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STPM11 数据表(PDF) 12 Page - STMicroelectronics |
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STPM11 数据表(HTML) 12 Page - STMicroelectronics |
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12 / 46 page ![]() Terminology STPM11, STPM12, STPM13, STPM14 12/46 Doc ID 13167 Rev 8 5 Terminology 5.1 Measurement error The error associated with the energy measured by STPM1X is defined as: Percentage Error = [STPM1X (reading) - True Energy] / True Energy 5.2 ADC offset error This is the error due to the DC component associated with the analog inputs of the A/D converters. Due to the internal automatic DC offset cancellation, the STPM1X measurement is not affected by DC components in voltage and current channel. The DC offset cancellation is implemented in the DSP. 5.3 Gain error The gain error is gain due to the signal channel gain amplifiers. This is the difference between the measured ADC code and the ideal output code. The difference is expressed as a percentage of the ideal code. 5.4 Power supply DC and AC rejection This parameter quantifies the STPM1X measurement error as a percentage of the reading when the power supplies are varied. For the PSRRAC measurement, a reading at two nominal supply voltages (3.3 and 5 V) is taken. A second reading is obtained with the same input signal levels when an ac (200 mVRMS/100 Hz) signal is introduced onto the supply voltages. Any error introduced by this ac signal is expressed as a percentage of reading. For the PSRRDC measurement, a reading at two nominal supply voltages (3.3 and 5 V) is taken. A second reading is obtained with the same input signal levels when the supplies are varied ±10%. Any error introduced is again expressed as a percentage of the reading. 5.5 Conventions The lowest analog and digital power supply voltage is named VSS which represents the system Ground (GND). All voltage specifications for digital input/output pins are referred to GND. Positive currents flow into a pin. Sinking current means that the current is flowing into the pin and is positive. Sourcing current means that the current is flowing out of the pin and is negative. The timing specifications of the signal treated by digital control are relative to CLKOUT. This signal is provided by from the crystal oscillator of 4.194 MHz nominal frequency or by the internal RC oscillator. An external source of 4.194 MHz or 8.192 MHz can be used. The timing specifications of signals of the CFGI interface are relative to the SCL-NLC, there is no direct relationship between the clock (SCL-NLC) of the CFGI interface and the clock of the DSP block. A positive logic convention is used in all equations. Obsolete Product(s) - Obsolete Product(s) |
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