IP Library Granted Patent US 9,243,892
Granted Patent B2
US 9,243,892 · App. 13/767,980 · Granted Jan 26, 2016

Particle analytical device

Inventor: Shigemi Tochino (Kyoto, JP)
Assignee: HORIBA, LTD.
G01B11/105G01N15/0211G01N2015/0038G01N2015/0222
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Quick Facts
Patent No.
US 9,243,892
App. No.
13/767,980
Granted
Jan 26, 2016
Kind
B2
Abstract

A particle analytical device comprises a light receiving part that receives the scattered light emitted from the particle group and that outputs an electric current signal, a data processing part that processes data based on time series data of a number of pulses obtained by the electric current signal, and a control part that halts a movement of the light receiving part in case that the overcurrent is detected based on the electric current signal and that restarts the movement of the light receiving part after a predetermined time passes and is characterized by that the data processing part holds the time series data until the light receiving part is halted and processes the data after the movement of the light receiving part is restarted by the use of the held time series data and the time series data obtained after the restart.

Claims (18)

1. A particle analytical device comprising

a light irradiation part that irradiates the light toward a particle group that moves in a dispersion medium,

a light receiving part that receives the scattered light emitted from the particle group on which the light from the light irradiation part is irradiated and that outputs an electric current signal,

a data processing part that processes data concerning particle analysis based on time series data of a number of pulses obtained by the electric current signal output by the light receiving part,

an overcurrent detecting part that detects flowing of an overcurrent in the light receiving part based on the electric current signal output by the light receiving part, and

a control part that halts an operation of the light receiving part in a case where the overcurrent detecting part detects the overcurrent, and that restarts the operation of the light receiving part after a predetermined time passes from a time when the operation of the light receiving part is halted, wherein

the data processing part holds the time series data until the halt at a time when the operation of the light receiving part is halted and processes the data, after the operation of the light receiving part is restarted, by the use of the held time series data and the time series data obtained after the restart.

2. The particle analytical device described in claim 1 , wherein

the control part stops data processing by the data processing part by halting the operation of the light receiving part in a case where the overcurrent detecting part detects the overcurrent more than or equal to a predetermined number of times.

3. The particle analytical device described in claim 1 , wherein

the data processing part comprises a plurality of multibit counters that are arranged in parallel and that count the number of the pulses obtained by the electric current signal received in a state that a gate is open,

a correlator that holds time series data of the number of pulses until the halt of the operation of the light receiving part at a time when the operation of the light receiving part is halted and that makes auto-correlation data based on the held time series data of the number of pulses and the time series data of the number of pulses after the restart of the operation of the light receiving part, and

a calculating part that calculates a particle diameter distribution of a particle group based on the auto-correlation data obtained by the correlator.

4. A method for analyzing particles by making use of the particle analytical device described in claim 1 , wherein

operation of the light receiving part is halted in a case where the overcurrent flowing in the light detecting part is detected based on the electric current signal output by the light receiving part,

the time series data until the halt of the operation of the light receiving part is held in a case where the operation of the light receiving part is halted,

the operation of the light receiving part is restarted after the predetermined time passes from the time when the operation of the light receiving part is halted, and

the data is processed based on the held time series data and the time series data obtained after the restart after the operation of the light receiving part is restarted.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 15, 2013
From: TOCHINO, SHIGEMI
To: HORIBA, LTD.
Reel/Frame 029818/0092 →
Priority Claims (1)
JP 2012-032161 · Feb 16, 2012 · national
Continuity (1)
Related Publication 20130218519A1 · Aug 22, 2013