.9 MHr
Fixed Ground TA = +35°C 1.9 M Hr
Naval Sheltered TA = +35°C 1.2 MHr
Airborne Uninhabited Fighter TA = +35°C 300 kHr
TEMPERATURE
Specification -25 +25 +85 °C
Operation -40 +100 °C
Storage -40 +110 °C
* For demonstrated MTTF results reference: Power Convertibles Reliability Report HPR105.
HPR1XX REV M 4/03 3
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VOUT VS LOAD
(5Vout Models) VOUT VS LOAD
(±5Vout Models) VOUT VS LOAD
(12Vout Models)
VOUT VS LOAD
(±12Vout Models) VOUT VS LOAD
(15Vout Models) VOUT VS LOAD
(±15Vout Models)
0 40 120 160
5.3
5.5
5.7
4.9
5.1
020406080
11.9
12.0
12.1
12.2
12.3
12.4
020406080
4.6
4.8
5.0
5.2
5.4
010203040
12.0
12.1
12.2
12.3
12.4
12.5
14.9
15.1
15.3
15.5
15.7
15.9
020406080 0
13.5
14.0
14.5
15.0
15.5
16.0
Vout
Vout
Vout
Vout
Vout
Vout Frequency (KHz)
80
Output Current (mA) Output Current each load (mA) Output Current each load (mA)
12.5
Output Current each load (mA)
12.6
Output Current each load (mA) Output Power each load (Watts)
0.2 0.4 0.6 0.8 1.0
16.5
040 80 100
60
20
90
75
60
45
30
15
0
EFFICIENCY VS LOAD
% of Rated Load (%)
Efficiency (%)
OSCILLATION FREQUENCY VS
TEMPERATURE
220
200
180
160
140-30 0 30 60 90
Temperature (°C)
SAFE OPERATING AREA
Rise Time of Input Voltage (mS)
LOAD CAPACITANCE vs INPUT RISE TIME
(5 Vout models)
Total Load Capacitance (uF)
0 5 10 15 20 25 30 35 40 45 50
600
500
400
300
200
100
0
SAFE OPERATING AREA
Rise Time of Input Voltage (mS)
LOAD CAPACITANCE vs INPUT RISE TIME
(12 Vout models)
Total Load Capacitance (uF)
0 5 10 15 20 25 30 35 40 45 50
90
80
70
60
50
40
30
20
10
0
SAFE OPERATING AREA
Rise Time of Input Voltage (mS)
LOAD CAPACITANCE vs INPUT RISE TIME
(15 Vout models)
Total Load Capacitance (uF)
0 5 10 15 20 25 30 35 40 45 50
60
50
40
30
20
10
0
NOTES:
1.) When operated within the SAFE OPERATING AREA as defined
by the above curves, the output voltage of HPR1XX 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.
Specifications are at TA = +25°C nominal input voltage, nominal load, recommended external components applied, unless
otherwise specified. (Refer to Application Note DCAN-9 at www.cdpoweronline.com)
TYPICAL PERFORMANCE CURVES
SAFE OPERATING AREA
HPR1XX REV M 4/03 4
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PIN CONNECTIONS
1. +VIN
2. -VIN
4. -VOUT
5. COM*
6. +VOUT
PACKAGE/PINOUT "V" AND "W"
0.100±0.010"
(2.54±0.25)
0.020±0.002"
(0.51±0.05)
0.015±0.005"
(0.38±0.13)
0.375±0.005"
(9.52±0.13)
0.785±0.010"
(19.94±0.25)
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0.525±0.010"
(13.34±0.25) 0.695±0.015"
(17.65±0.38)
0.014±0.002"
(0.36±0.05) .015±.010"
(.38±.26)
0.100±0.010"
(2.54±0.25)
0.020±0.002"
(0.51±0.05)
0.015±0.005"
(0.38±0.13)
0.375±0.005"
(9.52±0.13)
0°-15°0.125+0.030"
-0.000"
(3.18+0.76)
( -0.00)
0.785±0.010"
(19.94±0.25)
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0.525±0.010"
(13.34±0.25) 0.695±0.015"
(17.65±0.38)
0.600"
(15.24)
DIP PACKAGE SMD PACKAGE
END VIEWS
SIDE VIEWS
TOP VIEWS
HPR1XXV HPR1XXW
"SIP" PACKAGE/PINOUT Notes:
All dimensions are in inches (millimeters).
GRID: 0.100 inches (2.54 millimeters)
PIN PLACEMENT TOLERANCE: ± 0.015"
*Common pin not present on single output models.
FRONT
VIEW
RIGHT
SIDE
VIEW
BOTTOM
VIEW
0.77 +0.010”
(19.56 +0.25)
0.02 +0.002”
(0.51 +0.05) 0.18 +0.015”
(4.57 +0.38)
0.140”
(3.56) MIN
1 2 4 *5 6
0.400 +0.010”
(10.16 +0.25)
0.240 +0.010”
(6.09 +0.25)
0.020 +0.010”
(0.51 +0.25)
0.01 +0.002”
(0.25 +0.05)
0.035 +0.015”
(0.89 +0.38)
MECHANICAL
NOTES:
NC = Do Not Connect.
Duplicate pin functions are internally connected.
All dimensions are in inches (millimeters).
GRID: 0.100 inches (2.54 millimeters)
Internal Power Dissipation ................................. 450mW
ShortCircuitDuration ........................................... Momentary
Lead Temperature (soldering, 10 seconds max .+300°C *
* NOTE: Refer to Reflow Profile for SMD Models.
ABSOLUTE MAXIMUM RATINGS HPR 1XX V/W
Device Family
HPR Indicates DC/DC Converter
Model Number
Selected from Table of Electrical Characteristics
Package Option
There is "no" package designator for the SIP package
V = DIP Package
W = SMD Package
ORDERING INFORMATION
PIN CONNECTIONS
PIN# SINGLES DUALS
1 +VIN +VIN
2 -VIN -VIN
3NCNC
4NCNC
5 -VOUT -VOUT
6 NC Common
PIN# SINGLES DUALS
7 +VOUT +VOUT
8NCNC
9NCNC
10 NC NC
11 NC NC
13 NC NC
14 NC NC
Any data, prices, descriptions or specifications presented herein are subject to revision by C&D Technologies, Inc. without notice. While such information is believed to
be accurate as indicated herein, C&D Technologies, Inc. makes no warranty and hereby disclaims all warranties, express or implied, with regard to the accuracy or
completeness of such information. Further, because the product(s) featured herein may be used under conditions beyond its control, C&D Technologies, Inc. hereby
disclaims all warranties, either express or implied, concerning the fitness or suitability of such product(s) for any particular use or in any specific application or arising
from any course of dealing or usage of trade. The user is solely responsible for determining the suitability of the product(s) featured herein for user’s intended purpose
and in user’s specific application. C&D Technologies, Inc. does not warrant or recommend that any of its products be used in any life support or aviation or aerospace
applications.
Power Electronics Division, Americas
3400 E Britannia Drive, Tucson, Arizona 85706
Tel: 800.547.2537 Fax: 520.295.4197
C&D T echnologies, EMEA/AP
Milton Keynes MK14 5BU UK
Tel: +44 (0)1908 615232 Fax: +44 (0)1908 617545