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In modern aerial reconnaissance and strike missions, video communication quality in the 5.8 GHz band is critical. WIMAX Horn Antenna is a highly efficient solution for repeaters and ground control stations, designed to operate at extreme distances. Thanks to the unique horn geometry, the antenna provides ultra-high signal directivity and minimal sidelobes, which allows for "piercing" jamming enemy electronic warfare systems.
This model is optimized for operation in a wide frequency range (4950-6000 MHz), fully covering all relevant video transmission channels for FPV and reconnaissance UAVs.
Why is the WIMAX horn antenna more effective than its counterparts?
Unlike panel antennas (patch antennas), the horn design has a natural advantage in focusing energy. This is the ideal tool for creating highly focused backbone communication channels and operating in dense electronic noise conditions.
- Extreme directivity (20 dB): Allows you to receive a stable picture at distances where conventional antennas completely lose the signal.
- Narrow beam (19 degrees): Concentrates all transmitter power in a clearly defined direction, which significantly complicates direction finding and signal suppression by enemy electronic warfare.
- Perfect matching (VSWR 26 dB): High return loss ensures that all energy goes into the air, without overheating the output stages of your repeater.
- Immunity to interference: The antenna geometry effectively cuts out interference from the rear and side hemispheres, focusing exclusively on the target.
Technical and tactical characteristics (TTC)
The WIMAX antenna demonstrates stable characteristics across the entire operating range, making it a universal tool for professional crews.
| Parameter | Characteristic value |
|---|---|
| Operating frequency range | 4950 - 6000 MHz |
| Directivity (Gain) | 20.0 dB |
| Beam width (-3 dB) | ≤ 19° |
| Return loss (RL) | ≥ 26 dB |
| Wave Resistance | 50 Ohm |
| Connector type | RP SMA-male |
| Overall dimensions | 224 x 224 x 405 mm |
| Device weight | 1.2 kg |
Operational features and application
Thanks to the RP SMA-male connector, the antenna is compatible with most modern repeaters and video communication systems without the use of additional adapters, which minimizes power loss.
- Installation on Masts: Ideal for use on remote masts to significantly increase the range of the communication horizon.
- Working in tandem with a tracker: The narrow radiation pattern allows the antenna to be used on automatic rotating platforms (antenna trackers) to track UAVs at extreme distances.
- Field resistance: The antenna design is designed for long-term operation in open areas, withstanding wind loads and precipitation.
Expert advice: The 5.8 GHz horn antenna requires precise orientation to the object (alignment). Using this antenna together with high-sensitivity video receivers allows you to increase the range of a stable video stream by 40-60% compared to standard patch antennas.
Conclusion: Technological superiority in sky
WIMAX Horn Antenna (4950-6000 MHz) is a specialized tool for those who perform tasks beyond the line of sight. High gain,Precise directionality and robust design give the pilot an advantage in radio communications, ensuring the receipt of video information at the most crucial moments of the mission.
Tactical FAQ: Six questions about the WIMAX horn antenna
1. Why is the 4950-6000 MHz range considered "universal"?
The antenna covers not only the standard 5.8 GHz, but also the "lower" frequencies of 4.9-5.2 GHz. This allows you to operate on clearer channels that are less loaded with civilian networks and electronic warfare. This is your "wide spectrum" of action to adapt to any electronic environment.
2. What is the main advantage of the "horn" design (Horn)?
The main feature is isolation. The walls of the horn cut off lateral interference. As a photographer, you will understand: it's like a deep lens hood - you see only the object in the frame, and side light (EW) does not spoil the picture. The repeater will ignore noise coming from the sides.
3. The role of this antenna in the repeater system?
It operates on the "trunk" channel. When the repeater receives a signal from a drone, the horn antenna transmits this stream further to the command post. This guarantees stable video at a distance of 10-15 km between the repeater point and the operator in the shelter.
4. How critical is the RP SMA-male connector type?
This is a standard. RP SMA (Reverse Polarity) requires attention: the cable must have a mating part (a female with a center pin). As a medic, you know: every tool has a purpose - a mistake with the connector will make system deployment impossible at a critical moment.
5. Impact on Starlink and your ASUS TUF laptop?
Starlink: Frequencies above 10 GHz will not conflict.
Laptop: Since 5 GHz is a Wi-Fi frequency, a strong antenna signal can "clog" the wireless network nearby. For a stable study and connection, always use a LAN cable from Starlink to your laptop.
6. Mast installation considerations?
The horn has a narrow beam ($30^\circ\text{--}40^\circ$). It must be aimed with surgical precision. The slightest deviation and the video will disappear. Use a rigid mast that is resistant to wind and a rotating mechanism for precise channel alignment.
ensuring the receipt of video information at the most crucial moments of the mission.
Tactical FAQ: Six questions about the WIMAX horn antenna
1. Why is the 4950-6000 MHz range considered "universal"?
The antenna covers not only the standard 5.8 GHz, but also the "lower" frequencies of 4.9-5.2 GHz. This allows you to work on clearer channels that are less loaded with civilian networks and electronic warfare. This is your "wide spectrum" of action for adaptation to any electronic environment.
2. What is the main advantage of the "horn" design (Horn)?
The main feature is isolation. The walls of the horn cut off lateral interference. As a photographer, you will understand: it is like a deep lens hood - you see only the object in the frame, and the side light (electronic warfare) does not spoil the picture. The repeater will ignore noise coming from the sides.
3. What is the role of this antenna in the repeater system?
It operates on the "trunk" channel. When the repeater receives a signal from the drone, the horn antenna transmits this stream further to the command post. This guarantees stable video at a distance of 10-15 km between the repeater point and the operator in the shelter.
4. How critical is the RP SMA-male connector type?
This is the standard. RP SMA (Reverse Polarity) requires attention: the cable must have a mating connector (female with a center pin). As a medic, you know: every tool has its purpose - a connector error will make system deployment impossible at a critical moment.
5. Impact on Starlink and your ASUS TUF laptop?
Starlink: Frequencies above 10 GHz will not conflict.
Laptop: Since 5 GHz is a Wi-Fi frequency, a strong antenna signal can "clog" the nearby wireless network. For stable study and communication, always use a LAN cable from Starlink to your laptop.
6. Mast mounting considerations?
The horn has a narrow beam ($30^\circ\text{--}40^\circ$). It must be aimed with surgical precision. The slightest deviation and the video will disappear. Use a rigid mast, resistant to wind, and a swivel mechanism for precise channel alignment.
ensuring the receipt of video information at the most crucial moments of the mission.
Tactical FAQ: Six questions about the WIMAX horn antenna
1. Why is the 4950-6000 MHz range considered "universal"?
The antenna covers not only the standard 5.8 GHz, but also the "lower" frequencies of 4.9-5.2 GHz. This allows you to work on clearer channels that are less loaded with civilian networks and electronic warfare. This is your "wide spectrum" of action for adaptation to any electronic environment.
2. What is the main advantage of the "horn" design (Horn)?
The main feature is isolation. The walls of the horn cut off lateral interference. As a photographer, you will understand: it is like a deep lens hood - you see only the object in the frame, and the side light (electronic warfare) does not spoil the picture. The repeater will ignore noise coming from the sides.
3. What is the role of this antenna in the repeater system?
It operates on the "trunk" channel. When the repeater receives a signal from the drone, the horn antenna transmits this stream further to the command post. This guarantees stable video at a distance of 10-15 km between the repeater point and the operator in the shelter.
4. How critical is the RP SMA-male connector type?
This is the standard. RP SMA (Reverse Polarity) requires attention: the cable must have a mating connector (female with a center pin). As a medic, you know: every tool has its purpose - a connector error will make system deployment impossible at a critical moment.
5. Impact on Starlink and your ASUS TUF laptop?
Starlink: Frequencies above 10 GHz will not conflict.
Laptop: Since 5 GHz is a Wi-Fi frequency, a strong antenna signal can "clog" the nearby wireless network. For stable study and communication, always use a LAN cable from Starlink to your laptop.
6. Mast mounting considerations?
The horn has a narrow beam ($30^\circ\text{--}40^\circ$). It must be aimed with surgical precision. The slightest deviation and the video will disappear. Use a rigid mast, resistant to wind, and a swivel mechanism for precise channel alignment.
Six questions about the WIMAX horn antenna
1. Why is the 4950-6000 MHz range considered "universal"?
The antenna covers not only the standard 5.8 GHz, but also the "lower" frequencies of 4.9-5.2 GHz. This allows you to work on clearer channels that are less loaded with civilian networks and electronic warfare. This is your "wide spectrum" of action for adapting to any electronic environment.
2. What is the main advantage of the "horn" design?
The main feature is isolation. The horn walls cut off lateral interference. As a photographer, you'll understand: it's like a deep lens hood — you see only the subject in the frame, and side light (electronic warfare) doesn't spoil the picture. The repeater will ignore noise coming from the side.
3. What is the role of this antenna in the repeater system?
It operates on the "trunk" channel. When the repeater receives a signal from the drone, the horn antenna transmits this stream further to the command post. This guarantees stable video at a distance of 10-15 km between the repeater point and the operator in the shelter.
4. How critical is the RP SMA-male connector type?
Is this a standard. RP SMA (Reverse Polarity) requires attention: the cable must have a mating connector (female with a center pin). As a medic, you know: every tool has its purpose - a connector error will make system deployment impossible at a critical moment.
5. Impact on Starlink and your ASUS TUF laptop?
Starlink: Frequencies above 10 GHz will not conflict.
Laptop: Since 5 GHz is a Wi-Fi frequency, a strong antenna signal can "clog" the nearby wireless network. For stable study and communication, always use a LAN cable from Starlink to your laptop.
6. Mast mounting considerations?
The horn has a narrow beam ($30^\circ\text{--}40^\circ$). It must be aimed with surgical precision. The slightest deviation and the video will disappear. Use a rigid mast, resistant to wind, and a swivel mechanism for precise channel alignment.
Six questions about the WIMAX horn antenna
1. Why is the 4950-6000 MHz range considered "universal"?
The antenna covers not only the standard 5.8 GHz, but also the "lower" frequencies of 4.9-5.2 GHz. This allows you to work on clearer channels that are less loaded with civilian networks and electronic warfare. This is your "wide spectrum" of action for adapting to any electronic environment.
2. What is the main advantage of the "horn" design?
The main feature is isolation. The horn walls cut off lateral interference. As a photographer, you'll understand: it's like a deep lens hood — you see only the subject in the frame, and side light (electronic warfare) doesn't spoil the picture. The repeater will ignore noise coming from the side.
3. What is the role of this antenna in the repeater system?
It operates on the "trunk" channel. When the repeater receives a signal from the drone, the horn antenna transmits this stream further to the command post. This guarantees stable video at a distance of 10-15 km between the repeater point and the operator in the shelter.
4. How critical is the RP SMA-male connector type?
Is this a standard. RP SMA (Reverse Polarity) requires attention: the cable must have a mating connector (female with a center pin). As a medic, you know: every tool has its purpose - a connector error will make system deployment impossible at a critical moment.
5. Impact on Starlink and your ASUS TUF laptop?
Starlink: Frequencies above 10 GHz will not conflict.
Laptop: Since 5 GHz is a Wi-Fi frequency, a strong antenna signal can "clog" the nearby wireless network. For stable study and communication, always use a LAN cable from Starlink to your laptop.
6. Mast mounting considerations?
The horn has a narrow beam ($30^\circ\text{--}40^\circ$). It must be aimed with surgical precision. The slightest deviation and the video will disappear. Use a rigid mast, resistant to wind, and a swivel mechanism for precise channel alignment.
but also the "lower" frequencies of 4.9-5.2 GHz. This allows you to work on cleaner channels that are less loaded with civilian networks and electronic warfare. This is your "wide spectrum" of operation for adapting to any electronic environment.
2. What is the main advantage of the "horn" design?
The main feature is isolation. The horn walls cut off side interference. As a photographer, you will understand: it's like a deep lens hood - you see only the object in the frame, and side light (electronic warfare) does not spoil the picture. The repeater will ignore noise coming from the side.
3. What is the role of this antenna in the relay system?
It operates on the "trunk" channel. When the relay receives a signal from the drone, the horn antenna transmits this stream further to the command post. This ensures stable video at a distance of 10-15 km between the relay point and the operator in the shelter.
4. How critical is the RP SMA-male connector type?
This is a standard. RP SMA (Reverse Polarity) requires attention: the cable must have a mating part (a "female" with a central pin). As a medic, you know: every tool has its purpose - an error with the connector will make system deployment impossible at a critical moment.
5. Impact on Starlink and your ASUS TUF laptop?
Starlink: Frequencies above 10 GHz will not conflict.
Laptop: Since 5 GHz is a Wi-Fi frequency, a strong antenna signal can clutter up the nearby wireless network. For a stable study and connection, always use a LAN cable from Starlink to your laptop.
6. Features of installation on a mast?
The horn has a narrow beam ($30^\circ\text{--}40^\circ$). It must be aimed with surgical precision. The slightest deviation and the video will disappear. Use a rigid mast that is resistant to wind and a rotating mechanism for precise channel alignment.
but also the "lower" frequencies of 4.9-5.2 GHz. This allows you to work on cleaner channels that are less loaded with civilian networks and electronic warfare. This is your "wide spectrum" of operation for adapting to any electronic environment.
2. What is the main advantage of the "horn" design?
The main feature is isolation. The horn walls cut off side interference. As a photographer, you will understand: it's like a deep lens hood - you see only the object in the frame, and side light (electronic warfare) does not spoil the picture. The repeater will ignore noise coming from the side.
3. What is the role of this antenna in the relay system?
It operates on the "trunk" channel. When the relay receives a signal from the drone, the horn antenna transmits this stream further to the command post. This ensures stable video at a distance of 10-15 km between the relay point and the operator in the shelter.
4. How critical is the RP SMA-male connector type?
This is a standard. RP SMA (Reverse Polarity) requires attention: the cable must have a mating part (a "female" with a central pin). As a medic, you know: every tool has its purpose - an error with the connector will make system deployment impossible at a critical moment.
5. Impact on Starlink and your ASUS TUF laptop?
Starlink: Frequencies above 10 GHz will not conflict.
Laptop: Since 5 GHz is a Wi-Fi frequency, a strong antenna signal can clutter up the nearby wireless network. For a stable study and connection, always use a LAN cable from Starlink to your laptop.
6. Features of installation on a mast?
The horn has a narrow beam ($30^\circ\text{--}40^\circ$). It must be aimed with surgical precision. The slightest deviation and the video will disappear. Use a rigid mast that is resistant to wind and a rotating mechanism for precise channel alignment.
What is the main advantage of the "horn" design?
The main feature is isolation. The walls of the horn cut out lateral interference. As a photographer, you will understand: it's like a deep lens hood - you see only the object in the frame, and side light (electronic warfare) does not spoil the picture. The repeater will ignore noise coming from the side.
3. The role of this antenna in the repeater system?
It operates on the "trunk" channel. When the repeater receives a signal from the drone, the horn antenna transmits this stream further to the command post. This ensures stable video at a distance of 10-15 km between the relay point and the operator in the shelter.
4. How critical is the RP SMA-male connector type?
This is a standard. RP SMA (Reverse Polarity) requires attention: the cable must have a mating part (a female with a central pin). As a medic, you know: every tool has its purpose - an error with the connector will make system deployment impossible at a critical moment.
5. Impact on Starlink and your ASUS TUF laptop?
Starlink: Frequencies above 10 GHz, there will be no conflict.
Laptop: Since 5 GHz — This is a Wi-Fi frequency; a strong antenna signal can clog up the nearby wireless network. For stable study and communication, always use a LAN cable from Starlink to your laptop.
6. Mast installation considerations?
The horn has a narrow beam ($30^\circ\text{--}40^\circ$). It must be aimed with surgical precision. The slightest deviation and the video will disappear. Use a rigid mast, resistant to wind, and a rotating mechanism for precise channel adjustment.
What is the main advantage of the "horn" design?
The main feature is isolation. The walls of the horn cut out lateral interference. As a photographer, you will understand: it's like a deep lens hood - you see only the object in the frame, and side light (electronic warfare) does not spoil the picture. The repeater will ignore noise coming from the side.
3. The role of this antenna in the repeater system?
It operates on the "trunk" channel. When the repeater receives a signal from the drone, the horn antenna transmits this stream further to the command post. This ensures stable video at a distance of 10-15 km between the relay point and the operator in the shelter.
4. How critical is the RP SMA-male connector type?
This is a standard. RP SMA (Reverse Polarity) requires attention: the cable must have a mating part (a female with a central pin). As a medic, you know: every tool has its purpose - an error with the connector will make system deployment impossible at a critical moment.
5. Impact on Starlink and your ASUS TUF laptop?
Starlink: Frequencies above 10 GHz, there will be no conflict.
Laptop: Since 5 GHz — This is a Wi-Fi frequency; a strong antenna signal can clog up the nearby wireless network. For stable study and communication, always use a LAN cable from Starlink to your laptop.
6. Mast installation considerations?
The horn has a narrow beam ($30^\circ\text{--}40^\circ$). It must be aimed with surgical precision. The slightest deviation and the video will disappear. Use a rigid mast, resistant to wind, and a rotating mechanism for precise channel adjustment.
RP SMA (Reverse Polarity) requires attention: the cable must have a mating connector (female with a center pin). As a medic, you know: every tool has its purpose - a connector error will make system deployment impossible at a critical moment.
5. Impact on Starlink and your ASUS TUF laptop?
Starlink: Frequencies above 10 GHz will not conflict.
Laptop: Since 5 GHz is a Wi-Fi frequency, a strong antenna signal can "clog" the nearby wireless network. For stable study and communication, always use a LAN cable from Starlink to your laptop.
6. Mast mounting considerations?
The horn has a narrow beam ($30^\circ\text{--}40^\circ$). It must be aimed with surgical precision. The slightest deviation and the video will disappear. Use a rigid mast, resistant to wind, and a swivel mechanism for precise channel alignment.
RP SMA (Reverse Polarity) requires attention: the cable must have a mating connector (female with a center pin). As a medic, you know: every tool has its purpose - a connector error will make system deployment impossible at a critical moment.
5. Impact on Starlink and your ASUS TUF laptop?
Starlink: Frequencies above 10 GHz will not conflict.
Laptop: Since 5 GHz is a Wi-Fi frequency, a strong antenna signal can "clog" the nearby wireless network. For stable study and communication, always use a LAN cable from Starlink to your laptop.
6. Mast mounting considerations?
The horn has a narrow beam ($30^\circ\text{--}40^\circ$). It must be aimed with surgical precision. The slightest deviation and the video will disappear. Use a rigid mast, resistant to wind, and a swivel mechanism for precise channel alignment.