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LT8646SEVPBF 数据表(PDF) 20 Page - Analog Devices |
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LT8646SEVPBF 数据表(HTML) 20 Page - Analog Devices |
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20 / 30 page ![]() LT8645S/LT8646S 20 Rev. B For more information www.analog.com APPLICATIONS INFORMATION Table 1. SW Frequency vs RT Value fSW (MHz) RT (kΩ) 0.2 232 0.3 150 0.4 110 0.5 88.7 0.6 71.5 0.7 60.4 0.8 52.3 1.0 41.2 1.2 33.2 1.4 28.0 1.6 23.7 1.8 20.5 2.0 17.8 2.2 15.8 Operating Frequency Selection and Trade-Offs Selection of the operating frequency is a trade-off between efficiency, component size, and input voltage range. The advantageofhighfrequencyoperationisthatsmallerinduc- tor and capacitor values may be used. The disadvantages are lower efficiency and a smaller input voltage range. The highest switching frequency (fSW(MAX)) for a given application can be calculated as follows: fSW(MAX) = VOUT + VSW(BOT) tON(MIN) VIN – VSW(TOP) + VSW(BOT) ( ) (4) where VIN is the typical input voltage, VOUT is the output voltage, VSW(TOP) and VSW(BOT) are the internal switch drops (~0.3V, ~0.2V, respectively at maximum load) and tON(MIN) is the minimum top switch on-time (see the Elec- trical Characteristics). This equation shows that a slower switching frequency is necessary to accommodate a high VIN/VOUT ratio. For transient operation, VIN may go as high as the abso- lute maximum rating of 65V regardless of the RT value, however the LT8645S/LT8646S will reduce switching frequency as necessary to maintain control of inductor current to assure safe operation. The LT8645S/LT8646S is capable of a maximum duty cycle of approximately 99%, and the VIN-to-VOUT dropout is limited by the RDS(ON) of the top switch. In this mode the LT8645S/LT8646S skips switch cycles, resulting in a lower switching frequency than programmed by RT. For applications that cannot allow deviation from the pro- grammed switching frequency at low VIN/VOUT ratios use the following formula to set switching frequency: VIN(MIN) = VOUT + VSW(BOT) 1– fSW • tOFF(MIN) – VSW(BOT) + VSW(TOP) (5) where VIN(MIN) is the minimum input voltage without skipped cycles, VOUT is the output voltage, VSW(TOP) and VSW(BOT) are the internal switch drops (~0.3V, ~0.2V, respectively at maximum load), fSW is the switching fre- quency (set by RT), and tOFF(MIN) is the minimum switch off-time.Notethathigherswitchingfrequencywillincrease the minimum input voltage below which cycles will be dropped to achieve higher duty cycle. Inductor Selection and Maximum Output Current The LT8645S/LT8646S is designed to minimize solution size by allowing the inductor to be chosen based on the output load requirements of the application. During over- load or short-circuit conditions the LT8645S/LT8646S safelytoleratesoperationwithasaturatedinductorthrough the use of a high speed peak-current mode architecture. A good first choice for the inductor value is: L = VOUT + VSW(BOT) fSW ⎛ ⎝ ⎜ ⎞ ⎠ ⎟ • 0.4 (6) where fSW is the switching frequency in MHz, VOUT is the outputvoltage,VSW(BOT)isthebottomswitchdrop(~0.2V) and L is the inductor value in μH. To avoid overheating and poor efficiency, an inductor must be chosen with an RMS current rating that is greater than the maximum expected output load of the application. In addition, the saturation current (typically labeled ISAT) |
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