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UM1559 Datasheet(PDF) 9 Page - STMicroelectronics |
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UM1559 Datasheet(HTML) 9 Page - STMicroelectronics |
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9 / 13 page ![]() UM1559 Circuit description Doc ID 023542 Rev 1 9/13 example control software provides a series of “picket fence” pulses to the gate, to improve the reliability of the gating, always finishing with the pins back high, ready for the next gating. Current sensing Shunt resistor R7 is used to sense the motor current during the Triac conduction angle. Using a value of 0.01 Ω generates a signal that is 10 mV/A. This signal is amplified by U1 to get a signal of 220 mV/A that is fed into an ADC input of the STM8. With a 5 V full scale value on the ACD, the circuit can read peak currents up to 22.7 A. Although the current through R7 is both positive and negative, the inverting configuration circuit amplifies only the negative current since the amplifier output cannot go below ground. An alternate configuration would be to add a bias to the amplifier circuit so that at zero current the output would be half of the full scale voltage, or 2.5 V. In this way both positive and negative current may be measured but the peak current capability would be reduced by ½ if the gain stayed the same. The current sensing is included primarily for a sensorless speed control algorithm. The algorithm senses current during the negative half cycle and performs the speed regulation calculations during the positive half cycle. The current sensing is not needed for the open loop or closed loop speed control with tachometer feedback. Motor voltage sensing Figure 4. Voltage sensing circuit The measured motor voltage is also required for a sensorless speed estimation algorithm of the software. Since neither side of the motor terminal voltage is at ground potential, a conventional differential amplifier stage, built around U1A, is used to interface the signal to the ground referenced STM8 ADC input, as shown in Figure 4. The differential amplifier also provides attenuation, biasing and resistive isolation. The gain of this circuit is 1 k Ω/78 kΩ. Since the circuit is biased at 2.5 V out for 0 V in, the input voltage range is +/- 195 V peak over the full scale range of 0 to 5 V on the ADC input. Two 1206 case resistors are used in series for the input resistors to provide sufficient voltage rating. For operation on 230 V/50 Hz mains, the values of input resistors R2, R3, R5 and R6 are changed to 82 k Ω. |
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