SLR 8000-UHF1B RF Exposure Technical Brief

Rf Exposure Technical Brief

This document provides a technical analysis of RF exposure compliance for the Motorola Solutions SLR 8000-UHF1B base station. It focuses on calculating the minimum separation distance required from the antenna to ensure that power density levels remain within the limits specified in RSS-102, Radio Frequency (RF) Exposure Compliance of Radiocommunications Apparatus. The analysis considers a typical installation scenario with a structure-mounted antenna.

The document details the permitted exposure limits for the frequency range of 406.1 MHz to 470 MHz, as well as an example calculation for an SLR8000 UHF transmitter. It outlines the key RF system and antenna parameters, including frequency, base station output power, RF network loss, antenna type (DS3X00P36U-D), and antenna length. The calculation employs a cylindrical method to estimate the spatially averaged plane-wave equivalent power density parallel to the antenna, ensuring compliance with controlled environment exposure limits.


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tags: ["SLR8000", "UHF1B", "99FT4098B", "109AB", "SLR 8000-UHF1B", "DS3X00P36U-D"]
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This document provides a technical analysis of RF exposure compliance for the Motorola Solutions SLR 8000-UHF1B base station. It focuses on calculating the minimum separation distance required from the antenna to ensure that power density levels remain within the limits specified in RSS-102, Radio Frequency (RF) Exposure Compliance of Radiocommunications Apparatus. The analysis considers a typical installation scenario with a structure-mounted antenna.

The document details the permitted exposure limits for the frequency range of 406.1 MHz to 470 MHz, as well as an example calculation for an SLR8000 UHF transmitter. It outlines the key RF system and antenna parameters, including frequency, base station output power, RF network loss, antenna type (DS3X00P36U-D), and antenna length. The calculation employs a cylindrical method to estimate the spatially averaged plane-wave equivalent power density parallel to the antenna, ensuring compliance with controlled environment exposure limits.

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