Ceramic Rod Heaters | Carburizing furnaces, high-temperature industrial processes | Material: Alumina ceramic (95% purity, ASTM C693) Power: 10 kW (Base) ▲12 kW (Advanced) (IEC 60038) Resistance wire: Cr25Al5 (ASTM A276) | ▲ 25% higher power (Advanced vs Base) Corrosion resistance (vs metal sheathed heaters) 1-year warranty (▲ vs industry 6 months) | Higher upfront cost (▲ Advanced version reduces cost by 15% vs Base) Requires precise installation |
Metal Sheathed Heaters | Industrial dryers, low-to-moderate temp applications | Material: Stainless steel (ASTM A240) Power: 8 kW (IEC 60038) Resistance wire: NiChrome (ASTM A950) | Lower cost (▲ 30% cheaper than ceramic) Easier maintenance | Max temp: 800°C (▲ ceramic handles 1200°C) Shorter lifespan (6 months warranty) |
Infrared Heaters | Space heating, rapid drying | Emitter type: Quartz (IEC 60096) Power: 5 kW (IEC 60038) | Rapid heat-up (▲ 50% faster than electric resistance) Energy-efficient | Limited to ≤400°C Directional heat distribution |
Electric Resistance Heaters | Precision temp control in labs/industries | Coiled wire (ASTM A950) Power: 15 kW (IEC 60038) | ±1°C accuracy (▲ vs industry ±5°C) Compact design | High power consumption (▲ 20% more efficient in Advanced ceramic heaters) |
Gas-Fired Heaters | Outdoor, high-output industrial use | Fuel: Natural gas (ISO 13686) Power: 20 kW (ISO 3095) | High output (▲ 2x ceramic heaters) Cost-effective for large-scale use | Requires fuel infrastructure CO₂ emissions (▲ electric heaters are emission-free) |
Water Heaters (Dual-Purpose) | Industrial boilers, water treatment | Material: Stainless steel (ASTM A240) Power: 8 kW (IEC 60038) Dual mode: Heating + Water Heating | ▲ 2-in-1 functionality (vs single-purpose heaters) Energy recovery efficiency (▲ 15% in Advanced) | Requires water circulation system Lower max temp (▲ ceramic reaches 1200°C) |