NOTES
(1)
All parameters measured at Tc=25°C, nominal input voltage and full rated load unless otherwise
noted.
Measurement bandwidth is 0-20 MHz for peak-peak measurements, 10 kHz to 1 MHz for RMS
measurements. Output noise is measured with a 0.01μF/100V ceramic capacitor in parallel with a
1μF/35V Tantalum capacitor, 1 inch from the output pins to simulate standard PCB decoupling
capacitance.
Short term stability is specified after a 30 minute warm-up at full load, constant line and recording
he drift over a 24 hour period.
Per ETSI-300-132
Recovery to within 1% in less than 1 millisecond after transient has been applied.
(2)
(3)
(4)
(5)
DFC25 SERIES APPLICATION NOTES:
External Capacitance Requirements
A low ESR external capacitance is required for operation of the DFC25 Series. For maximum
performance, it is recommended that the DFC25 Series use a capacitor of sufficient ripple current
capacity connected across the input pins, especially if a capacitive input source is farther than 1"
from the converter. To meet the reflected ripple requirements of the converter, an input impedance
of less than 0.09 Ohms at 200 kHz is required. External output capacitance is not required for
operation, however it is recommended that 1μF to 10μF of Tantalum and 0.001 to 0.1μF ceramic
capacitance be selected for each output to reduce system noise. Additional output capacitance may
be added for increased filtering, but should not exceed 400μF.
Remote ON/OFF Operation
The remote ON/OFF pin may be left floating if this function is not used. It is recommended to drive
this pin with TTL compatible circuitry. When the ON/OFF pin is pulled low with respect to the
-INPUT, the converter is placed in a low power drain state. The input capacitors are kept fully
charged in the OFF mode. For proper operation, this input may be driven from a logic gate directly.
The ON/OFF pin should never be pulled more than 0.3 volts below -INPUT or have a voltage
greater than +6 volts applied.
DFC25 SERIES – SINGLE OUTPUT
Input Parameters (1)
Model
Reflected Ripple (2)
Input Current
Full Load
No Load
Inrush Current (4)
Efficiency
Switching Frequency
Maximum Input
Overvoltage,
100ms Maximum
Turn-on Time,
1% Output Error
DFC25E12S3.3
330
DFC25E24S5
230
DFC25E48S5
150
DFC25E48S12
150
Units
mA
PP
TYP
TYP
TYP
MAX
TYP
TYP
2870
100
50
72
150
1563
10
50
80
150
781
10
50
80
150
762
10
50
82
150
mA
A
PK
%
kHz
MAX
24
45
85
85
VDC
TYP
10
10
10
10
ms
Output Parameters (1)
DFC25E24S5
Model
Output Voltage
DFC25E12S3.3
3.3
3.26
3.30
3.33
0.75
7.50
DFC25E48S5
5
5.05
5.10
5.15
0.60
6.00
DFC25E48S12
12
11.90
12.00
12.10
0.25
2.50
Units
VDC
5
MIN
TYP
MAX
MIN
MAX
5.05
5.10
5.15
0.60
6.00
Output Voltage Accuracy
VDC
Rated Load Range
A
Load Regulation
10% Load - Max Load
Line Regulation
Vin = Min-Max VDC
Transient Response
25% Load Step (5)
Short Term Stability (3)
Long Term Stability
Input Ripple Rejection
Noise, Peak - Peak (2)
Temperature Coefficient
Short Circuit Protection
from +OUT to -OUT
TYP
1
1
1
1
%
TYP
0.2
0.2
0.2
0.2
%
TYP
2
2
2
2
%
TYP
TYP
TYP
TYP
TYP
<0.05
<0.1
>40
75
100
<0.05
<0.1
>40
75
100
<0.05
<0.1
>40
75
100
<0.05
<0.1
>40
75
100
%/24Hrs
%/kHrs
dB
mV
PP
ppm/°C
Continuous, Current Limit Protection
2
NUCLEAR AND MEDICAL APPLICATIONS Power-One products are not authorized for use as critical components in life support systems, equipment used in hazardous environments,
or nuclear control systems without the express written consent of the President of Power-One, Inc.
TECHNICAL REVISIONS The appearance of products, including safety agency certifications pictured on labels, may change depending on the date manufactured. Specifications are
subject to change without notice.