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Self-assembly apparatus, device self-assembling method, and method of assembling thermoelectric device

A thermoelectric element, self-assembly technology, applied in the manufacture/processing of thermoelectric devices, electrical components, circuits, etc.

Active Publication Date: 2013-11-13
IND TECH RES INST
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Some existing micro-self-assembly technologies use liquid surface tension to assist assembly, and are rarely applied to components with large aspect ratios, and some micro-self-assembly technologies even require the appearance or Specific surface treatment

Method used

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  • Self-assembly apparatus, device self-assembling method, and method of assembling thermoelectric device
  • Self-assembly apparatus, device self-assembling method, and method of assembling thermoelectric device
  • Self-assembly apparatus, device self-assembling method, and method of assembling thermoelectric device

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Embodiment Construction

[0053] Figure 2A versus Figure 2B They are respectively a top view and a schematic cross-sectional view of the self-assembly device according to the first embodiment of the present invention.

[0054] Please refer to Figure 2A versus Figure 2B , The self-assembly equipment 100 includes a guide member 102, a vibration device 104, and a magnetic field generating device 106. The guide member 102 has a grid structure. The vibration device 104 is connected to the guide member 102 for vibrating the guide member 102. The magnetic field generating device 106 is located under the guide member 102 for generating a time-varying magnetic field. Among them, such as Figure 2B As shown, if the element 10 is placed on the guide member 102, through the vibration of the guide member 102, the action of the time-varying magnetic field, and the effect of the weight of each element 10, each element 10 will be positioned in the grid structure of the guide member 102 The bottom plate 105 between ...

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PUM

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Abstract

A self-assembly apparatus for assembling a plurality of devices with a predetermined aspect ratio is provided. The self-assembly apparatus includes a guiding element, a vibration device, and a magnetic field inducing device. The guiding element has a mesh structure. The vibration device is coupled to the guiding element and configured to vibrate the guiding element. The magnetic field inducing device is disposed below the guiding element and configured to generate a time-varying magnetic field to rotate each of the devices. Through a collective effect of the vibration of the guiding element, the time-varying magnetic field, and the self-gravity of each of the devices, the devices are positioned on a plate between the guiding element and the magnetic field inducing device through the mesh structure.

Description

Technical field [0001] The present invention relates to a self-assembly device; more specifically, the present invention relates to a self-assembly device using the synergy of a magnetic field and a gravitational field, a method for self-assembly of components, and a method for assembling thermoelectric elements. Background technique [0002] With the miniaturization of electronic components, the technology of assembling a large number of small components (such as thermoelectric elements, light-emitting diodes, etc.) on a substrate to form an overall module has attracted increasing attention. Among them is the need to develop self-assembly technology. [0003] On the other hand, in the face of the oil crisis and global warming, energy reuse has become an important global issue. Among various energy recycling technologies, thermoelectric elements that use temperature differences to generate voltage can be used to recover energy such as boiler waste heat and waste heat generated in ...

Claims

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Application Information

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IPC IPC(8): H01L35/34
CPCH01L35/34H01L24/95H01L2924/12042Y10T29/53174Y10T29/53196Y10T29/49895H01L2224/95001H10N10/01H01L2924/00
Inventor 戴明吉刘君恺简恒杰廖莉菱王可文曾彦霖林彦伯
Owner IND TECH RES INST