Sport

OEM Laser Rangefinders for
Premium Sport Optics & Long-Range Systems

Maximum durability for demanding tactical and hunting applications: Our ultra-compact DMM (Distance Measurement Modules) are fully recoil-proof as OEM laser rangefinder modules, effortlessly withstanding the harsh, repetitive impact forces of heavy calibers with a proven shock resistance of up to 1,500 g. The high-precision optics allow for split-second, exact measurements over extreme distances, serving as a reliable foundation for ballistic calculations. As a German manufacturer, we guarantee a 100% ITAR-free supply chain for unrestricted global distribut.

Key Application Areas in the
Sports Sector

Why Choose DMM
by ASKION

ITAR-Free Independence

No bureaucratic export restrictions. Ideal for straightforward global distribution of premium optics.

Absolute Recoil Proofing

The uncompromising mechanical design withstands a proven shock load of up to 1,500 g, ensuring permanent resistance against the heaviest calibers.

Ultra-Lightweight Core

Weighing from just 35 grams, our modules significantly preserve the weight budget of handheld or weapon-mounted devices.

905nm Technology

Optimum balance of long-range performance, compact design, and guaranteed eye safety (Laser Class 1/ 1M).

Highly Efficient Power Management

Intelligent standby and sleep modes guarantee minimal power consumption combined with lag-free reactivation for rapid deployment.

Technical High­lights
(Extract)

For complete performance data and full specifications, please visit our Products section.

Laser & Measurement Performance

Measurement Range:
Up to 3,000 m

Accuracy:
± 0.5 m

Wavelength:
905 nm

Laser Class:
Class 1 / 1M
(EN 60825-1)

Smart Power Modes

Standby Mode:
< 40 mW power consumption with ultra-fast 0.1s instant-on activation

Sleep Mode:
Ultra-low 0.05 mW power consumption with 1.0s wake-up time

System & Environmental Specifications

Export Status:
100% ITAR-free

Interfaces:
UART

Weight:
< 35 g or < 65 g

Operating Temperature:
-32 — 65 °C

Shock Resistance:
1,500 g @ 0.5 ms

Project Examples
(Case Studies)

Connect Directly
with Our Experts

Are you designing a new system or do you require a custom modification? Our team will support you from the initial specification stage through to full series production.

Freistaat Thüringen, Ministerium für Wirtschaft, Wissenschaft und Digitale Gesellschaft
Gefördert vom Freistaat Thüringen, Ministerium für Wirtschaft, Landwirtschaft und Ländlichen Raum

We receive funding from the State of Thuringia for consulting services and project support. This funding is intended to support strategies for the establishment, sustainable growth, and stability of small and medium-sized enterprises. The funding is provided by the European Social Fund Plus and the State of Thuringia.

Our company receives funding from the European Union via the FTI-Thüringen Technologie guideline. In this project, a test platform is being developed on which various assemblies, materials and functionalities for biobanks can be tested independently of the device. The purpose of the project is to react flexibly and quickly to changing device requirements using the platform’s testing capabilities.

Through the FTI-Thüringen Personen guideline, our company receives funding from the State of Thuringia from the European Social Fund Plus for innovative employees in the field of fluorescence microscopy (2024 INP 0122). The topics are development, testing and optimization of fluorescence microscopes in different sizes and functions as well as the identification of functional requirements for the devices.

Through the FTI-Thüringen Personen guideline, our company receives funding from the State of Thuringia from the European Social Fund Plus for innovative employees in the field of biobanking (2024 INP 0132). Innovative software solutions for cryo devices are developed. A special focus is on IT security, modularity and flexibility of future device generations.

Sponsored by the Federal Ministry of Education and Research

KMU-innovativ

FKZ: 13GW0636D

RUBIN – NeuroMiR

FKZ: 03RU1U052B