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TC642B датащи(PDF) 20 Page - Microchip Technology |
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TC642B датащи(HTML) 20 Page - Microchip Technology |
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20 / 36 page ![]() TC642B/TC647B DS21756C-page 20 2002-2013 Microchip Technology Inc. FIGURE 5-5: Fan Current During a Locked Rotor Condition. 5.5 Output Drive Device Selection The TC642B/TC647B is designed to drive an external NPN transistor or N-channel MOSFET as the fan speed modulating element. These two arrangements are shown in Figure 5-7. For lower current fans, NPN transistors are a very economical choice for the fan drive device. It is recommended that, for higher current fans (300 mA and above), MOSFETs be used as the fan drive device. Table 5-2 provides some possible part numbers for use as the fan drive element. When using a NPN transistor as the fan drive element, a base current-limiting resistor must be used, as is shown in Figure 5-7. When using MOSFETs as the fan drive element, it is very easy to turn the MOSFETs on and off at very high rates. Because the gate capacitances of these small MOSFETs are very low, the TC642B/TC647B can charge and discharge them very quickly, leading to very fast edges. Of key concern is the turn-off edge of the MOSFET. Since the fan motor winding is essentially an inductor, once the MOSFET is turned off, the current that was flowing through the motor wants to continue to flow. If the fan does not have internal clamp diodes around the windings of the motor, there is no path for this current to flow through, and the voltage at the drain of the MOSFET may rise until the drain-to-source rating of the MOSFET is exceeded. This will most likely cause the MOSFET to go into avalanche mode. Since there is very little energy in this occurrence, it will probably not fail the device, but it would be a long-term reliability issue. The following is recommended: • Ask how the fan is designed. If the fan has clamp diodes internally, this problem will not be seen. If the fan does not have internal clamp diodes, it is a good idea to put one externally (Figure 5-6). Put- ting a resistor between VOUT and the gate of the MOSFET will also help slow down the turn-off and limit this condition. FIGURE 5-6: Clamp Diode For Fan Turn- Off. Q1 GND RSENSE VOUT Q1: N-Channel MOSFET FAN |
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