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STPM32TR Datasheet(PDF) 44 Page - STMicroelectronics |
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STPM32TR Datasheet(HTML) 44 Page - STMicroelectronics |
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44 / 89 page ![]() Bit Internal signal Description 7 PH2 IRQ status(1) Sign secondary apparent power 8 Overflow secondary channel active energy 9 Overflow secondary channel active fundamental energy 10 Overflow secondary channel reactive energy 11 Overflow secondary channel apparent energy 12 PH1 IRQ status Sign primary channel active power 13 Sign primary channel active fundamental power 14 Sign primary channel reactive power 15 Sign primary channel apparent power 16 Overflow primary channel active energy 17 Overflow primary channel active fundamental energy 18 Overflow primary channel reactive energy 19 Overflow primary channel apparent energy 20 Cx IRQ status Current sigma-delta bitstream stuck 21 AH1 - accumulation of current 22 Current swell detected 23 Current swell end 24 Vx IRQ status Voltage sigma-delta bitstream stuck 25 Voltage period error 26 Voltage sag detected 27 Voltage sag end 28 Voltage swell detected 29 Voltage swell end 30 Tamper status(1) Tamper 31 Tamper or wrong connection 1. Valid for the STPM33 and STPM34 only. Interrupt control mask register Each bit in the status register has a correspondent bit in DSP_IRQ1, DSP_IRQ2 interrupt mask registers. For each bit set, the relative event detection is output on INT1, INT2 pins respectively. In the STPM32, DSP_IRQ1 is mapped on INT1 pin only. Status bits can be monitored by an external microcontroller application, in fact when INTx pin triggers, the application reads the relative status register content and clears it. Note: Power sign status bits generate level interrupts. 8.5 Functional description of communication peripheral The STPM3x can be interfaced to a control unit through a programmable communication peripheral which can be: • 5 pins SPI (MISO, MOSI, SCS, SYN, SCL) • 4 pins UART (RX, TX, SCS, SYN). The serial communication peripherals share same pins so that they cannot be used at the same time. Interface selection is implemented through an internal detection system that, at the device startup, detects which of the two communication interfaces has to be used. This feature allows communication to be quickly established with minimal initialization. Auto-detection works at startup, (power-up or EN pin transition from low to high) by monitoring SCS pin status and automatically selecting the communication interface that matches the configuration: STPM32, STPM33, STPM34 Functional description of communication peripheral DS10272 - Rev 13 page 44/89 |
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