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RT3612EB Datasheet(PDF) 5 Page - Richtek Technology Corporation |
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RT3612EB Datasheet(HTML) 5 Page - Richtek Technology Corporation |
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5 / 47 page ![]() RT3612EB 5 DS3612EB-02 December 2019 www.richtek.com © Copyright 2019 Richtek Technology Corporation. All rights reserved. is a registered trademark of Richtek Technology Corporation. Operation G-NAVPTM Control Mode The RT3612EB adopts G-NAVPTM (Green Native AVP) which is Richtek's proprietary topology. It is derived from current mode constant on-time control with finite DC gain of error amplifier and DC offset cancellation. The topology can achieve easy loadline design and provide high DC accuracy and fast transient response. When sensed current signal reaches sensed voltage signal, the RT3612EB generates a PWM pulse to achieve loop modulation. Figure 1 shows the basic G-NAVPTM behavior waveforms. The COMP signal is the sensed voltage, that is inverted and amplified signal of output voltage. While current loading is increasing, referring to Figure 1, COMP rises due to output voltage droop. Then rising COMP forces PWM turn on earlier and closely. While inductor current reaches loading current, COMP enters another steady state of higher voltage and corresponding output voltage is in the steady state of lower voltage. The loadline, output voltage drooping by an amount proportional to loading current, is achieved. SVID Interface/Control Logic/Configuration Registers SVID Interface receives or transmits SVID signal with CPU. Control Logic executes command (Read/Write registers, setVID, setPS) and sends related signals to control VR. Configuration Registers include function setting registers and CPU required registers. IMON Filter IMON Filter is used to average current signal by analog low-pass filter. It outputs IMONAVG to the MUX of ADC for current reporting. MUX and ADC The MUX supports the inputs of SET1, SET2, SET3, TSEN, PSYS and IMONAVG. The ADC converts these analog signals to digital codes for reporting or function settings. Figure 1. G-NAVPTM Behavior Waveform Sensed Current Signal COMP VID Δ I cc x RLL Steady State PWM Load Transient Loading Current ΔIcc VOUT |
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