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ADE7912 データシート(PDF) 33 Page - Analog Devices |
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ADE7912 データシート(HTML) 33 Page - Analog Devices |
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33 / 44 page ![]() Data Sheet ADE7912/ADE7913 Rev. 0 | Page 33 of 44 POWER-UP AND INITIALIZATION PROCEDURES At power-up or after a hardware or software reset, the following steps must be executed for a microcontroller managing a system formed by one or multiple ADE7912/ADE7913 devices. Power-Up Procedure for Systems with a Single ADE7912/ADE7913 For one standalone ADE7912/ADE7913 device managed by a microcontroller, the power-up procedure is as follows (see Figure 52): 1. Connect a crystal between the XTAL1 and XTAL2 pins. 2. Supply VDD to the ADE7912/ADE7913 device. To ensure that the ADE7912/ADE7913 device starts functioning correctly, the supply must reach 3.3 V − 10% in less than 23 ms from approximately a 2.6 V level. The ADE7912/ ADE7913 device starts to function. 3. The dc-to-dc converter powers up and supplies the isolated side of the ADE7912/ADE7913. The Σ-Δ modulators become functional. This process takes approximately 100 ms to execute when the recommended capacitors on the VDDISO, LDO, and REF pins described in Table 9 are used. After this time, the isolated side of the ADE7912/ADE7913 is fully functional. 4. To determine when the ADE7912/ADE7913 device is ready to accept commands, read the STATUS0 register until Bit 0 (RESET_ON) is cleared to 0. This happens approximately 20 ms after the ADE7912/ADE7913 start to function and indicates that the nonisolated side of the ADE7912/ADE7913 is fully functional using the default settings. 5. Initialize the CONFIG register and the EMI_CTRL emissions control register. 6. Protect the user accessible and internal configuration registers by setting the lock register to 0xCA. See the Protecting the Integrity of Configuration Registers section. 7. When the ADC conversion data is available, the ADE7912/ADE7913 device begins generating a signal that is active low at the CLKOUT/DREADY pin for 64 CLKIN cycles (15.625 µs for CLKIN = 4.096 MHz). DREADY functionality is enabled by default at the CLKOUT/DREADY pin. 8. The microcontroller reads the IWV, V1WV, V2WV, ADC_CRC, and STATUS0 registers in SPI burst mode (see the SPI Read Operation in Burst Mode section for more information). Note that this power-up procedure also applies in the same way to systems that have multiple ADE7912/ADE7913 devices, each clocked from its own crystal. Every ADE7912/ADE7913 device is powered up and started independently. Figure 52. Power-Up Procedure for Systems with One or Multiple ADE7912/ADE7913 Devices, Each Clocked from Its Own Crystal ADE7912/ADE7913 POWERED UP 3.3V – 10% ≈2.6V ADE7912/ADE7913 START FUNCTIONING BIT STATUS0[0] (RESET_ON) CLEARED TO 0 DC-TO-DC CONVERTER POWERED UP AND Σ-Δ MODULATORS FUNCTIONAL 0V POR TIMER TURNED ON ADE7912/ADE7913 NONISOLATED SIDE READY ADE7912/ADE7913 ISOLATED SIDE READY 23ms 100ms 20ms |
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