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Overview
Flame Photometer LMFM-A101 has measurement range of 0.1 to 100 ppm. It features digital display and an automatic gas control system. Equipped with high-sensitivity detector that ensures stable performance. It supports simultaneous detection of sodium, potassium, and Lithium. Our Photometer is ideal for clinical, agricultural, and industrial analysis.
Features :
Push-button ignition
7-inch LCD screen
Concentration reading function
Automatic coefficient calculation
Specifications :
| 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 |
| 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 |
Optional Accessories :
Software
Printer
Atomizer
Applications :
Flame Photometer LMFM-A101 is employed for detecting potassium, sodium, lithium, calcium, and barium in solutions. It is widely applied in clinical laboratories, agriculture, food analysis, and industrial research.
Selection Guide :
Flame Photometer LMFM-A101 is a specialized analytical instrument used for detecting and measuring alkali metals, making it suitable for applications in agriculture, food safety, clinical diagnostics, pharmaceuticals, and environmental analysis. Designed with three channels, it can accurately analyze Potassium (K), Sodium (Na), and Lithium (Li) within test ranges of K: 0.15 to 100 ppm, Na: 0.18 to 100 ppm, and Li: 0.1 to 30 ppm. Its high sensitivity, with detection limits of K ≤ 0.158 ppm, Na ≤ 0.184 ppm, and Li ≤ 0.1035 ppm, ensures accurate results even at trace levels. This model is widely used in research studies and laboratory experiments requiring reliable multi-element detection. Its performance, combined with compliance to quality standards, makes it a dependable choice for laboratories seeking consistent, accurate flame photometric analysis.