Model : BCS-800A; BCS-800B
- Maximum Temp in Central Zone (℃) : 825 ± 25
- Maximum Outer Diameter of Sterilization Goods (mm) : Ø15 / Ø35
- Length of Heating Area (mm) : 140 / 100
- Heating Time (min) : 15
Model : BCS-800A; BCS-800B
Infrared bacti-cinerator sterilizer uses high-temperature infrared to quickly and safely sterilize loops, needles, and similar tools. It offers a safer, more convenient alternative to alcohol lamps, making it ideal for use in biosafety cabinets, clean benches, fume hoods, and mobile labs.
Model | BCS-800A | BCS-800B |
Maximum Temp in Central Zone | 825°C ± 25°C | 825°C ± 25°C |
Maximum Outer Diameter of Sterilization Goods | Ø15mm | Ø35mm |
Length of Heating Area | 140mm | 100mm |
Heating Time | 15mins | 15mins |
Power | 150W | 250W |
Voltage | AC110V or 220V, 50/60Hz | AC110v or 220V, 50/60Hz |
Fuse | 250V 3A 5×20 | 250V 3A 5×20 |
Ambient Temperature | 5~40℃ | 5~40℃ |
Sizes(WxDxH)(mm) | 155x120x180 | 130x120x200 |
Shipping Size(WxDxH)(mm) | 270x230x200 | 270x230x220 |
N.W./G.W. (kg) | 1/1.5 | 1.3/1.8 |
The infrared sterilizer is securely packaged to ensure safe delivery. It’s cushioned with shock-resistant foam to protect against impact and vibration, and sealed with durable tape to prevent tampering or damage in transit.
What is infrared sterilizer
An infrared sterilizer is a device used to sterilize equipment and instruments through the use of infrared radiation. Unlike traditional sterilizers that may use steam or chemicals, infrared sterilizers employ infrared tungsten halogen lamps to generate high temperatures rapidly, typically between 825°C. This intense heat effectively kills microorganisms, including bacteria, viruses, and spores, on the surface of the instruments being sterilized.
What is the principle of infrared sterilizer
The principle of an infrared sterilizer is based on the use of infrared radiation to generate high temperatures that effectively sterilize equipment and instruments. High-temperature heat that effectively sterilizes instruments by destroying microorganisms through direct thermal effects. This method is quick, efficient, and does not involve the use of potentially hazardous chemicals or gases.
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