• TrueRC X2-Air 2.4 MK II LHCP FPV Goggle Antenna - High Gain, Wide Beam

The Symbol: 0608597254310

Upgrade your FPV experience with the TrueRC X2-Air 2.4 MK II LHCP antenna. This compact and lightweight unit delivers high gain and a wide horizontal beamwidth, ensuring superior signal reception. Ideal for demanding FPV pilots seeking the best performance. Check out the best deal for this essential FPV component at HTDRONE.

Zastosowanie
FPV
No goods
698.00
698.00
Enter your email
Reviews
Price of consignment 35
Inpost(Kurier) 35
The Availability Of 0 opak
Leave your phone

Introduction

The TrueRC X2-Air 2.4 MK II (LHCP) is a next-generation FPV goggle antenna designed for pilots who demand exceptional performance and reliability. Building upon the success of its predecessors, this updated version offers a significant reduction in size while maintaining the original's high-gain, wide-beam characteristics. It's engineered to provide a clear and stable video link in challenging FPV environments, making it a top choice for serious hobbyists and professionals.

Key advantages

  • High gain of 12.5 to 13 dBic for extended range and penetration.
  • Ultra-wide horizontal beamwidth of 150 degrees for exceptional coverage.
  • Compact and lightweight design for improved comfort and portability.
  • Left-Hand Circularly Polarized (LHCP) for optimal signal integrity in complex RF environments.
  • Durable construction ensuring reliability during intense FPV sessions.
  • Easy to install with standard SMA connector.
  • Enhances video reception clarity and reduces static.

Technical specifications

  • Frequencies: 2.3-2.7 GHz
  • Gain: 12.5 to 13 dBic
  • Horizontal Beamwidth*: 150 degrees
  • Vertical Beamwidth*: 62 degrees
  • Horizontal Beamwidth @-3dB**: 74 degrees
  • Vertical Beamwidth @-3dB**: 34 degrees
  • Connector: SMA
  • Dimensions: 179.5mm x 83.5mm x 25mm

*Coverage where reception is at least equivalent to omni.
**Coverage where at least 70% of maximum range is achieved.

Applications

This antenna is primarily designed for FPV (First Person View) drone racing and freestyle flying. It significantly enhances the video reception for FPV goggles, providing a more immersive and reliable flying experience. It is also suitable for UAV applications where a strong, clear video downlink is crucial.

Compatibility

Features a standard SMA connector, ensuring compatibility with most FPV goggles and video receivers that utilize this common interface.

FAQ

What is the TrueRC X2-Air 2.4 MK II LHCP antenna best for?

The TrueRC X2-Air 2.4 MK II LHCP antenna is best for FPV drone pilots seeking enhanced video reception clarity and range. Its high gain and wide beamwidth are ideal for both FPV racing and freestyle flying.

What are the key specifications of the X2-Air 2.4 MK II antenna?

This antenna offers a gain of 12.5 to 13 dBic, a horizontal beamwidth of 150 degrees, and a vertical beamwidth of 62 degrees. It operates in the 2.3-2.7 GHz frequency range and features an SMA connector.

Is this antenna compatible with all FPV goggles?

The X2-Air 2.4 MK II antenna uses a standard SMA connector, making it compatible with most FPV goggles and video receivers that feature the same connector type. Please check your goggle's specifications.

Where can I buy the TrueRC X2-Air 2.4 MK II LHCP antenna with fast delivery?

You can buy the TrueRC X2-Air 2.4 MK II LHCP antenna at HTDRONE. We offer fast shipping within Poland and reliable worldwide delivery via DHL, ensuring you receive your order promptly.

What is the advantage of the LHCP polarization on this antenna?

LHCP (Left-Hand Circularly Polarized) is beneficial in complex RF environments, helping to reduce interference and multipathing effects, leading to a cleaner and more stable video signal for your FPV goggles.

TrueRC X2-Air 2.4 MK II LHCP Antenna: High gain and wide beamwidth for superior FPV video reception. Compact design.
There is currently no comments or ratings for this product.
  • Rate

The Whole Thing
The Functionality Of The
Price
The Signature Of The
Opinion Of The