IP Library › Granted Patent US 12,733,301
Granted Patent B2
US 12,733,301 · App. 17/561,517 · Granted Sep 8, 2026

Light-emitting diode and method for manufacturing thereof

Inventors: Anhe He (Fujian, CN); Su-hui Lin (Fujian, CN); Feng Wang (Fujian, CN); Qing Wang (Fujian, CN); Yu-Chieh Huang (Fujian, CN); Kang-wei Peng (Fujian, CN)
Assignee: XIAMEN SAN'AN OPTOELECTRONICS CO., LTD.
H10H20/8314H10H20/01H10H20/832H10H20/841H10H20/032H10H20/034
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Quick Facts
Patent No.
US 12,733,301
App. No.
17/561,517
Granted
Sep 8, 2026
Kind
B2
Abstract

A light-emitting diode includes a light-transmissive substrate, a light-emitting unit disposed on the light-transmissive substrate, an insulating layer, a first electrode and a second electrode. The insulating layer includes a first insulating portion and a second insulating portion which respectively cover an upward surface and a lateral surface of the light-emitting unit. The first and second electrodes are separately disposed on the insulating layer. At least one of the first and second electrodes extends on the first insulating portion and over a juncture between the first insulating portion and the second insulating portion.

Claims (14)

1 . A light-emitting diode (LED), comprising:

a light-transmissive substrate having a top surface, a bottom surface opposite to said top surface, and a sidewall surface interconnecting said top surface and said bottom surface;

a light-emitting unit including a first semiconductor layer, an active layer and a second semiconductor layer, said first semiconductor layer, said active layer and said second semiconductor layer being disposed on said top surface of said light-transmissive substrate in a stacking direction from said first semiconductor layer to said second semiconductor layer, said light-emitting unit having

a distal surface relative to said light-transmissive substrate, and

a lateral surface positioned between said distal surface and said top surface of said light-transmissive substrate;

an insulating layer including a first insulating portion covering said distal surface of said light-emitting unit, and a second insulating portion covering said lateral surface of said light-emitting unit, said first insulating portion having a first opening and a second opening, said second insulating portion being not in direct contact with said sidewall surface of said light-transmissive substrate;

a first electrode disposed on said insulating layer, said first electrode being electrically connected to said first semiconductor layer through said first opening; and

a second electrode disposed on said insulating layer, said second electrode being electrically connected to said second semiconductor layer through said second opening;

wherein at least one of said first electrode and said second electrode extends on said first insulating portion and over a juncture between said first insulating portion and said second insulating portion,

wherein said second insulating portion extends to reach said top surface of said light-transmissive substrate, and said at least one of said first electrode and said second electrode extends over said juncture and downwardly along said second insulating portion, and

wherein said sidewall surface of said light-transmissive substrate includes a depressed region proximate to said light-emitting unit, a non-depressed region distal from said light-emitting unit, and a shoulder region formed between said depressed region and said non-depressed region, said at least one of said first electrode and said second electrode extending over said juncture and downwardly along said second insulating portion and directly contacting said depressed region and said shoulder region.

2 . The LED of claim 1 , wherein said shoulder region is spaced apart from said top surface of said light-transmissive substrate by a height ranging from 10 μm to 40 μm.

3 . The LED of claim 1 , wherein said shoulder region is spaced apart from said bottom surface of said light-transmissive substrate by a height ranging from 10 μm to 60 μm.

4 . The LED of claim 1 , wherein said shoulder region has a width ranging from 5 μm to 20 μm.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 23, 2021
From: HE, ANHE; LIN, SU-HUI; WANG, FENG; WANG, QING; HUANG, YU-CHIEH; PENG, KANG-WEI
To: XIAMEN SANAN OPTOELECTRONICS CO., LTD.
Reel/Frame 058474/0830 →
Continuity (2)
Continuation In Part PCTCN2019115417 · Nov 4, 2019
Related Publication 20220115563A1 · Apr 14, 2022
References Cited (8)
US 20130313587A1 · Lin · 2013 [cited by examiner]
US 20140239318A1 · Oyu · 2014 [cited by examiner]
US 20210119086A1 · Wang · 2021 [cited by examiner]
US 20230120130A1 · Yanai · 2023 [cited by examiner]
CN 104022216A · 2014 [cited by applicant]
CN 105742469A · 2016 [cited by applicant]
CN 107195747A · 2017 [cited by applicant]
Search Report issued to PCT application No. PCT/CN2019/115417 on Aug. 11, 2020. [cited by applicant]