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ADE7932 数据表(PDF) 108 Page - Analog Devices |
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ADE7932 数据表(HTML) 108 Page - Analog Devices |
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108 / 120 page ![]() ADE7978/ADE7933/ADE7932 Data Sheet Rev. 0 | Page 108 of 120 Table 45. MASK0 Register (Address 0xE50A) Bits Bit Name Default Value Description 0 AEHF 0 When this bit is set to 1, it enables an interrupt when Bit 30 changes in any of the total active energy registers (AWATTHR, BWATTHR, or CWATTHR). 1 FAEHF 0 When this bit is set to 1, it enables an interrupt when Bit 30 changes in any of the fundamental active energy registers (AFWATTHR, BFWATTHR, or CFWATTHR). 2 REHF 0 When this bit is set to 1, it enables an interrupt when Bit 30 changes in any of the total reactive energy registers (AVARHR, BVARHR, or CVARHR). 3 FREHF 0 When this bit is set to 1, it enables an interrupt when Bit 30 changes in any of the fundamental reactive energy registers (AFVARHR, BFVARHR, or CFVARHR). 4 VAEHF 0 When this bit is set to 1, it enables an interrupt when Bit 30 changes in any of the apparent energy registers (AVAHR, BVAHR, or CVAHR). 5 LENERGY 0 When this bit is set to 1, it enables an interrupt at the end of an integration over the integer number of half line cycles set in the LINECYC register (line cycle energy accumulation mode). 6 REVAPA 0 When this bit is set to 1, it enables an interrupt when the Phase A active power (total or fundamental) identified by Bit 0 (REVAPSEL) in the MMODE register changes sign. 7 REVAPB 0 When this bit is set to 1, it enables an interrupt when the Phase B active power (total or fundamental) identified by Bit 0 (REVAPSEL) in the MMODE register changes sign. 8 REVAPC 0 When this bit is set to 1, it enables an interrupt when the Phase C active power (total or fundamental) identified by Bit 0 (REVAPSEL) in the MMODE register changes sign. 9 REVPSUM1 0 When this bit is set to 1, it enables an interrupt when the sum of all phase powers in the CF1 datapath changes sign. 10 REVRPA 0 When this bit is set to 1, it enables an interrupt when the Phase A reactive power (total or fundamental) identified by Bit 1 (REVRPSEL) in the MMODE register changes sign. 11 REVRPB 0 When this bit is set to 1, it enables an interrupt when the Phase B reactive power (total or fundamental) identified by Bit 1 (REVRPSEL) in the MMODE register changes sign. 12 REVRPC 0 When this bit is set to 1, it enables an interrupt when the Phase C reactive power (total or fundamental) identified by Bit 1 (REVRPSEL) in the MMODE register changes sign. 13 REVPSUM2 0 When this bit is set to 1, it enables an interrupt when the sum of all phase powers in the CF2 datapath changes sign. 14 CF1 0 When this bit is set to 1, it enables an interrupt when a high to low transition occurs at the CF1 pin; that is, an active low pulse is generated. The interrupt can be enabled even if the CF1 output is disabled by setting Bit 9 (CF1DIS) to 1 in the CFMODE register. The type of power used at the CF1 pin is determined by Bits[2:0] (CF1SEL[2:0]) in the CFMODE register (see Table 50). 15 CF2 0 When this bit is set to 1, it enables an interrupt when a high to low transition occurs at the CF2 pin; that is, an active low pulse is generated. The interrupt can be enabled even if the CF2 output is disabled by setting Bit 10 (CF2DIS) to 1 in the CFMODE register. The type of power used at the CF2 pin is determined by Bits[5:3] (CF2SEL[2:0]) in the CFMODE register (see Table 50). 16 CF3 0 When this bit is set to 1, it enables an interrupt when a high to low transition occurs at the CF3 pin; that is, an active low pulse is generated. The interrupt can be enabled even if the CF3 output is disabled by setting Bit 11 (CF3DIS) to 1 in the CFMODE register. The type of power used at the CF3 pin is determined by Bits[8:6] (CF3SEL[2:0]) in the CFMODE register (see Table 50). 17 DREADY 0 When this bit is set to 1, it enables an interrupt when all periodical (8 kHz rate) DSP computations finish. 18 REVPSUM3 0 When this bit is set to 1, it enables an interrupt when the sum of all phase powers in the CF3 datapath changes sign. [31:19] Reserved 0 0000 0000 0000 Reserved. These bits do not manage any functionality. |
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