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LT3073AVPBF датащи(PDF) 26 Page - Analog Devices |
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LT3073AVPBF датащи(HTML) 26 Page - Analog Devices |
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26 / 37 page ![]() Data Sheet LT3073 analog.com Rev 0. 26 of 37 While the VIOC buffer is inside the switching converter’s feedback loop, given the VIOC buffer’s high bandwidth, the switching converter’s frequency compensation doesn’t need to be adjusted. Phase delay through the VIOC buffer is typically less than 2° for frequencies as high as 100kHz; hence, within the switching converter’s bandwidth (usually much less than 100kHz), the VIOC buffer will be transparent and act like an ideal wire. For example, for a switching converter with less than 100kHz bandwidth and a phase margin of 50°, using the VIOC buffer, the phase margin will degrade by at most 2°. Hence, the phase margin for the switching converter (using the VIOC pin) will be at least 48°. Given that the VIOC buffer is inside the switching converter’s feedback loop, the total capacitance on the VIOC pin must be below 20pF. Figure 71.Programming input-to-Output Voltage Differential As shown in Figure 71, the input-to-output differential voltage is easily programmable to support different application needs (PSRR vs power dissipation) using the following equation: ������������������������������������ − ������������������������������������������ + 800������������ = ������������������������������ = ������������������������������������������������������������������������ ������1+������2 ������1 Furthermore, if the LT3073 EN pin shorts to GND, the LT3073 input voltage can rise to the switcher’s input voltage and thus potentially violate the LT3073’s absolute maximum rating. To prevent this, the maximum LT3073 input voltage can be set using a resistor (R3) between the VIOC and IN pins of the regulator such that: ������(������������������)������������������������������ = ������������������������������������������������������������������������ ������1 + ������2 + ������3 ������1 The VIOC pin is capable of sourcing 200µA. Choose R1 and R3 values such that the VIOC pin sources at least 10μA to ensure system stability. Figure 76 shows a typical VIOC application used to post-regulate the output of the LT8610A buck converter. The VIOC voltage is set at 1.1V (VINLDO-VOUTLDO is set to 300mV). The maximum LDO input voltage VINLDO(MAX) is set to 5.08V. Power Good The PG pin is an open-drain NMOS output that actively pulls low if EN is low or if any one of these fault modes is detected: VOUT is less than 93% of VOUT(NOMINAL) on the rising edge of VOUT. VOUT is less than 90% of VOUT(NOMINAL) on the falling edge of VOUT. VBIAS is less than its undervoltage lockout threshold. The OUT-over-IN voltage detector activates. 51kΩ 806Ω R1 R2 2.2µF 22µF 4.7µF 800mV VIN OUT BIASF LT3073 VOUTLDO = 0.5V IOUT(MAX) = 3A VO2 VO1 VO0 FB VBIAS 3.3V IN EN VIOC MARG GND SENSE TEMP IMON POWER GOOD BIAS PG REF UPSTREAM DC TO DC CONVERTER V ≥ 1V VIN EN/UV GND SW FB VINLDO 1× + – VFBSWITCHER R3 |
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