Description
Dual Polarized Vivaldi Antenna TC-93177A
The Dual Polarized Vivaldi Antenna TC-93177A is a high-performance RF test antenna designed for accurate over-the-air measurements across a wide frequency range. Operating from 6 GHz to 12 GHz, this dual polarized Vivaldi antenna supports demanding RF testing applications where polarization diversity, wide bandwidth, and measurement repeatability are critical.
From the start, the dual polarized Vivaldi antenna provides reliable performance for both receiver sensitivity testing and transmitter radiated power testing. Engineers commonly use this antenna in controlled RF test environments to evaluate wireless devices under real-world conditions.
Designed for Advanced Wireless Testing
This dual polarized Vivaldi antenna supports vertical and horizontal polarization, allowing engineers to capture a complete picture of device performance. As a result, it is well suited for testing modern wireless technologies that rely on complex signal paths and multiple polarizations.
The TC-93177A performs especially well in applications involving mobile phones, LTE, GNSS, UWB, and 5G devices. Because it covers a broad frequency range, the antenna reduces the need for multiple antennas during test setup, which saves time and improves workflow efficiency.
Reliable Performance in RF Test Environments
The Dual Polarized Vivaldi Antenna TC-93177A delivers stable radiation patterns and consistent gain across its operating band. Therefore, it helps ensure repeatable test results during compliance testing, product validation, and R&D development.
In addition, the antenna integrates easily into shielded test chambers, RF shield boxes, and over-the-air (OTA) test systems. Its design supports accurate measurements in both laboratory and production environments.
Key Features & Benefits
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Dual polarized Vivaldi antenna for RF testing
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Wide frequency range from 6 GHz to 12 GHz
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Supports receiver sensitivity and radiated power testing
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Suitable for LTE, GNSS, UWB, and 5G applications
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Stable radiation patterns for repeatable results
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