Vacuum Oven 65-VO108

Lab Expo Vacuum oven comes with dual layer tempered glass door for clear observation of the sample during process. The outer of the oven is made using stainless steel sheets that are enamel and painted to prevent from corrosion. They are designed for drying of materials that are heat sensitive, reactive with oxidation reactions, prone to contamination due to excess water level. For the rapid drying of the materials, the controlled atmosphere can be created using the inert gases.

$3,293.00 $ 2744

Vacuum Oven 65-VO108 - Specifications

Number of Shelves 2
Display Resolution 0.1 ℃
Temperature Range RT + 10 to 65 ℃
Temperature Stability ± 1 ℃
Ambient Temperature 5 to 40 ℃
Vacuum Degree 133 Pa
Chamber Material Stainless steel
Interior Dimension (W × D × H) 415 × 370 × 345 mm
Exterior Dimension(W × D × H) 710 × 560 × 550 mm
Power Consumption 600 W
Power 220 V,50 Hz

Vacuum Oven 65-VO108 - Key Features

  • Microprocessor-based PID control with 0.1C resolution
  • Dual layer tempered glass door for clear observation
  • Temperature range RT+10 to 65C for thermal processing
  • Temperature stability ±1C maintained across operating range
  • Two independent shelves for simultaneous specimen treatment
  • Vacuum degree 133Pa enables controlled atmosphere drying

Vacuum Oven 65-VO108 - Applications

FunctionImplementation
Material drying labsRT + 10 to 65 ℃ enables controlled thermal processing
Oxidation-sensitive applicationsVacuum Degree of 133 Pa prevents reactive degradation
Heat-sensitive sample handlingTemperature Stability ± 1 ℃ ensures precise thermal control
Dual-sample processingNumber of Shelves: 2 supports simultaneous specimen treatment
Continuous monitoring operationsDisplay Resolution 0.1 ℃ allows fine-tuned observation

Vacuum Oven 65-VO108 - Catalog

Related Vacuum Oven

Lab Expo Vacuum Ovens are designed around sealed low-pressure chamber systems to enable controlled thermal processing of heat-sensitive materials. This industrial vacuum oven maintains stable temperature under reduced pressure to limit oxidation and thermal stress. Microprocessor regulation, stainless steel interiors, vacuum integrity monitoring, and over-temperature protection support consistent drying, degassing, and conditioning workflows in laboratory and industrial environments.