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公开(公告)号:US10208940B2
公开(公告)日:2019-02-19
申请号:US15678880
申请日:2017-08-16
Applicant: Fluence Bioengineering
Inventor: Dung Duong , Randall Johnson , Nicholas Klase
IPC: F21V29/00 , F21V29/502 , H05K7/20 , H05K1/02 , F28F3/02 , H01L23/367
Abstract: Embodiments may utilize a series of exposed fins, which increase the surface area of the heat sink creating additional air flow. As hotter air rises within the system, cooler is drawn into the heatsink. The fins may be exposed on both sides of the longitudinal axis, allowing cooler air to be drawn towards the longitudinal axis above the heatsink and flow upward. This process may cool the fins. Additionally, the spacing between the fins may have to be wide enough to allow for air to freely enter the heatsink.
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公开(公告)号:US20180356048A1
公开(公告)日:2018-12-13
申请号:US15697149
申请日:2017-09-06
Applicant: Fluence Bioengineering
Inventor: Dung Duong , Randy Johnson , Nick Klase
CPC classification number: F21V23/005 , A01G7/045 , F21K9/232 , F21K9/90 , F21S4/28 , F21V7/005 , F21V7/0066 , F21V7/05 , F21V15/015 , F21V17/107 , F21V19/0015 , F21V19/003 , F21V23/001 , F21V23/02 , F21V23/0442 , F21V29/70 , F21V29/74 , F21V29/83 , F21Y2103/10 , F21Y2105/16 , F21Y2115/10 , H05B33/0854 , H05B37/0227 , H05B37/0272 , H05K1/0203 , H05K1/0209 , H05K1/0274 , H05K1/0277 , H05K1/05 , H05K1/056 , H05K1/181 , H05K1/182 , H05K1/185 , H05K3/0014 , H05K3/28 , H05K3/32 , H05K3/44 , H05K2201/066 , H05K2201/09009 , H05K2201/10106
Abstract: Examples of the present disclosure are related to systems and methods for lighting fixtures. More particularly, embodiments disclose lighting fixtures utilizing metal core PCB (MCPCB) for thermal, mechanical, and/or optical controls.
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公开(公告)号:US20180324980A1
公开(公告)日:2018-11-08
申请号:US15651941
申请日:2017-07-17
Applicant: Fluence Bioengineering
Inventor: Dung Duong , Randall Johnson , Nicholas Klase
IPC: H05K7/20
CPC classification number: F21V29/745 , F21V19/0055 , F21V23/009 , F21V29/502 , F21V29/67 , F21V29/75 , F21Y2115/10 , F28F3/02 , H01L23/367 , H05K1/021 , H05K7/20409
Abstract: Embodiments may utilize a series of exposed fins, which increase the surface area of the heat sink creating additional air flow. As hotter air rises within the system, cooler is drawn into the heatsink. The fins may be exposed on both sides of the longitudinal axis, allowing cooler air to be drawn towards the longitudinal axis above the heatsink and flow upward. This process may cool the fins. Additionally, the spacing between the fins may have to be wide enough to allow for air to freely enter the heatsink.
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公开(公告)号:US20180320878A1
公开(公告)日:2018-11-08
申请号:US15636923
申请日:2017-06-29
Applicant: Fluence Bioengineering
Inventor: Dung Duong , Randall Johnson , Nicholas Klase
CPC classification number: F21V29/745 , F21V19/0055 , F21V23/009 , F21V29/502 , F21V29/67 , F21V29/75 , F21Y2115/10 , F28F3/02 , H01L23/367 , H05K1/021 , H05K7/20409
Abstract: Embodiments may utilize a series of exposed fins, which increase the surface area of the heat sink creating additional air flow. As hotter air rises within the system, cooler is drawn into the heatsink. The fins may be exposed on both sides of the longitudinal axis, allowing cooler air to be drawn towards the longitudinal axis above the heatsink and flow upward. This process may cool the fins. Additionally, the spacing between the fins may have to be wide enough to allow for air to freely enter the heatsink.
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公开(公告)号:US20180320876A1
公开(公告)日:2018-11-08
申请号:US15678880
申请日:2017-08-16
Applicant: Fluence Bioengineering
Inventor: Dung Duong , Randall Johnson , Nicholas Klase
IPC: F21V29/502 , H05K7/20 , H05K1/02 , F28F3/02 , H01L23/367
CPC classification number: F21V29/745 , A01G9/20 , F21V19/0055 , F21V23/009 , F21V29/502 , F21V29/67 , F21V29/75 , F21V29/76 , F21V29/83 , F21Y2115/10 , F28F3/02 , F28F3/025 , H01L23/367 , H05K1/021 , H05K7/20409
Abstract: Embodiments may utilize a series of exposed fins, which increase the surface area of the heat sink creating additional air flow. As hotter air rises within the system, cooler is drawn into the heatsink. The fins may be exposed on both sides of the longitudinal axis, allowing cooler air to be drawn towards the longitudinal axis above the heatsink and flow upward. This process may cool the fins. Additionally, the spacing between the fins may have to be wide enough to allow for air to freely enter the heatsink.
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公开(公告)号:US20170023229A1
公开(公告)日:2017-01-26
申请号:US15215923
申请日:2016-07-21
Applicant: Fluence Bioengineering
Inventor: Nicholas Klase , Randall Johnson
CPC classification number: F21V29/763 , A01G9/26 , F21Y2115/10 , Y02A40/274
Abstract: Embodiments disclosed herein describe systems and methods for heat sinks within light fixtures. In embodiments, the heat sink may be a passive system that creates a cross-flow thermal management system to dissipate large amounts of heat in a slim light fixture. Embodiments may utilize a series of wings assembled in a linear design that are positioned perpendicular to the length of the light fixture to preserve the cross-flow heat sink.
Abstract translation: 本文公开的实施例描述了在灯具内的散热器的系统和方法。 在实施例中,散热器可以是无源系统,其创建跨流量热管理系统以在超薄灯具中消散大量的热量。 实施例可以使用以线性设计组装的一系列翼片,其垂直于灯具的长度定位以保持横流散热器。
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公开(公告)号:ES2989837T3
公开(公告)日:2024-11-27
申请号:ES18793906
申请日:2018-04-27
Applicant: FLUENCE BIOENGINEERING
Inventor: DUONG DUNG , JOHNSON RANDALL , KLASE NICHOLAS
Abstract: Las realizaciones pueden utilizar una serie de aletas expuestas, que aumentan el área de superficie del disipador de calor creando un flujo de aire adicional. A medida que el aire más caliente sube dentro del sistema, el aire más frío se introduce en el disipador de calor. Las aletas pueden estar expuestas a ambos lados del eje longitudinal, lo que permite que el aire más frío se dirija hacia el eje longitudinal por encima del disipador de calor y fluya hacia arriba. Este proceso puede enfriar las aletas. Además, el espacio entre las aletas puede tener que ser lo suficientemente amplio para permitir que el aire entre libremente en el disipador de calor. (Traducción automática con Google Translate, sin valor legal)
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公开(公告)号:CA3050935C
公开(公告)日:2022-04-26
申请号:CA3050935
申请日:2019-07-31
Applicant: FLUENCE BIOENGINEERING INC
Abstract: Systems and methods for collapsible lighting fixtures are disclosed. In aspects, a horticultural luminaire has first and second light fixtures, coupled in movable relation between storage and deployed positions by a coupling element applying a retarding torque. Coupling element can be coupling shaft providing friction, or friction hinge cartridge. In aspects, hinge has ledge surfaces, adjacent rotational hinge faces, and extending transverse the rotational plane. In aspects, a horticultural luminaire has an articulated cableway extending through hinge coupling light fixtures, and guiding a cable entering from the exterior into cable passageways in light fixtures, thereby lessening a cable pinch point during rotation and deployment.
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公开(公告)号:CA3050937A1
公开(公告)日:2020-02-01
申请号:CA3050937
申请日:2019-07-31
Applicant: FLUENCE BIOENGINEERING INC
Abstract: Systems and methods for collapsible lighting fixtures are disclosed. In aspects, a horticultural luminaire 100 has first and second light fixtures 110, 120 coupled in movable relation between storage and deployed positions by a coupling element 130 applying a retarding torque. Coupling element can be coupling shaft 250 providing friction, or friction hinge cartridge 260. In aspects, hinge 130 has ledge surfaces 218, 228 adjacent rotational hinge faces 216, 226 and extending transverse the rotational plane. In aspects, a horticultural luminaire has an articulated cableway extending through hinge 130 coupling light fixtures 110, 120 and guiding a cable entering from the exterior into cable passageways in light fixtures 110, 120, thereby lessening a cable pinch point during rotation and deployment.
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公开(公告)号:CA3066197A1
公开(公告)日:2018-12-13
申请号:CA3066197
申请日:2018-02-28
Applicant: FLUENCE BIOENGINEERING INC
Inventor: DUONG DUNG , JOHNSON RANDALL
Abstract: Examples of the present disclosure are related to systems and methods for a paralleled hybrid horticulture system. More particularly, embodiments disclose utilizing a constant power (CP) power supply that is configured to operate in both constant voltage and constant current modes, wherein the maximum current and maximum voltage conditions may be programed.
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