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Небесная энциклопедия

Космические корабли и станции, автоматические КА и методы их проектирования, бортовые комплексы управления, системы и средства жизнеобеспечения, особенности технологии производства ракетно-космических систем

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Мониторинг СМИ

Мониторинг СМИ и социальных сетей. Сканирование интернета, новостных сайтов, специализированных контентных площадок на базе мессенджеров. Гибкие настройки фильтров и первоначальных источников.

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Форма поиска

Поддерживает ввод нескольких поисковых фраз (по одной на строку). При поиске обеспечивает поддержку морфологии русского и английского языка
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Применить Всего найдено 97. Отображено 97.
17-05-2012 дата публикации

Apparatus for single-molecule detection

Номер: AU2011264229A1
Принадлежит:

An apparatus for detecting an object capable of emitting light. The apparatus includes a light source (102) and a waveguide (110). The waveguide (110) includes a core layer (112) and a first cladding layer (114). At least one nanowell (120) is formed in at least the first cladding layer (114). The apparatus further includes a light detector (106). The light detector (106) can detect light emitted from a single molecule object contained in the at least one nanowell (120).

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26-09-2013 дата публикации

Apparatus for single-molecule detection

Номер: AU2011264229B2
Принадлежит:

An apparatus for detecting an object capable of emitting light. The apparatus includes a light source (102) and a waveguide (110). The waveguide (110) includes a core layer (112) and a first cladding layer (114). At least one nanowell (120) is formed in at least the first cladding layer (114). The apparatus further includes a light detector (106). The light detector (106) can detect light emitted from a single molecule object contained in the at least one nanowell (120).

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30-08-2016 дата публикации

APPARATUS FOR SINGLE-MOLECULE DETECTION

Номер: CA0002778283C

An apparatus for detecting an object capable of emitting light. The apparatus includes a light source (102) and a waveguide (110). The waveguide (110) includes a core layer (112) and a first cladding layer (114). At least one nanowell (120) is formed in at least the first cladding layer (114). The apparatus further includes a light detector (106). The light detector (106) can detect light emitted from a single molecule object contained in the at least one nanowell (120).

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16-02-2016 дата публикации

SINGLE-MOLECULE DETECTION SYSTEM AND METHODS

Номер: CA0002763100C

A single-molecule detection system and a plurality of methods of detecting a single-molecule object or sequencing a nucleic acid are provided. The single-molecule detection system comprises: a movable light coupler (100), a waveguide (110) and a light detector (102). The waveguide (110) comprises: a core layer (112) and a first cladding layer (114), wherein at least one adapter site (104) for the movable light coupler (100) is formed in at least the first cladding layer (114). In the methods, the detection system is used to detect a single-molecule object or sequence a nucleic acid.

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19-06-2014 дата публикации

APPARATUS FOR NON-INVASIVE GLUCOSE MONITORING

Номер: US20140171765A1

An apparatus for non-invasive glucose monitoring includes a light source for emitting at least one ray of light; a first beam splitter, a set of photo detectors for measuring optical rotatory distribution (ORD) information and absorption energy information; a reference component receiving the light from the first beam splitter, and the light reflected by the reference component being transmitted to the set of photo detectors by the first beam splitter, wherein the light emitted from the light source is transmitted to the set of photo detectors by the first beam splitter and the eyeball to form a first optical path, the light emitted from the light source is transmitted to the set of photo detectors by the first beam splitter and the reference component to form a second optical path; and a processing unit receiving and processing the ORD information and the absorption energy information to obtain a glucose information.

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01-11-2012 дата публикации

METHOD FOR NON-INVASIVE BLOOD GLUCOSE MONITORING AND METHOD FOR ANALYSING BIOLOGICAL MOLECULE

Номер: US20120277557A1

A method for non-invasive blood glucose monitoring includes the following steps. At least one ray of light is emitted from at least one light source. The light emitted from the light source is leaded into an eyeball and focused on the eyeball through a first beam splitter. The reflected light reflected from the eyeball is transmitted through the first beam splitter to a set of photo detectors. Optical rotatory distribution (ORD) information and absorption energy information of the reflected light transmitted to the set of photo detectors are measured. ORD difference and absorption energy difference resulting from the light emitted from the light source and the reflected light transmitted to the set of photo detectors are obtained. Glucose information is obtained by analyzing the ORD difference and the absorption energy difference, and since glucose information has a corresponding relationship with blood glucose information, blood glucose information may be read.

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15-12-2011 дата публикации

APPARATUS FOR SINGLE-MOLECULE DETECTION

Номер: CA0002778283A1

An apparatus for detecting an object capable of emitting light. The apparatus includes a light source (102) and a waveguide (110). The waveguide (110) includes a core layer (112) and a first cladding layer (114). At least one nanowell (120) is formed in at least the first cladding layer (114). The apparatus further includes a light detector (106). The light detector (106) can detect light emitted from a single molecule object contained in the at least one nanowell (120).

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22-09-2011 дата публикации

SINGLE-MOLECULE DETECTION SYSTEM AND METHODS

Номер: CA0002763100A1
Принадлежит:

A single-molecule detection system and a plurality of methods of detecting a single-molecule object or sequencing a nucleic acid are provided. The single-molecule detection system comprises: a movable light coupler (100), a waveguide (110) and a light detector (102). The waveguide (110) comprises: a core layer (112) and a first cladding layer (114), wherein at least one adapter site (104) for the movable light coupler (100) is formed in at least the first cladding layer (114). In the methods, the detection system is used to detect a single-molecule object or sequence a nucleic acid.

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01-07-2014 дата публикации

Apparatus for non-invasive glucose monitoring

Номер: TW0201424690A
Принадлежит: Ind Tech Res Inst

一種非侵入式葡萄糖監測裝置,包括:第一光源,發射出至少一第一光線;第一分光器,具有聚焦功能;光偵測器組,量測由眼球所反射、再藉由第一分光器傳送到光偵測器組的第一光線的旋光資訊及吸收能量資訊,由光源發射出的光線藉由第一分光器與眼球傳送到光偵測器組而形成光路;處理單元,接收並處理旋光資訊及吸收能量資訊,以獲得葡萄糖資訊;眼睛定位裝置,包括第二分光器及攝影機。第二分光器設置於第一分光器與眼球之間的光路上。攝影機接收由第二分光器所傳送的影像資訊。

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01-08-2013 дата публикации

Single-molecule detection system and methods

Номер: AU2011229691B2

A single-molecule detection system and a plurality of methods of detecting a single-molecule object or sequencing a nucleic acid are provided. The single-molecule detection system comprises: a movable light coupler (100), a waveguide (110) and a light detector (102). The waveguide (110) comprises: a core layer (112) and a first cladding layer (114), wherein at least one adapter site (104) for the movable light coupler (100) is formed in at least the first cladding layer (114). In the methods, the detection system is used to detect a single-molecule object or sequence a nucleic acid.

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21-02-2008 дата публикации

Organische Farbstoffe für eine Aufzeichnungsschicht und Verwendung der Aufzeichnungsschicht bei einem optischen Aufzeichnungsmedium hoher Dichte

Номер: DE102006061428A1

Eine einen neuen Farbstoff für ein optisches Aufzeichnungsmedium mit hoher Dichte einschließende Aufzeichnungsschicht unter Einsatz einer kurzwelligen Laserquelle mit einer Wellenlänge von nicht länger als 530 nm zum Aufzeichnen von Information mit hoher Dichte und zur Wiedergabe/zum Abspielen der Informationsaufzeichnungen mit hoher Dichte ist bereitgestellt. Der in die Aufzeichnungsschicht eingebrachte Farbstoff weist die folgende allgemeine chemische Strukturformel (I) auf. $F1

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01-07-2014 дата публикации

Apparatus for non-invasive glucose monitoring

Номер: TW0201424691A
Принадлежит: Ind Tech Res Inst

一種非侵入式葡萄糖監測裝置,包括:光源,發射出光線;第一分光器,具有聚焦功能;光偵測器組,量測由眼球所反射、再藉由第一分光器傳送到光偵測器組的光線的旋光資訊及吸收能量資訊;參考元件,接收來自第一分光器的光線,由參考元件反射的光線藉由第一分光器傳送到光偵測器組,其中由光源發射出的光線藉由第一分光器與眼球傳送到光偵測器組而形成第一光路,且由光源發射出的光線藉由第一分光器與參考元件傳送到光偵測器組而形成第二光路;處理單元,接收並處理旋光資訊及吸收能量資訊,以獲得葡萄糖資訊。

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18-05-2010 дата публикации

Organic dyes for recording layer and high density optical recording medium using the same

Номер: US0007718242B2

A recording layer including a novel dye for a high density optical recording medium, employing short wavelength laser source with a wavelength not longer than 530 nm for recording high density information and reproduction/playback of the high density information recordings, is provided. The dye incorporated in the recording layer has the following general chemical structural formula (III): ...

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13-09-2012 дата публикации

Apparatus and Method for Detection and Discrimination Of Molecular Object

Номер: AU2010249264B2

An apparatus for detecting an object capable of emitting light. The apparatus comprises a light detector comprising at least two optical sensors capable of determining the intensity of the light; and a computer processing output signal generated by the optical sensors and comparing a result of the processing with a known result corresponding to a known type to determine whether the object belongs to the known type. LIGHT EMITTED FROM AN OBJECT 201 INCIDENT ON LIGHT DETECTOR I! LIGHT DETECTOR GENERATES 202 OUTPUT SIGNALS COMPUTER PROCESSES THE SIGNALS 203 COMPUTER COMPARES PROCESSING 204 RESULT WITH A KNOWN RESULT CORRESPONDING TO A KNOWN TYPE I! COMPUTER DETERMINES WHETHER THE 205 OBJECT BELONGS TO THE KNOWN TYPE

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01-10-2013 дата публикации

Methods of patterning layered-material and forming imprinting mold

Номер: TW0201339744A
Принадлежит: Ind Tech Res Inst

本發明提供之圖案化層狀材料的方法,包括:提供層狀材料;形成光阻層於該層狀材料上;以雷射光束圖案化光阻層,露出部份的層狀材料;以及蝕刻露出之部份的層狀材料,以圖案化層狀材料。

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01-07-2013 дата публикации

Fluorescent column embedded solar collector, method thereof and solar cell module

Номер: TW0201327880A
Принадлежит:

A fluorescent column embedded solar collector, method thereof and solar cell module. The fluorescent column embedded solar collector includes a waveguide; and at least one fluorescent column embedded in the waveguide, wherein the fluorescent column absorbs a light of a first wavelength and emits a light of a second wavelength, wherein the first wavelength is smaller than the second wavelength.

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03-10-2017 дата публикации

Single molecule detection system and methods

Номер: US0009777321B2

Embodiments encompass a single-molecule detection system and methods of using the detection system to detect an object. Further, embodiments encompass a detection system comprising a movable light coupler, a waveguide, and a light detector. Embodiments further encompass methods of single-molecule detection, including methods of single-molecule nucleic acid sequencing.

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24-09-2013 дата публикации

Methods of patterning layered-material and forming imprinting mold

Номер: US0008540888B1

Disclosed is a method of patterning a layered material. A layered material is provided, and a photoresist layer is formed thereon. The photoresist layer is patterned by a focused laser beam to expose a part of the layered material. The exposed layered material is etched to pattern the layered material.

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16-02-2008 дата публикации

Method for forming micro blind via on a copper clad laminate substrate utilizing laser drilling technique

Номер: TW0200810637A
Принадлежит:

This invention provides a method for forming a micro blind via on a copper clad laminate (CCL) substrate. A CCL substrate having a dielectric layer sandwiched by a first copper layer and a second copper layer is prepared. A laser absorption layer is formed on the first copper layer. The laser absorption layer is subjected to laser drilling and a micro blind via is drilled into the first copper layer and the dielectric layer in one step.

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01-04-2011 дата публикации

Apparatus and method for detection and discrimination molecular object

Номер: TW0201111768A
Принадлежит:

An apparatus for detecting an object capable of emitting light. The apparatus comprises a light detector comprising at least two optical sensors capable of determining the intensity of the light; and a computer processing output signal generated by the optical sensor and comparing a result of the processing with a known result corresponding to a known type to determine whether the object belongs to the known type.

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07-10-2010 дата публикации

APPARATUS AND METHOD FOR DETECTION AND DISCRIMINATION MOLECULAR OBJECT

Номер: US20100256918A1

An apparatus for detecting an object capable of emitting light. The apparatus comprises a light detector comprising at least two optical sensors capable of determining the intensity of the light; and a computer processing output signal generated by the optical sensors and comparing a result of the processing with a known result corresponding to a known type to determine whether the object belongs to the known type.

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20-02-2014 дата публикации

DETECTING DEVICE

Номер: US20140051955A1

A detecting device includes at least one detecting module. In the detecting module, a light source unit is configured to emit a first beam and a second beam. The wavelength of the first beam is different from that of the second beam. A packaging unit is disposed on the light source unit and a light detecting unit and on transmission paths of the first beam and the second beam from the light source unit. An optical microstructure unit is disposed on the transmission paths of the first beam and the second beam. The first beam and the second beam emitted from the light source unit pass through the packaging unit to pass the optical microstructure unit to be transmitted to a biological tissue, and then pass through the optical microstructure unit to pass the packaging unit to be transmitted to the light detecting unit in sequence. 1. A detecting device configured to detect a physiological parameter of a biological tissue , the detecting device comprising at least one detecting module , the detecting module comprising:a light source unit configured to emit a first beam and a second beam, wherein a wavelength of the first beam is different from a wavelength of the second beam;a light detecting unit;a packaging unit disposed on the light source unit and a light detecting unit and located on transmission paths of the first beam and the second beam from the light source unit; andan optical microstructure unit disposed on the transmission paths of the first beam and the second beam, wherein the first beam and the second beam emitted from the light source unit pass through the packaging unit, pass through the optical microstructure unit, are transmitted to a biological tissue, pass through the optical microstructure unit, pass through the packaging unit, and are transmitted to the light detecting unit in sequence.2. The detecting device of claim 1 , wherein the packaging unit comprises a waveguide covering the light source unit and the light detecting unit.3. The detecting ...

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11-03-2015 дата публикации

Multilayer circuit board

Номер: TWM497402U

A multilayer circuit board including a core board, at least one heat-dissipation element and at least one outer build-up structure is provided. The core board includes a first dielectric layer and two first circuit layer conducted to each other through a first conductive hole penetrated into the first dielectric layer. The heat-dissipation element includes a heat-dissipation layer and at least one adhesive layer, and the heat-dissipation element is disposed on the core board by the adhesive layer. The outer build-up structure includes a second dielectric layer and a second circuit layer. The outer build-up structure is disposed on the core board by the second dielectric layer, so that the heat-dissipation element is embedded between the core board and the outer build-up structure, and the second circuit layer is conducted to the first circuit layer through a second conductive hole penetrated into the second dielectric layer.

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16-01-2016 дата публикации

Manufacturing method of circuit structure embedded with heat-dissipation block

Номер: TW0201603673A
Принадлежит:

A manufacturing method of circuit structure embedded with heat-dissipation block including the following steps is provided. A core board including a first dielectric layer and two first conductive layers located on two opposite sides of the first dielectric layer is provided. A through hole penetrated the core board is formed. A heat-dissipation block is disposed into the through hole. Two inner-layer circuits are formed on two opposite sides of the core board. At least one build-up structure is bonding on the core board, wherein the build-up structure includes a second dielectric layer and a second conductive layer, and the second dielectric layer is located between the second conductive layer and the core board. A cavity is formed on a predetermined region of the build-up structure, and the cavity is communicated with the corresponding inner-layer circuit. Another manufacturing method of circuit structure embedded with heat-dissipation block is also provided.

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20-10-2011 дата публикации

ENCAPSULATION MATERIAL

Номер: US20110253942A1

Disclosed are encapsulation materials including an 80 to 99.5 weight percentage (wt %) of ethylene vinyl acetate copolymers (EVA) and a 0.5 to 20 weight percentage(wt %) of a photoluminescent polymer, wherein the EVA and the photoluminescent polymers are evenly blended. The encapsulation materials can be applied to packaging solar cells, and the encapsulating structure may protect the EVA from UV damage and enhance light utilization efficiency of the solar cell.

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01-05-2016 дата публикации

Wavelength converting polymer, method for fabricating the same and wavelength converting devices employing the same

Номер: TW0201615688A
Принадлежит:

A wavelength converting polymer, method for fabricating the same and wavelength converting devices employing the same are provided. The wavelength converting polymer has a chemical structure represented by formula (I):.

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12-07-2007 дата публикации

ORGANIC DYES FOR RECORDING LAYER AND HIGH DENSITY OPTICAL RECORDING MEDIUM USING THE SAME

Номер: US2007160931A1
Принадлежит:

A recording layer including a novel dye for a high density optical recording medium, employing short wavelength laser source with a wavelength no longer than 530 nm for recording high density information and reproduction/playback of the high density information recordings, is provided. The dye incorporated in the recording layer has the following general chemical structural formula (I).

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21-03-2016 дата публикации

Submerged vehicle escaping system

Номер: TWM519094U

A submerged vehicle escaping system adapted to be disposed in the vehicle body is provided. The vehicle has a vehicle roof. The submerged vehicle escaping system includes a central control unit, a buoyant unit and a pressure sensing component. The central control unit is disposed on the vehicle body. The buoyant unit is disposed in the vehicle body and has an inflatable air bag disposed on the vehicle roof. The central control unit is coupled with the buoyant unit. The pressure sensing component is disposed on the vehicle body and coupled with the central control unit. The pressure sensing component detects the pressure outside of the vehicle body and transmits a pressure signal to the central control unit. After analyzing the pressure signal, the central control unit transmits a first control signal to the buoyant unit.

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26-06-2014 дата публикации

APPARATUS FOR NON-INVASIVE GLUCOSE MONITORING

Номер: US20140180041A1

An apparatus for non-invasive glucose monitoring includes a first light source for emitting at least one ray of first light; a first beam splitter with a focusing function; a set of photo detectors for measuring optical rotatory distribution (ORD) information and absorption energy information of the first light reflected from the eyeball and transmitted through the first beam splitter to the set of photo detectors, and the first light emitted from the first light source being transmitted to the set of photo detectors by the first beam splitter and the eyeball to form an optical path; a processing unit receiving and processing the ORD information and the absorption energy information to obtain glucose information; and an eye positioning device including a second beam splitter disposed on the optical path between the first beam splitter and the eyeball and a camera for receiving image information transmitted from the second beam splitter. 1. An apparatus for non-invasive glucose monitoring , comprising:at least one first light source, emitting at least one ray of first light;a first beam splitter with a focusing function, leading the first light emitted from the first light source into an eyeball and focusing on the eyeball through the first beam splitter;a set of photo detectors, measuring an optical rotatory distribution information and an absorption energy information of the first light reflected from the eyeball and then transmitted through the first beam splitter to the set of photo detectors, the first light emitted from the first light source being transmitted to the set of photo detectors through the first beam splitter and the eyeball so as to form an optical path;a processing unit, receiving and processing the optical rotatory distribution information and the absorption energy information to obtain a glucose information; and a second beam splitter disposed on the optical path between the first beam splitter and the eyeball; and', 'a camera, receiving an ...

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18-06-2013 дата публикации

Encapsulation material

Номер: US0008465675B2

Disclosed are encapsulation materials including an 80 to 99.5 weight percentage (wt %) of ethylene vinyl acetate copolymers (EVA) and a 0.5 to 20 weight percentage(wt %) of a photoluminescent polymer, wherein the EVA and the photoluminescent polymers are evenly blended. The encapsulation materials can be applied to packaging solar cells, and the encapsulating structure may protect the EVA from UV damage and enhance light utilization efficiency of the solar cell.

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12-06-2018 дата публикации

Apparatus for single-molecule detection

Номер: US0009995683B2

An apparatus for detecting an object capable of emitting light. The apparatus includes a light source and a waveguide. The waveguide includes a core layer and a first cladding layer. At least one nanowell is formed in at least the first cladding layer. The apparatus further includes a light detector. The light detector can detect a light emitted from a single molecule object contained in the at least one nanowell.

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12-07-2007 дата публикации

Organic dye for recording layer and high density optical recording medium using the same

Номер: US2007160795A1
Принадлежит:

A recording layer including a novel dye for a high density optical recording medium, employing short wavelength laser source with a wavelength no longer than 530 nm 530 nm for recording high density information and reproduction/playback of the high density information recordings, is provided. The dye incorporated in the recording layer has the following general chemical structural formula (I): ...

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01-11-2012 дата публикации

APPARATUS FOR NON-INVASIVE BLOOD GLUCOSE MONITORING

Номер: US20120277556A1

An apparatus for non-invasive blood glucose monitoring includes a light source for generating at least one ray of light, a beam splitter with a focusing function leads the light into an eyeball and focuses on the eyeball, a set of photo detectors for measuring optical rotatory distribution (ORD) information and absorption energy information of the reflected light reflected from the eyeball and transmitted through the first beam splitter to the set of photo detectors, and a processing unit. The processing unit receives and processes the ORD information and the absorption energy information to obtain an ORD difference and an absorption energy difference resulting from the light emitted from the light source and the reflected light transmitted to the set of photo detectors, and analyzes the ORD difference and the absorption energy difference to obtain a glucose information to read the blood glucose information.

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04-05-2021 дата публикации

Apparatus and method for detection and discrimination molecular object

Номер: US0010996166B2

An apparatus for detecting an object capable of emitting light. The apparatus comprises a light detector comprising at least two optical sensors capable of determining the intensity of the light; and a computer processing output signal generated by the optical sensors and comparing a result of the processing with a known result corresponding to a known type to determine whether the object belongs to the known type.

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15-12-2011 дата публикации

Apparatus for single-molecule detection

Номер: US20110306143A1
Принадлежит:

An apparatus for detecting an object capable of emitting light. The apparatus includes a light source and a waveguide. The waveguide includes a core layer and a first cladding layer. At least one nanowell is formed in at least the first cladding layer. The apparatus further includes a light detector. The light detector can detect a light emitted from a single molecule object contained in the at least one nanowell.

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01-12-2013 дата публикации

Phosphor

Номер: TW0201348402A
Принадлежит:

A phosphor is provided. The phosphor includes a chemical structure represented by formula I: wherein n is an integer of 0 or 1; R1 and R2 are respectively selected from the group consisting of a substituted or unsubstituted alkyl group, a substituted or unsubstituted aryl group and a substituted or unsubstituted heterocyclic group, or R1 and R2 are linked to each other, together with the carbon atom to which R1 and R2 are bonded, to form a ring structure; R3 and R4 are respectively selected from the group consisting of a hydrogen atom, a substituted or unsubstituted alkyl group with carbon number 1-4, a substituted or unsubstituted alkoxyl group with carbon number 1-4, a carboxyl group, a substituted or unsubstituted alkyl ester group with carbon number 1-4, a substituted or unsubstituted arylester group, adamantyl carbonyl group and adamantyl group, or R3 and R4 are linked to each other, together with the nitrogen atom to which R3 and R4 are bonded, to form a nitrogen-containing heterocyclic ...

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01-11-2011 дата публикации

Single-molecule detection system and methods

Номер: TW0201137341A
Принадлежит:

Embodiments encompass a single-molecule detection system and methods of using the detection system to detect an object. Further, embodiments encompass a detection system comprising a movable light coupler, a waveguide, and a light detector. Embodiments further encompass methods of single-molecule detection, including methods of single-molecule nucleic acid sequencing.

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14-02-2008 дата публикации

METHOD FOR FORMING MICRO BLIND VIA ON A COPPER CLAD LAMINATE SUBSTRATE UTILIZING LASER DRILLING TECHNIQUE

Номер: US2008035271A1
Автор: HSU HUNG-EN, LI MING-CHIA
Принадлежит:

This invention provides a method for forming a micro blind via on a copper clad laminate (CCL) substrate. A CCL substrate having a dielectric layer sandwiched by a first copper layer and a second copper layer is prepared. A laser absorbing layer is formed on the first copper layer. The laser absorbing layer is subjected to laser drilling. A micro blind via is drilled into the first copper layer and the dielectric layer in one step.

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20-07-2010 дата публикации

Organic dye for recording layer and high density optical recording medium using the same

Номер: US0007758943B2

A recording layer including a novel dye for a high density optical recording medium, employing short wavelength laser source with a wavelength not longer than 530 nm for recording high density information and reproduction/playback of the high density information recordings, is provided. The dye incorporated in the recording layer has the following general chemical structural formula (I): ...

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15-12-2011 дата публикации

Apparatus for single-molecule detection

Номер: US20110306039A1

An apparatus for detecting an object capable of emitting light. The apparatus comprises a light source and a waveguide. The waveguide comprises a core layer and a first cladding layer. At least one nanowell is formed in at least the first cladding layer. The apparatus further comprises a light detector. The light detector can detect a light emitted from a single molecule object contained in the at least one nanowell.

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01-07-2013 дата публикации

Dye-labeled polymer, luminescent solar collector, and off-grid lamp using the collector

Номер: TW0201326357A
Принадлежит:

Dye-labeled polymer, luminescent solar collector, and off-grid lamp using the collector are provided. The dye-labeled polymer includes a fluorescent dye moiety and a polymer moiety, wherein the fluorescent dye moiety and the polymer moiety are connected through a chemical bond. In another embodiment of the disclosure, a luminescent solar collector is provided. The luminescent solar collector includes a waveguide; a wavelength conversion material disposed on the waveguide, wherein the wavelength conversion material includes 0-95 parts by weight of a polymer material; and 5-100 parts by weight of the previously described dye-labeled polymer, wherein the polymer material is different from the dye-labeled polymer. In still another embodiment, an off-grid lamp using the same is also provided.

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05-12-2017 дата публикации

Apparatus for non-invasive blood glucose monitoring

Номер: US0009833175B2

An apparatus for non-invasive blood glucose monitoring includes a light source for generating at least one ray of light, a beam splitter with a focusing function leads the light into an eyeball and focuses on the eyeball, a set of photo detectors for measuring optical angular information and absorption energy information of the light reflected from the eyeball and transmitted through the first beam splitter to the set of photo detectors, and a processing unit. The processing unit receives and processes the Optical angular information and the absorption energy information to obtain an Optical angular difference and an absorption energy difference between the light emitted from the light source and the light transmitted to the set of photo detectors, and analyzes the Optical angular difference and the absorption energy difference to obtain a glucose information, and since the glucose information has a corresponding relationship with a blood glucose information, the blood glucose information may be read.

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01-08-2016 дата публикации

Conductive ink, circuit board and method for manufacturing the same

Номер: TW0201627420A
Принадлежит:

Provided is a method for manufacturing a conductive ink, and formed on the Cu pattern of circuit board for improving the thermal conduction. A plurality of graphene sheets is provided. Each graphene sheet has opposing a first surface and a second surface. Performing a surface treatment on the graphene sheets, and a plurality of metal particles are adsorbed on the first surface and the second surface of each graphene sheet, so as to form a plurality of surface-modified graphene sheets. Mix the surface-modified graphene sheets into a conductive polymer solution to form a conductive ink. After that, coat the conductive ink onto the inner Cu pattern layer in order to replace the thick inner Cu pattern layer for improving the thermal conductivity.

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01-11-2013 дата публикации

Apparatus and method for non-invasive blood glucose monitoring and method for analysing biological molecule

Номер: TW0201344176A
Принадлежит:

An apparatus and a method for non-invasive blood glucose monitoring and a method for analysing biological molecule are provided. An apparatus for non-invasive blood glucose monitoring includes following elements. A light source generates at least one ray of light. A beam splitter with a focusing function leads the light generated from the light source into an eyeball and focuses on the eyeball. A set of photo detectors measures optical rotatory distribution (ORD) information and absorption energy information of the light reflected from the eyeball and transmitted through the first beam splitter to the set of photo detectors. A processing unit receives and processes the ORD information and the absorption energy information to obtain an ORD difference and an absorption energy difference between the light emitted from the light source and the light transmitted to the set of photo detectors, and analyzes the ORD difference and the absorption energy difference to obtain a glucose information ...

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16-10-2011 дата публикации

Encapsulation material

Номер: TW0201134926A
Принадлежит:

Disclosed are encapsulation materials including 80 to 99.5 weight percentage (wt%) of ethylene vinyl acetate copolymers (EVA) and 0.5 to 20 weight percentage (wt%) of photoluminescence polymers, wherein the EVA and the fluorescent polymers are evenly blended. The encapsulation materials can be applied to package the solar cells, and the package structure may protect the EVA from UV damage and enhance the light utilization efficiency of the solar cell.

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30-05-2017 дата публикации

Apparatus for non-invasive glucose monitoring

Номер: US0009662004B2

An apparatus for non-invasive glucose monitoring includes a first light source for emitting at least one ray of first light; a first beam splitter with a focusing function; a set of photo detectors for measuring optical rotatory distribution (ORD) information and absorption energy information of the first light reflected from the eyeball and transmitted through the first beam splitter to the set of photo detectors, and the first light emitted from the first light source being transmitted to the set of photo detectors by the first beam splitter and the eyeball to form an optical path; a processing unit receiving and processing the ORD information and the absorption energy information to obtain glucose information; and an eye positioning device including a second beam splitter disposed on the optical path between the first beam splitter and the eyeball and a camera for receiving image information transmitted from the second beam splitter.

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01-10-2019 дата публикации

Manufacturing method of circuit structure embedded with heat-dissipation block

Номер: US0010433413B2

A manufacturing method of circuit structure embedded with heat-dissipation block including the following steps is provided. A core board including a first dielectric layer and two first conductive layers located on two opposite sides of the first dielectric layer is provided. A through hole penetrated the core board is formed. A heat-dissipation block is disposed into the through hole. Two inner-layer circuits are formed on two opposite sides of the core board. At least one build-up structure is bonded on the core board, wherein the build-up structure includes a second dielectric layer and a second conductive layer, and the second dielectric layer is located between the second conductive layer and the core board. A cavity is formed on a predetermined region of the build-up structure, and the cavity is communicated with the corresponding inner-layer circuit. Another manufacturing method of circuit structure embedded with heat-dissipation block is also provided.

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21-05-2009 дата публикации

STABILIZER FOR ENHANCING PERFORMANCE OF OPTICAL RECORDING LAYER AND HIGH DENSITY OPTICAL RECORDING MEDIUM USING THE SAME

Номер: US2009130593A1
Принадлежит:

A recording dye layer for recording high density information and reproduction/playback of the high density information recordings is provided. The recording dye layer includes a chemical composition including a diimonium salt and or ammonium compound and a metal-azo complex for a high density optical recording medium that may effectively promote the stability and the durability of the optical recording dye layer.

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08-08-2017 дата публикации

Apparatus for non-invasive glucose monitoring

Номер: US0009724022B2

An apparatus for non-invasive glucose monitoring includes a light source for emitting at least one ray of light; a first beam splitter, a set of photo detectors for measuring optical rotatory distribution (ORD) information and absorption energy information; a reference component receiving the light from the first beam splitter, and the light reflected by the reference component being transmitted to the set of photo detectors by the first beam splitter, wherein the light emitted from the light source is transmitted to the set of photo detectors by the first beam splitter and the eyeball to form a first optical path, the light emitted from the light source is transmitted to the set of photo detectors by the first beam splitter and the reference component to form a second optical path; and a processing unit receiving and processing the ORD information and the absorption energy information to obtain a glucose information.

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01-03-2014 дата публикации

Detecting device

Номер: TW0201409014A
Принадлежит: Ind Tech Res Inst

一種偵測裝置,用以偵測一生物組織的一生理參數。偵測裝置包括至少一偵測模組。在偵測模組中,光源單元用以發出一第一光束與一第二光束,其中第一光束的波長不同於第二光束的波長。封裝單元配置於光源單元與光偵測單元上,且位於來自光源單元的第一光束與第二光束的傳遞路徑上。光學微結構單元配置於第一光束與第二光束的傳遞路徑上,其中光源單元所發出的第一光束與第二光束依序通過封裝單元、通過光學微結構單元、傳遞至生物組織、通過光學微結構單元、通過封裝單元及傳遞至光偵測單元。

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29-08-2017 дата публикации

Method for non-invasive blood glucose monitoring and method for analysing biological molecule

Номер: US0009743864B2

A method for non-invasive blood glucose monitoring includes the following steps. At least one ray of light is emitted from at least one light source. The light emitted from the light source is leaded into an eyeball and focused on the eyeball through a first beam splitter. The reflected light reflected from the eyeball is transmitted through the first beam splitter to a set of photo detectors. Optical angular information and absorption energy information of the reflected light transmitted to the set of photo detectors are measured. Optical angular difference and absorption energy difference resulting from the light emitted from the light source and the reflected light transmitted to the set of photo detectors are obtained. Glucose information is obtained by analyzing the optical angular difference and the absorption energy difference, and since glucose information has a corresponding relationship with blood glucose information, blood glucose information may be read.

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16-03-2009 дата публикации

Organic compound for recording layer for high speed recording of information and optical recording medium including the same

Номер: TW0200911786A
Принадлежит:

A recording layer including a novel organic compound for a high density optical recording medium is provided. The information may be recorded on the recording layer at a 2X speed or higher speed with a relatively lower writing power so that heat distribution of the recording layer in the irradiated area is not likely to become steep both in time and space. The organic compound incorporated in the recording layer has the following general formula (I).

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26-06-2018 дата публикации

Wavelength-converting polymers, method for fabricating the same, and wavelength-converting devices employing the same

Номер: US0010005881B2

A wavelength-converting polymer, a method for fabricating the same and a wavelength-converting device employing the same are provided. The wavelength-converting polymer has a chemical structure represented by formula (I): In formula (I), B and D are the same or different and independently include hydrogen, C1-8 alkyl group, C1-8 alkoxy group, aryloxy group, carboxyl group, —COOK, —COONa or —NH2, or B and D are connected to form a heteroaromatic ring, wherein Z is hydrogen, C1-8 alkyl group, cycloalkyl group or aryloxy group, X1-X4are the same or different and independently include hydrogen, halogen, C1-8 alkyl group or C1-8 alkoxy group, R is C1-8 alkyl group with or without substitution, and n is an integer of 5 to 1,000.

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21-10-2014 дата публикации

Apparatus for single-molecule detection

Номер: US0008865078B2

An apparatus for detecting an object capable of emitting light. The apparatus includes a light source and a waveguide. The waveguide includes a core layer and a first cladding layer. At least one nanowell is formed in at least the first cladding layer. The apparatus further includes a light detector. The light detector can detect a light emitted from a single molecule object contained in the at least one nanowell.

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16-05-2015 дата публикации

Method of drilling wiring board

Номер: TW0201519721A
Принадлежит: Unimicron Technology Corp

一種線路板的鑽孔方法,其包括提供基板,基板包括導電層以及與導電層面對面地連接的絕緣層,其中導電層具有光吸收面與相對於光吸收面的接合面,而絕緣層連接並接觸接合面;以及照射雷射光束於光吸收面,以移除部分導電層與部分絕緣層。

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05-01-2006 дата публикации

Dye composition of the optical recording medium

Номер: US2006003257A1
Принадлежит:

The present invention provides a dye composition suitable for forming an information recording layer for carrying out recording and readout with laser beams, which includes at least one compound of formula (I): where n is selected from the group consisting of integer 0~3; B represents boron; O represents oxygen; X1 and X2 are individually selected from the group consisting of oxygen and fluorine; Y is selected from the group consisting of alkoxyl, alkoxycarbonyl, phenylcyclo having substituent, phenylcyclo having non-substituent, a heterocyclic structure having boron, nitrogen, oxygen, sulfur and selenium (which is composed of Y and Z); Z is selected from the group consisting of hydrogen, alkoxyl, cyanogen radical, the heterocyclic structure having boron, nitrogen, oxygen, sulfur and selenium (which is composed of Y and Z); R is selected from the group consisting of alkoxyl, amino, phenylcyclo having substituent, phenylcyclo having non-substituent, ferrocenyl, a heterocyclic ...

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01-07-2013 дата публикации

Micro/nano metallic structure of molecular detector and method for manufacturing the same

Номер: TW0201326024A
Принадлежит:

A micro/nano metallic structure of a molecular detector and method for manufacturing the structure are provided. The method includes steps of: providing a substrate, forming an organic material layer on the substrate, forming a resist material layer on the organic material layer, patterning the resist material layer to form a micro/nano patterned resist layer, etching the organic material layer to form a micro/nano patterned organic layer and expose a portion of the surface of the substrate by using the micro/nano patterned resist layer as a mask, depositing a metal layer on the micro/nano patterned resist layer, the micro/nano patterned organic layer, and the exposed portion of the surface of the substrate, and removing the micro/nano patterned resist layer, the micro/nano patterned organic layer to form the micro/nano metallic structure.

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16-12-2011 дата публикации

Apparatus for single-molecule detection

Номер: TW0201144793A
Принадлежит:

An apparatus for detecting an object capable of emitting light. The apparatus includes a light source and a waveguide. The waveguide includes a core layer and a first cladding layer. At least one nanowell is formed in at least the first cladding layer. The apparatus further includes a light detector. The light detector can detect a light emitted from a single molecule object contained in the at least one nanowell.

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01-11-2016 дата публикации

Single-molecule detection system and methods

Номер: US0009482615B2

Embodiments encompass a single-molecule detection system and methods of using the detection system to detect an object. Further, embodiments encompass a detection system comprising a movable light coupler, a waveguide, and a light detector. Embodiments further encompass methods of single-molecule detection, including methods of single-molecule nucleic acid sequencing.

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12-03-2014 дата публикации

Detecting device

Номер: CN103630506A
Принадлежит:

The invention provides a detecting device for detecting physiological parameters of biological tissue. The detecting device includes at least one detecting module. In the detecting module, a light source unit is configured to emit a first beam and a second beam. The wavelength of the first beam is different from that of the second beam. A packaging unit is disposed on the light source unit and a light detecting unit and on transmission paths of the first beam and the second beam from the light source unit. An optical microstructure unit is disposed on the transmission paths of the first beam and the second beam. The first beam and the second beam emitted from the light source unit pass through the packaging unit to pass the optical microstructure unit to be transmitted to a biological tissue, and then pass through the optical microstructure unit to pass the packaging unit to be transmitted to the light detecting unit in sequence.

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15-09-2011 дата публикации

SINGLE-MOLECULE DETECTION SYSTEM AND METHODS

Номер: US20110223590A1

Embodiments encompass a single-molecule detection system and methods of using the detection system to detect an object. Further, embodiments encompass a detection system comprising a movable light coupler, a waveguide, and a light detector. Embodiments further encompass methods of single-molecule detection, including methods of single-molecule nucleic acid sequencing.

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16-09-2006 дата публикации

Method for fabricating multi-layer circuit board utilizing plugged through hole technology

Номер: TW0200633605A
Принадлежит:

A method for fabricating multi-layer circuit board utilizing plugged through-hole technology is provided. The present invention is characterized in that a conventional surface polish step is omitted and metal line patterns are etched prior to the buried hole plugging.

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24-08-2010 дата публикации

Organic compound for recording layer for high speed recording of information and optical recording medium including the same

Номер: US0007781044B2

A recording layer including a novel organic compound for a high density optical recording medium is provided. The information may be recorded on the recording layer at a 2× speed or higher speed with a relatively lower writing power so that heat distribution of the recording layer in the irradiated area is not likely to become steep both in time and space. The organic compound incorporated in the recording layer has the following general chemical structural formula (I).

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15-03-2007 дата публикации

Optical recording medium and polymethine complex for use in the recording layer of the optical recording medium

Номер: US2007059641A1
Принадлежит:

The present invention relates to a polymethine complex and an optical recording medium using said polymethine complex. Through using the polymethine complex formed by combining a polymethine cation with a heat-inhibiting anion as the optical recording material in the optical recording medium, not only the heat inference caused by thermal decomposition of the dyes during high speed optical recording can be reduced or avoided, but also absorption coefficient, sensitivity and recording speed in the region of ultraviolet and visible light of 300~800 nm wavelength can be increased. The optical recording medium according to the present invention can achieve high-speed writing and reading with Pi errors less than 280 in case that the reflective layer of the optical recording medium has a minimal thickness of 50 nm. Furthermore, the optical recording medium according to the present invention may comprise the polymethine complex as the sole optical recording material such that the optical recording ...

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21-10-2014 дата публикации

Apparatus for single-molecule detection

Номер: US0008865077B2

An apparatus for detecting an object capable of emitting light. The apparatus comprises a light source and a waveguide. The waveguide comprises a core layer and a first cladding layer. At least one nanowell is formed in at least the first cladding layer. The apparatus further comprises a light detector. The light detector can detect a light emitted from a single molecule object contained in the at least one nanowell.

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12-01-2017 дата публикации

SINGLE-MOLECULE DETECTION SYSTEM AND METHODS

Номер: US20170009286A1
Принадлежит:

Embodiments encompass a single-molecule detection system and methods of using the detection system to detect an object. Further, embodiments encompass a detection system comprising a movable light coupler, a waveguide, and a light detector. Embodiments further encompass methods of single-molecule detection, including methods of single-molecule nucleic acid sequencing. 135.-. (canceled)36. A method of sequencing a nucleic acid , comprising: i) a movable light coupler;', a core layer, and', 'a first cladding layer,', 'wherein at least one adapter site for the movable light coupler is formed in at least the first cladding layer; and, 'ii) a waveguide comprising, 'iii) a light detector;, 'a) providing a detection apparatus comprising'}b) providing at least one nucleic acid molecule;c) localizing the at least one nucleic acid molecule individually on the movable light coupler;d) localizing at the adapter site the movable light coupler on which the at least one nucleic acid is localized;e) performing single molecule sequencing-by-synthesis of the at least one nucleic acid molecule, wherein the single molecule nucleic acid sequencing-by-synthesis leads produces an emitted light correlated to the identity of at least one base in the nucleic acid;f) detecting the emitted light with the detector, resulting in an output signal; andg) processing the output signal to determine an identity of at least one base comprised by the nucleic acid. This application claims priority to U.S. Application Ser. No. 61/314,037, filed Mar. 15, 2010, which is incorporated herein by reference in its entirety.The application relates to a single-molecule detection system and methods of using the detection system to detect an object. Further, the application relates to a detection system comprising a movable light coupler, a waveguide, and a light detector. The application also relates to methods of loading samples to a single-molecule detection system. The application further relates to methods of ...

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03-10-2017 дата публикации

Apparatus and method for detection and discrimination molecular object

Номер: US0009778188B2

An apparatus for detecting an object capable of emitting light. The apparatus comprises a light detector comprising at least two optical sensors capable of determining the intensity of the light; and a computer processing output signal generated by the optical sensors and comparing a result of the processing with a known result corresponding to a known type to determine whether the object belongs to the known type.

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09-07-2014 дата публикации

Apparatus for non-invasive glucose monitoring

Номер: CN103908264A
Принадлежит:

The present invention provides an apparatus for non-invasive glucose monitoring including: a light source for emitting at least one ray of light; a first beam splitter with a focusing function; a set of photo detectors for measuring optical rotary distribution (ORD) information and absorption energy information of the light reflected from the eyeball and then transmitted through the first beam splitter to the set of photo detectors; a reference component receiving the light from the first beam splitter, and the light reflected by the reference component being transmitted to the set of photo detectors by the first beam splitter, wherein the light emitted from the light source is transmitted to the set of photo detectors by the first beam splitter and the eyeball to form a first optical path, the light emitted from the light source is transmitted to the set of photo detectors by the first beam splitter and the reference component to form a second optical path; and a processing unit receiving ...

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18-12-2014 дата публикации

Apparatus For Single-Molecule Detection

Номер: US20140367589A1
Принадлежит:

An apparatus for detecting an object capable of emitting light. The apparatus includes a light source and a waveguide. The waveguide includes a core layer and a first cladding layer. At least one nanowell is formed in at least the first cladding layer. The apparatus further includes a light detector. The light detector can detect a light emitted from a single molecule object contained in the at least one nanowell. 126-. (canceled)27. A single molecule detection apparatus comprising: a core layer;', 'a first cladding layer; and', 'a second cladding layer, wherein', 'the first cladding layer and the second cladding layer are arranged at opposite sides of the core layer, and', 'at least one nanowell is formed in at least the first cladding layer;, 'a) a planar waveguide comprisingb) at least one light detector; andc) an opaque layer arranged between the second cladding layer and the detector,wherein the opaque layer has a hole arranged between the at least one nanowell and the light detector so as to allow a light emitted from a single molecule object contained in the at least one nanowell to reach the light detector.2863-. (canceled) This is a division of application Ser. No. 12/805,411, filed Jul. 29, 2010, which is a continuation-in-part of application Ser. No. 12/801,503, filed Jun. 11, 2010, the entire contents of both of which are incorporated herein by reference.The present disclosure relates to a detection apparatus, and the method of using the apparatus to detect an object. Further, the present disclosure relates to a detection apparatus that is able to detect a light of low intensity emitted from an object, such as a single molecule object.The Human Genome Project (HGP) spurred a great increase in sequencing throughput and this, along with technical improvements, resulted in a corresponding drop in sequencing costs. In contrast to the 13 years and cost of nearly three billion US dollars, per genome sequencing costs have been reduced significantly—indeed two ...

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04-07-2013 дата публикации

DYE-LABELED POLYMER, SOLAR COLLECTOR AND METHODS FOR MANUFACTURING THE SAME, AND SOLAR CELL MODULE, AND OFF-GRID LAMP USING THE COLLECTOR

Номер: US20130170192A1

A dye-labeled polymer includes a fluorescent dye moiety and a polymer moiety, wherein the fluorescent dye moiety and the polymer moiety are connected through a chemical bond. 1. A dye-labeled polymer , comprising a fluorescent dye moiety and a polymer moiety , wherein the fluorescent dye moiety and the polymer moiety are connected by a chemical bond.2. The dye-labeled polymer as claimed in claim 1 , wherein the polymer moiety comprises moieties of poly(ε-caprolactone) claim 1 , polyethylene claim 1 , polyvinyl alcohol claim 1 , polystyrene claim 1 , or copolymers thereof.3. The dye-labeled polymer as claimed in claim 1 , wherein the fluorescent dye moiety comprises 1 claim 1 ,2-coumarin moiety claim 1 , perylene moiety claim 1 , naphthalene moiety claim 1 , pyrene moiety claim 1 , polymethine moiety claim 1 , carbazole moiety claim 1 , anthracene moiety claim 1 , or combinations thereof.4. The dye-labeled polymer as claimed in claim 1 , wherein a mole ratio of the polymer moiety to the fluorescent dye moiety is between 1:20 and 1:1000.5. The dye-labeled polymer as claimed in claim 1 , wherein absorption wavelength of the dye-labeled polymer is between 200 nm and 400 nm.6. The dye-labeled polymer as claimed in claim 1 , wherein photo luminescence wavelength of the dye-labeled polymer is between 350 nm and 1100 nm.7. The dye-labeled polymer as claimed in claim 1 , wherein solubility parameter of the dye-labeled polymer is between 8 MPaand 25 MPa.8. A solar collector claim 1 , comprisinga waveguide; '0-95 parts by weight of a polymer material; and', 'a wavelength conversion material disposed on the waveguide, wherein the wavelength conversion material comprises{'claim-ref': {'@idref': 'CLM-00001', 'claim 1'}, '5-100 parts by weight of the dye-labeled polymer as claimed in , wherein the polymer material is different from the dye-labeled polymer.'}9. The solar collector as claimed in claim 8 , wherein the waveguide comprises a rigid substrate or a flexible substrate.10. ...

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26-09-2013 дата публикации

METHODS OF PATTERNING LAYERED-MATERIAL AND FORMING IMPRINTING MOLD

Номер: US20130248482A1

Disclosed is a method of patterning a layered material. A layered material is provided, and a photoresist layer is formed thereon. The photoresist layer is patterned by a focused laser beam to expose a part of the layered material. The exposed layered material is etched to pattern the layered material. 2. The method as claimed in claim 1 , wherein the photoresist layer has a thickness of 30 nm to 200 nm.3. The method as claimed in claim 1 , wherein the layered material comprises a substrate claim 1 , and the substrate comprises crystalline silicon claim 1 , quartz claim 1 , silicon oxide claim 1 , sapphire claim 1 , aluminum nitride claim 1 , gallium nitride claim 1 , glass claim 1 , polymer claim 1 , or metal.4. The method as claimed in claim 1 , wherein the layered material comprises an intermediate layer disposed between the substrate and the photoresist layer claim 1 , the substrate comprises crystalline silicon claim 1 , quartz claim 1 , silicon oxide claim 1 , sapphire claim 1 , aluminum nitride claim 1 , gallium nitride claim 1 , glass claim 1 , polymer claim 1 , or metal claim 1 , and the intermediate layer comprises aluminum oxide claim 1 , aluminum nitride claim 1 , silicon carbide claim 1 , silicon oxide claim 1 , zinc sulfide-silicon oxide claim 1 , polymer claim 1 , or metal.5. The method as claimed in claim 1 , wherein the focused laser beam has a wavelength of 200 nm to 530 nm.6. The method as claimed in claim 1 , wherein the step of etching the exposed part of the layered material comprises dry etching claim 1 , wet etching claim 1 , or combinations thereof.7. The method as claimed in claim 1 , after the step of etching the exposed part of the layered material to pattern the layered material claim 1 , further comprising:plating a metal layer on the patterned photoresist layer and the etched layered material; andremoving the patterned photoresist layer and the etched layered material from the metal layer to obtain an imprinting mold.8. The method as ...

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05-12-2013 дата публикации

LIGHT SOURCE DEVICE

Номер: US20130320190A1
Принадлежит:

A light source device including at least one light source, an optical module, a diffractive optical element, and a shielding component is provided. The at least one light source emits at least one light beam, and the light beam has a wavelength range. The optical module is disposed on a transmission path of the light beam to provide a plurality of optical surfaces. The optical surfaces respectively have a plurality of different inclination angles, so as to transmit at least a portion of the light beam having at least a predefined wavelength to a plurality of different directions. The diffractive optical element is disposed on the transmission path of the light beam, so as to diffract the light beam. The shielding component has an outlet. A portion of the diffracted light beam passes through the outlet to the outside. 1. A light source device , comprising:at least one light source emitting at least one light beam, the at least one light beam having a wavelength range;an optical module disposed on a transmission path of the light beam to provide a plurality of optical surfaces, wherein the optical surfaces respectively have a plurality of different inclination angles, so as to transmit at least a portion of the light beam having at least one predefined wavelength to a plurality of different directions;a diffractive optical element disposed on the transmission path of the light beam, so as to diffract the light beam; anda shielding component having an outlet, wherein a portion of the diffracted light beam passes through the outlet to an outside.2. The light source device of claim 1 , wherein the light source is a light emitting diode or a laser diode.3. The light source device of claim 1 , wherein the optical module comprises a scanning minor having a reflection surface claim 1 , the scanning mirror is configured to swing so as to change an inclination angle of the reflection surface claim 1 , and the optical surfaces are respectively formed by the reflection surface ...

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05-12-2013 дата публикации

PHOSPHOR

Номер: US20130324722A1

A phosphor is provided, which has a chemical structure represented by General Formula I: 2. The phosphor according to claim 1 , wherein the ring structure comprises an adamantyl group claim 1 , bicyclo[2 claim 1 ,2 claim 1 ,1]heptanyl claim 1 , cyclohexyl and cyclodecyl.3. The phosphor according to claim 2 , wherein when the ring structure is an adamantyl group claim 2 , Ris methyl or ethyl claim 2 , and Ris ethyl or hydroxyethyl.5. The phosphor according to claim 2 , wherein when the ring structure is bicyclo[2 claim 2 ,2 claim 2 ,1]heptanyl claim 2 , Ris ethyl claim 2 , and Ris ethyl.7. The phosphor according to claim 2 , wherein when the ring structure is cyclohexyl claim 2 , Ris ethyl claim 2 , and Ris ethyl.9. The phosphor according to claim 2 , wherein when the ring structure is cyclodecyl claim 2 , Ris ethyl claim 2 , and Ris ethyl.11. The phosphor according to claim 1 , wherein when Ris methyl and Ris ethyl claim 1 , Ris ethyl claim 1 , and Ris ethyl.13. The phosphor according to claim 1 , wherein when Ris methyl and Ris phenyl claim 1 , Ris a hydrogen atom or methyl claim 1 , and Ris a hydrogen atom or methyl.15. The phosphor according to claim 1 , wherein when Ris methyl and Ris methyl claim 1 , Ris methyl claim 1 , ethyl claim 1 , butyl or cyanomethyl claim 1 , and Ris methyl claim 1 , ethyl claim 1 , butyl or cyanomethyl claim 1 , or Rand Rare linked to each other claim 1 , together with a nitrogen atom to which Rand Rare bonded claim 1 , to form the nitrogen-containing heterocyclic group.17. The phosphor according to claim 1 , wherein the nitrogen-containing heterocyclic group comprises pyrrolidinyl or piperidyl.18. The phosphor according to claim 1 , wherein Ris methyl claim 1 , and Ris methyl.19. The phosphor according to claim 1 , wherein Ris ethyl claim 1 , and Ris ethyl.20. The phosphor according to claim 1 , wherein Ris butyl claim 1 , and Ris butyl.21. The phosphor according to claim 1 , wherein Ris methyl claim 1 , and Ris hydroxyethyl.22. The ...

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18-02-2016 дата публикации

MANUFACTURING METHOD OF CIRCUIT STRUCTURE EMBEDDED WITH HEAT-DISSIPATION BLOCK

Номер: US20160050771A1
Автор: Li Ming-Chia, Yu Cheng-Po
Принадлежит:

A manufacturing method of circuit structure embedded with heat-dissipation block including the following steps is provided. A core board including a first dielectric layer and two first conductive layers located on two opposite sides of the first dielectric layer is provided. A through hole penetrated the core board is formed. A heat-dissipation block is disposed into the through hole. Two inner-layer circuits are formed on two opposite sides of the core board. At least one build-up structure is bonded on the core board, wherein the build-up structure includes a second dielectric layer and a second conductive layer, and the second dielectric layer is located between the second conductive layer and the core board. A cavity is formed on a predetermined region of the build-up structure, and the cavity is communicated with the corresponding inner-layer circuit. Another manufacturing method of circuit structure embedded with heat-dissipation block is also provided. 1. A manufacturing method of circuit structure embedded with heat-dissipation block , comprising:providing a core board, wherein the core board comprises a first dielectric layer and two first conductive layers, and the two first conductive layers are located on two opposite sides of the first dielectric layer, respectively;forming a through hole penetrated the core board;disposing a heat-dissipation block into the through hole;forming two inner-layer circuits on two opposite sides of the core board;bonding at least one build-up structure on the core board, wherein the build-up structure comprises a second dielectric layer and a second conductive layer, and the second dielectric layer is located between the second conductive layer and the core board; andforming a cavity on a predetermined region of the build-up structure, wherein the cavity is communicated with the corresponding inner-layer circuit and corresponding to the heat-dissipation block.2. The manufacturing method of circuit structure embedded with ...

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08-03-2018 дата публикации

APPARATUS AND METHOD FOR DETECTION AND DISCRIMINATION MOLECULAR OBJECT

Номер: US20180067050A1
Принадлежит:

An apparatus for detecting an object capable of emitting light. The apparatus comprises a light detector comprising at least two optical sensors capable of determining the intensity of the light; and a computer processing output signal generated by the optical sensors and comparing a result of the processing with a known result corresponding to a known type to determine whether the object belongs to the known type. 134.-. (canceled)35. A method of sequencing a nucleic acid , comprising the steps of:(a) performing single molecule nucleic acid sequencing of at least one nucleic acid molecule, wherein the single molecule nucleic acid sequencing leads to emission of light correlated to the identity of at least one base comprised by the nucleic acid;(b) detecting the light with at least one light detector comprising at least a first optical sensor and a second optical sensor;(c) processing output signals from the at least two optical sensors; and(d) comparing at least one result of the processing with at least one known result corresponding to at least one known type to determine an identity of at least one base comprised by the nucleic acid. This application is a division of application Ser. No. 12/720,352, filed Mar. 9, 2010, which claims the benefit of priority to U.S. Provisional Patent Application No. 61/159,310, filed Mar. 11, 2009, the entire content of all of which is incorporated by reference herein in its entirety.The present invention relates to a detecting apparatus, and the method of using this apparatus to detect and/or discriminate an object. Further relates to a detecting apparatus that is able to detect and/or discriminate an object emitting a light of low intensity.The Human Genome Project (HGP) spurred a great increase in sequencing throughput and resulted in a corresponding drop in sequencing costs. In contrast to the 13 years and cost of nearly three billion US dollars, per genome sequencing costs have been reduced significantly—indeed two individual ...

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05-05-2016 дата публикации

Wavelength-converting polymers, method for fabricating the same, and wavelength-converting devices employing the same

Номер: US20160122470A1

A wavelength-converting polymer, a method for fabricating the same and a wavelength-converting device employing the same are provided. The wavelength-converting polymer has a chemical structure represented by formula (I): In formula (I), B and D are the same or different and independently include hydrogen, C1-8 alkyl group, C1-8 alkoxy group, aryloxy group, carboxyl group, —COOK, —COONa or —NH 2 , or B and D are connected to form a heteroaromatic ring, wherein Z is hydrogen, C1-8 alkyl group, cycloalkyl group or aryloxy group, X 1 -X 4 are the same or different and independently include hydrogen, halogen, C1-8 alkyl group or C1-8 alkoxy group, R is C1-8 alkyl group with or without substitution, and n is an integer of 5 to 1,000.

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15-08-2019 дата публикации

Micro Light Emitting Diode Module And Manufacturing Method Thereof

Номер: US20190251894A1
Принадлежит:

A micro light emitting diode module contains: multiple flip-chip LEDs and a dielectric layer. The multiple flip-chip LEDs are arranged side by side. The flip-chip LEDs have a light emitting side and an electrical connecting side. The electrical connecting side of the flip-chip LEDs has a p-contact pad and an n pad. The dielectric layer is formed on the electrical connecting side of the flip-chip LEDs. The dielectric layer has multiple electric channels in which multiple electrical circuits are formed. The electrical circuits are corresponded to the p-contact pads and the n-contact pads of the flip-chip LEDs respectively, and each electrical circuit is electrically connected to its corresponding p-contact pad or n-contact pad. By reconstruction of circuits on LED array, the present invention not only has high processing yield, but also significantly reduces the manufacturing time. A method for making the micro light emitting diode module is also provided. 1. A micro light emitting diode module comprising:multiple flip-chip LEDs arranged side by side, each of the flip-chip LEDs having a light emitting side and an electrical connecting side, the electrical connecting side of each flip-chip LED having a p-contact pad and an n pad; anda dielectric layer formed on the electrical connecting side of the flip-chip LEDs, the dielectric layer having multiple electric channels in which multiple electrical circuits are formed, the multiple electrical circuits being corresponded to the p-contact pads and the n-contact pads of the flip-chip LEDs respectively, and each electrical circuit being electrically connected to its corresponding p-contact pad or n-contact pad.2. The micro light emitting diode module of claim 1 , wherein the dielectric layer has a first side facing the flip-chip LEDs and a second side away from the flip-chip LEDs claim 1 , the micro light emitting diode module further comprises a solder mask layer covering the second side of the dielectric layer.3. The micro ...

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11-11-2010 дата публикации

Method for selectively thinning conductive layer

Номер: TWI333245B
Автор: Chia Ming Li, Hui Ju Lee
Принадлежит: Advanced Semiconductor Eng

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04-04-2023 дата публикации

Method for exposing photopolymerization layer comprising photopolymer

Номер: US11619881B2
Автор: Chia-Ming Li
Принадлежит: Individual

A method for exposing a photopolymerization layer comprising photopolymers includes: providing a printed circuit board, with a photopolymerization layer disposed on the top side of the printed circuit board; performing first-instance exposure on the photopolymerization layer, using a UV source and a digital micro-lens device, wherein the UV source is of a power less than 0.2 kW; stopping the first-instance exposure; covering the photopolymerization layer with a mask, with the mask having a bottom side in contact with the photopolymerization layer; and performing second-instance exposure on the photopolymerization layer, using a mercury lamp and the mask, wherein the mercury lamp is of a power greater than 5 kW.

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11-05-2013 дата публикации

Encapsulation material

Номер: TWI395806B
Принадлежит: Ind Tech Res Inst

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09-03-2023 дата публикации

Method for exposing photopolymerization layer comprising photopolymer

Номер: US20230069972A1
Автор: Chia-Ming Li
Принадлежит: Individual

A method for exposing a photopolymerization layer comprising photopolymers includes: providing a printed circuit board, with a photopolymerization layer disposed on the top side of the printed circuit board; performing first-instance exposure on the photopolymerization layer, using a UV source and a digital micro-lens device, wherein the UV source is of a power less than 0.2 kW; stopping the first-instance exposure; covering the photopolymerization layer with a mask, with the mask having a bottom side in contact with the photopolymerization layer; and performing second-instance exposure on the photopolymerization layer, using a mercury lamp and the mask, wherein the mercury lamp is of a power greater than 5 kW.

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05-01-2006 дата публикации

Dye composition of the optical recording medium

Номер: US20060003257A1

The present invention provides a dye composition suitable for forming an information recording layer for carrying out recording and readout with laser beams, which includes at least one compound of formula (I): where n is selected from the group consisting of integer 0˜3; B represents boron; O represents oxygen; X 1 and X 2 are individually selected from the group consisting of oxygen and fluorine; Y is selected from the group consisting of alkoxyl, alkoxycarbonyl, phenylcyclo having substituent, phenylcyclo having non-substituent, a heterocyclic structure having boron, nitrogen, oxygen, sulfur and selenium (which is composed of Y and Z); Z is selected from the group consisting of hydrogen, alkoxyl, cyanogen radical, the heterocyclic structure having boron, nitrogen, oxygen, sulfur and selenium (which is composed of Y and Z); R is selected from the group consisting of alkoxyl, amino, phenylcyclo having substituent, phenylcyclo having non-substituent, ferrocenyl, a heterocyclic structure having boron, nitrogen, oxygen, sulfur and selenium. The dye composition has strong absorbance (ε≧10 4 cm 2 /mole) for the ultraviolet light and the visible light region, it is therefore that the dye composition is suitable for forming an information recording layer of the optical recording medium. Further, the dye composition is also suitable for FMD-ROM/FMD-R because of the high fluorescent quantum efficiency.

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12-07-2007 дата публикации

Organic dye for recording layer and high density optical recording medium using the same

Номер: US20070160795A1

A recording layer including a novel dye for a high density optical recording medium, employing short wavelength laser source with a wavelength no longer than 530 nm 530 nm for recording high density information and reproduction/playback of the high density information recordings, is provided. The dye incorporated in the recording layer has the following general chemical structural formula (I):

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12-03-2024 дата публикации

Light guide module including thick portion and thin portion

Номер: US11927788B1
Автор: Chia-Ming Li, Hui-Ling Lin
Принадлежит: Primax Electronics Ltd

A light guide module is provided, which includes a circuit board, one or more light-emitting elements, a light guide plate, a first reflective layer and a second reflective layer. The one or more light-emitting elements are disposed on the circuit board. The light guide plate is located on the circuit board, in which the light guide plate has a thick portion and a thin portion connected to the thick portion, and the thin portion is located over the one or more light-emitting elements, and a side surface of the thick portion adjacent to the thin portion is laterally adjacent to the one or more light-emitting elements. The first reflective layer covers a side surface of the thick portion away from the thin portion. The second reflective layer covers an upper surface of the thick portion and an upper surface of the thin portion.

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20-07-2023 дата публикации

Packaging process for embedded chips

Номер: US20230230929A1
Автор: Chia-Ming Li
Принадлежит: Individual

A packaging process for embedded chips includes: (1) mounting at least one IC chip on a circuit substrate, the IC chip having at least one exposed pin; (2) attaching a self-adhesive copper foil film to the surface of the circuit substrate, wherein the self-adhesive copper foil film has a copper foil layer and a B-stage insulating adhesive layer, the copper foil layer has at least one to-be-opened copper foil area corresponding to the pin, the insulating adhesive layer is applied on the copper foil layer, has no glass fiber, covers the IC chip, and has at least one to-be-opened insulating adhesive area corresponding to the pin, and the pin is in contact with the insulating adhesive layer but not with the copper foil layer; (3) removing the to-be-opened copper foil area; (4) removing the to-be-opened insulating adhesive area with an etching solution; and (5) curing the insulating adhesive layer completely.

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11-05-2010 дата публикации

Electrochromic material with low temperature and a product made form the same

Номер: TWI324897B
Принадлежит: Univ Feng Chia

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19-09-2024 дата публикации

Circuit board layer build-up process with enhanced positioning precision

Номер: US20240314942A1
Автор: Chia-Ming Li
Принадлежит: Individual

A circuit board layer build-up process with enhanced positioning precision is provided. The circuit board layer build-up process is advantageous in that regardless of the number of times for which the circuit board layer build-up process has been performed in a row, all the newly added layers are formed with target windows (including copper foil target windows and insulating adhesive target windows) each having a larger contour than the corresponding positioning target through hole. During the via forming process and the subsequent patterning process, therefore, machine vision-based positioning can always be carried out using the positioning target through holes in the substrate layer as positioning reference points, thereby preventing layer errors and increasing the precision and yield of circuit boards.

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06-02-2018 дата публикации

Detecting device

Номер: US09883824B2
Принадлежит: Taiwan Biophotonic Corp

A detecting device includes at least one detecting module. In the detecting module, a light source unit is configured to emit a first beam and a second beam. The wavelength of the first beam is different from that of the second beam. A packaging unit is disposed on the light source unit and a light detecting unit and on transmission paths of the first beam and the second beam from the light source unit. An optical microstructure unit is disposed on the transmission paths of the first beam and the second beam. The first beam and the second beam emitted from the light source unit pass through the packaging unit to pass the optical microstructure unit to be transmitted to a biological tissue, and then pass through the optical microstructure unit to pass the packaging unit to be transmitted to the light detecting unit in sequence.

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