PKM2515EPI Ericsson Power Modules, PKM2515EPI Datasheet - Page 24

DC/DC Converters & Regulators 15Vdc 3.3A Isolated Input 18-36V 50W

PKM2515EPI

Manufacturer Part Number
PKM2515EPI
Description
DC/DC Converters & Regulators 15Vdc 3.3A Isolated Input 18-36V 50W
Manufacturer
Ericsson Power Modules
Series
PKM-Er
Datasheet

Specifications of PKM2515EPI

Output Power
50 W
Input Voltage Range
18 V to 36 V
Number Of Outputs
1
Output Voltage (channel 1)
15 V
Output Current (channel 1)
3.3 A
Package / Case Size
Quarter Brick
Output Type
Isolated
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
PKM2515EPI
Manufacturer:
Ericsson
Quantity:
12 000
Part Number:
PKM2515EPIHS
Manufacturer:
Ericsson
Quantity:
12 000
Part Number:
PKM2515EPIPLA
Manufacturer:
POWEREX
Quantity:
1 000
Delivery Package Information
PKM 2000E series standard delivery packages are 100 or 20
pcs boxes (One box contains 5 or 1 full tray(s)
and 1 empty hold down tray) .
Tray Specification
Material:
Max surface resistance:
Color:
Capacity:
Loaded tray stacking pitch:
Weight:
The products are compatible with the relevant clauses
and requirements of the RoHS directive 2002/95/EC and
have a maximum concentration value of 0 .1% by weight
in homogeneous materials for lead, mercury, hexavalent
chromium, PBB and PBDE and of 0 .01% by weight in
homogeneous materials for cadmium .
Exemptions in the RoHS directive utilized in Ericsson Power
Modules products include:
• Lead in high melting temperature type solder (used to
solder the die in semiconductor packages)
• Lead in glass of electronics components and in electronic
ceramic parts (e .g . fill material in chip resistors)
• Lead as an alloying element in copper alloy containing up to
4% lead by weight (used in connection pins made of Brass)
Compatibility with RoHS requirements
PKM 2000E PI Datasheet
Soldering Information
The PKM2000E Series DC/DC converters are intended for
through hole mounting on a PCB . When wave soldering
is used max temperature on the pins is specified to
260°C for 10 seconds . Maximum preheat rate of 4°C/s
and temperature of max 130°C is suggested . When hand
soldering, care should be taken to avoid direct contact
between the hot soldering iron tip and the pins for more
than a few seconds in order to prevent overheating .
No-clean flux is recommended to avoid entrapment of
cleaning fluids in cavities inside of the DC/DC power
module . The residues may affect long time reliability and
isolation voltage .
Polystyrene (PS)
10 MOhm/sq
Black
20 pcs/tray
16 .2 mm (0 .64 In)
133 g

Reliability
The Mean Time Between Failure (MTBF) of the PKM2000E
Series DC/DC converter is calculated at full output power
and an operating ambient temperature (TA) of +40°C .
Different methods could be used to calculate the predicted
MTBF and failure rate which may give different results .
Ericsson Power Modules currently uses two different
methods, Ericsson failure rate data system DependTool and
Telcordia SR332 .
Predicted MTBF for the PKM2000E Series products is:
The Ericsson failure rate data system is based on field
tracking data . The data corresponds to actual failure rates
of components used in Information Technology and Telecom
(IT&T) equipment in temperature controlled environments (TA
= -5 . . .+65°C) . Telcordia SR332 is a commonly used standard
method intended for reliability calculations in IT&T
equipment .The parts count procedure used in this method
was originally modeled on the methods from MIL-HDBK-
217F, ReliabilityPredictions of Electronic Equipment . It
assumes that no reliability data is available on the actual
units and devices for which the predictions are to be
made, i .e . all predictions are based on generic reliability
parameters .equipment . For more information please refer to
Design Note 002 .
7 .0 million hours according to DependTool .
1 .6 million hours according to Telcordia SR332, issue 1,
Black box techique .
EN/LZT 146 050 R4A © Ericsson Power Modules, March 2007
For more information please refer to
based on generic reliability

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