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LM2696MXAX датащи(PDF) 13 Page - National Semiconductor (TI) |
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LM2696MXAX датащи(HTML) 13 Page - National Semiconductor (TI) |
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13 / 19 page ![]() Application Information (Continued) Legend: t 1: Min off-time (165 ns typical) t 2: On-time (set by the user) t 3: Min off-time (165 ns typical) t 4: Blanking time (165 ns typical) t 5: Extended off-time (12 µs typical) V L: UVP threshold The last benefit of this scheme is when the short circuit is removed, and full load is re-applied, the part will automati- cally recover into the load. The variation in the off-time removes the constraints of other frequency fold back sys- tems where the load would typically have to be reduced. MODES OF OPERATION Since the LM2696 utilizes a catch diode, whenever the load current is reduced to a point where the inductor ripple is greater than two times the load current, the part will enter discontinuous operation. This is because the diode does not permit the inductor current to reverse direction. The point at which this occurs is the critical conduction boundary and can be calculated by the following equation: One advantage of the adaptive on-time control scheme is that during discontinuous conduction mode the frequency will gradually decrease as the load current decreases. In DCM the switching frequency may be determined using the relationship: It can be seen that there will always be some minimum switching frequency. The minimum switching frequency is determined by the parameters above and the minimum load presented by the feedback resistors. If there is some mini- mum frequency of operation the feedback resistors may be sized accordingly. The adaptive on-time control scheme is effectively a pulse- skipping mode, but since it is not tied directly to an internal clock, its pulse will only occur when needed. This is in contrast to schemes that synchronize to a reference clock frequency. The constant on-time pulse-skipping/DCM mode minimizes output voltage ripple and maximizes efficiency. 20153438 FIGURE 4. Fault Condition Timing 20153439 FIGURE 5. Normalized Output Voltage Versus Load Current www.national.com 13 |
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