Wireless Circulation Energy Storage to Replace Dry Batteries
A dry battery and energy storage technology, applied in the field of energy storage, can solve problems such as affecting people's health, damage to remote controls and electrical appliances, environmental pollution, etc., and achieve the effect of reducing the use cost and reducing the failure rate.
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example 1
[0025] Example 1. The external structure of a wireless cycle energy storage that replaces dry batteries
[0026] Such as image 3 , the long plastic shell B1 and the short plastic shell B2, both of which are plastic materials, are integrated into one body, and the ends with electrodes are aligned. Compared with the short plastic shell B2, the long plastic shell B1 is several millimeters to one centimeter longer, so that it is convenient to connect them At the same time, put it into the original battery slot, one end of the short plastic shell B2 has a battery positive pole P+, one end of the long plastic shell B1 has a battery negative pole P-, and the other end of P3 is a false positive pole, which is a non-metallic material and only has a positive pole shape, is not conductive and is for positioning only.
example 2
[0027] Example 2. The working principle of the wireless cycle energy storage that replaces the dry battery
[0028] Such as figure 2 , a wireless cycle energy storage device that replaces dry batteries. It is mainly composed of a receiving coil L2, a power receiving chip IC2 and a farad capacitor FC. The positive pole P+ of the output power is connected to the positive pole of the farad capacitor, and the negative pole P - Connected to the negative pole of the farad capacitor. The power receiving chip IC2 has three terminals, namely the input terminal, the ground terminal and the output terminal. The two ends of the receiving coil L2 are respectively connected to the input terminal and the ground terminal of the power receiving chip IC2. The farad capacitor The positive and negative poles of the FC are respectively connected to the output terminal of the power receiving chip IC2 and the ground terminal.
example 3
[0029] Example 3. The internal structure of a wireless cycle energy storage that replaces dry batteries
[0030] Such as figure 1 , in the long plastic shell B1, a permanent magnet SN, a magnetic strip M2 and a receiving coil L2 wound on the magnetic strip M2 are placed, and in the short plastic shell B2, a farad capacitor FC and a power receiving chip IC2 are placed, The positive pole P+ on the short plastic shell B2 is connected to the positive pole of the farad capacitor FC, and the negative pole P- on the long plastic shell B1 is connected to the negative pole of the farad capacitor FC; the power receiving chip IC2 has three terminals, which are the input terminal, the ground terminal and the output terminal. The two ends of the receiving coil L2 are respectively connected to the input terminal and the ground terminal of the power receiving chip IC2, and the positive and negative poles of the farad capacitor FC are respectively connected to the output terminal of the power...
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