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ADE1201 数据表(PDF) 16 Page - Analog Devices |
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ADE1201 数据表(HTML) 16 Page - Analog Devices |
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16 / 40 page ![]() ADE1201 Data Sheet Rev. 0 | Page 16 of 40 THEORY OF OPERATION The ADE1201 is a single channel, configurable, isolated digital input monitor designed for energy transmission and distribution applications. The ADE1201 contains an isolated and a nonisolated side (see Figure 21). Only a single 3.3 V supply is required to power the ADE1201. The isolated side (the VDDI pin and GNDF pin) is supplied from an internal, isolated dc-to-dc converter, which is generated from the VDD pin and GND pin on the nonisolated side. The isoPower technology eliminates the need for an external, isolated power supply. The isolated side of the device contains a PGA, an SAR ADC, a programmable load, and a gate drive. Digital isolators allow the isolated side to communicate with the nonisolated side. The nonisolated side signal conditions the ADC data coming from the isolated side and creates the DOUT1 digital output. The digital output reflects the status of the IN1 digital input from the isolated side. The SPI is used to initialize the ADE1201 and can be used to monitor status and ADC waveforms during operation. POWER SUPPLY AND CONDITIONING VDD, VLDO, and GND Pins Connect the VDD pin to a 3.3 V logic level supply. Decouple these pins to the GND pin with the recommended capacitors shown in Table 16, and see the Layout Guidelines section for recommendations on how to make these connections. GNDF Pins The GNDF pins are used to reference the high voltage side circuits after the isolation barrier. The GNDF pin located at Pin 1 is used to provide a return path for current from the internal programmable load. The GNDF pin located at Pin 10 is used as a reference for internal, isolated power supply and the LDO regulator. Both Pin 1 and Pin 10 are required to be connected to the high voltage ground plane on the PCB. The detailed grounding method is described in the Layout Guidelines section. VDDI and VDDL Supplies The VDDI pin is the 2.0 V, isolated side power supply output, and the VDDL pin is the 1.8 V output of the analog LDO regulator. Decouple these pins to GNDF (Pin 10) with the recommended capacitors shown in Table 16, and see the Layout Guidelines section for recommendations. Note that no external component can be supplied from the VDDI and GNDF isolated power supply outputs. Power-Up At power-up, the following steps must be taken by the host controller managing a system formed by one or multiple ADE1201 devices: 1. Supply 3.3 V to the VDD pin. The dc-to-dc converter powers up and supplies the isolated side of the ADE1201. The full device becomes functional. See Table 3 for the power-up time. 2. To determine when the ADE1201 devices are ready to accept commands, read the INT_STATUS register of each device until Bit 14 (RSTDONE) is set to 1. 3. Use the SPI to initialize the configuration registers (BIN_FILTER, PL_EN, and PGA_GAIN) of each ADE1201. 4. Write 0xADE1 to the LOCK register to complete the configuration process. DECIMATION COMPARATOR FILTERING OUTPUT CONTROL SPI PORT PROGRAMMABLE LOAD GATE DRIVE LDO REGULATOR VDD GND VLDO DOUT1 IRQ ADDR CS SCLK MOSI MISO GNDF VDDI VDDL GATE LOAD1 GNDF PGA IN1 10 9 7 11 12 13 14 15 16 17 18 19 20 5 3 2 1 DATA ISOLATION POWER ISOLATION ISOLATED SIDE NONISOLATED SIDE ADC LDO REGULATOR Figure 21. ADE1201 Nonisolated and Isolated Sides |
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