3–24
I/O Wiring and Specifications
Outputs per module
Output Points Consumed
Commons per module
Operating voltage
Output type
Peak voltage
AC frequency
ON voltage drop
Max load current (resistive)
Max leakage current
Points
Derating Chart
4
3
2
1
0
10
20
30
0
32
50
68
86
Ambient Temperature (°C/°F)
24VDC
+
12–24VDC +
L
L
L
L
DL205 Installation and I/O Manual, Rev. B
D2–04TD1 DC Output
4 (current sinking)
8 points (only 1st 4 pts. used)
1 (4 I/O terminal points)
10.2–26.4 VDC
NMOS FET (open drain)
40 VDC
n/a
0.72 VDC maximum
4A / point
8A / common
0.1mA @ 40 VDC
2A / Pt.
3A / Pt.
OUT
4A / Pt.
0
1
40
50 55
C °
2
104
122 131
F °
3
D2–04TD1
10.2-26.4VDC
50mA-4A
Internally
C
0V
connected
24V
+24V
C
C
0
L
C
C
1
L
C
C
2
L
C
C
3
L
D2–04TD1
Max inrush current
Minimum load
Base power required 5v
OFF to ON response
ON to OFF response
Terminal type
Status indicators
Weight
Fuses
Maximum Number of Switching Cycles per Minute
12-24
VDC
0
1
2
3
+
12–24
VDC
–
6A for 100ms, 15A for 10 ms
50mA
60mA Max
1 ms
1 ms
Removable
Logic Side
2.8 oz. (80 g)
4 (1 per point)
(6.3A slow blow, replaceable)
Order D2–FUSE–3, 5/pack
Inductive Load
Load
Duration of output in ON state
Current
7ms
40ms
0.1A
8000
1400
0.5A
1600
300
1.0A
800
140
1.5A
540
90
2.0A
400
70
3.0A
270
–
4.0A
200
–
At 40ms duration, loads of 3.0A or greater cannot be used.
At 100ms duration, loads of 2.0A or greater cannot be used.
Here's how to use the table. Find the load current you
expect to use and the duration that the ouput is ON. The
number at the intersection of the row and column represents
the switching cycles per minute. For example, a 1A
inductive load that is on for 100ms can be switched on and
off a maximum of 60 times per minute. To convert this to
duty cycle percentage use: (Duration x cycles) / 60. Our
example would be (60x.1) / 60 = .1 (10% duty cycle).
24VDC
–
+
Reg
0V
Output
L
6.3A
Common
Other
Circuits
100ms
600
120
60
35
–
–
–
To LED
Optical
Isolator
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