
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Quick Installation Guide Model: LP-8697N NOTE: Do not insert the USB adapter until the software/driver has been installed. High Power Wireless-300N Compact USB Adapter Insert the Setup CD Install Software The menu page should appear. Select the instruction for your operating system and install the driver for the USB adapter. Follow the Instructions for Driver Installation A. From the Menu page, select Driver Installation B. Start the Driver Installation If the Menu page does not appear, browse the if prompted, click Next to begin the installation CD drive and double-click the autorun.exe file C. Continue the Driver Installation D. Restart your Computer Follow the instructions that appear for installation A prompt will appear asking you to restart your computer. Select Yes and click Finish to restart. E. Insert the High Power USB Adapter After the computer has fully rebooted, locate a USB port and insert the USB Adapter. Windows should automatically begin to install the driver for using the USB Adapter. Quick Installation Guide Model: LP-8697N Windows 7 1. Connect to a Wireless Network 2. Connect to a Wireless Network Locate the Wireless Icon in the Windows If the network you are trying to connect to has System tray (bottom right corner) and click it to security enabled you will need to enter it here. view available wireless Networks. Highlight your desired network and click Connect. Windows 8.1 1. Connect to a Wireless Network 2. Connect to a Wireless Network Click it to view available wireless Networks. Enter the Security Key then click “ N e x t ”. Select the Wireless Network and tick mark the button to connect automatically & press “Connect”. 3. The Wi-Fi Network is connected successfully. Quick Installation Guide Model: LP-8697N How to Upgrade your Antenna Upgrading your antenna can provide more range and distance for different types of wireless applications. The Loopcomm High Power USB Adapter is compatible with any High Gain 2.4 GHz Wi-Fi antenna with a RP-SMA connector. Simply unscrew the original antenna and screw on the upgraded antenna for more range and distance. For more information on High Gain antennas visit our Loopcomm website. Troubleshooting Tips PROBLEM: I inserted the CD but the Installation Menu does not appear. SOLUTION: Windows: Click Start, click My Computer (or Computer) and double-click your CD-ROM drive. Locate the autorun.exe file and double-click it. REGULATORY INFORMATION Federal Communication Commission Interference 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 Rule s. These limits are desig ned to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses, and can ra diate radio frequency energ y and, if not installed and used in accordance wit h the instructions, may cause harmful interference to radio communications. Howeve r, there is no guarantee that interference will not occur in a particular installa tion. If this equipment does cause harmful interference to radio or televisio n reception, whic h can be determin ed by turn in g the equipment off and on, the user is encoura ged 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 receiv e r. • Connect the equipment into an outlet on a circuit differe nt from that to which the receiver is connected. • Consult the dealer or an experi enced radio/TV technici an for help. FCC Caution: This device complies wit h Part 15 of the FCC Rules. Operation is subject to the followin g two conditi ons: (1) This device may not cause harmful interference, and (2) this device must accept any in terference received, inclu din g interfere nce that may cause undesired operation. RF Radiation Exposure and Haz ard Statement: To ensure compliance wit h FCC RF exposure requirements, this device must be install ed in a location such that the antenna of the device will be greater than 0.5cm away from all persons. Using higher gain antennas and types of antennas not covered under the FCC certification of this product is not allowed. Installers of the radio and end users of the product must adhere to the installa tion instructions provided in this manual. This transmitter must not be co-lo cated or operating in conjunction with any other antenna or transmitter. Non-modification Stat ement: Use only the integral antenna suppli ed by the manufacturer when operating this device. Unauthorized antennas, modifications, or attachments could damage the TI Navigator access point and violate FCC regu lations. Any changes or modifications not expressly approved by the party re sponsible for compliance could void the user's authority to operate this equipment. Copyright © 2015 Loopcomm Technology Inc. All rights reserved.
SCS-F18: Project and Product Certification Representative Authorization Letter Page 1 of 2 Rev 5.0 775 Montague Expressway Milpitas, CA 95035 Tel: 408-526-1188 Fax: 408-526-1088 Email: [email protected] Project and Product Certification Representative Authorization Letter Reason for Amendment (current / obsolete) Revision History Approved Date From To Initial Release (obsolete) 1.0 1.0 Nov-14-2006 Revised wording (obsolete) 1.0 2.0 Sept–25-2007 Updated company template (obsolete) 2.0 3.0 Jan-31-2012 Updated letter information (obsolete) 3.0 4.0 May-23-2014 Added FCC ID field (current) 4.0 5.0 Sept 16 2014
SCS-F19: Confidentiality Request Letter Page 1 of 2 Rev 3.0 775 Montague Expressway Milpitas, CA 95035 Tel: 408-526-1188 Fax: 408-526-1088 Email: [email protected] Confidentiality Request Letter Reason for Amendment (current / obsolete) Revision History Approved Date From To Initial Release (obsolete) 1.0 1.0 Nov-14-2006 Adding CFR 2.459 (obsolete) 1.0 2.0 August – 11 - 2008 Updated company template & Added text box (current) 2.0 3.0 Jan-31-2012
FCC: VYTLP-8697N International Standards Laboratory Report Number: ISL-15LR075FCDTS EXTERNAL PHOTOGRPHS OF EUT FCC: VYTLP-8697N International Standards Laboratory Report Number: ISL-15LR075FCDTS EUT 1 EUT 2 FCC: VYTLP-8697N International Standards Laboratory Report Number: ISL-15LR075FCDTS EUT 3 EUT 4 FCC: VYTLP-8697N International Standards Laboratory Report Number: ISL-15LR075FCDTS EUT 5 Dipole Antenna
ID LABEL FORMAT AND LOCATION Applicant: Loopcomm Technology, Inc. FCC ID: VYTLP-8697N
FCC: VYTLP-8697N International Standards Laboratory Report Number: ISL-15LR075FCDTS INTERNAL PHOTOGRPHS OF EUT FCC: VYTLP-8697N International Standards Laboratory Report Number: ISL-15LR075FCDTS EUT 1 EUT 2 FCC: VYTLP-8697N International Standards Laboratory Report Number: ISL-15LR075FCDTS EUT 3 PCB Antenna
Page: 1 of 35 TEST REPORT of FCC SAR New Application; Class I PC; Class II PC Product Name: Compact 802.11 B/G/N Wirelesss USB Dongle (2T2R) Brand Name: LOOPCOMM Model Name: LP-8697N, RNX-N150UBEv2 Model Difference: Market Segment FCC ID: VYTLP-8697N Standard: FCC 47 CFR Part2(2.1093) IEEE C95.1-1999; IEEE 1528 Applicant: Loopcomm Technology, Inc. Address: 6F., No.236, Bo’ai St., Shulin Dist., New Taipei City 238, Taiwan (R.O.C.) Test Performed by: International Standards Laboratory <Lung-Tan LAB> *Site Registration No.: TAF: 0997 *Address: No. 120, Lane 180, Hsin Ho Rd. Lung-Tan Dist., Tao Yuan City 325, Taiwan *Tel : 886-3-407-1718; Fax: 886-3-407-1738 Report No.: ISL-15LR075FSAR Issue Date : 2015/07/20 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, NVLAP 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 35- FCC ID:VYTLP-8697N International Standards Laboratory Report Number: ISL-15LR075FSAR VERIFICATION OF COMPLIANCE Applicant: Loopcomm Technology, Inc. Product Description: Compact 802.11 B/G/N Wirelesss USB Dongle (2T2R) Brand Name: LOOPCOMM Model No.: LP-8697N, RNX-N150UBEv2 Model Difference: Market Segment FCC ID: VYTLP-8697N Date of Receipt: 2015/07/01 Date of Test: 2015/07/20 Standard: FCC 47 CFR Part2(2.1093) IEEE C95.1-1999; IEEE 1528 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: 2015/07/20 Dino Chen / Engineer Prepared By: Date: 2015/07/20 Arno Hsieh / Supervisor Approved By: Date: 2015/07/20 Vincent Su / Technical Manager -3 of 35- FCC ID:VYTLP-8697N International Standards Laboratory Report Number: ISL-15LR075FSAR Version Version No. Date Description 00 2015/07/20 Initial creation of document -4 of 35- FCC ID:VYTLP-8697N International Standards Laboratory Report Number: ISL-15LR075FSAR 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 ...................................................................... 22 7 DUT TESTING POSITION ........................................................................................... 24 8 SAR MEASUREMENT PROCEDURES ...................................................................... 27 9 SAR TEST RESULTS ..................................................................................................... 29 9.1 CONDUCTED POWER TABLE: ........................................................................................................... 29 9.…
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-1 of 2- International Standards Laboratory Report Number: ISL-15LR075FSAR Appendix C: System Performance Check Report Date : 07-Jul-2015 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 : 12-Jan-2015 Measurement Data Crest Factor : 1 Scan Type : Complete Tissue Temp. : 22.00 °C Ambient Temp. : 21.50 °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 2- International Standards Laboratory Report Number: ISL-15LR075FSAR 1 gram SAR value : 53.529 W/kg 10 gram SAR value : 24.852 W/kg Area Scan Peak SAR : 65.492 W/kg Zoom Scan Peak SAR : 104.681 W/kg
-1 of 43- International Standards Laboratory Report Number: ISL-15LR075FSAR Appendix D: SAR Measurement Data Data No. Band Mode Test Position Separation Distance (cm) Channel SAR 1g(W/kg) 1 Wifi 802.11b with USB Cable connect to Notebook Dipole Antenna 90° 0.5 1 0.822 2 Wifi 802.11b with USB Cable connect to Notebook Dipole Antenna 90° 0.5 6 0.847 3 Wifi 802.11b with USB Cable connect to Notebook Dipole Antenna 90° 0.5 11 0.445 4 Wifi 802.11b with USB Cable connect to Notebook Dipole Antenna 180° 0.5 1 0.842 5 Wifi 802.11b with USB Cable connect to Notebook Dipole Antenna 180° 0.5 6 0.870 6 Wifi 802.11b with USB Cable connect to Notebook Dipole Antenna 180° 0.5 11 0.425 7 Wifi 802.11b with USB Cable connect to Notebook Dipole Antenna Bottom 0.5 6 0.015 8 Wifi 802.11b with USB Cable connect to Notebook Dipole Antenna Top 0.5 6 0.001 9 Wifi 802.11b with USB Cable connect to Notebook PCB Antenna Horizontal-Down 0.5 6 0.212 10 Wifi 802.11b with USB Cable connect to Notebook PCB Antenna Horizontal-Up 0.5 6 0.258 11 Wifi 802.11b with USB Cable connect to Notebook PCB Antenna Vertical- Front 0.5 6 0.002 -2 of 43- International Standards Laboratory Report Number: ISL-15LR075FSAR Data No. Band Mode Test Position Separation Distance (cm) Channel SAR 1g(W/kg) 12 Wifi 802.11b with USB Cable connect to Notebook PCB Antenna Vertical- Back 0.5 6 0.048 13 Wifi 802.11b direct Inserted to Notebook PCB Antenna Bottom 0.5 6 0.472 -3 of 43- International Standards Laboratory Report Number: ISL-15LR075FSAR Data No. 1: Report Date : 07-Jul-2015 By Operator : 123 Measurement Date : 07-Jul-2015 Starting Time : 07-Jul-2015 03:16:32 PM End Time : 07-Jul-2015 03:49:04 PM Scanning Time : 1952 secs Product Data Device Name : 15LR075 Serial No. : NA Type : Other Model : LP8697N Frequency : 2450.00 MHz Max. Transmit Pwr : 0.25 W Drift Time : 1 min(s) Length : 33 mm Width : 183 mm Depth : 14 mm Antenna Type : Internal Orientation : Touch Power Drift-Start : 0.039 W/kg Power Drift-Finish: 0.002 W/kg Power Drift (%) : -95.611 Picture : C:\alsas\bitmap\Device-13.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 : 07-Jul-2015 Temperature : 22.00 °C Ambient Temp. : 22.00 °C Humidity : 62.00 RH% Epsilon (Dielectric Constant): 53.33 Sigma : 1.94 S/m Density : 1000.00 kg/cu. m -4 of 43- International Standards Laboratory Report Number: ISL-15LR075FSAR Probe Data Name : E-field Model : E-020 Type : E-Field Triangle Serial No. : 266 Last Calib. Date : 12-Jan-2015 Frequency : 2450.00 MHz Duty Cycle Factor (CreF): 1 Conversion Factor : 4.9 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. : 22.00 °C Ambient Temp. : 22.00 °C Set-up Date : 07-Jul-2015 Set-up Time : 3:49:46 PM Area Scan : 5x19x1 : Measurement x=10mm, y=10mm, z=4mm Zoom Scan : 7x7x7 : Measurement x=5mm, y=5mm, z=5mm Other Data DUT Position : Touch Separation : 0 Channel : Low -5 of 43- International Standards Laboratory Report Number: ISL-15LR075FSAR The system detected 1 maxima. Selected highest maxima # = 1. Maxima #1 coordinates: X = 0.070, Y = 29.900 1 gram SAR value : 0.822 W/kg 10 gram SAR value : 0.319 W/kg Area Scan Peak SAR : 0.964 W/kg Zoom Scan Peak SAR : 1.661 W/kg Maxima Summary: Maxima #1 Maxima coordinates: X = 0.070, Y = 29.900 1 gram SAR value : 0.822 W/kg 10 gram SAR value : 0.319 W/kg Area Scan Peak SAR : 0.964 W/kg Zoom Scan Peak SAR : 1.661 W/kg -6 of 43- International Standards Laboratory Report Number: ISL-15LR075FSAR Data No. 2: Report Date : 07-Jul-2015 By Operator : 123 Measurement Date : 07-Jul-2015 Starting Time : 07-Jul-2015 07:18:18 PM End Time : 07-Jul-2015 07:50:38 PM Scanning Time : 1940 secs Product Data Device Name : 15LR075 Serial No. : NA Type : Other Model : LP8697N Frequency : 2450.00 MHz Max. Transmit Pwr : 0.25 W Drift Time : 1 min(s) Length : 33 mm Width : 183 mm Depth : 14 mm Antenna Type : Internal Orientation : Touch Power Drift-Start : 0.022 W/kg Power Drift-Finish: 0.000 W/kg Power Drift (%) : -95.370 Picture : C:\alsas\bitmap\Device-5.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 : 07-Jul-2015 Temperature : 22.00 °C Ambient Temp. : 22.00 °C Humidity : 62.00 RH% Epsilon (Dielectric Constant): 53.33 Sigma : 1.94 S/m Density : 1000.00 kg/cu. m -7 of 43- International Standards Laboratory Report Number: ISL-15LR075FSAR Probe Data Name : E-field Model : E-020 Type : E-Field Triangle Serial No. : 266 Last Calib. Date : 12-Jan-2015 Frequency : 2450.00 MHz Duty Cycle Factor (CreF): 1 Conversion Factor : 4.9 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. : 22.00 °C Ambient Temp. : 22.00 °C Set-up Date : 07-Jul-2015 Set-up Time : 3:49:46 PM Area Scan : 5x19x1 : Measurement x=10mm, y=10mm, z=4mm Zoom Scan : 7x7x7 : Measurement x=5mm, y=5mm, z=5mm Other Data DUT Position : Touch Separation : 0 Channel : Mid -8 of 43- International Standards Laboratory Report Number: ISL-15LR075FSAR The system detected 1 maxima. Selected highest maxima # = 1. Maxima #1 coordinates: X = 0.060, Y = 24.900 1 gram SAR value : 0.847 W/kg 10 gram SAR value : 0.324 W/kg Area Scan Peak SAR : 0.973 W/kg Zoom Scan Peak SAR : 1.801 W/kg Maxima Summary: Maxima #1 Maxima coordinates: X = 0.060, Y = 24.900 1 gram SAR value : 0.847 W/kg 10 gram SAR value : 0.324 W/kg Area Scan Peak SAR : 0.973 W/kg Zoom Scan Peak SAR : 1.801 W/kg -9 of 43- International Standards Laboratory Report Number: ISL-15LR075FSAR Data No. 3: Report Date : 07-Jul-2015 By Operator : 123 Measurement Date : 07-J…
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Page: 1 of 57 TEST REPORT of FCC Part 15 Subpart C New Application; Class I PC; Class II PC Product : Compact 802.11 B/G/N Wirelesss USB Dongle (2T2R) Brand: LOOPCOMM Model: LP-8697N, RNX-N180UBEv2 Model different: Market Segment FCC ID: VYTLP-8697N FCC Rule Part: §15.247, Cat: DTS Applicant: Loopcomm Technology, Inc. Address: 6F., No.236, Bo’ai St., Shulin Dist., New Taipei City 238, Taiwan (R.O.C.) Test Performed by: International Standards Laboratory <Lung-Tan LAB> *Site Registration No. BSMI: SL2-IN-E-0013; MRA TW1036; TAF: 0997; IC: IC4067B-3; *Address: No. 120, Lane 180, Hsin Ho Rd. Lung-Tan Dist., Tao Yuan City 325, Taiwan *Tel : 886-3-407-1718; Fax: 886-3-407-1738 Report No.: ISL-15LR075FCDTS Issue Date : 2015/07/20 Test results given in this report apply only to the specific sample(s) tested and are traceable to na- tional or international standard through calibration of the equipment and evaluating measurement un- certainty herein. This report MUST not be used to claim product endorsement by TAF, NVLAP 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 57- FCC: VYTLP-8697N International Standards Laboratory Report Number: ISL-15LR075FCDTS VERIFICATION OF COMPLIANCE Applicant: Loopcomm Technology, Inc. Product Description: Compact 802.11 B/G/N Wirelesss USB Dongle (2T2R) Brand Name: LOOPCOMM Model No.: LP-8697N, RNX-N180UBEv2 Model Difference: Market Segment FCC ID: VYTLP-8697N Date of test: 2015/07/01 ~ 2015/07/16 Date of EUT Received: 2015/07/01 We hereby certify that: All the tests in this report have been performed and recorded in accordance with the standards de- scribed above and performed by an independent electromagnetic compatibility consultant, Interna- tional 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 equip- ment tested as described in this report is in compliance with the limits of above standards. Test By: Date: 2015/07/20 Dino Chen / Engineer Prepared By: Date: 2015/07/20 Eva Kao / Asst. Supervisor Approved By: Date: 2015/07/20 Vincent Su / Technical Manager -3 of 57- FCC: VYTLP-8697N International Standards Laboratory Report Number: ISL-15LR075FCDTS Version Version No. Date Description 00 2015/07/20 Initial creation of document -4 of 57- FCC: VYTLP-8697N International Standards Laboratory Report Number: ISL-15LR075FCDTS Table of Contents 1 GENERAL INFORMATION .................................................................................................... 6 1.1 Related Submittal(s) / Grant (s) ..................................................................................................... 8 1.2 Test Methodology .......................................................................................................................... 8 1.3 Test Facility .................................................................................................................................... 8 1.4 Special Accessories ........................................................................................................................ 8 1.5 Equipment Modifications ............................................................................................................... 8 2 SYSTEM TEST CONFIGURATION ....................................................................................... 9 2.1 EUT Configuration ........................................................................................................................ 9 2.2 EUT Exercise ................................................................................................................................. 9 2.3 Test Procedure ................................................................................................................................ 9 2.4 Configuration of Tested System ................................................................................................... 10 3 SUMMARY OF TEST RESULTS .......................................................................................... 11 4 DESCRIPTION OF TEST MODES ....................................................................................... 11 5 CONDUCTED EMISSION TEST........................................................................................... 12 5.1 Standard Applicable: .................................................................................................................... 12 5.2 Measurement Equipment Used: ................................................................................................... 12 5.3 EUT Setup: ................................................................................................................................... 12 5.4 Measurement Procedure: ............................................................................................................. 13 5.5 Measurement Result: ................................................................................................................... 13 6 PEAK /AVERAGE OUTPUT POWER MEASUREMENT................................................. 16 6.1 Standard Applicable: .................................................................................................................... 16 6.2 Measurement Equipment Used: ................................................................................................... 17 6.3 Test Set-up: .................................................................................................................................. 17 6.4 Measurement Procedure: ............................................................................................................. 17 6.5 Measurement Result: .................................................................................................…
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NCL CALIBRATION LABORATORIES Calibration File No.: PC-1608 Task No: ISL-PC-5784 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: BACL-5784 Calibrated: 12 th January 2015 Released on: 15 th January 2015 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. <800 MHz TEM Cell for sensitivity in air Standard phantom using temperature transfer method for sensitivity in tissue >800 MHz 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 1528:2013 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 62209-2:2010 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 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 SN 266 was a recalibration. Ambient Temperature of the Laboratory: 22 C +/- 1.5C Temperature of the Tissue: 21 C +/- 1.5C Relative Humidity: < 60% Primary Measurement Standards Instrument Serial Number Cal due date Tektronix USB Power Meter 11C940 May 14, 2015 Agilent Signal Generator MY45094463 Dec, 2015 Secondary Measurement Standards Network Analyzer Anritsu 37347C 002106 Feb. 20, 2015 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 Standard Uncertainty (%) Calibration Frequency Range (MHz) Conversion Factor 450 H Head X X X X X 450 B Body X X X X X 700 H …
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 359.70 mW |

AC 600 Wireless PCle Card
Equipment Class
NII - Unlicensed National Information Infrastructure TX
Outdoor Long Range 802.11a/n 5GHz Wi-Fi AP/CPE/Bridge
Equipment Class
NII - Unlicensed National Information Infrastructure TX
Outdoor 2.4GHz Wireless AP/CPE/Bridge
Equipment Class
DTS - Digital Transmission System
802.11 b/g/n 2.4G Indoor Wireless Smart Repeater (2T2R)
Equipment Class
DTS - Digital Transmission System
High Power AC WiFi Adapter PCI-E Card
Equipment Class
DTS - Digital Transmission System