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Teledyne FLIR A70 Advanced Smart Sensor Automation Thermal Camera - Choice of Lens

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A70-SS
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Teledyne FLIR A70 Advanced Smart Sensor Automation Thermal Camera – Choice of Lens

Suitable for condition monitoring and early fire detection, the Teledyne FLIR A70 Advanced Smart Sensor Automation Thermal Camera is an infrared-imaging automation camera with built-in analytics and onboard alarms. It offers an IR resolution of 640 x 480px and can measure temperatures between -20°C and +1000°C to an approximate accuracy of ±2°C/2%. Using FLIR’s Atlas SDK, exact temperature data can be extracted from each pixel of the detailed, low-noise thermal imaging. The Teledyne FLIR A70 Advanced Smart Sensor Automation Thermal Camera easily integrates into video management systems as well as HMI and SCADA systems as its thermal sensors communicate with standard industrial protocols. An SNMP trap and advanced firewall protection mean multiple network devices can work together securely. The Teledyne FLIR A70 Advanced Smart Sensor Automation Thermal Camera also supports simple configuration via a standard web browser. Finally, the Teledyne FLIR A70 Advanced Smart Sensor Automation Thermal Camera is compact, lightweight, rugged (IP66), features heavy-duty M8/12 connectors, and is compatible with an array of mounting options. Ideal for protecting assets, improving safety, maximising uptime, and minimising maintenance costs, the Teledyne FLIR A70 Advanced Smart Sensor Automation Thermal Camera is a flexible, reliable, temperature-measuring thermal automation camera.

Teledyne FLIR A70 Advanced Smart Sensor Automation Thermal Camera Key Features

  • An infrared-imaging automation camera with advanced smart sensor configuration
  • Built-in analytics
  • Onboard alarms
  • Suitable for condition monitoring and early fire detection
  • Delivers detailed, low-noise thermal imaging
  • IR resolution: 640 x 480px
  • Total temperature range: -20°C to +1000°C
  • Approximate accuracy: ±2°C/2%
  • Extract temperature data from each pixel using FLIR’s Atlas SDK
  • Supports optional MSX imaging
  • Optional built-in visual camera
  • Thermal sensors communicate with standard industrial protocols
  • Simply integrates into video management systems
  • Easily integrates into HMI and SCADA systems
  • Supports simple configuration via a standard web browser
  • SNMP trap
  • Advanced firewall protection
  • Optional ONVIF S compatibility
  • Lightweight
  • Durable (IP66)
  • Compatible with an array of mounting options
  • Heavy-duty M8/12 connectors
  • Protect assets
  • Improve safety
  • Maximise uptime
  • Minimise maintenance costs
  • Flexible, reliable, temperature-measuring thermal automation camera

What’s Included?

  • Teledyne FLIR A70 Advanced Smart Sensor Automation Thermal Camera
  • Your Choice of Lens

Teledyne FLIR A70 Advanced Smart Sensor 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
  • As a function of alarm, output to external device
  • 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 Video stream: H.264, MPEG4, or MJPEG
Radiometric stream: Compressed JPEG-LS, 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)
f-number 1.4
Image Frequency 30 Hz
Thermal Sensitivity/NETD <35 mK
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)
Alarm Functions 10 Spotmeters 10 Boxes and Mask polygons (total number) 3 Deltas (difference any value/reference/external lock) 2 Isotherm (above/below/interval) 2 Iso-coverage 1 Reference temperature 2 Lines 1 Polyline
Alarm Output Digital out E-mail (SMTP) (push) EtherNet/IP (pull) File transfer (FTP) (push) Modbus TCP Client (push) Modbus TCP Server (pull) MQTT (push) ONVIF events (push) Query over RESTful API (pull) Store image or video
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, alarm
Digital Inputs 2x opto-isolated, Vin(low)= 0–1.5 V, Vin(high)= 3–25 V
Digital Output Purpose
  • As a function of alarm, output to external device
  • 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 Video stream: H.264, MPEG4, or MJPEG
Radiometric stream: Compressed JPEG-LS, FLIR radiometric
Ethernet For control, result, image, and power
Ethernet Communication 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
  • EtherNet/IP
  • IEEE 1588
  • Modbus TCP
  • MQTT
  • SNMP
  • TCP, UDP, SNTP, RTSP, RTP, HTTP, HTTPS, ICMP, IGMP, sftp (server), FTP (client), SMTP, DHCP, MDNS (Bonjour), uPnP
Ethernet Standard IEEE 802.3
Ethernet Type 1000 Mbps
Image Storage NA
Multicast Yes
RS-232 M8 A-coded, male connector
WiFi Optional feature purchased separately. RP-SMA, female connector
Imaging & Optical 
Contrast Enhancement FSX® / Histogram equalization (IR only)
Detector Pitch 12 µm
Field of view (FOV) Lens dependent 
f-number 1.4
Focal Length 4.1 mm (0.16 in)
Focal Plane Array (FPA) Uncooled microbolometer
Focus Fixed, adjustable with included tool
Image Frequency 30 Hz
IR Resolution 640 × 480
Minimum Focus Distance 0.1 m (0.33 ft)
MSX Yes, included in visual camera option
Overlay With/Without
Radiometric IR video streaming RTSP protocol
Readout

Measurement results:

  • Ethernet/IP
  • Modbus TCP server (pull)
  • Modbus TCP client (push)
  • MQTT (push)
  • REST API (GET/POST)
  • Measurements and still image (radiometric JPEG, visual 640 × 480, visual 1280 × 960)
  • Web interface
Spectral Range 7.5–14 µm
Streaming Resolution RTSP Video stream 0: 640 × 480 pixels RTSP Video stream 1: 1280 × 960 pixels Radiometric stream: 464 × 348 pixels
Thermal Sensitivity/NETD <35 mK
Video Streaming RTSP 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)
Alarm Functions 10 Spotmeters 10 Boxes and Mask polygons (total number) 3 Deltas (difference any value/reference/external lock) 2 Isotherm (above/below/interval) 2 Iso-coverage 1 Reference temperature 2 Lines 1 Polyline
Alarm Output Digital out E-mail (SMTP) (push) EtherNet/IP (pull) File transfer (FTP) (push) Modbus TCP Client (push) Modbus TCP Server (pull) MQTT (push) ONVIF events (push) Query over RESTful API (pull) Store image or video
Atmospheric transmission correction Based on inputs of distance, atmospheric temperature, and relative humidity
Automatic hot & cold detection Max./min. temperature value and position shown within Box
Measurement Corrections Global object parameters; local parameters per analyze function; external Black-body correction
Measurement Presets Yes
Measurement Tools 10 spotmeters, 10 boxes and mask polygons (total number), 3 Deltas (difference any value/reference/external lock), 2 isotherms (above/below/interval), 2 iso-coverage, 1 reference temperature, 2 lines, 1 polyline
Object Temperature Range –20 to 175°C (–4 to 347°F) 175 to 1000°C (347 to 1832°F)
General
Base Mounting 4 x M2.5 direct into camera or 4x 10-32 UNF onto bottom cooling plate
Housing material Aluminium
Size (L x W x H) 107 × 67 × 57 mm (4.21 × 2.64 × 2.24 in)
Weight 519g (1.14lb) without bottom cooling plate
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 and IP66
Humidity (Operating and Storage) IEC 60068-2-30/24 hours, 95% relative humidity, 25–40°C (77–104°F)/2 cycles EN60068-2-38
Operating Temperature Range –20 to 50°C (–4 to 122°F) Bottom cooling plate is needed in temperatures above 40°C (104°F). Maximum internal temperature sensor: 70°C (158°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 4 x M2.5 direct into camera or 4x 10-32 UNF onto bottom cooling plate
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
User Interface 
Web interface Yes
Teledyne FLIR A50 & A70 Advanced Smart Sensor Automation - Datasheet Datasheets FLIR A50/A70 Series User Manual Manuals & Guides Teledyne FLIR Smart Sensor Cameras - Comparison Chart Notes & Other

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SKU A70-SS