High Temperature Test Chamber
  • High Temperature Test Chamber

High Temperature Test Chamber

The High Temperature Test Chamber delivers exceptional performance for extreme heat testing. With a wide temperature range (RT+10°C to 300°C, optional up to 500°C), ±0.5°C precision, and rapid heating (up to 5°C/min), it ensures reliable validation of products under thermal stress. Featuring a corrosion-resistant stainless steel interior, dynamic PID control, and multi-layer safety protections (over-temperature, leakage detection), it serves electronics, automotive, and aerospace industries. Compact design, energy efficiency, and compliance with GB/T 2423.2-2008/GJB150.3A-2009 standards make it ideal for R&D, quality control, and reliability testing.

High Temperature Test Chamber

Overview

The High Temperature Test Chamber is a specialized environmental testing solution designed to simulate and validate product performance under extreme high-temperature conditions. Engineered for precision, durability, and compliance with global standards, it is widely used in R&D, production, and quality assurance across industries like electronics, automotive, aerospace, and materials science. By replicating real-world thermal stress, it helps manufacturers identify design flaws, optimize materials, and ensure product reliability.

Technical Specifications

  • Temperature Range: RT+10°C to 300°C (standard); optional extension to 500°C for specialized applications.

  • Heating Rate: 1–5°C/min (programmable, average rate).

  • Temperature Uniformity: ≤±2.0°C (at 300°C).

  • Temperature Stability: ±0.5°C (long-term operation).

  • Control System: PLC-based with 7-inch touchscreen interface; supports multi-segment programming (up to 99 steps).

  • Humidity Option: Optional integrated humidity control (10–95% RH) for combined thermal-humidity testing.

Key Features

  1. Advanced Thermal Management

    Utilizes a balanced air-circulation system with imported high-temperature-resistant fans (up to 350°C) to ensure uniform heat distribution. The PID dynamic control algorithm minimizes overshoot and stabilizes temperature rapidly, enhancing test repeatability.

  2. Robust Construction

    • Interior: Made of SUS304 mirror-finish stainless steel (corrosion-resistant, easy to clean).

    • Insulation: High-density ceramic fiber insulation (low heat loss, energy-saving).

    • Door Seals: Double-layer silicone rubber gaskets (prevents heat leakage).

  3. Safety Mechanisms

    • Over-temperature protection (auto-shutdown if exceeding set limits).

    • Leakage current detection and grounding protection.

    • Emergency stop button and password-protected operation.

    • Independent overtemperature alarm (audible/visual).

  4. User-Friendly Interface

    The intuitive touchscreen allows real-time monitoring of temperature, program status, and fault codes. Data logging (USB/RS485 output) supports analysis and compliance reporting.

Applications

  • Electronics: Testing PCBs, semiconductors, and sensors for thermal endurance.

  • Automotive: Validating engine components, wiring harnesses, and battery packs under high heat.

  • Aerospace: Assessing avionics, satellite parts, and composite materials for flight thermal stress.

  • Materials Science: Evaluating polymer degradation, metal creep, and coating stability at elevated temperatures.

Model Specifications (Table)

Model

Temperature Range

Volume

Working Dimensions (W×D×H/mm)

External Dimensions (W×D×H/mm)

Power Supply

HT-100

RT+10°C~300°C

100L

450×450×500

650×950×1450

220V/50Hz

HT-225

RT+10°C~300°C

225L

600×600×625

800×1100×1600

220V/50Hz

HT-408

RT+10°C~300°C

408L

800×600×850

1000×1100×1850

380V/50Hz

HT-800

RT+10°C~300°C

800L

1000×800×1000

1200×1300×2050

380V/50Hz

HT-1000

RT+10°C~300°C

1000L

1000×1000×1000

1200×1500×2050

380V/50Hz

Advantages Summary

The High Temperature Test Chamber stands out for its precision (±0.5°C stability), reliability (robust construction, imported components), and flexibility (customizable temperature ranges, optional humidity). It complies with international standards (GB/T 2423.2-2008, GJB150.3A-2009, IEC60068-2-2) and supports 24/7 operation. With compact designs and energy-efficient heating, it fits lab, pilot, and production environments.


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