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Designers Manual
Advanced Energy CoolX600 Series
In
Figure 3
‑
2
, t1 is the hiccup timing (on-time) and t2 is the hiccup timing (off-time).
Table 3
‑
34
contains t1 and t2 values for each type of wide-trim module.
TTaabbllee 33‑‑3344.. Wide-trim module hiccup characteristics specifications
PPaarraam
meetteerr
VVaalluuee
TTyyppee
C
Cm
mN
N
C
Cm
mM
M
C
Cm
mPP
C
Cm
mQ
Q
Hiccup timing (on-
time)
Minimum
1 ms
1 ms
1 ms
1 ms
Nominal/
Typical
5 ms
5 ms
5 ms
5 ms
Maximum 100 ms
100 ms
100 ms
100 ms
Hiccup timing (off-
time)
Minimum
500 ms
500 ms
500 ms
500 ms
Nominal/
Typical
990 ms
990 ms
990 ms
990 ms
Maximum 1100 ms 1100 ms 1100 ms
1100 ms
Short circuit hiccup
level
Minimum
0.6 V
0.6 V
0.6 V
1.1 V
Minimum
0.9 V
0.9 V
0.9 V
2.0 V
For an illustration of the module transient response, see
Figure 3
‑
3
on page 3
‑
7.
TTaabbllee 33‑‑3355.. Wide-trim module transient response specifications
PPaarraam
meetteerr
VVaalluuee
TTyyppee
C
Cm
mN
N
C
Cm
mM
M
C
Cm
mPP
C
Cm
mQ
Q
25% to 75% Load Change
Voltage deviation
Nominal/
Typical
0.2 V
0.3 V
0.4 V
0.7 V
Maximum 0.4 V
0.5 V
1 V
1 V
Recovery time
Nominal/
Typical
300 μs
300 μs
300 μs
300 μs
Maximum 500 μs
500 μs
500 μs
500 μs
10% to 100% Load Change
Voltage deviation
Nominal/
Typical
0.5 V
1 V
1.3 V
1.7 V
Maximum 0.6 V
1.2 V
2.4 V
4.8 V
Recovery time
Nominal/
Typical
4 ms
4 ms
4 ms
4 ms
Maximum 7 ms
7 ms
7 ms
7 ms
In
Figure 3
‑
4
on page 3
‑
8, t1 is the turn-on delay and t2 is the hold-up.
Table 3
‑
36
contains t1 and t2 values for each type of wide-trim module.
Advanced Energy
®
CoolX
®
600 Modular Power Supply
57010208-00B
Specifications
3‑19