
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
- 1 -Model 5030 Access Port Quick Reference Guide DRAFT V3 Symbol IEEE 802.11A/B Access Port (Model WSAP-5030-100-WW) Hardware Quick Reference Guide Draft March 2003 - 2 -Model 5030 Access Port Quick Reference Guide DRAFT V3 To The Installer ................................................................................................................................ 4 Purpose ....................................................................................................................................... 4 Document Conventions................................................................................................................ 4 Warnings:..................................................................................................................................... 4 Introduction ...................................................................................................................................... 5 Technical Specifications .............................................................................................................. 5 Radio Characteristics................................................................................................................... 6 Overview .......................................................................................................................................... 7 LED Indicators ............................................................................................................................. 7 Mounting hardware included:....................................................................................................... 7 Surface Mounting ........................................................................................................................... 11 Wall Mounting ............................................................................................................................ 11 Attaching the Access Port to the Mounting Bracket .............................................................. 11 Plaster Wall Board Ceiling Mount .............................................................................................. 12 Attaching the Access Port to the Mounting Bracket .............................................................. 12 Above Suspended Ceiling Tile (Plenum) Mount ........................................................................ 13 Attaching the Access Port to the Mounting Bracket .............................................................. 13 Below Suspended Ceiling (T-Bar) Mount................................................................................... 14 Attaching the Access Port to the Suspended Ceiling Mounting Bracket ............................... 14 Available Options ........................................................................................................................... 16 Customer Support .......................................................................................................................... 17 North American Contacts........................................................................................................... 17 International Contacts ................................................................................................................ 17 Symbol Developer Program Web Site ....................................................................................... 17 Legal Information ........................................................................................................................... 19 Regulatory Information............................................................................................................... 19 Applying the Regulatory Country Stamp.................................................................................... 19 - 3 -Model 5030 Access Port Quick Reference Guide DRAFT V3 If the appropriate stamp(s)is not provided, please contact your supplier..... 19 To apply the country stamp:.................................................................................................. 19 FCC RF Exposure Guidelines ....................................................................................... 20 Safety Information ..................................................................................................................... 20 Remote and Standalone Antenna Configurations. .................................................................... 20 Power Supply ............................................................................................................................ 20 Radio Frequency Interference Requirements ................................................................................ 21 Radio Frequency Interference Requirements – Canada ............................................................... 22 Statement of Compliance .......................................................................................................... 22 Other Countries ......................................................................................................................... 23 Copyright........................................................................................................................................ 24 Patents ...................................................................................................................................... 24 - 4 -Model 5030 Access Port Quick Reference Guide DRAFT V3 To the Installer This guide is intended for the technician responsible for installing Symbol Technologies IEEE 802.11a Access Port. It is assumed that the technician is familiar with Ethernet LAN-based networking, terms and concepts. The installing technician should also have a working knowledge of mechanical assembly as well as an understanding of local building codes. Purpose The purpose of this document is to provide specifications, features and guidelines for the installer to…
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Regulatory compliance Symbol Technologies, Inc. Page 1 of 1 Hydra FCC RF Exposure Sept 03 Hydra (WSAP-5030) and FCC RF Exposure FCC ID: H9PWSAP5030. The User Guide for the WSAP5030 will be amended as follows: Delete: “It is advisable to use the device only in the normal operating position and it is recomended that no part of the human body be allowed to come too close to the antenna during operation of the equipment”. Add: “It is advisable to use the device only in the normal operating position”. Maintain: “To comply with FCC RF exposure requirements, antennas that are mounted externally at remote locations or operating near users at stand-alone desktop of similar configurations must operate with a minimum separation distance of 20 cm from all persons” I trust the information I have provided will enable an FCC Grant to be obtained. Signed for Symbol Technologies Inc. Alan Parrish Director, Regulatory
Introduction The AP 200 Access Port provides 802.11a/b coverage to wireless network devices. The AP 200 allows the use of internal or external antenna options. Three base models of the AP 200 are available. Accessory options are available for each con- figuration (when applicable) and include: 802.11a Internal Antenna 802.11b Internal Antenna with Radio 802.11b External Antenna with Radio Technical Specifications Specifications only apply to the AP 200 Access Port assembly. Operating Voltage48VDC (typical); 36VDC to 57VDC (range) Operating Current 10mA to 150mA Peak Current250mA Operating Temperature-20°C to 50°C (-4°F to 122°F) Operating Humidity5% to 85% non-condensing Storage Temperature-40°C to 70°C (-40°F to 158°F) Storage Humidity85% Altitude2438m (8,000ft.) (operating max) 4572m (15,000ft.) (storage max) Drop: No antenna modules)91cm (36in.) to concrete With antenna modules76cm (30in.) to concrete Electrostatic Discharge+/-15KV (air discharge); +/-8KV (contact discharge); +/-2KV (pin discharge) Radio Characteristics The AP 200 is an IEEE 802.11a/b compliant device when configured with the appropriate radio option. As an IEEE 802.11a device it supports 6, 9, 12, 18, 24, 36, 48 and 54Mbps data rates, utilizing transmit-only diversity, in the 5.15GHz to 5.825GHz range. As an IEEE 802.11b device it supports 1.0, 2.0, 5.5 and 11.0Mbps data rates, utilizing transmit and receive diversity, in the 2.4GHz to 2.5GHz ISM radio band. Installation of Optional Accessory Hardware The available radio/antenna options vary depending on the AP 200 configuration purchased. Note:A tamper resistant #10 Torx driver is required to remove and install antenna modules (internal/external). This tool is not included with the AP 200 or antenna/radio options, but, is available in the open market. Caution!This equipment contains components that can be damaged by electrostatic discharge. When handling radio/antenna options use proper electrostatic safety handling procedures. Ensure all power and data cables are removed before installing any radio options. 802.11a Internal Antenna Option Note:Removing and installing antenna option with the AP 200 upside down (ribbed side up) is recommended. 1. Ensure the AP 200 is on a level work area such as a table and not mounted to any surface. 2. Remove the internal antenna and tamper resistant screws from the shipping container and remove any packaging material. 3. The Internal 802.11a antenna contains two coaxial cables with reverse SMA connectors that connect to the external antenna connectors on the main unit. The internal antenna housing has a pin, that mates to a micro switch, on the main housing, near the external antenna connectors. Properly seating the internal antenna so the pin makes good contact is necessary, so the AP 200 can sense that an internal Antenna is in use. 4. Ensure the coaxial cables cross over each other before connecting to the external connec- tors. This allows the internal antenna cables to tuck neatly inside the antenna housing when secured to the AP 200. 5. Connect the internal antenna to the 802.11a AP 200 using the two coaxial reverse SMA connector plugs. Note: Ensure the 802.11a antenna cables are crossed over each other before connecting to the AP 200 external antenna connectors and securing the antenna housing to the AP 200. 6. Holding the internal antenna unit level to the AP 200 carefully mount the antenna onto the AP 200 (ensure the antenna cables stay tucked into the housing) until it is flush with the main housing. 7. Using the torx tool and screws (2) secure the antenna to the AP 200. 8. Verify the unit has power by observing the Amber LED. 802.11b External Antenna Radio Option Caution!This equipment contains components that can be damaged by electrostatic discharge. When handling radio/antenna options use proper electrostatic safety handling procedures. Ensure all power and data cables are removed before installing any radio options. Note:Removing and installing antenna option with the AP 200 upside down (ribbed side up) is recommended. 1. Ensure the AP 200 is not mounted to any surface and is on a level work area such as a table. 2. Remove the 802.11b external antenna radio option and tamper resistant screws from the shipping container and remove any packaging material. 3. Using the torx tool remove the access panel (if the internal antenna option is installed, remove it) covering the 802.11b side of the AP 200. Discard the access panel. 4. Carefully hold and align the 802.11b external antenna radio option slide rails with the AP 200 card slot (if the AP 200 is upside down, place the antenna/radio PCI card face down as it is aligned and inserted). 5. Insert into the AP 200 until it is flush with the main housing. 6. Using the Torx tool and screws, secure the external antenna radio option to the AP 200. 7. Verify the unit has power by observing the Amber LED. Note:Refer to the WS 5000 Wireless Switch Online System Reference guide included with the switch hardware for configuration of the AP 200. 802.11b Internal Antenna Radio Option Caution!This equipment contains components that can be damaged by electrostatic discharge. When handling radio/antenna options use proper electrostatic safety handling procedures. Ensure all power and data cables are removed before installing any radio options. Note:Removing and installing antenna option with the AP 200 upside down (ribbed side up) is recommended. 1. Ensure the AP 200 is not mounted to any surface and is on a level work area such as a table. 2. Remove the 802.11b internal antenna radio option and tamper resistant screws from the shipping container and remove any packaging material. 3. Using the torx tool to remove the access panel (if the external antenna/radio option is installed, remove it) covering the 802.11b side of the AP 200. 4. Carefully hold and align the 802.11b internal antenna/radio option slide rails with the AP 200 card slot (if the AP 200 is upside down, place the antenna/r…
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SYMBOL TECHNOLOGIES. Symbol Place, Winnersh Triangle, Berkshire, England RG41 5TP Telephone: +44 (0) 118 945 7000 Fax: +44 (0) 118 945 7500 Web site: www.symbol.com Registered Office: Symbol Place, Winnersh Triangle, Berkshire RG41 5TP Registration No. 1096253 - England MB/Confidentiality/WSM-5030/01 25 th November 2003 BABT 34 Molesey Road Walton on Thames Surrey KT12 4RQ Request of Confidentiality: Symbol Technologies Inc. Products: WSM-5030 Pursuant to Sections 0.457(d)(1)(ii) and 0.459 of the Commission’s Rules, Symbol Technologies Inc. hereby requests confidential treatment of information accompanying as outlined below: - Schematics - Block Diagrams - Technical Description - Bill of Materials - Theory of Operation The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these matters might be harmful to the Applicant and provide unjustified benefits to its competitors. The Applicant understands that pursuant to Rule 0.457(d)(1)(ii), disclosure of this Application and all accompanying documentation will not be made before the date of the Grant for this Application. Sincerely, Marco Belli Symbol Regulatory Compliance Direct Tel: +44 118 945 7313 Direct Fax: +44 118 945 7274 Email: [email protected] EMEA Division
Exhibit 3 Please see TUVPS report nos. OR 610776-02 See Also OR 610776-06 for the antenna location and photo
Regulatory compliance Symbol Technologies, Inc. Page 1 of 1 Hydra FCC Statements Sept 03 Hydra (WSAP-5030 & WSM-5030) and FCC statements Reference FCC Rule 15.19 (a) (5) FCC ID: H9PWSAP5030. The WSAP-5030 is a Wireless LAN (Local Area Network) offering dual mode IEEE 802.11b and IEEE 802.11a Technologies operating at 2.4 and 5GHZ frequency bands. Given the complexity of this product and requirement to operate continuously at relatively high temperatures, the face available for Regulatory Markings and Manufacturing Information is severely restricted, as we required a maximum amount of surface area for heat sinking. With regard the required FCC statements, given the situation described above, we have placed the required statements into the product User Guide. The product will exhibit the FCC Logo and the FCC ID: H9PWSAP5030. FCC ID: H9PWSM5030. The WSM-5030 is a Module for use with the WSAP-5030 delivering the IEEE 802.11b Technology part operating at 2.4GHz. Given size of this plug in module the space available for Regulatory Markings and Manufacturing Information is severely restricted. With regard the required FCC statements, given the situation described above, we have placed the required statements into the product User Guide. The product will exhibit the FCC Logo and the FCC ID: H9PWSM5030. I trust the information I have provided will enable an FCC Grant to be obtained. Signed for Symbol Technologies Inc. Alan Parrish Director, Regulatory
FCC ID: H9PWSM5030 Label location photos H9PWSAP5030 host and HPWSM5030 module installed H9PWSAP5030 host and HPWSM5030 module unistalled HPWSM5030 module labels when un-installed
FCC ID: H9PWSM5030 Label location photos HPWSM5030 module FCC ID label when installed H9PWSAP5030 host label
Exhibit 9 Please see TUVPS report nos. OR610776-02
BABT Product Service Ltd, Segensworth Road, Titchfield Fareham, Hampshire, United Kingdom, PO15 5RH Tel: +44(0) 1329 443459, Fax: +44(0) 1329 443331 www.tuvps.co.uk BABT Product Service Reference Number OR610776 Page 1 of 7 FCC ID: H9PWSM5030 WSM5030 2.4GHz Integral Antenna Outside Case Front BABT Product Service Ltd, Segensworth Road, Titchfield Fareham, Hampshire, United Kingdom, PO15 5RH Tel: +44(0) 1329 443459, Fax: +44(0) 1329 443331 www.tuvps.co.uk BABT Product Service Reference Number OR610776 Page 2 of 7 FCC ID: H9PWSM5030 WSM5030 2.4GHz Integral Antenna Outside Case Rear BABT Product Service Ltd, Segensworth Road, Titchfield Fareham, Hampshire, United Kingdom, PO15 5RH Tel: +44(0) 1329 443459, Fax: +44(0) 1329 443331 www.tuvps.co.uk BABT Product Service Reference Number OR610776 Page 3 of 7 FCC ID: H9PWSM5030 WSM5030 2.4GHz Integral Antenna Outside Case Rear Showing Connection to WSAP5030 BABT Product Service Ltd, Segensworth Road, Titchfield Fareham, Hampshire, United Kingdom, PO15 5RH Tel: +44(0) 1329 443459, Fax: +44(0) 1329 443331 www.tuvps.co.uk BABT Product Service Reference Number OR610776 Page 4 of 7 FCC ID: H9PWSM5030 WSM5030 2.4GHz Integral Antenna Outside Case Front Showing Connection to WSAP5030 BABT Product Service Ltd, Segensworth Road, Titchfield Fareham, Hampshire, United Kingdom, PO15 5RH Tel: +44(0) 1329 443459, Fax: +44(0) 1329 443331 www.tuvps.co.uk BABT Product Service Reference Number OR610776 Page 5 of 7 FCC ID: H9PWSM5030 Internal of Integral Antenna BABT Product Service Ltd, Segensworth Road, Titchfield Fareham, Hampshire, United Kingdom, PO15 5RH Tel: +44(0) 1329 443459, Fax: +44(0) 1329 443331 www.tuvps.co.uk BABT Product Service Reference Number OR610776 Page 6 of 7 FCC ID: H9PWSM5030 Internal of Integral Antenna BABT Product Service Ltd, Segensworth Road, Titchfield Fareham, Hampshire, United Kingdom, PO15 5RH Tel: +44(0) 1329 443459, Fax: +44(0) 1329 443331 www.tuvps.co.uk BABT Product Service Reference Number OR610776 Page 7 of 7 FCC ID: H9PWSM5030 Internal of Integral Antenna
BABT, Segensworth Road, Titchfield Fareham, Hampshire, United Kingdom, PO15 5RH Tel: +44(0) 1329 443459, Fax: +44(0) 1329 443331 www.tuvps.co.uk BABT Reference Number OR610776 Page 1 of 3 FCC ID: H9PWSM5030 Photo 1; WSAP5030 External Antenna connections Photo 2; WSAP5030 External Antenna connections 2.4GHz module un-iinstalled BABT, Segensworth Road, Titchfield Fareham, Hampshire, United Kingdom, PO15 5RH Tel: +44(0) 1329 443459, Fax: +44(0) 1329 443331 www.tuvps.co.uk BABT Reference Number OR610776 Page 2 of 3 FCC ID: H9PWSM5030 Photo 3; WSM5030 2.4GHz Integral Antenna Outside Case Rear Photo 4; WSM5030 2.4GHz Integral Antenna Outside Case Rear Showing Connection to WSAP5030 BABT, Segensworth Road, Titchfield Fareham, Hampshire, United Kingdom, PO15 5RH Tel: +44(0) 1329 443459, Fax: +44(0) 1329 443331 www.tuvps.co.uk BABT Reference Number OR610776 Page 3 of 3 FCC ID: H9PWSM5030 Photo 5; WSM5030 2.4GHz Integral Antenna Outside Case Front Showing Connection to WSAP5030 Photo 6; Internal of Integral Antenna
BABT. Segensworth Road, Titchfield Fareham, Hampshire, United Kingdom, PO15 5RH Tel: +44(0) 1329 443300, Fax: +44(0) 1329 443331 www.babt.com Page 1 of 2 FCC ID H9PWSAP5030 MPE Calculation For Symbol Hydra Wireless LAN The Symbol Hydra device consists of a 2.4GHz and a 5GHz transmitter. The far field regions below are calculated for both the 2.4GHz and 5GHz frequencies. To establish the worst-case scenario, it is assumed that there is an additive effect of the 2.4GHz and 5GHz powers. Firstly, the worst-case distance to be in the far field is established for both frequencies: 5GHz The wavelength of the equipment is: 3x10 8 = 0.05m 5805 x10 6 Thus, the far field region is defined as being: λ = 0.05 = 0.008m or 8mm 2p 6.283 2.4GHz The wavelength of the equipment is: 3x10 8 = 0.12m 2462 x10 6 Thus, the far field region is defined as being: λ = 0.12 = 0.019m or 19mm 2p 6.283 So, taking both maximum power readings and combining: 50.7mW + 69.18mW = 119.88mW Therefore, the formula below is applicable for distances that are in the far field. Thus, predicting the worst case RF Power Density at 20cm from the antenna would be: S = P x G = 119.88 x 1.58 =0.038mW/cm 2 4pR 2 12.57 x 20 2 where: P = power measured in mW G = antenna gain as numeric gain, (1.58 numeric / 2.0dBi) R = distance in cm BABT. Segensworth Road, Titchfield Fareham, Hampshire, United Kingdom, PO15 5RH Tel: +44(0) 1329 443300, Fax: +44(0) 1329 443331 www.babt.com Page 2 of 2 FCC ID H9PWSAP5030 MPE Calculation For Symbol Hydra Wireless LAN - continued MPE for Occupational/Controlled Exposure at 2462MHz is 5mW/cm 2 MPE for General Population/Uncontrolled Exposure at 2462MHz is 1mW/cm 2 MPE for Occupational/Controlled Exposure at 5280MHz is 5mW/cm 2 MPE for General Population/Uncontrolled Exposure at 5280MHz is 1mW/cm 2 Therefore, the unit under test has a power density, which is less than both the General Population and Occupational exposure limits whilst both transmitters are operating. This is deemed the worst-case configuration for the equipment under test.
BABT. Segensworth Road, Titchfield Fareham, Hampshire, United Kingdom, PO15 5RH Tel: +44(0) 1329 443300, Fax: +44(0) 1329 443331 www.babt.com MPE Calculation For Symbol Hydra Wireless LAN A 2.4GHz Spread Spectrum device has a measured output power of 50.7mW with a worst- case antenna gain of 2.5dBi. The equipment operates in the 2.4GHz ISM band. The equipment is proposed as meeting the OET65 requirements for use at 20cm. The wavelength of the equipment is: 3x10 8 = 0.12m 2462 x10 6 Thus, the far field region is defined as being: λ = 0.12 = 0.019m or 19mm 2π 6.283 Therefore, the formula below is applicable as any distance greater than 19mm is in the far field. Thus, predicting the worst case RF Power Density at 20cm from the antenna would be: S = P x G = 50.7 x 1.78 = 0.018mW/cm 2 4πR 2 12.57 x 20 2 where: P = power measured in mW G = antenna gain as numeric gain, (1.78 numeric / 2.5dBi) R = distance in cm MPE for Occupational/Controlled Exposure at 2462MHz is 5mW/cm 2 MPE for General Population/Uncontrolled Exposure at 2462MHz is 1mW/cm 2 Therefore, the unit under test has a power density, which is less than both the General Population and Occupational exposure limits. This is the case for the equipment under test in all conditions of operation. The table below shows the Power Density result for each channel and antenna configuration. Antenna Gain Frequency (MHz) Measured Conducted Power (mW) dBi Numeric Power Density (mW/cm 2 ) 2412 46.77 2.5 1.78 0.017 2412 46.77 2 1.58 0.015 2437 47.32 2.5 1.78 0.017 2437 47.32 2 1.58 0.015 2462 50.70 2.5 1.78 0.018 2462 50.70 2 1.58 0.016 Page 1 of 1 FCC ID H9PWSM5030
BABT. Segensworth Road, Titchfield Fareham, Hampshire, United Kingdom, PO15 5RH Tel: +44(0) 1329 443300, Fax: +44(0) 1329 443331 www.babt.com Page 1 of 2 FCC ID H9PWSAP5030 MPE Calculation For Symbol Hydra Wireless LAN The Symbol Hydra device consists of a 2.4GHz and a 5GHz transmitter. The far field regions below are calculated for both the 2.4GHz and 5GHz frequencies. To establish the worst-case scenario, it is assumed that there is an additive effect of the 2.4GHz and 5GHz powers. Firstly, the worst-case distance to be in the far field is established for both frequencies: 5GHz The wavelength of the equipment is: 3x10 8 = 0.05m 5805 x10 6 Thus, the far field region is defined as being: λ = 0.05 = 0.008m or 8mm 2p 6.283 2.4GHz The wavelength of the equipment is: 3x10 8 = 0.12m 2462 x10 6 Thus, the far field region is defined as being: λ = 0.12 = 0.019m or 19mm 2p 6.283 So, taking both maximum power readings and combining: 50.7mW + 69.18mW = 119.88mW Therefore, the formula below is applicable for distances that are in the far field. Thus, predicting the worst case RF Power Density at 20cm from the antenna would be: S = P x G = 119.88 x 1.58 =0.038mW/cm 2 4pR 2 12.57 x 20 2 where: P = power measured in mW G = antenna gain as numeric gain, (1.58 numeric / 2.0dBi) R = distance in cm BABT. Segensworth Road, Titchfield Fareham, Hampshire, United Kingdom, PO15 5RH Tel: +44(0) 1329 443300, Fax: +44(0) 1329 443331 www.babt.com Page 2 of 2 FCC ID H9PWSAP5030 MPE Calculation For Symbol Hydra Wireless LAN - continued MPE for Occupational/Controlled Exposure at 2462MHz is 5mW/cm 2 MPE for General Population/Uncontrolled Exposure at 2462MHz is 1mW/cm 2 MPE for Occupational/Controlled Exposure at 5280MHz is 5mW/cm 2 MPE for General Population/Uncontrolled Exposure at 5280MHz is 1mW/cm 2 Therefore, the unit under test has a power density, which is less than both the General Population and Occupational exposure limits whilst both transmitters are operating. This is deemed the worst-case configuration for the equipment under test.
TEST REPORT FCC Part 15C Testing in support of an Application for Grant of Equipment Authorisation of a Symbol WSM-5030 RLAN Radio Module FCC ID: H9PWSM5030 Report Number: OR610776/02/Issue 2October 2003 BABT. Segensworth Road, Titchfield Fareham, Hampshire, United Kingdom, PO15 5RH Tel: +44(0)1329 443300, Fax: +44(0)1329 443331 www.babt.com Report Number OR610776/02/Issue 2Page 1 of 75 REPORT ONFCC Part 15C Testing in support of an Application for Grant of Equipment Authorisation of a Symbol WSM-5030 RLAN Radio Module FCC ID: H9PWSM5030 Report No OR610776/02/Issue 2 October 2003 EQUIPMENT:WSM-5030 RLAN Radio Module FCC ID:H9PWSM5030 SPECIFICATION:47 CFR 15.247 PREPARED FOR:Symbol Technologies Inc One Symbol Plaza Holtsville NY 11742-1300 New York United States of America MANUFACTURERS REPRESENTATIVE:Mr Alan Parrish APPROVED BY: C Gould UKAS Signatory DATED:10-10-03 DISTRIBUTIONSymbol TechnologiesCopy 1 (CD) TÜV Product ServiceCopy 2 Copy No Total No of Pages 75 Report Number OR610776/02/Issue 2Page 2 of 75 FCC ID: H9PWSM5030 Table of Contents Page No STATUS...........................................................................................................................................................3 TEST RATIONALE .........................................................................................................................................4 SYSTEM CONFIGURATION ......................................................................................................................... 4 TEST SETUP PHOTOGRAPH ......................................................................................................................5 EQUIPMENT INFORMATION........................................................................................................................6 INSTRUMENTATION USED FOR TESTING THE EUT ..............................................................................7 RADIATED EMISSION MEASUREMENT AT THE BAND EDGE (MARKER DELTA METHOD).............9 6dB BANDWIDTH...........................................................................................................................................11 MAXIMUM PEAK OUTPUT POWER ............................................................................................................24 SPURIOUS CONDUCTED EMISSIONS.......................................................................................................26 SPURIOUS CONDUCTED EMISSIONS ON POWER LINES.....................................................................63 SPURIOUS RADIATED EMISSIONS............................................................................................................67 PEAK POWER SPECTRAL DENSITY..........................................................................................................70 PHOTOGRAPHS OF EQUIPMENT ..............................................................................................................71 SYSTEM MEASUREMENT UNCERTAINTY................................................................................................74 COPYRIGHT STATEMENT ..........................................................................................................................75 FCC SITE COMPLIANCE LETTERS ............................................................................................................ Annex A Report Number OR610776/02/Issue 2Page 3 of 75 FCC ID: H9PWSM5030 STATUS OBJECTIVETo undertake measurements to determine the Equipment Under Test's (EUT's) compliance with the specification. MANUFACTURING DESCRIPTIONRLAN Module for use with host unit WSAP-5030 APPLICANTSymbol Technologies Symbol Place Winnersh Triangle Berkshire RG41 5TP MANUFACTURERS TYPE NUMBERWSM-5030 MANUFACTURERS PART NUMBERWSM-5030-100-WW SERIAL NUMBERNo 2 and No 5 HARDWARE REVISIONDVT3.1 TEST SPECIFICATION NUMBERFCC Part 15 Subpart C REGISTRATION NUMBEROR610776 QUANTITY OF ITEMS TESTEDOne SECURITY CLASSIFICATION OF EUTUnclassified INCOMING RELEASEDeclaration of Build Status SERIAL NUMBEROR610776 DATE29 th June 2003 DISPOSALHeld pending disposal REFERENCE NUMBERN/A DATEN/A START OF TEST7 th July 2003 FINISH OF TEST8 th August 2003 TEST ENGINEERSB Airs A Guy P Harrison R Small B Bennett M Terry RELATED DOCUMENTSANSI C63.4 2001. Methods of Measurement of Radio-Noise Emissions from Low-Voltage Electrical and Electronic Equipment in the Range of 9 kHz to 40 GHz. FCC Public Notice document (DA 00-705 released 30 March 2000) Report Number OR610776/02/Issue 2Page 4 of 75 FCC ID: H9PWSM5030 TEST RATIONALE This report has been re-issued as Issue 2 to cover some minor typographical errors and also include some test clause references that were omitted from the original report. This report is intended to replace the original report OR610776/2 Issued in September 2003. The information contained within this report is intended to show verification of compliance of the Symbol Technologies Inc WSM-5030 RLAN Radio Module to the requirements of FCC Specification Part 15. FCC ID H9PWS…
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| # | Rule Parts | Frequency Range | Power Output | Emission |
|---|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 50.70 mW | 11MO1D |

Customer Concierge
Equipment Class
NII - Unlicensed National Information Infrastructure TX
802.11 abgn/ac Access Point
Equipment Class
DTS - Digital Transmission System
Touch Computer
Equipment Class
NII - Unlicensed National Information Infrastructure TX
UHF Narrowband Radio Module
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
802.15.4 Gateway
Equipment Class
DTS - Digital Transmission System