Easy to use, this research and development kit features the Research Studio Software and is the ideal solution for viewing, measuring, analyzing, and sharing thermal measurement data. Moreover, with a 29° FOV and <45 mK thermal resolution, this camera has thousands of temperature measurement points for precise thermal analysis.
Easy to use, this research and development kit features the Research Studio Software and is the ideal solution for viewing, measuring, analyzing, and sharing thermal measurement data. Moreover, with a 29° FOV and <45 mK thermal resolution, this camera has thousands of temperature measurement points for precise thermal analysis.
This Research and development kit is an affordable, ready-to-use solutions for thermal imaging analysis in proof-of-concept, electronics testing, and R&D applications. Providing thousands of temperature measurement points, users can eliminate thermal guesswork, reduce product development time, and increase product efficiency and reliability. These kits are the right choice for engineers and technicians who need to fully understand the thermal profiles of their systems or require defensible thermal data to support critical decisions.
Simple connections and standard manual focus lens options provide the ultimate flexibility to satisfy research and development needs. Users can quickly view, record, analyze and share thermal data with the included FLIR Research Studio software or take advantage of industrystandard connections to integrate into custom software applications when needed. When mobility is required, the compressed radiometric data transmitted over Wi-Fi eliminates the cord between the camera and workstation.
By offering WIFI connectivity, this camera shares data quickly and effortlessly with the Research Studio software. Effectively and accurately take thermal imagery with the 640 × 480 pixel resolution infrared camera and built-in visible camera. Versatile and efficient, this kit comes complete with the camera, focus plate, cooling plate, cables, power supply, and the Research Studio software.
Features
Applications
Detector Data | |
IR Resolution | 640 × 480 |
Thermal Resolution/NETD | <45 mK |
Focal Plane Array | Uncooled microbolometer |
Detector Pitch | 12 μm |
Spectral Range | 7.5 to 14.0 μm |
Image and Optical Data | |
Camera F-Number | 1.4 |
Lens Field of View | 29° |
Spatial Resolution (IFOV) | 0.84 mrad/pixel |
Lens Type | Fixed |
Focus | Adjustable with included focus tool |
Minimum Focus Distance | 0.1 m |
Visual Camera | Included |
Visual Resolution | 1280 × 960 |
Measurement | |
Object Temperature Range | -4 to 347°F (-20 to 175°C) -4 to 482°F (-20 to 250°C) 347 to 1832°F (175 to 1000°C) |
Accuracy | ±2°C (±3.6°F) or ±2% of reading, for ambient temperature 59 to 95°F (15 to 35°C) and object temperature above 32°F (0°C) |
Image Presentation | |
Digital Data | Via workstation running included Research Studio software |
Digital Data Streaming | Gigabit Ethernet (RTSP, GigE Vision), Wi-Fi |
Command and Control | Gigabit Ethernet (RTSP, GigE Vision), Wi-Fi |
Dynamic Range | 16-bit |
General Specifications | |
Image Modes in Research Studio | Infrared: Radiometric Visual: Non-radiometric Screen: Non-radiometric, selected in software (Thermal, MSX®, Visual, FSX) |
Wi-Fi | Connector Type: Female RP-SMA Standard: IEEE802.11a/b/g/n Connections: Peer to peer (ad hoc) or infrastructure (network) |
Gigabit Ethernet | Ethernet Image Streaming: Yes Ethernet Connector Type: M12 8-pin X-coded, female Ethernet Interface: Wired, Wi-Fi Ethernet Power: Power over Ethernet, PoE IEEE 802.3af class 3 Ethernet Type: 1000 Mbps |
Digital Input/Output | Connector Type: M12 Male 12-pin A-coded (shared with external power) Digital I/O Isolation Voltage: 500 V RMS Digital Input: 2× opto-isolated, Vin (low) = 0 to 1.5 V, Vin (high) = 3 to 25 V Digital Output: 3× opto-isolated, 0 to 48 V DC, max. 350 mA (derated to 200 mA at 60°C) Digital Output: Solid-state opto relay, 1× dedicated as fault output (NC) |
Power | Configuration: Power over Ethernet or external Connector Type: M12 Male 12-pin A-coded (shared with digital I/O) External Power Operation: 24/48 V DC, 8 W max Power Consumption: 7.5 W at 24 V DC typical; 7.8 W at 48 V DC typical |
Tripod Mounting | 1/4-20 UNC depth 7 mm + Ø5 depth 2.7 mm |
Atmospheric Transmission Correction | Based on inputs of distance, atmospheric temperature, and relative humidity |
Corrosion | ISO 12944 C4 G or H; EN60068-2-11 |
Encapsulation | IEC 60529, IP66 |
Environmental Conditions | –4 to 113°F (–20 to 50°C), with included cooling plate Maximum camera case temperature: 149°F (65°C) Humidity (operating and storage): IEC 60068-2-30/24 hours, 95% relative humidity, 77 to 104°F (25 to 40°C)/ 2 cycles EN60068-2-38 |
Housing Material | Aluminum |
Dimensions | 4.2 x 2.6 x 2.2" (107 × 67 × 57 mm), without bottom cooling plate |
Detector Data | |
IR Resolution | 640 × 480 |
Thermal Resolution/NETD | <45 mK |
Focal Plane Array | Uncooled microbolometer |
Detector Pitch | 12 μm |
Spectral Range | 7.5 to 14.0 μm |
Image and Optical Data | |
Camera F-Number | 1.4 |
Lens Field of View | 29° |
Spatial Resolution (IFOV) | 0.84 mrad/pixel |
Lens Type | Fixed |
Focus | Adjustable with included focus tool |
Minimum Focus Distance | 0.1 m |
Visual Camera | Included |
Visual Resolution | 1280 × 960 |
Measurement | |
Object Temperature Range | -4 to 347°F (-20 to 175°C) -4 to 482°F (-20 to 250°C) 347 to 1832°F (175 to 1000°C) |
Accuracy | ±2°C (±3.6°F) or ±2% of reading, for ambient temperature 59 to 95°F (15 to 35°C) and object temperature above 32°F (0°C) |
Image Presentation | |
Digital Data | Via workstation running included Research Studio software |
Digital Data Streaming | Gigabit Ethernet (RTSP, GigE Vision), Wi-Fi |
Command and Control | Gigabit Ethernet (RTSP, GigE Vision), Wi-Fi |
Dynamic Range | 16-bit |
General Specifications | |
Image Modes in Research Studio | Infrared: Radiometric Visual: Non-radiometric Screen: Non-radiometric, selected in software (Thermal, MSX®, Visual, FSX) |
Wi-Fi | Connector Type: Female RP-SMA Standard: IEEE802.11a/b/g/n Connections: Peer to peer (ad hoc) or infrastructure (network) |
Gigabit Ethernet | Ethernet Image Streaming: Yes Ethernet Connector Type: M12 8-pin X-coded, female Ethernet Interface: Wired, Wi-Fi Ethernet Power: Power over Ethernet, PoE IEEE 802.3af class 3 Ethernet Type: 1000 Mbps |
Digital Input/Output | Connector Type: M12 Male 12-pin A-coded (shared with external power) Digital I/O Isolation Voltage: 500 V RMS Digital Input: 2× opto-isolated, Vin (low) = 0 to 1.5 V, Vin (high) = 3 to 25 V Digital Output: 3× opto-isolated, 0 to 48 V DC, max. 350 mA (derated to 200 mA at 60°C) Digital Output: Solid-state opto relay, 1× dedicated as fault output (NC) |
Power | Configuration: Power over Ethernet or external Connector Type: M12 Male 12-pin A-coded (shared with digital I/O) External Power Operation: 24/48 V DC, 8 W max Power Consumption: 7.5 W at 24 V DC typical; 7.8 W at 48 V DC typical |
Tripod Mounting | 1/4-20 UNC depth 7 mm + Ø5 depth 2.7 mm |
Atmospheric Transmission Correction | Based on inputs of distance, atmospheric temperature, and relative humidity |
Corrosion | ISO 12944 C4 G or H; EN60068-2-11 |
Encapsulation | IEC 60529, IP66 |
Environmental Conditions | –4 to 113°F (–20 to 50°C), with included cooling plate Maximum camera case temperature: 149°F (65°C) Humidity (operating and storage): IEC 60068-2-30/24 hours, 95% relative humidity, 77 to 104°F (25 to 40°C)/ 2 cycles EN60068-2-38 |
Housing Material | Aluminum |
Dimensions | 4.2 x 2.6 x 2.2" (107 × 67 × 57 mm), without bottom cooling plate |