Availability: In Stock
fibre optic spectrometer
Product Code: ATP3000/ATP3040
Ask About This Product
This product has a minimum quantity of 1000
application

  • ATP3000 Series Low-Noise, High-Sensitivity Fiber Optic Spectrometers utilize linear CMOS sensors with exceptional responsivity from UV to NIR wavelengths. With a readout rate of up to 10 MHz and low-noise signal processing circuitry, these spectrometers deliver fast and accurate spectral data acquisition.
  • Featuring high-pixel linear array detectors (2048 or 4096 pixels), the ATP3000 maintains high resolution while achieving enhanced sensitivity through optimized optical design with improved numerical aperture (NA). This results in significantly better signal-to-noise ratio and dynamic range. The spectrometer ensures highly stable measurements unaffected by ambient temperature variations, guaranteeing reliable results.
  • The ATP3000/ATP3000-4 models support SMA905 fiber optic input or free-space light input, with spectral data output via USB 2.0 or UART ports. Their flexible power supply requires only a 5V DC source, greatly simplifying integration in various applications.

Detector
Conversion efficiency 25uV/e-
Detector type Linear CCD sensor
Effective pixels ATP3000: 2048pixels ATP3040: 4096pixels
Pixels dimension ATP3000: 14μm×200μm ATP3040: 7μm×200μm
Detector model Hamamatsu S11639/ S13496
Sensitivity 1300(V/lx.s)
Dark noise ATP3000: 8.3RMS@25℃
Optical parameter
Optical resolution 0.01-1 nm(decide on slit and spectral range)
Incident Interface SMA905 connector or free space
Dynamic range ATP3000: 10000:1
confocal distance 77.5 mm for incidence / 112 mm for output
Working humidity < 90%NC
Wavelength range 180-1100 nm(available in custom wavelength)
SNR ATP3000: >1000: 1
Physical parameters
Dimensions 170×110×52 mm3
Weight 0.8kg
Sealing Anti-sweat
Optical configuration
Optical design F/4 crossed C-T
Incident slit 5,10, 25, 50,100,150, 200 μm (optional, available in custom width)
Electrical parameter
Power supply DC 5V±10%
Integration time 1-65535 ms
Operating current <350 mA(uncooled), <3.0A(cooled)
Storage temperature -20°c to + 70 °c
Operating temperature -10°c to + 45°c

    • Resolution: 0.05-2 nm
    • Detector Pixels: 2048/4096
    • High Sensitivity
    • Spectral Range: 190-1100 nm
    • Max Readout Rate: 10 MHz
    • Optical Design: Crossed Czerny-Turner
    • Integration Time: 1 ms - 65 s
    • Power Supply: USB-powered
    • Optical Input: SMA905 or free-space
    • Data Interface: USB 2.0 or UART

      • Micro-volume Rapid Spectrophotometer
      • Spectral Analysis / Radiation Spectroscopy / Spectrophotometric Analysis
      • Transmittance and Absorbance Detection
      • Reflectance Measurement
      • Ellipsometry
      • Laser Wavelength Determination
      • UV, Visible and Short-wave Near-infrared Wavelength Detection

      How to select High resolution & uncooled spectrometer from Optosky?
      Optosky ATP3XXX series are high resolution and uncooled spectrometer.
      ATP3000 (2048pixels) & ATP3040 (4096pixels) both uses crossed C-T, higher sensitivity, they are usually used to replace HR2000 and HR4000
      ATP3030 (2048pixels) & ATP3034 (4096pixels) both uses M-shape C-T, higher resolution, low stray light, uv enhanced application is highly recommended.
      ATP3330  (2048pixels) & ATP3334  (2048pixels) ) both uses M-shape C-T, higher resolution, low stray light, NIR range can also applicable to high resolution.

      How many topology structure of optical path for a spectrometer?
      There are commonly divided into 4 types of optical path, including crossed C-T, M-shape C-T, concave grating optical path, transmittance grating opitcal path.
      Crossed C-T: ATP2000P,ATP2002, ATP2400, ATP1010, ATP5020P, ATP5040, ATP6500
      M-shape C-T: ATP3030, ATP3034, ATP3330/4 ATP5030, ATP5034, ATP5330/4 
      Concave grating: ATP4230, ATP4020, ATP4050, ATP4070
      let's see the M-shape optical path looks like a number "3", so our models uses the 3rd number "3" to indicate M-shape optical path models.
      In generally, topology structure can decide resolution, sensitivity, stray light, and size of a spectrometer.
      Crossed C-T topology structure employs better sensitivity and compact size.
      M-shape C-T employs higher resolution and better stray light.
      Concave grating optical path employs high stray light.

      Which modular spectrometer can replace Ocean Insight FLAME-T-VIS-NIR-ES?
      Optosky ATP3040 Same performance as Ocean Insight FLAME-T-VIS-NIR-ES, with integration time 1ms-65s, 4096 pixels. 

      Write a review

      Note: HTML is not translated!