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CS5461 Datasheet(PDF) 40 Page - Cirrus Logic |
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CS5461 Datasheet(HTML) 40 Page - Cirrus Logic |
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40 / 45 page ![]() CS5461 40 DS546F2 8. BASIC APPLICATION CIRCUITS Figure 14 shows the CS5461 connected to a service to measure power in a single-phase 2-wire system while operating in a single supply configuration. Note that in this diagram the shunt resistor used to monitor the line current is connected on the “Line” (hot) side of the power mains. In most residential power metering applications, the power meter’s current-sense shunt resistor is intentionally placed on the hot side of the power mains in order to detect a subscriber’s attempt to steal power. In this type of shunt-resistor configuration, the common-mode level of the CS5461 must be referenced to the hot side of the power line; which means the com- mon-mode potential of the CS5461 will typically oscillate to very high voltage levels with respect to earth ground potential. If digital communication networks require that the CMOS-level digital inter- face be referenced to an earth ground, the serial in- terface pins on the CS5461 must be isolated from the external digital interface. Figure 15 shows the same single-phase two-wire system with complete isolation from the power lines. This isolation is achieved using three trans- formers: a general purpose transformer to supply the on-board DC power; a high-precision, low im- pedance voltage transformer, with very little roll-off/phase-delay, to measure voltage; and a cur- rent transformer to sense the line current. Because the CS5461 is not directly connected to the power mains, no isolation is necessary on the CS5461’s digital interface. Figure 16 shows a single-phase 3-wire system. In many 3-wire residential power systems within the United States, only the two line terminals are avail- able (neutral is not available). Figure 17 shows the CS5461 configured to meter a three-wire system with no neutral available. VA+ VD+ CS5461 0.1 µF 100 µF 500 Ω 470 nF 500 N R1 R2 10 Ω 14 VIN+ 9 VIN- IIN- 10 15 16 IIN+ PFMON CPUCLK XOUT XIN Optional Clock Source Serial Data Interface RESET 17 2 1 24 19 CS 7 SDI 23 SDO 6 SCLK 5 INT 20 EDIR EOUT 0.1 µF VREFIN 12 VREFOUT 11 VA- DGND 13 4 3 To Service 2.5 MHz to 20 MHz 0.1 µF C 10 kΩ 5kΩ L R Shunt V+ R V- R I- R I+ C I+ 120 VAC Mech. Counter Stepper Motor or 22 21 Figure 14. Typical Connection Diagram (One-Phase 2-Wire, Direct Connect to |
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