This thermo scientific eled lindberg blue m mini mite digital multi segment programmable tube furnace features an led display and has a 100 to 1100 c temperature range.
Thermo scientific lindberg blue m mini mite tube furnace.
Microprocessor based self tuning pid control provides optimal thermal processes without overshooting not available in europe.
Lindberg blue m 1700 c.
Features independent digital temperature control modules sold semperately which are available in standard or programmable options not available in europe.
Lindberg blue m 1200 c split hinge.
Lindberg blue m mini mite.
Configure thermo scientific lindberg blue m 1200c split hinge tube furnaces for horizontal or vertical use.
Mini mite 1100 c tube furnaces offer a selection of control instrumentation including multiple segment programmable or single setpoint control.
Thermo scientific lindberg blue m mini mite tube furnace the compact portable single tube furnace insulated with moldatherm for quick heatup and cooldown includes the b2 digital controller single setpoint with one ramp to setpoint.
Mini mite tube furnaces are insulated with moldatherm for quick heatup and cooldown.
Conduct heating applications faster than conventional furnaces withthermo scientific lindberg blue m 1100c tube furnaces which benefits from design elements such as double shell construction and variable density insulation to enhance performance not available in europe.
Tf55035a 1 thermo scientific lindberg blue m mini mite tube furnace 1 zone digital multiple segment 16 120 volts 50 60 hertz 800 watt please take note that this product has been temporarily placed on product hold by thermo scientific.
It is compact and portable.
Lindberg blue m 1500 c heavy duty box.
Quickly heat up and or cool down samples with this convenient and flexible portable thermo scientific lindberg blue m mini mite tube furnaces insulated with moldatherm.
All models feature energy efficient moldatherm insulation for quick heat up and cool down microprocessor based self tuning pid control provides optimal thermal processes without overshoot.