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IRVRM2 数据表(PDF) 7 Page - International Rectifier

部件名 IRVRM2
功能描述  Pentium II1 Power Supply Design Specification
PDF  8 Pages
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制造商  IRF [International Rectifier]
网页  http://www.irf.com
标志 IRF - International Rectifier

IRVRM2 数据表(HTML) 7 Page - International Rectifier

  IRVRM2 Datasheet HTML 1Page - International Rectifier IRVRM2 Datasheet HTML 2Page - International Rectifier IRVRM2 Datasheet HTML 3Page - International Rectifier IRVRM2 Datasheet HTML 4Page - International Rectifier IRVRM2 Datasheet HTML 5Page - International Rectifier IRVRM2 Datasheet HTML 6Page - International Rectifier IRVRM2 Datasheet HTML 7Page - International Rectifier IRVRM2 Datasheet HTML 8Page - International Rectifier  
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7
IRVRM2
Dynamic Performance (continued)
Rectifier
International
Fig 23. Rising Input current without L2
Fig 25. Falling Input Current without L2
Fig 24. Input di/dt Test Circuit
Fig 21. Rising Input Current Waveform
Input di/dt During Transient Load
Intel’s specification recommends a
maximum input di/dt during transient load
of 0.1A/µs. IRVRM2 readily meets this
specification at rising and falling edges of
input current.
Fig 22. Falling Input Current Waveform
Transient measurements were taken with
1µH of total line inductance between the
input power supply and IRVRM2.
This
approximately
simulates
total
path
inductance from the silver box to the VRM
board in a typical computer system.
IRVRM2 has an input inductance of 0.5µH
(L2) to limit input di/dt to the Intel
recommended 0.1A/µs.
Transient Load At VRM2
Performance at 100kHz is dominated by
stray output inductance and resistance.
These are a combination of output capacitor
ESL & ESR and board + connector
inductance & resistance.
Performance at 100Hz exhibits the same rise
& fall characteristics as at 100kHz. Setting
the oscilloscope so as to see the whole
waveform,
however,
reveals
any
undersirable loop characteristics.
As
shown, IRVRM2 is very well behaved at
both 100Hz and 100kHz.
Fig 19. 100 Hz Transient Output Voltage
Fig 20. 100 kHz Transient Output Voltage
Limit
100Hz
100kHz
Min
2.66V
2.706
2.670
Max
2.94V
2.842
2.834
Limit
Rising Falling
L2 = 0.5µH
.1A/µs
0.074
0.087
L2 = 0.0µH
.1A/µs
0.09
0.108



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