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ARH2802R5S Datasheet(PDF) 8 Page - International Rectifier

Part # ARH2802R5S
Description  HYBRID - HIGH RELIABILITY RADIATION HARDENED DC/DC CONVERTERS
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Manufacturer  IRF [International Rectifier]
Direct Link  http://www.irf.com
Logo IRF - International Rectifier

ARH2802R5S Datasheet(HTML) 8 Page - International Rectifier

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ARH28XXS Series
trade name of Sil-Pad® 4001. This particular product is an
insulator but electrically conductive versions are also
available. Use of these materials assures optimum surface
contact with the heat dissipater by compensating for minor
surface variations. While other available types of heat
conducting materials and thermal compounds provide
similar effectiveness, these alternatives are often less
convenient and are sometimes messy to use.
A conservative aid to estimating the total heat sink surface
area (AHEAT SINK) required to set the maximum case
temperature rise (DT) above ambient temperature is given
by the following expression:
∆T
PP
Eff
OUT
=
==
Case temperature rise above ambient
Device dissipation in Watts
1
1
where
A HEAT SINK
≈ ⎧⎨
∆T
P
80
594
085
143
.
.
.
As an example, assume that it is desired to maintain the
case temperature of an ARH2815S at +65°C or less while
operating in an open area whose ambient temperature
does not exceed +35°C; then
∆T = 65 - 35 = 35°C.
From the Specification Table, the worst case full load
efficiency for this device is 80%; therefore the maximum
power dissipation at full load is given by
()
P
=•
=•
=
30
1
80
130
0 25
7 5
.
.. W
and the required heat sink area is
A
=
35
80 7.5
in
HEAT SINK
0.85
−=
−143
2
594
318
.
..
Thus, a total heat sink surface area (including fins, if any)
of approximately 32 in2 in this example, would limit case
rise to 35°C above ambient. A flat aluminum plate, 0.25"
thick and of approximate dimension 4" by 4" (16 in2 per
side) would suffice for this application in a still air
environment. Note that to meet the criteria, both sides of
the plate require unrestricted exposure to the ambient air.
The user should remember that when operating in the
vacuum of space, this method does not apply and all heat
must be conducted away from the attaching surface.
1Sil-Pad is a registered Trade Mark of Bergquist, Minneapolis, MN
As an alternative to application and removal of the DC
voltage at the input, the user can control the converter
output by providing an input referenced, TTL compatible,
logic signal to the enable pin 3. This port is internally pulled
“high” so that when not used, an open connection on the
pin permits normal converter operation. When inhibited
outputs are desired, a logical “low” on this port will shut the
converter down. An open collector device capable of
sinking at least 100 µA connected to enable pin 3 will work
well in this application.
Inhibiting Converter Output
A benefit of utilization of the enable input is that following an
initial charge of the input capacitor, subsequent turn-on
commands will induce no uncontrolled current inrush.
Figure II.
Enable Input Equivalent Circuit
Synchronization
When using multiple converters, system requirements may
dictate operating several converters at a common system
frequency. To accommodate this requirement, the
ARH28XXS type converter provides a synchronization
input port.
The sync input port permits synchronization of an ARH
converter to any compatible external frequency source
operating in the band of 225 to 310 KHz. In the event of
failure of an external synchronization source, the converter
will revert to its own internally set frequency. When external
synchronization is not desired, the sync in port may be left
open (unconnected) permitting the converter to operate at
its own internally set frequency.


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