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DSC-600C -40 ° C Low Temperature Differential Scanning Calorimeter

Product ID:WLcs060

Price: Please inquire PDF Format
Supply Ability:50 SETS/MON
Port:SHENZHEN
  • Product Introduction
  • Other information
  • Model NumberDSC-600C
    Brand NameNJHUICHENG
    Payment TermsTT,PAYPAL,Alibaba.com Pay
    DSC-600C -40 ° C Low Temperature Differential Scanning Calorimeter 
    Introduction:
    Differential Scanning Calorimetry (DSC), as a classic thermal analysis method for thermal effects under controllable program temperature, has been widely used in various fields of materials and chemistry, including research and development, process optimization, quality control, and failure analysis. By using DSC method, we can study the phase transition of inorganic materials, the melting and crystallization process of polymer materials, the polymorphic phenomenon of drugs, and the solid/liquid phase ratio of foods such as oils and fats. Instrument purpose: To measure physical and chemical changes related to heat, such as glass transition temperature, melting point, melting temperature, crystallization and crystallization heat, phase transition reaction heat, product thermal stability, curing/crosslinking, oxidation induction period, etc.
    characteristic:
    1. The integrated design of the whole machine reduces signal loss and interference, greatly improves signal sensitivity and resolution, and can obtain a more stable baseline.
    2. Equipped with an imported high-frequency core control processor, the processing speed is faster and the control is more efficient.
    3. Adopting imported high-sensitivity sensors effectively improves the sensitivity and accuracy of DSC signals.
    4. Independent atmosphere control can be achieved through software intelligent settings, and the instrument can automatically switch the gas path system, resulting in higher experimental efficiency.
    5. The lower and upper computers of the equipment system have multi-point temperature correction functions, which meet the needs of different experimental scenarios and improve the accuracy of temperature testing.
    6. It has two optional experimental modes, FTC and STC, with more friendly and flexible temperature control, which can meet the needs of different application scenarios and experiments. The temperature control during the experimental process is more accurate, and the analysis of sensor signals is more efficient.
    7. The fully temperature control system adopts an optimized adaptive dynamic PID algorithm, which greatly avoids the disadvantage of manual adjustment required by traditional PID algorithms and improves the robustness of dual-mode temperature control.
    8. The 12 step program temperature control setting makes the experimental methods more diverse.
    The sampling frequency of sensor signals can be set between 1 and 10Hz, making the experimental method more flexible and the data more controllable.
    10. Independent dual temperature sensors can simultaneously test the furnace temperature and sample temperature separately.
    11. The equipment system can conduct experiments on materials related to heating, cooling, and isothermal processes.
    12. The instrument adopts USB bidirectional communication, supports self recovery connection, is designed with intelligent software, has baseline deduction function, automatic plotting of experimental process, and intelligent processing of various data, such as enthalpy calculation, glass transition temperature, oxidation induction period, melting point and crystallization of substances, etc.
    Technical parameters:
    DSC range 0±2000mW
    temperature range -Mechanical refrigeration from 40 ℃ to 600 ℃
    toggle rate 16.6Hz
    heating rate 0.1100℃/min
    cooling rate 0.150℃/min
    Temperature Accuracy 0.001℃
    temperature resolution 0.01℃
    Temperature fluctuations ±0.01℃
    Temperature repeatability ±0.01℃
    DSC noise 0.001mW
    DSC resolution 0.01μW
    DSC accuracy 0.001mW
    DSC sensitivity 0.001mW
    experimental mode FTC and STC modes can be set arbitrarily
    Program temperature control Flexible setting of 12 stage temperature control throughout the entire stage
    temperature control Heating, constant temperature, cooling
    scan type Heating, cooling, isothermal scanning
    atmosphere control Two atmospheres can be freely set, and the instrument automatically switches
    gas flow 0200mL/min
    Pressure 0.2Mpa
    Display mode 24 bit color 7-inch LCD touch screen display
    data interface Standard USB interface
    Sample Rate 1~10Hz programmable settings
    instrument calibration Both the lower computer and the upper computer have multi-point temperature correction function
    Parameter standards Equipped with standard substances, users can correct temperature and enthalpy by themselves
    working voltage AC220V/50Hz or customized
    working power 300W
     
     

     
  • Introduction:
    Differential Scanning Calorimetry (DSC), as a classic thermal analysis method for thermal effects under controllable program temperature, has been widely used in various fields of materials and chemistry, including research and development, process optimization, quality control, and failure analysis. By using DSC method, we can study the phase transition of inorganic materials, the melting and crystallization process of polymer materials, the polymorphic phenomenon of drugs, and the solid/liquid phase ratio of foods such as oils and fats. Instrument purpose: To measure physical and chemical changes related to heat, such as glass transition temperature, melting point, melting temperature, crystallization and crystallization heat, phase transition reaction heat, product thermal stability, curing/crosslinking, oxidation induction period, etc.
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