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Flame Photometer LMFM-A102

Flame Photometer LMFM-A102 has sample ingestion rate of 6 mL per minute. It operates on flame emission spectroscopy for reliable metal ion detection. Equipped with advanced optics that ensures clear identification of alkali and alkaline earth metals. It efficiently analyzes sodium, potassium, and calcium concentrations. Our Photometer is ideal for clinical, pharmaceutical, and industrial chemical analysis.

Catalog Manual

Specifications

Test Element K, Na, Ca
Channel Quantity 3
Test Range K: 0.15 to 100 ppm, Na: 0.18 to 100 ppm, Ca: 0.1 to 1000 ppm
Limit Of Detection K: less than or equal to 0.158 ppm, Na: less than or equal to 0.184 ppm, Ca: less than or equal to 2 ppm
Linear Error K: less than or equal to 0.195 ppm, Na: less than or equal to 0.69 ppm, Ca: less than or equal to 3 ppm
Response Time 8s
Sample Uptake Less than 6 mL/min
Stability 3%(15s), 15%(6 min)
Reproducibility 2%
Air Compressor External
Printer Optional built-in thermal printer
Communication USB
Fuel LPG
Power Supply AC 220V ±10%, 50Hz ±1Hz
Dimension 570 × 560 × 400 mm
Weight 18 Kg

Pricing

Product Price Unit Action
Flame Photometer LMFM-A102 $2,520.00 Each of 1

Features

USB connectivity

User-friendly design

7-inch touchscreen

Multiple concentration units

Optional Accessories

Software

Printer

Atomizer

Applications

Flame Photometer LMFM-A102 is employed for measuring metal ion concentrations in solutions. It is essential in pharmaceutical and petrochemical industries. 

Similar Products

Flame Photometer LMFM-A103

  • Test Element: K, Na, Ca, Li
  • Channel Quantity: 4
  • Test Range: K: 0.15 to 100 ppm, Na: 0.18 to 100 ppm, Li: 0.1 to 30 ppm, Ca: 0.1 to 1000 ppm
  • Limit Of Detection: K: less than or equal to 0.158 ppm, Na: less than or equal to 0.184 ppm, Li: less than or equal to 0.1032 ppm, Ca: less than or equal to 2 ppm
  • Linear Error: K: less than or equal to 0.195 ppm, Na: less than or equal to 0.69 ppm, Li: less than or equal to 0.1449 ppm, Ca: less than or equal to 3 ppm

Flame Photometer LMFM-A104

  • Test Element: K, Na, Ca, Li, Ba
  • Channel Quantity: 5
  • Test Range: K: 0.15 to 100 ppm, Na: 0.18 to 100 ppm, Li: 0.1 to 30 ppm, Ca: 0.1 to 1000 ppm, Ba: 0.1 to 300 ppm
  • Limit Of Detection: K: less than or equal to 0.158 ppm, Na: less than or equal to 0.184 ppm, Li: less than or equal to 0.1032 ppm, Ca: less than or equal to 2 ppm, Ba: less than or equal to 6.028
  • Linear Error: K: less than or equal to 0.195 ppm, Na: less than or equal to 0.69 ppm, Li: less than or equal to 0.1449 ppm, Ba: less than or equal to 9.402, Ca: less than or equal to 3 ppm

Flame Photometer LMFM- A100

  • Elements Detected: K, Na
  • Sample Uptake: < 6mL/ min
  • Response Time: < 8 s
  • Dimension: 400 × 250 × 500 mm
  • Repeatability: < 3% coefficient of variation for 7 consecutive samples
Flame Photometer LMFM-A101
  • Test Element: K, Na, Li
  • Channel Quantity: 3
  • Test Range: K: 0.15 to 100 ppm, Na: 0.18 to 100 ppm, Li: 0.1 to 30 ppm
  • Limit Of Detection: K: less than or equal to 0.158 ppm, Na: less than or equal to 0.184 ppm, Li: less than or equal to 0.1035 ppm
  • Linear Error: K: less than or equal to 0.195 ppm, Na: less than or equal to 0.69 ppm, Li: less than or equal to 0.1449 ppm

Frequently Asked Questions

What is a Flame Photometer?

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A Flame Photometer is an apparatus designed to measure the intensity of light emitted by excited atoms or ions in a flame.

What is the role of flame temperature in Flame Photometer?

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The flame temperature is crucial in determining the excitation of the metal ions.

Is Flame Photometer suitable for high-throughput testing?

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It provides quick and reliable results therefore is suitable for high-throughput testing.

Can Flame Photometer be used for environmental monitoring?

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It is used to measure metal ions such as sodium and potassium in water, soil and air samples.

How is Calibration done in Flame Photometer?

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It is done by preparing a series of standard solutions with known concentrations of the metal ion being analyzed.

Is Flame Photometer used in pharmaceutical analysis?

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It is used in pharma industry to measure the levels of metals in drug formulations.