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STPM11ATR 数据表(PDF) 17 Page - STMicroelectronics |
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STPM11ATR 数据表(HTML) 17 Page - STMicroelectronics |
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17 / 43 page ![]() STPM11/12/13/14 Theory of operation 17/43 For example, if R1 = 783k Ω and R2 = 475Ω are used as resistor divider when the line voltage is present, the positive voltage present at the input of the voltage channel of STPM1x is: since the maximum voltage value applicable to the voltage channel input of STPM1x is +0.3V, the equivalent maximum line voltage applicable is: VPK = R1+R2/R2 • 0.3 = 494.82 considering the case of NOM=2, the correspondent RMS values used for energy computation is: VRMS = VPK • 0.4219 = 208.76 [V] Usually the supply voltage for the electronic meter is taken from the line voltage. In SWM, since the line voltage is no longer present, another power source must be used in order to provide the necessary supply to STPM1x and the other electronic components of the meter. 7.6 Power supply The main STPM1X supply pin is the VCC pin. From the VCC pin two linear regulators provide the necessary voltage for the analog part VDDA (3V) and for the digital part VDDD (1.5V). The VSS pin represents the reference point for all the internal signals. The 100nF capacitor should be connected between VCC and VSS, VDDA and VSS, VDDD and VSS. All these capacitors must be located very close to the device. The STPM1X contains a Power-On-Reset (POR) detection circuit. If the VCC supply is less than 2.5V, then the STPM1X goes into an inactive state, all the functions are blocked asserting and a reset condition is set. This is useful to ensure that the correct device operation at power-up and during power-down. The power supply monitor has built-in hysteresis and filtering, which give a high degree of immunity to false triggering due to noisy supply voltages. A BandGap voltage reference (VBG) of 1.23V ±1% is used as reference voltage level source for the two linear regulators and for the A/D converters. Also, this module produces several bias currents and voltages for all other analog modules and for the OTP module. The bandgap voltage temperature behavior can be changed in order to better compensate the variation of sensor sensitivity with temperature. This task is performed with the BGTC configuration bits. Table 10. Nominal voltage values NOM KNOM 0 0.3594 1 0.3906 2 0.4219 3 0.4531 2 2 1 2 RMS V R R R VI ⋅ + = |
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