QW050F1 Lineage Power, QW050F1 Datasheet - Page 10

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QW050F1

Manufacturer Part Number
QW050F1
Description
CONVERTER DC/DC 3.3V 33W OUT
Manufacturer
Lineage Power
Series
QWr
Type
Isolated with Remote On/Offr
Datasheet

Specifications of QW050F1

Output
3.3V
Number Of Outputs
1
Power (watts)
33W
Mounting Type
Through Hole
Voltage - Input
36 ~ 75V
Package / Case
8-DIP Module
1st Output
3.3 VDC @ 10A
Size / Dimension
2.28" L x 1.45" W x 0.50" H (57.9mm x 36.8mm x 12.7mm)
Power (watts) - Rated
33W
Operating Temperature
-40°C ~ 100°C
Efficiency
81%
Approvals
CE, CSA, UL, VDE
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
3rd Output
-
2nd Output
-
4th Output
-

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dc-dc Converters; 36 to 75 Vdc Input, 3.3 Vdc Output; 33 W to 50 W
Feature Descriptions
Remote On/Off
Figure 17. Effective Circuit Configuration for
Output Voltage Set-Point Adjustment (Trim)
Output voltage trim allows the user to increase or
decrease the output voltage set point of a module. This
is accomplished by connecting an external resistor
between the TRIM pin and either the SENSE(+) or
SENSE(–) pins. The trim resistor should be positioned
close to the module.
If not using the trim feature, leave the TRIM pin open.
With an external resistor between the TRIM and
SENSE(–) pins (R
(V
tion determines the required external-resistor value to
obtain a percentage output voltage change of ý%.
The test results for this configuration are displayed in
Figure 19. This figure applies to all output voltages.
With an external resistor connected between the TRIM
and SENSE(+) pins (R
point (V
The following equation determines the required exter-
nal-resistor value to obtain a percentage output voltage
change of ý%.
The test results for this configuration are displayed in
Figure 21.
The voltage between the V
must not exceed the minimum output overvoltage pro-
tection value shown in the Feature Specifications table.
This limit includes any increase in voltage due to
remote-sense compensation and output voltage set-
10
10
O, adj
R
R
SUPPLY
RESISTANCE
adj-down
adj-up
) decreases (see Figure 18). The following equa-
CONTACT
O, adj
=
Single-Module Remote-Sense Operation
) increases (see Figure 20).
I
=
I
5.1V
---------------------------------------------- -
510
--------- - 10.2
Δ%
adj-down
V
V
1.225Δ%
O
(continued)
I
I
(+)
(-)
(
100
adj-up
SENSE(+)
SENSE(–)
), the output voltage set point
V
+
V
O
), the output voltage set
O
O
(+) and V
(+)
Δ%
(–)
(continued)
)
DISTRIBUTION LOSSES
510
--------- -
I
Δ%
O
CONTACT AND
O
(–) terminals
10.2
LOAD
⎞ kΩ
8-651 (C).m
point adjustment (trim). See Figure 17.
Although the output voltage can be increased by both
the remote sense and by the trim, the maximum
increase for the output voltage is not the sum of both.
The maximum increase is the larger of either the
remote sense or the trim. Consult the factory if you
need to increase the output voltage more than the
above limitation.
The amount of power delivered by the module is
defined as the voltage at the output terminals multiplied
by the output current. When using remote sense and
trim, the output voltage of the module can be
increased, which at the same output current would
increase the power output of the module. Care should
be taken to ensure that the maximum output power of
the module remains at or below the maximum rated
power.
Figure 18. Circuit Configuration to Decrease
Figure 19. Resistor Selection for Decreased
100k
10k
1M
1k
V
ON/OFF
CASE
V
I
I
(+)
(–)
0
Output Voltage
Output Voltage
% CHANGE IN OUTPUT VOLTAGE (Δ %)
SENSE(+)
SENSE(–)
10
V
TRIM
V
O
O
(+)
(–)
20
R
adj-down
Lineage Power
30
April 2008
R
LOAD
8-748 (C).b
8-2579 (C)
40

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