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LT7200SAVPBF データシート(PDF) 22 Page - Analog Devices |
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LT7200SAVPBF データシート(HTML) 22 Page - Analog Devices |
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22 / 35 page ![]() Data Sheet LT7200S analog.com Rev 0 22 of 35 (b) Ratiometric Tracking Figure 35. Output Tracking Configuration Minimum Off-Time and Minimum On-Time Considerations The minimum off-time, tOFF(MIN), is the smallest amount of time the LT7200S is capable of turning on the bottom power MOSFET, tripping the current comparator and turning the power MOSFET back off. This time is generally about 40ns. The minimum off-time limit imposes a maximum duty cycle of tON/(tON + tOFF(MIN)). If the maximum duty cycle is reached, due to a dropping input voltage for example, then the output drops out of regulation. The minimum input voltage to avoid dropout is: VIN(MIN) = VOUT x tON + tOFF(MIN) tON Conversely, the minimum on-time is the smallest duration of time in which the top power MOSFET can be in its “on” state. This time is typically 12ns. In continuous mode operation, the minimum on-time limit imposes a minimum duty cycle of DCMIN = f x tON(MIN) where tON(MIN) is the minimum on-time. Reducing the operating frequency alleviates the minimum duty cycle constraint. In the rare cases where the minimum duty cycle is surpassed, the output voltage remains in regulation and the switching frequency decreases from its programmed value. This is an acceptable result in many applications. So, this constraint may not be of critical importance in most cases. High switching frequencies may be used in the design without any fear of output overvoltage. As the sections on inductors and capacitor selection show, high switching frequencies allow the use of smaller board components, thus reducing the size of the application circuit. Internal/External ITH Compensation The LT7200S provides the options to choose between internal and external loop compensations. By connecting the ITH pin to INTVCC, the fixed internal loop compensation network is selected, which reduces both the required external component count and design time. To ensure stability, it is recommended that internal compensation only be used for applications with fSW > 1MHz. Alternatively, by connecting the external components to the ITH pin, choose external loop compensation to optimize the desired transient response. For multiphase, single output applications, use external compensation to tie the corresponding ITH pins together to accurately share the output current. VFB4 VOUT3 VOUT4 VOUT1 R2 R1 R8 R7 VOUT2 R4 R3 R6 R5 VFB1 TO TRACK2, TRACK3, TRACK4 VFB2 VFB2 |
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