
Teledyne FLIR Launches A500f/A700f Cameras for Fire Detection and Condition Monitoring
The FLIR A500f and A700f Advanced Smart Sensor ruggedized thermal cameras feature high-temperature detection for extreme environments paired with on-camera analytics and alarm capabilities – ideal for industrial early fire detection or outdoor condition monitoring applications. Along with enhanced spot, area, line, polygon, and polyline analytic functions that improve the definition of areas of interest and object curvatures, the A500f/A700f can help commercial and industrial organizations protect assets, improve safety, maximize uptime, and minimize maintenance costs.
Fire Detection and Condition Monitoring for Industrial Facilities
For early fire detection, the A500f and A700f thermal cameras can quickly identify increased temperatures related to potentially dangerous conditions.
If smoke is present, the cameras can help provide increased awareness for decision makers to properly assess and address incidents. Both cameras feature Flexible Scene Enhancement (FSX) technology, found on Teledyne FLIR K-Series handheld firefighting devices. The result is an ultra-sharp, finer-textured image that shows subtler edge details supplied by the embedded visible camera onto the thermal image, enabling operators to recognize objects and people more easily.
The A500f/A700f are also effective tools for pile-burn monitoring, providing automated early warnings for potential issues in waste management facilities or coal collection areas that operate around the clock.
Manufacturing facilities, chemical processing locations, or power substations that use common communications and control language can also benefit from the A500f and A700f beyond fire detection. These cameras empower those organizations to reduce maintenance costs by identifying heat anomalies from mechanical problems early, thereby extending the life of plant components while maximizing uptime.
Effective Ruggedness and Thermal Range for Outdoor Applications
Featuring a protective IP67-rated housing designed to withstand temperatures between -30° to 50°C (-22° to 112° F), the A500f/A700f cameras are designed for harsh environments and discreet enough to deter from theft. In addition, the cameras use a single power-over-Ethernet (PoE) cable for both power and communication, helping to further minimize points of potential failure.
The A500f/A700f offers superior thermal imaging capability with a resolution of 464 x 348 (161,472) for the A500f and 640 x 480 (307,200) thermal pixel resolution for the A700f. Users can expect a ±2° C (±‐3.6° F) temperature measurement accuracy.
The A500f has a temperature detection range between -20° to 1500°C (-4° to 2732° F), while the A700f offers a temperature range of between 20° to 2000°C (68° to 3632°F) for detecting chemical fires and other extreme industrial fire conditions.
Along with thermal lens options ranging from 14° to 42° and an embedded HD visible camera, these devices fulfill the needs of most outdoor condition monitoring and fire detection applications.
Seamless Integration and Set Up
Installing the FLIR A500f/A700f cameras is seamless. Both cameras are ONVIF compliant and integrate easily into standard security VMS and NVR solutions including control of pan/tilts.
For VMS integrations, thermal and visible streams can be viewed independently or simultaneously. The cameras are easy to add, set up, and operate in HMI (Human Machine Interface) SCADA (supervisory control and data acquisition) systems, offering automation system solution providers a running start. Both the A500f and A700f fully support IIoT protocols such as MQTT (Message Queuing Telemetry Transport) and RESTful API with a system unique token key for extra security.
Blog Posts


Thermal Camera Selection

How Far Can I See?

How Should Human Temperature Be Measured?

What is Wide Dynamic Range?

MYNOISE AUDIO MIXER REVIEW

WHAT IS A WIRELESS DISTRIBUTION SYSTEM?

POE VS. POE+ VS. POE++: CHOOSING THE RIGHT INDUSTRIAL ETHERNET SWITCH FOR YOU

INDUSTRY-LEADING INDUSTRIAL ETHERNET SWITCHES

UNDERSTANDING WHAT THE INDUSTRIAL INTERNET OF THINGS IS

THE DIFFERENCE BETWEEN A HUB, SWITCH, & ROUTER

5 Benefits of Thermal Imaging Cameras

DIFFERENCE BETWEEN INDUSTRIAL ETHERNET AND REGULAR ETHERNET

INDUSTRIAL NETWORKING EQUIPMENT USED FOR AUTONOMOUS VEHICLES

CYBERSECURITY: PROTECTING INDUSTRIAL CONTROL SYSTEMS

HOW INDUSTRIAL NETWORKING CAN PROVIDE SECURITY FROM DRONES
.webp)
Thermal Cameras Reveal How to Keep Your Home Cool During a Heat Wave

FLıR ONE PRO

On the Water with the FLIR M364C

Unmatched Maritime Awareness with Cooled Thermal Imaging

What Is the Right Handheld Thermal Camera for You?

Camera Resolution and Range

Special Applications for Marine Cameras

What’s The Difference between Thermal Imaging and Night Vision?

Can Thermal Imaging See Through Fog and Rain?

Which Cx-Series Camera Is Right for You?

What is MSX®?

Five Reasons Maritime First Responders Need Thermal Imaging

3 Distinguishing Features of Superior Thermal Cameras

Determine Which Visible and Thermal Security Cameras You Need

Bullet vs. PTZ vs. Dome: Which Security Camera Is Right for You?

Interfaces for Machine Vision

Machine Vision Sensor Review

Teledyne FLIR, the Industry Leader, Launches Boson +, a Long-Wave Infrared Thermal Imager Module with an Accuracy of Less Than 20 mK

Whitepaper: IP-Based Security Convergence

3 Technologies Transforming Safe Cities into Smart Cities

Insights from the Field: Ensuring Workplace Safety Using Thermal Camera Screening for Entry Control

Thermal Night Vision as a Force Multiplier

Can Thermal Imaging See Through Walls? And Other Common Questions

Application Spotlight: Early Fire Detection for Rapid Heat Generation

Protect Personnel and Equipment by Detecting Early Signs of Fire

Teledyne FLIR Launches A500f/A700f Cameras for Fire Detection and Condition Monitoring

Thermal Imaging Cameras Help Guarantee Fire Safety in Tunnels

Thermal Imaging Cameras Help to Prevent Fires

ITS-Series Dual AID Surpasses Standards for Fire Detection Systems in Japan

How Layering Multispectral PTZ Cameras and Radars Improve Perimeter Protection

POWER REMOTE RESET TECHNOLOGY - PRRT

Why Yacht Owners are Adding Thermal Imaging Cameras to Minimise the Risk of Lithium-Ion Battery Fires?

Intelligent Transportation Systems

Best Practices Guide for Perimeter Security Applications

Protect Pedestrians, Bicyclists and More with Thermal Smart Sensors

White Paper: Application of Ground-Based Security Radar to Perimeter Systems

What is Thermal Leakage and How to Reduce Its Risks

Battery Inspection Using Advanced Thermography

Providing ire Protection for Lithium Battery Storage

The Power of Thermal Imaging

Why Panel PCs Are Perfect For Industrial Applications?

Teledyne DALSA

Advantages of Virtual Barrier Video Analytics for Perimeter Security Systems


NASA Takes the Teledyne FLIR Boson Thermal Camera Module Out of this World

Port Security Enhancement: DP World Yarımca's Trust in FLIR Security Solutions for Effective and Safe Port Operations

The Importance of Thermal Sensitivity (NETD) for Detection Accuracy
