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  • 1700C High Temperature Laboratory Box Muffle Furnace with the Chamber Size 250x250x300mm
  • 1700C High Temperature Laboratory Box Muffle Furnace with the Chamber Size 250x250x300mm
  • 1700C High Temperature Laboratory Box Muffle Furnace with the Chamber Size 250x250x300mm
  • 1700C High Temperature Laboratory Box Muffle Furnace with the Chamber Size 250x250x300mm
  • 1700C High Temperature Laboratory Box Muffle Furnace with the Chamber Size 250x250x300mm
  • 1700C High Temperature Laboratory Box Muffle Furnace with the Chamber Size 250x250x300mm
1700C High Temperature Laboratory Box Muffle Furnace with the Chamber Size 250x250x300mm

1700C High Temperature Laboratory Box Muffle Furnace with the Chamber Size 250x250x300mm

$5500.00-$6500.00/ Set|1 Set/Sets(Min. Order)

Customization:

Customized logo(Min.Order: 5 pieces)
Customized packaging(Min.Order: 5 pieces)
Graphic customization(Min.Order: 5 pieces)

1700C High Temperature Laboratory Box Muffle Furnace with the Chamber Size 250x250x300mm

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Temperature Processing: Capable of reaching up to 1700°C, ideal for sintering, annealing, and heat treatment of materials in laboratory or industrial settings.
  • Precision Temperature Control: Equipped with 30-segment programmable temperature control, enabling customizable heating cycles for precise material processing.

Key features

  • 1. Corrosion-Resistant Material Technology

  • With a stainless steel body and ceramic fiber insulation, maintain structural integrity and thermal efficiency in corrosive or high-temperature laboratory environments. Stainless steel construction ensures durability, outlasting aluminum-based models by ~30% in harsh conditions*.

  • 2. Advanced Interactive Design

  • With a 30-segment programmable control panel, design intricate temperature profiles for precise material processing. This feature offers twice as many programmable segments as standard lab furnaces*, enabling multi-stage experiments without manual intervention.

  • 3. Industry-Leading Performance Parameters

  • With a maximum temperature of 1700°C, achieve high-temperature applications like sintering and annealing. This exceeds conventional lab furnaces by ~20% in max temperature capacity*, supporting advanced research and industrial material testing.

  • 4. Versatile Scenario Solutions

  • With integrated mobility wheels and uniform heating distribution, relocate the furnace easily between labs and ensure consistent results across diverse applications. The 250x250x300mm chamber accommodates larger samples compared to compact models*, ideal for rapid prototyping and continuous operation in research settings.

  • 5. Safety-Certified Compliance

  • With compliance to international laboratory safety standards (e.g., over-temperature protection), operate confidently in regulated environments. Certification details are subject to manufacturer specifications*.

Product details

1700C High Temperature Laboratory Box Muffle Furnace with the Chamber Size 250x250x300mm

The 1700°C High Temperature Laboratory Box Muffle Furnace is a robust, customizable heating solution designed for precise temperature control in laboratory and industrial applications. Built with corrosion-resistant stainless steel and ceramic fiber insulation, it delivers uniform heating up to 1700°C in a compact 250x250x300mm chamber. Its 30-segment programmable temperature control ensures flexibility for complex processes like sintering, annealing, and material testing.

Technical specifications

FeatureSpecificationBenefit
MaterialStainless steel body, ceramic fiber insulationCorrosion resistance, superior heat retention
Temperature RangeUp to 1700°CHandles extreme high-temperature applications
Chamber Dimensions250x250x300mmCompact yet spacious for small-batch samples
Heating ElementsNichrome/molybdenum disilicideHigh durability and even heat distribution
Control System30-segment programmable PID controllerPrecise, multi-stage temperature programming
Safety FeaturesOver-temperature protectionPrevents overheating and equipment damage
MobilityWheeled baseEasy relocation within labs or facilities

Customization guide

Adjustable parameters include:

  • Heating zone configuration (optimize for specific thermal profiles)
  • Insulation thickness (balance between energy efficiency and heat retention)
  • Control software (customize PID parameters for unique process needs)

Get inspired

With its 1700°C capability and programmable control, this furnace is ideal for advanced material synthesis, ceramic processing, or high-temperature testing. The wheeled design and compact chamber make it adaptable for both routine lab tasks and specialized R&D projects.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Max Temperature1600°C1700°C1750°C*
Temperature Uniformity±5°C (1100°C)±3°C (1500°C)±2°C (1700°C)
Heating Rate20°C/min30°C/min (+50%)40°C/min (+100%)
Control System15-segment PID30-segment PID50-segment PID

Supplier's note

  1. Key Breakthroughs:

    • The Pro Model’s 1750°C max temperature exceeds industry benchmarks by 10%, enabling ultra-high-temperature research.
    • Ceramic fiber insulation reduces heat loss by 20% compared to traditional materials, lowering energy costs.
    • 50-segment PID control allows for ±1°C precision, critical for sensitive material synthesis.
  2. Optimal Version Selection:

    • Base Model: Ideal for standard labs requiring up to 1600°C (e.g., metallurgy testing).
    • Advanced Model: Suitable for R&D teams needing 1700°C and 30-segment programming (e.g., ceramic sintering).
    • Pro Model: Best for cutting-edge research (e.g., nanomaterials) where extreme temperatures and precision are paramount.

*Pro Model’s 1750°C capability is achieved with optional ceramic fiber upgrades.

Frequently asked questions

  • Which high-temperature oven suits small laboratory spaces with limited floor area?

  • How do I clean the interior of a 1700°C muffle furnace after high-temperature use?

  • Stainless steel vs. other materials: Why is it preferred for lab muffle furnaces?

  • Can this furnace be customized for specific heating profiles in material science experiments?

  • Is the 1700°C muffle furnace certified for lab safety standards?

  • What heating elements are used in the 1700°C furnace, and why?

  • How does the 30-segment programmable control enhance temperature management?

  • Can the furnace be moved between labs or workstations easily?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Industry Standard OvenSmall-scale labs, basic heat treatmentMax temp: 1500°C (ASTM C1055) ▲
Manual control ▲
Steel chamber (ISO 9001)
Cost-effective, reliable for routine tasksLimited temperature (1500°C), no programmable control, manual adjustments only
Our Base ModelAcademic research, prototypingMax temp: 1600°C (▲▲)
20-segment programmable (IEC 60601-1) ▲
Stainless steel (ASTM A240)
Enhanced temp range vs standard, programmable control for precise heatingLower max temp (1600°C) vs advanced model, smaller chamber (250x250x300mm)
Our Advanced ModelHigh-temperature R&D, aerospace materialsMax temp: 1700°C (▲▲▲)
30-segment programmable (▲▲)
Ceramic fiber insulation (ASTM C1055)
Highest temp capacity, precise control, energy-efficient insulationHigher cost, requires specialized installation, heavier due to reinforced frame
Competitor A's OvenIndustrial prototypingMax temp: 1650°C (▲▲)
25-segment control (ISO 13482) ▲
Aluminum chamber (EN 10169)
Mid-range cost, decent temp control, lightweight designLower insulation quality, limited scalability for large batches
Standard Lab OvenGeneral lab drying, curingMax temp: 1200°C (▲)
Analog dial control ▲
Basic steel chamber (ISO 3834)
Affordable, easy to operate, compact sizeNo programmability, low max temp, unsuitable for high-temperature tasks
Industrial KilnMass production, ceramics firingMax temp: 1400°C (▲)
Batch processing ▲
Heavy-duty steel (ASME B31.3)
Large chamber (up to 1m³), robust for heavy loadsSlow heating/cooling, no precise temp control, requires dedicated ventilation

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