RF Exposure Prediction for Human Presence Detector

RF exposure report

This document presents a prediction of Maximum Permissible Exposure (MPE) at a given distance for the Human presence detector, model RSH-RD24G01, with FCC ID 2A9K2-RSH-RD24G01Z. The evaluation adheres to FCC KDB447498 D01 guidelines for mobile and portable devices, as well as FCC CFR 47 parts 1.1310 and 2.1091 concerning radiofrequency radiation exposure limits and evaluation procedures.

The report outlines the limits for both occupational/controlled and general population/uncontrolled exposures, detailing the electric field strength, magnetic field strength, power density, and averaging time for various frequency ranges. A test procedure is described, utilizing the equation from OET Bulletin 65 to calculate power density based on power input to the antenna, antenna gain, and distance.

The EUT RF exposure analysis focuses on the Zigbee mode, presenting maximum output power, antenna gain, distance, and the resulting power density. The results are compared against the general population/uncontrolled exposure limits to ensure compliance. The worst-case mode is highlighted in the report.


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tags: ["RSH-RD24G01", "Human presence detector", "2A9K2-RSH-RD24G01Z", "RF Exposure"]
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This document presents a prediction of Maximum Permissible Exposure (MPE) at a given distance for the Human presence detector, model RSH-RD24G01, with FCC ID 2A9K2-RSH-RD24G01Z. The evaluation adheres to FCC KDB447498 D01 guidelines for mobile and portable devices, as well as FCC CFR 47 parts 1.1310 and 2.1091 concerning radiofrequency radiation exposure limits and evaluation procedures.

The report outlines the limits for both occupational/controlled and general population/uncontrolled exposures, detailing the electric field strength, magnetic field strength, power density, and averaging time for various frequency ranges. A test procedure is described, utilizing the equation from OET Bulletin 65 to calculate power density based on power input to the antenna, antenna gain, and distance.

The EUT RF exposure analysis focuses on the Zigbee mode, presenting maximum output power, antenna gain, distance, and the resulting power density. The results are compared against the general population/uncontrolled exposure limits to ensure compliance. The worst-case mode is highlighted in the report.

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