DFC10E12S15
DFC10E12S15 is SINGLE OUTPUT manufactured by Power-One.
- Part of the DFC comparator family.
- Part of the DFC comparator family.
DESCRIPTION
The DFC10 Series provides power converter solutions to meet mercial and industrial requirements. With power densities above 11 watts per cubic inch (0.67 watts per cm3), overcurrent protection, and five-sided shielded case, the DFC10 meets the most rigorous needs in an industry standard case size. The 220KHz operating frequency of the DFC10 Series allows an increased power density while including adequate heat sinking and input/output filtering. This eliminates the need for external ponents in most applications. Full overload protection is provided by pulse-by-pulse current limiting. FEATURES
- High Power Density, up to 11 Watts per Cubic Inch (0.67 watts per cm3)
- Efficiencies to 83% (Lower for 3.3V)
- Low Input to Output Capacitance
- 700V Isolation(1544V for 48V Converters)
- Continuous Overcurrent Protection
- 3.3Volt Output Available
- Five-Side Shielded Copper Case
- Extended Input Range (2:1)
BOTTOM VIEW 2.02 (51.31) 0.300 (7.62) 0.000 0.200 (5.08) 0.500 (12.70) 0.61 (15.5) 0.61 (15.5) 0.000 1 2 5 3 SIDE VIEW 0.040 (1.02) DIA TYP
1.02 (25.91)
0.800 (20.32)
Mechanical tolerances unless otherwise noted: X.XX dimensions: ±0.020 inches X.XXX dimensions: ±0.005 inches
NOTES
(1) All parameters measured at Tc = 25°C, nominal input voltage and full rated load unless otherwise noted. Refer to the Technical Reference Section for the definition of terms, measurement circuits and other information. The Case is tied to the -Input pin. The functional temperature range is intended to give an additional data point for use in evaluating this power supply. At the low functional temperature the power supply will function with no side effects, however, sustained operation at the high functional temperature will reduce expected operational life. The data sheet specifications are not guaranteed beyond the case operating range. The case thermal impedance is specified as the case temperature rise over ambient per package watt dissipated.
(2) (3)
(4)
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