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E2XSWL-2100NDirect Sequence Spread Spectrum Transceiver

Samsung Electro Mechanics
Direct Sequence Spread Spectrum Transceiver - FCC ID E2XSWL-2100N - Samsung Electro Mechanics
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Jul 30, 2000
Application Purpose
Original Equipment
Date of Application
Jul 30, 2000
Equipment Note
Direct Sequence Spread Spectrum Transceiver
Frequency Range
2411.00000000 - 2463.00000000
Company
Samsung Electro Mechanics
Country
South Korea

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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Operational Description

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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

COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 40 of 51 40 APPENDIX H: Manual SAMSUNG MagicLAN SWL-2100N User Manual (Ver. 1.0) 1 Notice 1 This manual cannot be reproduced in any form without the prior written permission of SAMSUNG Electro-Mechanics, Co., Ltd. SAMSUNG Electro-Mechanics, Co., Ltd. reserves the right to change this manual and the specifications to improve products without prior notice. So you can get the most recent software and user documentation for all MagicLAN products on our web site. • MagicLAN is the trademark of SAMSUNG wireless LAN. • MS-DOS, Microsoft and Windows are registered trademarks of Microsoft Corporation. All other brand and product names are trademarks of registered trademarks of their respective holders. http://www.MagicLAN.com Service Dept. +82-331-210-6805 Sales Dept. +82-331-210-6386 SAMSUNG – America Corporation Western US Marketing Office 85 Tasman Drive San Jose, CA 95134 USA Tel: (408)544-5200 Fax: (408)544-4967 Eastern US Marketing Office LanPAL AKOM Corporation 9 Parklawn Dr. Bethel, CT 06801 Tel: (203)778-9500 Fax: (203)778-9525 Copyright  1999 SAMSUNG Electro-Mechanics, Co., Ltd. All rights reserved. 2 Notice 2 The SWL-2100N complies with Part 15 of the FCC rules. Operation is subject to the following two conditions; (1) This device may not cause harmful interference. (2) This device must accept any interference received, including interference that may cause undesired operation. WARNING While installing and operating this transmitter and antenna combination the radio frequency exposure limit of 1mW/cm 2 may be exceeded at distances close to the antennas installed. Therefore, the user must maintain a minimum distance of 20 cm from the antenna. Note: The SWL-2100N has been tested and found to comply with the limits for a Class B digital device and a low power transmitter, according 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 resolve the problem by one or more of the following measures; - Reorient or relocate the receiving antenna. - Increase the separation between the equipment and the receiver. - Connect the equipment to an output on a circuit different from that to which the receiver is connected. - Consult the dealer or an experienced radio/TV technician for help. Samsung Electro-Mechanics MagicLAN SWL-2100N FOR HOME OR OFFICE USE Tested to Comply With FCC Standards 3 Important Safety Information l Read these simple guidelines. Breaking the rules may be dangerous or illegal. SAMSUNG is not responsible for any damages caused by breaking the rules. l Wireless LAN Card described in this document is approved for use in a wireless local area network. l Remember to make backup copies of important data. l When you are transferring data, keep your laptop computer stationary. Roaming between access points may break the connection. l Only qualified service personnel must repair the equipment. l All wireless devices may get interference, which could affect performance. l Use approved accessories only. Do not connect incompatible products. l Use only accessories approved by the wireless LAN Card manufacturer for use with this particular wireless LAN Card. The use of any other types will invalidate any approval or warranty applying to the wireless LAN Card, and may be dangerous, l Use only the region setting appropriate for the area where the wireless LAN Card is used at the present time. Using the card in any other region or with an incorrect region setting is prohibited and may be illegal. l Operation of any radio transmitting equipment, including a wireless LAN Card, may interference with the functionality of inadequately protected medical devices. l Do not use the wireless LAN Card on aircraft. l Do not use the wireless LAN Card at a refueling point. l Do not use the wireless LAN Card near fuel or chemicals. l Do not use the wireless LAN Card where blasting is in progress. l Do not use the wireless LAN Card when the use of wireless device may cause interference or danger. l Do not use the wireless LAN Card where the use of cellular terminals is prohibited. 4 Table of Contents 1. MagicLAN Installation .............................................................................. 7 1.1 Introduction ...................................................................................... 7 1.2 Technical Background ......................................................................... 7 1.3 MagicLAN Overview ........................................................................ 10 2. Before Installation ................................................................................. 11 2.1 What’s in your Package ..................................................................... 11 2.2 System Requirement ........................................................................ 11 3. MagicLAN Installation for Windows95/98 .................................................... 12 3.1 Installation Overview ........................................................................ 12 3.2 Hardware Installation ........................................................................ 13 3.2.1 Notebook PC Adapter Card (SWL-2100N) ......................................... 14 3.3 Software Installation ......................................................................... 15 3.3.1 Driver Setup ........…

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Cover Letter(s)

Federal Communications Commission Equipment Authorization Branch 7435 Oakland Mills Rd. Columbia, MD 21406 USA Subject: FCC ID: E2XSWL-2100N July 7, 2000 Gentlemen, Samsung Electro-Mechanics hereby requests that the following items be kept confidential under sections 0.457 and 0.459 of the CFR. If this information was to be made public record it would adversely affect the core business. I would like to request the following items be confidential (1) Schematics (2) Block Diagram Regards, John Seo

External Photos

COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 31 of 46 31 APPENDIX D: External Photographs COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 32 of 46 32 EUT Side A EUT Side B

ID Label/Location Info

COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 26 of 46 26 APPENDIX B: Label Information COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 27 of 46 27 This device complies with the FCC, part 15 rules. Operation is subject to the following two conditions: 1) This device may not cause harmful interference. 2) This device must accept any interference received, including interference that may cause undesired operation. FCC ID: E2XSWL-2100N The label is made of coated polyester with permanent adhesive. The compliance statements are listed in the user’s manual. The label is placed on the top of the card as shown in figure 1. The label size is 4 x 6.3cm and it is blue with white lettering. FIGURE 1: FCC LABEL FIGURE 2: LOCATION OF LABEL ON EUT

Internal Photos

COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 33 of 47 33 APPENDIX E: Internal Photographs COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 34 of 47 34 Component side A Component side B COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 35 of 48 35 Components A Components B COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 36 of 49 36 Metal cover A Metal cover B COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 37 of 50 37 Plastic frame A Plastic frame B

Operational Description

COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 24 of 46 24 APPENDIX A: Product Description COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 25 of 46 25 The model SWL-2100N (referred to as the EUT in this report) is a Direct Sequence Spread Spectrum wireless LAN, PCMCIA network card. The EUT provides wireless communications between computers. The EUT is designed to be installed into the PCMCIA slot of a notebook computer or desktop computer with a PCMCIA slot. The EUT communicates with other wireless LAN cards using the frequency range from 2.411 GHz to 2.462 GHz. The EUT is powered from the PCMCIA slot, and does not have an external power supply. The EUT uses an internal PCB trace antenna. The EUT uses 2-bits encoded to 4 complex code words; 2-DQPSK CCK modulation technique with 8 Chips per symbol, spread clock rate is 1.375 MHz symbol/sec, and the data rate = 11 MBPS.

RF Exposure Info

COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 23 of 51 23 5.0 RF Exposure Calculations for Samsung’s High Gain Antennas From FCC 1.1310 table 1A, the maximum permissible RF exposure for an uncontrolled environment is 1mW/cm 2. The Electric field generated for a 1mW/cm 2 exposure (S) is calculated as follows: S = E 2 /Z where: S = Power density E = Electric field Z = Impedance. E = √S x Z 1mW/cm 2 = 10 W/m 2 The impedance of free space is 337 ohms, where E and H fields are perpendicular. Thus: E = √10 x 377 = 61.4 V/m which is equivalent to 1mW/cm 2 Using the relationship between Electric field E, Power in watts P, and distance in meters d, the corresponding Antenna numeric gain G and the transmitter output power and solving for d, d = √ P eak x 30 x G E Example using the Stub Omni-directional antenna 1. The Numeric gain G of antenna with a gain specified in dB is determined by: G = Log –1 (dB gain/10) G = Log –1 2.15 = 1.64 2. Stub antenna-gain with a gain of 2.15dB, the 1mW/cm 2 : distance is: P = 0.8mW worst case channel 11 power output d = 0.3 cm Notice in Installation Manual: While installing and operating this transmitter and antenna combination the radio frequency exposure limit of 1mW/cm 2 may be exceeded at distances close to the antennas installed. Therefore, the user must maintain a minimum distance of 5 cm from the antenna at all time. The table below identifies the distances where the 1mW/cm 2 exposure limits may be exceeded during continuous transmission using the internal antenna Antenna Type Gain (dBi) Gain Numeric Peak output EIRP Power (mW) Calculated RF Exposure Separation Distance (cm) Minimum RF Exposure Separation Distance (cm) Internal 2.15 1.64 98.63 4.11 5

Test Report

Engineering and Testing for EMC and Safety Compliance 360 Herndon Parkway, Suite 1400 Herndon, VA 20170 Phone: 703-689-0368; Fax: 703-689-2056; Metro: 703-471-6441 APPLICATION FOR FCC CERTIFICATION DIRECT SEQUENCE SPREAD SPECTRUM TRANSMITTER Samsung Electro-Mechanics 314, Maetan-3Dong, Paldal-Gu, Suwon, Kyunggi-Do, Korea, 442-743 +82-331-210-6662 Model: Magic Wave PCMCIA Card SWL-2100N FCC ID: E2XSWL-2100N July 7, 2000 STANDARDS REFERENCED FOR THIS REPORT PART 2: 1999 FREQUENCY ALLOCATIONS AND RADIO TREATY MATTERS; GENERAL RULES AND REGULATIONS PART 15: 1999 RADIO FREQUENCY DEVICES FCC 97-114 GUIDANCE ON MEASUREMENTS FOR DIRECT SEQUENCE SPREAD SPECTRUM SYSTEMS ANSI C63.4-1992 STANDARD FORMAT MEASUREMENT/TECHNICAL REPORT PERSONAL COMPUTER AND PERIPHERALS RSS-210, Issue 3: 2000 LOW POWER LICENCE-EXEMPT RADIOCOMMUNICATION DEVICES (ALL FREQUENCY BANDS) RSS-102, Issue 1: 1999 EVALUATION PROCEDURE FOR MOBILE AND PORTABLE RADIO TRANSMITTERS This report concerns (check one): Original Grant: X Class II Change: Equipment Type: PCMCIA Board Deferred grant requested per 47 CFR 0.457 (d) (1) (ii)? Yes: No: X If yes, defer until: Company name agrees to notify the Commission by: (date) of the intended date of announcement of the product so that the grant can be issued on that date. Transition Rules Request per 15.37? Yes: No: X If no, assumed Part 15, subpart B for unintentional radiators - the new 47 CFR. [10-1-90 Edition] provision. I, the undersigned, hereby declare that the equipment tested and referenced in this report conforms to the identified standard(s) as described above. No modifications were made during testing to the equipment in order to achieve compliance with these standards. Furthermore, there was no deviation from, additions to or exclusions from the ANSI C63.4 test methodology. REPORT PREPARED BY: Supervising Engineer: Desmond A. Fraser EMC Emission Technician: Daniel W. Baltzell Administrative Writer: Melissa Fleming Document Number: 2000258 No part of this report may be reproduced without the full written approval of Rhein Tech Laboratories, Inc. COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N W ORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 2 of 51 2 Equipment Model: Test Report Page Transmitter tested to: Field Strength uV/m at a Distance of meters Or RF Power 0.009863 Watts Peak-to-average ratio dB or CISPR No. Test Conditions: Radiated gfedcb At gfedc DC Input Power gfedc 20 Transmitter Frequency 2462 MHz Bandwidth 11.2 MHz and ITU emission designation Frequency Tuning Range Min Max MHz Frequency Stability ppm 20 Transmitter Spurious (Worst Case) Field Strength 335.0 uV/m at a distance of 3 meters Frequency 9853.0 MHz Or RF Power Nanowatts Frequency MHz 19 Momentary Operation No Holdover time after release Seconds Or Duration of transmission after automatic activation Seconds Transmitter/Receiver AC Wireline Conducted Emissions (worst case) Transmitter: RF Level 150 microvolts Frequency 0.453 MHz RF Level 150 microvolts Frequency 0.453 MHz 13 Receiver Spurious (worst case) Field Strength 136.5 uV/m at a distance of 3 meters Or RF Power nanowatts Frequency 352.0 MHz 19 FCC Rules Parts Frequency Range Output Power (W) Freq. Tolerance Emission Designator 15.247 2411-2462 0.009863 COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 3 of 51 3 TABLE OF CONTENTS 1.0 GENERAL INFORMATION.......................................................................................................6 1.1 RELATED SUBMITTAL(S)/GRANT(S)..............................................................................................6 1.2 TEST METHODOLOGY........................................................................................................................6 1.3 TEST FACILITY....................................................................................................................................6 1.4 EMISSIONS EQUIPMENT LIST.............................................................................................................7 2.0 SYSTEM TEST CONFIGURATION.........................................................................................8 2.1 JUSTIFICATION....................................................................................................................................8 2.2 EUT EXERCISE SOFTWARE................................................................................................................8 2.3 SPECIAL ACCESSORIES.......................................................................................................................8 2.4 TEST SYSTEM DETAILS......................................................................................................................9 2.5 CONFIGURATION OF TESTED SYSTEM.............................................................................................10 3.0 TEST RESULTS.............................................................................................................................11 3.1 FIELD STRENGTH CALCULATION..........................................................................................................11 3.2 CONDUCTED EMISSIONS TEST..............................................................................................................13 3.3 RADIATED EMISSIONS TEST.................................................................................................................17 3.4 MODULATED BANDWIDTH...................................................................................................................20 3.5 POWER OUTPUT...................................................................................................................................20 3.6 CONDUCTED SPURIOUS EMISSIONS............................................................................................20 3.7 RADIATED …

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Test Report

Measurement of Processing Gain of a Direct Sequence Spread Spectrum System Certification Report on Compliance with Respect to FCC CFR 47, Paragraph 15.247(e) Product: Samsung 2100N Wireless LAN Card June 28, 2000 Rhein Tech Laboratories, Inc. 360 Herndon Parkway, Suite 1400 Herndon, VA 20170 (703) 689-0368 (703) 689-2056 fax Rhein Tech Laboratories, Inc. Page 2 Scope This report contains the results of the processing gain testing performed on the Samsung 2100N Wireless LAN Card. The tests were carried out in accordance with FCC CFR 47, Paragraph 15.247(e). The jamming margin method specified in 15.247(e)(2) was used to perform the processing gain testing. FCC 97-114, Guidance on Measurements for Direct Sequence Spread Spectrum Systems, was also utilized as a guiding document for the performance of the processing gain testing. FCC Requirements The processing gain of a direct sequence system shall be at least 10dB. The processing gain shall be determined from the ratio in dB of the signal-to-noise ratio with the system spreading code turned off to the signal-to-noise ratio with the system spreading code turned on, as measured at the demodulated output of the receiver. Test Equipment Hewlett Packard Spectrum Analyzer, Model 8566B, 100Hz-2.5GHz/2-22GHz Hewlett Packard Signal Generator, Model 8648C, 100kHz-3200MHz Weinschel Broadband Resistive Power Divider, Model 1515, DC to 18.0GHz 1 Watt Weinschel Directional Coupler, Model 1537RA-20, 0.5 to 4.0GHz Weinschel 6dB Attenuator (quantity 2), Model 2, 0 to 18GHz 5W IBM Laptop Computer, Model ThinkPad 600E (used with transmitter) IBM Laptop Computer, Model ThinkPad 600 (used with receiver) Method of Measurement As mentioned in the scope section, the jamming margin method was used. The following drawing titled “Processing Gain – Jamming Test Setup” illustrates a block diagram of the test setup. In this method, a signal generator was stepped in 50kHz increments across the passband of the system. At each point, the level of the signal generator required to produce the recommended Bit Error Rate (BER) was recorded. This level is the jammer level. The output power of the transmitter was also recorded at these same points. This level is the signal level. The jammer to signal ratio (J/S) was then calculated. The worst 20% of the J/S data points were discarded. The lowest remaining J/S ratio was used to calculate the processing gain for each of the channels and rates investigated. The processing gain, Gp, was calculated as follows: Gp = (S/N)o + Mj + Lsys, where Gp = the processing gain of the system, (S/N)o = signal to noise ratio required for the chosen BER, Mj = J/S ratio, and Lsys = system losses. Note that total system losses in a system, including intentional radiator and receiver, are assumed to be no more than 2dB as specified by the FCC. An ideal signal to noise ratio, also referred to as (S/N)o or (Es/No), of 13.3dB was used as specified by Intersil when calculating the processing gain when operating at 2Mbps. A value of 16.4dB was used as specified by Intersil when calculating the processing gain when operating at 11Mbps. The Samsung 2100N contains chip-sets from Intersil and operates at rates up to Rhein Tech Laboratories, Inc. Page 3 11Mbps. Please see the enclosed documents “Theoretical BER curves for the IEEE 1 and 2 Mbps modulations” and “Testing for compliance with FCC rules 15-247e” by Carl Andren of Intersil Corporation for more information. A BER (bit error rate) of 10 -5 was used to calculate the processing gain. The monitoring software on the receiver side displays the FER (frame error rate). The use of 8% FER (or PER packet error rate) as a substitute for the recommended BER is derived in the attached document “Testing for compliance with FCC rules 15-247e” by Carl Andren of Intersil Corporation. The data presented in this report is for the worst case operation of the EUT(s). All other data and chip/symbol rates were investigated and found to be in compliance. Engineering Summary Processing Gain Results Summary: Channel Rate (Mbps) Gp(dB) 1 11 11.5 6 11 11.4 11 11 12.0 6 2 12.5 Following are the calculations and data for the three channels at 11Mbps and the one channel at 2Mbps that were investigated. 5 5 4 4 3 3 2 2 1 1 D D C C B B A A Transmitter Samsung 2001N Wireless LAN Card Signal Generator HP 8648C Broadband Resistive Power Divider Weinschel Model 1515 Spectrum Analyzer HP 8566B Receiver Samsung 2100N Wireless LAN Card Directional Coupler Weinschel Model 1537A 6dB loss 6dB loss 6dB pad 6dB pad 20dB loss Processing Gain - Jamming Test Setup A 4Wednesday, June 28, 2000 Rhein Tech Laboratories, Inc. Title Size Document Number Rev Date: Sheet of 11Mbps Channel 1 Processing Gain Gp = (S/N)o + Mj + Lsys Freq. Gp(S/N)oMj = J/SLsysJammerLVLFER (GHz)(dB)(dB)(dB)(dB)(dBm)(dBm) 2.4035020.016.41.62.0-38.48.05.4 2.4035519.516.41.12.0-38.97.56.2 2.4036019.416.41.02.0-39.07.47.3 2.4036519.016.40.62.0-39.47.06.1 2.4037018.916.40.52.0-39.56.95.8 2.4037518.816.40.42.0-39.66.85.8 2.4038018.916.40.52.0-39.56.95.7 2.4038518.916.40.52.0-39.56.97.1 2.4039019.016.40.62.0-39.47.07.3 2.4039519.116.40.72.0-39.37.15.6 2.4040019.516.41.12.0-38.97.56.7 2.4040519.816.41.42.0-38.67.87.2 2.4041019.616.41.22.0-38.87.66.8 2.4041519.516.41.12.0-38.97.56.0 2.4042019.616.41.22.0-38.87.67.8 2.4042519.416.41.02.0-39.07.47.5 2.4043019.316.40.92.0-39.17.36.5 2.4043519.316.40.92.0-39.17.35.2 2.4044019.216.40.82.0-39.27.26.5 2.4044519.116.40.72.0-39.37.14.9 2.4045019.016.40.62.0-39.47.07.5 2.4045518.616.40.22.0-39.86.67.9 2.4046018.516.40.12.0-39.96.57.5 2.4046518.116.4-0.32.0-40.36.15.7 2.4047018.116.4-0.32.0-40.36.16.1 2.4047518.016.4-0.42.0-40.46.05.2 2.4048018.116.4-0.32.0-40.36.17.9 2.4048518.016.4-0.42.0-40.46.04.9 2.4049018.016.4-0.42.0-40.46.05.0 2.4049518.216.4-0.22.0-40.26.27.1 2.4050018.516.40.12.0-39.96.57.9 2.4050518.616.40.22.0-39.86.67.7 2.4051018.616.40.22.0-39.86.68.0 2.4051518.516.40.12.0-39.96.56.2 2.4052018.416.40.02.0-40.06.46.4 2.4052518.316.4-0.…

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Test Report

COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 49 of 51 49 APPENDIX L: 20dB Plots COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 50 of 51 50 COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 51 of 51 51

Test Report

COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 49 of 51 49 APPENDIX L: 6dB Plots COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 50 of 51 50 COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 51 of 51 51

Test Report

COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 41 of 51 41 APPENDIX I: Bandedge Plots COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 42 of 51 42

Test Report

COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 43 of 51 43 APPENDIX J: Conducted Spurious Plots COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 44 of 51 44 COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 45 of 51 45 COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 46 of 51 46

Test Report

COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 47 of 51 47 APPENDIX K Spectral Density Plots COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 48 of 51 48

Test Setup Photos

COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 28 of 46 28 APPENDIX C: Test Photographs COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 29 of 46 29 Conducted Measurement Photos COMPANY NAME: SAMSUNG ELECTRO MACHANICS EUT: Magic Wave PCMCIA Card SWL-2100N WORK ORDER NUMBER: 2000258 FCC ID: E2XSWL-2100N Spread Spectrum Report Page 30 of 46 30 Radiated Measurement Photos

Contact Information

Applicant

Jinhwan Lim(Assistant Manager)
[email protected]9-011-82331-2106497Fax: 9-011-82331-2106250

Technical Contact

Rhein Tech LaboratoriesDesmond Fraser
[email protected]703 689 0368

360 Herndon Parkway · Herndon, Virginia · United States

Non-Technical Contact

Rhein Tech LaboratoriesDesmond Fraser
[email protected]703 689 0368

Test Firm

Rhein Tech Laboratories, Inc.Rick McMurray
[email protected]703-689-0368Fax: 703-689-2056

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz98.60 mW
Confidentiality
Long Term
Grant Notes
This device and it's antenna(s) must operate with a seperation distance of at least 5cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter. End-users must be provided with specific operating instructions for satisfying RF exposure compliance.

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