The anti-reverse charging control circuit can ensure that when the solar cell input voltage is lower than the supercapacitor voltage, the supercapacitor will not reverse charge the solar cell to avoid unnecessary energy loss. The reverse charging control can be completed by the diode D1 in Figure 1. This diode is a Schottky diode because the conduction voltage drop of the Schottky diode is lower than that of an ordinary diode.
2.2 LED driving voltage stabilization circuit
Since the rated voltage of the selected LED lamp is 3.3 V, and the voltage of the supercapacitor is 5.0 V, and the voltage of the supercapacitor will continue to decrease during the discharge process, a voltage stabilization circuit is required to drive the LED.
This article uses a VFM switching DC/DC boost regulator manufactured by CMOS technology and with extremely low static current. The chip includes a VFM control circuit, an LX switch drive transistor, a reference voltage unit, an oscillator, an error comparison amplifier, a voltage sampling resistor, an LX switch protection circuit, etc. Only an inductor, an output capacitor and a Schottky diode are required outside the chip to provide a stable low-noise output voltage. The regulator has an extremely low input current of 8 μA, low ripple, low noise, an efficiency of 80%, an extremely low start-up voltage of 0.6 V, and an output voltage accuracy of ±2.5%. This part of the circuit is shown in Figure 2.
Among them, the inductor and diode outside the 331C will affect the conversion efficiency. In addition, the capacitor and inductor will also affect the output ripple. Therefore. When designing, you should choose the appropriate inductor, capacitor and Schottky diode to obtain higher conversion efficiency and lower ripple and noise. According to the data sheet of 331C, this design selects an inductor of 47μH and less than 0.5 Ω and a tantalum capacitor with low ESR of 47μF. The diode used for rectification has a great influence on the efficiency of DC-DC. Although ordinary diodes can also make the DC-DC circuit work normally, it will reduce the efficiency of the DC-DC converter by 5% to 10%. Therefore, D3 uses a Schottky diode lN5817 with a lower forward conduction voltage and a shorter reaction time.
2.3 Light-controlled circuit
Supercapacitor solar lawn lights require a light-controlled switch circuit to control the switch of the LED. So that the LED can be turned on when the ambient light becomes dark, and the LED can be turned off when the light becomes brighter. Some light-controlled switch circuits use photoresistors to switch LEDs, and solar cells can also be directly used as light-sensitive switches because the characteristics of solar cells are better than photoresistors. This part of the circuit is shown in Figure 3.
In Figure 3, U1 is a six-phase inverter 74HC14 with a Schmitt trigger, in which the multivibrator is composed of the second inverter, R5 and C1. In this way, when the light becomes brighter during the day, the voltage of the solar cell increases, the 1st pin of the 74HC14 is high, the 2nd pin of the 74HC14 is low, the 8th pin also outputs a low level, the transistor Q1 is cut off, and the LED is turned off. When the light becomes darker, when the voltage of the solar cell drops to a certain level, the 1st pin of the HC14 is low, the 2nd pin of the HC14 is high, the multivibrator starts to oscillate, and outputs high and low levels through Y4, Q2 is sometimes turned on and sometimes cut off, at this time, just adjust the values of R6 and C1 to adjust the flash frequency to a level that the human eye cannot distinguish, and the biggest advantage of doing so is that it can extend the working time of the lawn lamp. According to actual tests, the circuit can work continuously for more than 10 hours a day, which can fully meet the user's needs.
3 Conclusion
The design of this supercapacitor solar lawn uses supercapacitors and integrated DC-DC chips, so the entire circuit design is simple, the reliability is high, and it is a green and environmentally friendly product. At present, this design has been successfully applied to actual products.
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