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HZB-S58-GX1Unlicensed DTS

Proxim Wireless Corporation
Unlicensed DTS - FCC ID HZB-S58-GX1 - Proxim Wireless Corporation
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Mar 21, 2004
Application Purpose
Original Equipment
Date of Application
Mar 21, 2004
Equipment Note
Unlicensed DTS
Frequency Range
5727.00000000 - 5848.00000000
Company
Proxim Wireless Corporation
Country
United States

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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Parts List/Tune Up Info

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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

Part Number 64352v1r2 Lynx.GX Installation and Management Models 4T, 4E-BNC, 4E, 8T, 8E, 16T Lynx.GX Installation and Management First Edition, January 2004 Copyright and Service Marks Copyright © 2004 by Proxim Corp. All rights reserved. No part of this book may be reproduced without prior written permission from Proxim Corp. The information contained in this book is subject to change without notice. Proxim shall not be liable for errors contained herein or for incidental or consequential damages in connection with the furnishing, performance, or use of this book or equipment supplied with this book. Proxim makes no warranty of any kind with regard to this book or any equipment supplied with this book, including, but not limited to, the implied warranties of merchantability and fitness for a particular purpose. Tsunami™ and Tsunami.GX are trademarks of Proxim Corporation. Lynx™ and Lynx.GX™ are trademarks of Proxim Corporation. OpenView® is a registered trademark of Hewlett Packard Corporation. Windows® is a registered trademark of Microsoft Corporation. Other names are trademarks of their respective owners. Y2K (Year 2000 Issue): All software supplied by and for Proxim products adhere to the 4-digit year nomenclature as required for Year 2000 compliance. Regulatory Notice This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense. Shielded cables and I/O cords must be used for this equipment to comply wit the relevant FCC regulations. Changes or modifications not expressly approved in writing by Proxim may void the user’s authority to operate this equipment. This device complies with Part 15 of FCC rules and RSS-210 of Industry Canada. Operation is subject to the following two conditions: (1) this device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of the device. WARNING! This device must be professionally installed. Instructions for setting the transmitter RF output power are referenced in “Adjust Output Power” on page 27. This device is to be used exclusively for fixed point- to-point operation that employs directional antennas. Be sure to read “Product Safety Instructions” above before installing this product. Notices 2 Lynx.GX Installation and Management Product Safety Instructions This product must be installed, used, and maintained by experienced telecommunications personnel only. When installed, this equipment is to be connected to a lightning/surge protection device that meets all applicable national safety requirements. WARNING! To avoid injury, risk of fire, and damage, do not connect this product directly to an antenna. Ensure that proper lightning isolation also is provided between this unit and other equipment. Equipment is to be used and powered by the type of power source indicated on the marking label only. Lynx.GX radios are intended to be connected to a ± 24 VDC or ± 48 VDC power source, which must be electrically isolated from any AC sources and reliably earthed. Only a DC power source that complies with the Safety Extra Low Voltage (SELV) requirements in the Standard for the Safety of Information Technology Equipment, including Electrical Business Equipment, CAN/CSA C22.2, No. 950-95 * UL 1950, Third Edition, can be used with this product. A 5-Amp circuit breaker or fuse is required at the DC power source. If using the Proxim optional power supply (P/N 201-31075-1), use a 15-Amp circuit breaker or fuse on the AC input. In addition, an easily an easily accessible disconnect device should be incorporated into the facility wiring. Always use copper conductors only for all power connections. Do not connect or disconnect the power cable to the equipment when the other end of the cable is connected to the DC power supply. WARNING! This product must be serviced by trained personnel only. Do not: ▪ Disassemble this product. Opening or removing any covers voids the warranty for this product. Furthermore, by opening or removing any covers, you could expose yourself to hazardous energy parts. Incorrect reassembly of this product can cause a malfunction or electrical shock when the unit subsequently is used. ▪ Insert any objects of any shape or size inside this product while powered. Objects could contact hazardous energy parts, resulting in a risk of fire or personal injury. ▪ Spill any liquids of any kind on or inside this product. ▪ Cover or block any of the openings (to protect this product from overheating). Side and top cover openings on the IDU are provided for ventilation. Always ensure the following: ▪ That sufficient space is provided surrounding this product. This product can be installed in a standard 19-inch rack. Check the size and clearance requirements for this product and ensure that enough clearance is provided for installation. Consideration should be given to the mechanical loading of the rack and the equipment to avoid potential hazards. ▪ If this product is to be powered from the same source as other units, ensure that the power supply circuit is not overloaded. ▪ When installed in a rack, always ensure that proper air flow is provided for this product. Mount as shown in this manual. ▪ If you are using a standard telephone (for orderwire function) not provided by Proxim with this product, ensure that the telephone has a ringing equivalency specification of 1.0 Baud and is a UL…

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Users Manual

Lynx.GX Installation and Management Appendix A. Installation Planning Prior to installing the radio system, be sure you have considered the following factors. In addition to selecting the installation site, you must: Calculate: º Predicted Path Availability º Anticipated RSL and Fade Margin Determine: º Frequency Plan º Required antenna size and type º Required antenna mounting height to obtain proper path clearance and avoid creating a multi-path reflection problem º Required transmission line types and lengths You should also consider the following: ▪ Continuous power consumption needs ▪ Antenna installation ▪ Lightning protection and system grounding ▪ Radio hardware mounting ▪ Cable installation including egress Also, before installing the system, a back-to-back test of the radio pair is recommended. Back-to-back testing is a simple way to verify that the radios are fully operational before they are installed. The process of installation adds several variables that can lead to system turn-up delays during troubleshooting (such as antenna alignment, cabling, and path dynamics). By pre-testing the radios, you reduce the chance of the radios being the cause of system turn-up problems, and you can focus on other factors, such as transmission line, antenna alignment, and path clearance. See “Test Radios Back-to-Back” on page 11. SITE SELECTION The radio site must have: ▪ Access to appropriate power and a proper earth ground for grounding all equipment ▪ Appropriate shelter/environment for mounting of indoor equipment ▪ Line-of-sight to the other radio location with adequate path clearance ▪ An appropriate structure for mounting the antenna ▪ Access to the telecommunications system you want to interconnect Line-of-Sight and Path Clearance Guidelines This product operates on frequencies that require clear RF line-of-sight because they are attenuated by trees and other obstructions. Factors to consider include allowance for earth curvature, tree growth, man-made obstructions, atmospheric refractivity, atmospheric ducting, and the path reflection point. The proposed path design must provide clearance for 60% of the first Fresnel zone, and nothing more, in order to minimize the possibility of a creating a multi-path reflection outage problem. Appendix A. Installation Planning 46 Lynx.GX Installation and Management Clearing less than 60% of the 1 st Fresnel zone will result in excess signal loss due to diffraction, in addition to the calculated free-space loss. Excessive antenna height resulting in clearance of the 2 nd and higher order Fresnel zones sets up the likelihood of multi-path reflection outages. The higher the number of the “cleared” Fresnel zones, the more likely that a system multi-path reflection outage will occur when atmospheric refractivity changes. AVAILABILITY Availability of the microwave path is a prediction of the percent of time that the link operates without producing an excessive bit error rate (BER) due to atmospheric fading only. The calculated availability number does not include outages caused by multipath reflections off of the terrain surface. With proper path clearance, and in the absence of direct interference, availability is affected by the following: ▪ Path length ▪ Fade margin ▪ Frequency ▪ Terrain (smooth, average, mountainous) ▪ Climate (dry, temperate, humid) Depending upon the type of information carried over the link and the overall network design redundancy, you may want to design for a specific availability rate. For example, if the data or voice traffic carried by the radio is critical, the link can be designed for a very high availability rate (such as 99.999% or 5.3 minutes of predicted outage per year). You can increase the fade margin to improve availability either by making the path shorter or by using higher gain antennas in conjunction with lower loss transmission line (using a higher quality transmission line, shortening the length, or both). Mounting the RFU near the antenna (thereby shortening the transmission line) is one means to assist in increasing fade margin. FADE MARGIN The fade margin is the difference between the actual received signal and the radio's threshold. Using the formula provided in the previous section, you can calculate the anticipated RSL. Compare this RSL to the specified threshold of the radio, and calculate the fade margin as the difference between the two signal levels. Proxim Corporation recommends that you design your link to your desired availability standard, as discussed in “Calculating Availability” above. However, independent of the availability standard, the following guidelines are recommended for minimum fade: ▪ Greater than or equal to 15 dB for all paths, whenever possible, and always for path lengths greater than two miles (3.2 kilometers). ▪ No less than 10 dB for any path length (this is not recommended, but can provide adequate performance if the path length is very short—such as less than two miles (3.2 kilometers) over non-reflective terrain and in non-refractive atmospheric conditions). Appendix A. Installation Planning 47 Lynx.GX Installation and Management USEFUL PATH CALCULATIONS First Fresnel Distance Formula (USA) The formula for calculating the first Fresnel distance is: where: F = first Fresnel Zone radius (feet) D = path length (miles) f = frequency (GHz) d 1 = distance from first antenna (miles) d2 = distance from second antenna (miles) First Fresnel Distance Formula (international) The formula for calculating the first Fresnel distance is: where: F = first Fresnel Zone radius (meters) D = path length (kilometers) f = frequency (GHz) d 1 = distance from first antenna (kilometers) d2 = distance from second antenna (kilometers) Earth Curvature Formula (USA) Clearance for terrain can be determined from accurate topographic maps (the height of trees and/or buildings needs to be considered). Alternatively, the path can be surveyed along the direct route. Clearance for earth curvature can be ca…

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Users Manual

935 Stewart Drive, Sunnyvale, CA, USA94085 Tel (408) 731 2700, Fax (408)731 3675 STATEMENT THAT HZB-S58-GX1 MUST BE PROFESSIONALLY INSTALLED AND SO IS EXEMPT FROM THE ANTENNA RESTRICTIONS OF FCC PART 15.203, INCLUDING INFORMATION ON ANTENNAS USED FOR TESTING This letter is submitted with regards to professional installation of the HZB-S58-GX1 radios and the antennas used for testing. The HZB-S58-GX1 radios must be professionally installed and so is exempt from the antenna restrictions of FCC Part 15.203. The HZB-S58-GX1 is a group of products manufactured by Proxim Corporation in Sunnyvale, California. The HZB-S58-GX1 is to be certified for operation under Part 15.247 and 15.407 of the FCC Rules in the 5.25-5.35 GHz, 5.725-5.825 GHz and 5.725-5.850 GHz bands. The equipment is designed for point-to-point communications and will carry data signals using T1/E1/DS3 or Ethernet interfaces. Due to the unique requirements of installation and integration of these systems, typical consumers or businesses will not have the proper training required for successful implementation of these systems. The HZB-S58-GX1 is not designed for use by the general public, and will be sold as follows: • Through the Proxim sales force to professional communications users • Through designated and professionally trained Proxim Value Added Resellers to business users under individual reseller agreements. These companies will either use their professional telecommunications engineering staff to carry out the installation or will subcontract to professional installation firms. On occasion, a professional installation firm will purchase the HZB-S58-GX1 radios directly. The HZB-S58-G1X radio will be used for fixed, permanent or temporary, outdoor links requiring the use of directional antennas at 5 GHz band, which tend to be mounted on towers. These antennas will have narrow beam-widths and require professional installers to align them. In addition, the HZB-S58-GX1 radio must be set up for the specific line interface required during installation. This procedure must be carried out by a qualified professional installer for the equipment to operate properly. The output power of the HZB-S58-GX1 radio will be adjusted to meet any applicable EIRP limits by the professional installer during installation. The method of adjusting the output power is described in the manual written for use by professional trained installers. The HZB-S58-GX1 radio is a full-duplex device with a common transmit/receive port. The addition of an external amplifier to boost the transmit power would disable the receive signal, thus rendering the HZB-S58-GX1 radio inoperable. In addition, high power amplifiers (not generally available at 5.2-5.8 GHz) cannot be used without ensuring that signal saturation does not occur (because this would produce unrecoverable deterioration of the receive signal). Thus, a non-professional installer could not accomplish the addition of an amplifier. The HZB-S58-GX1 radio is typically sold without an antenna, and the customer and/or installation engineer chooses from commercially available antennas. From time to time, Proxim may sell a commercially available antenna along with the HZB-S58-GX1 radio upon customer request. Proxim has also included detailed instructions on how to determine the maximum output power based on EIRP limits for all professional installers to follow. Caroline Yu Regulatory Compliance Manager Proxim Corporation

Users Manual

Lynx.GX Installation and Management PLANNING FOR ANTENNA AND RF TRANSMISSION LINE INSTALLATION In general, the larger the antenna used with the radio, the better the link performs. Larger antennas have narrower beamwidth and higher gain, which yield better link performance (higher fade margin, better availability) and improve immunity to interference (due to the narrower beamwidths). This is especially important for multi-link installations (hub sites) and for locations with potential interference sources nearby. However, larger antennas are more costly to purchase and install than smaller antennas and, in some cases, require special installation equipment and more robust mounting structures (due to increased weight and wind loading). You should consider all of these factors when selecting an antenna. Prior to installation, determine the specific antenna location and mounting. The transmission line should be kept as short as possible, so when line-of-sight placement of antennas allow flexibility, it is always desirable for the equipment to be located closer to the antenna. This advanced planning, combined with the decision about where the RFU is to be mounted, yields the transmission line requirements. Note: In areas where transmitted output power restrictions apply, the use of larger antennas benefits narrow beamwidths and receive gain. However, you could be required to reduce output power to meet regulations. Only directional antennas should be used with these radios; typically flat-panel or solid- parabolic antennas. As a general guideline, Proxim Corporation recommends a maximum 3 dB beamwidth of 10 degrees for directional systems. The following tables list various transmission lines, and then antenna types, performance, and manufacturers. Within the USA and Canada, antennas other than those illustrated in these tables can be used with this radio, but must be of the same type (flat panel or solid parabolic), dimensions, and gain as those listed in the table. Antennas with gain less than 23.5 dBi are not approved for use within the USA or Canada. Consult governmental regulations or Proxim Corporation for applications outside of the USA or Canada. For further information regarding antenna installation and adjustment, see “Installing and Adjusting the Antenna” on page 18. RF Transmission Line (Antenna to RFU) Type Manufacturer Model Loss* Notes ½-inch foam coaxial Andrew LDF 4-50 6.1 dB Add –0.25 dB per connector 5 / 8 -inch foam coaxial Andrew LDF 4.5-50 4.7 dB Add –0.25 dB per connector Waveguide Andrew EW-52 1.2 dB Does not include transitions ½-inch foam coaxial Times Microwave LMR-600 7.3 dB Add –0.25 dB per connector 5 / 8 -inch foam coaxial Times Microwave LMR-900 4.9 dB Add –0.25 dB per connector * per 100 ft. @ 5.8 GHz RF Frequency Note: Due to potential moding problems, the use of 7/8-inch coaxial cable is NOT recommended for use with these radios above 5 GHz. Appendix A. Installation Planning 54 Lynx.GX Installation and Management Antenna Manufacturer Information Antenna Type Manufacturer Model Number Mid-Band Gain (dBi) 1-foot flat panel Tripoint Global Andrew RFS DFPD1-52 FPA5250D12-N MA0528-23AN 23.5 23.6 23.0 2-foot flat panel Tripoint Global Andrew RFS DFPD2-52 FPA5250D24-N MA0528-28AN 28.0 28.2 28.0 2-foot parabolic Tripoint Global Tripoint Global Radio Waves Andrew RFS QF2-52 HQF2-52 SP2-5.2 P2F-52 SPF2-52A 28.5 28.1 28.3 29.4 27.9 3-foot parabolic Radio Waves Andrew RFS SP3-5.2 P3F-52 SPF3-52A 31.4 33.4 31,4 4-foot parabolic Tripoint Global Tripoint Global Andrew Radio Waves RFS RFS QF4-52 HQF4-52 P4F-52 SP4-52 SPF4-52A SDF4-52A 34.2 33.9 34.9 34.6 33.9 33.9 6-foot parabolic Tripoint Global Tripoint Global Radio Waves Andrew RFS RFS QF6-52 HQF6-5 SP6-5.2 P6F-52 SPF6-52A SDF6-52A 37.5 37.2 37.7 37.6 37.4 37.4 8-foot parabolic Tripoint Global Tripoint Global SSP8-52A HSSP8-52 39.8 39.6 The formula for determining maximum output power setting for 5.725-5.850 GHz Radio Transmitters (@EIRP=54.5 dBm) is: Max Tx (dBm) is the lesser of 24.5 dBm and 54.5 - G + FL where: G = Antenna Gain Tx = the output power measured at the antenna input FL = feeder loss including loss of connectors Note: EIRP shall never exceed 54.5 dBm. This is for the compliance to the CFR 47 Part 1.1310 for RF exposure. Appendix A. Installation Planning 55

Users Manual

935 Stewart Drive, Sunnyvale, CA, USA94085 Tel (408) 731 2700, Fax (408)731 3675 STATEMENT THAT HZB-S58-GX1 MUST BE PROFESSIONALLY INSTALLED AND SO IS EXEMPT FROM THE ANTENNA RESTRICTIONS OF FCC PART 15.203, INCLUDING INFORMATION ON ANTENNAS USED FOR TESTING This letter is submitted with regards to professional installation of the HZB-S58-GX1 radios and the antennas used for testing. The HZB-S58-GX1 radios must be professionally installed and so is exempt from the antenna restrictions of FCC Part 15.203. The HZB-S58-GX1 is a group of products manufactured by Proxim Corporation in Sunnyvale, California. The HZB-S58-GX1 is to be certified for operation under Part 15.247 and 15.407 of the FCC Rules in the 5.25-5.35 GHz, 5.725-5.825 GHz and 5.725-5.850 GHz bands. The equipment is designed for point-to-point communications and will carry data signals using T1/E1/DS3 or Ethernet interfaces. Due to the unique requirements of installation and integration of these systems, typical consumers or businesses will not have the proper training required for successful implementation of these systems. The HZB-S58-GX1 is not designed for use by the general public, and will be sold as follows: • Through the Proxim sales force to professional communications users • Through designated and professionally trained Proxim Value Added Resellers to business users under individual reseller agreements. These companies will either use their professional telecommunications engineering staff to carry out the installation or will subcontract to professional installation firms. On occasion, a professional installation firm will purchase the HZB-S58-GX1 radios directly. The HZB-S58-G1X radio will be used for fixed, permanent or temporary, outdoor links requiring the use of directional antennas at 5 GHz band, which tend to be mounted on towers. These antennas will have narrow beam-widths and require professional installers to align them. In addition, the HZB-S58-GX1 radio must be set up for the specific line interface required during installation. This procedure must be carried out by a qualified professional installer for the equipment to operate properly. The output power of the HZB-S58-GX1 radio will be adjusted to meet any applicable EIRP limits by the professional installer during installation. The method of adjusting the output power is described in the manual written for use by professional trained installers. The HZB-S58-GX1 radio is a full-duplex device with a common transmit/receive port. The addition of an external amplifier to boost the transmit power would disable the receive signal, thus rendering the HZB-S58-GX1 radio inoperable. In addition, high power amplifiers (not generally available at 5.2-5.8 GHz) cannot be used without ensuring that signal saturation does not occur (because this would produce unrecoverable deterioration of the receive signal). Thus, a non-professional installer could not accomplish the addition of an amplifier. The HZB-S58-GX1 radio is typically sold without an antenna, and the customer and/or installation engineer chooses from commercially available antennas. From time to time, Proxim may sell a commercially available antenna along with the HZB-S58-GX1 radio upon customer request. Only those antenna(s) listed in the filing are to be used with the device. Proxim has also included detailed instructions on how to determine the maximum output power based on EIRP limits for all professional installers to follow. Caroline Yu Regulatory Compliance Manager Proxim Corporation Typical Antennas to be used with HZB-S58-S60C Antenna Typ e Manufacturer Model Numbe r Mid-band Gain (dBi) Notes Omni Telex 5830AN 7.5 Vertical MTI MT-482009/N 9 MTI MT-483003/N 12 1 Foot Flat Panel Gabriel DFPD1-52 23.5 RFS MA0528-23AN 23 Andrew FPA5250D12-N 23.6 2 Foot Flat Panel Gabriel DFPD2-52 28 RFS MA0528-28AN 28 Andrew FPA5250D24-N 28.5 MTI MT-20004 28 RSI A57A24-U 26.5 2 Foot Parabolic Gabriel SSP2-52B 28.5 Gabriel SSD2-52A 28.4 Dual Pol Gabriel HSSP2-52 28.1 High Performance YDI A5.8-2'-RW 28.3 Radio Waves SP2-5.2 28.3 Linear or Circular Radio Waves SPD2-5.2 28.1 Dual Pol Andrew P2F-52 29.4 Andrew PX2F-52 29.4 Dual Pol RFS SPF2-52A 27.9 RSI P-57C24 29 3 Foot Parabolic Radio Waves SP3-5.8 31.4 Linear or Circular Radio Waves SPD3-5.8 31.1 Dual Pol Radio Waves SP3-5.2 31.4 Linear or Circular Radio Waves SPD3-5.2 31.1 Dual Pol RFS SPF3-52A 31.4 YDI A5.8-3'-RW 31.4 Andrew P3F-52 33.4 Andrew PX3F-52 33.4 Dual Pol 4 Foot Parabolic Gabriel SSP4-52A 34.2 Gabriel SSD4-52 34.1 Gabriel HSSP4-52 33.9 Radio Waves SP4-5.2 34.6 Radio Waves SPD4-5.2 34.4 RSI P-57B48 34.7 6 Foot Parabolic Gabriel SSP6-52A 37.5 Gabriel SSD6-52 37.4 Gabriel HSSP6-52 37.2 Radio Waves SP6-5.2 37.7 Radio Waves SPD6-5.2 37.5 RSI P-57A72 38.2 8 Foot Parabolic Gabriel SSP8-52 39.8 Gabriel SSD8-52 39.7 Gabriel HSSP8-52 39.6 Gabriel DRFB8-55ASE 40.7 RSI P-57A96 40.8 All Proxim radios require professional installation.Antennas with gain less than 7.5 dBi are not allowedAntennas of other make may be used with the HZB-S58-S60 device, but must be of the same type, dimensions and gain as those list ed

Cover Letter(s)

January 14, 2004 Federal Communications Commission Authorization and Evaluation Division Laboratory Division 7435 Oakland Mills Road Columbia, MD 21046 Re: Request for withholding from public disclosure proprietary information FCC ID: HZB -S58-GX1 Dear Sir or Madam: Proxim Corporation requests that certain materials submitted with this application for certification of the HZB-S58-S60 radio be withheld from public disclosure. This request is made under the provision of Section 0.457 (d) of the Commission’s Rule and Section 552 (b) (4) of the Freedom of Information Act, Trade Secrets. The items marked “Confidential” contain detailed block diagrams, schematic diagrams, antenna design specifications, a parts list and a detailed theory of operation submitted to the FCC for review with this application. The information contains proprietary information (trade secrets) regarding the circuit operation and capabilities (specific values of components, circuit design details and system architecture), which are the result of our extensive investment in research and development. Without the disclosed information, competitive organizations would take considerable more time to assess and develop a workable competitive product. As a result, we believe that disclosure of these company guarded materials would compromise our leading position in this market. We therefore formally request that the materials marked “Confidential” be kept strictly confidential and not made available for inspection by any other party, except on a need to know basis for the sole purpose of the certification process. Caroline Yu Regulatory Compliance Manager Proxim Corporation 1196 Borregas Ave., Sunnyvale, CA 94089-1302, USA Tel: +1 (408) 542-5200, Fax: +1 (408) 542-5300

Cover Letter(s)

Norman Shpilsher ES-Min From: David Chernomordik ES-Mpk Sent: Tuesday, April 20, 2004 5:02 PM To: Norman Shpilsher ES-Min Subject: FW: FCC question regarding G4 4/21/2004 Hi Norman, I think, she is right, the antenna installation guide is not what Tim is asking for. The info on the revised installation letter (actually it is the same as on pages 54-55 of the manual) may satisfy him. Let's try. Submit the letter, and we will see. Do not forget to submit a correspondence. David -----Original Message----- From: Caroline Yu [mailto:[email protected]] Sent: Tuesday, April 20, 2004 12:56 PM To: David Chernomordik ES-Mpk Subject: FCC question regarding G4 David: As discussed over the phone, I believe the attestation letter is what the reviewer is looking for a change. He referred to a previous application. At the time, I had to modify the letter to add the specific wording. I forgot to copy it to the letter this time. Even though I said the same thing in other words, I guess FCC is looking for the same wording. We do not have separate manuals for the G4 installation only. The manual I submitted includes everything, including antenna installation. It's on page 54 and 55, which I extracted and copied in here. Please review. Still I believe the change being looked for is with the letter. Thanks Caroline Yu Regulatory Compliance Manager Proxim Corporation 935 Stewart Drive Sunnyvale, CA 94085 USA Phone: +1 (408) 542-5323 Fax: +1 (408) 548-3889 www.proxim.com

External Photos

FCC ID: HZB-S58-GX1 FCC ID: HZB-S58-GX1 FCC ID: HZB-S58-GX1 FCC ID: HZB-S58-GX1 FCC ID: HZB-S58-GX1

ID Label/Location Info

The device complies with Part 15 of the FCC Rules and IC: RSS-210. Operation is subject to the following conditions: (1) This device may not cause harmful interference. (2) This device must accept any interfence received, including interference that may cause undesired operation. (3) This device must be professionally installed. Electrical Ratings: + 28 Vdc/0.6 A 1856A-U5358GX1HZB-S58-GX1 MADE IN XXX XXXX MAC ID: 123456789X12 Model No. XXXXX-CANADAFCC ID CPN XXXXXISS XX Serial No. XXXXXXXX The device complies with Part 15 of the FCC Rules and IC: RSS-210. Operation is subject to the following conditions: (1) This device may not cause harmful interference. (2) This device must accept any interfence received, including interference that may cause undesired operation. Electrical Ratings: + 28 Vdc/0.6 A 1856A-S58S60HZB-S58-S60 MADE IN XXX XXXX MAC ID: 123456789X12 Model No. 40100-CANADAFCC ID CPN XXXXXISS XX Serial No. XXXXXXXX FCC ID: HZB-S58-GX1

Internal Photos

FCC ID: HZB-S58-GX1 FCC ID: HZB-S58-GX1 FCC ID: HZB-S58-GX1 FCC ID: HZB-S58-GX1 FCC ID: HZB-S58-GX1 FCC ID: HZB-S58-GX1

Parts List/Tune Up Info

Typical Antennas to be used with HZB-S58-S60C Antenna TypeManufacturerModel NumberMid-band Gain (dBi)Notes OmniTelex5830AN7.5Vertical MTIMT-482009/N9 MTIMT-483003/N12 1 Foot Flat PanelGabrielDFPD1-5223.5 RFSMA0528-23AN23 AndrewFPA5250D12-N23.6 2 Foot Flat PanelGabrielDFPD2-5228 RFSMA0528-28AN28 AndrewFPA5250D24-N28.5 MTIMT-2000428 RSIA57A24-U26.5 2 Foot ParabolicGabrielSSP2-52B28.5 GabrielSSD2-52A28.4Dual Pol GabrielHSSP2-5228.1High Performance YDIA5.8-2'-RW28.3 Radio WavesSP2-5.228.3Linear or Circular Radio WavesSPD2-5.228.1Dual Pol AndrewP2F-5229.4 AndrewPX2F-5229.4Dual Pol RFSSPF2-52A27.9 RSIP-57C2429 3 Foot ParabolicRadio WavesSP3-5.831.4Linear or Circular Radio WavesSPD3-5.831.1Dual…

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Contact Information

Applicant

Ken Lim(Accounting Manager)
[email protected]408 383 7600Fax: 408 383 7680

Technical Contact

Intertek Testing ServicesDavid Chernomordik
[email protected]650-463-2900

1365 Adams Court · Menlo Park, California · United States

Non-Technical Contact

Intertek Testing ServicesDavid Chernomordik
[email protected]650-463-2900

Test Firm

Intertek Testing Services NA Inc.John Quigley
[email protected]949-448-4100Fax: 650-463-2910

Technical Specifications

#Rule PartsFrequency RangePower Output
115C5.73 GHz - 5.85 GHz960.00 mW
Confidentiality
Long Term
Grant Notes
Output is conducted. This device with antenna(s) must be professionally installed, and may only be used in point-to-point applications. The antenna(s) used for this transmitter must be fixed-mounted on outdoor permanent structures with a separation distance of at least 2 meters from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter. Users and installers must be provided with antenna installation and transmitter operating conditions for satisfying RF exposure compliance.

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Equipment Class

NII - Unlicensed National Information Infrastructure TX
NGP LC 2.4 & 5 GHz Radios - FCC ID HZB-NGPAP - Proxim Wireless Corporation
HZB-NGPAP

NGP LC 2.4 & 5 GHz Radios

Apr 26, 2021

Equipment Class

NII - Unlicensed National Information Infrastructure TX
NGP LC 5 GHz Radio - FCC ID HZB-NGPLC - Proxim Wireless Corporation
HZB-NGPLC

NGP LC 5 GHz Radio

Mar 04, 2021

Equipment Class

DTS - Digital Transmission System
802.11 ac PCIe Module - FCC ID HZB-NGP1058W - Proxim Wireless Corporation
HZB-NGP1058W

802.11 ac PCIe Module

Nov 03, 2015

Equipment Class

DTS - Digital Transmission System