Multisizer 4e

Multisizer 4e Coulter Counter 는 매우 다양한 범위의 입자 계수 및 특성을 분석하는 시스템입니다.

이것은 Coulter 원리를 이용하여 입자의 특성이나 광학적 속성과 관계없이 전기 영역 감지를 통해 입자를 감지합니다. 따라서 다음과 같은 광범위한 입자를 감지하고 계수하는 데 이상적인 도구입니다:

  • 포유류 세포
  • 박테리아
  • 효모 (Yeast)
  • 연마제
  • 토너 입자
  • 세포군 (Cell Aggregates)
  • 회전 타원체 (Spheroids)
  • 대형 단백질 군

관련 문서 및 응용 분야 자료

제품 특징

다양한 활용성

  • 현재 및 미래의 요구에 맞추기 위한 Aperture 직경 10µm - 2000µm
  • 광범위한 입자 크기 분포를 가진 복잡한 시료를 분석하기 위한 다양한 Aperture 옵션 및 데이터 오버레이 기능

샘플 측정

  • 수성 또는 비수성 용매로 재료 분석
  • 생물학적 또는 비생물학적 샘플에 이상적
  • 재료의 유형이나 광학적 속성과 관계없이 입자 측정

빠른 입자 계수 측정

  • 초당 10,000회의 샘플링 속도
  • 직경 0.2µm  -1600µm의 입자 측정 및 계수
  • 5mL의 시료 부피

데이터 관리

  • 디지털 펄스 데이터를 필요한 만큼 저장 및 재분석할 수 있음
  • 21 CFR Part 11 규정을 준수하는 감사 관리 및 보안용 소프트웨어
  • 다양한 보정 비드 및 V-Check 검증 제어

Explore Multisizer 4e Models

Multisizer 4e Accuvette 설치법

 

기술문서

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Multisizer 4e Particle Analyzer

What is the Coulter principle for particle analysis?

The Coulter principle is a widely used method for particle size and count analysis based on electrical resistance. It works by suspending particles in a conductive liquid and passing them one by one through a small aperture with an electrical current applied.

When a particle passes through the aperture, it displaces its own volume of electrolyte, causing a momentary change in electrical impedance. This change is directly proportional to the particle’s volume, allowing precise measurement of particle size and concentration.

The Coulter principle is commonly used in particle characterization, cell counting (e.g., blood cells), pharmaceuticals, biotechnology, and industrial quality control because it provides accurate, reproducible, and number-based particle measurements.

What's a good way to measure particle size distribution?

A reliable way to measure particle size distribution is Electrical Sensing Zone (ESZ) analysis, also known as the Coulter principle. This method measures particles individually as they pass through a small aperture, delivering high-resolution, number-based particle size distributions across a wide size range.

Instruments like the Multisizer 4e Particle Analyzer apply this technique to provide accurate, reproducible particle sizing and counting for applications in pharmaceuticals, biotechnology, industrial materials, and research. The Multisizer 4e Particle Analyzer is especially effective when precise control, traceability, and true particle-by-particle measurement are required—making it a gold standard for particle characterization. 

What is the difference between a Coulter counter and flow cytometry for cell counting?

A Coulter counter counts and sizes cells using the Coulter principle (Electrical Sensing Zone) by measuring changes in electrical impedance as each cell passes through a small aperture. This provides accurate, label-free total cell counts and true cell volume measurements, independent of cell color, shape, or optical properties. 

Flow cytometry, by contrast, counts cells using light scatter and fluorescence as cells pass through a laser. It enables multiparametric biological analysis (e.g., surface markers, viability, phenotype) but typically requires fluorescent labeling and is more sensitive to optical and staining variability.  

How to count particles regardless of their shape or color?

The most effective way to count particles regardless of shape, color, or optical properties is by using Electrical Sensing Zone (ESZ) technology, also known as the Coulter principle. This method counts particles individually by measuring changes in electrical impedance as each particle passes through a small aperture filled with a conductive liquid. 

Because the signal is based on particle volume, not light scattering or imaging, ESZ analysis delivers accurate, label-free particle counting that is independent of particle shape, transparency, refractive index, or color. This makes it ideal for heterogeneous samples in biotechnology, pharmaceuticals, industrial materials, and quality control. 

Instruments such as the Multisizer 4e Particle Analyzer apply this technology to provide precise, reproducible particle counts and size distributions across a wide size range.