Datasheet
DS_DCL12S0A0S20NFA_06182014                                                                                                                  E-mail: DCDC@delta.com.tw 
http://www.deltaww.com/dcdc 
P15 
THERMAL CURVES 
0 
4 
8 
12 
16 
20 
25  30  35  40  45  50  55  60  65  70  75  80  85 
Output Current(A)
Ambient Temperature (℃)
DCL12S0A0S20NFA Output Current vs. Ambient Temperature and Air Velocity
@Vin = 12V, Vo=2.5V (Airflow From Pin10 To Pin8)
Natural  
Convection
100LFM
400LFM
200LFM
300LFM
Figure 42: Output current vs. ambient temperature and air 
velocity@Vin=12V, Vout=2.5V(Either Orientation) 
0 
4 
8 
12 
16 
20 
25  30  35  40  45  50  55  60  65  70  75  80  85 
Output Current(A)
Ambient Temperature (℃)
DCL12S0A0S20NFA Output Current vs. Ambient Temperature and Air Velocity
@Vin = 12V, Vo=1.8V (Airflow From Pin10 To Pin8)
Natural
Convection
100LFM
200LFM
300LFM
Figure 43: Output current vs. ambient temperature and air 
velocity@Vin=12V, Vout=1.8V(Either Orientation) 
0 
4 
8 
12 
16 
20 
25  30  35  40  45  50  55  60  65  70  75  80  85 
Output Current(A)
Ambient Temperature (℃)
DCL12S0A0S20NFA Output Current vs. Ambient Temperature and Air Velocity
@Vin = 12V, Vo=1.2V (Airflow From Pin10 To Pin8)
Natural
Convection
200LFM
100LFM
Figure 44: Output current vs. ambient temperature and air 
velocity@Vin=12V, Vout=1.2V(Either Orientation) 
THERMAL CURVES 
0 
4 
8 
12 
16 
20 
25  30  35  40  45  50  55  60  65  70  75  80  85 
Output Current(A)
Ambient Temperature (℃)
DCL12S0A0S20NFA Output Current vs. Ambient Temperature and Air Velocity
@Vin = 7V, Vo=0.69V (Airflow From Pin10 To Pin8)
Natural
Convection
100LFM
Figure 45: Output current vs. ambient temperature and air 
velocity@Vin=7V, Vout=0.69V(Either Orientation) 










