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Vacuum Furnace FVA-14
Labotemp Vacuum Furnace
Labotemp Vacuum Furnace
Labotemp Vacuum Furnace
Labotemp Vacuum Furnace
Labotemp Vacuum Furnace
Labotemp Vacuum Furnace
fva-14

Vacuum Furnace FVA-14

Labotemp Vacuum Furnace FVA-14 is a large-capacity, ultra-high-temperature laboratory vacuum/atmosphere furnace for advanced thermal processing and materials research. It has a 20 L chamber (250 × 320 × 250 mm) and reaches 1700°C (1600°C working range). The FVA-14 supports vacuum heat treatment, vacuum annealing, high-temperature sintering, and controlled-atmosphere processing for ceramics, alloys, composites, and powder metallurgy. 

MoSi₂ rod heating elements provide rapid thermal response, energy efficiency, uniform temperature distribution, and long service life under extreme cycling. Pre-vacuum capability enables low-oxygen and inert-gas processing to minimize oxidation. Water-cooling protects components for safe operation at ultra-high temperatures and extends equipment lifespan. Labotemp designs dependable, high-efficiency vacuum furnaces trusted by aerospace, semiconductor, energy, and materials research labs. 

Why Choose Labotemp Vacuum Furnace FVA-14? 

Ultra-High Temperature Capability: Reliable operation up to 1700°C. 
Large Chamber Capacity: Ideal for bigger samples and pilot production. 
Efficient Heating: MoSi₂ elements for fast response and thermal stability. 
Industrial-Grade Safety: Water cooling for stable, long-term operation. 

Data Sheet

Specifications Vacuum Furnace FVA-14

Model No. : FVA-14

Model No.
FVA-14

Volume : 20L

Volume
20L

Max Temp : 1700°C

Max Temp
1700°C

Working Temp : 1600°C

Working Temp
1600°C

Voltage : 380V / 50Hz

Voltage
380V / 50Hz

Power : 7kW

Power
7kW

Chamber Size : 250×320×250mm

Chamber Size
250×320×250mm

Heating Element : MoSi₂ Rod

Heating Element
MoSi₂ Rod

Vacuum / Pump System : No (Pre-vac Only)

Vacuum / Pump System
No (Pre-vac Only)

Cooling Requirement : Yes (at 1700°C)

Cooling Requirement
Yes (at 1700°C)

Features Vacuum Furnace FVA-14

  • MoSi₂ Rod Heating ➤ MoSi₂ Rod Heating
  • Large-capacity high-temperature vacuum/atmosphere furnace engineered for advanced processing up to 1700°C, providing exceptional thermal uniformity and stability. ➤ Large-capacity high-temperature vacuum/atmosphere furnace engineered for advanced processing up to 1700°C, providing exceptional thermal uniformity and stability.
  • Uses MoSi₂ rod heating elements, delivering rapid heating, high thermal efficiency, and long operating life under extreme temperature cycles. ➤ Uses MoSi₂ rod heating elements, delivering rapid heating, high thermal efficiency, and long operating life under extreme temperature cycles.
  • Pre-vacuum operation capability, enabling reduced-oxygen and inert-atmosphere environments to minimize oxidation during heat treatment. ➤ Pre-vacuum operation capability, enabling reduced-oxygen and inert-atmosphere environments to minimize oxidation during heat treatment.
  • Spacious 250×320×250 mm chamber, suitable for larger research samples, pilot production, and advanced R&D applications. ➤ Spacious 250×320×250 mm chamber, suitable for larger research samples, pilot production, and advanced R&D applications.
  • Water-cooling protection system ensures safe and reliable performance when operating at ultra-high temperatures, improving equipment lifespan. ➤ Water-cooling protection system ensures safe and reliable performance when operating at ultra-high temperatures, improving equipment lifespan.
  • 380V / 7 kW power configuration supports fast heat-up rates and efficient industrial-grade operation. ➤ 380V / 7 kW power configuration supports fast heat-up rates and efficient industrial-grade operation.

Applications Vacuum Furnace FVA-14

  • Ideal for advanced ceramics sintering, metal alloy heat-treatment, composite materials development, and crystal growth ➤ Ideal for advanced ceramics sintering, metal alloy heat-treatment, composite materials development, and crystal growth
  • Widely used in aerospace, semiconductor, energy technology, additive manufacturing, and high-performance materials research laboratories ➤ Widely used in aerospace, semiconductor, energy technology, additive manufacturing, and high-performance materials research laboratories
  • Suitable for powder metallurgy, electronic component fabrication, and prototype development requiring controlled atmosphere or reduced-oxygen processing ➤ Suitable for powder metallurgy, electronic component fabrication, and prototype development requiring controlled atmosphere or reduced-oxygen processing