GETS Systems DroneBullet Counter-UAS Technology
GETS Systems DroneBullet Counter-UAS Technology is presented here as an informational technology overview for security, defense, critical-infrastructure, and government research. GETS Systems describes DroneBullet as an autonomous counter-UAS interceptor that combines onboard AI/machine vision with radar-assisted sensing for operation against small unmanned aircraft. This page does not provide pricing, purchase, payload-selection, or deployment instructions.

Platform Overview
- AI-embedded flight-control architecture with machine-vision processing
- Triple-redundant autopilot and sensor package
- Sensor fusion combining active vision and radar
- Day/night sensing using illumination and short-range radar
- Designed by the manufacturer for operation in rain, snow, and hot environments
- Published flight range: up to approximately 10 km
- Long-range encrypted communications, telemetry, and HD video
Published Air Vehicle Specifications
| Specification | Manufacturer-published value |
|---|---|
| Takeoff weight | 1.8 kg |
| Dimensions, unfolded | 170 × 170 × 269 mm |
| Cruise speed | 140–190 km/h |
| Maximum flight time | Approximately 30 minutes |
| Maximum published range | Approximately 10 km |
| Maximum published altitude | Approximately 10 km |
| Maximum tilt angle | 180° / inverted-flight capability |
| Operating temperature | -15°C to 55°C |
| Camera | 8 MP day/night sensor |
| Camera field of view | 120° diagonal |
| Battery | Rechargeable Li-ion |
| Flight controller | Triple-redundancy sensor pack |
AI, Vision and Radar Sensing
GETS Systems states that the onboard AI/MV/DNN core has direct access to the motors for fast maneuvering. The published target set includes small-to-medium multirotor and fixed-wing UAVs. The manufacturer lists automatic or manual mode selection, a visual detection range of approximately 100–400 m for a small drone, video processing at 120 fps, and a short-range radar detection range of approximately 10–60 m for a small drone.
Ground Station
- Ruggedized Windows laptop platform option
- Android tablet platform option
- 2.4–2.5 GHz communications
- Published video and telemetry range: approximately 7 km, with the manufacturer noting extension may be possible using boosters
- Full-duplex encrypted communications with mesh-network architecture
DMML Modular Launcher Architecture
The manufacturer also describes a modular launch architecture called DMML. It is presented as a reusable mechanical launcher system with sealed canisters, modular 1-, 2-, 4-, 6-, or 8-position configurations, and stationary, vehicle, maritime, and airborne integration concepts. Each launcher module is listed at approximately 310 × 100 × 100 mm. This page intentionally does not reproduce weapon-payload or munition-selection details.

Seeker Radar Information on the Current GETS Web Page
The current GETS Systems DroneBullet page includes a seeker-radar specification graphic showing an average operating frequency of approximately 75 GHz, maximum velocity of 250 m/s, maximum range of 400 m, 0.5 m range resolution, 120° element beamwidth in azimuth and elevation, 16 × 16 receive/transmit element counts, 0.1 W single-transmit-element power, 0.01 m² target RCS, and 0.09 m range accuracy under the stated S/N condition. These values are reproduced as published by the manufacturer and should be confirmed for the exact configuration being evaluated.

95 GHz FMCW Seeker Radar — Supplied GETS Technical PDF
A separate GETS Systems technical PDF supplied to Security Pro USA describes an advanced 95 GHz FMCW seeker radar. The document presents the concept as a compact approximately 400 g high-resolution radar architecture designed for detection and tracking of small objects, navigation in GPS-denied environments, reconnaissance, and other multi-domain applications. It states a 10× resolution improvement over conventional X-band systems, a 50% smaller form factor than comparable solutions, GPU-accelerated signal processing, and a scalable tiled W-band architecture.
95 GHz Radar Architecture
- 95 GHz FMCW seeker-radar concept
- Modular transmit and receive arrays
- GPU-accelerated real-time signal processing
- Standardized control/interface architecture
- Four-channel architecture supporting multiple beams
- Adaptive beam forming
- Selectable detection, tracking, or imaging modes
- Advanced clutter rejection
- Low-probability-of-intercept design objective stated by the manufacturer
- Scalable array sizes: 4×4, 8×8, 16×16, and 32×32
95 GHz Array Specifications as Printed in the Supplied PDF
| Array | 4×4 | 8×8 | 16×16 | 32×32 |
|---|---|---|---|---|
| RCS | 0.01 m² | 0.01 m² | 0.01 m² | 0.01 m² |
| Range | 120 m | 400 m | 1,000 m | 2,500 m |
| Elevation coverage | 90° | 90° | 90° | 90° |
| Azimuth coverage | 90° | 90° | 90° | 90° |
| Diameter | 40 mm | 50 mm | 70 mm | 120 mm |
| Weight | 200 g | 300 g | 400 g | 500 g |
| Depth | 30 mm | 40 mm | 50 mm | 60 mm |
| Range accuracy | 6 mm | 6 mm | 6 mm | 6 mm |
| Range resolution | 30 mm | 30 mm | 30 mm | 30 mm |
| Azimuth/elevation accuracy | 0.8° | 0.4° | 0.2° | 0.1° |
Important Source Note: 75 GHz vs. 95 GHz
The GETS Systems DroneBullet web page and the supplied 95 GHz technical PDF should not be treated as one identical hardware specification. The current web-page radar graphic shows an approximately 75 GHz seeker configuration, while the supplied technical PDF describes a separate/newer 95 GHz FMCW seeker concept. Security Pro USA is therefore presenting the two published data sets separately rather than silently combining them. Exact current configuration, integration, and performance should be confirmed with GETS Systems.

Frequently Asked Questions
What is DroneBullet?
GETS Systems describes it as an autonomous counter-UAS interceptor using onboard AI, machine vision, radar-assisted sensing, and high-maneuverability flight control.
Can it operate at night?
The manufacturer states that it supports day/night operation using a day/night camera, forward illumination, and short-range radar.
What weather conditions are listed?
GETS Systems states that the platform is designed for operation in snow, rain, and hot environments, with a published operating-temperature range of -15°C to 55°C.
What is the published flight range?
The manufacturer lists a maximum flight range of approximately 10 km and a maximum flight time of approximately 30 minutes.
What sensors are used?
The manufacturer describes sensor fusion using active vision, an 8 MP day/night camera, onboard machine vision/DNN processing, and radar.
How does the ground station communicate?
The published architecture uses 2.4–2.5 GHz communications with encrypted full-duplex telemetry/video and mesh-network capability.
What is DMML?
DMML is the manufacturer's modular mechanical launcher architecture, described in 1-, 2-, 4-, 6-, and 8-position configurations for multiple platform types.
Why are both 75 GHz and 95 GHz radar specifications shown?
They come from two different GETS source documents. The current DroneBullet web-page graphic identifies an approximately 75 GHz seeker, while the separate supplied GETS technical PDF describes a 95 GHz FMCW seeker architecture.
Is the 95 GHz radar scalable?
Yes. The supplied technical PDF describes tiled 4×4, 8×8, 16×16, and 32×32 array options with increasing range and angular accuracy.
Is this a purchasing page?
No. This page is an informational technology reference. It intentionally excludes pricing, acquisition instructions, and weapon-payload selection.
Sources: GETS Systems DroneBullet manufacturer page and GETS Systems “Seeker Radar 95GHz” technical PDF supplied to Security Pro USA. Specifications are manufacturer-published and may represent different development/configuration stages. Verify current specifications directly with the manufacturer before relying on them for engineering, compliance, or procurement decisions.