Tactical VTOL UAV Platform

BAZNA

Rapid response, VTOL flexibility and mission continuity in demanding signal environments.

VTOL FPV control 3 platform sizes Field resilience
Explore capabilities
120 km/sa Max speed
9 km Effective range
25 dk Flight time without payload
1.000 g Max payload
Mission Profile

Rapid launch from confined areas, high agility and operator-led mission flow.

BAZNA is a compact tactical UAV platform designed for rapid deployment and precise field missions. Its VTOL capability enables operation without a runway or large preparation area.

Mission continuity in demanding signal environments
Runway-independent deployment with VTOL
Layered safety approach
FPV control and real-time video feed
7, 10 and 15-inch platform options
Field-ready durable structure
Platform media

Key capabilities

Special Configuration

BAZNA family and payload information

Standard payload 107 mm C4/RDX munition

BeyondTech source data highlights a 107 mm C4/RDX-based payload and wide fragmentation effect for BAZNA.

Diameter 107 mm
Explosive C4 / RDX
Fragmentation 660 x 4 mm steel balls
Family BAZNA 7", BAZNA 10" and BAZNA 15"

The platform family adapts to different mission requirements with 7, 10 and 15-inch size options.

BAZNA 7" Compact platform
BAZNA 10" Medium-size platform
BAZNA 15" Large-size platform
Mission Scenarios

Operation profiles where BAZNA stands out

01 Rapid tactical response

A mission-ready structure supports fast launch, rapid target-area approach and FPV precision.

02 Mission-fit platform selection

The 7, 10 and 15-inch options support platform selection for different mission requirements.

03 Multi-platform use

Multiple BAZNA units create an agile and cost-effective profile for coordinated missions.

04 LIFTRON integration

In a two-stage architecture, BAZNA is carried by LIFTRON beyond its standard range.

Technical values

BAZNA

BAZNA tactical VTOL UAV platform
Platform Weight 1.180 g
Operating Temperature -10°C / +45°C
Takeoff / Landing VTOL
Control Profile FPV / operator-controlled