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STPM10 датащи(PDF) 26 Page - STMicroelectronics |
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STPM10 датащи(HTML) 26 Page - STMicroelectronics |
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26 / 47 page ![]() Theory of operation STPM10 26/47 DocID17728 Rev 5 case in which the LED pin is configured to be driven from internal signal AW (active energy) whose frequency is proportional to the active energy. The signal AW is taken from the 11th bit of the active energy register, and consequently a relationship between the LSB value of the active energy register and the number of pulses provided per each kWh (P) can be defined as: Equation 2: �������� = 1000 211 ⋅ ���� [����ℎ] Due to the innovative and proprietary power calculation algorithm, the frequency signal is not affected by any ripple at twice the line frequency. This feature strongly reduces the calibration time of the meter. In a practical example where the desired P is 64000 pulses/kWh (=17.7 Hz*kW), we have: Equation 3: kAW = 7.63*10-6 Wh This means that the reading of 0x00001 in the active energy register represents 7.63 μWh, while 0xFFFFF represents 8 Wh. The LED pin can be driven from AW (active energy wide band), AF (active energy limited at fundamental), RW (reactive energy) or SW (apparent energy) according to the value of the KMOT bit. In this case, since the LED pin is driven by different signals from that of AW, some other relationship between the LSB of the register and the number of pulses per kWh provided by the meter (P) must be defined as follows: Equation 4: kAF = 4*kAW [Wh] kRW = 2*kAW [VARh] kSW = kAW [VAh] Table 9: LED pin configuration KMOT (2 bits) Signal available on LED pin Number of pulses 0 AW Type0* P [kWh] 1 AF Type1* P [kWh] 2 RW P [kVARh] 3 SW P [kVAh] 7.15 Status bit The STPM10 includes 8 status bits, which provide information about the current status of the meter. The status bits are the following: Table 10: Status bit description Bit # Name Description Conditions 0 BIL No-load condition BIL = 0: no-load condition not detected BIL = 1: no-load condition detected 1 BCF ΣΔ signals status BCF = 0: ΣΔ signals active BCF = 1: one or both ΣΔ signals are stacked 2 BFR Line frequency BFR = 0: line frequency within the 45 Hz - 65 Hz range |
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