SIEMARÍ LP
AI ASSISTED
NAVIGATION &
TARGETING

Siemarí LP

Kevlar-tough, Rugged, Reliable Steady flight, long-endurance AI Navigation, strong jamming tolerance Hand or bungee launched, Parachute or Stall belly landing.

Siemarí means Kingfisher, because this airframe was designed in 2011 to address the roughness of the oceans, and landing on rugged surfaces, like water or metal platforms.

AI Assisted Target Laser Pointing (LP)

A proven airframe for 14 years, with more than 2000 units built, this core molded thermoplastic, Kevlar-reinforced has been launched in winds exceeding 27 knots, and recovered in the open ocean state 5.

With 2.15m wingspan, it weighs less than 5kg, Siemarí is fully marinized, rugged and compact — its airframe is easily disassembled into three pieces for storage or shipment in sturdy airline-approved cases.

Equally effective for land-based operations, Siemarí can be transported in two backpacks and is capable of operating from a wide variety of launch and landing sites

Siemaró LP

Kevlar-tough, Rugged, Reliable Steady flight, long-endurance AI Navigation, strong jamming tolerance Hand or bungee launched, Parachute or Stall belly landing.

Siemarí means Kingfisher, because this airframe was designed in 2011 to address the roughness of the oceans, and landing on rugged surfaces, like water or metal platforms.

AI Assisted Target Laser Pointing (LP)

A proven airframe for 14 years, with more than 2000 units built, this core molded thermoplastic, Kevlar-reinforced has been launched in winds exceeding 27 knots, and recovered in the open ocean state 5.

With 2.15m wingspan, it weighs less than 5kg, Siemarí is fully marinized, rugged and compact — its airframe is easily disassembled into three pieces for storage or shipment in sturdy airline-approved cases.

Equally effective for land-based operations, Siemarí can be transported in two backpacks and is capable of operating from a wide variety of launch and landing sites

Siemaró LP

This highly dependable aircraft is designed for ruggedness, easy assembly, servicing and maintenance, and can be deployed by a team of two servicemen in 15 minutes. The entire turnaround process, from recovery to re-launch, takes less than 15 minutes.

Our new Artificial Intelligence Visual Navigation and Autonomous Target Acquisition Systems is offered in Siemarí, enabling it to be jamming resilient, flying with no GPS aid for long periods, and do targeting tasks automatically.

Flight Control System

The flight control system ensures precise navigation and stabilization for the UAV platform.

  1. Attitude Accuracy: ±0.35°
  2. Heading Accuracy: ±2°
  3. Positioning Accuracy: ±2.5m
  4. Airspeed Measurement Range: 0–100 m/s
  5. Altitude Measurement Range: -500m to 10,000m 6. Weight: 150g
  6. Dimensions: 109 x 56 x 32.5 mm
Features
  1. Robust navigation algorithms.
  2. Real-time telemetry for flight status monitoring.
  3. Integrated with the EO payload and datalink.

AI Assisted Flight Navigation

  1. Accuracy ±2.5m
  2. Speed 0-100m/s
  3. Altitude -500- 10,000m

Electro-Optical (EO) Guidance Payload

The EO payload is a customized system designed for high-performance imaging and targeting, onboard Siemarí with the following specifications:

  1. Stabilization: servo-based image stabilization with 0.1 µrad accuracy (1°/2Hz)
  2. Position Accuracy: ≤0.3°
  3. Angular Velocity: ≥60°/s
  4. Pitch Range: -90° to +30°
Visible Light Imaging
  1. Resolution: 1920 x 1080 @ 60fps
  2. Field of View (FOV): 3. 82° x 52° (wide, 3.2mm)
  3. 20° x 11° (narrow, 16mm)
Infrared Thermal Imaging

Resolution: 640 x 512 @ 60fps

FOV: 22.9° x 18.4° (19mm)

Laser Pointer

  1. Bump Laser 808nm
  2. Pointer Laser 1064nm
  3. Energy 100mJ
  4. Tracking Speed: ≥10°/s
  5. Built-in target tracking functionality.

The Laser pointer can be configured for the receiver-end to accept it/recognize it. We will have to adapt this to the CM Laser coding scheme in the applications (e.g.: Precise Frequency Code/Variable Interval Code).

This is one of the UAV models used in the Shaheen Sentinel Training Services for Special Forces offered in this site.

This highly dependable aircraft is designed for ruggedness, easy assembly, servicing and maintenance, and can be deployed by a team of two servicemen in 15 minutes. The entire turnaround process, from recovery to re-launch, takes less than 15 minutes.

Our new Artificial Intelligence Visual Navigation and Autonomous Target Acquisition Systems is offered in Siemarí, enabling it to be jamming resilient, flying with no GPS aid for long periods, and do targeting tasks automatically.

Flight Control System

The flight control system ensures precise navigation and stabilization for the UAV platform.

  1. Attitude Accuracy: ±0.35°
  2. Heading Accuracy: ±2°
  3. Positioning Accuracy: ±2.5m
  4. Airspeed Measurement Range: 0–100 m/s
  5. Altitude Measurement Range: -500m to 10,000m 6. Weight: 150g
  6. Dimensions: 109 x 56 x 32.5 mm
Features
  1. Robust navigation algorithms.
  2. Real-time telemetry for flight status monitoring.
  3. Integrated with the EO payload and datalink.

AI Assisted Flight Navigation

  1. Accuracy ±2.5m
  2. Speed 0-100m/s
  3. Altitude -500- 10,000m

Electro-Optical (EO) Guidance Payload

The EO payload is a customized system designed for high-performance imaging and targeting, onboard Siemarí with the following specifications:

  1. Stabilization: servo-based image stabilization with 0.1 µrad accuracy (1°/2Hz)
  2. Position Accuracy: ≤0.3°
  3. Angular Velocity: ≥60°/s
  4. Pitch Range: -90° to +30°
Visible Light Imaging
  1. Resolution: 1920 x 1080 @ 60fps
  2. Field of View (FOV): 3. 82° x 52° (wide, 3.2mm)
  3. 20° x 11° (narrow, 16mm)
Infrared Thermal Imaging

Resolution: 640 x 512 @ 60fps

FOV: 22.9° x 18.4° (19mm)

Laser Pointer

  1. Bump Laser 808nm
  2. Pointer Laser 1064nm
  3. Energy 100mJ
  4. Tracking Speed: ≥10°/s
  5. Built-in target tracking functionality.

The Laser pointer can be configured for the receiver-end to accept it/recognize it. We will have to adapt this to the CM Laser coding scheme in the applications (e.g.: Precise Frequency Code/Variable Interval Code).