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ML124SM-05RI4 Scheda tecnica(PDF) 2 Page - MicroPower Direct, LLC |
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ML124SM-05RI4 Scheda tecnica(HTML) 2 Page - MicroPower Direct, LLC |
2 / 2 page MicroPower Direct We Power Your Success - For Less! 292 Page Street Ste D Stoughton, MA 02072 • TEL: (781) 344-8226 • FAX: (781) 344-8481 • E-Mail: sales@micropowerdirect.com www.micropowerdirect.com Model Selection Guide Mechanical Dimensions Mechanical Notes: • All dimensions are typical in inches (mm) • Tolerance x.xx = ±0.01 (±0.25) Notes: 1. The specified maximum capacitive load is for each output. 2. When measuring output ripple, it is recommended that an external 0.47 µF ceramic capacitor be placed from the +VOUT pin to the -VOUT pin for single output units and from each output to common for dual output units. For noise sensitive applications, the use of 3.3 µF capacitors will reduce the output ripple. 3 Contact the factory for required filter components. 4. Any units that are not packaged in a vacuum sealed container should be stored in a controlled environment. Contact the factory for more information. 5. The recommended reflow settings are a peak temperature of 245 °C for a maxi- mum period (TPK) of 10S and a time above liquidous (TL) of <60 seconds at 217 °C. For more information, please contact the factory. 6. Operation at no-load will not damage these units. However, they may not meet all specifications. 7. Dual output units may be connected to provide a 24 VDC or 30 VDC output. To do this, connect the load across the positive (+VOUT) and negative (-VOUT) outputs and float the output common. 8. The converter should be connected to a low ac-impedance source. An input source with a highly inductive impedance may affect the stability of the converter. In appli- cations where the converter output loading is high and input power is supplied over long lines, it may be necessary to use a capacitor on the input to insure start-up. In this case, it is recommended that a low ESR (ESR <1.0 at 100 kHz) capacitor be mounted close to the converter. For 5V input units a 2.2 µF is recommended, for 12V input units, a 1.0 µF; and for 24V units a 0.47 µF. 9. It is recommended that a fuse be used on the input of a power supply for protection. See the table above for the correct rating. Model Number Input Output Capacitive Load (µF, Max) Efficiency (%, Typ) Fuse Rating Slow-Blow (mA) Voltage (VDC) Current (mA) Voltage (VDC) Current (mA, Max) Current (mA, Min) Nominal Range Full-Load No-Load ML105SM-05RI4 5 4.50 - 5.50 263 50 5.0 200.0 4.0 220 76 600 ML105SM-12RI4 5 4.50 - 5.50 252 50 12.0 84.0 1.68 220 80 600 ML105SM-15RI4 5 4.50 - 5.50 246 50 15.0 68.0 1.36 220 83 600 ML105DM-12RI4 5 4.50 - 5.50 252 50 ±12.0 ±42.0 ±0.84 100 80 600 ML105DM-15RI4 5 4.50 - 5.50 236 50 ±15.0 ±33.0 ±0.66 100 84 600 ML112SM-05RI4 12 10.8 - 13.2 110 35 5.0 200.0 4.0 220 76 250 ML112SM-12RI4 12 10.8 - 13.2 106 35 12.0 84.0 1.68 220 79 250 ML112SM-15RI4 12 10.8 - 13.2 106 35 15.0 68.0 1.36 220 80 250 ML112DM-12RI4 12 10.8 - 13.2 106 35 ±12.0 ±42.0 ±0.84 100 79 250 ML112DM-15RI4 12 10.8 - 13.2 103 35 ±15.0 ±33.0 ±0.66 100 80 250 ML124SM-05RI4 24 21.6 - 26.4 55 20 5.0 200.0 4.0 220 76 125 ML124SM-12RI4 24 21.6 - 26.4 53 20 12.0 84.0 1.68 220 80 125 ML124SM-15RI4 24 21.6 - 26.4 53 20 15.0 68.0 1.36 220 80 125 ML124DM-12RI4 24 21.6 - 26.4 53 20 ±12.0 ±42.0 ±0.84 100 80 125 ML124DM-15RI4 24 21.6 - 26.4 52 20 ±15.0 ±33.0 ±0.66 100 80 125 Pin Single 1-VIN 6NC 7NC 8+VOUT 9-VOUT 14 +VIN Pin Dual 1-VIN 6 Common 7-VOUT 8+VOUT 9 Common 14 +VIN NC = No Connection Pin Connections Derating Curve Solder Layout y |
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