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Продукты для микробиологического экологического мониторинга

Реально-временный счетчик частиц

A biofluorescent aerosol monitor that reports viable-like and total airborne particle signals continuously without waiting for culture incubation.
  • Laser-Induced Fluorescence
  • Simultaneous Total and Viable Signals
  • 28.3 L/min Continuous Sampling
  • Integrated Particle Collection
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Введение продукции

The Real-Time Viable Particle Counter draws cleanroom air through one isokinetic inlet and measures individual aerosols in an optical chamber. A red sizing laser reports total-particle size while a violet excitation laser stimulates intrinsic fluorophores associated with biological material; multiple emission channels improve discrimination from non-biological interferents. Counts, trends and alarms appear immediately, and an optional downstream collection filter preserves sampled material for later identification. The stainless enclosure, internal pump and filtered exhaust support standalone surveys or continuous facility-monitoring integration.

Основные характеристики

Dual optical analysis provides simultaneous total-particle and biofluorescent counts from one sample stream.

Continuous electronic results reveal short contamination events that incubation-based spot samples may miss.

A 28.3 L/min closed-loop flow path supports representative Grade A continuous monitoring.

An integrated collection filter can retain aerosols for subsequent laboratory characterization.

Обеспокоенность клиентов продуктами

Biofluorescent monitoring provides immediate signals but requires controlled airflow, optical discrimination and a defined investigation strategy for detected events.

Traditional agar results arrive too late to identify the exact process event.Second-by-second fluorescence and particle trends correlate excursions with interventions and equipment activity.
Non-biological fluorescent material can create misleading viable-like counts.Multiple fluorescence channels and particle-sizing information improve discrimination and support site evaluation.
A real-time signal alone does not identify an organism.An in-line collection filter retains sampled material for appropriate downstream identification work.
Flow loss can appear as an artificially clean environment.Closed-loop flow monitoring creates an instrument alarm separate from environmental count limits.

Типичные приложения

Continuous Grade A viable monitoringAseptic process investigationsCleanroom room-release studiesGowning and intervention assessment

Технические параметры

Typical materials and envelope values for a real-time biofluorescent particle counter are listed below.

Основной материалStainless steel enclosure with anodized aluminum optical bench and glass laser optics
Толщина панели250-320 mm enclosure depth
эффективная ширина250-300 mm cabinet width
Максимальная длинаUp to 500 mm enclosure height excluding probe
Толщина линий стали1.0-1.5 mm stainless enclosure panels
Плотность ядра2650-8000 kg/m³ across aluminum optical frame and stainless enclosure
Теплопроводимость14-220 W/(m·K) across stainless steel and aluminum components
Поверхностная отделкаFine brushed stainless steel with black glass touchscreen and blue-green status indicators
Объединенный типIsokinetic stainless inlet, internal HEPA-filtered exhaust, Ethernet/USB ports and dry-contact alarm terminals
CustomizationДоступно в зависимости от предполагаемого применения и операционной среды.

Доступные варианты

Multiple particle-size and fluorescence channelsIntegrated collection filterFacility-monitoring software interfaceEnvironmental sensor inputs

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