Reporter Drone Tepe K2

Tepe K2 is a reporter drone manufactured by AA Teknoloji. It can fly in low and narrow areas without creating threats in risky and strategic regions where flying is difficult and visual contact is unavailable.

Media and Publishing Challenges

Media organizations require high mobility in rapid content production and continuous live broadcast processes. However, GPS-dependent drone systems reduce operational efficiency in areas where the signal is weak and limit capturing footage from different angles, making it difficult to strengthen news content.

GPS signal losses can negatively affect image transmission, live broadcast continuity, and field control processes. The decrease in flight stability in areas experiencing signal interference creates risks for media operations in terms of safety and continuity.

What Problems Does It Solve?

  • Provides continuous and stable flight in areas where the GPS signal is insufficient.
  • Increases operational efficiency in indoor areas and disaster zones.
  • Reduces connection and location problems during live broadcasting and image transmission.
  • Provides fast and secure usage across media operations.

Core Principles

Security

Preserves operational continuity in challenging zones.

Speed

Offers instant control through low-latency transmission.

Continuity

Provides uninterrupted flight without GPS dependency.

Flexibility

Supports missions in narrow and harsh environments.

Technical Specifications

FPV Flight System

  • Manual FPV flight without GPS
  • Low-latency image transmission
  • Precision control support
  • Rapid installation and deployment advantage

Image and Broadcast Technologies

  • 4K dual camera support
  • Live broadcast transmission
  • Internal image storage system
  • Recording support to operator goggles

Operational Capability

  • Flight support in narrow spaces
  • Mission capability in risky regions
  • Strong wind resistance
  • 10 km operational range

Data and Control Management

  • Instant flight data tracking
  • Centralized operation control
  • Flight log analysis support
  • Dynamic performance enhancements

Security and Durability

  • Uninterrupted connection infrastructure
  • Secure landing support
  • Long-range communication system
  • Durable compact body structure

How Does Tepe K2 Work?

Tepe K2 can perform stable flights without GPS support thanks to its specially developed FPV infrastructure, low-latency image transmission, and precision control system. It offers high maneuverability and uninterrupted operational performance in harsh field conditions.

Workflow

1. Preparation and Image Transmission

  • Camera and broadcast systems are activated.
  • Operator establishes FPV goggle connection.
  • Image transmission is initiated in real time.
  • The system is made ready for flight.

2. Manual FPV Flight Operation

  • Pilot manages drone control instantly.
  • Low-latency image transmission is provided.
  • Precision maneuvers are performed in narrow spaces.
  • Stable flight is preserved in strong winds.

3. Mission Management and Data Recording

  • Images are transferred simultaneously to pilots and viewers.
  • Operational processes are monitored live.
  • Flight logs are stored automatically.
  • Post-mission system data is analyzed.

Centralized Data Analysis and Update

Tepe K2 supports performance evaluation according to flight data. Improvements can be dynamically applied by the avionic system, while updates can be managed manually according to operational needs.

Advantages

Stable Flight Without GPS

Tepe K2 ensures stable flight performance in challenging areas where GPS signal is insufficient, thanks to precision pilot control.

Instant Telemetry and Multi-Monitoring

Instant flight data can be transferred simultaneously to the pilot and viewers with multi-monitoring support.

Low-Latency Data Transmission

Thanks to low-latency image transmission, the pilot can control the flight instantly and precisely.

Dynamic PID Optimization

The avionic system dynamically applies the necessary performance improvements according to flight data, increasing mission efficiency.