IP Library › Granted Patent US 11,788,944
Granted Patent B2
US 11,788,944 · App. 17/048,723 · Granted Oct 17, 2023

Microparticle measuring apparatus with measurement and cleaning modes

Inventors: Masahiro Saito (Tokyo, JP); Shingo Mouri (Tokyo, JP); Masahiko Nakamura (Miyagi, JP); Hidetaka Okamoto (Tokyo, JP)
Assignee: SONY CORPORATION
G01N15/1404G01N15/1436G01N2015/1409G01N2015/1418
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Quick Facts
Patent No.
US 11,788,944
App. No.
17/048,723
Granted
Oct 17, 2023
Kind
B2
Abstract

To provide a technique that enables the risk of contamination to be reduced. Provided is a microparticle measuring apparatus including at least: a relay unit that enables a flow path through which microparticles flow and a cleaning fluid storage unit to communicate with each other; a sheath fluid tube that causes the flow path and a sheath fluid storage unit to communicate with each other; and a cleaning fluid tube that causes the relay unit and the cleaning fluid storage unit to communicate with each other, in which the relay unit includes a first connector that can be connected to a joint portion on the sheath fluid storage unit side of the sheath fluid tube.

Claims (40)

1. A microparticle measuring apparatus, comprising:

a relay unit configured to enable a flow path to communicate with a cleaning fluid storage tank,

wherein microparticles flow through the flow path;

a sheath fluid tube configured to cause the flow path to communicate with a sheath fluid storage tank; and

a cleaning fluid tube configured to cause the relay unit to communicate with the cleaning fluid storage tank,

wherein the sheath fluid tube having an end having a joint portion is directly connectable to a first connector of the relay unit, and the joint portion of the sheath fluid tube is also directly connectable to a side of the sheath fluid storage tank.

2. The microparticle measuring apparatus according to claim 1 , further comprising a central processing unit (CPU) configured to control switching of a mode of the microparticle measuring apparatus between a measurement mode and a cleaning mode.

3. The microparticle measuring apparatus according to claim 2 , further comprising a first optical sensor configured to confirm the connection between the first connector and the joint portion of the sheath fluid tube.

4. The microparticle measuring apparatus according to claim 3 , wherein

when the connection between the first connector and the joint portion of the sheath fluid tube is confirmed by the first optical sensor, the CPU is further configured to switch the mode of the microparticle measuring apparatus to the cleaning mode.

5. The microparticle measuring apparatus according to claim 3 , further comprising a rinse liquid tube configured to cause the relay unit to communicate with a rinse liquid storage tank,

wherein

the relay unit is further configured to enable communication between the rinse liquid storage tank, the flow path, and the cleaning fluid storage tank, and

the relay unit further includes a second connector that is connected to a joint portion of a rinse liquid storage tank side of the rinse liquid tube.

6. The microparticle measuring apparatus according to claim 5 , further comprising a second optical sensor configured to confirm the connection between the second connector and the joint portion on the rinse liquid storage tank side of the rinse liquid tube.

7. The microparticle measuring apparatus according to claim 6 , wherein

when the connection between the first connector and the joint portion of the sheath fluid tube is confirmed by the first optical sensor and the connection between the second connector and the joint portion on the rinse liquid storage tank side of the rinse liquid tube is confirmed by the second optical sensor, the CPU is further configured to switch the mode of the microparticle measuring apparatus to the cleaning mode.

8. The microparticle measuring apparatus according to claim 5 , wherein the first connector and the second connector have different shapes.

9. The microparticle measuring apparatus according to claim 5 , further comprising a display configured to display:

a state of the connection between the first connector and the joint portion of the sheath fluid tube, and

a state of the connection between the second connector and the joint portion on the rinse liquid storage tank side of the rinse liquid tube.

10. The microparticle measuring apparatus according to claim 5 , wherein a distance from a connecting portion of the sheath fluid storage tank with the sheath fluid tube to the second connector is greater than a length of the sheath fluid tube.

11. The microparticle measuring apparatus according to claim 5 , wherein a distance from a connecting portion of the rinse liquid storage tank with the rinse liquid tube to the first connector is greater than a length of the rinse liquid tube.

12. The microparticle measuring apparatus according to claim 1 , wherein

the cleaning fluid tube includes a plurality of branch tubes that extend to a plurality of cleaning fluid storage tanks,

the plurality of cleaning fluid storage tanks include the cleaning fluid storage tank.

13. The microparticle measuring apparatus according to claim 12 , further comprising the plurality of the cleaning fluid storage tanks.

14. The microparticle measuring apparatus according to claim 1 , wherein

a cleaning fluid flows from the cleaning fluid storage tank through the sheath fluid tube; and

the cleaning fluid is at least one of a cleaning agent or a bactericide.

15. The microparticle measuring apparatus according to claim 14 , wherein the cleaning agent is an ethanol fluid.

16. The microparticle measuring apparatus according to claim 14 , wherein the bactericide is one of a sodium hypochlorite fluid or a paraformaldehyde fluid.

17. A microparticle measuring apparatus, comprising:

a relay unit configured to enable a flow path to communicate with a cleaning fluid storage tank,

wherein microparticles flow through the flow path;

a sheath fluid tube configured to cause the flow path to communicate with a sheath fluid storage tank;

a cleaning fluid tube configured to cause the relay unit to communicate with the cleaning fluid storage tank,

wherein the sheath fluid tube having an end having a joint portion is directly connectable to a first connector of the relay unit, and the joint portion of the sheath fluid tube is also directly connectable to a side of the sheath fluid storage tank;

a first optical sensor configured to confirm the connection between the first connector and the joint portion of the sheath fluid tube; and

a central processing unit (CPU) configured to control switching of a mode of the microparticle measuring apparatus between a measurement mode and a cleaning mode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2021
From: SAITO, MASAHIRO; MOURI, SHINGO; NAKAMURA, MASAHIKO; OKAMOTO, HIDETAKA
To: SONY CORPORATION
Reel/Frame 057141/0922 →
Priority Claims (1)
JP 2018-084546 · Apr 25, 2018 · national
Continuity (1)
Related Publication 20210172854A1 · Jun 10, 2021