IP Library Granted Patent US 10,067,152
Granted Patent B2
US 10,067,152 · App. 15/111,006 · Granted Sep 4, 2018

Automatic analyzer

Inventors: Masaru Miyazaki (Tokyo, JP); Takamichi Mori (Tokyo, JP); Kazuhiro Nakamura (Tokyo, JP); Isao Yamazaki (Tokyo, JP)
Assignee: Hitachi High-Technologies Corporation
G01N35/1004G01N21/75G01N2035/0453
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Quick Facts
Patent No.
US 10,067,152
App. No.
15/111,006
Granted
Sep 4, 2018
Kind
B2
Abstract

An automatic analyzer has a washing tank providing water for washing a reagent or sample probe is. The washing water from a washing nozzle spreads from a throttle portion and is divided into right and left flows after colliding with a vent plate provided in an overflow portion of the washing tank. The washing water flows between the vent plate and the inner wall of the overflow portion, and the flows join behind the vent plate. After joining, the washing water flows downward along the vent plate and the inner wall of the overflow portion and then is drained. Because a space is created between the washing water which has collided with the vent plate and the washing water joined behind the vent plate, the washing water is prevented from completely covering the overflow portion, and the airflow can be secured during the drainage.

Claims (37)

1. An automatic analyzer comprising:

a probe that suctions a reagent or a sample and discharges the reagent or the sample into a reaction container,

a dispensing mechanism that moves the probe vertically and horizontally,

a suction and discharge mechanism that causes the probe to suction the reagent or the sample and discharge the reagent or the sample into the reaction container,

a photometer that analyzes the sample in the reaction container,

a washing tank that has a first opening into which the probe is inserted and that washes the probe inserted through the opening, and

a controller that controls operations of the dispensing mechanism, the discharge mechanism, the photometer and the washing tank,

wherein the washing tank comprises:

a washing portion for washing the probe inserted through the first opening,

a first washing nozzle that discharges washing water to the first opening,

a suction nozzle that suctions air from the washing portion,

an overflow portion that has a second opening through which the washing water discharged from the first washing nozzle to the first opening drains downward, and

a vent plate attached to the overflow portion and that has a smaller width than an opening size of the second opening of the overflow portion, and that is disposed to extend within the overflow portion through the second opening from an upper part to a lower part of the overflow portion.

2. The automatic analyzer according to claim 1 , wherein:

the washing tank further comprises a throttle portion which has a smaller diameter than an opening size of the first opening and which is provided between the first opening and the washing portion, wherein the probe is inserted into the throttle portion,

the first washing nozzle supplies the washing water to the first opening from the side, and

the washing water discharged from the first washing nozzle collides with the vent plate and is introduced to the overflow portion by the vent member.

3. The automatic analyzer according to claim 1 , wherein the vent plate has an approximately C-shaped cross-section.

4. The automatic analyzer according to claim 1 , wherein the vent plate has an approximately V-shaped cross-section.

5. The automatic analyzer according to claim 3 , wherein the vent plate is integrated into the overflow portion.

6. The automatic analyzer according to claim 4 , wherein the vent plate is integrated into the overflow portion.

7. The automatic analyzer according to claim 1 , wherein the vent plate is an elastic member.

8. The automatic analyzer according to claim 1 , wherein an end of the vent plate is rotatably supported on the overflow portion.

9. An automatic analyzer comprising:

a probe that suctions a reagent or a sample and discharges the reagent or the sample into a reaction container,

a dispensing mechanism that moves the probe vertically and horizontally,

a suction and discharge mechanism that causes the probe to suction the reagent or the sample and discharge the reagent or the sample into the reaction container,

a photometer that analyzes the sample in the reaction container,

a washing tank that has a first opening into which the probe is inserted and that washes the probe inserted through the opening, and

a controller that controls operations of the dispensing mechanism, the discharge mechanism, the photometer and the washing tank,

wherein the washing tank comprises:

a washing portion for washing the probe inserted through the first opening,

a first washing nozzle that discharges washing water to the first opening,

a suction nozzle that suctions air from the washing portion,

an overflow portion that has a second opening through which the washing water discharged from the first washing nozzle to the first opening drains downward, and

a cylindrical vent member attached to the overflow portion and that has a smaller width than an opening size of the second opening of the overflow portion, and that is disposed to extend within the overflow portion through the second opening from an upper part to a lower part of the overflow portion,

wherein the vent member has perforations in a side face thereof.

Assignments (2)
CHANGE OF NAME AND ADDRESS Recorded Mar 30, 2020
From: HITACHI HIGH-TECHNOLOGIES CORPORATION
To: HITACHI HIGH-TECH CORPORATION
Reel/Frame 052259/0227 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 12, 2016
From: MIYAZAKI, MASARU; MORI, TAKAMICHI; NAKAMURA, KAZUHIRO; YAMAZAKI, ISAO
To: HITACHI HIGH-TECHNOLOGIES CORPORATION
Reel/Frame 039132/0068 →
Priority Claims (1)
JP 2014-011487 · Jan 24, 2014 · national
Continuity (1)
Related Publication 20160334432A1 · Nov 17, 2016