AV60C-048L-050F06-8 Emerson Network Power, AV60C-048L-050F06-8 Datasheet - Page 17

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AV60C-048L-050F06-8

Manufacturer Part Number
AV60C-048L-050F06-8
Description
CONV DC-DC 30W 48VIN 5V POS-EN
Manufacturer
Emerson Network Power
Series
AV60Cr
Type
Point of Load (POL) Non-Isolatedr
Datasheet

Specifications of AV60C-048L-050F06-8

Output
5V
Number Of Outputs
1
Power (watts)
30W
Mounting Type
Through Hole
Voltage - Input
36 ~ 75V
Package / Case
9-DIP Module, 1/2 Brick
1st Output
5 VDC @ 6A
Size / Dimension
2.40" L x 2.28" W x 0.50" H (61mm x 57.9mm x 12.7mm)
Power (watts) - Rated
30W
Operating Temperature
-40°C ~ 100°C
Efficiency
87%
Approvals
CSA, EN, UL
3rd Output
-
2nd Output
-
Other names
AV60C-048L050F068
TEL:
FAX:
USA
1-760-930-4600
1-760-930-0698
quately sized cabling is used. When this is not
possible, the converter can compensate for a
drop of up to 0.25V per lead, or a total of 0.5V,
through use of the sense leads.
When used, the + and - sense leads should be
connected from the converter to the point of
load as shown in Figure 8 using twisted pair
wire. The converter will then regulate its output
voltage at the point where the leads are con-
nected. Care should be taken not to reverse the
sense leads. If reversed, the converter will trig-
ger OVP protection. When not used, the
+Sense lead must be connected with +Vo, and
-Sense with -Vo. Also note that the output volt-
age and the remote sense voltage offset must
be less than the minimum overvoltage trip
point.
Note that at elevated output voltages the
maximum power rating of the module
remains the same, and the output current
capability will decrease correspondingly.
Output T
Users can increase or decrease the output volt-
age set point of a module 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.
Output T
+Sense
-Sense
+V
Fig.8 Sense Connections
-V
rimming
rimming
out
out
Twisted Pair
A A
A A
V V
V V
Europe
44-(0)1384-842-211
44-(0)1384-843-355
6 6
6 6
3 3
3 3
0 0
0 0
6 6
6 6
C C
C C
V V
V V
D D
D D
H H
H H
C C
C C
a a
a a
l l
l l
t t
t t
f f
f f
o o
o o
+S
-
-
-S
Load
B B
B B
7 7
7 7
r r
r r
5 5
5 5
i i
i i
c c
c c
V V
V V
k k
k k
D D
D D
S S
S S
C C
C C
i i
i i
z z
z z
I I
Asia
852-2437-9662
852-2402-4426
I I
n n
n n
e e
e e
p p
p p
D D
D D
u u
u u
C C
C C
t t
Trimming up by more than 10% of the nominal
output may damage the converter. Trimming
down more than 20% can cause the converter
to regulate improperly. Trim down and trim up
circuits and the corresponding configuration are
shown in Figure 9 to Figure 13.
The circuits and test results for the trim up and
trim down configurations are displayed as fol-
lowing:
t t
, ,
, ,
-
-
R
where y is the adjusting percentage of the voltage.
0 < y < 10
R
D D
D D
3 3
R
where y is the adjusting percentage of the voltage.
0 < y < 10
R
3 3
adj-up
adj-up
adj-up
V
CNT
CASE
V
0 0
adj-up
C C
0 0
V
CNT
CASE
V
C C
I
I
(+)
(–)
I
I
W W
(+)
(–)
Fig.9 3.3V Output Trim Up Circuit
W W
Fig.10 5V Output Trim Up Circuit
is in k .
C C
is in k .
C C
=
=
O O
o o
O O
(
o o
(
n n
n n
u u
www.astec.com
u u
Vo,nom
Vo,nom
2.5
v v
v v
1.25
t t
SENSE(+)
SENSE(–)
t t
SENSE(+)
SENSE(–)
p p
e e
p p
e e
u u
r r
u u
r r
V
TRIM
V
t t
t t
V
TRIM
V
t t
t t
O
e e
O
e e
O
O
-1
(+)
-1
(–)
(+)
(–)
r r
r r
s s
s s
)
)
(
(
1 + y/100
1 + y/100
y/100
y/100
)
)
R
R
10
10
adj-up
adj-up
R
R
LOAD
LOAD
-17-

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