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Humidity Oven Stability Chamber
Humidity Oven Stability Chamber Specification
- Specimen Size
- Customizable trays or shelves, standard 2 ft x 2 ft trays
- Mounting Type
- Floor mounted
- Application
- Pharmaceutical, research laboratories, quality control
- Response Time
- Immediate (controller-based)
- Test Range
- Ambient to 60C and 40%98% RH
- Display Type
- Digital LED/LCD display
- Temperature
- 10C to 60C (1C accuracy)
- Number of Specimens
- Multiple, racks/shelves adjustable
- Automation Grade
- Automatic
- Port Size
- Standard 1.5 inch
- Power Supply
- 230V AC 50 Hz single phase
- Interface Type
- RS232/USB (optional)
- Accuracy
- Temperature: 1C, Humidity: 3% RH
- Operating Voltage
- 230V, 50Hz
- Resolution
- Temperature: 0.1C; Humidity: 0.1% RH
- Frequency
- 50 Hz
- Equipment Type
- Humidity Oven Stability Chamber
- Measuring Range
- Temperature: 10C60C, Humidity: 40%98% RH
- Features
- Adjustable shelves, double walled construction, indicator alarms, glass window
- Max Height
- Approx. 1500 mm
- Humidity
- 40% to 98% RH (3% accuracy or better)
- Usage
- Stability testing in controlled environment
- Capacity
- 90-250 litres based on chamber size
- Machine Weight
- Approx. 100-150 kg depending on model
- Test Speed
- Programmable; typically up to 60 cycles/min
- Test Width
- Up to 550 mm
- Test Stroke
- Variable, as per test requirement
- Control Mode
- Microprocessor based PID controller
- Shelves
- Removable, adjustable stainless steel
- Air Circulation
- Motorized blower for uniformity
- Lighting
- Interior illumination for specimen observation
- Castors/Wheels
- Heavy duty for mobility
- Alarm System
- Audio visual for deviation in temperature/humidity
- Calibration
- Factory calibrated with calibration certificate
- Operating Environment
- Indoor, dust free, ventilated area
- Door Type
- Full view toughened glass window door
- Insulation
- PUF, high-density for thermal retention
- Chamber Material
- Stainless Steel (inner), powder coated mild steel (outer)
- Data Logging
- Optional USB/SD card data logger
Humidity Oven Stability Chamber Trade Information
- Minimum Order Quantity
- 1 Unit
- Supply Ability
- 5 Units Per Day
- Delivery Time
- 2 Week
About Humidity Oven Stability Chamber
Made of 304 grade stainless steel, this high performance Humidity Oven Stability Chamber has -70 degree C to150 degree C operating temperature range. Its humidity range is maximum 98%. Glass made rectangular window of this chamber can be used for monitoring of testing samples. Windows of this chamber have anti sweat heater arrangement to avoid condensation of water vapor. It has external water supplying arrangement. Controller of this Humidity Oven Stability Chamber has LCD display facility for showing measurement value and also for setting of time and value.
Precision-Controlled Stability Testing
Engineered for accurate and reliable testing, the Humidity Oven Stability Chamber delivers consistent environmental conditions. The microprocessor-based PID controller allows for precise adjustments of temperature and humidity, critical in pharmaceutical and research applications. With factory calibration and a certification provided, users can trust the results for compliance and repeatability.
Versatile Structure for Varied Applications
Constructed with a stainless steel interior and powder-coated mild steel exterior, this chamber is built for durability and hygiene. The adjustable, removable shelves, combined with customizable trays and flexible specimen accommodation, make it suitable for diverse testing needs. Heavy-duty castors ensure convenient relocation within your laboratory facility.
User-Friendly Features and Data Management
A full-view glass window, interior illumination, and intuitive digital display provide convenient observation and real-time tracking. Optional USB or SD card data logging streamlines documentation, while an audio-visual alarm system immediately notifies users of temperature or humidity deviations. The system is fully automatic, requiring minimal supervision.
FAQs of Humidity Oven Stability Chamber:
Q: How does the humidity oven stability chamber ensure uniform temperature and humidity distribution?
A: The chamber uses a motorized blower system that circulates air evenly throughout the interior. This ensures consistent and uniform temperature and humidity levels across all shelves, providing accurate testing conditions for all specimens.Q: What are the primary benefits of using stainless steel for the chambers inner material?
A: Stainless steel offers excellent resistance to corrosion and chemical reactions, ensuring long-lasting durability and easy cleaning. Its reflective surface also enhances uniform heat and humidity distribution within the chamber.Q: When should I calibrate the humidity oven stability chamber, and is certification provided?
A: Each unit is factory calibrated and supplied with an official calibration certificate. For ongoing precision, periodic recalibration is recommended, especially before critical testing schedules or after maintenance.Q: Where can the chamber be installed for optimal performance?
A: The chamber should be installed in a dust-free, well-ventilated indoor environment. Ensure that the mounting surface is level and that theres sufficient space around the chamber for airflow, maintenance, and mobility on its heavy-duty castors.Q: How do the audio-visual alarms work in this chamber?
A: The integrated alarm system instantly alerts users through sound and visual signals if there is any deviation from preset temperature or humidity levels, allowing for prompt corrective action and sample protection.Q: What is the process for data logging and monitoring test cycles?
A: The chamber offers optional USB or SD card data logging, enabling you to record, export, and analyze environmental data throughout testing. The digital LED/LCD display and immediate controller response further support real-time monitoring.Q: What advantages do adjustable shelves and customizable trays offer?
A: Adjustable and removable shelves allow users to configure the chamber interior for various specimen sizes and types, maximizing space utilization and accommodating multiple test requirements simultaneously.
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