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FLIR A400 Automation Thermal Camera with Image Streaming

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A400-IS
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Teledyne FLIR A400 Image Streaming Automation Thermal Camera – Choice of Lens

Identify potential issues before failure occurs, prevent fires, optimise process control, and improve quality assurance using the Teledyne FLIR A400 Image Streaming Automation Thermal Camera. This infrared-imaging automation camera has an IR resolution of 320 x 240px and can measure temperatures between -20°C and +1500°C to an approximate accuracy of ±2°C/2%. The motorised focus improves the precision of temperature readings for both far away and close objects. The Teledyne FLIR A400 Image Streaming Automation Thermal Camera delivers compressed radiometric thermal image streaming, making it possible to connect multiple cameras and share footage over Wi-Fi. It also supports GigE and RTSP data streaming protocols and is compatible with third-party SDK and application software support. Linear temperature output simplifies the use of temperature data with third-party software. Additionally, the Teledyne FLIR A400 Image Streaming Automation Thermal Camera is compliant with GigE Vision and GenIcam™. Delivering unmatched power and flexibility, the Teledyne FLIR A400 Image Streaming Automation Thermal Camera is ideal for the most complex remote monitoring and temperature measurement objectives. It is available with a range of lenses and optional extras.

Meet the new FLIR AXXX Series Fixed Mount Thermal Imaging Cameras

Teledyne FLIR A400 Image Streaming Automation Thermal Camera Key Features

  • An infrared-imaging automation camera with image-streaming software
  • Identify thermal issues throughout the manufacturing process
  • Identify potential issues before failure
  • Prevent fires
  • Optimise process control
  • Improve quality assurance
  • Available with a range of lenses
  • IR resolution: 320 x 240px
  • Temperature range: -20°C to 120°C and 300°C to 1500°C
  • Accuracy: ±2°C/2%
  • Compressed radiometric thermal image streaming
  • Motorised focus
  • OPTIONAL FSX® technology
  • Integrates seamlessly into monitoring systems
  • Compliant with GigE Vision
  • Compliant with GenIcam™
  • Supports GigE and RTSP data streaming protocols
  • Compatible with third-party SDK and application software support
  • Linear temperature output simplifies use with third-party software
  • OPTIONAL multi-image streaming
  • Delivers unmatched power and flexibility
  • Ideal for the most complex remote monitoring and temperature measurement objectives

What’s Included?

  • Teledyne FLIR A400 Image Streaming Automation Thermal Camera
  • Your Choice of Lens

FLIR A400 Image Streaming Automation Thermal Camera Technical Specifications 

Digital I/O connector type M12 12-pin A-coded, Male (shared with external power)
Digital Inputs 2x opto-isolated, Vin(low)= 0–1.5 V, Vin(high)= 3–25 V
Digital Output Purpose Programmatically set; fault (NC)
Digital Outputs 3x opto-isolated, 0–48 V DC, max. 350 mA; solid-state opto relay; 1x dedicated as Fault output (NC)
Encoding GVSP video streaming: uncompressed GVSP radiometric streaming: temperature linear and FLIR radiometric
Ethernet Interface Wired, Wi-Fi (optional)
WiFi Optional feature purchased separately. RP-SMA, female connector
EMC
  • ETSI EN 301 489-1 (radio)
  • ETSI EN 301 489-17 (radio)
  • EN 61000-4-8 (magnetic field)
  • FCC 47 CFR Part 15 Class B (emission US)
  • ISO 13766-1 (EMC - Earth-moving and building construction machinery)
  • EN ISO 14982 (EMC - Agricultural and forestry machinery)
Image Frequency 30 Hz
Thermal Sensitivity/NETD Lens dependent
Accuracy ±2°C (±3.6°F) or ±2% of reading, for ambient temperature 15°C–35°C (59°F–95°F) and object temperature above 0°C (32°F)
Communication & Data Storage 
Digital I/O connector type M12 12-pin A-coded, Male (shared with external power)
Digital I/O isolation voltage 500 VRMS
Digital input purpose
  • NUC; NUC disable; image TAG (Start, Stop, General); image flow control (acc. SFNC 2.3)
  • Single frame (on trigg)
  • Multiframe (on trigg)
  • Continuous
  • Frame rate
  • ROI
Digital Inputs 2x opto-isolated, Vin(low)= 0–1.5 V, Vin(high)= 3–25 V
Digital Output Purpose Programmatically set; fault (NC)
Digital Outputs 3x opto-isolated, 0–48 V DC, max. 350 mA; solid-state opto relay; 1x dedicated as Fault output (NC)
Encoding GVSP video streaming: uncompressed GVSP radiometric streaming: temperature linear and FLIR radiometric
Ethernet For control, result, image, and power
Ethernet Communication
  • GigE Vision ver. 1.2
  • Client API GenICam compliant
  • TCP/IP socket-based FLIR proprietary
Ethernet Connector Type M12 8-pin X-coded, female; RP-SMA, female
Ethernet Interface Wired, Wi-Fi (optional)
Ethernet Power Power over Ethernet, PoE IEEE 802.3af class 3
Ethernet Protocols
  • IEEE 1588
  • SNMP
  • TCP, UDP, SNTP, RTSP, RTP, HTTP, ICMP, IGMP, sftp (server), FTP (client), SMTP, DHCP, MDNS (Bonjour), uPnP
Ethernet Standard IEEE 802.3
Ethernet Type 1000 Mbps
Multicast Yes
RS-232 NA
Unicast Yes
WiFi Optional feature purchased separately. RP-SMA, female connector
Imaging & Optical 
Available Lenses 6°, 14°, 24°, 42°, Dual FOV (14° + 24°) athermalized lenses
Contrast Enhancement GVSP video streaming: FSX® / Histogram equalization (IR only)
Detector Pitch 17 µm
Focal Plane Array (FPA) Uncooled microbolometer
Image Frequency 30 Hz
Image Source GVSP video streaming: visual / IR / MSX® (visual camera is an optional feature) GVSP radiometric streaming: IR camera
IR Resolution 320 × 240
Multi-Streaming No, one stream only
Overlay With / Without
Pixel Format GVSP video streaming: YUV422 or MONO 8 GVSP radiometric streaming: MONO 16
Radiometric IR video streaming GVSP (GigE Vision) protocol
Spectral Range 7.5–14 µm
Streaming Resolution GVSP video streaming: 640 × 480 pixels GVSP radiometric streaming: 320 × 240 pixels
Thermal Sensitivity/NETD Lens dependent
Video Streaming GVSP (GigE Vision) protocol
Visible Camera Optional accessory
Measurement & Analysis 
Accuracy ±2°C (±3.6°F) or ±2% of reading, for ambient temperature 15°C–35°C (59°F–95°F) and object temperature above 0°C (32°F)
Atmospheric transmission correction Based on inputs of distance, atmospheric temperature, and relative humidity
Emissivity Correction Variable from 0.01 to 1.0
External Optics & Windows Correction Based on input of optics/window transmission and temperature
Measurement Corrections Global object parameters
Object Temperature Range -20°C to 120°C (-4°F to 248°F), 0°C to 650°C (32°F to 1202°F), 300°C to 1500°C (572°F to 3632°F)
Reflected apparent temperature correction Based on input of reflected temperature
General
Base Mounting 4× M4 on 4 sides
Housing material Aluminium
Size (L x W x H) 123 × 77 × 77 mm (4.84 × 3.03 × 3.03 in)
Weight 0.82 kg (1.8 lb), camera only
Environmental & Certifications 
Corrosion
  • ISO 12944 C4 G or H
  • EN60068-2-11
EMC
  • ETSI EN 301 489-1 (radio)
  • ETSI EN 301 489-17 (radio)
  • EN 61000-4-8 (magnetic field)
  • FCC 47 CFR Part 15 Class B (emission US)
  • ISO 13766-1 (EMC - Earth-moving and building construction machinery)
  • EN ISO 14982 (EMC - Agricultural and forestry machinery)
Encapsulation IEC 60529, IP 54, IP66 with accessory
Humidity (Operating and Storage) IEC 60068-2-30/24 hours, 95% relative humidity, 25°C–40°C (77°F–104°F)/2 cycles
Operating Temperature Range

-20°C to 50°C (–4°F to 122°F):

  • -20°C to 40°C (-4°F to 104°F) (in free air)
  • 40°C to 50°C (104°F to 122°F) (mounted on cooling plate accessory) Maximum camera case temperature: 65°C (149°F)
Radio Spectrum
  • FCC 47 CFR Part 15 Class C (2.4 GHz band US)
  • FCC 47 CFR Part 15 Class E (5 GHz band US)
  • RSS-247 (2.4 GHz and 5 GHz band Canada)
  • ETSI EN 300 328 V2.1.1 (2.4 GHz band EU)
  • ETSI EN 301 893 V2.1.1 (5 GHz band EU)
Shock IEC 60068-2-27, 25 g
Tripod Mounting UNC ¼″-20 on 2 sides
Vibration
  • IEC 60068-2-6, 0.15 mm at 10–58 Hz and 2 g at 58–500 Hz, sinusoidal
  • IEC 61373 Cat 1 (Railway)
Power 
External Power Operation 24/48 V DC 8 W max
External Voltage Allowed range 18–56 V DC
Power Connection M12 12-pin A-coded, male (shared with Digital I/O)
Power Consumption
  • 7.5 W at 24 V DC typical
  • 7.8 W at 48 V DC typical
  • 8.1 W at 48 V PoE typical
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