Inspectahire UK

FLIR G-SERIES

FLIR G-SERIES

The FLIR Gx320, G620, and Gx620 OGI cameras are used to detect hydrocarbons, methane (CH4), and other Volatile Organic Compound (VOC) emissions from multiple stages of the oil and gas supply chain, as well as other industrial markets. Designed with your safety and efficiency in mind, these cooled, high-resolution cameras can detect environmentally harmful gases from safe distances. Reduce inspection time by scanning large areas without interfering or shutting down large-scale operations. Featuring innovative gas quantification analytics inside the camera and a rotating, color LCD touch screen, these FLIR hydrocarbon OGI cameras are ideal for detecting gas emissions in complex systems including refineries, petrochemical facilities, natural gas well pads, compression stations, and power generation plants. Combined with FLIR IgniteTM software, the FLIR Gx320, G620, and Gx620 cameras allow you to easily upload images and videos to the cloud where you can edit, organize, store, and share data.

Features
SUPERIOR GAS VISUALIZATION AND QUANTIFICATION

Detect gas leaks accurately in real-time

  • Quantify gas leaks in-camera, eliminating the need for a secondary device
  • Auto-adjust the level and span of your image with 1-Touch Level/Span
  • Certified and classified for use in hazardous environments
  • Meets many regulatory compliance standards, including U.S. EPA OOOOa
IMPROVED SOFTWARE INTEGRATION

Record and report findings efficiently with the FLIR ecosystem

  • Effortlessly edit and store images in the cloud, and wirelessly transfer files using the included FLIR Ignite cloud service
  • Easily incorporate with third-party software solutions
  • Built-in Wi-Fi and Bluetooth® allow you to connect to smartphones or tablets
  • Conveniently navigate large areas with FLIR Inspection Route and GPS log on board
BETTER ERGONOMICS FOR OPERATION

Comfortably interact with the camera

  • Expand inspection capabilities with quick and easy exchangeable lens options
  • View targets from any direction with rotating 10.16 cm (4 in) LCD touchscreen
  • Efficiently operate with improved touchscreen Graphical User Interface (GUI)
  • Advanced features to streamline the inspection process, including Multi-REC (recording mode)
Additional Information
FLIR Gx620 FLIR Gx620 – Handheld OGI for hazardous environments The FLIR Gx620 is a high-performance optical gas imaging (OGI) camera for visualising hydrocarbons, methane (CH₄), and other VOC emissions across the oil & gas value chain and wider industrial sites. Its cooled core and up to 640 × 480 thermal resolution reveal small leaks from safe standoff distances, helping teams cut inspection time without disrupting operations. Why it stands out • In-camera quantification: G-Series cameras include gas quantification analytics to estimate leak type and severity on the device—no secondary kit required. • Certified where it counts: All G-Series models meet U.S. EPA OOOOa sensitivity, while Gx320 and Gx620 add ATEX/IECEx compliance for work in hazardous areas. • Built for the field: Designed to scan large areas quickly and document results for LDAR workflows. Typical applications Refineries, petrochemical plants, natural-gas well pads, compression stations, and power generation—anywhere complex systems demand fast, reliable leak detection in potentially explosive atmospheres. FLIR Gx320 FLIR Gx320 – Handheld OGI for hazardous areas The FLIR Gx320 is a cooled optical gas imaging (OGI) camera built to visualise hydrocarbons, methane (CH₄) and other VOC emissions across the oil & gas value chain and wider industrial sites. Its 320 × 240 thermal resolution reveals leaks from safe standoff distances, helping teams scan large areas quickly without disrupting operations. Why it stands out • In-camera gas quantification: G-Series cameras estimate leak type and severity on the device—no secondary instrument required. • Certified where it counts: All G-Series models meet U.S. EPA OOOOa sensitivity, while the Gx320 is ATEX-compliant for use in hazardous locations. • Built for LDAR workflows: Designed to document findings and speed inspections across complex assets. Typical applications Refineries, petrochemical facilities, natural-gas well pads, compression stations, and power generation—anywhere fast, reliable leak detection is required in potentially explosive atmospheres.
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