50L 400C Floor Standing Vacuum Oven NuOven VQ52-7 with Shelf Heating
- Preset programs with 99-hour timing capability
- High-precision Pt100 sensor ensures accuracy
- Temperature deviation and error alarms
- Digital vacuum control and auto circulation
- Door tightness adjustable for perfect sealing
- Durable silicone gasket sustains high vacuum
- Integrated pump and anti-backflow design
- Solenoid valve enables safe pressure release
- Advanced CPU for stable temperature control
- Optional secondary temperature guard
- Optional inert gas inlet with meter
- Interior illumination and rotating plate
- User calibration of temperature display
- Control parameters retained in memory
- Continuous system self-monitoring
| Model | NuOven VQ 52-3/52-4/52-5/52-6 | NuOven VQ 52-7/52-8 | NuOven VQ 91-1/91-2/91-3/91-4 | NuOven VQ 210-1/210-2/210-3/210-4 | |
| Chamber volume (L) | 50 | 50 | 90 | 210 | |
| Temp. Control Range | RT+10-250℃ | RT+10-400℃ | RT+10-250℃ RT+10-250℃ | ||
| Temperature | Resolution | 0.1℃(≤100℃);1℃(>100℃) | |||
| Fluctuation | ±1℃ | ||||
| Controller | PID microprocessor control, soft touch, LED display | ||||
| Sensor | PT100 | ||||
| Timer | Power-on, power off and working. Timing range: 1min-99hr | ||||
| Material | Internal | 304 stainless steel | |||
| External | 08F | ||||
| Dimensions (WxDxH,mm) | Internal | 415*370*345 | 450*450*450 | 560*640*600 | |
| External | 710*510*1110 | 770*570*1170 | 610*590*1380 | 720*730*1660 | |
| Vacuum Degree | 60Pa | ||||
| Heating Method | Surrounding heating | Shelf heating Shelf heating Shelf heating | |||
| Net Weight(Kg) | 145KG | 155 | 145 | 230 | |
| Consumption Power(W) | 1720 | 2070 | 1120 | 2100 | |
| Shelf Qty(Standard/Max.) | 2/2 | 3/3 | |||
| Power Supply | 220V/50Hz (Optional: 220V/60Hz, 110V/60Hz) | ||||
*Note:-NuOven VQ52-5,52-6,52-8,91-3,91-4,210-3 and 210-4:With 10-segment temperature control program to realize temperature curve program running.
-NuOven VQ52-4, 52-6, 91-2, 91-4, 210-2 and 210-4:
Digital vacuum gauge included for vacuum degree control while other models have mechanical vacuum gauge.
Within material science, vacuum ovens are indispensable for processing novel and sensitive materials. The vacuum reduces pressure to lower evaporation temperatures, preventing thermal damage to polymers, nanocomposites, and other advanced materials during drying or curing. This capability is crucial for avoiding oxidation and preserving material properties. The oven excels at thorough drying of granular feedstocks and removing trapped gases from precursors or resins.
Typical applications include annealing thin films, drying synthesized powders, and degassing polymer melts before molding. Instrument design emphasizes a robust vacuum chamber, reliable pumping, uniform heating, and accurate controls. As a result, these ovens are fundamental tools for developing and testing materials that would be compromised by conventional thermal treatment.
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