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HLEHT682BTNPDA Scanner

Unitech Electronics Co., Ltd.
PDA Scanner - FCC ID HLEHT682BTN - Unitech Electronics Co., Ltd.
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
May 09, 2013
Application Purpose
Original Equipment
Date of Application
May 02, 2013
Equipment Note
PDA Scanner
Frequency Range
2412.00000000 - 2462.00000000
Company
Unitech Electronics Co., Ltd.
Country
Taiwan

Documents & Files

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Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

HT682 PDA Scanner - HT682 - User’s Manual 400974G Version 0.1 i Preface About This Manual This manual explains how to install, operate and maintain the HT682 PDA Scanner. No part of this publication may be reproduced or used in any form, or by any electrical or mechanical means, without permission in writing from the manufacturer. This includes electronic or mechanical means, such as photocopying, recording, or information storage and retrieval systems. The material in this manual is subject to change without notice. © Copyright 2013 Unitech Electronics Co., Ltd. All rights reserved. Unitech global website address: http:\\www.unitech-adc.com Bluetooth is a registered trademark of Bluetooth SIG. Microsoft, Windows and ActiveSync are either registered trademarks or trademarks of Microsoft Corporation. Other product names mentioned in this manual may be trademarks or Registered trademarks of their respective companies and are hereby acknowledged. Unitech is a member of Oracle Embedded Software Licensing Program. ii Regulatory Compliance Statements FCC Warning Statement This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to part 15 of the FCC rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: –Reorient or relocate the receiving antenna. –Increase the separation between the equipment and receiver. –Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. –Consult the dealer or an experienced radio/TV technician for help. 1. This Transmitter must not be co-located or operating in conjunction with any other antenna or transmitter. 2. This equipment complies with FCC RF radiation exposure limits set forth for an uncontrolled environment. To maintain compliance with FCC RF exposure compliance requirements, avoid direct contact to the transmitting antenna during transmitting. 3. Any changes or modifications (including the antennas) made to this device that are not expressly approved by the manufacturer may void the user’s authority to operate the equipment. FCC Label Statement This device complies with part 15 of the FCC rules. Operation is subject to the following two conditions: 1. This device may not cause harmful interference, and 2. This device must accept any interference received, including interference that may cause undesired operation. iii RF Radiation Exposure Statement: For body worn operation, this PDA has been tested and meets FCC RF exposure guidelines when used with an accessory that contains no metal and that positions the handset a minimum of 1.5 cm from the body. Use of other accessories may not ensure compliance with FCC RF exposure guidelines. Canadian Compliance Statement This Class B Digital apparatus meets all requirements of the Canadian Interference-Causing Equipment Regulations. Cet appareil numerique de la classe B respecte les exigences du Reglement sur le material broilleur du Canada. European Conformity Statement Declaration of Conformity with Regard to the R&TTE 1999/5/EC and EMC 89/336/ EEC directives. RoHS Statement This device conforms to RoHS (Reduction Of Hazardous Sub-stances) European Union regulations that set maximum concentration limits on hazardous materials used in electrical and electronic equipment. Taiwan NCC Warning Statement 交通部電信總局低功率電波輻射性電機管理辦法 (930322) 根據交通部低功率管理辦法規定: 第十二條 經型式認證合格之低功率射頻電機,非經許可,公司 、商號或使用者均不得擅自變更 頻率 、加大功率或變更原設計之特性及功能。 第十四條 低功率射頻電機之使用不得影響飛航安全及干擾合法通信;經發現有干擾現象時,應 立即停用 ,並改善至無干擾時方得繼續使用。前項合法通信,指依電信法規定作業之 無線電通信。 低功率 射頻電機須忍受合法通信或工業、科學及醫療用電波輻射性電機設備之干擾。 iv Laser Information The Unitech HT682 series is certified in the U.S. to conform to the requirements of DHHS/CDRH 21CFR Subchapter J and to the requirements of IEC 825-1. Class II and Class 2 products are not considered to be hazardous. The HT682 series contains internally a Visible Laser Diode (VLD) whose emissions do not exceed the maximum limits as set forth in the above regulations. The scanner is designed so that there is no human access to harmful laser light during normal operation, user maintenance or during prescribed service operations. The laser safety warning label required by the DHHS/IEC for the HT682 series' optional laser scanner module is located on the memory compartment cover, on the back of the unit. CAUTION! Use of controls or adjustments or performance of procedures other than those specified herein may result in hazardous laser light. Use of optical instruments with the scanner will increase eye hazard. Optical instruments include binoculars, microscopes, and magnifying glasses. This does not include eyeglasses worn by the user. Battery Notices The HT682 is equipped with a Lithium-Ion battery pack and backup battery. Both batteries will discharge after an extended period of not being used. When both batteries are discharged, recharge the unit for 16 hours in order to fully charge the main battery and backup battery. Recharge the HT682 through the following: 1. Plug the USB charging cable to the HT682 and plug the 5V/3A AC-DC adapter to the power jack of the USB charging cable. 2. Place the HT682 into the docking station and plug the 5V/3A AC-DC adapter to the power jack of the docking station. If the main battery is removed, the backup battery ensures the data on SDRAM is safe for up to 6 hours. To prevent data loss, do not leave the HT682 uncharged with the main battery …

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Cover Letter(s)

unitech

Cover Letter(s)

CERTIFICATE OF COMPLIANCE Report No.: NEI-FCCE-1-1301036 Issued Date: Apr. 08, 2013 Authorized under Declaration of Conformity according to 47 CFR, Part 2 and Part 15 of the FCC Rules. The product listed in follows was (were) tested in the Neutron EMC Laboratory to comply with the criteria limits Class B of conducted and radiated emissions of the Technical Standards FCC Part 15, Subpart B: 2012, established by the FCC, USA. Equipment PDA Scanner Model Name HT682 Brand Name unitech Applicant unitech electronics co., ltd. Address 5F, No. 136, Lane 235, Pao-Chiao Rd., Hsin-Tien Dist., New Taipei City, Taiwan Measurement ANSI C63.4: 2009 Method ICES-003 Issue 5: 2012 CISPR 22: 2008 CAN/CSA-CISPR 22-10 The test data, data evaluation, and equipment configuration contained in our test report (Report No. NEI-FCCE-1-1301036) were obtained utilizing the test procedures, test instruments, test sites that has been accredited by the Authority of NVLAP and TAF according to the ISO-17025 quality assessment standard and technical standard(s). The test data contained in the referenced test report relate only to the EUT sample and item(s) tested. Andy Chiu Authorized Signatory Neutron Engineering Inc. B1, No. 37, Lane 365, YangGuang St., NeiHu District 114, Taipei, Taiwan. TEL: +886-2-2657-3299 FAX: +886-2-2657-3331

External Photos

RV-0000000 Project No.: 1301036 Page 2 of 2 5 Neutron Engineering Inc. 1301036 130103 6 RV-0000000 Project No.: 1301036 Page 3 of 2 5 Neutron Engineering Inc. 1301036 RV-0000000 Project No.: 1301036 Page 4 of 2 5 Neutron Engineering Inc. 1301036 130103 6 RV-0000000 Project No.: 1301036 Page 22 of 2 5 Neutron Engineering Inc. 1301036 RV-0000000 Project No.: 1301036 Page 23 of 2 5 Neutron Engineering Inc. 1301036 130103 6 RV-0000000 Project No.: 1301036 Page 24 of 2 5 Neutron Engineering Inc. 1301036 RV-0000000 Project No.: 1301036 Page 25 of 2 5 Neutron Engineering Inc. 1301036

Internal Photos

RV-0000000 Project No.: 1301036 Page 5 of 2 5 Neutron Engineering Inc. 1301036 130103 6 RV-0000000 Project No.: 1301036 Page 6 of 2 5 Neutron Engineering Inc. 1301036 130103 6 RV-0000000 Project No.: 1301036 Page 7 of 2 5 Neutron Engineering Inc. 1301036 130103 6 RV-0000000 Project No.: 1301036 Page 8 of 2 5 Neutron Engineering Inc. 1301036 130103 6 RV-0000000 Project No.: 1301036 Page 9 of 2 5 Neutron Engineering Inc. 1301036 RV-0000000 Project No.: 1301036 Page 10 of 2 5 Neutron Engineering Inc. 1301036 130103 6 RV-0000000 Project No.: 1301036 Page 11 of 2 5 Neutron Engineering Inc. 1301036 RV-0000000 Project No.: 1301036 Page 12 of 2 5 Neutron Engineering Inc. 1301036 130103 6 RV-0000000 Project No.: 1301036 Page 13 of 2 5 Neutron Engineering Inc. 1301036 RV-0000000 Project No.: 1301036 Page 14 of 2 5 Neutron Engineering Inc. 1301036 130103 6 RV-0000000 Project No.: 1301036 Page 15 of 2 5 Neutron Engineering Inc. 1301036 RV-0000000 Project No.: 1301036 Page 16 of 2 5 Neutron Engineering Inc. 1301036 RV-0000000 Project No.: 1301036 Page 17 of 2 5 Neutron Engineering Inc. Wifi Antenna(5000971) Bluetooth Antenna(5000987) 1301036 130103 6 RV-0000000 Project No.: 1301036 Page 18 of 2 5 Neutron Engineering Inc. 2D imager 1301036 130103 6 RV-0000000 Project No.: 1301036 Page 19 of 2 5 Neutron Engineering Inc. 1D Laser Barcode Engine 1301036 RV-0000000 Project No.: 1301036 Page 20 of 2 5 Neutron Engineering Inc. 1301036 130103 6 RV-0000000 Project No.: 1301036 Page 21 of 2 5 Neutron Engineering Inc. 1301036

RF Exposure Info

Page: 1 of 36 TEST REPORT of SAR New Application; Class I PC; Class II PC Product: PDA Scanner Brand: unitech Model Number: HT682 Model Difference: N/A FCC ID: HLEHT682BTN Standard: FCC 47 CFR Part2(2.1093) IEEE C95.1-1999; IEEE 1528 FCC OET 65 Supplement C(Edition 01-10) Applicant: unitech electronics co., ltd. Address: 5F., No. 136, Ln. 235, Baoqiao Rd., Xindian Dist., New Taipei City 231, Taiwan (R.O.C.) Test Performed by: International Standards Laboratory <Lung-Tan LAB> *Site Registration No.: TAF: 0997 *Address: No. 120, Lane 180, San Ho Tsuen, Hsin Ho Rd. Lung-Tan Hsiang, Tao Yuan County 325, Taiwan *Tel : 886-3-407-1718; Fax: 886-3-407-1738 Report No.: ISL-13LR052FSAR Issue Date : 2013/04/22 Test results given in this report apply only to the specific sample(s) tested and are traceable to national or international standard through calibration of the equipment and evaluating measurement uncertainty herein. This report MUST not be used to claim product endorsement by TAF or any agency of the Government. This test report shall not be reproduced except in full, without the written approval of International Standards Laboratory. -2 of 36- FCC ID: HLEHT682BTN International Standards Laboratory Report Number: ISL-13LR052FSAR VERIFICATION OF COMPLIANCE Applicant: unitech electronics co., ltd. Product: PDA Scanner Brand Name: unitech Model Number HT682 Model Difference: N/A FCC ID: HLEHT682BTN Date of Receipt: 2013/04/02 Date of Test: 2013/04/18 ~ 2013/04/22 Standard: FCC 47 CFR Part2(2.1093) IEEE C95.1-1999; IEEE 1528 FCC OET 65 Supplement C(Edition 01-10) We hereby certify that: All the tests in this report have been performed and recorded in accordance with the standards described above and performed by an independent electromagnetic compatibility consultant, International Standards Laboratory. The test results contained in this report accurately represent the measurements of the characteristics and the energy generated by sample equipment under test at the time of the test. The sample equipment tested as described in this report is in compliance with the limits of above standards. Test By: Date: 2013/04/22 Arno Hsieh / Supervisor Prepared By: Date: 2013/04/22 Arno Hsieh / Supervisor Approved By: Date: 2013/04/22 Vincent Su / Technical Manager -3 of 36- FCC ID: HLEHT682BTN International Standards Laboratory Report Number: ISL-13LR052FSAR Version Version No. Date Description 00 2013/04/22 Initial creation of document -4 of 36- FCC ID: HLEHT682BTN International Standards Laboratory Report Number: ISL-13LR052FSAR Table of Contents 1 STATEMENT OF COMPLIANCE ........................................................................... 5 2 GENERAL INFORMATION ..................................................................................... 6 2.1 DESCRIPTION OF DEVICE UNDER TEST (DUT) .......................................................................... 6 2.2 DUT PHOTOS ............................................................................................................................. 8 2.3 APPLIED STANDARDS ................................................................................................................ 8 2.4 DEVICE CATEGORY AND SAR LIMITS ....................................................................................... 8 2.5 TEST ENVIRONMENT .................................................................................................................. 8 2.6 TEST CONFIGURATION ............................................................................................................... 9 3 SPECIFIC ABSORPTION RATE (SAR) .................................................................. 9 3.1 INTRODUCTION .......................................................................................................................... 9 3.2 SAR DEFINITION ....................................................................................................................... 9 4 SAR MEASUREMENT SYSTEM ........................................................................... 10 4.1 ALSAS-10U SYSTEM DESCRIPTION ....................................................................................... 10 4.2 E-FIELD PROBE ALS-E-020S .................................................................................................. 11 4.3 DAQ-PAQ (ANALOG TO DIGITAL ELECTRONICS) ALS-DAQ-PAQ-3 BOUNDARY DETECTION UNIT ALS-PMDPS-3 ............................................................................................................... 13 4.4 AXIS ARTICULATED ROBOT ALS-F3 ...................................................................................... 15 4.5 ALSAS UNIVERSAL WORKSTATION ALS-UWS ..................................................................... 15 4.6 SAM PHANTOMS ALS-P-SAM-L / ALS-P-SAM-R ................................................................ 16 4.7 UNIVERSAL DEVICE POSITIONER ............................................................................................ 18 4.8 TEST EQUIPMENT LIST ............................................................................................................ 19 5 TISSUE SIMULATING LIQUIDS .......................................................................... 20 6 SAR MEASUREMENT EVALUATION ................................................................. 21 7 DUT TESTING POSITION ...................................................................................... 23 8 SAR MEASUREMENT PROCEDURES ................................................................ 26 9 SAR TEST RESULTS ............................................................................................... 28 9.1 CONDUCTED POWER TABLE: .................................................................................................... 28 9.2 TEST RECORDS FOR BODY SAR TEST ..................................................................................... 30 10 EXPOSURE ASSESSMENT MEASUREMENT UNCERTAINTY ...........…

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RF Exposure Info

-1 of 3- International Standards Laboratory Report Number: ISL-13LR052FSAR Appendix C: System Performance Check Report Date : 18-Apr-2013 By Operator : Dino Chen DUT : Dipole Frequency : 2450.00 MHz Max. Transmit Pwr : 1 W APREL ALSAS-10U System Description Phantom Data Name : Universal Phantom Type : ALS-P-UP-1 Tissue Data Type : Body Frequency : 2450.00 MHz Probe Data Name : E-field Probe Model : ALS-E-020 Serial No. : 266 Last Calib. Date : 20-Aug-2012 Measurement Data Crest Factor : 1 Scan Type : Complete Tissue Temp. : 22.00 °C Ambient Temp. : 21.70 °C Area Scan : 9x9x1 : Measurement x=10mm, y=10mm, z=4mm Zoom Scan : 5x5x8 : Measurement x=8mm, y=8mm, z=4mm Separation : 1cm -2 of 3- International Standards Laboratory Report Number: ISL-13LR052FSAR -3 of 3- International Standards Laboratory Report Number: ISL-13LR052FSAR 1 gram SAR value : 53.617 W/kg 10 gram SAR value : 24.987 W/kg Area Scan Peak SAR : 64.693 W/kg Zoom Scan Peak SAR : 103.681 W/kg

RF Exposure Info

-1 of 32- International Standards Laboratory Report Number: ISL-13LR052FSAR Appendix D: SAR Measurement Data Data No. Band Mode Test Position Separation Distance (cm) Channel SAR 1g(W/kg) 1 Wifi 802.11b EUT Bottom 0 11 0.094 2 Wifi 802.11b EUT Edge of Bottom 0 11 0.001 3 Wifi 802.11b EUT Edge of Top 0 11 0.059 4 Wifi 802.11b EUT Edge of Left 0 11 0.017 5 Wifi 802.11b EUT Edge of Right 0 11 0.453 6 Wifi 802.11b EUT Edge of Right 0 1 0.267 7 Wifi 802.11b EUT Edge of Right 0 6 0.383 8 Wifi 802.11n 20 EUT Edge of Right 0 1 0.185 9 Wifi 802.11n 20 EUT Edge of Right 0 6 0.244 10 Wifi 802.11n 20 EUT Edge of Right 0 11 0.310 -2 of 32- International Standards Laboratory Report Number: ISL-13LR052FSAR Data No. 1: Report Date : 18-Apr-2013 By Operator : 123 Measurement Date : 18-Apr-2013 Starting Time : 18-Apr-2013 03:56:36 PM End Time : 18-Apr-2013 03:16:12 PM Scanning Time : -2424 secs Product Data Device Name : 13LR052 Serial No. : NA Type : Other Model : HT682 Frequency : 2450.00 MHz Max. Transmit Pwr : 0.25 W Drift Time : 0 min(s) Length : 65 mm Width : 165 mm Depth : 45 mm Antenna Type : Internal Orientation : Touch Power Drift-Start : 0.034 W/kg Power Drift-Finish: 0.036 W/kg Power Drift (%) : 5.724 Picture : C:\alsas\bitmap\Device-4.bmp Phantom Data Name : APREL-Uni Type : Uni-Phantom Size (mm) : 280 x 280 x 200 Serial No. : User Define Location : Center Description : Uni-Phantom Tissue Data Type : BODY Serial No. : 2450B Frequency : 2450.00 MHz Last Calib. Date : 18-Apr-2013 Temperature : 21.00 °C Ambient Temp. : 21.00 °C Humidity : 65.00 RH% Epsilon (Dielectric Constant): 53.87 Sigma : 1.93 S/m Density : 1000.00 kg/cu. m -3 of 32- International Standards Laboratory Report Number: ISL-13LR052FSAR Probe Data Name : E-field Model : E-020 Type : E-Field Triangle Serial No. : 266 Last Calib. Date : 20-Aug-2012 Frequency : 2450.00 MHz Duty Cycle Factor (CreF): 1 Conversion Factor : 4.55 Probe Sensitivity : 1.20 1.20 1.20 μV/(V/m) 2 Compression Point : 95.00 mV Offset : 1.56 mm Measurement Data Crest Factor : 1 Scan Type : Complete Tissue Temp. : 21.00 °C Ambient Temp. : 21.00 °C Set-up Date : 18-Apr-2013 Set-up Time : 12:21:27 PM Area Scan : 7x9x1 : Measurement x=10mm, y=10mm, z=4mm Zoom Scan : 5x5x8 : Measurement x=8mm, y=8mm, z=4mm Other Data DUT Position : Touch Separation : 0 Channel : High -4 of 32- International Standards Laboratory Report Number: ISL-13LR052FSAR The system detected 1 maxima. Selected highest maxima # = 1. Maxima #1 coordinates: X = 22.060, Y = 0.000 1 gram SAR value : 0.094 W/kg 10 gram SAR value : 0.037 W/kg Area Scan Peak SAR : 0.094 W/kg Zoom Scan Peak SAR : 0.230 W/kg Maxima Summary: Maxima #1 Maxima coordinates: X = 22.060, Y = 0.000 1 gram SAR value : 0.094 W/kg 10 gram SAR value : 0.037 W/kg Area Scan Peak SAR : 0.094 W/kg Zoom Scan Peak SAR : 0.230 W/kg -5 of 32- International Standards Laboratory Report Number: ISL-13LR052FSAR Data No. 2: Report Date : 18-Apr-2013 By Operator : 123 Measurement Date : 18-Apr-2013 Starting Time : 18-Apr-2013 02:37:34 PM End Time : 18-Apr-2013 02:52:01 PM Scanning Time : 867 secs Product Data Device Name : 13LR052 Serial No. : NA Type : Other Model : HT682 Frequency : 2450.00 MHz Max. Transmit Pwr : 0.25 W Drift Time : 0 min(s) Length : 30 mm Width : 65 mm Depth : 165 mm Antenna Type : Internal Orientation : Touch Power Drift-Start : 0.001 W/kg Power Drift-Finish: 0.000 W/kg Power Drift (%) : 0.000 Picture : C:\alsas\bitmap\Device-2.bmp Phantom Data Name : APREL-Uni Type : Uni-Phantom Size (mm) : 280 x 280 x 200 Serial No. : User Define Location : Center Description : Uni-Phantom Tissue Data Type : BODY Serial No. : 2450B Frequency : 2450.00 MHz Last Calib. Date : 18-Apr-2013 Temperature : 21.00 °C Ambient Temp. : 21.00 °C Humidity : 65.00 RH% Epsilon (Dielectric Constant): 53.87 Sigma : 1.93 S/m Density : 1000.00 kg/cu. m -6 of 32- International Standards Laboratory Report Number: ISL-13LR052FSAR Probe Data Name : E-field Model : E-020 Type : E-Field Triangle Serial No. : 266 Last Calib. Date : 20-Aug-2012 Frequency : 2450.00 MHz Duty Cycle Factor (CreF): 1 Conversion Factor : 4.55 Probe Sensitivity : 1.20 1.20 1.20 μV/(V/m) 2 Compression Point : 95.00 mV Offset : 1.56 mm Measurement Data Crest Factor : 1 Scan Type : Complete Tissue Temp. : 21.00 °C Ambient Temp. : 21.00 °C Set-up Date : 18-Apr-2013 Set-up Time : 12:21:27 PM Area Scan : 5x6x1 : Measurement x=10mm, y=10mm, z=4mm Zoom Scan : 5x5x8 : Measurement x=8mm, y=8mm, z=4mm Other Data DUT Position : Touch Separation : 0 Channel : High -7 of 32- International Standards Laboratory Report Number: ISL-13LR052FSAR The system detected 1 maxima. Selected highest maxima # = 1. Maxima #1 coordinates: X = 3.050, Y = 7.900 1 gram SAR value : 0.001 W/kg 10 gram SAR value : 0.001 W/kg Area Scan Peak SAR : 0.001 W/kg Zoom Scan Peak SAR : 0.000 W/kg Maxima Summary: Maxima #1 Maxima coordinates: X = 3.050, Y = 7.900 1 gram SAR value : 0.001 W/kg 10 gram SAR value : 0.001 W/kg Area Scan Peak SAR : 0.001 W/kg Zoom Scan Peak SAR : 0.000 W/kg -8 of 32- International Standards Laboratory Report Number: ISL-13LR052FSAR Data No. 3: Report Date : 18-Apr-2013 By Operator : 123 Measurement Date : 18-Apr-2013 Starting Time : 18-Apr-2013 03:08:18 PM End Time : 18-Apr-2013 03:25:38 PM Scanning Time : 1040 secs Product Data Device Name : 13LR052 Serial No. : NA Type : Other Model : HT682 Frequency : 2450.00 MHz Max. Transmit Pwr : 0.25 W Drift Time : 0 min(s) Length : 45 mm Width : 65 mm Depth : 165 mm Antenna Type : Internal Orientation : Touch Power Drift-Start : 0.021 W/kg Power Drift-Finish: 0.020 W/kg Power Drift (%) : -5.238 Picture : C:\alsas\bitmap\Device-3.bmp Phantom Data Name : APREL-Uni Type : Uni-Phantom Size (mm) : 280 x 280 x 200 Serial No. : User Define Location : Center Description : Uni-Phantom Tissue Data Type : BODY Serial No. : 2450B Frequency : 2450.00 MHz Last Calib. Date : 18-Apr-2013 Temperature : 21.00 °C Ambient Temp. : 21.00 °C Humidity : 65.00 RH% Epsilon (Dielectric Constant)…

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RF Exposure Info

NCL CALIBRATION LABORATORIES Calibration File No.: PC-1419 Client.: ISL C E R T I F I C A T E OF C A L I B R A T I O N It is certified that the equipment identified below has been calibrated in the NCL CALIBRATION LABORATORIES by qualified personnel following recognized procedures and using transfer standards traceable to NRC/NIST. Equipment: Miniature Isotropic RF Probe Record of Calibration Body Manufacturer: APREL Laboratories Model No.: E-020 Serial No.: 266 Calibration Procedure: D01-032-E020-V2, D22-012-Tissue, D28-002-Dipole Project No: ISL-E020-5683 Calibrated: 20 th August 2012 Released on: 20 th August 2012 NCL CALIBRATION LABORATORIES 303 Terry Fox Drive, Suite 102 Division of APREL Kanata, Ontario TEL: (613) 435-8300 CANADA K2K 3J1 FAX: (613) 435-8306 NCL Calibration Laboratories Division of APREL Inc. Page 2 of 10 This page has been reviewed for content and attested to on Page 2 of this document. Introduction This Calibration Report reproduces the results of the calibration performed in line with the references listed below. Calibration is performed using accepted methodologies as per the references listed below. Probes are calibrated for air, and tissue and the values reported are the results from the physical quantification of the probe through meteorgical practices. Calibration Method Probes are calibrated using the following methods. <1000MHz TEM Cell for sensitivity in air Standard phantom using temperature transfer method for sensitivity in tissue >1000MHz Waveguide* method to determine sensitivity in air and tissue *Waveguide is numerically (simulation) assessed to determine the field distribution and power The boundary effect for the probe is assessed using a standard flat phantom where the probe output is compared against a numerically simulated series of data points References o IEEE Standard 1528 (2003) including Amendment 1 IEEE Recommended Practice for Determining the Peak Spatial-Average Specific Absorption Rate (SAR) in the Human Head from Wireless Communications Devices: Measurement Techniques o EN 62209-1 (2006) Human Exposure to RF Fields from hand-held and body-mounted wireless communication devices - Human models. instrumentation, and procedures-Part 1: Procedure to measure the Specific Absorption Rate (SAR) for hand-held mobile wireless devices o IEC 62209-2 Ed. 1.0 (2010-03) Human exposure to RF fields from hand-held and body-mounted wireless devices - Human models, instrumentation, and procedures - Part 2: specific absorption rate (SAR) for wireless communication devices (30 MHz - 6 GHz) o TP-D01-032-E020-V2 E-Field probe calibration procedure o D22-012-Tissue dielectric tissue calibration procedure o D28-002-Dipole procedure for validation of SAR system using a dipole o IEEE 1309 Draft Standard for Calibration of Electromagnetic Field Sensors and Probes, Excluding Antennas, from 9kHz to 40GHz NCL Calibration Laboratories Division of APREL Inc. Page 3 of 10 This page has been reviewed for content and attested to on Page 2 of this document. Conditions Probe 266 was a recalibration. Ambient Temperature of the Laboratory: 22 °C +/- 1.5°C Temperature of the Tissue: 21 °C +/- 1.5°C Relative Humidity: < 60% Primary Measurement Standards Instrument Serial Number Cal due date Power meter Anritsu MA2408A 90025437 Nov.4, 2012 Power Sensor Anritsu MA2481D 103555 Nov 4, 2012 Attenuator HP 8495A (70dB) 1944A10711 Sept. 14, 2012 Network Analyzer Anritsu MT8801C MB11855 Feb. 8, 2013 Secondary Measurement Standards Signal Generator Agilent E4438C -506 MY55182336 June 7, 2013 Attestation The below named signatories have conducted the calibration and review of the data which is presented in this calibration report. NCL Calibration Laboratories Division of APREL Inc. Page 4 of 10 This page has been reviewed for content and attested to on Page 2 of this document. Probe Summary Probe Type: E-Field Probe E020 Serial Number: 266 Frequency: As presented on page 5 Sensor Offset: 1.56 Sensor Length: 2.5 Tip Enclosure: Composite* Tip Diameter: < 2.9 mm Tip Length: 55 mm Total Length: 289 mm *Resistive to recommended tissue recipes per IEEE-1528 Sensitivity in Air Channel X: 1.2 μV/(V/m) 2 Channel Y: 1.2 μV/(V/m) 2 Channel Z: 1.2 μV/(V/m) 2 Diode Compression Point: 95 mV NCL Calibration Laboratories Division of APREL Inc. Page 5 of 10 This page has been reviewed for content and attested to on Page 2 of this document. Calibration for Tissue (Head H, Body B) Frequency Tissue Type Measured Epsilon Measured Sigma Calibration Uncertainty Tolerance Uncertainty for 5%* Conversion Factor 450 H Head X X X X X 450 B Body X X X X X 750 H Head X X X X X 750 B Body X X X X X 835 H Head X X X X X 835 B Body 56.31 0.95 3.5 3.4 6.8 900 H Head X X X X X 900 B Body 56.08 1.05 3.5 3.4 6.7 1450 H Head X X X X X 1450 B Body X X X X X 1500 H Head X X X X X 1500 B Body X X X X X 1640 H Head X X X X X 1640 B Body X X X X X 1750 H Head X X X X X 1750 B Body X X X X X 1800 H Head X X X X X 1800 B Body 52.16 1.56 3.5 2.7 5.5 1900 H Head X X X X X 1900 B Body 51.57 1.57 3.5 2.7 5.4 2000 H Head X X X X X 2000 B Body X X X X X 2100 H Head X X X X X 2100 B Body X X X X X 2300 H Head X X X X X 2300 B Body X X X X X 2450 H Head X X X X X 2450B Body 50.22 1.93 3.5 3.5 4.55 2600 H Head X X X X X 2600 B Body X X X X X 3000 H Head X X X X X 3000 B Body X X X X X 3600 H Head X X X X X 3600 B Body X X X X X 5200 H Head X X X X X 5200 B Body 46.84 5.08 3.5 3.5 3.3 5600 H Head X X X X X 5600 B Body 45.83 5.63 3.5 3.5 3 5800 H Head X X X X X 5800 B Body 45.87 5.93 3.5 3.5 3.4 NCL Calibration Laboratories Division of APREL Inc. Page 6 of 10 This page has been reviewed for content and attested to on Page 2 of this document. Boundary Effect: Uncertainty resulting from the boundary effect is less than 2.1% for the distance between the tip of the probe and the tissue boundary, when less than 0.58mm. Spatial Resolution: The spatial resolution uncertainty is less than 1.5% for 4.9mm diameter probe. The spatial resolution uncert…

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RF Exposure Info

NCL CALIBRATION LABORATORIES Calibration File No: DC-1400 Project Number: ISL-D2450-cal-5639 C E R T I F I C A T E OF C A L I B R A T I O N It is certified that the equipment identified below has been calibrated in the NCL CALIBRATION LABORATORIES by qualified personnel following recognized procedures and using transfer standards traceable to NRC/NIST. ISL Body Validation Dipole Manufacturer: APREL Laboratories Part number: ALS-D-2450-S-2 Frequency: 2450 MHz Serial No: 2450-220-00753 Customer: ISL Calibrated: 25 th January 2012 Released on: 25 th January, 2012 NCL Calibration Laboratories Division of APREL Laboratories. This page has been reviewed for content and attested to by signature within this document. 2 Conditions Dipole 2450-220-00753 was a re-calibration. Ambient Temperature of the Laboratory: 22 °C +/- 0.5°C Temperature of the Tissue: 21 °C +/- 0.5°C NCL Calibration Laboratories Division of APREL Laboratories. This page has been reviewed for content and attested to by signature within this document. 3 Calibration Results Summary The following results relate the Calibrated Dipole and should be used as a quick reference for the user. Mechanical Dimensions Length: 51.5 mm Height: 30.4 mm Electrical Specification S11 R/L -16.32 dB SWR 1.37 U Impedance 10.33 Ω System Validation Results Calibrated @ 100mW Frequency 1 Gram 10 Gram Peak 2450 MHz 55.57 25.80 112.98 NCL Calibration Laboratories Division of APREL Laboratories. This page has been reviewed for content and attested to by signature within this document. 4 Introduction This Calibration Report has been produced…

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Contact Information

Applicant

Ben Chiang
[email protected]886-2-8912-1122Fax: 886-2-8912-1391

Technical Contact

Neutron Engineering Inc.Kate Lin
[email protected]886-2-2657-3299

B1, No. 37, Lane 365, YangGang St. · Taipei · Taiwan

Non-Technical Contact

Neutron Engineering Inc.Kate Lin
[email protected]886-2-2657-3299

Test Firm

BTL Inc.Andy Yeh
[email protected]+886-2-2641-8198Fax: +886-2-2641-8698

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz124.00 mW
Confidentiality
Long Term
Grant Notes
Power Output is conducted. SAR compliance for body worn operating conditions has been achieved with 0 mm separation between the device and the user's body and is limited to the specific configurations tested for this filing. End users must be informed of body worn requirements for satisfying RF Exposure compliance. Highest reported SAR value: 0.45 W/kg.

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