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LTC3415 数据表(PDF) 21 Page - Linear Technology |
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LTC3415 数据表(HTML) 21 Page - Linear Technology |
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21 / 36 page ![]() LTC3613 21 3613fa APPLICATIONS INFORMATION TIME Coincident Tracking EXTERNAL SUPPLY EXTERNAL SUPPLY VOUT VOUT TIME 3613 F06 Ratiometric Tracking Figure 6. Two Different Modes of Output Tracking Figure 7. Setup for Coincident and Ratiometric Tracking RFB2 EXT. V RFB1 Coincident Tracking Setup TO TRACK/SS RFB2 VOUT TO VOSNS + RFB1 TO VOSNS – R1 EXT. V R2 R1+ R2 ≥ R2 TO TRACK/SS RFB2 VOUT TO VOSNS + RFB1 TO VOSNS – 3613 F07 Ratiometric Tracking Setup 0.6V EXT. V Phase and Frequency Synchronization For applications that require better control of EMI and switching noise or have special synchronization needs, the LTC3613 can phase and frequency synchronize the turn-on of the switching cycle to an external clock signal applied to the MODE/PLLIN pin. The applied clock signal needs to be within ±30% of the RT pin programmed free- running frequency to assure proper frequency and phase lock. The clock signal levels should generally comply to VIH > 2V and VIL < 0.5V. The MODE/PLLIN pin has an internal 600k pull-down resistor to ensure pulse-skipping mode if the pin is left floating. The LTC3613 uses the voltages on SVIN and VOUT pins as well as the RT programmed frequency to determine the steady-state on-time as follows: tON ≈ VOUT VIN • f An internal PLL system adjusts this on-time dynamically in order to maintain phase and frequency lock with the external clock. The LTC3613 will maintain phase and fre- quency lock under steady-state conditions for VIN, VOUT and load current. As shown in the previous equation, the on-time is a function of the switching regulator’s output. This output is measured by the VOUT pin and is used to calculate the required on-time. Therefore, simply connecting VOUT to the regulator’s local output point is preferable for most applications. However, there could be applications where the internally calculated on-time differs significantly from the real on-time required by the application. For example, if there are differences between the local output point and the remotely regulated output point due to line losses, then the internally calculated on-time will be inaccurate. Lower efficiencies in the switching regulator can also cause the real on-time to be significantly different from the internally |
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