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NACRHF - High Temperature Chamber Furnaces

NACRHF - High Temperature Chamber Furnaces

Product Details:

  • Feature Rapid heating, energy efficient, programmable PID controller
  • Core Components Ceramic heating elements, thermal insulation
  • Voltage 220V/380V
  • Power Source Electric
  • Automation Grade Semi-Automatic
  • Measurement Range Ambient to 1800C
  • Accuracy 1C
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NACRHF - High Temperature Chamber Furnaces Price And Quantity

  • 5000 INR
  • 1 Piece

NACRHF - High Temperature Chamber Furnaces Product Specifications

  • Semi-Automatic
  • High-grade alumina ceramic fiber insulation, stainless steel housing
  • Electric
  • 220V/380V
  • Ceramic heating elements, thermal insulation
  • Rapid heating, energy efficient, programmable PID controller
  • 610 x 585 x 800 mm (custom sizes available)
  • High Temperature Chamber Furnace
  • 50/60 Hz
  • Up to 1800C
  • 10 to 100 Liters (Customizable)
  • 1C
  • NACRHF Series
  • Digital LED Display
  • Ambient to 1800C
  • Approx. 180 kg (Varies by model)
  • Heat Treatment, Laboratory, Research, Industrial Applications

NACRHF - High Temperature Chamber Furnaces Trade Information

  • 5-10 Piece piece Per Month
  • 6-8 Week

Product Description

The NACRHF range of silicon carbide heated high temperature chamber furnaces comprises four chamber sizes, each available with three maximum operating temperatures of 1400 °C, 1500 °C and 1600 °C.

Robust construction and high quality elements provide rapid heating rates (typically reaching 1400 °C in under 40 minutes) and a long reliable working life.

Standard Features

  • 1400°C, 1500°C or 1600°C maximum operating temperature
  • 3, 8, 15 or 35 litre chamber volumes
  • Silicon carbide heating elements provide long life and are able to withstand the stresses of intermittent operation
  • Carbolite 301 controller, with single ramp to set-point & process timer
  • Hard wearing refractory brick door surround and silicon carbide hearth
  • low thermal mass insulation for high energy efficiency

Options (specify these at time of order)

  • Over-temperature protection (recommended to protect valuable contents & for unattended operation)
  • A range of sophisticated digital controllers, multi-segment programmers and data loggers is available. These can be fitted with RS232, RS485 or Ethernet communications

Control Options

  • 301 Standard Controllers
  • nanodac Record / Control / Programmer
  • 3216 Programmable Controllers
  • 3508 Programmable Controllers

Content may be subject to modifications or corrections



Uniform Heating and High Efficiency

The NACRHF Series furnaces feature ceramic heating elements placed on all sides within high-purity alumina ceramic fiber chambers. This configuration guarantees even temperature distribution, minimizing hot spots and ensuring high-quality, repeatable results. Thick insulation up to 120 mm reduces heat loss for optimized energy efficiency during high-temperature operations.


Advanced PID Digital Control

These furnaces come equipped with a digital PID controller, allowing precise programming and monitoring of temperature. Over-temperature protection ensures safety, while features like the emergency stop and door interlock prevent accidental exposure or overheating. The bright LED display offers at-a-glance operational status, making control intuitive and reliable.


Versatile Applications and Customization

NACRHF Chamber Furnaces serve a variety of fields such as metallurgy, ceramics, electronics, and material testing. Capacities from 10 to 100 liters cater to different load sizes, while custom dimensions and finishes are available to fit specific operational requirements. Designed and manufactured in India, these units support both export and domestic needs for robust heat treatment solutions.

FAQs of NACRHF - High Temperature Chamber Furnaces:


Q: How does the NACRHF High Temperature Chamber Furnace achieve uniform heat distribution?

A: The furnace uses ceramic heating elements placed on all sides of the high-purity alumina ceramic fiber chamber. This multi-sided arrangement ensures that heat is evenly distributed throughout the chamber, effectively reducing temperature gradients and providing consistent results for all samples.

Q: What is the role of the digital PID controller in the furnace?

A: The digital PID controller enables precise temperature regulation, supporting programmed heating profiles while monitoring and maintaining the set temperature. It also features over-temperature protection and an LED display for clear visual monitoring, ensuring both safety and operational accuracy.

Q: When should I use the over-temperature alarm and emergency stop features?

A: These safety features should be utilized if the furnace temperature exceeds preset limits or during unexpected malfunctions. The over-temperature alarm notifies you of hazardous conditions, while the emergency stop instantly halts operation, guarding both user and equipment safety.

Q: Where are NACRHF High Temperature Furnaces commonly used?

A: These furnaces are widely used in metallurgy labs, ceramics production, electronics testing, material research, and various industrial applications where controlled high-temperature processing is essential.

Q: What processes can be performed using this furnace series?

A: The NACRHF Series is suitable for processes such as heat treatment, sintering, annealing, and material testing. Its high temperature capability and precise control make it ideal for research, development, and industrial production settings.

Q: Can the NACRHF Chamber Furnace accommodate different capacities or custom sizes?

A: Yes, models are available in capacities ranging from 10 to 100 liters, and custom sizes can be manufactured to meet unique application requirements. Additionally, finish color and external dimensions can be tailored per customer specifications.

Q: What benefits does the high-purity alumina ceramic fiber chamber offer?

A: This chamber material provides outstanding thermal insulation, durability, and resistance to high temperatures. Its superior insulating properties minimize heat loss, contribute to energy efficiency, and support clean, contaminant-free processing environments.

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