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Laboratory Raman Microscope
Product Code: ATR8300Pro
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  • The ATR8300Pro Confocal Raman Microsope combines the advantages of microscopes and Raman spectrometers. The Raman microscope detection platform is a visual and precise positioning Raman detection platform, which allows the user to detect the Raman signals of different surface states on the sample, and can be displayed simultaneously on the computer, which is greatly Facilitates Raman micro-area detection.
  • ATR8300Pro raman instrument is equipped with an objective lens specially designed for the Raman system, which makes the laser spot close to the diffraction limit. The focus information is accurately and intuitively displayed on the computer through a 5-megapixel camera, which improves the quality of the Raman spectrum.
  • ATR8300Pro adopts a unique moving part without optical path switching (patented), which perfectly solves the loss of optical path for camera imaging, realizes the separation of camera imaging and Raman signal collection, and obtains the best signal strength.
  • At the same time, ATR8300Pro uses high-performance Raman specially optimized for micro-Raman systems. It is industry-leading in terms of sensitivity, SNR, stability, etc., providing a strong guarantee for Raman research.


Table 1 ATR8300Pro Product Selection

Model

Spectrometer focal length

Excitation wavelength/nm

Power/mW

Wavenumber range*1/cm-1

Minimum resolution/cm-1

ATR8300Pro-FL210

210mm

532

100

150~10000

2.2

633/638

80

2.2

785

350

2.5

1064

350

6.2

ATR8300Pro-FL350

350mm

532

100

150~10000

1.4

633/638

80

1.4

785

350

2.1

1064

350

5.1

ATR8300Pro-FL510

510mm

532

100

150~10000

0.9

633/638

80

0.9

785

350

1.4

1064

350

3.6

ATR8300Pro-FL810

810mm

532

100

150~10000

0.5

633/638

80

0.5

785

350

1.0

1064

350

2.7

ATR8300Pro-LT: Deep cooling to -30℃, ultra-long integration time (up to 1.3h)
ATR8300Pro-SCM: Cooled SCMOS detector
ATR8300Pro-BS: Basic type
ATR8300Pro-AF: Autofocus type
ATR8300Pro-MP: Mapping, autofocus
*1: Customizable low wavenumber Raman (starting from 50cm-1), terahertz Raman (starting from 10cm-1)
The above parameters can be customized
*2: The parameters in the table are all standard parameters, and other parameters can be customized.

Confocal Raman Microscope
Wavelength 200nm-1100nm, 900-1700nm
SNR >6000:1
Dynamic Range 13000:1
Spectral Range 150~10000
Detector Deeply cooled linear area array back-illuminated CCD, deep cooledInGaAsdetector
Pixel 14×14 μm, 25×500μm
Spectral Resolution 0.6-6.2
Spectral Stability σ/μ < 0.8% (COT 8 hours)
Spot Diameter >1μm
Interface USB2.0
Microscope Camera 5-megapixel camera
Focus Method True confocal
Laser Stability σ/μ <±0.2%
Laser Linewidth 0.08 nm
Laser Power 500mW (Max. 100mW for 532nm)

  •         Full-automated, auto-focusing, auto-scan.
  •         Ultra-high resolution 1cm-1, optimum up to 0.35 cm-1.
  •         Ultra-high sensitivity, SNR>6000:1.
  •         Supports up to 2 Lsers, excitation wavelengths: 405, 473, 532, 633, 785, 830, 1064nm optional.
  •         True confocal, accurate Raman mapping.
  •         Ultra-high spatial resolution.
  •         Unique software controlled to switch optical path.
  •         Imported optical devices, good product performance.
  •         Fast positioning, quick locate focal position.
  •         High quality objective, micro spot.
  •         5-mega pixel camera, crisp clear images.
  •         Optical fiber transmits signals, free and flexible.
  •         USB2.0 in direct connect with PC.

  • Nanoparticles And New Materials
  • Universities And Research Institutes
  • Biotechnology : Biological Sciences
  • Biopharma : Forensic Medicine Identification
  • Material Science
  • Chemistry : Medical Immunoassay
  • Agriculture And Food Identification : Food & Beverage
  • Water Pollution Analysis
  • Energy: Gem And Inorganic Mineral Identification
  • Environment: Environmental Science

Q: What is the ATR8300Pro Confocal Raman Microscope?
A: The ATR8300Pro is a state-of-the-art confocal Raman microscope that combines the functions of a traditional microscope with a Raman spectrometer. It is designed for high-precision Raman detection of different surface states of a sample, with results displayed in real-time on a computer screen. This facilitates efficient and accurate Raman micro-area detection.


Q: What makes the ATR8300Pro unique compared to other Raman microscopes?
A: The ATR8300Pro features several unique advantages:
A specially designed objective lens for Raman systems that brings the laser spot close to the diffraction limit, improving the quality of the Raman spectrum.
A patented moving part design without optical path switching, reducing optical path loss and optimizing signal strength.
High-performance Raman components optimized for micro-Raman systems, leading the industry in sensitivity, signal-to-noise ratio (SNR), and stability.


Q: What are the key specifications of the ATR8300Pro?
A: Key specifications of the ATR8300Pro include:
Full automation with auto-focusing and auto-scan capabilities.
Ultra-high resolution of 1 cm⁻¹, with an optimum resolution up to 0.35 cm⁻¹.
Ultra-high sensitivity with an SNR greater than 6000:1.
Support for up to two lasers, with excitation wavelengths of 405, 473, 532, 633, 785, 830, and 1064 nm optional.
True confocal setup for accurate Raman mapping.
Ultra-high spatial resolution.
Software-controlled optical path switching for flexibility.
Imported high-quality optical devices for superior performance.


Q: What types of applications is the ATR8300Pro suitable for?
A: The ATR8300Pro is suitable for a wide range of applications, including:
Nanoparticles and new materials research
Biotechnology and biological sciences
Biopharma and forensic medicine identification
Material science and chemistry
Medical immunoassay
Agriculture and food identification
Water pollution analysis
Energy and gem/inorganic mineral identification
Environmental science


Q: How does the ATR8300Pro ensure high-quality imaging and precise focus?
A: The ATR8300Pro is equipped with a high-quality objective lens that creates a micro-spot laser close to the diffraction limit. It uses a 5-megapixel camera to provide crisp, clear images, with the focus information accurately displayed on a computer screen. This setup allows for fast positioning and quick location of the focal position, ensuring high-quality imaging and precision in Raman signal collection.


Q: Can the ATR8300Pro support multiple excitation wavelengths?
A: Yes, the ATR8300Pro supports up to two lasers simultaneously, with optional excitation wavelengths of 405, 473, 532, 633, 785, 830, and 1064 nm. This flexibility allows users to choose the optimal wavelength for their specific sample and application.


Q: What benefits does the patented design of the ATR8300Pro provide?
A: The patented design of the ATR8300Pro features a unique moving part mechanism without optical path switching. This innovation eliminates optical path loss during camera imaging, allowing for the separation of camera imaging and Raman signal collection. This ensures maximum signal strength and high-quality Raman data acquisition.


Q: Is the ATR8300Pro suitable for high-throughput or automated experiments?
A: Yes, the ATR8300Pro is fully automated, featuring auto-focusing and auto-scan capabilities, making it ideal for high-throughput and automated experiments. This automation simplifies the Raman analysis process and enhances experimental efficiency.


Q: What industries or research fields would benefit from using the ATR8300Pro?
A: The ATR8300Pro is highly beneficial for a range of industries and research fields, including universities and research institutes, biotechnology, biopharma, material science, chemistry, agriculture and food safety, environmental science, and energy sectors. It is also used for forensic medicine identification, water pollution analysis, and gem and mineral identification.


Q: How does the ATR8300Pro handle environmental or challenging sample conditions?
A: The ATR8300Pro is designed with high stability and sensitivity to handle a variety of challenging sample conditions. Its advanced optics and detection platform allow for precise Raman analysis even in complex environments, making it suitable for environmental science and other fields requiring robust analytical performance.

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