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EVI-EM2COMIF bảng dữ liệu(PDF) 21 Page - Intel Corporation |
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EVI-EM2COMIF bảng dữ liệu(HTML) 21 Page - Intel Corporation |
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21 / 46 page ![]() Data Sheet | Intel Enpirion Power Solutions: EM2130 Page 21 SMBAlert Pin The SMBAlert pin is intended to operate using an external pull-up voltage of 3.3V and contains a weak internal pull-up. If operating in applications with a lower voltage pull-up voltage, it is recommended that an external low Vf Schottky diode be placed at the input to localise this voltage. VPull-Up SMBAlert EM2120 Figure 7: SMBAlert Pin Low Voltage Pull-up Option Table 10: Schottky Diode Options Description Manufacturer P/N 40V, 300mA, Schottky, SOD523 ST BAT54KFILM 40V, 250mA, Schottky, SOD523 Diode Inc BAT64T5Q COMPENSATING THE DIGITAL CONTROL LOOP To improve the transient performance for a typical point-of-load design, it is common to add output capacitance to the converter. This moves the output LC resonant frequency lower as capacitance increases which results in lower bandwidth, lower phase margin, and longer settling times unless the control loop is compensated for added capacitance. However, with EM2130 the user does not need to be concerned with, or even understand, the details of control loop compensation techniques. The default configuration allows users to select from preconfigured PID control loop settings (known as compensators) through the use of pin-strapping. A single resistor from the RTUNE pin to AGND informs the EM2130 of the compensator selection. The selection of the compensator is driven first by the type of output capacitors used, as the ESL and ESR of different capacitor types demands different PID coefficients to optimize transient deviation and recovery characteristics. An all ceramic output capacitor design requires a different compensator than a design with a combination of ceramic and polymer capacitors, i.e. POSCAP. Table 12 shows several output capacitor part number recommendations. The five different compensators can then be subdivided into groups of six each whereby the initial capacitance value in the appropriate compensator can be scaled upwards by multiplication factor M to match the additional capacitance. 12873 April 10, 2020 Rev I |
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