Motorola SAR EME Compliance Test Report

Part 2 of 2

Test Laboratory Information

Laboratory: CGISS EME Test Laboratory

Address: 8000 West Sunrise Blvd, Fort Lauderdale, FL. 33322

Certificate Number: 1449-01

Report Details

Date of Report: October 26, 2004
Report Revision: Rev. O
Manufacturer: Motorola
Product Description: Distributed Input Output System (DIOS); 100mW UHF 450-470MHz; 12.5KHz
FCC ID: AZ489FT4871
Device Model(s): F4614A (Piccolo XR), F4604A (PIU Controller)
Test Period: 9/17/04 - 10/22/04
Technician: Ed Church (EME Technician Electronics II)
Responsible Engineer: Deanna Zakharia (Elect. Principle Staff Eng.)
Author: Michael Sailsman (Global EME Regulatory Affairs Liaison)

Disclaimer and Certification

This report shall not be reproduced without written approval from an officially designated representative of the Motorola EME Laboratory. Based on the information and the testing results provided herein, the undersigned certifies that when used as stated in the operating instructions supplied, said product complies with the national and international reference standards and guidelines.

Signature on file: Ken Enger, Senior Resource Manager, Laboratory Director, CGISS EME Lab

Date Approved: 10/27/04

Appendix A: Power Slump Data/Shortened Scan

This appendix contains data related to the power slump and shortened scan results for the PIU device. It includes tables of power output over time and graphical representations of power slump.

Key Findings:

  • Shortened scan run time: 7 minutes.
  • Representative "normal" scan run time: 24 minutes.
  • Calculated SAR (1g Avg) from "Shortened" scan: 0.32 mW/g.
  • Calculated SAR (10g Avg) from "Shortened" scan: 0.21 mW/g.
  • Specific test conditions for DUT right side against the phantom are detailed, including probe information (ET3DV6 - SN1384), tissue parameters, and SAR values for 1g and 10g averages.

Appendix B: Data Results

This appendix presents detailed SAR data results for various test configurations, including DUT right side against the phantom for the PIU device and Piccolo XR device. It includes SAR distribution plots and SAR vs. distance graphs.

Key Data Points:

  • For PIU DUT (right side): SAR (1g) values up to 0.318 mW/g, SAR (10g) up to 0.212 mW/g.
  • For Piccolo XR DUT (back side): SAR (1g) values up to 0.307 mW/g, SAR (10g) up to 0.210 mW/g.

Appendix C: Dipole System Performance Check Results

This appendix details the results of dipole validation scans performed to ensure the system's performance meets applicable IEEE targets. Validation was conducted using FCC body tissue parameters for the specified frequency.

Appendix D: Probe/Dipole Calibration Certificates

This section contains the calibration certificates for the probes (ET3DV6 SN:1384) and dipoles (D450V2 SN:1001, D450V2 SN:1002) used during the SAR testing. These certificates document the traceability, calibration procedures, equipment used, and performance parameters of the measurement devices.

Key Calibration Information:

  • Probe ET3DV6 SN:1384: Calibrated on May 27, 2004. Includes sensitivity, diode compression, boundary effect, sensor offset, frequency response, receiving pattern, dynamic range, and conversion factor assessments.
  • Dipole D450V2 SN:1001: Calibrated on May 22, 2004. Includes impedance and return loss measurements, handling instructions, design details, and power test information.
  • Dipole D450V2 SN:1002: Calibrated on March 13, 2004. Includes similar calibration details as SN:1001.

Detailed SAR Measurements and System Validation

The report includes extensive data from system validation and SAR measurements performed using the DASY4 system. This involves testing with specific dipoles (D450V2 SN:1001, SN:1002) and probes (ET3DV6 SN:1507) under various simulated tissue conditions (Head and Body) at 450 MHz.

Key Measurement Conditions and Results:

  • Frequency: 450 MHz
  • Tissue Parameters: Varying dielectric permittivity and conductivity values for Head and Body simulations are documented.
  • SAR Measurement Conditions: Measurements were performed in flat phantoms with specific dipole positioning and grid spacing. Input power was typically 250 mW, normalized to 1W.
  • SAR Values: Reported SAR values (1g and 10g averages) are presented for various configurations, with detailed plots showing SAR distribution. For example, SAR (1g) values for dipole measurements ranged from approximately 1.10 mW/g to 5.72 mW/g, depending on the specific test setup and normalization.
  • System Validation: Target SAR values are compared against measured SAR values, with percent differences reported to be within system uncertainty limits.

Appendix E: Illustration of Body-Worn Accessories

This appendix illustrates the body-worn carry accessories offered for FCC ID: AZ489FT4871. Photos of the front, back, and side views of Model 5687511V73A are provided.

Appendix F: Accessories and Options Test Status and Separation Distances

This appendix summarizes the test status and required separation distances for various body-worn accessories, including carry cases, data cables, and other attachment models. This information is crucial for ensuring proper RF exposure compliance when using the device with these accessories.

Summary of Accessories:

Accessory Type Model Tested? Min. Separation Distance (mm) Comments
Carry Case 5687511V73 Yes 24-35 N/A
Data Cable FKN8171A Yes NA N/A
Data Cable FTN6597A Yes NA N/A
Data Cable FTN6625A Yes NA Similar to FKN8171A
Data Cable FKN8199A No NA N/A
Other Attachment FKN8203A No NA PIU to PIU cable – used for programming other PIUs
Other Attachment FKN8204A No NA 3 pin battery cable – installation part
Other Attachment FKN8250A No NA DC power cable – installation part
Other Attachment FCN6538A No NA PIU DC adaptor used when hardwired in the field

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