Limited Internal
PRODUCT SPECIFICATION
4 (5)
Prepared (also subject responsible if other)
No.
MICOSPE
2/1301-BMR 637 01/3 Uen
Approved
Checked
Date
Rev
Reference
MPM/BM/Y (Maria Rosendahl)
(MICJAKE)
2006-09-12
F
Place your
graph here
Place your
graph here
Place your
graph here
5.0 V Typical Characteristics
PKM 4211C PINB
Start-up
Shut-down
Start-up enabled by connecting V
I at:
Tref = +25°C, IO = 40 A resistive load,
VI = 53 V.
Top trace: output voltage (2 V/div.).
Bottom trace: input voltage (20 V/div.).
Time scale: 5 ms/div..
Shut-down enabled by disconnecting V
I at:
Tref = +25°C, IO = 4 A resistive load,
Output voltage: 2 V/div
Time scale: 2 ms/div.
Output Ripple & Noise
Output Load Transient Response
Output voltage ripple (20mV/div.) at:
Tref = +25°C, IO = 40 A resistive load,
VI = {53 V}. Time scale: 2 s/div.
See the filter in the Output ripple and noise
section (EMC Specification).
Output voltage response to load current step-
change (10-30-10 A) at:
Tref =+25°C, VI = 53 V.
Top trace: output voltage (500mV/div.).
Bottom trace: load current (10 A/div.).
Time scale: {0.1 ms/div.}.
Output Voltage Adjust (see operating information)
Passive trim
The resistor value for an adjusted output voltage is calculated by using
the following equations:
Output Voltage Adjust Upwards, Increase:
Radj= 5.11((5(100+%))/1.225%-(100+2%)/%) kOhm
Eg Increase 4% =>Vout =5.2 Vdc
5.11(5(100+4)/1.225x4-(100+2x4)/4 = 404 kOhm0
Output Voltage Adjust Downwards, Decrease:
Radj= 5.11(100/%-2) kOhm
Eg Decrease 2% =>Vout = 4.90 Vdc
5.11(100/2-2)= 245 kOhm
The PKM4000C series DC/DC converters can be
offered with a baseplate. Baseplate helps to cool
hotspots more efficient during heavy load. The
baseplate have approximately 5°C improved
derating compared to datasheet showing non
baseplated PKM4000C. The baseplate is intended
to be mounted on a cold wall to transfer heat
away from the converter. By mounting PKM4000C
in this way thermal derating can be improved by
more than 10°C .
E
PKM 4000C PINB Series
DC/DC converters, Input 36-75 V, Output 55 A/204 W
EN/LZT 146 307 R4A August 2008
Ericsson Power Modules AB
Technical Specification
13