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CMPWR025 Datasheet(PDF) 5 Page - ON Semiconductor |
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CMPWR025 Datasheet(HTML) 5 Page - ON Semiconductor |
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5 / 8 page ![]() CMPWR025 http://onsemi.com 5 CMPWR025 TYPICAL DC CHARACTERISTICS The Switch Resistance vs. Temperature curve shown in Figure 3 illustrates the switch resistance measured at 600 mA load with VCC equal to 3.3 V and 5 V. The resistance is shown at a temperatures range of −40C to 70C. When the temperature rises from 25 to 70C, the switch resistance increases by about 20%. Figure 3. Switch Resistance vs. VCC with Temperature The Supply Current vs. Temperature curve shown in Figure 4 illustrates the internal supply current with VCC equal to 3.3 V and 5 V. This current is drawn from the selected VCC input, and is dissipated through the ground pin (pin 5). This current is independent of load current. Figure 4. Supply Current vs. Temperature The Hysteresis Voltage vs. Temperature curve shown in Figure 5 illustrates how the hysteresis voltages vary with temperature. ‘VHYS1’ is the hysteresis value if pin 8 is left unconnected, ‘VHYS2’ is the hysteresis value if pin 8 is connected to ground. ‘VCC1sel’ is the voltage below VCC2 at which Vcc1 will be selected (refer to selection threshold diagrams on page 4). These three voltages are independent of the VCC operating voltage. Figure 5. Hysteresis Voltage vs. Temperature Power Dissipation and Output Current Considerations The CMPWR025 is supplied in an MSOP package which has a maximum power dissipation rating of 0.3 W. It is important that the heat generated within the part does not exceed this rating. The heat generated by the load current is given by: PDISS + VSW ILOAD or PDISS + RSW (ILOAD)2 At a typical load of 375 mA the PDISS is just 0.4 (0.375)2 + 56 mW A primary consideration is Maximum Junction Temperature, TJ(max), which can be calculated using the following formula: TJ(max) + TA ) qJA PDISS Where: TA = The Ambient Temperature qJA = Thermal Resistance = 100 C/W PDISS = Power Dissipation In the above example operating at an ambient of 70C, TJ(max) would be: TJ(max) + 70° C ) (0.056 W)(100° C W) + 75.6° C Maximum power dissipation, including the power from the other circuitry within the device, suggests a current rating of approximately: PDISS * PINT RSW + ILOAD 0.3 W * 100 mW 0.4 + 865 mA Note that this is beyond the maximum current rating of the device, which is 750 mA maximum. |
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