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FDMS8680 数据表(PDF) 16 Page - Texas Instruments |
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FDMS8680 数据表(HTML) 16 Page - Texas Instruments |
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16 / 34 page ![]() TPS51916 SLUSAE1D – DECEMBER 2010 – REVISED JUNE 2012 www.ti.com Power State Control The TPS51916 has two input pins, S3 and S5, to provide simple control scheme of power state. All of VDDQ, VTTREF and VTT are turned on at S0 state (S3=S5=high). In S3 state (S3=low, S5=high), VDDQ and VTTREF voltages are kept on while VTT is turned off and left at high impedance state (high-Z). The VTT output floats and does not sink or source current in this state. In S4/S5 states (S3=S5=low), all of the three outputs are turned off and discharged to GND according to the discharge mode selected by MODE pin. Each state code represents as follow; S0 = full ON, S3 = suspend to RAM (STR), S4 = suspend to disk (STD), S5 = soft OFF. (See Table 1) Table 1. S3/S5 Power State Control STATE S3 S5 VREF VDDQ VTTREF VTT S0 HI HI ON ON ON ON S3 LO HI ON ON ON OFF(High-Z) S4/S5 LO LO OFF OFF(Discharge) OFF(Discharge) OFF(Discharge) MODE Pin Configuration The TPS51916 reads the MODE pin voltage when the S5 signal is raised high and stores the status in a register. A 15- μA current is sourced from the MODE pin during this time to read the voltage across the resistor connected between the pin and GND. Table 2 shows resistor values, corresponding control mode, switching frequency and discharge mode configurations. Table 2. MODE Selection RESISTANCE BETWEEN CONTROL SWITCHING MODE NO. DISCHARGE MODE MODE AND GND (k Ω) MODE FREQUENCY (kHz) 7 200 400 Tracking 6 100 300 D-CAP™ 5 68 300 4 47 400 Non-tracking 3 33 500 2 22 670 D-CAP2™ 1 12 670 Tracking 0 1 500 Discharge Control In S4/S5 state, VDDQ, VTT, and VTTREF outputs are discharged based on the respective discharge mode selected above. The tracking discharge mode discharges VDDQ output through the internal VTT regulator transistors enabling quick discharge operation. The VTT output maintains tracking of the VTTREF voltage in this mode. (Please refer to Figure 29) After 4 ms of tracking discharge operation, the mode changes to non-tracking discharge. The VDDQ output must be connected to the VLDOIN pin in this mode. The non-tracking mode discharges the VDDQ and VTT pins using internal MOSFETs that are connected to corresponding output terminals. The non-tracking discharge is slow compared with the tracking discharge due to the lower current capability of these MOSFETs. (Please refer to Figure 30) 16 Submit Documentation Feedback Copyright © 2010–2012, Texas Instruments Incorporated |
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