Sample dilution to specifiable dilution ratio

US9833754B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9833754-B2
Application numberUS-201214443126-A
CountryUS
Kind codeB2
Filing dateNov 15, 2012
Priority dateNov 15, 2012
Publication dateDec 5, 2017
Grant dateDec 5, 2017

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  1. Title

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  2. Abstract

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  5. First independent claim

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Abstract

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A dilution apparatus ( 100 ) for diluting a fluidic sample in accordance with a specifiable dilution ratio, wherein the dilution apparatus ( 100 ) comprises a dilution fluid supply device ( 102 ) configured for supplying a dilution fluid at a first quantity per time, a transport fluid supply device ( 104 ) configured for supplying a transport fluid at a second quantity per time, a first fluid accommodation unit ( 106 ) configured for accommodating a first fluid volume, a second fluid accommodation unit ( 108 ) configured for accommodating a second fluid volume, and a control device ( 110, 112 ) configured for controlling the flow of the dilution fluid, the transport fluid and the fluidic sample so that in a first operation mode, the fluidic sample, being accommodated in the first fluid accommodation unit ( 106 ), is forced to flow to the second fluid accommodation unit ( 108 ) while being diluted by being mixed with dilution fluid, and in a second operation mode, the mixture of dilution fluid and fluidic sample, being accommodated in the second fluid accommodation unit ( 108 ), is forced to flow from the second fluid accommodation unit ( 108 ) to the first fluid accommodation unit ( 106 ) while being further diluted by being mixed with further dilution fluid.

First claim

Opening claim text (preview).

The invention claimed is: 1. A dilution apparatus for diluting a fluidic sample, in accordance with a specifiable dilution ratio, the dilution apparatus comprising: a dilution fluid supply device configured for supplying a dilution fluid, at a first quantity per time being flow rate A; a transport fluid supply device configured for supplying a transport fluid, at a second quantity per time being flow rate B; a first fluid accommodation unit configured for accommodating a first fluid volume; a second fluid accommodation unit configured for accommodating a second fluid volume; a control device configured for controlling flow of the dilution fluid, the transport fluid and the fluidic sample so that: in a first operation mode, the fluidic sample, being accommodated in the first fluid accommodation unit, is forced to flow to the second fluid accommodation unit at the flow rate B of the transport fluid while the fluidic sample is diluted by being mixed with the dilution fluid at a flow rate A; in a second operation mode, the mixture of the dilution fluid and the fluidic sample, being accommodated in the second fluid accommodation unit, is forced to flow from the second fluid accommodation unit to the first fluid accommodation unit while being further diluted by being mixed with further dilution fluid such that the specifiable dilution ratio is based at least on flowrates of the dilution fluid compared to flowrates of the transport fluid. 2. The dilution apparatus according to claim 1 , wherein the control device is configured for adjusting a quantity per time of supplying the dilution fluid and/or a quantity per time of supplying the transport fluid to thereby adjust the dilution ratio to a user-defined or a predefined dilution ratio. 3. The dilution apparatus according to claim 1 , wherein the control device is configured for opening the dilution apparatus alternatingly in the first operation mode and subsequently in the second operation mode for a specifiable number of times to thereby adjust the dilution ratio to the specifiable dilution ratio. 4. The dilution apparatus according to claim 1 , wherein the dilution fluid supply device and the transport fluid supply device are configured for supplying the same kind of fluid, as a dilution fluid and as a transport fluid. 5. The dilution apparatus according to claim 1 , wherein the control device comprises a fluidic control valve being switchable to operate the dilution apparatus alternatingly in the first operation mode and in the second operation mode. 6. The dilution apparatus according to claim 5 , wherein the control device is configured for switching the fluidic control valve to move the fluidic sample alternatingly along a first direction, in a counterclockwise or in a clockwise direction, in the first operation mode and along a second direction, in a clockwise or in a counterclockwise direction, in the second operation mode, the second direction being opposite to the first direction. 7. The dilution apparatus according to claim 5 , wherein the fluidic control valve comprises a first valve member, comprising a stator, comprising ports and a second valve member, comprising a rotor, comprising grooves configured for fluidically coupling selectable ones of the ports depending on a relative orientation between the first valve member and the second valve member which are movable relative to one another. 8. The dilution apparatus according to claim 7 , wherein a first port is fluidically coupled to the first fluid accommodation unit, a second port is fluidically coupled to the second fluid accommodation unit, a third port is fluidically coupled to the transport fluid supply device, and a fourth port is fluidically coupled to a waste line; wherein the dilution fluid supply device is fluidically connected between the first fluid accommodation unit and the second fluid accommodation unit; wherein the fluidic control valve is switchable so that: in the first operation mode, one groove connects the first port to the third port and another groove connects the second port with the fourth port; in the second operation mode, one of the grooves connects the first port to the fourth port and the other one of the grooves connects the second port with the third port. 9. The dilution apparatus according to claim 1 , wherein the control device is configured for, prior to each switch between the first operation mode and the second operation mode, draining a portion of the mixture towards a waste line until the entire fluid volume of the respective one of the fluid accommodation units is completely filled with the mixture before further diluting the remaining portion of the mixture after a subsequent change of the operation mode. 10. The dilution apparatus according to claim 1 , wherein the transport fluid supply device is configured, in each of the first and the second operation mode, for pressing the transport fluid towards a respective back end of the fluidic sample or the mixture to thereby drive the fluidic sample or the mixture to a position at which subsequent mixing or further mixing with dilution fluid occurs. 11. The dilution apparatus according to claim 1 , wherein the transport fluid supply device is configured, in each of the first and the second operation mode, for pressing the transport fluid towards a respective back end of the fluidic sample or the mixture without mixing the fluidic sample or the mixture with transport fluid. 12. The dilution apparatus according to claim 1 , comprising a mixing point, comprising a flow combiner, fluidically connecting a flow path from the first fluid accommodation unit with a flow path from the second fluid accommodation unit and with a flow path from the dilution fluid supply device to enable mixing between the fluidic sample or the mixture with dilution fluid at the mixing point. 13. The dilution apparatus according to claim 12 , wherein the mixing point is selected from the group consisting of an active mixer and a passive mixer. 14. A process monitoring apparatus for monitoring a process of processing a processing fluid, the process monitoring apparatus comprising: a fluidic sample supply device configured for supplying a fluidic sample of the processing fluid; a dilution apparatus according to claim 1 configured for being supplied with the fluidic sample and for diluting the supplied fluidic sample, in accordance with a specifiable dilution ratio; a diluted fluidic sample drain device configured for draining diluted fluidic sample; an analysis device configured for analyzing the drained diluted fluidic sample for monitoring the process. 15. The process monitoring apparatus according to claim 14 , wherein the analysis device comprises a sample separation device configured for separating different fractions of the diluted fluidic sample. 16. The process monitoring apparatus according to claim 15 , wherein the sample separation device is a liquid chromatography device configured for separating the different fractions of the diluted fluidic sample by liquid chromatography. 17. The process monitoring apparatus according to claim 16 , wherein the liquid chromatography device comprises: a fluid drive configured to drive a mobile phase and the diluted fluidic sample along a separation path; a chromatographic column located in the separation path downstream of the fluid drive and being configured for separating the fractions of the diluted fluidic sample fluid in the mobile phase. 18. The process monitoring apparatus according to claim 17 , comprising at least one of the fo

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What does patent US9833754B2 cover?
A dilution apparatus ( 100 ) for diluting a fluidic sample in accordance with a specifiable dilution ratio, wherein the dilution apparatus ( 100 ) comprises a dilution fluid supply device ( 102 ) configured for supplying a dilution fluid at a first quantity per time, a transport fluid supply device ( 104 ) configured for supplying a transport fluid at a second quantity per time, a first fluid a…
Who is the assignee on this patent?
Agilent Technologies Inc
What technology area does this patent fall under?
Primary CPC classification B01F3/0865. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Dec 05 2017 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 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).