Infrared battery with especially big energy density
An infrared, extra-large technology, applied in electrical components, generators/motors, etc., can solve the problems of low energy density of batteries and capacitors, lead pollution and pollution of lead batteries
Patent Information
- Authority / Receiving Office
- CN · China
- Current Assignee / Owner
- Publication Date
- 2013-03-20
- Estimated Expiration
- Not applicable · inactive patent
Smart Images
Figure 1
Abstract
Description
technical field
[0001] The invention belongs to the field of environmental protection energy collectors, the field of infrared rays, other light waves-cosmic energy, and the field of ultra-large energy density environment-friendly batteries. Background technique
[0002] Thermal power generators produce carbon dioxide pollution; lead-acid batteries have lead pollution; traditional batteries and capacitors have very small energy density; chemical energy cannot be consumed-regenerated in a continuous cycle; Peltier heat transfer effect: the input current in the same direction as the positive charge diffusion electromotive force of the diode pn junction semiconductor causes the copper N junction, NP junction, and P copper junction of the diode to simultaneously absorb air infrared rays (commonly known as "heat absorption"); and Convert the absorbed infrared rays into electrical energy of the Peltier circuit. Thereby increasing the positive charge diffusion electromotive force ...
Examples
Embodiment Construction
[0024] figure 1 ;Plastic king box 2, series diode group 3, copper body 4, electrode body 5, frequency converter 6, transformer 7, copper body 8, electrode body 9, ground 10, voltage regulator tube 11, diode 12, battery 13, capacitor 14 , full wave rectifier 15, coil 16.
[0025] Battery 13: "Fengfan" European lead-acid battery for automobiles, model 71014, rated electronic voltage W↓e: 12 volts, rated capacity 210 ampere hours, -18°C test current 700 amperes.
[0026] Output AC ultra-high electronic voltage W↓jcg=1 million volts.
[0027] Suppose: R is the circuit impedance, the inductance is L, the capacitance is C, and the quality factor is Q.
[0028] Baidu Encyclopedia: Series resonance quality factor formula (1): Q=(1 / R)·(L / C)↑(1 / 2)
[0029] The series resonance quality factor formula is sorted out, and the formula (1) is sorted out: C=L / (R↑2·Q↑2)
[0030] Quality factor Q=W↓jcg÷W↓e=1 million volts÷12 volts=8.3333 million, L=1 Henry, circuit impedance R=1 ohm, find ca...