IEST RP-CC042 1-2011 Sizing and Counting of Submicrometer Liquid-borne Particles Using Optical Discrete-particle Counters.pdf
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1、 Institute of Environmental Sciences and Technology IEST-RP-CC042.1 Contamination Control Division Recommended Practice 042.1 Sizing and Counting of Submicrometer Liquid-borne Particles Using Optical Discrete-particle Counters Arlington Place One 2340 S. Arlington Heights Road, Suite 100 Arlington H
2、eights, IL 60005-4516 Phone: (847) 981-0100 Fax: (847) 981-4130 E-mail: informationiest.org Web: www.iest.org 2 IEST 2011 All rights reserved Institute of Environmental Sciences and Technology IEST-RP-CC042.1 IEST-RP-CC042.1 Institute of Environmental Sciences and Technology IEST 2011 All rights res
3、erved 3 This Recommended Practice is published by the Institute of Environmental Sciences and Technology to advance the technical and engineering sciences. Use of this document is entirely voluntary, and determination of its applicability and suitability for any particular use is solely the responsi
4、bility of the user. Use of this Recommended Practice does not imply any warranty or endorsement by IEST. This Recommended Practice was prepared by and is under the jurisdiction of Working Group 042 of the IEST Con-tamination Control Division. Copyright 2011 by the Institute of Environmental Sciences
5、 and Technology First printing, October 2011 ISBN 978-0-915414-09-3 PROPOSAL FOR IMPROVEMENT: The Working Groups of the Institute of Environmental Sciences and Technology are continually working on improvements to their Recommended Practices and Reference Docu-ments. Suggestions from users of these
6、documents are welcome. If you have a suggestion regarding this doc u-ment, please use the online Proposal for Improvement form found on the IEST website at www.iest.org. Institute of Environmental Sciences and Technology Arlington Place One 2340 S. Arlington Heights Road, Suite 100 Arlington Heights
7、, IL 60005-4516 Phone: (847) 981-0100 Fax: (847) 981-4130 E-mail: informationiest.org Web: www.iest.org 4 IEST 2011 All rights reserved Institute of Environmental Sciences and Technology IEST-RP-CC042.1 IEST-RP-CC042.1 Institute of Environmental Sciences and Technology IEST 2011 All rights reserved
8、5 Sizing and Counting of Submicrometer Liquid-borne Particles Using Optical Discrete-particle Counters IEST-RP-CC042.1 CONTENTS SECTION 1 SCOPE AND LIMITATIONS . 7 2 REFERENCES 7 3 TERMS AND DEFINITIONS . 8 4 BACKGROUND AND PURPOSE . 9 5 LIQUID-BORNE PARTICLE MEASUREMENTCHALLENGES AND RECOMMENDED PR
9、ACTICES . 9 FIGURE 1 SCHEMATICS OF THE OPTICAL SYSTEM OF A LIQUID-BORNE PARTICLE COUNTER BASED ON LIGHT SCATTERING 10 2 TYPICAL POWER LAW DISTRIBUTIONS FOUND IN MANY LPC APPLICATIONS. 13 3 STATISTICS OF PSL STANDARDS . 14 4 50/50 SPLIT CALIBRATION OF AN LPC 14 5 50/50 SPLIT CALIBRATION OF AN LPC (AL
10、L CHANNELS CALIBRATED THE SAME WAY) . 14 6 COUNTING EFFICIENCY OF REAL-WORLD PARTICLES. 15 7 PARTICLE SIZE DISTRIBUTION AT DIFFERENT CONCENTRATION LEVELSEFFECT OF COINCIDENCE ERROR 16 8 A TYPICAL PULSE HEIGHT DISTRIBUTION FOR A SPECTROMETER. 17 9 EFFECT OF EXCESSIVE BUBBLES ON THE SIZE DISTRIBUTION
11、OF PARTICLES 18 10 SCATTERED LIGHT INTENSITY BY A PARTICLE (0.2 m AT 633 nm WAVELENGTH) AS A FUNCTION OF REFRACTIVE INDEX CONTRAST 20 11 EXCESSIVE BASELINE NOISE EFFECT 22 12 PROPER INSTALLATION OF AN LPC TO MONITOR A PARTS-CLEANING ULTRASONIC BATH . 23 13 PROBABILITY DENSITY FUNCTION FOR 10-MIN SAM
12、PLE TIME . 26 14 PROBABILITY DENSITY FUNCTION FOR 30-MIN SAMPLE TIME . 27 6 IEST 2011 All rights reserved Institute of Environmental Sciences and Technology IEST-RP-CC042.1 TABLE 1 ADVANTAGES AND DISADVANTAGES OF BATCH SAMPLING INSTRUMENT TYPES . 11 2 DATA FORMAT FOR AN LPC ILLUSTRATING DIFFERENTIAL
13、 AND CUMULATIVE COUNTS . 12 3 INDEX CONTRAST OF CERTAIN PARTICLE-FLUID COMBINATIONS . 21 4 SENSOR-TO-SENSOR COUNT CORRELATION (AT CONCENTRATION LEVELS WITH LOW COINCIDENCE ERRORS) . 24 5 STANDARD DEVIATIONS OF LOW-CONCENTRATION SCENARIOS BASED ON POISSON DISTRIBUTION 25 6 PROBABILITY THAT A SAMPLE W
14、ILL CONTAIN A GIVEN NUMBER OF PARTICLES . 26 7 CUMULATIVE PROBABILITIES OF AN ALARM BEING FALSE AS A FUNCTION OF AVERAGE PARTICLES PER SAMPLE . 28 APPENDIX A EXAMPLE: EVALUATING THE LIKELY NUMBER OF FALSE ALARMS PER DAY FOR A GIVEN SAMPLE TIME 29 B BIBLIOGRAPHY . 30 IEST-RP-CC042.1 Institute of Envi
15、ronmental Sciences and Technology IEST 2011 All rights reserved 7 Institute of Environmental Sciences and Technology Contamination Control Division Recommended Practice 042.1 Sizing and Counting of Submicrometer Liquid-borne Particles Using Optical Discrete-particle Counters IEST-RP-CC042.1 1 SCOPE
16、AND LIMITATIONS 1.1 Scope This Recommended Practice (RP) addresses the sizing and counting of submicrometer liquid-borne particles using optical discrete-particle counters with a focus on applications in the semiconductor, flat-panel display, and data storage industries. Top-ics covered include the
17、following: Overview of light-scattering technology Liquid particle counter (LPC) instrument types Data interpretation Coincidence level or maximum concentra-tion limit Particle-size detection limit Bubble issue Refractive index effect Flow rate Calibration verification Instrument noise and false cou
18、nts Practice of minimizing sensor contamination Sensor correlation Particle counting statistics 1.2 Limitations This RP does not address the measurement and identi-fication of living organisms, e.g., bacteria. This RP does not address the measurement of extreme-ly high particle concentrations, e.g.,
19、 chemical-mechanical polishing (CMP) slurry. This RP does not address the calibration of LPCs. 2 REFERENCES The cited editions of the following documents are incorporated into this Recommended Practice to the extent specified herein. Users are encouraged to in-vestigate the possibility of applying t
20、he most recent editions of the references. 2.1 Reference Documents IEST-RD-CC011.2: A Glossary of Terms and Defini-tions Related to Contamination Control ISO 21501-2:2007 Determination of particle size distributionSingle particle light interaction me-thodsPart 2: Light scattering liquid-borne partic
21、le counter 2.2 Sources and Addresses IEST Institute of Environmental Sciences and Technology 2340 S. Arlington Heights Road, Suite 100 Arlington Heights, IL 60005-4516, USA Phone: 847-981-0100 Fax: 847-981-4130 www.iest.org ISO International Organization for Standardization 1, ch. de la Voie-Creuse,
22、 Case postale 56 CH-1211 Geneva 20, Switzerland Phone: +41 22 749 01 11 Fax: +41 22 733 34 30 www.iso.ch 8 IEST 2011 All rights reserved Institute of Environmental Sciences and Technology IEST-RP-CC042.1 3 TERMS AND DEFINITIONS The following terms have special meaning in the con-text of this RP. See
23、 also IEST-RD-CC011. capillary (also flow cell) The conduit through which sample fluid passes through the illuminating path. NOTE: The entire flow path may not be illuminated. See LPC, volumetric, and LPC, non-volumetric. channel (also size bin) A bin for recording counts of particles within a speci
24、-fied size range. Channels are established by means of voltage thresholds that match particle light-scattering intensity to particle size. coincidence The simultaneous presence of two or more particles in the sensing volume of the instrument, causing the instrument to interpret the combined signal e
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