Drying module for a relative pressure measuring transducer

US10168241B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10168241-B2
Application numberUS-201515320393-A
CountryUS
Kind codeB2
Filing dateJun 8, 2015
Priority dateJun 24, 2014
Publication dateJan 1, 2019
Grant dateJan 1, 2019

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A drying module for a relative pressure measuring transducer, which has in the interior of a housing of the measuring transducer a reference pressure supply leading from a relative pressure sensor to an opening in a housing wall of the housing, and which has a connection element, whose inner space is connected via the opening with the reference pressure supply extending in the measuring transducer. The drying module comprises a module housing, which has an inner space, in which a drying means is located, and, extending through the module housing (23), a reference pressure supply, whose first end is contactable with the reference pressure via an opening of the module housing, whose second end is connectable to the reference pressure supply of the measuring transducer via a connection element of the drying module connectable with the connection element of the measuring transducer, and whose inner space in the module housing is in humidity permeable connection with the inner space containing the drying means.

First claim

Opening claim text (preview).

The invention claimed is: 1. A drying module for a measuring transducer for metrological registering of a pressure to be measured as a relative pressure relative to a reference pressure existing in the environment of the measuring transducer, comprising: a module housing, which has an inner space, in which a drying means, especially a moisture adsorbing material, is located; a first reference pressure supply extending through said module housing, having a first end contactable with the reference pressure via a first opening of said module housing, and having a second end connectable to a second reference pressure supply extending in the measuring transducer via a first connection element of the drying module connectable with a second connection element of the measuring transducer, and an inner space in the module housing in humidity permeable connection with said inner space containing said drying means, wherein: the second reference pressure supply extending in the measuring transducer leads from a relative pressure sensor to a second opening in a housing wall of a housing of the measuring transducer; and the second connection element has an inner space connected via the second opening with said second reference pressure supply extending in the measuring transducer. 2. The drying module as claimed in claim 1 , wherein: said first reference pressure supply extending through said module housing is embodied as a line, especially a capillary line; and said humidity permeable connection occurs via at least one line interruption, at least one opening in a line wall of the line, and/or at least one humidity permeable wall region of the line. 3. The drying module as claimed in claim 1 , wherein: said first reference pressure supply extending through said module housing comprises a line, especially a capillary line, having a humidity impermeable wall; and said humidity permeable connection with the inner space containing said drying means occurs via an open end of said line facing toward said first connection element connectable with said second connection element of said measuring transducer. 4. The drying module as claimed in claim 3 , wherein: there is provided adjoining said open end of said line a hollow space, which communicates with an inner space of said module housing externally surrounding said line. 5. The drying module as claimed in claim 3 , wherein: said line is a capillary line, which comprises a small tube, especially a metal small tube, into which at least one further small tube of a synthetic material, especially tetrafluoroethylene- perfluoro(methyl vinyl ether) (MFA) or perfloroalkoxy alkane (PFA) copolymer, is inserted. 6. The drying module as claimed in claim 1 , wherein: the inner space of said first reference pressure supply is separated from the inner space of said module housing containing said drying means by a humidity permeable, especially a humidity permeable and moisture collecting, membrane; and the humidity permeable connection passes via said membrane. 7. The drying module as claimed in claim 6 , wherein: said first reference pressure supply is embodied as a line, or includes a line; and between said membrane and said line a gap is provided, especially a gap cylindrical surrounding said line, especially a gap having a gap width in the order of magnitude of one tenth or a few tenths of a millimeter. 8. The drying module as claimed in claim 6 , wherein: said membrane is a body, especially an essentially cylindrical body, which has on its ends, in each case, a stiffening, especially a stiffening inserted into a cavity in said module housing; and said stiffenings have longitudinally connecting webs, between which thin-walled membrane regions are enclosed. 9. The drying module as claimed in claim 6 , wherein: said membrane is composed of silicone, silicone rubber, polyvinyl chloride (PVC), polytetrafluoroethylene (PTFE), polyamide or polyimide. 10. The drying module as claimed in claim 6 , wherein: the inner space of said module housing containing said drying means is closed off from the environment of the drying module by a module housing wall and from the remaining inner space of said module housing by the humidity permeable membrane. 11. The drying module as claimed in claim 1 , wherein: said drying means is arranged in an inner space of said module housing externally surrounding said first reference pressure supply extending through said module housing. 12. The drying module as claimed in claim 1 , wherein: said drying means is a moisture adsorbing material, especially zeolite or silica gel, which is introduced into said module housing especially as granular material or gel, especially as granular material or gel surrounded by a moisture permeable wall, especially a wall of silicone, silicone rubber, polyvinyl chloride (PVC), polytetrafluoroethylene (PTFE), polyamide or polyimide, or as a solid body, especially as a sintered body of zeolite or as a composite body manufactured of a moisture adsorbing material, especially zeolite- or silica gel powder, and a polymer. 13. The drying module as claimed in claim 1 , further comprising: a filter of a water repelling, especially water impermeable, gas permeable material, through which the reference pressure is transmitted, especially a filter arranged under a cap having at least one pressure equalizing opening, especially a pressure equalizing opening arranged offset from the end of the first reference pressure supply, is placed in front of the first end of the first reference pressure supply extending through said module housing and contactable with the reference pressure. 14. A method for manufacturing a drying module comprising: a drying module for a measuring transducer for metrological registering of a pressure to be measured as a relative pressure relative to a reference pressure existing in the environment of the measuring transducer, comprising: a module housing, which has an inner space, in which a drying means, especially a moisture adsorbing material, is located; a first reference pressure supply extending through said module housing, having a first end contactable with the reference pressure via a first opening of said module housing, and having a second end connectable to a second reference pressure supply extending in the measuring transducer via a first connection element of the drying module connectable with a second connection element of the measuring transducer, and an inner space in the module housing in humidity permeable connection with said inner space containing said drying means, wherein: the second reference pressure supply extending in the measuring transducer leads from a relative pressure sensor to a second opening in a housing wall of a housing of the measuring transducer; and a second connection element is provided, whose inner space is connected via the second opening with said second reference pressure supply extending in the measuring transducer; comprising the steps of: inserting a line, especially pressed or adhered, into a connection socket of a cap of the module housing; pushing a membrane onto the line; and inserting a unit comprising the line and the membrane, with the line leading, into the module housing equipped with the drying means, wherein: a connection socket is connected with a securement feature provided on the module housing. 15. A measuring transducer for metrological registering of a pressure to be measured as a relative pressure relative to a reference pressure reigning in the environment of the measuring transducer, comprising: a second reference pressur

Assignees

Inventors

Classifications

  • G01L19/144Primary

    with dismountable parts, e.g. for maintenance purposes or for ensuring sterile conditions (for detachable interface or adapter between the process medium and the pressure gauge G01L19/003) · CPC title

  • using elastically-deformable members or pistons as sensing elements · CPC title

  • using a detachable interface or adapter between the process medium and the pressure gauge · CPC title

  • against moisture or humidity · CPC title

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What does patent US10168241B2 cover?
A drying module for a relative pressure measuring transducer, which has in the interior of a housing of the measuring transducer a reference pressure supply leading from a relative pressure sensor to an opening in a housing wall of the housing, and which has a connection element, whose inner space is connected via the opening with the reference pressure supply extending in the measuring transdu…
Who is the assignee on this patent?
Endress Hauser Gmbh Co Kg, Endress Hauser Se Co Kg
What technology area does this patent fall under?
Primary CPC classification G01L19/144. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Jan 01 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).