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PDF AM1301-9R Data sheet ( Hoja de datos )

Número de pieza AM1301-9R
Descripción 50 Watt DC-DC and AC-DC Converters
Fabricantes Power-One 
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No Preview Available ! AM1301-9R Hoja de datos, Descripción, Manual

®
39
1.54"
8 TE
111
4.37"
3U
168
6.6"
M Series Data Sheet
50 Watt DC-DC and AC-DC Converters
Features
• Extremly wide operating input voltage ranges from 8 to
385 VDC and 85 to 264 VAC, 47 to 440 Hz
• RoHS lead-solder exemption compliant
• Class I equipment
• Input over- and undervoltage lockout
• 1, 2, or 3 individually isolated and controlled outputs up
to 64 V
• Outputs: SELV, no load, overload, short-circuit proof,
rectangular current limiting characteristic
• Adjustable output voltages with remote on/off
• Immunity according to IEC/EN 61000-4-2, -3, -4, -5, -6
• Emissions according to EN 55011/55022
• PCBs protected by lacquer
• Very high reliability
• Battery charger models available
Safety according to IEC/EN 60950-1 and UL/CSA 60950-1
Description
The M Series of DC-DC and AC-DC converters represents a
broad and flexible range of power supplies for use in advanced
industrial electronic systems. Features include high efficiency,
reliability, low output voltage noise and excellent dynamic
response to load/line changes due to individual regulation of
each output.
The converter inputs are protected against surges and
transients occuring at the source lines. An input over- and
undervoltage lockout circuit disables the outputs, if the input
voltage is outside the specified range. An inrush current
limitation prevents circuit breakers and fuses from tripping at
switch-on.
All outputs are open- and short-circuit proof, and are protected
against overvoltages by means of built-in suppressor diodes.
The outputs can be inhibited by a logic signal applied to the
connector (pin 2). If the inhibit function is not used, pin 2 should
be connected to pin 23 to enable the outputs.
LED indicators display the status of the converter and allow
visual monitoring of the system at any time.
Full input to output, input to case, output to case, and output to
output isolation is provided. The converters are designed and
built according to the international safety standard
IEC/EN 60950-1 and UL/CSA 60950-1, and they have been
approved by the safety agencies TÜV and UL.
The case design allows operation at nominal load up to 71 °C
in a free-air ambient temperature. If forced cooling is provided,
the ambient temperature may exceed 71 °C but the case
temperature should remain below 95 °C under all conditions.
A temperature sensor generates an inhibit signal, which
disables the outputs, when the case temperature TC exceeds
the limit. The outputs automatically recover, when the
temperature drops below the limit.
Various options are available to adapt the converters to
individual applications.
The converters may either be plugged into a 19" rack system
according to IEC 60927-3 or be mounted onto a chassis or a
plate.
Table of Contents
Page
Description ............................................................................. 1
Model Selection ..................................................................... 2
Functional Description ........................................................... 4
Electrical Input Data ............................................................... 5
Electrical Output Data ............................................................ 7
Auxiliary Functions ............................................................... 10
Electromagnetic Compatibility (EMC) .................................. 13
Page
Immunity to Environmental Conditions ................................ 15
Mechanical Data .................................................................. 16
Safety and Installation Instructions ...................................... 17
Description of Options ......................................................... 19
Accessories .......................................................................... 25
EC Declaration of Conformity .............................................. 26
BCD20018 Rev AB
Page 1 of 26
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1 page




AM1301-9R pdf
M Series Data Sheet
50 Watt DC-DC and AC-DC Converters
®
Electrical Input Data
General conditions:
TA = 25 °C, unless TC is specified.
– Connector pins 2 and 23 interconnected, R input not connected; with option P: Vo = Vo nom
Table 2a: Input data
Input
AM BM FM
Characteristics
Conditions min typ max min typ max min typ max
Vi Operating input voltage Io = 0 – Io nom 8
35 14
70 20
100
Vi nom Nominal input voltage TC min TC max
15
30 50
Ii Input current
Vi nom, Io nom 2
4.0
2.0 1.2
Pi 0 No-load input power: Vi nom
Single-output model
I o1,2,3 = 0
Double-output model
Triple-output model
1 1.5
79
69
1 1.5
79
69
1 1.5
79
69
Pi inh
Iinr p 6
tinr r
tinr h
Idle input power
Peak inrush current
Rise time
Time to half-value
inhibit mode
Vi = Vi max
RS = 0 3
TC = 25 °C
2
400
60
170
2
500
50
100
2
400
40
60
Ri Input resistance
TC = 25 °C
87.5
140
250
Ci Input capacitance
2600
4000 670
1100 370
600
V i abs Input voltage limits
without any damage
0 40 0
80 0
120
CM
min typ max
28 140
60
1.0
Unit
VDC
A
1 1.5
79
69
2
170 4
60
280
824 4
370 600
0 160
W
A
µs
m
µF
VDC
Table 2b: Input data
Input
Characteristics
Conditions
Vi Operating input voltage Io = 0 – Io nom
TC min TC max
Vi nom Nominal input voltage
Ii Input current
Pi 0 No-load input power:
Single-output model
Double-output model
Triple-output model
Pi inh
Iinr p 6
tinr r
tinr h
Ri
Ci
Vi abs
Idle input power
Peak inrush current
Rise time
Time to half-value
Input resistance
Input capacitance
Input voltage limits
without any damage
Vi nom, Io nom 2
Vi nom
Io1,2,3 = 0
inhibit mode
Vi = Vi max
RS = 0 3
TC = 25 °C
TC = 25 °C
DM
min typ max
-
44 220
110
0.55
2000 4
140
0
1 1.5
79
69
2
110 4
40
250
270
400 5
1 In AC powered mode (LM models): 47 – 440 Hz
2 With multiple-output models, the same condition for each output applies.
3 RS = source resistance.
4 Value for initial switch-on cycle.
5 1 s max., duty cycle 1% max.
6 I inr p = Vi / (Rs + Ri); see Inrush Current.
EM
min typ
-
67
220
0.275
max
385
1
7
6
40
240
2400 4
140
– 400
1.5
9
9
2
160 4
270
400
LM
min typ max
85 264
88 372
310
0.20
1
7
6
6200 4
140
– 400
0
300
900
1.5
9
9
2
60 4
270
400
284
Unit
VAC 1
VDC
A
W
A
µs
m
µF
VDC
VAC
BCD20018 Rev AB
Page 5 of 26
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5 Page





AM1301-9R arduino
M Series Data Sheet
50 Watt DC-DC and AC-DC Converters
®
R-Control for Output Voltage Adjustment
As a standard feature, single-output models without option P
offer an adjustable output voltage identified by letter R in the
type designation.
Note: With open R input, Vo = Vo nom.
The output voltage Vo can either be adjusted by an external
voltage (Vext) or by an external resistor (Rext1 or Rext2). The
adjustment range is approximative 0 – 110% of Vo nom. For
output voltages Vo > Vo nom, the minimum input voltage Vi min
specified in Electrical Input Data increases proportionally to
Vo/Vo nom.
06087a
Vi+
Vref = 2.5 V 4 k
+
Control
logic
Vi–
Vo+
8
Rext 2
14
R
G
17
Rext1
+
-
Vext
Fig. 11
Output voltage adjustment
a) Adjustment by means of an external resistor Rext.
Depending upon the value of the required output voltage,
the resistor shall be connected:
either: Between the R and G pin to achieve an output
voltage adjustment range of Vo 0 to 100 % of Vo nom.
Rext1 4 k• –VonVomo––––Vo
or: Between the R pin and Vo+ to achieve an output
voltage range of Vo 100 to 110% of Vo nom.
Rext2 4 k• –2–.–5–(VVo–•––(V–2–o./–5V–Von)–om––––1–)
Caution: To prevent damage, Rext2 should never be less than
47 k.
Note: R inputs of n converters with paralleled outputs may be
paralleled too, but if only one external resistor is used, its
value should be Rext1/n or Rext2/ n respectively.
b) Adjustment by means of an external control voltage Vext
between G and R pin.
The control voltage range is 0 to 2.75 V and allows for
adjustment in the range of Vo 0 to 110% of Vo nom.
Vext VoV•–o2–n.o–5m–V–
Caution: The external control voltage should be in the range
0 to +3 V to prevent the converter from damage.
Table 8a: Rext1 for Vo < Vo nom (conditions: Vi nom, Io nom, rounded up to resistor values E 96, Rext2 is not fitted )
Vo nom = 5.1 V
Vo [V]
Rext1 [k]
0.5 0.432
1.0 0.976
1.5 1.65
2.0 2.61
2.5 3.83
3.0 5.76
3.5 8.66
4.0 14.7
4.5 30.1
5.0 200.0
Vo nom = 12 V
Vo [V]
Rext1 [k]
2.0 0.806
3.0 1.33
4.0 2.0
5.0 2.87
6.0 4.02
7.0 5.62
8.0 8.06
9.0 12.1
10.0 20.0
11.0 44.2
Vo nom = 15 V
Vo [V]
Rext1 [k]
2.0 0.619
4.0 1.47
6.0 2.67
8.0 4.53
9.0 6.04
10.0 8.06
11.0 11.0
12.0 16.2
13.0 26.1
14.0 56.2
Vo nom = 24 V
Vo [V]
Rext1 [k]
4.0 0.806
6.0 1.33
8.0 2.0
10.0 2.87
12.0 4.02
14.0 5.62
16.0 8.06
18.0 12.1
20.0 20.0
22.0 44.2
Vo nom = 48 V
Vo [V]
Rext1 [k]
8.0 0.806
12.0 1.33
16.0 2.0
20.0 2.87
24.0 4.02
28.0 5.62
32.0 8.06
36.0 12.1
40.0 20.0
44.0 44.2
Table 8b: R2 for Vo > Vo nom (conditions: Vi nom, Io nom, rounded up to resistor values E 96, Rext1 is not fitted )
Vo nom = 5.1 V
Vo [V]
Rext2 [k]
5.15 464
5.20 215
5.25 147
5.30 110
5.35 90.9
5.40 78.7
5.45 68.1
5.50 61.9
Vo nom = 12 V
Vo [V]
Rext2 [k]
12.1 1780
12.2 909
12.3 619
12.4 464
12.5 383
12.6 316
12.7 274
12.8 249
13.0 200
13.2 169
Vo nom = 15 V
Vo [V]
Rext2 [k]
15.2 1470
15.4 750
15.6 511
15.8 383
16.0 332
16.2 274
16.4 237
16.5 226
Vo nom = 24 V
Vo [V]
Rext2 [k]
24.25
24.50
24.75
25.00
25.25
25.50
25.75
26.00
26.25
26.40
3160
1620
1100
825
715
590
511
453
402
383
Vo nom = 48 V
Vo [V]
Rext2 [k]
48.5 6810
49.0 3480
49.5 2370
50.0 1780
50.5 1470
51.0 1270
51.5 1100
52.0 953
52.5 845
52.8 806
BCD20018 Rev AB
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