ZHENGZHOU HENGTONG FURNACE CO,. LTD
300C Max. 90mm O.D Tube Furnace for High Magnetic Field
  • 300C Max. 90mm O.D Tube Furnace for High Magnetic Field
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300C Max. 90mm O.D Tube Furnace for High Magnetic Field

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  • Product Details
  • The Furnace is a 90mm OD x 58mm ID  300ºC Max. Tube furnace with vacuum/gas insulated jacket. Such furnace is constructed by SS316L material which has nearly zero magnetic permeability. It is dedicated for use with superconducting high field magnets for material annealing.

    SPECIFICATIONS:

    Furnace Structure
    • The tube furnace has three layers

    • Heating element:  center spiral type SiC filament ( 25 OD x  20 ID x 400 L mm )

    • SiC sheath: quartz tube  ID 30 × OD 36 mm × 622 mm.

    • Sample layer:  36 ID × 58 OD × 622 mm L with vacuum sealed flange.

    • Gas-cooled layer: 58ID × 90 OD × 622mm L to keep outside wall < 30ºC

    Power

    208 - 240 VAC, single phase 

     2000W

    Working Temperature
    • Max. Temperature: 300 °C (< 1 hr)

    • Continuous working temperature: 250 °C

    Heating RateTemperature ControllerMax. Heating Rate: 10°C /min
    Heating Zone
    • Heating Zone Length: 1000 mm 

    • Constant Temperature Zone:  700 mm within +/- 2oC

    Temperature Controller
    • PID automatic control and auto-tune function.

    • 30 programmable segments for precise process

    • Built in protection for overheated and broken Thermal couple. 

    • Temperature Accuracy: +/- 1 °C

    • K-type thermal couple

    Vacuum Flange (Sold Separately)
    • Special flange for three layers tube is included

    • 1" flange is included for center tube

    Fitting Ports (Sold Separately)
    • Both flanges will come standard with 3/8" barbed hose fittings

    • In order to increase the throughput and achieve a high vacuum, you may replace the standard barbed hose fitting with theKF25 adapter 

    • For supplying high-pressure gas, you may replace the standard barbed hose fitting with the 304SS 1/4" Swagelok® Tube Fitting x 1/4" BSPP Male Connector

    Vacuum Pressure
    • Limited by vacuum pump

    • 50 mtorr can be achieved by mechanical pump

    • 10^-5 torr can be reached by molecular pump

    Digital Pressure Gauge (optional)
    • A gas-type independent (above 10mbar) digital vacuum gauge with a wide range between 3.8x10-5 to 1125 Torr. Aside from greater measurement precision, this gauge reduces risks of chamber explosions caused by incorrect reading of gas pressures due to gas-type dependency.
    Compliance
    • CE Certified

    • All electric parts are UL / MET / CSA certified

    • The furnace is ready to pass UL or CSA certification (UL61010 or SPE1000) on customer side at customer cost.

    Application Notes
    • Tube furnaces with quartz tubes are designed for using under vacuum and low pressure < 0.2 bars / 3 psi / 0.02 MPa

    • Attention: A two stage pressure regulator must be installed on the gas cylinder to limit the pressure to below 3 PSI for safe operation. 

    • Vacuum limit definition for all quartz tube furnaces: * Vacuum pressures may only be safely used up to 1000°C

    • The flow rate for gases should be limited to<200 SCCM (or 200ml/min) for reducing thermal shocks to the tube



    The Furnace is a 90mm OD x 58mm ID  300ºC Max. Tube furnace with vacuum/gas insulated jacket. Such furnace is constructed by SS316L material which has nearly zero magnetic permeability. It is dedicated for use with superconducting high field magnets for material annealing.

    SPECIFICATIONS:

    Furnace Structure
    • The tube furnace has three layers

    • Heating element:  center spiral type SiC filament ( 25 OD x  20 ID x 400 L mm )

    • SiC sheath: quartz tube  ID 30 × OD 36 mm × 622 mm.

    • Sample layer:  36 ID × 58 OD × 622 mm L with vacuum sealed flange.

    • Gas-cooled layer: 58ID × 90 OD × 622mm L to keep outside wall < 30ºC

    Power

    208 - 240 VAC, single phase 

     2000W

    Working Temperature
    • Max. Temperature: 300 °C (< 1 hr)

    • Continuous working temperature: 250 °C

    Heating RateTemperature ControllerMax. Heating Rate: 10°C /min
    Heating Zone
    • Heating Zone Length: 1000 mm 

    • Constant Temperature Zone:  700 mm within +/- 2oC

    Temperature Controller
    • PID automatic control and auto-tune function.

    • 30 programmable segments for precise process

    • Built in protection for overheated and broken Thermal couple. 

    • Temperature Accuracy: +/- 1 °C

    • K-type thermal couple

    Vacuum Flange (Sold Separately)
    • Special flange for three layers tube is included

    • 1" flange is included for center tube

    Fitting Ports (Sold Separately)
    • Both flanges will come standard with 3/8" barbed hose fittings

    • In order to increase the throughput and achieve a high vacuum, you may replace the standard barbed hose fitting with theKF25 adapter 

    • For supplying high-pressure gas, you may replace the standard barbed hose fitting with the 304SS 1/4" Swagelok® Tube Fitting x 1/4" BSPP Male Connector

    Vacuum Pressure
    • Limited by vacuum pump

    • 50 mtorr can be achieved by mechanical pump

    • 10^-5 torr can be reached by molecular pump

    Digital Pressure Gauge (optional)
    • A gas-type independent (above 10mbar) digital vacuum gauge with a wide range between 3.8x10-5 to 1125 Torr. Aside from greater measurement precision, this gauge reduces risks of chamber explosions caused by incorrect reading of gas pressures due to gas-type dependency.
    Compliance
    • CE Certified

    • All electric parts are UL / MET / CSA certified

    • The furnace is ready to pass UL or CSA certification (UL61010 or SPE1000) on customer side at customer cost.

    Application Notes
    • Tube furnaces with quartz tubes are designed for using under vacuum and low pressure < 0.2 bars / 3 psi / 0.02 MPa

    • Attention: A two stage pressure regulator must be installed on the gas cylinder to limit the pressure to below 3 PSI for safe operation. 

    • Vacuum limit definition for all quartz tube furnaces: * Vacuum pressures may only be safely used up to 1000°C

    • The flow rate for gases should be limited to<200 SCCM (or 200ml/min) for reducing thermal shocks to the tube