Implanting type integrated magnetic coupling resonator wireless energy transfer method

A technology of wireless energy transmission and magnetic coupling resonance, applied in electromagnetic wave systems, electrical components, circuit devices, etc., can solve the problems of limited receiving coil size, low energy transmission efficiency, etc., to reduce radiation damage, high transmission efficiency, small effect of space

Inactive Publication Date: 2013-05-15
HANGZHOU DIANZI UNIV
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AI Technical Summary

Problems solved by technology

[0007] In order to solve the problems of receiving coil size limitation and low energy transmission efficiency in wireless power transmission of implantable medical electronic devices, the present invention provides a method for realizing magnetic coupling resonance wireless power transmission of receiving coils by using an integrated circuit, which can not only realize smaller Coil size, and can achieve high energy transfer efficiency

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  • Implanting type integrated magnetic coupling resonator wireless energy transfer method

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Embodiment Construction

[0018] The present invention will be further described below in conjunction with drawings and embodiments.

[0019] Such as figure 1 As shown, the present invention includes an energy transmitting device 1 and an energy receiving device 2 .

[0020] The energy transmitting device 1 includes an energy generating circuit, that is, a driving voltage source 1-1, an energy excitation coil 1-3 and its connected capacitor 1-2, an energy transmitting coil 1-4 and its connected capacitor 1-5. The energy generation circuit 1-1 is implemented by a conventional class E amplifier, which has a relatively low output impedance and has little influence on the quality factor of the energy excitation coil circuit. The energy excitation coil 1-3 and the energy transmitting coil 1-4 are respectively printed on two sides of the same PCB board, the shapes are identical and parallel, and the thickness of the PCB board is as thin as possible during production, so that the coupling coefficient betwee...

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Abstract

The invention discloses an implanting type integrated magnetic coupling resonator wireless energy transfer method. According to the implanting type integrated magnetic coupling resonator wireless energy transfer method, four coils are utilized for transferring energy, wherein two coils are arranged outside a human body, the other two coils are arranged inside the human body, the two coils outside the human body are realized through a printed circuit board (PCB) and are respectively an energy excitation coil and an energy transmitter coil, and the energy transmitter coil is connected with a driving voltage source. The two coils inside the human body are realized through an integrated circuit and are respectively an energy receiver coil and an energy recovery coil, wherein the energy recovery coil, a rectifying circuit realized by the integrated circuit inside the human body, and other functional circuits are integrated on a single chip. A capacitor is connected in parallel on each of four coil return circuits, and therefore the four coils are enabled to have the same resonance frequency. According to the implanting type integrated magnetic coupling resonator wireless energy transfer method, the two coils inside the human body are realized through the integrated circuit and can be integrated on the single chip with the rectifying circuit and the other functional circuits, and therefore an implanting type integrated magnetic coupling resonator occupies a smaller space and is suitable for being used in implanting type medical electronic devices, wherein the space requirements of the implanting type medical electronic devices are harsh.

Description

technical field [0001] The invention belongs to the field of wireless power transmission, and in particular relates to a magnetic coupling resonance wireless power transmission method, which is used for implantable medical electronic devices whose receiving coils are realized by integrated circuits. Background technique [0002] Implantable Medical Devices (IMD) have been applied and experimentally studied in cardiac pacemakers, cochlear implants, artificial retinas, nerve electrical stimulators, capsule endoscopes, etc., in disease treatment, health monitoring, It is more and more important to improve the understanding of the human body itself and the role of living organisms. [0003] The traditional IMD power supply adopts percutaneous wired power supply or battery power supply, but percutaneous wired power supply brings pain and risk of infection to patients, while battery power supply has disadvantages such as short life, large volume, and easy leakage. Directly or ind...

Claims

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Application Information

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IPC IPC(8): H02J17/00H02J50/12H02J50/40
Inventor 程瑜华舒亚明徐美君
Owner HANGZHOU DIANZI UNIV
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