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STPMS1 数据表(PDF) 15 Page - STMicroelectronics |
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STPMS1 数据表(HTML) 15 Page - STMicroelectronics |
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15 / 23 page ![]() STPMS1 Theory of operation Doc ID 16524 Rev 2 15/23 8 Theory of operation 8.1 General operation description The STPMS1 performs first-order analog modulation of signals which have frequencies varying from DC to 2 kHz on two independent channels in parallel. There is a current channel for measuring line current and a voltage channel for measuring line voltage. The outputs of the converters provide two streams of digital ones and zeros which are therefore multiplexed in time to reduce the number of external connections. The sampling and the data multiplexing are driven by an external clock signal, as it is used to strobe the analog inputs. The combination of one or more STPMS1s and an STPMC1 (which implements the digital filtering) constitutes a conversion system for energy metering applications. The STPMS1 can also be used along with a DSP programmed to demultiplex the output bitstream and to implement the digital filtering as a medium resolution ADC system. When used in energy metering applications, the voltage channel is connected externally and differentially to a line voltage divider which provides an analog signal proportional to the voltage u. The current channel is connected to a Rogowski coil, or to a current transformer (CT) or a shunt, which are used to interface the line current. The Rogowski coil provides an analog signal proportional to di/dt, while the shunt or CT provides an analog signal proportional to the current i. A CT differs from a shunt in sensitivity and phase error. There should be an anti-aliasing LP filter inserted between the sensors and the inputs of both channels of the STPMS1. Internally, the differential voltage input related to the voltage channel is connected directly to the A/D converter, which implies an amplification of x4. On the other side, the differential voltage input related to the current channel is connected first to a configurable x2 or x8 pre- amplifier and the output of this pre-amplifier to the similar A/D converter (x4 gain), which implies selectable pre-amplification of x8 or x32 and uses the same reference voltage. A pair of digital inputs (MS0 and MS1) is used to configure the device. 8.2 Function description of the analog part The supply pins for the analog part are VCC, VDD, VDDac, VDDav, VDDd, and GND. The GND pin also represents a reference point. The VDD is an analog I/O pin of an internal +3.0 V low-drop voltage regulator, the VDDac and VCCav are the modulators supply inputs, while the VDDd is the digital front-end supply input. A 100 nF capacitor should be connected between VDDxx and GND. The input of the mentioned regulator is VCC which powers also a band-gap, and bias generators. The analog part consists of several modules: ● Band-gap reference and bias generators ● +3 V low-drop regulator ● two DC buffer amplifiers ● two ΣΔ AD converters ● control signal module |
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