DJI

DJI CP.RN.00000210.01 Video Transmission High-Gain Antennas

Extend and stabilize your DJI video transmission range with four high-gain bendable antennas that mount directly to your existing DJI feeder lines.

$91.47*
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*Price sourced from Amazon.com. Last updated:Aug 28, 2026.Price and availability are subject to change — details.

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Overview

The DJI CP.RN.00000210.01 High-Gain Antennas are a four-unit upgrade set designed for DJI's video transmission system, packaged with four corresponding feeder lines for complete installation. The core engineering difference from standard antennas is gain — these antennas concentrate transmitted and received RF energy more efficiently in their primary directional axis, which translates to improved signal performance at distance or in lightly contested RF environments. Gain is always a trade-off with directionality: higher-gain antennas improve performance in the direction they're pointed while reducing omnidirectional coverage, which is why the bendable construction is a functional feature rather than just a convenience — it allows the operator to physically orient each antenna toward the signal source to realize the gain advantage.

In a DJI video transmission production deployment — whether on a film set, live broadcast rig, or remote monitoring setup — these antennas address the scenario where the stock transmission antenna performance is adequate at short range but becomes marginal at the distances the production actually needs. The four-antenna count matches the full receiver configuration of supported DJI transmission systems, and the included feeder lines mean the kit is self-contained for a complete antenna swap. The bendable design handles the varied mounting geometries of production rigs, allowing each antenna to be angled correctly regardless of whether the transmission receiver is mounted vertically, horizontally, or at an intermediate angle relative to the transmitting end.

Key Features

With a bendable design, these high-gain antennas further improve transmission capability.

Improved transmission capability.

In the Box - High-Gain Antenna × 4, Feeder Line × 4

Specifications

Brand
DJI
Part Number
CP.RN.00000210.01
Type
High-Gain Antenna
Design
Bendable
Box Contents
High-Gain Antenna × 4, Feeder Line × 4
Compatibility
Specific DJI Video Transmission systems (verify by part number)

Frequently Asked Questions

These antennas carry DJI part number CP.RN.00000210.01 — compatibility is specific to DJI's video transmission product line, and the relevant compatible system should be confirmed against DJI's official parts list for your transmitter/receiver model. Do not assume cross-compatibility with DJI drone remote controllers or other antenna-equipped accessories without explicit confirmation from DJI's documentation.
These antennas (CP.RN.00000210.01) are designed for DJI's video transmission system lineup — the bendable design and feeder line connectors are specific to DJI's transmission hardware. Verify the model number against your specific DJI transmission unit (such as DJI Transmission or compatible systems) before purchasing, as DJI produces multiple transmission product generations.
Gain in antenna design describes how effectively the antenna concentrates transmitted and received RF energy in a preferred direction compared to a reference omnidirectional antenna. A higher-gain antenna captures and emits signal more efficiently in its directional pattern, which translates to stronger effective signal at a given distance — improving range and stability in environments with interference or physical obstructions.
High-gain antennas focus signal energy in a narrower beam pattern compared to omnidirectional antennas, effectively increasing range and signal strength in the targeted direction. In practice, this means improved transmission reliability over longer distances or through more environmental interference — but it typically requires more deliberate antenna orientation toward the source compared to omnidirectional designs.
The ability to reposition the antenna's orientation allows the operator to align the antenna's gain pattern toward the transmitter rather than leaving it fixed at the factory angle. For stationary or semi-stationary video transmission setups where the source position is known, bending the antenna toward the signal source maximizes the high-gain advantage and reduces dead spots in the transmission coverage.
The bendable construction allows you to physically orient each antenna's angle without tools, conforming to the spatial requirements of your mounting position — rig-mounted, handheld, or rack-deployed. Optimal antenna orientation relative to the transmitter affects received signal quality, so the ability to adjust angle in the field is a practical advantage over rigid fixed-angle antennas.
The box contains four high-gain antennas and four feeder lines. This is a complete replacement or upgrade set for a four-antenna DJI transmission system configuration, providing all the connecting cables needed for installation without requiring separately sourced feeder lines.
The bundle includes 4 High-Gain Antennas and 4 Feeder Lines, which corresponds to a full replacement set for the compatible DJI receiver/transmitter that uses four antenna connections. Whether you install all four or a subset depends on your system's antenna port configuration — consult the DJI documentation for your specific transmission unit.
The bendable design and feeder line construction suggest they are intended to be semi-permanent installations on a transmission unit rather than frequently swapped accessories. The 4-pack with feeder lines represents a complete upgrade or replacement set — field portability is not the primary design intent.
No — high-gain antennas achieve their signal improvement through directionality. Signal strength is improved in the antenna's primary reception axis at the cost of reduced coverage from angles outside that pattern. Correct physical orientation of the antennas relative to the likely signal source direction is important to realize the gain advantage.