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ADE7932 数据表(PDF) 88 Page - Analog Devices |
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ADE7932 数据表(HTML) 88 Page - Analog Devices |
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88 / 120 page ![]() ADE7978/ADE7933/ADE7932 Data Sheet Rev. 0 | Page 88 of 120 Bipolar ac voltage is the most stringent environment. The goal of a 50-year operating lifetime under the bipolar ac condition determines the maximum working voltage recommended by Analog Devices. In the case of unipolar ac or dc voltage, the stress on the insulation is significantly lower. This allows operation at higher working voltages while still achieving a 50-year service life. The working voltages listed in Table 12 can be applied while maintaining the 50-year minimum lifetime, provided that the voltage conforms to either the unipolar ac or dc voltage cases. Treat any cross-insulation voltage waveform that does not con- form to Figure 111 or Figure 112 as a bipolar ac waveform, and limit its peak voltage to the 50-year lifetime voltage value listed in Table 12. The voltage presented in Figure 111 is shown as sinusoidal for illustration purposes only. It is meant to represent any voltage waveform varying between 0 V and some limiting value. The limiting value can be positive or negative, but the voltage cannot cross 0 V. LAYOUT GUIDELINES Figure 34 shows the test circuit of the ADE7978/ADE7933/ ADE7932 chipset. The test circuit contains four ADE7933 devices and one ADE7978, together with the circuitry required to sense the phase currents and voltages in a 3-phase system. The chipset is managed by a microcontroller using the SPI interface. (The microcontroller is not shown in the schematic.) Figure 34 replicates the schematic of the ADE7978/ADE7933 evaluation board (see the ADE7978 and ADE7933/ADE7932 Evaluation Board section). Figure 113 and Figure 114 show a recommended layout for a printed circuit board (PCB) with two layers; in this layout, the components are placed only on the top side of the board. Following these layout guidelines helps to create a low noise design with higher immunity to EMC influences. Note that Figure 113 and Figure 114 show layout images that were cropped from images of a board containing other circuitry besides the ADE7978 and ADE7933 devices. The layout of a meter using the ADE7932 is very similar to the one designed for the ADE7933. The only difference is the absence of the voltage channel V2P and its related circuitry: the resistor divider and the protection diodes. The primary supply voltage is supplied at VDD (Pin 19) of the ADE7933. Two decoupling capacitors are placed between VDD and GND (Pin 20): a 10 µF capacitor and a 100 nF ceramic capacitor. The ceramic capacitor must be placed closest to the ADE7933/ADE7932 because it decouples the high frequency noise; the 10 µF capacitor must be placed in close proximity to the ADE7933/ADE7932. The ADE7933 VDDISO pin (Pin 1) is decoupled from GNDISO (Pin 2) using two capacitors: a 10 µF capacitor and a 100 nF ceramic capacitor. Place the ceramic capacitor closest to the ADE7933/ADE7932; place the 10 µF capacitor in close prox- imity to the ADE7933/ADE7932. The ADE7933 LDO and REF pins (Pin 8 and Pin 9) are each decoupled from GNDISO (Pin 10) using two capacitors: a 4.7 µF capacitor and a 100 nF ceramic capacitor. Place the ceramic capacitor closest to the ADE7933/ADE7932; place the 4.7 µF capacitor in close proximity to the ADE7933/ADE7932. Note that the ADE7933/ADE7932 isolated ground point is one of the shunt poles. This point is directly connected to Pin 10 (GNDISO). It is not necessary to connect the shunt ground pole to Pin 2; the two GNDISO pins (Pin 2 and Pin 10) are internally connected to each other. Note that the top layer components placed on the isolated secondary side of the ADE7933 are surrounded by a ground plane connected to GNDISO. The bottom layer extends the ground of the primary side below the ADE7933 and the related circuitry, creating a stitching capacitor. This capacitance has an important role in reducing the emissions generated by the dc-to-dc converter of the ADE7933/ADE7932. Note that a distance of at least 8 mm is maintained on both sides between the input pins on the board and the ground planes. |
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