540nm 대역 통과 필터

가시광선 스펙트럼의 녹색 파장인 540nm 빛은 좁은 대역폭에서 높은 투과율을 제공하고 인접 파장의 간섭을 최소화합니다.

  • 응용 분야 1: 형광 현미경에서 녹색 형광 단백질(GFP)로부터 방출 신호를 분리하여 생물학적 샘플의 영상 선명도를 향상시킵니다.
  • 응용 분야 2: 환경 분광학에서 수생 생물 건강 모니터링을 위해 수역의 엽록소 흡수량을 정확하게 측정할 수 있습니다.
  • 응용 분야 3: 산업용 색상 분류에서 자동화된 품질 관리 중에 특정 녹색 스펙트럼 응답을 가진 재료를 식별하기 위해 빛을 걸러냅니다.

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540nm Bandpass Filter
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필터

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활성 필터:

필터

활성 필터:

US5968738A - Two-reporter FACS analysis of mammalian cells using green fluorescent proteins

US5968738A - Two-reporter FACS analysis of mammalian cells using green fluorescent proteins

Context: A Flow Cytometry (FACS) system designed to analyze mammalian cells expressing two different reporter genes simultaneously.

Usage of Filter: The filter is used in the optical detection path to define a specific measurement window, specifically measuring a "first signal" at a wavelength lambda em between 500 nm and 540 nm.

Function: It isolates the green fluorescence emission (typically from GFP or its variants) while blocking excitation light and crosstalk from other fluorophores (like red-emitting reporters).

Result: This achieves the simultaneous, quantitative detection of two distinct transcriptional elements within a single cell, enabling complex gene expression analysis.

US8730601B2 - Fluorescence observation system and set of filters

US8730601B2 - Fluorescence observation system and set of filters

Context: A fluorescence microscope or observation system designed to visualize fluorescent samples with high contrast.

Usage of Filter: The filter is utilized as a threshold wavelength selector, specifically operating within a range from 510 nm to 540 nm (often as a short-pass or bandpass edge) to separate fluorescence from the excitation light.

Function: It acts to discriminate between the excitation light (which is reflected or scattered) and the desired fluorescence signal, ensuring only the "signal" light reaches the observer or camera.

Result: This achieves a high S/N (Signal-to-Noise) ratio, allowing for clear observation of faint fluorescent structures against a dark background.

US5377676A - Method for determining the biodistribution of substances using fluorescence spectroscopy

US5377676A - Method for determining the biodistribution of substances using fluorescence spectroscopy

Context: A medical diagnostic system (often using a fiber-optic probe) to track how a fluorescent substance distributes within biological tissue.

Usage of Filter: The filter is used as a wavelength selection device to isolate the fluorescence emission centered around or including 540 nm (a common emission region for tracers like fluorescein or eosin).

Function: It filters the light returning from the tissue to ensure the detector only measures the intensity of the fluorescent tracer, rejecting reflected tissue light or autofluorescence outside this band.

Result: This achieves the real-time, in vivo determination of drug or substance biodistribution, helping to verify if a therapeutic agent has reached its target tissue.

US20140340680A1 - Apparatus and method for measurement of an analyte

US20140340680A1 - Apparatus and method for measurement of an analyte

Context: An optical detection unit, potentially for a mobile or point-of-care device, used to measure the concentration of a specific analyte (e.g., hemoglobin or a chemical marker).

Usage of Filter: A specific 540 nm bandpass filter with a 10 nm bandwidth is placed in front of the optical sensor.

Function: It restricts the light entering the sensor to a very narrow spectral band (535–545 nm), which corresponds to the peak absorption or emission of the target analyte.

Result: This achieves precise quantification of the analyte by eliminating spectral interference from ambient light or other sample components.

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