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High Temperature Muffle Furnace

High Temperature Muffle Furnace

45000 INR/Piece

Product Details:

  • Voltage 220 Volt (v)
  • Type High Temperature Muffle Furnace
  • Chamber Size 6 x 6 x 12 / 9 x 9 x 18 / Custom Sizes
  • Chamber Thickness 75 mm (Insulation)
  • Outer Size 550 x 750 x 900 mm
  • Door Type Hinged, Front Loading
  • Design Pressure Atmospheric
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High Temperature Muffle Furnace Price And Quantity

  • 1 , , Chain
  • 45000 INR/Piece

High Temperature Muffle Furnace Product Specifications

  • Digital Temperature Controller
  • High Density Ceramic Fiber
  • High Temperature Muffle Furnace
  • 75 mm (Insulation)
  • 5C at 1000C
  • 6 x 6 x 12 / 9 x 9 x 18 / Custom Sizes
  • 550 x 750 x 900 mm
  • Atmospheric
  • Atmospheric
  • Max 1600C
  • 3 kW to 8 kW (Depending on Chamber Size)
  • 220 Volt (v)
  • Hinged, Front Loading
  • Approx. 90 kg
  • Ambient to 1200C / 1400C / 1600C
  • Not Included
  • 1100C / 1300C / 1500C (Depending on Model)
  • LED / LCD Digital Display
  • Kanthal A1 / SiC Rods (as per model)
  • Ceramic Tray, Tongs (Optional)
  • 7-10C/min
  • Laboratory Ashing, Material Testing, Heat Treatment
  • PID Digital Controller with Safety Cutoff
  • Mild Steel, Powder Coated Exterior
  • Over-temperature Protection, Fuse Protection
  • Front Loading
  • 230V / 415V AC, 50 Hz

High Temperature Muffle Furnace Trade Information

  • Delhi
  • Letter of Credit (L/C), Paypal, Telegraphic Transfer (T/T)
  • 10 , , Chain Per Week
  • 5 Days
  • Yes
  • If order is confirmed we will reimburse the sample cost
  • Australia, South America, Middle East, Western Europe, Central America, Africa, Asia, Eastern Europe, North America
  • All India
  • ISO, CE, FDA, WHO-GMP

Product Description

The unit is specially designed tomeet the requirement of High Temperature 1400C, the casing is made of M.S.reinforced with iron angles duly painted, Chamber made of Ceramic ZirconiumBoard and elements are placed Horizontally in the chamber. Heating is done byimported Silicon Carbide Rods duly controlled by accurate step downTransformers (Air cooled), it saves energy upto 30% with easily replaceableCarbide Rods. These Furnaces have outstanding Temperature reliability and has largesurface radiation ratio to enhance thermal efficiency and power consumption.Control panel is fitted with Digital Temperature Indicator cum Controller upto1400C Control panel is provided separately having Ammeter Volts Meter andDigital Controller, etc. Maximum Furnace Temperature upto 1400C, workingTemperature upto 1350C opera table in 220 Volts Single Phase AC supply.

Muffle Size (W x H x D)Rating 

100 x 100 x 125 mm        

125 x 125 x 250 mm

150 x 150 x 300 mm

200 x 200 x 300 mm        

OPTIONAL FOR MUFFLE FURNACE

Profile controller with ramp soak facility.               

Advanced Temperature Control for Precision Results

The built-in PID digital temperature controller enables exact regulation and ramping, helping ensure precise thermal cycles for complex processes. The safety cutoff and over-temperature protection guard both your specimens and equipment, which makes it ideal for high-stakes research and industrial work.


Durable Construction with User-Focused Design

Encased in powder-coated mild steel, the muffle furnace is built to withstand frequent, rigorous use. The high-density ceramic fiber insulation ensures optimal thermal efficiency and safety, while the front-loading, hinged door and ergonomic handling accessories make daily operation intuitive and easy.


Versatile Applications Across Multiple Sectors

Whether you're conducting laboratory ashing, material property assessments, or controlled heat treatment, this furnace delivers consistent performance. Its versatile temperature range, customizable chamber sizes, and efficient heating rates support a spectrum of professional needs in research labs, quality control, and manufacturing.

FAQ's of High Temperature Muffle Furnace:


Q: How does the PID Digital Controller enhance the operation of the muffle furnace?

A: The PID Digital Controller continuously monitors and regulates the furnace temperature, providing precise control and stability. Its integrated safety cutoff automatically disengages the heating element if temperatures exceed safe limits, protecting both your samples and the device.

Q: What heating elements are used, and how do they differ?

A: Depending on the model, the muffle furnace utilizes either Kanthal A1 wires or Silicon Carbide (SiC) rods. Kanthal A1 offers excellent resistance and durability for standard laboratory work, while SiC rods enable rapid heating and are preferable for applications requiring higher temperatures.

Q: When is the muffle furnace suitable for laboratory use?

A: This furnace is ideal for procedures that require high and stable temperatures, such as ashing, heat treatment, and material testing. Key features like uniform heating, protective insulation, and precise digital controls make it suitable for routine as well as specialized laboratory protocols.

Q: Where can the High Temperature Muffle Furnace be installed?

A: Designed for laboratory, research, and light industrial environments, the furnace is suitable for benchtop or dedicated furnace rooms with stable power supplies (230V/415V AC). Its robust construction and standard dimensions facilitate installation on reinforced tables or stands.

Q: What safety features are included in this furnace?

A: Safety is ensured with over-temperature protection, a built-in safety cutoff, and fuse protection. High-density ceramic fiber insulation and a powder-coated steel outer shell further reduce accidental heat exposure, enabling safe, reliable operation.

Q: How is the loading and unloading process managed?

A: The front-loading, hinged door design allows for safe, easy access to the furnace chamber. Ceramic trays and optional tongs are provided to facilitate the transfer of hot samples, minimizing operator risk and enhancing efficiency.

Q: What are the benefits of choosing custom furnace chamber sizes?

A: Custom chamber sizing lets you optimize the furnace for batch size, sample dimensions, and application requirements. This flexibility ensures efficient use of space, precise temperature management, and better outcomes for specialized heat treatment or laboratory processes.

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