Factory Address : 58, HSIIDC, Industrial Estate, Ambala Cantt - 133006 (HARYANA), INDIA

DIGITAL PHOTO FLUOROMETER

Model No:CAI-330

    Digital Photo Fluorometer Model is designed for precise analysis of fluorophores such as vitamins, quinine, steroids, fluorescein, metal complexes, etc. The Fluorescence is caused by the absorption of radiant energy and the re-emission of some of its energy in the form of light. In fluorescence, the excited molecule returns to the ground state immediately after excitation, when the fluorescent molecule is excited at the fixed wavelength (primary filter). The amount of light emitted is measured at the particular wavelength (secondary filter). Fluorometer method for the determination of fluorophores is more sensitive than the Colorimetric method.

    The Primary Filters – Corning 5840 & Corning 5113 and secondary filters – Corning 4308, Corning 3486 and Corning 3385 mounted on holders are supplied with the instrument The fluorescence is collected at 90 degree angle to minimize the interference of excitation source to fall on the sample solution only during a measurement.

Product Information

SALIENT FEATURES:-

  • 3 Digit LED display
  • Covers entire visible range
  • Determines the concentration of Fluorophores & Quinine

 

TECHNICAL SPECIFICATIONS: -

Fluoro Sensitivity:

Full scale deflection obtained with 1 ppm quinine sulphate in 001 N Sulphuric acid (primary wavelength 360 nm)

Display:

3 Digit Bright Red Seven Segment LED Display

Excitation Source:

12V,50W Tungsten Halogen Lamp

Sensitivity Range:

Adjustable in 4 ranges

Primary Filters:

Corning 5840 (360 nm) and Corning 5113 (405 nm) mounted on holders

Secondary Filters:

Corning 4308 (465 nm), Corning 3486 (650 nm), Corning 3385 (560 nm above) mounted on holders

Detector:

Highly sensitive wide range photodiode/cell

Sample Test Tube:

15 mm(D) × 80 MM (H)

Minimum Sample:

4 m

Power:

230 V ± 10%,50 Hz. AC

Weight:

5 Kg. (Approx.)

 

STANDARD ACCESSORIES: -

  • Test Tube:  A set of 5
  • Primary and Secondary Filters:  A set of 5
  • Instruction Manual: 1 No.
  • Dust Cover: 1 No.

Complete Overview of Digital Photo Fluorometers & Fluorescence Testing Systems

Welcome to our high-accuracy optical analysis division. As a premier analytical instrument manufacturer, we produce sophisticated digital photo fluorometer units engineered to measure fluorescence intensity with extreme sensitivity and precision. Incorporating a dependable microprocessor framework ensures accurate concentration readouts during complex biochemical assays and trace element evaluations.

To establish completely integrated research laboratories and industrial testing setups, procurement managers regularly bundle our fluorometric devices with auxiliary equipment categories such as high-resolution microscopes, versatile laboratory equipment, professional lab glassware, plasticware & metalware, certified scientific educational instruments, specialized pharmacy instruments, and reliable medical equipment inventories.

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Where Is a Digital Photo Fluorometer Used? (Key Industry Applications)

Clinical & Medical Diagnostics

Essential for analyzing body fluids, hormones, enzymes, and specific biochemical markers requiring high-sensitivity detection.

Pharmaceutical & Vitamin Analysis

Employed to estimate concentrations of vitamins (such as Vitamin B1 and B2), active drug compounds, and trace organic substances.

Agricultural & Food Testing

Utilized to check food additives, pesticide residues, and biochemical properties in agricultural extracts.

Educational Institutions

Deployed in university chemistry and biochemistry laboratories for student practicals on fluorescence spectroscopy principles.

Global Market Demand & Target Regions

Precision optical instruments command extensive international trade demand. Major import markets and high-volume procurement regions include India, the United States, Germany, the United Kingdom, Japan, South Korea, and various European nations where strict analytical standards govern clinical and pharmaceutical laboratories.

What Researchers and Buyers Search For Online

Laboratory directors and procurement officers frequently query terms such as digital photo fluorometer price, microprocessor fluorometer India, clinical fluorescence analyzer, laboratory photo fluorometer supplier, and digital fluorimetry testing device.

Why Choose Our Photo Fluorometric Systems?

Our microprocessor-based digital photo fluorometers feature stable light sources, high-sensitivity solid-state photodetectors, precise optical filters, and direct digital concentration readouts. These advanced features eliminate human reading errors, delivering exceptional reproducibility and dependable analytical performance.

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Frequently Asked Questions (Extended FAQ Guide)

Q1: What is a Digital Photo Fluorometer and how does it function?

A photo fluorometer is an analytical instrument that measures the fluorescence emitted by a sample after it is excited by a specific wavelength of light. The intensity of the emitted fluorescence is directly proportional to the concentration of the substance being analyzed.

Q2: Why are digital models preferred over traditional analog fluorometers?

Digital microprocessor systems offer direct digital concentration displays, superior signal amplification, enhanced stability, and minimal baseline drift, significantly reducing manual calculation errors.

Q3: Why source analytical equipment directly from an Indian manufacturer?

Sourcing directly from an established factory ensures verified optical calibration compliance, genuine replacement parts, comprehensive operational guides, and cost-effective wholesale pricing.

Q4: What kinds of samples can be evaluated using a photo fluorometer?

Liquid solutions, biological extracts, and chemical preparations that either fluoresce naturally or can be tagged with fluorescent reagents are ideal for this equipment.

Q5: How frequently should the fluorometer be calibrated?

It is recommended to calibrate the instrument daily using a standard reference solution or blank control before initiating critical analytical testing sequences.