IP Library Granted Patent US 12713740
Granted Patent B2
US 12713740 · App. 17/272,312 · Granted Aug 18, 2026

Micro light-emitting diode transfer device and method of transferring thereof

Inventors: Zhaoning Sun (Shenzhen, CN); Chaode Mo (Shenzhen, CN)
Assignee: TCL CHINA STAR OPTOELECTRONICS TECHNOLOGY CO., LTD.
H10H20/851H10H20/062H10H20/036
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Quick Facts
Patent No.
US 12713740
App. No.
17/272,312
Granted
Aug 18, 2026
Kind
B2
Abstract

A micro light-emitting diode transfer device and a method of transferring thereof are provided. The micro light-emitting diode transfer device includes an operating board, a light source generator, and a photomagnetic substrate. The light source generator is disposed above the operating board and includes a plurality of light emitting units, each of the light emitting units comprises a light emitting side, and the light emitting side faces the operating board. The photomagnetic substrate includes a plurality of photomagnetic units, which attract micro light-emitting diodes.

Claims (21)

1 . A micro light-emitting diode transfer device, comprising:

an operating board, wherein the operating board comprises a first platform configured to support an array substrate and a second platform configured to support a micro light-emitting diode;

a light source generator disposed opposite to the operating board, wherein the light source generator comprises a plurality of light emitting units, each of the light emitting units comprises a light emitting side, and the light emitting side faces the operating board; and

a photomagnetic substrate comprising a plurality of photomagnetic units;

wherein the photomagnetic substrate is disposed on the light emitting side of the light source generator, and each of the light emitting units corresponds to one of the photomagnetic units; and

wherein when the photomagnetic units receive light, the photomagnetic units generate magnetism to attract the micro light-emitting diode, and when the photomagnetic unit do not receive light, the photomagnetic units lose the magnetism and release the micro light-emitting diode.

2 . The micro light-emitting diode transfer device according to claim 1 , further comprising a plurality of light wave filters disposed between each of the light emitting units and each of the photomagnetic units corresponding to each of the light emitting units.

3 . The micro light-emitting diode transfer device according to claim 1 , wherein the light source generator comprises:

a light source comprising a light emitting side; and

a transparent plate comprising a plurality of light-transmitting regions and a light-shielding region surrounding the light-transmitting regions, wherein the transparent plate is disposed on the light emitting side of the light source.

4 . The micro light-emitting diode transfer device according to claim 1 , wherein the photomagnetic substrate comprises:

a transfer substrate parallel to the light source generator;

a photomagnetic material layer disposed on a side of the transfer substrate facing the light source generator and located in the photomagnetic units; and

a plurality of magnetic channels, wherein each of the magnetic channels corresponds to one of the photomagnetic units, and the magnetic channels are filled with magnetic material;

wherein an attraction force generated by the magnetic channels is less than a gravity of the micro light-emitting diode.

5 . The micro light-emitting diode transfer device according to claim 1 , wherein

a wavelength of light waves emitted by the light source generator ranges from 10 nanometers to 800 nanometers; and

wherein an arrangement of the light emitting units is identical to an arrangement of pixels in the array substrate.

6 . The micro light-emitting diode transfer device according to claim 1 , further comprising:

a controller connected to the light source generator and configured to control turning on and off of the light source generator and an intensity of light waves emitted by the light source generator.

7 . The micro light-emitting diode transfer device according to claim 1 , further comprising a moving module connected to the light source generator and the photomagnetic substrate and configured to move the light source generator and the photomagnetic substrate at a same time.