
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Intel® PRO/Wireless 5000 LAN Products Quick Installation Guide 2 Copyright © 2001, Intel Corporation. All rights reserved. Intel Corporation assumes no responsibility for errors or omissions in this document. Nor does Intel make any commitment to update the information contained herein. Intel is a registered trademark of Intel Corporation. Other product and corporate names may be trademarks of other companies and are used only for explanation and to the owners' benefit, without intent to infringe. 801-0311-001A November 2001 3 Table of Contents Installing the Access Point.......................... 4 Installing the CardBus Adapter ................. 11 Installing the PCI Adapter.......................... 14 4 Intel® PRO/Wireless 5000 LAN Products User Documentation In addition to this Quick Installation Guide, Intel provides extensive online documentation for the PRO/Wireless 5000 LAN product line on the Intel CD- ROM in HTML format. Note: The Intel CD-ROM may contain documentation for other Intel products in addition to the PRO/Wireless 5000 LAN Products. Please disregard the documentation for other products. All documentation for the PRO/Wireless 5000 LAN Products is accessible by clicking a button on the autorun menu screen displayed when the Intel CD- ROM is inserted into the computer (if this screen does not appear, run autorun.exe from the root directory of the Intel CD-ROM). Disregard any documentation on the CD-ROM that is not accessible through this autorun menu screen. Installing the Access Point Package Contents x Intel® PRO/Wireless 5000 LAN Access Point (model WSAP5000) x Mounting hardware x Power supply and power cord x CD-ROM containing software and online documentation x Quick Installation Guide (this manual) Installation Options and Requirements x (Recommended) To set up and configure the access point, use a wired client workstation connected to the access point directly or connected to the wired LAN to which the access point is connected. Initial setup and configuration must be done over a wired connection, but subsequent changes can be made over a wireless connection. x (Optional) Use DHCP server support for automatic assignment of an IP address to the access point over the wired network. You can configure the access point to use DHCP to get its IP address. See Using DHCP on page 8. 5 Connect and Power Up the Access Point Connect the Access Point to the Wired Network x Plug an RJ-45 Category 5 Ethernet cable into the RJ-45 connector on the access point and into a 10/100 Ethernet wall connector or hub. Connect the Access Point to an AC Power Source x Plug the power adapter into a wall outlet. x Plug the power adapter cable into the socket on the bottom of the access point. LED Indicators Once the access point is connected to a wired network and is powered on, check the LED indicators to verify that the unit is functioning correctly. If the access point fails to initialize, restart it by disconnecting and reconnecting power. x The "Ready" LED at the bottom of the row of LEDs should be lit. x If the access point is connected to a LAN through an Ethernet cable, the "Wired Link" LED should be lit (green for 10 Mbps, orange for 100 Mbps) and the "Wired network activity" LED should be blinking. x If the access point is communicating with a wireless adapter, the "Wireless radio activity" LED should be flashing. Viewed top to bottom, the LED indicators on the access point have the following functions. Wired link Green for 10 Mbps wired network speed, orange for 100 Mbps. Wired network activity Yellow blinking shows activity. Wireless radio association Green will be ON if a client is associated to the access point and OFF if not. Wireless radio activity Yellow flashes steadily if no adapter associated, and more rapidly when transferring data. Wireless radio association Future use. Wireless radio activity Future use. Ready Green. This indicator will stay illuminated after the access point has completed the initialization sequence. 6 Configuring the Access Point for the First Time 1. Set up a portable or desktop computer as a configuration workstation from which to view the browser-based Configuration Management System used to configure the access point. 2. Connect the configuration workstation to the access point either directly (using a crossover RJ-45 cable) or through a hub or switch (using a standard RJ-45 cable). 3. The configuration workstation must be running Microsoft Windows® XP, 2000, Me, or 98, and one of the following web browsers: Microsoft Internet Explorer version 5.50 or Netscape Navigator version 4.78 or 5.x 4. Set up the configuration workstation initially with an IP address compatible with the default IP address and default subnet of the access point. For example, based on the access point default IP address 192.0.2.1 and default subnet 255.255.0.0, the client workstation could be set to 192.0.2.2, 192.0.2.3, or a similar address not in use by another device. 5. Once the workstation has been configured as just described, type the default access point IP address as a URL in the browser address field: http://192.0.2.1. 6. To access the Express Setup pages, type a user name and a password. The default for both is: Intel. The password is case-sensitive: capital "I," lower case "ntel." 7. Use Express Setup to configure the access point with a new IP address, subnet, and other settings suitable for the network to which it will be permanently connected (see table on page 7). 8. Click Apply first, then click Restart AP. After the access point has restarted, connect it to the required network. 9. Once the access point has been configured and connected to the network, the configuration interface can be viewed from any workstation on the same network segment or subnet. Open a compatible browser and type the actual IP address of the access point as a URL in the address field. Note: To view configuration, function or option changes on the browser p…
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Intel® PRO/Wireless 5000 LAN Products Safety and Regulatory Notices This section provides the following safety and regulatory notices covering the following products: Intel® PRO/Wireless 5000 LAN Access Point and Intel® PRO/Wireless 5000 LAN CardBus Adapter. • Safety Notices • FCC Regulations • Canadian Department of Communications • Japan Regulatory Notices Safety Notices The FCC with its action in ET Docket 96-8 has adopted a safety standard for human exposure to radio frequency (RF) electromagnetic energy emitted by FCC certified equipment. The Intel PRO/Wireless 5000 LAN products the Intel® PRO/Wireless 5000 LAN Access Point model WSAP5000, the Intel PRO/Wireless CardBus Adapter model WCP5000, and the Intel PRO/Wireless PCI Adapter model WPCI5000 meet the uncontrolled environmental limits found in OET-65 and ANSI C95.1, 1991. Proper operation of this radio according to the instructions found in this manual will result in exposure substantially below the FCC’s recommended limits. • Do not touch or move antenna while the unit is transmitting or receiving. • Do not hold any component containing the radio such that the antenna is very close or • touching any exposed parts of the body, especially the face or eyes, while transmitting. • Do not operate the radio or attempt to transmit data unless the antenna is connected; if • not, the radio may be damaged. • Use in specific environments: o The use of wireless devices in hazardous locations is limited to the constraints posed by the safety directors of such environments. o The use of wireless devices on airplanes is governed by the Federal Aviation Administration (FAA). o The use of wireless devices in hospitals is restricted to the limits set forth by each hospital. • Antenna use: o High-gain, wall-mount, or mast-mount antennas are designed to be professionally installed and should be located at a minimum distance of 12 inches (30 cm) or more from the body of all persons. Please contact your professional installer, VAR, or antenna manufacturer for proper installation requirements. • Explosive Device Proximity Warning (see below) • Warning for Laptop Users (see below) • Use on Aircraft Caution (see below) • Other Wireless Devices (see below) Explosive Device Proximity Warning Warning: Do not operate a portable transmitter (such as a wireless network device) near unshielded blasting caps or in an explosive environment unless the device has been modified to be especially qualified for such use. Use On Aircraft Caution Caution: Regulations of the FCC and FAA prohibit airborne operation of radio-frequency wireless devices because their signals could interfere with critical aircraft instruments. Other Wireless Devices Safety Notices for Other Devices in the Wireless Network: Refer to the documentation supplied with wireless Ethernet adapters or other devices in the wireless network. FCC Regulations FCC Regulations Part 15 Declaration of Conformity (DoC) Intel Corporation declares that the equipment described in this document is within the requirements of the Code of Federal Regulations listed below: Title 47 Part 15, Subpart B, Class B for a digital device. This declaration is based upon the compliance of the Intel PRO/Wireless CardBus Adapter model WCP5000, and the Intel PRO/Wireless PCI Adapter model WPCI5000 to the above standards. Intel has determined that the models listed have been shown to comply with the applicable technical standards if no unauthorized change is made in the equipment and if the equipment is properly maintained and operated. These units are identical to the units tested and found acceptable with the applicable standards. Records maintained by Intel continue to reflect that units being produced under this Declaration of Conformity, within the variation that can be expected due to quantity production and tested on a statistical basis, continue to comply with the applicable technical standards. Responsible Party: R.W. Bass, Vice President and General Manager, Xircom Inc, an Intel company, 2300 Corporate Center Drive, Thousand Oaks, California 91320 U.S.A. FCC Rules and Regulations - Part 15 The Intel® PRO/Wireless 5000 LAN Access and Intel PRO/Wireless CardBus Adapter model WCP5000 device complies with Part 15 of the FCC rules. Operation is subject to the 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. 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 the 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. CAUTION: The Part 15 radio device operates on a non-interference basis with other devices operating at this frequency. Any changes or modification to said product not expressly approved by Intel could void the user's authority to operate this device. Canadian Department of Communications Industry Canada (IC) Notice This digital apparatus does not exceed the Class B limits for radio noise emissions from digital apparatus set out in the Radio …
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RE: Intel FCC ID: J3OWSAP5000 1) Please provide clearer top & bottom photographs of the TX board and Antenna board assemblies. Response: Uploaded as requested. 2) The internal photographs do not clearly show the positioning of the antenna assembly in the product. Please provide an additional photographs showing this. Response: Uploaded as requested. 3) Please provide an exhibit as part of your RF exposure information that compares the worse-case measured MPE to the calculated MPE based upon the information given in the test report (power & antenna gain). Response: Uploaded as requested. 4) The product documentation refers to this as a Dual Port Access Point and the theory of operation discussed 2 different radio solutions. Please confirm that this unit being submitted will only contain the card that uses the Atheros chipset. Response: According to the Intel the AP for this submission will only be marketed with only one card. In the future the Unit’s motherboard will be tested with two radios MINI PCI cards, but for now only one was tested. 5) It is not easily discernible to the end user (assumed to be non-technical) what distance should be maintained from the antenna during use. The information provided is formultiple devices and the 20 cm distance required for classification as a mobile device is mentioned only in tandem with dipole antennas. Also, does the end user realize where the antenna of this device is located? Please make the regulatory information more precise to be inclusive of this device. It is recommended that pages 9/10 of the manual include a warning statement (especially for the desk or table top configuration) regarding the 20 cm separation distance, since this is more conspicuous to the user or installer of the device than the regulatory information page which may not be looked (since this is provided only in the electronic versions of the documentation). Response: Warning statements have been place after pages 9 and 11 of the manual. 6) The theory of operation states that the "indoor use" only statements will be included in the manual, however these were not found in the manual provided. Please comment. Response: This statement was been place next to the warning statements also. 7) Parts lists were uploaded for the Hardware and MiniPCI Radio without request of confidentiality. Please confirm if confidentiality is requested for these items and update the letter of confidentiality if necessary Response: Customer does not want confidentiality. 8) The Radiated fundamental field strength appears to be higher for the omni antenna than the half-round (which is considered to be higher gain) for both normal and turbo modes. Please explain. Response: Data label properly. It seems that the data for the OMNI was place under the Half-round spreadsheet. Data has been revised. 9) The relatively high 2805, 2813, & 8431 MHz antenna conducted spurious for Normal Mode emissions falling in restricted bands do not appear to be measured radiated. Also 2805, 2813, 2815, 2902, 8419, & 8433 MHz for Turbo Mode. Please comment. Response: Emission were measured, but none were detected. Notes have been placed in the data columns to show this. 10) The power spectral density on the summary page (page 5 of 20, page 5 of 69) for 5.15 to 5.25 & 5.25 to 5.35 Band does not match test report data for Normal Mode (see page 9 of 69). The bandwidth (page 5 of 20) for the 5.15 to 5.25 Band does not match the worse case data from the test report for Normal Mode (see page 11 of 69). The power output (page 6 of 20, page 36 of 69) for the 5.25 to 5.35 Band does not match the test report for Turbo Mode (see page 36 of 69). Several measurements in dBm on page 48 f 69 are also missing negative signs. Please correct these errors to ensure consistency in the report. Response: Report has been revised and uploaded.
American Telecommunications Certification Body Inc. 6731 Whittier Ave, McLean, VA 22101 November 27, 2001 RE: Intel FCC ID: J3OWSAP5000 After a review of the submitted information, I have a few comments on the above referenced Application. 1) Please provide clearer top & bottom photographs of the TX board and Antenna board assemblies. 2) The internal photographs do not clearly show the positioning of the antenna assembly in the product. Please provide an additional photographs showing this. 3) Please provide an exhibit as part of your RF exposure information that compares the worse-case measured MPE to the calculated MPE based upon the information given in the test report (power & antenna gain). 4) The product documentation refers to this as a Dual Port Access Point and the theory of operation discussed 2 different radio solutions. Please confirm that this unit being submitted will only contain the card that uses the Atheros chipset. 5) It is not easily discernible to the end user (assumed to be non-technical) what distance should be maintained from the antenna during use. The information provided is formultiple devices and the 20 cm distance required for classification as a mobile device is mentioned only in tandem with dipole antennas. Also, does the end user realize where the antenna of this device is located? Please make the regulatory information more precise to be inclusive of this device. It is recommended that pages 9/10 of the manual include a warning statement (especially for the desk or table top configuration) regarding the 20 cm separation distance, since this is more conspicuous to the user or installer of the device than the regulatory information page which may not be looked (since this is provided only in the electronic versions of the documentation). 6) The theory of operation states that the "indoor use" only statements will be included in the manual, however these were not found in the manual provided. Please comment. 7) Parts lists were uploaded for the Hardware and MiniPCI Radio without request of confidentiality. Please confirm if confidentiality is requested for these items and update the letter of confidentiality if necessary 8) The Radiated fundamental field strength appears to be higher for the omni antenna than the half-round (which is considered to be higher gain) for both normal and turbo modes. Please explain. 9) The relatively high 2805, 2813, & 8431 MHz antenna conducted spurious for Normal Mode emissions falling in restricted bands do not appear to be measured radiated. Also 2805, 2813, 2815, 2902, 8419, & 8433 MHz for Turbo Mode. Please comment. 10) The power spectral density on the summary page (page 5 of 20, page 5 of 69) for 5.15 to 5.25 & 5.25 to 5.35 Band does not match test report data for Normal Mode (see page 9 of 69). The bandwidth (page 5 of 20) for the 5.15 to 5.25 Band does not match the worse case data from the test report for Normal Mode (see page 11 of 69). The power output (page 6 of 20, page 36 of 69) for the 5.25 to 5.35 Band does not match the test report for Turbo Mode (see page 36 of 69). Several measurements in dBm on page 48 f 69 are also missing negative signs. Please correct these errors to ensure consistency in the report. Timothy R. Johnson Examining Engineer mailto: [email protected] The items indicated above must be submitted before processing can continue on the above referenced application. Failure to provide the requested information may result in application termination. Correspondence should be considered part of the permanent submission and may be viewed from the Internet after a Grant of Equipment Authorization is issued. Please do not respond to this correspondence using the email reply button. In order for your response to be processed expeditiously, you must submit your documents through the AmericanTCB.com website. Also, please note that partial responses increase processing time and should not be submitted. Any questions about the content of this correspondence should be directed to the sender.
Printed By: Robert PaxmanReference Only unless DC stampedDate Printed: 07-Nov-2001 11:49:12 Number: 835-0115-001Rev: 01 23881Status: Prototype
R-LARN-01-0202 CC US LISTED E178682 E178682 I.T.E.I.T.E. U L Approved by IDA for use in Singapore. DB02941 071301-AQV1137 GZAEXXXX NYAEXXXX D01-XXXXJP 2.4 DS 4 90LP0011 Intel ® PRO/Wireless 5000 LAN Access Point Model WSAP5000 FOR HOME OR OFFICE USE Tested to Comply with FCC Standards FCC ID: J3OWSAP5000 CANADA ICES/NMB-003 Class/Classe (B) Canada: XXX XXXX XXXXA SCT TTDXIMXXX-XXX CNC XX-XXXX Malaysia sticker REVISIONS REV.DESCRIPTIONDATEAPPROVED APer ECN 23512N. Guetschoff UNLESS OTHERWISE SPECIFIED DIMENSIONS ARE IN INCHES TOLERANCES ARE: FRACTIONS DECIMALS ANGLES ±.008 MATERIAL FINISH DO NOT SCALE DRAWING CONTRACT NO. APPROVALS DATE DRAWN N. Guetschoff10-18-01 CHECKED K. Hovsepian APPROVED M. Eneberg B. Winters– L. Thum LABEL, BOT, MYLAR, WSAP5000 SIZE FSCM NO.DRAWING NO.REV. A830-1770-001 A SCALE = 1”= 1”SHEET 1 OF 1 THIS DOCUMENT CONTAINS INFORMATION PROPRIETARY TO XIRCOM, INC. AND IS FURNISHED TO FOR THE PURPOSE OF INSTALLATION, OPERATION OR MAINTENANCE OF THE ITEM(S) DESCRIBED HEREIN. ALL OTHER USES OF THIS DOCUMENT OR ITS CONTENTS ARE NOT AUTHORIZED BY XIRCOM, INC. © 2001 ALL RIGHTS RESERVED. COPYING OF THIS DOCUMENT IS UNLAWFUL WITHOUT THE WRITTEN PERMISSION OF XIRCOM, INC., THOUSAND OAKS, CA 91320-1420. 3 7 1 2 1 2 • ELECTRONIC ART: REF. ARTWORK #832-2668-001A (ADOBE ILLUSTRATOR FORMAT) • LABEL MATERIAL AND SUPPLIER MUST BE UL APPROVED • A/W PART NUMBERS TO PRINT ON ALL FILM LAYERS (CMYK OR PMS) IF FILM IS REQD • CLEANING TEST: PERFORM LABEL CLEANING TEST PER XIRCOM QA LABEL CLEANING TEST #QAI-020 • GAP BETWEEN LABELS ON ROLL TO BE BETWEEN 10.16MM (.400”) TO 12.70MM (.500”) • DK BLUE = INTEL/XIRCOM PLASTIC CHIP # XQI-0001-138 [INTEL/XIRCOM VENDOR SILK-SCREEN INK # XQI-0001-141] • ALL TEXT/GRAPHICS TO BE REVERSED OUT SILVER; [BACKGROUND IS PRINTED DK BLUE PMS 655U] [UNLESS OTHERWISE SPECIFIED] • FOR LABEL ORIENTATION ON ROLL, REF: DWG #802-0016-001, PAGEMAKER 5.0 FILE • MARK PART NUMBER AND REVISION IN CONSPICUOUS AREA ON OUTSIDE OF BULK PACKAGING FINISH • MATTE MATERIAL • MATTE SILVER POLYESTER, 200 MICRON, LAMINATED WITH MATTE TRANSPARENT POLYESTER, 25 MICRON; OR XIRCOM APPROVED EQUIVALENT NOTES:(UNLESS OTHERWISE SPECIFIED) 53.49mm (2.106”) 8 39.49mm (1.555”) THIS RECTANGLE SHOWS LOCATION OF SEPARATE SILVER LABEL FOR BAR CODE/ SERIAL NUMBER, TO BE APPLIED DURING MANUFACTURING 5 4 9 10 11 10 6 6 4.85mm (0.191”) 4.85mm (0.191”)
Front Side of Antenna Back Side of Antenna Front Side of MINI PCI Card bus W/ Atheros Chip Set Back Side of MINI PCI Card bus W/ Atheros Chip Set Postion of Antenna 1 of 4 Front Side of UNIT Postion of Antenna 2 of 4 Back Side of UNIT Postion of Antenna 3 of 4 Internal Picture w i th partial assembly, Postion of Antenna 4 of 4
MPE Calculations FCC part 1.1310, Table 1 limits the power density for uncontrolled exposure to 1mW/ cm 2 for systems operating in the UNII bands. The distance, d(cm) from the antenna at which the power density, P d (mW/cm 2 ) is below this limit is calculated from the maximum EIRP, P t (mW) using the equation: P d = P t /(4 πd 2 ) Re-arranging for the distance at which the power density is 1mW/cm2 gives: d = √ (P t /(4 π)) The device under test is designed to use an integral antenna which can be configured to give either an Omni-Directional pattern or a half-circular radiation pattern. The gain gains stated for the omni configuration is 2dBi and for the half-circle configuration the stated gain is 5.6dBi. The maximum output power across all channels is 15.7dBm. The maximum EIRP for omni pattern is, therefore, 17.7 dBm (59 mW): d = √ (59 / (4 π)) = 2.2 cm (0.9”) The maximum EIRP for half circle pattern is, therefore, 21.3 dBm (135 mW): d = √ (135 / (4 π)) = 3.3 cm (1.3”) The distance from the antenna that the power density is 1mW/ cm 2 is, therefore, 3.3cm. The users guide instructs the user to install the device such that it has a separation of at least 20cm from persons to comply with the FCC’s requirements. This separation of 20cm more than meets the FCC’s and Industry Canada rf exposure requirements. The actual power density at a distance of 20cms for the two antenna configurations is given below: Power Density at 20cm Antenna Configuration EIRP Calculated Measured Omni (p. 5 of 6) 17.7 dBm (59mW) 0.012 mW/cm 2 0.0141 mW/cm 2 Half-Circle (p. 6 of 6) 21.3 dBm (135mW) 0.027 mW/cm 2 0.0172 mW/cm 2
October, 2001 Aprel Page 1 This report shall not be reproduced, except in full, without the express written approval of APREL Laboratories CONSULTING * RESEARCH * TRAINING * CERTIFICATION TESTING SINCE 1981 PRELIMINARY MPE TEST RESULTS OF WSAP5000 ACCESS POINT 1. Purpose This test method is used to verify that the DUI meets the MPE requirements as defined in the criteria for general population/uncontrolled exposure when operating at maximum ERP and in all operating modes. 2. Criteria Power Density Limits – The DUI shall not generate a power density beyond the limit of 1 mW/cm 2. The power density shall be measured at a distance of 20 cm from the radiating antenna axis while the unit is in both vertical and flat configuration as shown in figure 1 and figure 2. The measured values shall be recorded. October, 2001 Aprel Page 2 This report shall not be reproduced, except in full, without the express written approval of APREL Laboratories CONSULTING * RESEARCH * TRAINING * CERTIFICATION TESTING SINCE 1981 Figure 1 Flat configuration 0° 90° 270° 180° 180° 0° 90° 270° October, 2001 Aprel Page 3 This report shall not be reproduced, except in full, without the express written approval of APREL Laboratories CONSULTING * RESEARCH * TRAINING * CERTIFICATION TESTING SINCE 1981 Figure 2 Vertical configuration October, 2001 Aprel Page 4 This report shall not be reproduced, except in full, without the express written approval of APREL Laboratories CONSULTING * RESEARCH * TRAINING * CERTIFICATION TESTING SINCE 1981 3 Results Table 1 presents the results of the measurements made vertically along the DUI in order to find the location of the maximum power density. Table 1.1 Power Density Measured at 0° as a Function of Height Antenna Pattern: Omni Measured Power Density @ 0.20 m Vertical Configuration Measured Power Density @ 0.20 m Flat Configuration Height #518 #524 #532 #518 #524 #532 [cm] [mW/cm 2 ] [mW/cm 2 ] [mW/cm 2 ] [mW/cm 2 ] [mW/cm 2 ] [mW/cm 2 ] 2 0.00522 0.00492 0.00716 0.01283 0.01287 0.01430 4 0.00506 0.00487 0.00706 0.01202 0.01264 0.01434 6 0.00498 0.00484 0.00698 0.01176 0.01220 0.01357 8 0.00491 0.00481 0.00689 0.01063 0.01138 0.01231 10 0.00486 0.00484 0.00684 0.00925 0.00946 0.01003 12 0.00471 0.00474 0.00676 0.00817 0.00742 0.00693 14 0.00465 0.00470 0.00658 0.00766 0.00643 0.00569 16 0.00449 0.00462 0.00643 0.00704 0.00598 0.00500 18 0.00433 0.00457 0.00626 0.00626 0.00572 0.00442 20 0.00400 0.00435 0.00603 0.00589 0.00529 0.00413 22 0.00364 0.00413 0.00582 0.00505 0.00482 0.00379 24 0.00324 0.00381 0.00527 0.00449 0.00435 0.00364 October, 2001 Aprel Page 5 This report shall not be reproduced, except in full, without the express written approval of APREL Laboratories CONSULTING * RESEARCH * TRAINING * CERTIFICATION TESTING SINCE 1981 Table 1.2 Power Density Measured at 0° as a Function of Height Antenna Pattern: Half circle front Measured Power Density @ 0.20 m Vertical Configuration Measured Power Density @ 0.20 m Flat Configuration Height #518 #524 #532 #518 #524 #532 [cm] [mW/cm 2 ] [mW/cm 2 ] [mW/cm 2 ] [mW/cm 2 ] [mW/cm 2 ] [mW/cm 2 ] 2 0.00859 0.00839 0.00735 0.01407 0.01411 0.01393 4 0.00843 0.00823 0.00730 0.01353 0.01339 0.01322 6 0.00853 0.00814 0.00725 0.01279 0.01302 0.01291 8 0.00839 0.00816 0.00730 0.01304 0.01309 0.01302 10 0.00836 0.00805 0.00732 0.01370 0.01491 0.01402 12 0.00814 0.00789 0.00715 0.01566 0.01624 0.01564 14 0.00798 0.00775 0.00706 0.01671 0.01689 0.01594 16 0.00779 0.00742 0.00696 0.01591 0.01549 0.01486 18 0.00760 0.00701 0.00677 0.01432 0.01382 0.01270 20 0.00738 0.00694 0.00661 0.01178 0.01285 0.01098 22 0.00717 0.00657 0.00643 0.01016 0.01055 0.00991 24 0.00701 0.00622 0.00612 0.00928 0.00962 0.00920 Table 1.3 Power Density Measured at 0° as a Function of Height Antenna Pattern: Half circle back Measured Power Density @ 0.20 m Vertical Configuration Measured Power Density @ 0.20 m Flat Configuration Height #518 #524 #532 #518 #524 #532 [cm] [mW/cm 2 ] [mW/cm 2 ] [mW/cm 2 ] [mW/cm 2 ] [mW/cm 2 ] [mW/cm 2 ] 2 0.00945 0.00957 0.00928 0.01268 0.01222 0.01400 4 0.00940 0.00923 0.00876 0.01208 0.01133 0.01330 6 0.00938 0.00918 0.00775 0.01138 0.01085 0.01277 8 0.00935 0.00903 0.00772 0.01115 0.01055 0.01231 10 0.00930 0.00894 0.00765 0.01164 0.01044 0.01226 12 0.00920 0.00878 0.00746 0.01324 0.01129 0.01268 14 0.00902 0.00865 0.00715 0.01411 0.01148 0.01300 16 0.00840 0.00849 0.00693 0.01344 0.01106 0.01212 18 0.00801 0.00808 0.00667 0.01233 0.00998 0.01057 20 0.00776 0.00802 0.00627 0.01007 0.00873 0.00910 22 0.00753 0.00760 0.00589 0.00879 0.00802 0.00807 24 0.00709 0.00719 0.00557 0.00854 0.00760 0.00745 October, 2001 Aprel Page 6 This report shall not be reproduced, except in full, without the express written approval of APREL Laboratories CONSULTING * RESEARCH * TRAINING * CERTIFICATION TESTING SINCE 1981 Table 2 presents the results of the measurements made around the DUI at every 30° of rotation at the height which has the highest power density. Table 2.1 Power Density Measured at every 30° as a Function of Angle Antenna Pattern: Omni Measured Power Density @ 0.20 m Vertical Configuration Measured Power Density @ 0.20 m Flat Configuration Angular Position #518 #524 #532 #518 #524 #532 [º] [mW/cm 2 ] [mW/cm 2 ] [mW/cm 2 ] [mW/cm 2 ] [mW/cm 2 ] [mW/cm 2 ] 0 0.00528 0.00494 0.00620 0.01270 0.01361 0.01411 30 0.00532 0.00505 0.00677 0.00873 0.00746 0.00758 60 0.00624 0.00632 0.00792 0.00760 0.00675 0.00645 90 0.00679 0.00679 0.00797 0.00720 0.00638 0.00668 120 0.00583 0.00561 0.00720 0.00638 0.00531 0.00515 150 0.00509 0.00486 0.00620 0.00590 0.00484 0.00482 180 0.00465 …
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684 West Maude Avenue · Sunnyvale, California · United States
| # | Rule Parts | Frequency Range | Power Output | Tolerance |
|---|---|---|---|---|
| 2 | 15E | 5.21 GHz - 5.29 GHz | 37.00 mW | 20 ppm |

WLAN Accesspoint
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
LAN Access Point
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Mini PCI Card
Equipment Class
NII - Unlicensed National Information Infrastructure TX
Intel PRO/ Wireless 5000 Cardbus Adapter
Equipment Class
NII - Unlicensed National Information Infrastructure TX
Wreless PCI Adapter
Equipment Class
NII - Unlicensed National Information Infrastructure TX