Home » News and Updates » Why Upgrade from u-blox ZED-F9P? Anti-Jamming GNSS Alternatives Compared

Why Upgrade from u-blox ZED-F9P? Anti-Jamming GNSS Alternatives Compared

The Problem: Jamming and Interference Are Everywhere

GNSS signals arrive at Earth’s surface at extremely low power — roughly equivalent to a 20-watt light bulb viewed from 20,000 km away. Any nearby radio transmitter can overwhelm them.

Common sources of GNSS interference:

  • Telecommunications towers (4G/5G, Wi-Fi hotspots)
  • Power lines and solar inverters (broadband harmonics)
  • Nearby radio transmitters (UHF/VHF, AM/FM broadcast)
  • Deliberate jamming (personal privacy devices, military zones)
  • Co-located antennas (Wi-Fi, Bluetooth on the same platform)

The u-blox ZED-F9P handles approximately 25 dB of jamming immunity in typical configurations. In environments with moderate to strong interference, this often leads to:

  • Loss of RTK fix
  • Degraded positioning accuracy (meter-level instead of centimeter-level)
  • Extended re-convergence times
  • Complete signal loss in extreme cases

The Solution: Septentrio-Based Alternatives with AIM+ Anti-Jamming

Eview GNSS Solutions integrates Septentrio mosaic modules — the industry leader in GNSS resilience — into ready-to-use receivers and boards.

The key differentiator is AIM+ (Advanced Interference Mitigation) technology.

Featureu-blox ZED-F9PEview (Septentrio mosaic-based)
Anti-jamming immunity~25 dB60 dB (AIM+)
RTK convergence10–45 seconds5–15 seconds
Multipath rejectionStandard (HPS)H-shield + MLAMBDA
Signal trackingGPS + GLONASS + Galileo + BeiDouFull multi-constellation + L-Band
Anti-spoofingBasicAdvanced (signal authentication)

Real-World Impact

In a recent field test near a 5G cell tower:

  • ZED-F9P lost RTK fix within 3 meters of the tower and took 40+ seconds to re-converge after passing it
  • Eview receiver (Septentrio mosaic) maintained centimeter-level RTK throughout the entire pass

When Should You Replace ZED-F9P?

1. Autonomous Robotics Near Infrastructure

RTK lawn mowers, delivery robots, and agricultural vehicles often operate within meters of buildings, power infrastructure, and wireless equipment. AIM+ anti-jamming ensures consistent RTK lock.

2. Drone Operations in Urban Environments

UAVs flying near cell towers, broadcast antennas, or urban centers face constant interference. Without strong anti-jamming, a drone can lose precision positioning mid-flight — a safety and operational risk.

3. Precision Agriculture with Solar Pumps and Radio Links

Farms increasingly use solar-powered irrigation pumps and directional radio links. Both emit RF noise that can disrupt standard GNSS modules. Septentrio-based receivers maintain sub-inch accuracy even with nearby solar inverters.

4. Surveying Near Power Lines

Survey-grade RTK work near high-voltage transmission lines is notoriously difficult. The broadband noise from corona discharge and power line harmonics degrades standard receivers. AIM+ filters this noise effectively.

5. Anti-Jamming for Security-Critical Applications

For APNT (Assured Position, Navigation, and Timing) and infrastructure monitoring, anti-jamming isn’t optional — it’s a requirement. Eview receivers provide military-grade resilience in a commercial package.

Drop-In Replacement Options

ProductBest ForKey Feature
Mosaic Click (breakout)Prototyping, evalUSB + serial, compact form factor
Mosaic M2 (module)Embedded integrationDirect ZED-F9P socket compatibility
simpleRTK3B seriesReady-to-use RTK receiverIP67, UART + USB + Bluetooth
Smart Antenna A9All-in-one solutionIntegrated antenna + receiver

All products use Septentrio mosaic-X5 or mosaic-H modules with full AIM+ support.

FAQ

Can I replace ZED-F9P with Septentrio mosaic without redesigning my board?
In many cases, yes. The Septentrio mosaic module is pin-compatible with many ZED-F9P designs, and our engineering team provides migration support.

How much better is 60 dB anti-jamming vs 25 dB?
A 35 dB improvement means the Septentrio-based receiver can tolerate signals ~3000x stronger before losing lock compared to ZED-F9P.

Does anti-jamming affect power consumption?
Minimal. AIM+ runs continuously in firmware with negligible power overhead. Typical consumption for mosaic-based receivers is comparable to ZED-F9P.

What about cost?
Septentrio-based receivers are competitively priced with ZED-F9P alternatives. For applications where RTK reliability directly impacts operational cost (lost productivity from dropped fixes), the upgrade pays for itself.

Get a Quote

Need help evaluating whether an Eview GNSS receiver is the right upgrade for your application? Contact our engineering team — we provide evaluation units and technical support for prototyping.

Latest News & Announcement