Centrifugal field flow fractionation device

US12478984B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12478984-B2
Application numberUS-202017781631-A
CountryUS
Kind codeB2
Filing dateSep 9, 2020
Priority dateDec 24, 2019
Publication dateNov 25, 2025
Grant dateNov 25, 2025

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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 centrifugal field-flow fractionation device is provided with a controller for controlling introduction of a liquid sample by a sample introduction part and rotation of the rotor by a motor. The controller rotates the rotor at a first rotational speed when introducing the liquid sample into a flow path. The first rotational speed is faster than a second rotational speed. Therefore, when a liquid sample is introduced into the flow path, high centrifugal force can be applied to the liquid sample, which can suppress the variation of the particles in the liquid sample introduced to the flow path. The controller rotates the rotor at the second rotational speed slower than the first rotational speed with the liquid sample flow in the flow path stopped. Therefore, it is possible to prevent the constant application of high centrifugal force to the liquid sample, thereby suppressing the increase in the length of time required for analysis.

First claim

Opening claim text (preview).

The invention claimed is: 1 . A centrifugal field-flow fractionation device comprising: a rotor configured to rotate about a rotation axis; a flow path member formed in an arc-shape centering the rotation axis, the flow path member being attached to the rotor, the flow path member being provided with a flow path therein, an inlet port for introducing a liquid sample to the flow path, and an outlet port for discharging the liquid sample from the flow path; a sample introduction part configured to introduce the liquid sample from the inlet port into the flow path and flow the liquid sample in the flow path to the outlet port; a rotation drive unit configured to rotate the rotor to classify particles in the liquid sample in the flow path by centrifugal force; and a controller configured to control introduction of the liquid sample by the sample introduction part and rotation drive of the rotor by the rotation drive unit, wherein the controller is configured to stop a flow of the liquid sample in the flow path once after an introduction of the liquid sample into the flow path has started and resume the flow, and rotate the rotor at a first rotational speed when introducing the liquid sample into the flow path and rotate the rotor at a second rotational speed slower than the first rotational speed before the flow of the liquid sample is resumed. 2 . The centrifugal field-flow fractionation device as recited in claim 1 , wherein the controller decreases a rotational speed of the rotor from the first rotational speed to the second rotational speed during a period of time which occurs between stopping the flow of the liquid sample into the flow path and resuming the flow of the liquid sample into the flow path. 3 . The centrifugal field-flow fractionation device as recited in claim 1 , wherein the controller decreases a rotational speed of the rotor from the first rotational speed to the second rotational speed while the liquid sample is being introduced into the flow path. 4 . The centrifugal field-flow fractionation device as recited in claim 1 , wherein the controller starts an operation of decreasing a rotational speed from the first rotational speed to the second rotational speed while the liquid sample is being introduced into the flow path and stops the flow of the liquid sample into the flow path before a rotation speed of the rotor reaches the second rotational speed. 5 . The centrifugal field-flow fractionation device as recited in claim 1 , wherein the controller receives setting of the first rotational speed and that of the second rotational speed. 6 . The centrifugal field-flow fractionation device as recited in claim 1 , wherein a plurality of bent portions or curved portions is repeatedly formed in an adjustment flow path disposed between the sample introduction part and the inlet port to average flow rates of the particles in the liquid sample flowing through the flow path. 7 . A centrifugal field-flow fractionation device comprising: a rotor configured to rotate about a rotation axis; a flow path member formed in an arc-shape centering the rotation axis, the flow path member being attached to the rotor, the flow path member being provided with a flow path therein, an inlet port for introducing a liquid sample to the flow path, and an outlet port for discharging the liquid sample from the flow path; a sample introduction part configured to introduce the liquid sample from the inlet port into the flow path and flow the liquid sample in the flow path to the outlet port; a rotation drive unit configured to rotate the rotor to classify particles in the liquid sample in the flow path by centrifugal force; and a controller configured to control introduction of the liquid sample by the sample introduction part and rotation drive of the rotor by the rotation drive unit, wherein the controller is configured to rotate the rotor at a first rotational speed when introducing the liquid sample into the flow path and rotate the rotor at a second rotational speed slower than the first rotational speed, and wherein the controller decreases a rotational speed of the rotor from the first rotational speed to the second rotational speed during a period of time which occurs between stopping a flow of the liquid sample into the flow path and resuming the flow of the liquid sample into the flow path. 8 . A centrifugal field-flow fractionation device comprising: a rotor configured to rotate about a rotation axis; a flow path member formed in an arc-shape centering the rotation axis, the flow path member being attached to the rotor, the flow path member being provided with a flow path therein, an inlet port for introducing a liquid sample to the flow path, and an outlet port for discharging the liquid sample from the flow path; a sample introduction part configured to introduce the liquid sample from the inlet port into the flow path and flow the liquid sample in the flow path to the outlet port; a rotation drive unit configured to rotate the rotor to classify particles in the liquid sample in the flow path by centrifugal force; and a controller configured to control introduction of the liquid sample by the sample introduction part and rotation drive of the rotor by the rotation drive unit, wherein the controller is configured to rotate the rotor at a first rotational speed when introducing the liquid sample into the flow path and rotate the rotor at a second rotational speed slower than the first rotational speed, and wherein the controller starts an operation of decreasing a rotational speed from the first rotational speed to the second rotational speed while the liquid sample is being introduced into the flow path and stops the flow of the liquid sample into the flow path before a rotation speed of the rotor reaches the second rotational speed.

Assignees

Inventors

Classifications

  • Sorting the particles · CPC title

  • in liquids, e.g. trouble · CPC title

  • with mechanical, e.g. inertial, classification, and investigation of sorted collections (with centrifuges G01N15/042) · CPC title

  • sedimentation or centrifugal FFF · CPC title

  • by centrifuging and investigating centrifugates (centrifuges per se B04B) · CPC title

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What does patent US12478984B2 cover?
A centrifugal field-flow fractionation device is provided with a controller for controlling introduction of a liquid sample by a sample introduction part and rotation of the rotor by a motor. The controller rotates the rotor at a first rotational speed when introducing the liquid sample into a flow path. The first rotational speed is faster than a second rotational speed. Therefore, when a liqu…
Who is the assignee on this patent?
Shimadzu Corp
What technology area does this patent fall under?
Primary CPC classification B04B9/10. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Nov 25 2025 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).