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THERMOELEMENT USING AMORPHOUS AND EXOTHERMIC BINDER, AND PRODUCTION METHOD THEREFOR

机译:非晶态和放热结合剂的热法及其制备方法

摘要

The present invention relates to a thermoelement and a production method therefor and to a thermoelement and a method for producing said thermoelement, the thermoelement comprising an upper electrode, a thermoelectric semiconductor, and a lower electrode, wherein a predetermined multilayered thin film bonding part is formed in a first predetermined bonding part between the upper electrode and thermoelectric semiconductor or in a second predetermined bonding part between the thermoelectric semiconductor and lower electrode. The exothermic multilayered thin film, which has amorphous properties and is formed in the first predetermined bonding part between the upper electrode and thermoelectric semiconductor or in the second predetermined bonding part between the thermoelectric semiconductor and lower electrode, melts at a low temperature by an exothermic reaction caused by changing from amorphous to crystalline, thereby triggering bonding. According to the present invention, the thermoelement provides excellent adhesion between a semiconductor element and electrodes and thus can increase the stability and generating efficiency of the thermoelement, and the thermoelement production method can provide excellent bonding strength and bonding reliability even at a low temperature while minimizing bonding process changes.
机译:热电元件及其制造方法,热电元件及其制造方法技术领域本发明涉及热电元件及其制造方法,以及制造该热电元件的方法,该热电元件包括​​上部电极,热电半导体和下部电极,其中,形成规定的多层薄膜接合部。在上电极和热电半导体之间的第一预定结合部分中或在热电半导体和下电极之间的第二预定结合部分中。在上电极与热电半导体之间的第一预定结合部分或在热电半导体与下电极之间的第二预定结合部分中形成的具有非晶性质的放热多层薄膜通过放热反应在低温下熔融。由无定形变为结晶,从而触发键合。根据本发明,热电元件在半导体元件和电极之间提供了优异的粘合性,因此可以增加热电元件的稳定性和产生效率,并且该热电元件的制造方法即使在低温下也可以提供优异的接合强度和接合可靠性,同时将其最小化。粘合过程发生变化。

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