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AN2986 数据表(PDF) 13 Page - STMicroelectronics |
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AN2986 数据表(HTML) 13 Page - STMicroelectronics |
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13 / 18 page ![]() AN2986 Gate current variation Doc ID 15727 Rev 1 13/18 The MCU is able to provide sufficient gate current. An estimation of VOLmin has been provided for one I/O port of STM32 (when 8 I/O ports are sunk with 8 mA each at the same time). 2.4 Summary of calculations This section summarizes the calculations for devices used in Example 1 to Example 6. ΔIG describes the difference between the maximum and minimum gate current which has an impact on the power supply rating. Equation 10 Average current consumption is based on the hypothesis that the maximum value is reached continuously during the half-cycle, i.e. as if the gate current were a squared form. The maximum average gate current is then the average of the maximum values for positive and negative half-wave: Equation 11 where I+Gmax is the maximum gate current for positive half-wave according to Equation 7. I–Gmax is the maximum gate current for negative half-wave and is calculated according to Equation 7, using the VGTmin value estimated in Section 2.2 for negative half-wave. It means that a VGTmin of 1 V for Z0103 and 0.7 V for ACS108-6T are used for calculating the maximum gate current in the negative half-wave. MCUs with negative 3.3 V supply voltage can be used for triggering ACS/TRIACs, but this puts additional constraints on the power supply design. VGT peak variation is already around 30% of VDD, so it is mandatory to reduce VDD ripple by precise control. For example a ±5% Table 2. Current consumption of different devices and MCUs RG (Ω) ±1% IGmin (mA) IGmax (mA) ΔIG (mA) IGavmax (mA) STM8S + ACS108, 5 V 180 15.7 23.2 (1) 1. This value exceeds maximum allowed current capability for one high-sink I/0 port of STM8S with 5V power supply (20 mA). Two pins must be used instead. 7.5 22.8 STM8S + ACS108, 3.3 V 110 15.1 20.8(2) 2. This value exceeds maximum allowed current capability for one high-sink I/0 port of STM8S with 3.3 V power supply (12 mA). Two pins must be used instead. 5.7 19.4 STM8S + Z0103, 5 V 560 4.6 8.8 4.2 7.75 STM8S + Z0103, 3.3 V 300 4.6 9.6 5.0 7.6 STM32 + ACS108, 3.3 V 110 15.1 22.6(3) 3. This value exceeds maximum allowed current capability for one I/O port of STM32 (20 mA). Two pins must be used instead. 7.5 22.15 STM32 + Z0103, 3.3 V 300 4.6 10.7 5.7 8.85 ΔI G I Gma x I Gmin – = I Gavma x 1 2 --- I Gma x + I Gma x – + () = |
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