PKB4713PINB Ericsson Power Modules, PKB4713PINB Datasheet - Page 40

Module DC-DC 1-OUT 12V 6A 72W 8-Pin 1/8-Brick

PKB4713PINB

Manufacturer Part Number
PKB4713PINB
Description
Module DC-DC 1-OUT 12V 6A 72W 8-Pin 1/8-Brick
Manufacturer
Ericsson Power Modules
Series
PKBr
Datasheet

Specifications of PKB4713PINB

Package
81/8-Brick
Product
Isolated
Output Power
72 W
Input Voltage Range
36 V to 75 V
Number Of Outputs
1
Output Voltage (channel 1)
12 V
Output Current (channel 1)
6 A
Isolation Voltage
2.25 KV
Package / Case Size
Eighth Brick
Output Type
Isolated
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

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Company
Part Number
Manufacturer
Quantity
Price
Part Number:
PKB4713PINB
Manufacturer:
ERICSSON/爱立信
Quantity:
20 000
Part Number:
PKB4713PINBLA
Manufacturer:
YHT
Quantity:
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Operating information continued
Parallel Operation
Two converters may be paralleled for redundancy if the total
power is equal or less than P
parallel the converters without using external current sharing
circuits.
See Design Note 006 for detailed information.
Remote Sense
The DC/DC converters have remote sense that can be used
to compensate for voltage drops between the output and the
point of load. The sense traces should be located close to the
PCB ground layer to reduce noise susceptibility. The remote
sense circuitry will compensate for up to 10% voltage drop
between output pins and the point of load.
If the remote sense is not needed +Sense should be
connected to +Out and -Sense should be connected to -Out.
Over Temperature Protection (OTP)
The converters are protected from thermal overload by the
control IC.
When T
exceeds 135°C the converter will shut down. The DC/DC
converter will make continuous attempts to start up (non-
latching mode) and resume normal operation automatically
when the temperature has dropped >10°C below the
temperature threshold.
Over Voltage Protection (OVP)
The converters have output over voltage protection that will
shut down the converter in over voltage conditions. The
converter will make continuous attempts to start up (non-
latching mode) and resume normal operation automatically
after removal of the over voltage condition.
Over Current Protection (OCP)
The converters include current limiting circuitry for protection
at continuous overload.
The output voltage will decrease towards zero for output
currents in excess of max output current (max I
converter will resume normal operation after removal of the
overload. The load distribution should be designed for the
maximum output short circuit current specified.
Prepared (also subject responsible if other)
EJUNGYA
Approved
SEC/D (Julia You)
PKB 4000 series
DC/DC converters, Input 36-75 V, Output 30 A/90 W
ref
as defined in thermal consideration section
O
max. It is not recommended to
O
). The
Checked
ESHUHAN
Thermal Consideration
General
The converters are designed to operate in different thermal
environments and sufficient cooling must be provided to
ensure reliable operation.
Cooling is achieved mainly by conduction, from the pins to
the host board, and convection, which is dependant on the
airflow across the converter. Increased airflow enhances the
cooling of the converter.
The Output Current Derating graph found in the Output
section for each model provides the available output current
vs. ambient air temperature and air velocity at V
The DC/DC converter is tested on a 254 x 254 mm,
35 µm (1 oz), 8-layer test board mounted vertically in a wind
tunnel with a cross-section of 305 x 305 mm.
Proper cooling of the DC/DC converter can be verified by
measuring the temperature at positions P1, P2 and P3. The
temperature at these positions should not exceed the max
values provided in the table below.
Note that the max value is the absolute maximum rating
(non destruction) and that the electrical Output data is
guaranteed up to T
See Design Note 019 for further information.
PRODUCT SPECIFICATION
No.
3/1301-BMR 636 Uen
Date
2008-1-11
Position
P
P
P
1
2
3
Device
Pcb
Mosfet
Mosfet
Technical Specifi cation
EN/LZT 146 394 R5A August 2009
© Ericsson AB
Rev
A
ref
+90°C.
Designation
T
ref
Reference
max value
110º C
120º C
120º C
in
= 53 V.
3 (5)
40

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