DATASHEET DS_DNM10SMD10_03062009 FEATURES High efficiency: 93% @ 12Vin, 3.3V/10A out Small size and low profile: (SMD) 33.0x 13.5x8.8mm (1.30”
DS_DNM10SMD10_03062009 10 FEATURE DESCRIPTIONS (CON.) The output voltage tracking feature (Figure 27 to
DS_DNM10SMD10_03062009 11 THERMAL CONSIDERATIONS Thermal management is an important part of the system design. To ensure proper, reliable operation,
DS_DNM10SMD10_03062009 12THERMAL CURVES Figure 31: Temperature measurement location The allowed maximum hot spot temperature is defined at 125℃DNM10
DS_DNM10SMD10_03062009 13PICK AND PLACE LOCATION SURFACE-MOUNT TAPE & REEL LEADED (Sn/Pb) PROCESS RECOMMEND TEMP. PROFILE Time ( sec
DS_DNM10SMD10_03062009 14MECHANICAL DRAWING SMD PACKAGE SIP PACKAGE (OPTIONAL)
DS_DNM10SMD10_03062009 15PART NUMBERING SYSTEM DNM 10 S 0A0 S 10 N F D Product Series Input Voltage Numbers of Outputs Output Voltage Package Type
DS_DNM10SMD10_03062009 2TECHNICAL SPECIFICATIONS TA = 25°C, airflow rate = 300 LFM, Vin = 8.3Vdc and 14Vdc, nominal Vout unless otherwise noted. PA
DS_DNM10SMD10_03062009 36070809010013579111315LOAD (A)EFFICIENCY(%)Vin=8.3VVin=12VVin=14VELECTRICAL CHARACTERISTICS CURVES Figure 1: Converter eff
DS_DNM10SMD10_03062009 4ELECTRICAL CHARACTERISTICS CURVES Figure 7: Converter efficiency vs. output current (5.0V output voltage) Figure 8:
DS_DNM10SMD10_03062009 5ELECTRICAL CHARACTERISTICS CURVES Figure 12: Turn on Using Remote On/Off with external capacitors (Co= 5000 µF), 5.0V/10A o
DS_DNM10SMD10_03062009 6 TEST CONFIGURATIONS VI(+)VI(-)BATTERY2100uFTantalumLTO OSCILLOSCOPE Note: Input reflected-ripple current is measured with
DS_DNM10SMD10_03062009 7DESIGN CONSIDERATIONS (CON.) The power module should be connected to a low ac-impedance input source. Highly inductive sourc
DS_DNM10SMD10_03062009 8FEATURES DESCRIPTIONS (CON.) Over-Temperature Protection The over-temperature protection consists of circuitry that provide
DS_DNM10SMD10_03062009 9 The amount of power delivered by the module is the voltage at the output terminals multiplied by the output current. When u
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