Air purification method for using air chip for releasing negative ions in certain scope
A technology for purifying air and negative ions, applied in heating methods, electrical components, air-conditioning systems, etc., can solve the problems of increased speed and power consumption for end users, and achieve high inactivation rate and fast inactivation speed
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Embodiment 1
[0022] A method for purifying air in a wide range by releasing negative ions through an air chip, including smart dust composed of a microprocessor, a two-way wireless receiving device, and a wireless network. They can locate each other, further collect data through two-way wireless receiving devices and transmit information to the microprocessor, and the microprocessor transmits information to the cloud coefficient library of the base station; it also includes air chips that are not fixed in shape, and the air chips include The first electrode layer, the functional material layer, the second electrode layer, the third computing layer and the cloud transmission layer are sequentially connected. The third computing layer is used for high bionics of the air chip, extracting computing simulation functions, and simulating biological neurons to complete high Intelligent calculation, and upload the calculation data to the cloud coefficient library through the cloud transfer layer for...
Embodiment 2
[0028]Embodiment 2 differs from Embodiment 1 in that: the air inlet is a honeycomb structure, and each honeycomb controller has a suction fan. The first electrode layer is used to simulate the post-synapse, the second electrode layer is used to simulate the pre-synapse, and the material of the functional material layer is a chalcogenide compound. The conductance of the functional material layer is used to model synaptic weights. The conductance of the functional material layer is used to simulate synaptic weights; post-synaptic stimulation is simulated by applying a second pulse signal to the first electrode layer, and synaptic stimulation is simulated by applying a first pulse signal to the second electrode layer. Pre-stimulation; the resistance of the functional material layer is used to simulate the excited state or resting state of biological neurons.
[0029] When working: Each honeycomb controller has a suction fan, which can enter the air at a fast speed.
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