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LKF-1400FA is an anti-interference GNSS receiver designed for
high-precision positioning applications in complex electromagnetic
environments. The product breaks through the anti-interference
bottleneck of traditional GNSS receivers by integrating advanced
interference identification and suppression algorithms, enabling
stable and reliable satellite positioning performance even in
strong interference, weak signal, and multipath environments. It is
suitable for a wide range of critical applications, including
navigation, telemetry, and time-frequency synchronization.
Building on the proven architecture of mature GNSS receivers, the
1400FA undergoes systematic optimization for anti-interference
capabilities, adopting a modular design philosophy for easy
integration and scalable deployment, offering exceptional
engineering practicality and cost-effectiveness.
Expectional Technology
Liocrebif is a high-tech enterprise with full capabilities in
independent research and development, testing, and production. It
has a complete technical system covering GNSS receiver modules,
circuit board design, anti-interference algorithms, and system
integration testing. The company strictly implements the ISO9001
quality management system, and its product design fully considers
engineering application requirements, with continuous innovation in
anti-interference technology, reception sensitivity, and system
stability.
As a core component in intelligent equipment and navigation
systems, the 1400FA GNSS receiver stands out for its exceptional
anti-interference capabilities, environmental adaptability, and
long-term reliability, making it a critical component for ensuring
system performance in demanding application scenarios.
Performance Parameters
Tech | Parameter |
Reception Frequency | GPS-L1, BDS-B1, Glonass-L1, Galileo-E1 |
Anti-Jamming Frequency | GPS-L1, BDS-B1, Glonass-L1 |
Anti-Jamming Capability | Single≥100dB, three≥85dB |
Antenna Gain | Elevation angle 90°: ≥3dB |
Signal Output Power | ≤-55dBm |
Resistance | 50 Ω |
Cold Startup | ≤40S |
Positioning Accuracy (1Σ) | ≤10m |
Velocimetry Accuracy (1Σ) | ≤0.2m/s (horizontal), ≤0.3m/s (elevation) |
Maximum Speed | ≤1100m/s |
Maximum Acceleration | ≤15g |
Jerk | ≤3g/s |
Input Voltage | 9-36V |
Power Consumption | ≤15W |
Antenna Weight | ≤ 600g; |
Environmental Adaptation | Working temperature: -40℃~75℃ Storage Temperature: -55℃~85℃ |
The Electrical Interface Of The Gyroscope
Uses J30J-9ZK Connector
No. | Mark | Notes |
1 | VCC IN | 18~36VDC power supply |
2 | VCC IN | 18~36VDC power supply |
3 | GND | GND |
4 | GND | GND |
5 | 1PPS | |
6 | 1PPS-GND | |
7 | TX | RS232-Send (positioning output) |
8 | RX | RS232-Receive (positional input) |
9 | GND | GND |
Receiving satellite signals: GPS-L1, BDS-B1, Glonass-L1, Galileo-E1.
Suppress harmonic, sweep, pulse, white noise, FM, AM, PM and other broadband and narrowband types of interference against GPS-L1, BDS-B1, Glonass-L1 bands.
Support working parameter configuration, query and maintain.
Software online upgrade.