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SA9103C 数据表(PDF) 6 Page - Sames |
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SA9103C 数据表(HTML) 6 Page - Sames |
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6 / 16 page ![]() SA9103C sames 6/16 3. Electrostatic Discharge (ESD) Protection The SA9103C integrated circuit's inputs/outputs are protected against ESD . 4. Power Consumption The power consumption rating of the SA9103C integrated circuit is less than 25mW. 5. Serial Interface Reading and resetting of the SA9103C's on-chip integrators, is performed via the serial interface. The settings are: 19 200 Baud 1 Start bit (S) 1 Stop bit (E) No parity bits The serial interface, with RS232 protocol, has been designed to operate directly with a PC (Personal Computer). The serial interface allows for the following operations: Read Integrator (RD): The SA9103C integrated circuit transmits the integrator status to the controller, after the current measurement cycle has been completed (8 mains periods maximum). The register containing the mains frequency information is read only. Reset Integrator (RES): The SA9103C integrator is reset, without transmitting the integrator status. Read/Reset Integrator (RD/RES): The SA9103C transmits the integrator status and resets the integrator after the current measurement cycle has been completed. In a typical application, the system controller monitors the status of the SA9103C's integrator using the "Read" command. At rated load conditions, the capacity of the 22 bit integrator allows for an integration time of 2 seconds prior to integrator overflow. If after a "Read" command, the integrator value is sufficently high, a "Read/Reset" command from the controller causes the SA9103C integrated circuit to complete the existing measurement cycle, transmit the 16 most significant bits of the 22 bit integrator via the Serial Output (SOUT) to the controller and restart the integrator. In order to ensure correct measurements, the integrator commands ("Read" and "Read/Reset") are only executed after completion of the internal offset calibration cycle. The cycle length is 8 mains periods. Thus, for power calculations, the time value should be taken from the difference in time from the previously received energy value to the currently received value. |
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