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Vision Datum  |  SKU: iBX-SWG991A

Câmera SWIR GigE Vision 640×512 257.8fps 400–1700nm | Sony IMX991 com Refrigeração iBX-SWG991A/J

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FAQ

Q: What is the spectral range of IMX991?
A: The Sony IMX991 sensor offers a spectral response range of 400nm to 1700nm, covering both the visible and short-wave infrared (SWIR) spectrum. This wide range enables imaging applications such as semiconductor inspection, silicon wafer analysis, spectroscopy, material sorting, and machine vision.

Q: Which sensor does this camera use?
A: This camera is equipped with the Sony IMX991 InGaAs sensor, featuring a resolution of 640 × 512 pixels and a 5μm pixel size. The sensor delivers high sensitivity, low noise performance, and excellent image quality across the 400–1700nm wavelength range.

Q: Can SWIR cameras see through silicon?
A: Yes. SWIR cameras can image through silicon because silicon becomes increasingly transparent at wavelengths above approximately 1100nm. This capability allows SWIR cameras to reveal internal structures, defects, and packaging features that are not visible with standard visible-light cameras, making them ideal for semiconductor inspection and failure analysis.

Q: What is a SWIR camera used for?
A: SWIR cameras are used in a wide range of industrial and scientific applications, including semiconductor inspection, machine vision, spectroscopy, solar cell inspection, laser beam analysis, defense imaging, agricultural monitoring, and quality control. Their ability to capture information beyond the visible spectrum makes them valuable for detecting features that conventional cameras cannot see.

Q: Why use TEC cooling in a SWIR camera?
A: TEC (Thermoelectric Cooling) helps reduce sensor noise and improve image stability by maintaining a controlled detector temperature. This is especially beneficial for long exposure imaging, low-light environments, and precision measurement applications where image quality and consistency are critical.

Q: How do I integrate a SWIR camera into a machine vision system?
A: SWIR cameras can be integrated into machine vision systems through standard industrial interfaces such as USB3.0 or GigE Vision. They can be connected to industrial PCs, image processing software, frame grabbers, and automation platforms. Depending on the application, the camera can be combined with SWIR lenses, illumination sources, and machine vision software for inspection, measurement, and process monitoring tasks.

Q: What is the difference between USB3.0 and GigE SWIR cameras?
A: USB3.0 SWIR cameras provide high-speed data transfer and low latency, making them ideal for laboratory, R&D, and local image acquisition. GigE SWIR cameras support longer cable distances, multi-camera systems, and industrial network integration, making them well suited for factory automation and machine vision applications.

Q: What industries commonly use Sony IMX991 SWIR cameras?
A: Sony IMX991 SWIR cameras are widely used in semiconductor inspection, machine vision, scientific research, solar cell testing, electronics manufacturing, and defense applications. Their 400–1700nm spectral sensitivity enables imaging beyond the visible spectrum for advanced inspection and analysis tasks.

Descrição do Produto

Câmera GigE SWIR iBX-SWG991A/J com Sensor Sony IMX991

A Câmera GigE SWIR iBX-SWG991A/J é uma solução de imagem de infravermelho de onda curta de alto desempenho, projetada para automação industrial, inspeção de semicondutores, pesquisa científica e sistemas de visão de máquina de longa distância.

Baseada no sensor InGaAs Sony IMX991, esta câmera oferece imagens SWIR confiáveis em uma faixa espectral de 400–1700nm, com uma resolução de 640 × 512 pixels e uma taxa de quadros estável de até 257.8fps.

Diferente dos modelos USB3.0, esta câmera SWIR GigE Vision é otimizada para transmissão de longa distância, sincronização de múltiplas câmeras e integração em redes industriais, tornando-a ideal para sistemas de inspeção distribuídos e ambientes de automação de fábrica.

Para garantir operação estável em condições exigentes, a câmera suporta ambos:

  • Resfriamento TEC (Resfriamento Termoelétrico) para imagem de precisão com baixo ruído
  • Resfriamento Externo Opção de Sistema para ambientes de alta temperatura ou operação contínua

Principais Características

  • Sensor SWIR InGaAs Sony IMX991
  • Faixa de Resposta Espectral de 400–1700nm
  • Resolução de 640 × 512
  • Taxa de Quadros de até 257.8fps
  • Tamanho de Pixel de 5μm
  • Interface GigE Vision (Pronta para Rede Industrial)
  • Opções de Resfriamento TEC / Resfriamento Externo
  • Imagem com Baixo Ruído e Alta Estabilidade
  • Projetada para Sistemas Industriais de Múltiplas Câmeras

Aplicações

  • Inspeção de Wafers de Semicondutores
  • Sistemas de Visão de Máquina Industrial
  • Automação de Fábrica & Controle de Qualidade em Linha
  • Científico & Imagem de Laboratório
  • Feixe de Laser & Análise Óptica
  • Inspeção de Células Solares
  • Defesa & Imagem de Vigilância

Especificações

Modelo iBX-SWG991A/J
Sensor Sony IMX991
Tipo de Sensor Sensor SWIR InGaAs
Resolução 640 × 512
Tamanho do Sensor 1/4"
Tamanho do Pixel 5μm × 5μm
Faixa Espectral 400nm–1700nm
Taxa de Quadros 257.8fps
Interface GigE
Modo de Resfriamento Resfriamento TEC / Resfriamento Externo
Tipo de Imagem SWIR (Infravermelho de Onda Curta)
Aplicação Industrial, Científico, Semicondutores, Defesa

 

GigE vs USB3.0 Diferença

Em comparação com câmeras SWIR USB3.0, a versão GigE oferece:

  • Maior distância de transmissão por cabo
  • Melhor adequação para redes industriais
  • Integração mais fácil em sistemas distribuídos
  • Sincronização de múltiplas câmeras mais estável

Os modelos USB3.0 focam mais na aquisição local de alta velocidade, enquanto os modelos GigE são otimizados para implantação em escala de fábrica e integração de sistemas.

Sony IMX991 SWIR camera inspecting semiconductor wafers for defect detection and quality control

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