TruScan™ RM 휴대용 Raman 분석기
TruScan™ RM 휴대용 Raman 분석기
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TruScan™ RM 휴대용 Raman 분석기
TruScan™ RM 휴대용 Raman 분석기
TruScan™ RM 휴대용 Raman 분석기
TruScan™ RM 휴대용 Raman 분석기
Thermo Scientific™

TruScan™ RM 휴대용 Raman 분석기

Raman 분광학을 이용해 필요할 때 원료를 빠르게 식별할 수 있어 시료처리 비용을 감소시키고, 재고회전율을 높여줍니다.
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TRUTOOLSTruTools Chemometrics Package
TRUSCANRMTruScan RM 휴대용 Raman 분석기
TSRMTRUTOOLSTruScan RM Analyzer with TruTools Chemometrics
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TruTools Chemometrics Package
제약 및 생명공학 제조업체는 입고되는 원료부터 완제품까지 재료의 품질을 보장해야 합니다. Thermo Scientific™ TruScan™ RM 휴대용 Raman 분석기는 필요할 때 수초 내로 밀봉된 패키지를 통해 신뢰성 있는 재료 식별 검증이 가능합니다. 옵션으로 제공되는 Thermo Scientific™ TruTools™ 내장 계량분석화학 패키지를 통해 사용자는 복잡한 재질 분석 문제 해결을 위한 고급, 맞춤형, 정성 및 정량적 방법을 생성할 수 있습니다.

TruScan RM 분석기는 첨단 광학부와 특허 받은 다변량 잔류물 분석 기능과 함께 두 가지 스펙트럼 사전 처리 옵션으로 물질 식별을 위한 효과적인 계량분석화학 솔루션을 제공합니다. 이 분석기의 비파괴적이고 간단한 전자동 방식의 시료 분석 원리를 통해 셀룰로스 주성분 제품을 포함한 다양한 종류의 화학적 조성을 신속하게 확인할 수 있습니다.

TruTools 기능을 가진 TruScan RM 분석기는 분광기 성능이 더 강력해졌습니다. QA/QC 응용 분야에는 유사한 성분에 대한 개선된 원료 ID , 복수의 성분 ID, 완제품의 식별 및 정량화 등이 포함됩니다. 공정분석기술에서 응용 분야에는 증류, 반응 모니터링 및 분말 혼합 공정에 대한 앳라인(at-line) 종말점 결정이 포함됩니다.  

TruTools는 Eigenvector Research Inc.의 계량분석화학 소프트웨어 패키지인 Solo를 활용하며 이를 통해 사용자는 TruScan RM 분석기에 적용할 수 있는 모델을 개발할 수 있습니다. 

특징:

  • 무게 2 lbs(0.9kg) 미만
  • 견고한 설계; 화학 저항 및 충격 저항  
  • 생물측정 로그인, 복합적인 암호 옵션, 완전한 감사 추적 기능으로 21 CFR Part 11 및 cGMP 준수를 강화하였습니다.
  • 플라스틱 백, 유리 용기, 블리스터 팩, 투명 겔 캡을 통한 비접촉 분석이 가능합니다. 
  • PDF 일괄 보고서를 통해 생산 환경에 맞게 직관적인 워크플로로 수정되며 바코드 스캐너를 사용하므로 데이터 입력이 쉽습니다.
  • 쉬운 복수 기기 관리 기능으로 기기 및 식별 방법의 복제가 가능합니다.
  • 위조품 및 기준 미달 의약품 검사에 적합합니다.
  • 검증 문서(IQ/OQ/PQ) 및 표준 작업 절차를 제공합니다.
사양
설명TruTools Chemometrics Package
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자주 묻는 질문(FAQ)

Is Raman spectroscopy destructive to pharmaceutical materials?

Although Raman spectroscopy is typically considered a non-destructive technique, conditions such as exposure time, laser power, and the nature of the sample may lead to sample degradation. The energy transmitted by the laser depends on the duration of exposure and the wavelength. It may change the physical state and may destroy the sample.

Is it safe to use the TruScan RM Handheld Raman Analyzer?

The TruScan RM Handheld Raman Analyzer uses Raman spectroscopy where an unknown sample of material is illuminated with monochromatic (single wavelength or single frequency) laser light. The danger of using high-powered lasers must be recognized, especially when their wavelengths are in the Near Infrared area of the spectrum and, therefore, not visible to the eye. Fiber optic probes should be used with caution and with reference to appropriate government regulations regarding lasers and laser classes.

The laser used in the TruScan RM Handheld Raman Analyzer is class IIIb under the FDA CDRH classification system. Never point the instrument at yourself or others. Never start the instrument unless there is a sample fully covering the laser aperture. Always terminate a measurement prior to removing the sample from the laser aperture. Country-specific regulations with which the analyzer's laser complies is available in the user manual.

The TruScan RM Handheld Raman Analyzer is compliant with EP Chapter <2.2.48> and USP Chapter <1120>. To learn more, read the following documents:

Thermo Scientific TruScan RM United States Pharmacopeia (USP) Chapter <1120> - Raman Spectroscopy Statement of Compliance (https://assets.thermofisher.com/TFS-Assets/CAD/Product-Bulletins/TSRM-USP-Compliance-Oct-2016-FINAL.pdf) Thermo Scientific TruScan RM European Pharmacopeia (EP) Chapter <2.2.48> - Raman Spectroscopy Statement of Compliance (https://assets.thermofisher.com/TFS-Assets/CAD/Product-Bulletins/TSRM-EP-Compliance-Oct-2016-FINAL.pdf)

Can Raman spectroscopy verify stearates and other drug capsule lubricants?

Magnesium stearate is a white powder that becomes solid at room temperature. In the pharmaceutical manufacturing process, magnesium stearate is the most commonly used lubricant for capsules and tablets, and is used to help prevent pharmaceutical ingredients from adhering to manufacturing equipment. Calcium stearate, and to a lesser extent, zinc stearate, are also used as pharmaceutical excipients in manufacturing, primarily for tablet and capsule lubrication.

Magnesium stearate, calcium stearate, and zinc stearate share a similar chemical compound structure and are more challenging to verify during the incoming raw material inspection process. While some pharmaceutical handheld Raman analyzers have built-in multivariate residual analysis decision engines to identify most materials, more complex materials analysis requires users to build custom, advanced methods. Those Raman analyzers that utilize embedded chemometrics such as the TruScan RM Handheld Raman Analyzer can enable users to create customized predictive applications including classification using semi-quantitative and quantitative methods, which allows developing models that can be deployed on the analyzer. Read more in the technical note: Stearates verification using a handheld Raman analyzer (https://assets.thermofisher.com/TFS-Assets/CAD/Technical-Notes/stearates-verification-handheld-raman.pdf).

Can Raman spectroscopy analyze tablet film coatings?

Pharmaceutical companies that manufacture tablets, capsules and other solid dosage forms use a film coating on their products to differentiate visual appearance, to improve the ability to swallow and to mask objectionable tastes or odors. Film coatings also reduce tablet breakage and chipping as well as provide protection from light, moisture, and environmental gases. While the latest handheld Raman analyzers have a built-in multivariate residual analysis decision engine to identify most materials, more complex materials analysis requires users to build custom, advanced methods. Some handheld analyzers such as the TruScan RM Handheld Raman Analyzer utilize embedded chemometrics to enable users to create customized predictive applications including classification using semi-quantitative and quantitative methods, that result in Pass/Fail criteria to identify highly similar compounds such as tablet coatings. Read more in the technical note: Opadry verification using a handheld Raman analyzer (https://assets.thermofisher.com/TFS-Assets/CAD/Technical-Notes/opadry-verification-handheld-raman.pdf).

Do I need to be a scientist or expert to use Raman technology in pharmaceutical and drug manufacturing?

Some pharmaceutical handheld Raman analyzers are expressly designed for setup and use by non-experts. For example, the TruScan RM Handheld Raman Analyzer not only acquires the Raman spectrum of the material of interest but also, in real-time, determines the uncertainty of that measurement, given factors such as the sample characteristics, instrument telemetry, environment and testing environment. End users of field-material identification systems are not usually spectroscopy experts and, therefore, can rely on the instrument's built-in algorithm to convert instrument data to a qualitative result.