PerkinElmer

熱分析

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使用我們全面的熱分析儀器系列,提高熱分析的精確度,靈敏度和性能。我們業界領先技術的應用包括:

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  • 納米材料
  • 涂料
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僅供科學研究,非臨床診斷用途。

產品與服務 (14)
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  • Thermal Analysis (9)

1-12 的 14 產品與服務

  • LAB SYS-DSC 8500

    DSC8500擁有第二代HyperDSC技術、雙爐體設計和更佳的測試能力,其準確度和靈敏度勝過目前任何一款DSC。
  • DMA 8000 N5330101

    DMA 8000 SYS QUARTZ WINDOW SS/Ti CLAMPS

    DMA 8000的創新型設計、高效靈活的操作使之成為材料研究開發和生產線質量控制的理想儀器。可廣泛應用于聚合物、復合材料、制藥以及食品行業。
  • DSC6000

    DSC 6000

    DSC6000型差示掃描量熱分析儀采用單爐體設計,除了具備DSC4000型儀器的所有性能優勢以外,還可提供給您更多的特性設計。標配的溫度調制技術(MT-DSC)簡化了數據分析過程,適用于新產品的研發以及疑難問題解決等應用領域。
  • TMA4000_Silhouette_wNameplate_320px

    TMA 4000 實驗室系統, 100-230V

    PerkinElmer公司的TMA 4000是一款設計簡潔、使用方便、穩固耐用的熱機械分析儀,非常適合于精確測量微型元器件/材料的膨脹系數(CTE)等應用領域。
  • TGA 4000 N5370210

    TGA 4000 系統, 100-240V/50-60Hz

    TGA 4000 爐體采用集約式陶瓷設計,溫度控制準確度和精度更高。其陶瓷爐體耐化學腐蝕性優異,適用于多種活性氣體氣氛,可充分拓展您的研究領域。
  • Simultaneous Thermal Analyzer (STA) 8000

    同步熱分析儀 (STA) 8000

    STA 8000同步熱分析儀可提供您可以依賴的性能,可靠性和生產力。
  • DSC 4000 系統, 100-240V/50-60Hz

    DSC4000型差示掃描量熱儀采用單爐體設計,結構緊湊,性能十分優異。應用范圍廣泛,覆蓋了從日常教學科研、新材料表征藥物研發以及市場常規檢測等諸多領域。可提供可靠的性能、優異的數據重現性以及簡便的操作方法。此外,其包覆式熱電偶設計可耐受氧氣和化學物質的侵蝕,服役壽命長。
  • 同步熱分析儀 (STA) 6000

    The STA 6000 同步熱分析儀可提供您可以依賴的性能,可靠性和生產力。
  • DSC 8000

    DSC 8000特有的雙爐體技術,直接測量兩個獨立爐體之間熱流變化,可在全程溫度范圍得到非常準確的能量數據,從而滿足您在科研方面的高級需求。
  • TGA 8000

    PerkinElmer公司全新推出的TGA8000?型熱重分析儀不僅可以讓您完全掌控樣品的測試環境,而且兼顧了測試所需的高通量和數據可靠性,甚至在無人值守的狀態下依然可以完美的高效運行。另外,PerkinElmer公司先進的聯用技術賦予這款儀器完美的與FTIR,MS,GC/MS進行聯合使用,讓您能夠透徹的研究逸出氣體的定性定量信息。
  • TGA 8000 Thermogravimetric Analyzer

    TGA 8000 Thermogravimetric Analyzer

    Our TGA 8000? thermogravimetric analyzer gives you complete control over your sample environment and delivers high throughput and reliability, even unattended. Plus, advanced hyphenation technology works beautifully with FT-IR, MS, GC/MS, and other systems for better understanding of evolved gases. In other words, this is complex characterization made simple.
  • PerkinElmer

    Autosampler Platinum Pan Kit for Pyris

    We offer a complete portfolio of consumables, accessories and supplies that deliver optimal performance in measuring the coefficient of thermal expansion.
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Business Insights (12)
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  • Application Note (10)
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1-12 的 12 Business Insights

  • 產品手冊

    The Power of the Sun, Solar Energy Development Solutions

    As the demand for solar power continues to grow, there needs to be a clear focus on different key issues in the life cycle of a solar cell. These issues are: efficiency, durability and cost. Coupling PerkinElmer’s application knowledge and experience together with our product portfolio, we can help manufacturers overcome these obstacles. At PerkinElmer, we’re taking action to ensure the quality of our environment.

  • 應用文獻

    A novel method (TG-IR) for the rapid determination of Total Petroleum Hydrocarbons (TPH) in soil

    A gas chromatographic analysis of the extract can provide even greater sensitivity and more detailed compositional information, but further increases the time required for the analysis. Thermogravimetric analysis coupled to infrared spectroscopy (TG-IR) can provide detailed information about the amount and nature of the pollution, while requiring no sample preparation at all. This application note illustrates the kind of data that can be obtained with a modern TG-IR system.

  • 應用文獻

    Study Rigid Amorphous Fraction in Polymer Nano-Composites by StepScan and HyperDSC

    Heat capacity measurement has been performed in order to detect a possible second Tg on nanocomposites of polymethyl methacrylate (PMMA) with silicon oxide nanoparticles of different shape. StepScan? DSC was used for determination of precise heat capacity and HyperDSC? to prevent degradation and identify devitrification of the RAF at elevated temperatures.

  • 應用文獻

    Soot Content Determination of In-Service Lubricants of Diesel Engine as Per ASTM D5967 Annex A4

    Internal combustion in an engine produces soot as a result of incomplete fuel combustion. The soot deposits deplete the quantity of dispersant additives which may cause an increase in viscosity which in turn increases engine wear. These soot particles adversely affect the engine performance and can lead to damage of the engine parts. This application note demonstrates the quantification of soot content as well as the repeatability of the measurement.

  • 應用文獻

    Analysis of Polluted Soil by TG-IR Technique

    One of the most challenging analytical problems with increasing importance is the possibility to analyze soil polluted by the dispersion of organic fluids which sometimes features particularly high boiling points. The current techniques used solvent extraction and headspace chromatographic analysis, have shown their limits. Solvent extraction needs time consuming sample preparation. Headspace makes it impossible to heat the sample at temperatures exceeding 200 °C, which risks not being able to identify the heaviest fractions of the polluting agents.

  • 應用文獻

    Pharmaceutical Compounds are Analyzed in Half the Time by Simultaneous TGA-DSC

    In the “Early Drug Discovery Phase” of pharmaceutical development when there is a minimum amount of synthesized drug candidate, quick thermal analysis using a small amount of sample is the norm. The sample amount could be less than 3 mg. Because of the rush to identify possible drug candidates, analytical answers must be given within the day. The STA 6000 with its sensitivity of 0.1 μg allows minimum sample material to obtain reproducible results in half the time.

  • 應用文獻

    Proximate Analysis of Coal and Coke using the STA 8000 Simultaneous Thermal Analyzer

    The purpose of this study is to demonstrate the proximate analysis of two standard samples using the STA and show that the performance is easily able to allow this moderate cost, small profile and sturdy instrument to be used for this type of routine analysis.

  • 應用文獻

    Curing Determination of EVA for Solar Panel Application

    This study shows that DSC can be used to study the curing degree of the EVA resin by measuring the residual curing enthalpy. The data show that the residual curing enthalpy can be correlated to the curing time in a linear way. The DSC test is quick and easy.

  • 應用文獻

    HyperDSC for High Throughput Formulation Development

    The concept of High-Throughput Design has gained more and more interest as a way to increase profitability and to decrease research costs. One technique that can increase the ability of a laboratory to evaluate formulations is HyperDSC? or High Ramping Rate DSC. HyperDSC is the ability to quantitatively measure small samples at extreme heating and cooling rates, typically 100-500 °C/min.

  • 應用文獻

    High Resolution Characterization of Pharmaceutical Polymorphs Using Power Compensation DSC

    Many pharmaceutical materials exhibit polymorphism, which means that, depending upon the given processing conditions, the crystalline form may exist in two or more states. The crystalline states or forms exhibit different levels of thermodynamic stabilities and an unstable form can melt at a temperature significantly less than the melting point of the thermodynamically stable form. Depending upon the conditions used to generate the crystalline form(s), the drug may exhibit one or more unstable, polymorphic crystalline states.

  • 應用文獻

    Improved HyperDSC Method to Determine Specific Heat Capacity of Nanocomposites and Probe for High-Temperature Devitrification

    Where ΔCp and ΔCp pure are the changes in specific heat at the glass transition temperature, Tg, for the composite, and for the unfilled polymer, respectively. This work suggests an alternative method for determining Cp that takes advantage of fast heating and cooling rates to obtain quantitative Cp in the upper temperature region without having to dwell in that high temperature region to establish an upper isothermal.

  • 案例分析

    Renault F1? Team - Stronger and Safer with PerkinElmer Analysis

    PerkinElmer has been helping Renault F1 Team's Enstone Technical Center with their analytical needs for nearly 30 years. PerkinElmer began by outfitting the team’s testing lab with the analytical instrumentation needed to conduct materials testing. Today, a dedicated PerkinElmer scientific laboratory operates within the team’s Enstone facility where the latest thermal analysis, infrared spectroscopy, and imaging technologies are being utilized for proactive monitoring, issue prevention, and performance enhancement of the team’s single seater. This case study shows you how we offer analytical expertise in helping Renault F1 Team master the thermal stability challenge.

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