-
Shopping cart is empty
-
x
Drone parts and accessories – fast shipping across the EU and to Ukraine, reliable components, technical support.
-
Shopping cart is empty
-
x
-
Maple Wireless 4.85-6.3G 20dB LHCP SMA-Male FPV Goggle Antenna
Boost your FPV experience with the Maple Wireless 4.85-6.3 GHz antenna. Delivering a powerful 20dB gain and stable LHCP signal, this broadband antenna is perfect for long-range FPV and telemetry. Its compact design, low VSWR, and wide beamwidth ensure reliable performance in demanding conditions. Ideal for serious FPV pilots looking for the best signal quality. Check the best price at HTDRONE!
652.00
| Reviews | |
| Price of consignment | 35 |
| The Availability Of |
|
Order by phone+48 666132049
| Leave your phone |
Introduction
The Maple Wireless 4.85-6.3 GHz 20 dB Broadband LHCP antenna is a high-gain, directional flat antenna engineered for demanding FPV and long-range telemetry applications. It provides a stable signal over challenging distances thanks to its wide frequency range and LHCP (left-hand circular polarization), all within a compact form factor. This antenna is designed for efficient signal transfer with low loss and minimal multipath interference, making it an essential upgrade for FPV enthusiasts.
Key advantages
- High 20 dB gain for increased signal strength over long distances.
- Wide 4.85 to 6.3 GHz frequency band, compatible with most FPV systems.
- LHCP polarization minimizes cross-polarization losses in LHCP setups.
- Designed with 0402 components for enhanced stability and vibration resistance.
- Low VSWR (<1.5) ensures efficient power transfer and minimal signal loss.</li>
- Precise ~16° directional beamwidth (H/E plane) for accurate signal tracking.
- Robust environmental resistance for operation in various temperature ranges.
- Durable construction for reliable performance in demanding FPV environments.
Technical specifications
- Frequency Range: 4.85 - 6.30 GHz
- Gain: 20 dB (approx. 20 dBi)
- Polarization: LHCP (Left-Hand Circular Polarization)
- Beamwidth: ~16° (H-plane / E-plane)
- Input Impedance: 50 Ω
- Connector: SMA Male
- VSWR: < 1.5
- Maximum Power: 10 W
- Axial Ratio: ±1 dB
- Operating Temperature: -40 to +60 °C
- Dimensions: 208 x 208 x 35 mm
- Weight: ~255 g
Applications
This antenna is ideal for long-range FPV flying, drone racing, aerial photography, and telemetry applications where a stable and strong signal is critical. Its directional nature makes it suitable for ground station setups or as a receiver antenna on your FPV goggles.
Compatibility
Features a standard SMA Male connector, compatible with most FPV goggles and receivers equipped with an SMA female port. Supports up to 10W of power. Works within the 4.85-6.3 GHz frequency range.
FAQ
What is the primary application for the Maple Wireless 4.85-6.3 GHz antenna?
The Maple Wireless 4.85-6.3 GHz antenna is primarily designed for long-range FPV flights and telemetry applications. Its high gain and stable LHCP signal make it ideal for situations where signal integrity over distance is crucial.
What is the frequency range and gain of this Maple Wireless antenna?
This antenna operates within a wide frequency range of 4.85 to 6.30 GHz and offers a significant gain of 20 dB (approximately 20 dBi), ensuring a strong and reliable signal transmission.
What type of connector does the Maple Wireless antenna use?
The Maple Wireless antenna features a standard SMA Male connector, making it compatible with a wide variety of FPV goggles and receivers that have a corresponding SMA Female port.
Is this antenna suitable for FPV racing?
While primarily optimized for long-range, its precise beamwidth and stable signal can benefit FPV racing, especially in environments with potential interference or for pilots who need a reliable lock on their video feed.
Where can I buy the Maple Wireless 4.85-6.3G 20dB LHCP SMA-Male antenna with fast delivery?
You can buy the Maple Wireless 4.85-6.3G 20dB LHCP SMA-Male antenna at HTDRONE. We offer fast shipping within Poland and reliable delivery to Ukraine and worldwide via DHL.