Product Description

Product Overview
1000℃ Laboratory Furnace product is mainly for the daily application development of the laboratory,high-quality furnace materials and stable temperature control system to ensure the reliability of the experimental data; the product uses high-purity alumina material as the furnace material, and the high-quality alloy resistance wire is used for heating element, and the temperature controller uses microcomputer PID control module to achieve precise temperature control and constant temperature requirements.
  • Mini, portable and easy to operate
  • The furnace material is vacuum-formed alumina ceramic fiber material and does not drop powder in high temperature, heat capacity is small, energy saving above 50%.
  • The heating element is made of high-quality alloy wire, which can bear large load, stable and long service life.
  • The heating rate is fast, from room temperature to 1100 degrees, generally takes 60 minutes.
  • High precision of temperature control, small temperature compensation, and temperature accuracy ± 1 ° C.
  • Using an intelligent PID temperature control instrument, with a program function, can set the temperature rise curve, and can be programmed in 32 segments.
  • Electronic components are used in Schneider products, with leakage protection, safe and reliable.
  • The machine will send out an alarm signal to the over-temperature during the working process and automatically complete the protection action.
  • When the instrument program is set, just press the run button and the next work will be completed automatically.
  • Optional air inlet can be used to purge and protect inert gas such as air. It can also be installed with an exhaust chimney and connected with stainless steel bellows to discharge the toxic and harmful gases volatilized in the furnace to the designated location.
1000°C Laboratory furnace (box type resistance furnace) mainly provides high temperature heat treatment environment for industrial colleges, research institutes, factories and other industrial laboratories, and is applied to new materials such as metal materials, ceramic materials, nano materials, and semiconductor materials.

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