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CONDENSER HAVING A REFRIGERANT RESERVOIR ASSEMBLY CONTAINING A DESICCANT BAG – 20120227946

Abstract

A condenser having a receiver for use in an air conditioning system, having a plurality of refrigerant tubes, at least one header in hydraulic communication with the plurality of refrigerant tubes, and a receiver housing connected to the header. The receiver housing includes a refrigerant conduit nested within the spine of a desiccant bag. The spine divided the desiccant bag into two desiccant compartments, which are folded over the refrigerant conduit such that the desiccant compartments urge the refrigerant conduit onto the spine, thereby holding the desiccant bag in a predetermined position.
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THIN FILM DESICCANT AND METHOD OF FABRICATION – 20120235970

Abstract

This disclosure provides systems, methods and for providing a desiccant in a MEMS package. A MEMS device may be packaged with a desiccant to provide a moisture-free environment. In order to avoid undesirable effects on the MEMS device, the desiccant may be selected or treated so as to be compatible with a particular MEMS device, for instance, a very thin profile may be desired. A method for covalently bonding zeolite crystals with a substrate is provided such that a layer of zeolite crystals is covalently attached to a substrate surface of the MEMS device package. This bonding includes a change in the chemical structure of the zeolite such that is chemically adhered to the substrate.
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DUST CAP WITH DESICCANT – 20120315808

Abstract

Dust caps for cable connectors are provided. The dust caps include an internal reservoir containing a quantity of desiccant held captive by an air permeable stopper. The desiccant can be a color-indicating type, and can include a gas absorbing material. The dust cap can be threaded to mate with cable connectors and can be configured to connect to male or female threaded connectors. A gasket can be included to provide a substantially airtight seal when the dust cap is installed on a connector. The dust cap can be constructed of a transparent material to allow for visual inspection of the desiccant.
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Desorption of a Desiccant By Radio Waves or Microwaves For a Downhole Sorption Cooler – 20120285178

Abstract

A method, apparatus and system for cooling a component of a downhole tool is disclosed. The apparatus includes a first desiccant configured to adsorb a refrigerant gas. A transmitter is configured to transmit electromagnetic energy into the first desiccant to enable desorption of the refrigerant gas from the first desiccant. A condenser condenses the desorbed refrigerant gas into a liquid phase. The condensed refrigerant evaporates from a liquid phase to a gaseous phase to cool the component. A second desiccant can be used, wherein the processor is configured to operate the cooling system in a first mode of operation in which the first desiccant is in thermal communication with the component and the second desiccant is thermally isolated from the component and a second mode of operation in which the second desiccant is in thermal communication with the component and the first desiccant is thermally isolated from the component.
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BACKLIGHT UTILIZING DESICCANT LIGHT TURNING ARRAY – 20120320010

Abstract

An interferometric display comprises a backlight with light extraction features formed from a desiccant material within the display. A light source is positioned at one or more edges or corners of the back glass, and the desiccant based features patterned in or on the back glass remove unwanted moisture and create uniform light extraction from the back glass.
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HAND-HELD TEST METER AND ANALYTICAL TEST STRIP CARTRIDGE ASSEMBLY WITH DESICCANT VIAL – 20130034872

Abstract

A hand-held test meter and analytical test strip cartridge assembly combination includes a hand-held test meter with a test meter housing and an extractor with a test strip engagement feature, while the analytical test strip cartridge assembly includes a desiccant vial and an analytical test strip cartridge with a cartridge housing, a test strip presentation mechanism disposed within the cartridge housing, and a plurality of analytical test strips (each with at least one extractor engagement feature) disposed in the cartridge housing. The test meter housing is configured for operative engagement with the cartridge housing and the test strip presentation mechanism is configured to present a single analytical test strip from the plurality of analytical test strips for engagement with the extractor. Moreover, the analytical test strip cartridge is configured for operative disposition in the desiccant vial.
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BREATHING AND DESICCANT REGENERATING CYCLE FOR REDUCING CONDENSATION IN CONCENTRATOR PHOTOVOLTAIC MODULES – 20130036909

Abstract

A concentrator photovoltaic apparatus for controlling internal condensation includes a light receiving module including one or more photovoltaic cells in a waterproof enclosure, at least one primary lens sealed to the waterproof enclosure for concentrating sunlight, a waterproof breather membrane regulating the pressure of the air located inside the enclosure, and a regenerative desiccant in a thermally decoupled dryer tube or thermally coupled to an internal surface of the enclosure. Smaller breather membrane vents and/or positive time delays between the temperature of the desiccant and the temperature of the enclosure may prolong an adsorption phase of the desiccant, which may substantially contribute to efficiency, reliability, and autonomous control of condensation.
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DESICCANT AIR CONDITIONER – 20130036913

Abstract

Provided is an air conditioning system capable of high efficiency operation and a compact structure. The air conditioning system is provided with a desiccant and a heat pump. The desiccant absorbs air moisture and the heat pump employs the treating air as a low-temperature heat source while employing the reproducing air as a high-temperature heat source to supply reproducing air with heat for reproducing the desiccant. Heat exchange occurs between the reproducing air before being heated by the heat pump.
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