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Overview
Horizontal Laminar Flow Cabinet LMLH-B100 offers 59-inch layout for experimental workflow. It accommodates two-person interaction, enhancing productivity in controlled laboratory surroundings. Integrated HEPA filtration with 99.999% efficiency at 0.3 µm ensures superior airborne contamination control. Equipped with an advanced polyester fiber pre-filter to trapping larger particulates before secondary purification. Our Horizontal Laminar Flow Cabinet provides class 100 cleanliness for contamination-sensitive procedures.
Features :
Regulated Airflow System
Robust Stainless-Steel Chamber
LCD Display Panel
Illuminating LED Lamp
8 mm Thick Transparent Glass Panels
Specifications :
| Cabinet Size | 59 inches |
| Cabinet Type | Single-side type |
| Capacity | Double Person |
| Airflow Velocity | 0.3 to 0.5 m/s |
| Display | LCD Touch Panel |
| Glass Door Thickness | 8 mm Side Glass |
| Pre-Filter | Polyester Fiber Filter |
| HEPA Filter | 99.999 % efficiency at 0.3 µm |
| Chamber Material | Stainless-Steel |
| Cleanliness Class | Class 100 |
| Working Surface Height | 750 mm |
| Illumination | Greater than or equal to 350 Lux |
| Noise | Less than 65 dB |
| Contamination Control | Less than or equal to 0.5 CFU / time |
| UV Lamp | 30 W |
| Illuminating LED Lamp | 16 W |
| Power Consumption | 620 W |
| Power Supply | AC 220 / 110 V ± 10 %, 50 / 60 Hz |
| Internal Dimension | 1400 × 500 × 600 mm |
| External Dimension | 1500 × 808 × 1690 mm |
| Gross Weight | 185 kg |
Standard Accessories :
| Model No | Accessory |
| LMLH-B100-B1 | Base Stand |
| LMLH-B100-L1 | LED Lamp |
| LMLH-B100-S1 | Stainless steel IV Bar with 10 Hooks |
| LMLH-B100-U1 | Universal caster (with levelling feet) |
| LMLH-B100-U2 | UV Lamp |
| LMLH-B100-W1 | Waterproof Socket |
Optional Accessories :
| Model No | Accessory |
| LMLH-B100-E1 | Electric height adjustable base stand |
Applications :
Horizontal Laminar Flow Cabinet LMLH-B100 is essential for maintaining controlled conditions during product testing, stability studies, and contamination-sensitive analysis in pharmaceutical environments.