OBSOLETE PRODUCT
Contact Factory for Replacement Model
Product Data Sheet
SIP DC/DC CONVERTER
HPR10XX
DESCRIPTION
The HPR10XX Series uses advanced circuit design and packag-
ing technology 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
HPR10XX Series with high frequency isolation amplifiers.
Reduced parts count and high efficiency add to the reliability
of the HPR10XX Series. The high efficiency of the HPR10XX
Series means less internal power dissipation, as low as 190mW.
With reduced heat dissipation the HPR10XX Series can operate
at higher temperatures with no degradation. In addition, the high
efficiency of the HPR10XX Series means the series is able to
offer greater than 13 W/inch3 of output power density. Opera-
tion down to no load will not impact the reliability of the series,
although a 1mA minimum load is needed to realize published
specifications.
FEATURES
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LOW COST
SINGLE-IN-LINE PACKAGE (SIP)
INTERNAL INPUT AND OUTPUT FILTERING
NON-CONDUCTIVE CASE
HIGH OUTPUT POWER DENSITY:
13 WATTS/INCH3
TheHPR10XXSeriesprovidestheuserlowcostwithoutsacrific-
ing reliability.The use of surface mounted devices and advanced
manufacturing technologies make it possible to offer premium
performance and low cost.
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EXTENDED TEMPERATURE RANGE:
-25°C TO +65°C
HIGH EFFICIENCY: TO 72% TYPICAL
MECHANICAL
FRONT
VIEW
Notes: All dimensions are in inches (millimeters).
GRID: 0.100 inches (2.54 millimeters)
RIGHT
PIN PLACEMENT TOLERANCE: 0.015ꢀ
HPR10XX
SIDE
VIEW
PIN CONNECTIONS
1. +VIN 2. -VIN
BOTTOM
VIEW
4. -VOUT 5. COM*
6. +VOUT
* Common pin not present on single output models.
Internet: http://www.cd4power.com
Power Electronics Division, United States
3400 E Britannia Drive, Tucson, Arizona 85706
Phone: 520.295.4100 Fax: 520.770.9369
Power Electronics Division, Europe
C&D Technologies (Power Electronics) Ltd.
132 Shannon Industrial Estate, Shannon, Co. Clare, Ireland
Tel: +353.61.474.133 Fax:+353.61.474.141
HPR10XX REV D 8/2007
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