SECTION 2 SPECIFICATIONS
14
2.1.2 OUTPUT
POWER
OUTPUT VOLTAGE RANGE
DIRECT-COUPLED
The standard output voltage range of the AMX-Series Power Source is 0-135 VAC
l-n
(0-150 VAC
l-n
for the
Model 125-AMX) when operated in the direct-coupled mode. Additionally, the Models 112-AMX and 312-
AMX can be configured for several direct-coupled output voltage ranges between and including 0-110 VAC
l-n
and 0-150 VAC
l-n
. These voltages are stated for full rated load and nominal input voltage applied.
TRANSFORMER-COUPLED
The output voltage range of the AMX-Series Power Source varies when operated in the transformer-coupled
mode. Maximum output voltage is determined by the transformer turns ratio. See list below for maximum
output voltage vs. turns ratio.
TURNS RATIO
MAXIMUM OUTPUT VOLTAGE (No Load)
1.5:1
204
VAC
l-n
2.0:1
273
VAC
l-n
2.5:1
341
VAC
l-n
OUTPUT CURRENT
FULL-RATED CURRENT
The full-rated output current the AMX-Series Power Source is listed below by model number. Current stated
for output voltage set to 125 VAC
l-n
. Refer to the Power Factor Derating chart of Figure 2.1.2(A-N) for
maximum current at reduced voltage. Output current ratings are scaled appropriately when using transformer-
coupled outputs.
1
φ
2
φ
3
φ
MODEL I
out, rms
I
out, pk
I
out, rms
I
out, pk
I
out, rms
I
out, pk
105-AMX
4 A
40 A
2 A
20 A
N/A
N/A
108-AMX
6 A
40 A
3 A
20 A
N/A
N/A
112-AMX
10 A
40 A
5 A
20 A
N/A
N/A
125-AMX
20 A
90 A
10 A
45 A
N/A
N/A
140-AMX
32 A
140 A
16 A
70 A
N/A
N/A
160-AMX
48 A
210 A
16 A
70 A
N/A
N/A
305-AMX
4 A
45 A
2 A
15 A
1.33 A 15 A
308-AMX
6 A
45 A
2 A
15 A
2 A
15 A
312-AMX
10 A
45 A
3 A
15 A
3 A
15 A
320-AMX
18 A
60 A
6 A
20 A
6 A
20 A
345-AMX
36 A
165 A
12 A
55 A
12 A
55 A
360-AMX
48 A
210 A
16 A
70 A
16 A
70 A
390-AMX
72 A
330 A
24 A
110 A
24 A
110 A
3120-AMX
96 A
410 A
32 A
140 A
32 A
140 A
OVERLOAD OPERATION
The AMX-Series Power Source will deliver up to 150% of rated rms output current into unity power factor
loads at full-rated output voltage. Low output power factor, reduced output voltage, and elevated ambient
temperatures will increase the internal dissipation of the power source and can cause overload shutdown due to
over-temperature conditions. Length of time to reach over-temperature varies with the models and the above
parameters.
Содержание AMX series
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