
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
RFNet Wireless LAN Access Point AP-I002 Chapter 1 Welcome.........................................................................................................................4 1.1 About this book.....................................................................................................................4 1.2 About the RFNet wireless LAN Access Point AP-I002.......................................................4 1.3 Information to the user..........................................................................................................5 1.3.1 Regulatory Information..................................................................................................5 1.3.2 Wireless AP-I002 and Your Health...............................................................................5 1.3.3 Wireless AP-I002 and Permission to use.......................................................................6 1.4 AP-I002 Application Examples............................................................................................6 1.4.1 Enterprise Network........................................................................................................6 1.4.2 SOHO/HOME................................................................................................................7 1.4.3 Wireless Bridge (Optional)............................................................................................7 Chapter 2 Installation Guide...........................................................................................................9 2.1 AP-I002 Standard Package...................................................................................................9 2.2 Product Identification............................................................................................................9 2.3 Hardware Installation............................................................................................................9 2.3.1 Locating Your Access Point..........................................................................................9 2.3.2 Removing Top Cover of AP-I002................................................................................ 10 2.3.3 Installing DC Power Cord and Ethernet Cable............................................................10 2.3.4 Closing the Front Cover...............................................................................................11 2.3.5 Mount the AP-I002 (in case of wall mounting)...........................................................11 2.4 Power-up the Device........................................................................................................... 11 2.5 Install the AP Search Software to Microsoft Windows......................................................12 Chapter 3 Using Your AP-I002.................................................................................................... 13 3.1 Installation Requirements................................................................................................... 13 3.2 Best Place for the AP-I002.................................................................................................13 3.3 Connecting Stations to Your AP-I002................................................................................13 3.3.1 To Connect to Any SSID.............................................................................................13 3.3.2 To Connect to the Specific SSID.................................................................................14 3.4 Management........................................................................................................................15 3.4.1 Web Server Within Access Point.................................................................................15 3.4.2 Access Point Search.....................................................................................................24 3.4.3 Telnet...........................................................................................................................24 Chapter 4 AP-I002 Specifications................................................................................................ 27 4.1 Hardware.............................................................................................................................27 4.1.1 Environment & Electrical............................................................................................27 4.1.2 Wireless........................................................................................................................27 4.1.3 Interface & Standards..................................................................................................28 4.2 Software..............................................................................................................................28 4.2.1 Network Protocol.........................................................................................................28 4.2.2 Management & Configuration.....................................................................................28 4.2.3 Security & Access Control........................................................................................... 29 4.2.4 Optional Accessories, Features and Service................................................................29 4.3 Management........................................................................................................................30 Chapter 5 Technical Support........................................................................................................31 Chapter 6 Troubleshooting...........................................................................................................32 User Manual 2 RFNet Wireless LAN Access Point AP-I002 6.1 Identify AP..........................................................................................................................32 6.2 Noβ¦
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PSB Corporation TEST PHOTOGRAPHS / DIAGRAMS ANNEX B EMC/R/02220 EUT PHOTOGRAPHS Front View Rear View PSB Corporation TEST PHOTOGRAPHS / DIAGRAMS ANNEX B EMC/R/02220 EUT PHOTOGRAPHS Left View Right View PSB Corporation TEST PHOTOGRAPHS / DIAGRAMS ANNEX B EMC/R/02220 EUT PHOTOGRAPHS Power Adapter β Top View Power Adapter β Bottom View
PSB Corporation FCC LABEL & POSITIONANNEX E EMC/R/02220 ANNEX E FCC LABEL & POSITION PSB Corporation FCC LABEL & POSITIONANNEX E EMC/R/02220 Labelling requirements per Section 2.925 & 15.19 The label shown will be permanently affixed at a conspicuous location on the device and be readily visible to the user at the time of purchase. Sample Label Physical Location Of Label On EUT
PSB Corporation TEST PHOTOGRAPHS / DIAGRAMS ANNEX B EMC/R/02220 EUT PHOTOGRAPHS Daughter Board β Top View Daughter Board β Bottom View PSB Corporation TEST PHOTOGRAPHS / DIAGRAMS ANNEX B EMC/R/02220 EUT PHOTOGRAPHS Daughter Board β Top View With Shield Removed PSB Corporation TEST PHOTOGRAPHS / DIAGRAMS ANNEX B EMC/R/02220 EUT PHOTOGRAPHS Daughter Board β Bottom View With Shield Removed
PSB Corporation TEST PHOTOGRAPHS / DIAGRAMS ANNEX B EMC/R/02220 EUT PHOTOGRAPHS EUT Mother Board β Top View PSB Corporation TEST PHOTOGRAPHS / DIAGRAMS ANNEX B EMC/R/02220 EUT PHOTOGRAPHS EUT Mother Board β Bottom View With Shield PSB Corporation TEST PHOTOGRAPHS / DIAGRAMS ANNEX B EMC/R/02220 EUT PHOTOGRAPHS EUT Mother Board β Bottom View With Shield Removed
PSB Corporation TEST PHOTOGRAPHS / DIAGRAMS ANNEX B EMC/R/02220 EUT PHOTOGRAPHS EUT Top Casing β Internal View EUT Bottom Casing β Internal View PSB Corporation TEST PHOTOGRAPHS / DIAGRAMS ANNEX B EMC/R/02220 EUT PHOTOGRAPHS EUT Internal View β Top View With Bottom Casing PSB Corporation TEST PHOTOGRAPHS / DIAGRAMS ANNEX B EMC/R/02220 EUT PHOTOGRAPHS EUT Internal View β Top View Without Bottom Casing PSB Corporation TEST PHOTOGRAPHS / DIAGRAMS ANNEX B EMC/R/02220 EUT PHOTOGRAPHS EUT Internal View β Bottom View With Bottom Casing Removed
PSB Corporation TEST PHOTOGRAPHS / DIAGRAMS ANNEX B EMC/R/02220 EUT PHOTOGRAPHS RF Antenna Connector
SPECIFICATIONS Of PCMCIA Type II 802.11b Card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
PSB Corporation EUT TEST CONDITIONSANNEX C EMC/R/02220 ANNEX C EUT TEST CONDITIONS PSB Corporation EUT TEST CONDITIONSANNEX C EMC/R/02220 SUPPORTING EQUIPMENT DESCRIPTION Equipment Description (Including Brand Name) Model, Serial & FCC ID Number Cable Description (List Length, Type & Purpose) M/N: 6000 Series S/N: E0123633CC0406 White Box Notebook FCC ID: DoC 1.2m UTP cable 1.0m S-Video cable 1.2m unshielded power adapter cable (DC) M/N: LSE9802A2064 S/N:2K4312632 White Box Notebook AC/DC Power Adapter FCC ID: Nil 1.2m unshielded power adapter cable (DC) 1.0m unshielded power cable (AC) M/N: M-S34 S/N: LZA72551167 Hew lett-Packard Mouse FCC ID: DZL211029 1.8m standard mouse cable M/N: Diconix 150Plus S/N: PKB9ZYGD3 Kodak Printer FCC ID: E759WG-EK154 1.4m power adapter cable with built-in ferrite (DC) 1.4m shielded printer cable M/N: PSA-122 S/N: R2270001B9 Kodak Printer AC/DC Power Adapter FCC ID: Nil 1.4m power adapter cable (DC) with built-in ferrite 1.8m unshielded power cable (AC) M/N: C202A S/N: 010325 Epson Modem FCC ID: BKM552C242A 1.0m telephone cable with 600β¦ terminator 1.4m unshielded power cable M/N: SPR-218F-5A S/ N: Nil Wireless LAN Access Point AC/DC Power Adapter (EUT Power Adapter) FCC ID: Nil 1.2m unshielded power adapter cable (DC) PSB Corporation EUT TEST CONDITIONSANNEX C EMC/R/02220 EUT OPERATING CONDITIONS EUT Description: IEEE 802.11b Wireless LAN Access Point Model No: AP-I002 Serial No: Nil The IEEE 802.11b Wireless LAN Access Point was powered from 110V, 60Hz mains supply. TestsDescription Of Operation 1. Cond ucted Emissions 2. Radiated Emissions 3. Spectrum Bandwidth 4. Maximum Peak Power 5. RF Conducted Spurio us Emission at the Transmitter Antenna Terminal 6. Transmitted Power Density The EUT was exercised by activating the clientβs provided test program, βRFNETβ. The program allows a non-stop transmission of character βHβs from the EUT. During the test, the transmitting channel was set at channel 1, 5 and 11 respectively. For each of transmitting channel, two types of modulations were chosen which respectively carries a different transmission rate. Transmission Rate Type of Modulation 1. 2Mbps QPSK 2. 11Mbps CCK MPE measurements1. The w hite box notebook PC was connected to the EUT via the Fast ethernet card for the purpose of controlling the EUT. 2. Using the customer supplied software running on the notebook PC, the EUT can be configured to transmit at various possible channels (from channel 1 to 11) and at various data rates (2Mbps, 5.5Mbps and 11Mbps) 3. Using dos bat commands, the EUT is programmed to transmit continuous βHβ over the radio channel during tests. PSB Corporation ANNEX D EMC/R/02220 ANNEX D USER MANUAL TECHNICAL DESCRIPTION BLOCK & CIRCUIT DIAGRAMS
Chris Harvey From:Chris Harvey Sent:Friday, October 19, 2001 3:55 PM To:'[email protected]' Cc:Marianne Bosley Subject:Request for Technical Information rfNET FCC ID: PXP000001 MT#11421 Suresh, MET has performed the technical review of the rfNET application and have the following issues and questions that must be addressed before completion of this Certification: 1. Please provide measurement data and a description of measurement procedures for peak output power (Section 15.247(b)). 2. Please provide radiated spurious emission data (Section 15.247(c)) for all harmonics including those located in the restricted bands (per Section 15.205), as well as a description of the measurement procedures used. Please be sure to cover all frequencies required for this 2.5 GHz device 3. What is the antenna gain? 4. Please address Section 15.203. 5. Please provide photos of the RF WLAN pcb with the RF shield removed. 6. FYI: the sweep used to measure the power spectral density was too fast for the span chosen. In the future, please use a sweep = span/3 kHz. Please provide the requested information for MET to be able to complete the technical review. Best regards, Chris Harvey Chris Harvey EMC Lab Director, MET Laboratories, Inc. 1-800-638-6057 x-310 [email protected]
TESTING GROUP Telecoms & EMC TEST METHOD DOCUMENT TITLE: Radiated Emissions for Information Technology Equipment (ITE) at the 3m/10m OATS & 10m ANC test facilities. DOCUMENT NUMBER : TGTM-056-154 DATE: 9 May 2001 NameDesignationSignature Prepared by: Deng JunHongSnr. Engineer Reviewed by: Colin GanTechnical Manager (EMC) Approved by: Chong Weng HoeVice President DOCUMENT CONTROL STATUS TESTING GROUP Telecoms & EMC TEST METHOD REVISION RECORD DOCUMENT TITLE :Radiated Emissions for Information Technology Equipment (ITE) at the 3m/10m OATS test facility. DOCUMENT NUMBER:TGTM-056-154 DOC REV NO. Rev. DateSummary of revisionRevised byReviewed by Approved by Name & Sign Name & Sign Name & Sign 0.09 May 2001Converted from former CTM-EMC-200/05 DJHCGCWH Telecoms & EMC TEST METHOD Document title: Radiated Emissions for Information Technology Equipment (ITE) at the 3m/10m OATS & 10m ANC test facilities. Doc No.: TGTM-056-154 Rev No.: 0.0 Date: 9 May 2001 Page: 1 of 8 A.PURPOSE This document describes the techniques to be used for measuring radiated emissions of ITE at the 3m/10m OATS & 10m ANC test facilities. B.SCOPE This document is for use with the following specifications: CISPR 22:1997(30MHz-1GHz)230V 50Hz EN 55022:1994(30MHz-1GHz)230V 50Hz EN 55022:1998(30MHz-1GHz)230V 50Hz AS/NZS:1997(30MHz-1GHz)230V 50Hz IDA RS EMC:2000(30MHz-1GHz)230V 50Hz CNS 13438:86(30MHz-1GHz)110V 60Hz & 230V 50Hz FCC Part 15J : 1997(30MHz-1GHz)110V 60Hz FCC Part 15B : 1999(30MHz-40GHz)110V 60Hz C.DEFINITIONS EUT-Equipment Under Test. EUT System-The system under test, which comprises the EUT and necessary supporting devices to exercise all functions of the EUT in normal operation. EUT System-The boundary defined by an imaginary straight-line Boundaryperiphery describing a simple geometric configuration encompassing the EUT & all inter-connecting cables. EUT-Measurement of radiated emissions from the EUT in a Characterisationshielded room, in order to identify the EUT frequencies that will be measured at the OATS. DPRECAUTION (FOR OATS TESTING ONLY) All testing to cease immediately in the presence of heavy rain, lightning and/or thunder. The measuring receiver RF input cable is to be disconnected, the EUT and supporting devices are to be switched off at the mains supply in the control room, and where safely possible, the antenna removed to the EUT shelter. Telecoms & EMC TEST METHOD Document title: Radiated Emissions for Information Technology Equipment (ITE) at the 3m/10m OATS & 10m ANC test facilities. Doc No.: TGTM-056-154 Rev No.: 0.0 Date: 9 May 2001 Page: 2 of 8 E.DETAILS OF PROCEDURE 1. TEST SETUP 1.1Check and note the environmental conditions (i.e. temperature, relative humidity and atmospheric pressure) of the measuring receiver in the control room. 1.2For table-top equipment, place the EUT system on a 0.8m high, non- conductive table/turntable. The rear of the EUT and the supporting devices shall be flush with the rear of the table/turntable. The EUT layout shall be as close to that used during EUT characterisation. Typical setups are as shown in Annex A. Note that indicated distances between peripherals (i.e. 10cm) are to be maintained. 1.3For floor-standing equipment, the EUT system shall be subject to the same provisions as per table-top equipment, except that it shall be placed on the floor with points of contact consistent with normal use and not in metallic contact with the ground plane. A typical setup is shown in Annex B. 1.4The EUT system shall be configured and loaded in a manner typical of normal operation. As a minimum test configuration, each different type of interface port shall be loaded with a typical device or simulator and representative cabling. Where multiple interface ports of the same type are present, connecting a cable to just one of that type of port is sufficient provided it has been shown that the additional cables would not significantly affect the results. 1.5For a PC or peripheral intended to be used with a PC, the minimum test configuration shall be: a.Personal Computer (PC) b.Keyboard c.Video Display Unit (i.e. Monitor) d.One Serial Device (e.g. Modem) e.One Parallel Device (e.g. Printer) Telecoms & EMC TEST METHOD Document title: Radiated Emissions for Information Technology Equipment (ITE) at the 3m/10m OATS & 10m ANC test facilities. Doc No.: TGTM-056-154 Rev No.: 0.0 Date: 9 May 2001 Page: 3 of 8 f.Mouse, Joystick, etc. (if dedicated ports for these devices are present) 1.6Excess lengths of interconnecting cables, that hang closer than 0.4m from the ground plane, shall be bundled at the approximate centre of the cable with bundles of 0.3m to 0.4m in length. Cables of hand- operated devices (e.g. keyboard, mouse, etc,) shall be placed as close to the EUT as possible. 1.7I/O cables connected to supporting devices but not connected to the EUT can be left hanging with one end free. These may be terminated if required with the correct terminating impedance. These cables shall be bundled (0.3m to 0.4m bundles) in the centre so that the total length does not exceed 1m in length. 1.8The EUT system shall be powered from the correct mains supply. The power cables shall not be bundled , but allowed to drape to the ground plane and routed to the mains supply socket (see Annex A). Where specified by the manufacturer, the type of power cable used shall be as specified. 1.9Power cables of supporting devices shall be left unbundled. The power cables shall be draped over the edge of the table and routed down along the floor to the mains supply socket. 1.10The antenna shall be set at the required test distance (i.e. 3m or 10m) away from the EUT system boundary. 2.TEST PROCEDURE 2.1Prior to the test, carry out the confidence check for the test system as per the test method TGTM-056-159. The test shall only proceed if the confidence check is within the agreed limits, otherwise the Technical Manager or Dy Technical Manager shall be informed immediately. 2.2The frequency range for radiated emisβ¦
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TESTING GROUP Telecoms & EMC TEST METHOD DOCUMENT TITLE: Characterisation (pre-scan) of radiated emissions from an EUT inside a shielded enclosure. DOCUMENT NUMBER : TGTM-056-155 DATE: 9 May 2001 NameDesignationSignature Prepared by: N.S.SureshDy. Technical Manager Reviewed by: Colin GanTechnical Manager (EMC) Approved by: Chong Weng HoeVice President DOCUMENT CONTROL STATUS TESTING GROUP Telecoms & EMC TEST METHOD REVISION RECORD DOCUMENT TITLE :Characterisation (pre-scan) of radiated emissions from an EUT inside a shielded enclosure. DOCUMENT NUMBER:TGTM-056-155 DOC REV NO. Rev. DateSummary of revisionRevised byReviewed byApproved by Name & SignName & SignName & Sign 0.09 May 2001Converted from former CTM-EMC-200/06 NSCGCWH Telecoms & EMC TEST METHOD Document title: Characterisation (pre-scan) of radiated emissions from an EUT inside a shielded enclosure. Doc No.: TGTM-056-155 Rev No.: 0.0 Date: 9 May 2001 Page: 1 of 5 APURPOSE This document describes the technique to be used for carrying out EUT characterisation (pre-scanning) inside designated shielded encloures, i.e. Shield Rooms 1 & 3, and the Anechoic Chamber. BSCOPE EUT characterisation (pre-scanning) is only meant for : 1.Identification of radiated emission signals to be measured at an Open Area Test Site (OATS). 2.Troubleshooting purposes. CDEFINITIONS EUT-Equipment Under Test. EUT System-The system under test, which comprises the EUT and necessary supporting devices to exercise all functions of the EUT in normal operation. EUT System-The boundary defined by an imaginary straight-line Boundaryperiphery describing a simple geometric configuration encompassing the EUT & all inter-connecting cables. DDETAILS OF PROCEDURE 1TEST SETUP 1.1For table-top equipment, place the EUT system on either: a.A 0.8m high, non-conductive table sitting on top of a low turn- table. Telecoms & EMC TEST METHOD Document title: Characterisation (pre-scan) of radiated emissions from an EUT inside a shielded enclosure. Doc No.: TGTM-056-155 Rev No.: 0.0 Date: 9 May 2001 Page: 2 of 5 b.A low turn-table sitting on top of a 0.8m high, non-conductive table. The EUT layout shall be as close to the intended layout to be used for the radiated emissions test. 1.2For floor-standing equipment, the EUT system shall be subject to the same provisions as per table-top equipment, except that it shall be placed on a low turn-table in the shielded enclosure. 1.3The EUT system shall be configured and loaded in a manner typical of normal operation. As a minimum test configuration, each different type of interface port shall be loaded with a typical device or simulator and representative cabling. Where multiple interface ports of the same type are present, connecting a cable to just one of that type of port is sufficient provided it has been shown that the additional cables would not significantly affect the results. 1.4The EUT system shall be powered from the 230V 50Hz mains (for CISPR & EN tests) or 115V 60Hz mains (for the FCC tests). The power cables shall not be bundled, but allowed to drape to the ground plane and routed to the mains supply socket. Where specified by the manufacturer, the type of power cable used shall be as specified. 1.5Power cables of supporting devices shall be left unbundled. The power cables shall be draped over the edge of the table and routed down along the floor to the mains supply socket. 1.6The antenna shall be set up on a tripod at 1m distance from the EUT system boundary, and directly connected to a spectrum analyzer via a BNC cable. The antenna height shall be about 1.5m from the floor. 1.7A typical pre-scan setup is given in Annex A. Telecoms & EMC TEST METHOD Document title: Characterisation (pre-scan) of radiated emissions from an EUT inside a shielded enclosure. Doc No.: TGTM-056-155 Rev No.: 0.0 Date: 9 May 2001 Page: 3 of 5 2TEST PROCEDURE 2.1Pre-scans are generally done in the range from 30MHz to 1GHz (or greater in some cases). Please refer to the relevant standards for actual frequency range to be covered. The spectrum analyzer settings generally used are: Recall State SpanRef Level Vertical Scale RBWVBWSweep Rate AttenDetector 1 2 3 4 30-110 MHz 105-200 MHz 195-400 MHz 395-1000 MHz 90 dBΞΌV/m 10 dB/div 120 kHz1 MHz 20 ms 20 ms 50 ms 150 ms 10 dBPeak 2.2 Type of antennas to be used for particular frequency ranges are as follows: ANTENNA TYPE FREQUENCY RANGE Biconical Log-Periodic Horn 30MHz < 200MHz 200MHz - 1GHz 1GHz - 18GHz 2.3Ensure that the transducer factors for the antenna & cable used in the pre-scan are loaded into the spectrum analyzer. 2.4 The EUT shall be representatively operated in its worst case operating condition. Use of a test software or other means, where applicable, to operate the EUT continuously during the test is allowed provided it is representative of typical operation. Where a test software is used, the source code or the function of the software shall be noted in the job logbook. 2.5 For each frequency span, the pre-scan shall be conducted as follows: a. With the antenna in a particular polarization, set the spectrum analyzer to Max Hold. Telecoms & EMC TEST METHOD Document title: Characterisation (pre-scan) of radiated emissions from an EUT inside a shielded enclosure. Doc No.: TGTM-056-155 Rev No.: 0.0 Date: 9 May 2001 Page: 4 of 5 b. Rotate the EUT on top of the turn-table, for one rotation. c. Stop the spectrum analyzer from sweeping & then change the antenna polarization. d. Let the spectrum analyzer continue sweeping in the Max Hold mode, making sure that it continues on from the trace of the previous antenna polarization, i.e. it does not refresh the trace. e. Make another rotation of the EUT, in the opposite direction from the previous rotation. f. Plot the combined results of both polarisations & note down in writing the significant emission frequencies on the plot itself by hand, for measurement at the OATS. g. Steps "a" to "g" are repeated for the next frequency span, until the requiβ¦
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 80.00 mW |

2.4GHz 802.11b/g Outdoor AP-Repeater-Bridge
Equipment Class
DTS - Digital Transmission System
Wireless G Router
Equipment Class
DTS - Digital Transmission System
Wireless Super G Router
Equipment Class
DTS - Digital Transmission System
802.11 b/g Wireless Router
Equipment Class
DTS - Digital Transmission System