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LTC4449 датащи(PDF) 13 Page - Linear Technology |
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LTC4449 датащи(HTML) 13 Page - Linear Technology |
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13 / 38 page ![]() LTC3774 13 3774fc For more information www.linear.com/LTC3774 OPERATION Multiphase Operation For output loads that demand high current, multiple LTC3774scanbedaisychainedtorunoutofphasetoprovide more output current without increasing input and output voltageripple.TheMODE/PLLINpinallowstheLTC3774to synchronizetotheCLKOUTsignalofanotherLTC3774. The CLKOUTsignalcanbeconnectedtotheMODE/PLLINpinof the following LTC3774 stage to line up both the frequency andthephaseoftheentiresystem.TyingthePHSMDpinto INTVCC, GND or floating it generates a phase difference (between CH1 and CLKOUT) of 240°, 60° or 90° respec- tively, and a phase difference (between CH1 and CH2) of 120°, 180° or 180°. Tying PHSMD to 1/4 or 3/4 of INTVCC generates a phase difference of 60° and 45° between CH1 and CLKOUT. Figure 1 shows the PHSMD connections necessary for 3-, 4-, 6-, 8- or 12-phase operation. A total of 12 phases can be daisychained to run simultaneously out of phase with respect to each other. Sensing the Output Voltage with a Differential Amplifier The LTC3774 includes a low offset, high input impedance, unity-gain, high bandwidth differential amplifier for ap- plications that require true remote sensing. Sensing the load across the load capacitors directly benefits regulation in high current, low voltage applications, where board interconnection losses can be a significant portion of the total error budget. Connect VOSNS+ to the center tap of the feedback divider across the output load, and VOSNS– to the load ground. See Figure 2. The LTC3774 differential amplifier is configured for unity gain, meaning that the difference between VOSNS+ and VOSNS– is translated to its output, relative to GND. The differential amplifier’s output is internally connected to the error amplifier inverting input. Care should be taken to route the VOSNS+ and VOSNS– PCB traces parallel to each other all the way to the remote sens- ing points on the board. In addition, avoid routing these sensitive traces near any high speed switching nodes in the circuit. Ideally, the VOSNS+ and VOSNS– traces should be shielded by a low impedance ground plane to maintain signal integrity. Figure 2. Differential Amplifier Connection LTC3774 VOSNS+ CF1 RD1 COUT1 COUT2 VOUT 10 RD2 VOSNS– 3774 F02 10 – + DIFFAMP |
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