H01L33/36

PIXEL DEVICE AND DISPLAY USING A MONOLITHIC BLUE/GREEN LED COMBINED WITH RED LUMINESCENCE MATERIALS
20220052222 · 2022-02-17 ·

An LED has: a substrate formed as a substrate layer; a buffer layer formed on the substrate layer; and an N− doped layer formed on the buffer layer. A first dual color blue/green MQW active region, a negative electrode, and a second dual color blue/green MQW active region formed on the N− doped layer. A first P− doped layer is formed on the first dual color blue green MQW active region. A second P− doped layer is formed on the second dual color blue green MQW active region. A first P+ doped layer is formed on the first P− doped layer. A second P+ doped layer is formed on the second P− doped layer. A first positive electrode is formed on the first P+ doped layer. A second positive electrode is formed on the second P+ doped layer. A blue/green LED with red luminescence materials emits a full spectrum.

Access Resistance Modulated Solid-State Light Source

A solid-state light source with built-in access resistance modulation is described. The light source can include an active region configured to emit electromagnetic radiation during operation of the light source. The active region can be formed at a p-n junction of a p-type side with a p-type contact and a n-type side with a n-type contact. The light source includes a control electrode configured to modulate an access resistance of an access region located on the p-type side and/or an access resistance of an access region located on the n-type side of the active region. The solid-state light source can be implemented in a circuit, which includes a voltage source that supplies a modulation voltage to the control electrode to modulate the access resistance(s).

Light-emitting device with alternating arrangement of anode pads and cathode pads
09748511 · 2017-08-29 · ·

The invention relates to a light-emitting device like an OLED comprising a light emission region between an anode (5) and a cathode (6). An alternating arrangement (9) of anode pads (11) for electrically connecting the anode and cathode pads (10) for electrically connecting the cathode and an encapsulation (8) are configured such that the anode and cathode pads are electrically connectable by straight anode and cathode electrical connectors (3, 4) through openings (12) of the encapsulation. The alternating arrangement of the anode and cathode pads can lead to a more homogenous electrical field between the anode and the cathode and therefore allows for an improved degree of homogeneity of light emission. More, since the alternating arrangement of the anode and cathode pads is connectable by corresponding straight connectors, the contacting of the pads can be performed technically relatively easily.

Semiconductor device
09741640 · 2017-08-22 · ·

A light-emitting element according to the present invention includes a semiconductor light-emitting element having a front surface and a rear surface so that light is extracted from the rear surface, and having a first n-side electrode and a first p-side electrode on the front surface, and a support element having a conductive substrate having a front surface and a rear surface as well as a second n-side electrode and a second p-side electrode formed on the front surface of the conductive substrate, the first n-side electrode and the second n-side electrode, and the first p-side electrode and the second p-side electrode are so bonded to one another respectively that the semiconductor light-emitting element is supported by the support element in a facedown posture downwardly directing the front surface, and the support element has an n-side external electrode and a p-side external electrode formed on the rear surface of the conductive substrate, a conductive via passing through the conductive substrate from the front surface up to the rear surface for electrically connecting the second n-side electrode and the n-side external electrode and/or the second p-side electrode and the p-side external electrode with each other, and an insulating film formed between the via and the conductive substrate to cover the side surface of the via.

Semiconductor device
09741640 · 2017-08-22 · ·

A light-emitting element according to the present invention includes a semiconductor light-emitting element having a front surface and a rear surface so that light is extracted from the rear surface, and having a first n-side electrode and a first p-side electrode on the front surface, and a support element having a conductive substrate having a front surface and a rear surface as well as a second n-side electrode and a second p-side electrode formed on the front surface of the conductive substrate, the first n-side electrode and the second n-side electrode, and the first p-side electrode and the second p-side electrode are so bonded to one another respectively that the semiconductor light-emitting element is supported by the support element in a facedown posture downwardly directing the front surface, and the support element has an n-side external electrode and a p-side external electrode formed on the rear surface of the conductive substrate, a conductive via passing through the conductive substrate from the front surface up to the rear surface for electrically connecting the second n-side electrode and the n-side external electrode and/or the second p-side electrode and the p-side external electrode with each other, and an insulating film formed between the via and the conductive substrate to cover the side surface of the via.

LIGHT EMITTING DEVICE AND ADAPTIVE DRIVING BEAM HEADLAMP
20220037564 · 2022-02-03 · ·

A light emitting device includes: a base; a first terminal and a second terminal located at a surface of the base; a light emitting element array chip mounted on the base, the light emitting element array chip including: a support substrate, a plurality of first wirings and a plurality of second wirings disposed on the support substrate, and a plurality of light emitting elements, each of the light emitting elements arranged on the first wiring and the second wiring and electrically connected to the first wiring and the second wiring; and a plurality of wires including a first wire connecting the first wiring to the first terminal, and a second wire connecting the second wiring to the second terminal.

LIGHT EMITTING DEVICE AND ADAPTIVE DRIVING BEAM HEADLAMP
20220037564 · 2022-02-03 · ·

A light emitting device includes: a base; a first terminal and a second terminal located at a surface of the base; a light emitting element array chip mounted on the base, the light emitting element array chip including: a support substrate, a plurality of first wirings and a plurality of second wirings disposed on the support substrate, and a plurality of light emitting elements, each of the light emitting elements arranged on the first wiring and the second wiring and electrically connected to the first wiring and the second wiring; and a plurality of wires including a first wire connecting the first wiring to the first terminal, and a second wire connecting the second wiring to the second terminal.

Semiconductor device and light-emitting system

A semiconductor device includes a semiconductor layered structure, an electrode unit, and an anti-adsorption layer. The electrode unit is disposed on an electrode connecting region of the semiconductor layered structure. The anti-adsorption layer is disposed on a top surface of the electrode unit opposite to the semiconductor layered structure and is electrically connected to the electrode unit. The anti-adsorption layer has an adsorption capacity for at least one of gaseous contaminants and particulate contaminants which is lower than that of the electrode unit. Also disclosed herein is a light-emitting system including the semiconductor device.

Semiconductor device and light-emitting system

A semiconductor device includes a semiconductor layered structure, an electrode unit, and an anti-adsorption layer. The electrode unit is disposed on an electrode connecting region of the semiconductor layered structure. The anti-adsorption layer is disposed on a top surface of the electrode unit opposite to the semiconductor layered structure and is electrically connected to the electrode unit. The anti-adsorption layer has an adsorption capacity for at least one of gaseous contaminants and particulate contaminants which is lower than that of the electrode unit. Also disclosed herein is a light-emitting system including the semiconductor device.

Driving backplane, micro-LED display panel and display devices

The present disclosure relates to a driving backplane, a micro-LED display panel and a micro-LED display device. The driving backplane, includes a plurality of pixel units arranged in an array, each of the pixel units comprising: an anode lead; a cathode lead at a side of the anode lead; and at least two pairs of electrodes, each pair of electrodes of the at least two pairs of electrodes including an anode and a cathode oppositely disposed, the anode being electrically connected to the anode lead, and the cathode being electrically connected to the cathode lead. In the course of using the foregoing driving backplane of the micro-LED display panel, it is only necessary to solder an LED chip on one pair of electrodes of the at least two pairs of electrodes.