Dual-Band RTK Modules (L1+L5)

RTK L1+L5 Modules

Promotion Product-SOR-1612

Promotion Product-SOR-1612

LOCOSYS SOR-1612 is a high-performance dual-band GNSS RTK module that designed for applications requiring centimeter level positioning accuracy.

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Promotion Product-BK-1612-15

Promotion Product-BK-1612-15

BK-1612-15 is a receiving module that supports Dual-Band & Multi-Mode.

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Dual-Band RTK Modules (L1+L5) | Advanced GNSS & RTK Module Solutions - LOCOSYS

LOCOSYS provides industry-leading GNSS and RTK modules that offer superior centimeter-level accuracy and rapid signal acquisition. Our dual-band L1+L5 technology ensures robust performance in challenging conditions, reducing signal drift and enhancing reliability.

Designed for easy integration into drones (UAV), autonomous mobile robots (AMR), and precision agriculture equipment, our modules are the foundation of modern automated navigation. Our manufacturing excellence is backed by IATF 16949 certification, ensuring the highest reliability for critical industrial applications.

By choosing LOCOSYS, you benefit from a secure, non-China origin supply chain that meets the strictest international compliance standards, including NDAA and RED regulations. We help you bridge the gap between complex navigation needs and successful product deployment.

Dual-Band RTK Modules (L1+L5)

RTK L1+L5 Modules
RTK L1+L5 Modules

RTK Positioning Capability

Centimeter-Level Accuracy Enhancement

Supports integration with RTK (Real-Time Kinematic) correction data to achieve centimeter-level positioning accuracy. By leveraging dual-frequency carrier phase measurements and external correction sources, the system enhances precision, convergence stability, and reliability for surveying, UAV mapping, and autonomous applications.


L1 + L5 Dual-Band GNSS Receiver Module

High-Precision Positioning with Robust Navigation Performance

A high-performance dual-frequency GNSS solution combining L1 + L5 reception with multi-constellation tracking (GPS, GLONASS, Galileo, BeiDou, QZSS, SBAS), delivering enhanced accuracy, improved satellite availability, and strong signal robustness across complex environments such as urban canyons and weak-signal conditions.


Adaptive Signal Optimization

Real-Time Environmental Adaptation

Adaptively adjusts received signals based on current environmental satellite signals to quickly optimize performance. Ensures stable tracking and improved positioning accuracy under dynamic satellite conditions.


AI-Driven Interference Protection

Enhanced Security and System Awareness

AI-driven anti-interference and anti-spoofing capabilities with real-time status outputs including warnings, alerts, and termination signals. Enhances operational safety and system robustness under complex RF environments.


Integrated GNSS Architecture

High Efficiency System Integration

Fully integrated RF and baseband architecture reduces system complexity, shortens development cycles, and accelerates deployment for UAV, autonomous systems, and industrial applications.

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