SKU
CF1400

1400C Multi-Segment Muffle Furnace PC Interface ETL/CE Certified

Price $6,590.00

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Wishlist

 

CF1400 series muffle furnaces feature a chamber with Mitsubishi (Japan) high quality alumina fiber insulation and silicon carbide (SiC) heating elements. A double walled steel internal housing helps minimize heat loss to exterior surface.

Furnace operation is controlled by Eurotherm (UK) or Shimaden (Japan) digital controller with built-in digital communication port and USB adaptor, allowing the user to connect to a PC for remote control and monitoring of the furnace. You can also save or export test results.

Features

  • Microprocessor based self-tuning PID control provides optimum thermal process with minimal overshoot.
  • Built-in ammeter and dual voltmeters for easy monitoring and troubleshooting.
  • Built-in computer interface.
  • Long life type S thermocouple.
  • ETL and CE certified, standard

Safety

  • Overheat protection shuts down the furnace if temperature is outside of acceptable range (refer to controller's manual) or when the thermocouple is broken or malfunctions.
  • Power failure protection resumes furnace operation right after the point of failure when power is reestablished.

 


 
 

 



 

Specifications

Specifications

 Model  CF1400
 Electrical requirements
 208-240VAC, 50/60Hz, single phase
 Min. working temperature  Ambient
 Max working Temperature  1400°C (2552°F)
 Max vs constant working temperature  
 1300°C (2372°F)
 Refractory lining
 Mitsubishi (Japan) high quality 1600 grade fiber alumina
 Heating element type
 Silicon carbide (SiC)
 Thermocouple type
 Type-S 
 Temperature controller
 Eurotherm 3204 Controller (UK)
 Or
 Shimaden fp93 (Japan) with 4 patterns and
 40 segments (ie. 4 x 10 segments or 2 x 20 segments)

 Max heating rate
 < 15°C (59°F) / min
 Temperature precision
 +/- 1°C
 Certification

 ETL tested to UL and CSA standards (optional), CE (Standard)

Warranty

1 year

 

Size comparison

 Chamber size (DxWxH)  6x6x6"  12x8x8"  16x12x12"
 Usable chamber space (DxWxH)  4x5x5.5"  10x7x7.5"  14x11x11.5"
 Chamber capacity (cu ft)  0.13  0.44  1.33
 Installed heating element  4  8  12
 Maximum output  3 kW  7 kW  13 kW
 Furnace dimensions (DxWxH)  20x19x32’’  22x25x34’’  27.5x31.5x57’’
 Shipping dimensions (DxWxH)  31x37x46’’  36x32x56’’  36x32x56’’
 Unit/Shipping weight (Ib)  400/490  410/500  620/700
Standard Packages

Standard Package

 

Part description    

 

   

  Quantity  

 

 

Part image 

 

 CF1400 muffle furnace
 1 pc
 Thermocouple - Type S
 1 pc

 U-shape Tool for Door Block
1 pc


Stainless Steel Thongs 1 pc

 Alumina Thermal Cushion Block 1 pc

 Thermal gloves  1 pair

Spare UL fuses 32A or 63A or 100A
2 pcs


 USB/RS485 computer interface kit 1 set


 Spare heating element (Picture on left for CF1400 and on right for CF1700) – ONLY FOR CF1400 & CF1700 2 pcs

or 

 Eurotherm USB Software 1 pc


 Alumina Thermal Plate 1 pc


 Crucibles 5 pcs


 Crucible Lids 5 pcs


 User's manual  2 pc


Overview

 

CF1400 series muffle furnaces feature a chamber with Mitsubishi (Japan) high quality alumina fiber insulation and silicon carbide (SiC) heating elements. A double walled steel internal housing helps minimize heat loss to exterior surface.

Furnace operation is controlled by Eurotherm (UK) or Shimaden (Japan) digital controller with built-in digital communication port and USB adaptor, allowing the user to connect to a PC for remote control and monitoring of the furnace. You can also save or export test results.

Features

  • Microprocessor based self-tuning PID control provides optimum thermal process with minimal overshoot.
  • Built-in ammeter and dual voltmeters for easy monitoring and troubleshooting.
  • Built-in computer interface.
  • Long life type S thermocouple.
  • ETL and CE certified, standard

Safety

  • Overheat protection shuts down the furnace if temperature is outside of acceptable range (refer to controller's manual) or when the thermocouple is broken or malfunctions.
  • Power failure protection resumes furnace operation right after the point of failure when power is reestablished.

 


 
 

 



 

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