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34717 Datasheet(PDF) 21 Page - Freescale Semiconductor, Inc |
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34717 Datasheet(HTML) 21 Page - Freescale Semiconductor, Inc |
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21 / 25 page ![]() Analog Integrated Circuit Device Data Freescale Semiconductor 21 34717 TYPICAL APPLICATIONS OPERATIONAL MODES resistors will affect the accuracy of the system and must be 1% accurate resistors. To achieve this tracking configuration, the master voltage must be connected in the way shown and cannot be directly connected to the VREFIN terminal. Figure 12. Ratiometric Tracking Circuit Connections EQUATIONS •VM = VBG_M(1+R3/R4) •VREFIN = VM * R4/(R3+R4) •VREFOUT = VREFIN •VS = VREFOUT(1+R1/R2) = VM* R4/(R3+R4)*(R2+R1)/R2, if VREFOUT < VBG_S •VS = VBG_S(1+R1/R2), if VREFOUT ≥ VBG_S Figure 13. Ratiometric Tracking Plot CO-INCIDENTAL TRACKING CIRCUIT CONFIGURATION: Connect a three resistor divider to the master voltage (VM) and Route the upper tap point of the divider to the VREFIN terminal, resistors R3, R4, and R5 as shown in Figure 14. This resistor divider must be the same ratio as the slave output’s (VS) feedback resistor divider, which in turn connects to the INV- terminal, resistors R1 and R2 below (Condition: R1 = R3 and R2 = R4 + R5). The master’s feedback resistor divider would be (R3+R4) and R5. All five resistors will affect the accuracy of the system and must be 1% accurate resistors. To achieve this tracking configuration, the master voltage must be connected in the way shown and cannot be directly connected to the VREFIN terminal. Figure 14. Co-incidental Tracking Circuit Connections EQUATIONS •VM = VBG_M[1+(R3+R4)/R5] •VREFIN = VM*(R4+R5)/(R3+R4+R5) •VREFOUT = VREFIN •VS = VREFOUT(1+R1/R2) = VM*(R4+R5)/ (R3+R4+R5)*(R2+R1)/R2 = VM if VREFOUT < VBG_S •VS = VBG_S(1+R1/R2), if VREFOUT ≥ VBG_S Figure 15. Co-incidental Tracking Plot Not-DDR Mode (Source Only Mode) is the case when no tracking is needed. VREFIN should be connected to VDDI and the reference selection block will use the internal band gap voltage as the error amplifier’s reference voltage. A user can potentially apply a voltage to the VREFIN terminal directly or through a resistor divider to get a buffered output for use in the application. The condition here is, the voltage applied to the VREFIN terminal is greater than VBG to guarantee that the reference selection block will not switch back to the VREFOUT voltage. VSLAVE INV COMP Rs R1 Cs RF CF CX EA VREFIN Reference selector VBG R3 R4 R2 VMASTER To INV- of Vmaster + - CO VSLAVE INV COMP Rs R1 Cs RF CF CX EA VREFIN Reference selector VBG R3 R4 R2 VMASTER To INV- of Vmaster + - R5 CO |
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