1. The stainless steel material is designed with four layers of protection, the middle layer is filled with water, and the outer layer is filled with refractory cotton, so as to minimize the damage to the temperature field in the furnace
2. Through high temperature to 90 degrees zoom pinhole lens along the workpiece movement direction observation, more intuitive, more comprehensive in the reactor of the
3. Specific conditions of the probe cover adopt stainless steel material, good heat resistance corrosion resistance
4. Special dustproof design, the lens is not easy to accumulate dust
5. Special water cooling design for normal use under poor water quality conditions
6. Self-developed and produced high temperature pinhole zoom lens with a horizontal resolution of more than 2 million pixels and a temperature resistance of 150 degrees
7. Manual zoom lens with high temperature can be selected to meet the observation requirements of different kilns and different production processes
8. Manual electric rotating device can be equipped to realize the whole furnace observation
9. Control the advance and retreat of equipment through DCS
10. High temperature lens zoom: Adjustable F4-F20 zoom
11. Signal-to-noise ratio: not less than 56dB
12. Resolution: higher than 2 million pixels Sensitivity: 0.0002Lx(F1.4)
13. Reaction time: 1ms
14. Dust: < 200g/m
15. Noise: < 150dB
16. Trouble-free time: 25000
17. Operating voltage: AC220V frequency: 50HZ
18. Power consumed: 120W
18. Protection level: IP65

The Vacuum Electric High Temperature Camera for Furnace is a specialized variant of a High Temperature Industrial Camera, engineered for extreme operating conditions. This Furnace High Temperature Camera is uniquely designed to function reliably within the high-temperature, vacuum, or inert gas atmosphere of electric furnaces. It utilizes advanced cooling and sealing technologies to withstand heat and prevent contamination. The high temperature camera for furnace provides real-time, high-resolution visual monitoring of critical processes such as material melting, crystal growth, and sintering, enabling precise control, quality assurance, and safety validation in advanced materials research and manufacturing.
Furnace High Temperature Camera parameters | 1. High temperature lens zooming: F4-F20 zooming adjustable 4. Signal Noise Ratio: >42db |
Compressed air | 1. Connecting pipe: G3/4" or G1/2" (increase stop valve) 4. Minimum flow: 0.68m³/min(1m³=1000L) |
Cooling water | 1. Connecting pipe: G3/4" or G1/2" (increase stop valve) 4. Minimum flow: >20L/min (1m³=1000L) |
Dimension | Automatic exit device: 1500×400×305mm |
Q1: Can this Furnace High Temperature Camera withstand extreme heat and vacuum conditions?
A: Yes, this Furnace High Temperature Camera is specifically engineered for vacuum, high-temperature, or inert gas atmospheres. It features a robust four-layer protection structure (stainless steel, water cooling layer, and refractory cotton) to minimize thermal damage to the furnace's temperature field. It is capable of continuous operation in furnace temperatures up to 1500°C, making it ideal for monitoring critical processes like material melting and sintering.
Q2: What are the optical capabilities and resolution of this Furnace High Temperature Camera?
A: The camera utilizes a self-developed high-temperature pinhole zoom lens (adjustable F4-F20) that offers a 90-degree zoom range along the workpiece movement direction. It delivers high-definition visuals with a resolution of more than 2 million pixels and a sensitivity of 0.0002Lx. Additionally, it features a special dustproof design to prevent dust accumulation, ensuring clear and intuitive observation of the reactor interior.
Q3: How is this Furnace High Temperature Camera controlled, and does it require high-quality cooling water?
A: The system offers flexible control options. The advance and retreat of the equipment can be controlled via DCS (Distributed Control System). It can also be equipped with a manual electric rotating device to realize whole-furnace observation. Regarding cooling, it features a special water cooling design that allows for normal use even under poor water quality conditions, reducing maintenance complexity and operational costs.
User manuals, video tutorials, and on-site training (upon request)




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