This document provides comprehensive specifications and test results for the ET2509 mouse antenna. The antenna operates in the 2400/2450/2500 MHz frequency bands and features a characteristic impedance of 50±10 Ω. The maximum gain is specified as max 0.11 dBi, with a VSWR of less than 1.0. The antenna is designed for a maximum power of 1mW and utilizes linear, vertical polarization with an omni-directional radiation pattern.
The antenna is constructed using PCB material and is designed to operate within a temperature range of -20°C to +60°C, with a storage temperature range of -20°C to +70°C. The document also includes test results for gain at different frequencies, as well as vertical and horizontal antenna patterns. These patterns provide insights into the antenna's radiation characteristics and performance in various orientations.
The test results indicate the antenna's performance at 2400 MHz, 2450 MHz, and 2500 MHz, showing the vertical and horizontal gain values. The antenna patterns are presented graphically, illustrating the signal strength and directionality in both vertical and horizontal planes. This information is crucial for understanding the antenna's suitability for its intended application in a mouse device.
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The antenna is constructed using PCB material and is designed to operate within a temperature range of -20°C to +60°C, with a storage temperature range of -20°C to +70°C. The document also includes test results for gain at different frequencies, as well as vertical and horizontal antenna patterns. These patterns provide insights into the antenna's radiation characteristics and performance in various orientations.
The test results indicate the antenna's performance at 2400 MHz, 2450 MHz, and 2500 MHz, showing the vertical and horizontal gain values. The antenna patterns are presented graphically, illustrating the signal strength and directionality in both vertical and horizontal planes. This information is crucial for understanding the antenna's suitability for its intended application in a mouse device.
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