
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
802.11b & AC97 Soft Modem User Manual 2 Contents 1. Contents 2. Introduction 3. Wireless LAN Basics 4. Installation Overview 5. Troubleshooting 6. 802.11b Technical Specifications 3 2. Introduction Thank you for purchasing your Wireless LAN, 802.11b Combo MiniPCI Card. This manual will assist you with the installation procedure. The package you have received should contain the following items: • 802.11b Combo MiniPCI Card • User manual • Diskette containing AC97 Soft Modem driver, Wireless LAN Management utility and driver software. Note: if anything is missing, please contact your vendor The diskette contains drivers and utility software; this is used for managing the 802.11b Combo MiniPCI card and needed component is included for AC97 Soft Modem. 4 3. Wireless LAN Basics Wireless LAN (Local Area Networks) systems offer a great number of advantages over a traditional, wired system. Wireless LANs (WLANs) are more flexible, easier to setup and manage and often more cost effective than their wired equivalence. Using radio frequency (RF) technology. WLANs transmit and receive data over the air, minimizing the need for wired connections. Thus, WLANs combine data connectivity with user mobility, and, through simplified configuration, enable movable LANs. With wireless LANs, users can access shared information without looking for a place to plug in and network managers can set up or augment networks without installing or moving wires. Wireless LANs offer the following productivity, convenience and cost advantages over traditional wired networks. • Mobility – Wireless LAN systems can provide LAN users with access to real-time information anywhere in their organization. This mobility supports productivity and service opportunities not possible with wired networks. • Installation Speed and Simplicity – Installing a wireless LAN system can be fast and easy and can eliminate the need to pull cable through walls and ceilings. • Installation Flexibility – wireless technology allows the network to go where wires cannot go. • Reduced Cost-of-Ownership – While the initial investment required for wireless LAN hardware might be higher than the cost of wired LAN hardware, overall installation expenses and life-cycle costs will be significantly lower. Long- term cost benefits are greatest in dynamic environments requiring frequent moves, adds, and changes. • Scalability – Wireless LAN systems can be configured in a variety of topologies to meet the needs of specific applications and installations. Configurations are easily changed and range from peer-to-peer networks suitable for a small number of users to full infrastructure networks of thousands of users that allows roaming over a broad area. 5 4. Installation and Overview Here are some steps you will perform in establishing your wireless network connection: • Install Access Point at first. AP is needed in case of Infrastructure network mode. • Install software using the Installation Diskette. • Install network protocol(s) required to communicate on your network. Most likely you will need the TCP/IP protocol. Here are some steps you will perform in installing your driver for AC97 Soft Modem. • Install driver using the Installation Diskette. 6 4.1 Installation Procedure of 802.11b Combo WLAN MiniPCI Card Please follow the following steps one by one in order to install the utility and driver software successfully. 1. Insert the card into MiniPCI slot. 2. Power on your computer and allow Windows to load fully. 3. When Windows first detects the PCI Network Controller, click cancel. 4. Insert the given Installation Diskette and then double click on the Setup.exe file to run setup. 5. Click Finished, then it will start to load the utility software. 6. Click next in the welcome window. 7. Accept the license agreement. 8. Click Finished in the Setup Complete window and reboot. 9. Windows will then prompt the required driver. 10. Click the option for to search for the best driver for your device. 11. Do not check any boxes for to search for locations, if any boxes are checked, uncheck it. Then click Next and install driver. 12. The Wireless LAN PCI Card Properties widow will prompt. You can configure your options now or later. Click OK when finished. 13. Check for the 802.11b Combo WLAN MiniPCI Card by right clicking on My Computer using the mouse. Select the Device manager and then Network Adapters. If you find the sign on the adapter, it shows the installation is not successful. Select the adapter and click on Remove. Restart your computer after uninstalling the driver to make the changes effective. And refer to manual. 14. Right click on the Network Neighborhood using the mouse. 15. Select Properties from the pop up menu. The network box appears and you see the three main tables: Configuration, Identification, and Access Control. 16. Click on the Configuration tab and then click on the Add button. Select Network Component Type box appears. Click on the Protocol the click the Add button. 17. Select Network Protocols box appears. From the list of manufactures, click on Microsoft. From the list of network protocols list, select NetBEUI, then click OK. 18. The NetBEUI protocol is now installed. After clicking on OK return back to Network Component Type box. 19. Repeat the step 15 and 16 to add IPX/SPX protocol. 20. Repeat the step 15 and 16 to add TCP/IP protocol. 21. Click on the TCP/IP option for setting the IP address for your computer. You can select either Static OR DHCP setting. If you use the static IP setup then enter the IP value, Subnet masking, DNS, Domain / Workgroup name, and Gateway address values. After setting these parameter appropriately, click OK to return to Network Component Type and you can select the File and Printer Sharing options as well as the Access to your computer other users connected to that network by setting the computer sharing options. Click on OK. 22. Screen message do want to restart your Computer will pop up. Select Yes. It wi…
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ThinkPad ® T23 ServiceandTroubleshootingGuide ThinkPad ® T23 ServiceandTroubleshootingGuide Note Before using this information and the product it supports, be sure to read the general information under “Appendix A. Important safety instructions” on page 41 and “Appendix B. Product warranties and notices” on page 47 . DANGER vTo avoid electric shock hazard, connect and disconnect cables appropriately when installing, moving or opening the covers of this product or attached devices. Use the power cord with a properly grounded outlet. vDo not leave the base of your computer in contact with your lap or any part of your body for an extended period when the computer is functioning or when the battery is charging. Your computer dissipates some heat during normal operation. This heat is a function of the level of system activity and battery charge level. Extended contact with your body, even through clothing, could cause discomfort or, eventually, a skin burn. vTo reduce the risk of electric shock, do not use your computer in or near water. vTo avoid electric shock, do not use your computer with the telephone cable connection during an electrical storm. Do not connect the cable to or disconnect it from the telephone outlet on the wall during an electrical storm. vStore packing materials safely out of the reach of children to prevent the risk of suffocation from plastic bags. vThe battery pack contains a small amount of harmful substances. There is danger of an explosion if the battery pack is incorrectly replaced, exposed to fire or water, short-circuited or disassembled. Keep the battery pack away from children and do not put it in trash that is disposed of in landfills. vTo reduce the risk of fire, use only No. 26 AWG or thicker telephone cable. vThe fluorescent lamp in the LCD contains mercury. Do not put it in trash that is disposed of in landfills. Rough handling or dropping the computer can cause the LCD to break and the internal fluid to get into your eyes or on your hands. Immediately wash the affected areas with water. If symptoms persist, seek medical care. vDo not open the CD-ROM or DVD drive unit, as this might result in hazardous radiation exposure. vAvoid direct eye exposure with the laser beam contained in some drives. First Edition (April 2001) The following paragraph does not apply to the United Kingdom or any country where such provisions are inconsistent with local law: INTERNATIONAL BUSINESS MACHINES CORPORATION PROVIDES THIS PUBLICATION′′AS IS′′WITHOUT WARRANTY OF ANY KIND, EITHER EXPRESS OR IMPLIED, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE. Some states do not allow disclaimer of express or implied warranties in certain transactions, therefore, this statement may not apply to you. This information could include technical inaccuracies or typographical errors. Changes are periodically made to the information herein; these changes will be incorporated in new editions of the publication. IBM may make improvements and/or changes in the product(s) and/or the program(s) described in this publication at any time without notice. IBM may use or distribute any of the information you supply in any way it believes appropriate without incurring any obligation to you. © Copyright International Business Machines Corporation 2001. All rights reserved. US Government Users Restricted Rights – Use, duplication or disclosure restricted by GSA ADP Schedule Contract with IBM Corp. Finding information with Access ThinkPad ThinkPad Community ThinkPad Solutions Service & Support 1 2 3 Up & Running About Your ThinkPad Everyday Essentials Problem Solving How to reach IBM Quick Search 4 5 Your gateway into a comprehensive help system, offering information about all of your ThinkPad computer hardware and software features. A quick way to search the help system. Join an interactive community of ThinkPad users to access mobile resources, read tips and true stories, and share your own advice. Customize your ThinkPad with accessories, software and services. A one-click guide to service on the Web for your ThinkPad. © Copyright IBM Corp. 2001iii Whenever you have a question about your computer, or wish to view IBM Web sites, simply press the ThinkPad button to open Access ThinkPad. Access ThinkPad includes a comprehensive, on-board help and information center for your computer. It travels with you, eliminating the need to carry reference manuals. Find information about your ThinkPad computer and its features by using the Quick Search or clicking one of the topics shown. This opens another window, where you can view hundreds of help topics by browsing the table of contents, using the index, or performing a search. View help topics to learn how to: vUse your computer hardware features vConnect to the internet or a local network vSet up a projector for your presentation vUse passwords and other security features vInstall, remove and recover software vUpgrade your system vExtend the life of your battery vTroubleshoot problems vContact IBM for service and support vPerform many other tasks Click one of the Internet buttons to join an interactive ThinkPad Web community, or to directly access information about accessories and software updates, small business offerings, and help and support. ivThinkPad ® T23 Service and Troubleshooting Guide Some of the topics in your help system contain brief video clips that show you how to perform certain tasks, such as replacing your battery, inserting a PC card, or upgrading your memory. Use the controls shown to play, pause, and rewind the video clip. Finding information with Access ThinkPadv viThinkPad ® T23 Service and Troubleshooting Guide Contents Finding information with Access ThinkPadiii Chapter 1. Overview of your new ThinkPad computer.............1 Your ThinkPad at a glance.......2 Features..............3 Specifications............5 Caring for your ThinkPad computer....6 Chapte…
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HFA3783 QUAD IF ISL3685IR RF/IF CONV ISL3984 RFPA PLL RF LO REF IN PLL I/Q LO I ADC Q ADC RX ADC IF DAC RX DAC TX DAC Q DAC I DAC IF LO REF IN TX ADC REF_OUT TX ALC MOD DEMOD AGC CTL I/O ANT_SEL 6 1 1 1 6 6 6 6 6 REF IN 44 MHz CLOCK PHY I/O CONTROL PROCESSOR MEMORY ARBITER RADIO I/O HOST I/O WEP ENGINE CAL_EN T/R Optional Parallel FLASH miniPCI HOST Intf Differential signals ISL3874 MAC/BBP 128Kx16 SRAM RF VCO ISL3183 IF VCO 32KHz Sleep SAW External Antenna Optional Diversity Switch External Status LEDs Serial EEPROM BLOCK DIAGRAM
FCC ID: LNQ-802MIP No external photos are required as this device resides within a laptop PC
FCC ID: LNQ-802MIP Photos
OPERATIONAL DESCRIPTION General Description The MIP802 is a wireless LAN interface card with an on-board V.90 modem. An additional model, (MIP802-W) is also offered. Model MIP802-W is the identical PWB with the V.90 components and the telecom interface port removed. The wireless LAN radio operates between 2412 and 2462 MHz. The transmitted signal is a direct sequence spread spectrum signal with a maximum rf bandwidth of 11.58 MHz. The peak output power is +19.9 dBm e.i.r.p.. Mechanical Description The interface card is mounted inside of a laptop PC. The antenna is an integral design and thus is not accessible to the user. The antenna is mounted in the cover of the laptop. A minimum separation distance of 5 cm. can reasonably be maintained during operation of the equipment. The V.90 connector is also integrated into the PC chassis. Description of Modular Design The MIP802 is designed as a module as described below: 1) Data modulation inputs are buffered within the module. 2) Power regulation is accomplished on the module. 3) The antenna is sold and marketed as part of the module.
Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Maximum peak output power at antenna input terminal:17.00(dBm) Maximum peak output power at antenna input terminal:47.5(mW) Antenna gain(typical):3(dBi) Maximum antenna gain:1.995262(numeric) Prediction distance:5(cm) Prediction frequency:2400(MHz) MPE limit for uncontrolled exposure at prediction frequency:1.0(mW/cm^2) Power density at prediction frequency:0.301678(mW/cm^2) Maximum allowable antenna gain:8.204563(dBi) 2 4R PG S π =
Nemko Test Report: 1L0136RUS1 Applicant: ActionTec 760 N. Mary Avenue Sunnyvale. CA 94086 Equipment Under Test: 802MIP and 802MIP-W Wireless LAN Combo (E.U.T.) In Accordance With: FCC Part 15, Subpart C, 15.247 Direct Sequence Spread Spectrum Transmitters Tested By: Nemko Dallas Inc. 802 N. Kealy Lewisville, Texas 75057-3136 Authorized By: Tom Tidwell, RF Group Manager Date: 4/25/01 Total Number of Pages: 44 Nemko Dallas FCC PART 15, SUBPART C DIRECT SEQUENCE SPREAD SPECTRUM TRANSMITTER PROJECT NO.: 1L0136RUS1 EQUIPMENT: 802MIP Wireless LAN Combo ______________________________________________________________________________ Page 2 of 46 Table of Contents Section 1. Summary of Test Results..................................................................3 Section 2. Equipment Under Test (E.U.T.)........................................................5 Section 3. Powerline Conducted Emissions.......................................................8 Section 4. Minimum 6 dB Bandwidth.............................................................11 Section 4. Minimum 6 dB Bandwidth.............................................................12 Section 6. RF Exposure..................................................................................17 ANNEX A - TEST DETAILS.............................................................................33 ANNEX B - TEST DIAGRAMS.........................................................................43 Nemko Dallas FCC PART 15, SUBPART C DIRECT SEQUENCE SPREAD SPECTRUM TRANSMITTER PROJECT NO.: 1L0136RUS1 EQUIPMENT: 802MIP Wireless LAN Combo ______________________________________________________________________________ Page 3 of 46 Section 1. Summary of Test Results Manufacturer: Action Tek Model No.: 802MIP Wireless LAN Serial No.: None General: All measurements are traceable to national standards. These tests were conducted on a sample of the equipment for the purpose of demonstrating compliance with Part 15, Subpart C, Paragraph 15.247 for Direct Sequence Spread Spectrum devices. Radiated tests were conducted is accordance with ANSI C63.4-1992. Radiated emissions are made on an open area test site. A description of the test facility is on file with the FCC. New Submission Production Unit Class II Permissive Change Pre-Production Unit THIS TEST REPORT RELATES ONLY TO THE ITEM(S) TESTED. THE FOLLOWING DEVIATIONS FROM, ADDITIONS TO, OR EXCLUSIONS FROM THE TEST SPECIFICATIONS HAVE BEEN MADE. See “ Summary of Test Data”. NVLAP LAB CODE: 100426-0 Nemko Dallas Inc. authorizes the above named company to reproduce this report provided it is reproduced in its entirety and for use by the company’s employees only. Any use which a third party makes of this report, or any reliance on or decisions to be made based on it, are the responsibility of such third parties. Nemko Dallas Inc. accepts no responsibility for damages, if any, suffered by any third party as a result of decisions made or actions based on this report. This report applies only to the items tested. Nemko Dallas FCC PART 15, SUBPART C DIRECT SEQUENCE SPREAD SPECTRUM TRANSMITTER PROJECT NO.: 1L0136RUS1 EQUIPMENT: 802MIP Wireless LAN Combo ______________________________________________________________________________ Page 4 of 46 Summary Of Test Data NAME OF TEST PARA. NO. SPEC. MEAS. RESULT Powerline Conducted Emissions 15.207(a) 48 dBμV < 48 dBμV Complies Minimum 6 dB Bandwidth 15.247(a)(2) 500 kHz 9.42 MHz Complies Maximum Peak Power Output 15.247(b)(1) 1 Watt .048 Watts Complies Spurious Emissions (Antenna Conducted) 15.247(c) -20 dBc/100kHz < -20 dBc Complies Spurious Emissions (Restricted Bands) 15.247(c) Table 15.209(a) < -54 dBμV/m Complies Peak Power Spectral Density 15.247(d) +8 dBm/3kHz < +8 dBm/3 kHz Complies Processing Gain 15.247(e) 10 dB > 10 dB Complies Footnotes: Nemko Dallas FCC PART 15, SUBPART C DIRECT SEQUENCE SPREAD SPECTRUM TRANSMITTER PROJECT NO.: 1L0136RUS1 EQUIPMENT: 802MIP Wireless LAN Combo ______________________________________________________________________________ Page 5 of 46 Section 2. Equipment Under Test (E.U.T.) General Equipment Information Frequency Band: 902 – 928 MHz 2400 – 2483.5 MHz 5725 – 5850 MHz Channel Spacing: 5 MHz User Frequency Adjustment: Software controlled Nemko Dallas FCC PART 15, SUBPART C DIRECT SEQUENCE SPREAD SPECTRUM TRANSMITTER PROJECT NO.: 1L0136RUS1 EQUIPMENT: 802MIP Wireless LAN Combo ______________________________________________________________________________ Page 6 of 46 Family List Rational There are two models in this family of products: 1.) 802 MIP A combination wireless LAN and wired V.90 modem 2.) 802 MIP-W The same card as the 802 MIP above with V.90 components removed Nemko Dallas FCC PART 15, SUBPART C DIRECT SEQUENCE SPREAD SPECTRUM TRANSMITTER PROJECT NO.: 1L0136RUS1 EQUIPMENT: 802MIP Wireless LAN Combo ______________________________________________________________________________ Page 7 of 46 Description of Operation The EUT is a combination wired V.90 and wireless 802.11b modem. The wireless transmission is in the 2.4 – 2.4835 GHz band. The radio uses Direct Sequence Spread Spectrum modulation techniques. The antenna is embedded in the lid of a laptop computer and is therefore non- detachable. System Diagram Nemko Dallas FCC PART 15, SUBPART C DIRECT SEQUENCE SPREAD SPECTRUM TRANSMITTER PROJECT NO.: 1L0136RUS1 EQUIPMENT: 802MIP Wireless LAN Combo ______________________________________________________________________________ Page 8 of 46 Section 3. Powerline Conducted Emissions NAME OF TEST: Powerline Conducted Emissions PARA. NO.: 15.207(a) TESTED BY: David Light DATE:4/16/01 Test Results: Complies. Measurement Data: See attached plots. Measurement Uncertainty: +/- 0.7 dB Nemko Dallas FCC PART 15, SUBPART C DIRECT SEQUENCE SPREAD SPECTRUM TRANSMITTER PROJECT NO.: 1L0136RUS1 EQUIPMENT: 802MIP Wireless LAN Combo ______________________________________________________________________________ Page 9 of 46 Test Data – Powerline C…
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TX (Laptop) Controller RF Gen. 20 dB Atten . Shielded Box Var. Atten. RF Wattmeter “A” RF Wattmeter “B” Spectrum Analyzer (optional) 16 dB Atten. (6 dB + 10 dB) 6 - 60 dB Receiver Under Test RX (Laptop) Controller Shielded Box 2-Way Combiner (6 dB) 2-Way Combiner (6 dB) 2-Way Splitter (6 dB) (optional) 2-Way Splitter (6 dB) Note 1. NOTES: 1. If Spectrum Analyzer is not used, delete optional 2-Way Splitter, connect RF Wattmeter “B” directly to previous Split- ter and change 16 dB Attenuator to 10 dB. (1/2 H-P 438A with 8481D sensitive Test Set-up - Processing Gain (Note 1. ) (Marconi 2041) Trans- mitter (1/2 H-P 438A with 8482 Sensor or equiv.) (H-P 11667B or equiv - typical) Sensor or equiv.) (Weinschel 940-60-11 or equiv) Brief Explanations on Processing Gain Data 1. The formula of Processing Gain is: Gp = (S/N)o +Mj + Lsys Where Gp: Processing Gain; (S/N)o: the ratio of signal energy vs noise power density. Based on the data provided by the chip set manufacturer, it is 16.4dB @11Mb/s, 13.4dB @5.5Mb/s, 13.3dB @2.0Mb/s, 10.3dB @1.0Mb/s; Lsys: test system loss. The measurement result to our test set-up is 2.0dB; Mj: Jamming Margin. It is the ratio of jammer vs WLAN channel signal; 2. The purpose of the measurement here is to figure out Mj at different frequencies. Processing Gain will be gotten through calculation based on the above formula at different frequencies; 3. During the tests (see the Block Diagram of Test Set-up), the input signal to RX is about –60dBm (not exactly at –60dBm) and Mj (dB) = Jammer level (dBm) – Channel signal level (dBm); 4. The criteria we define the transmission link failure is: PER = 8%; 5. FCC defines that when testing the Processing Gain for a specific channel, if the frequency is fo, the jammer frequency has to scan from fo-8.5 MHz to fo+8.5MHz with 50 KHz per step. In another word, 340 data will be taken just for a single channel measurement; 6. Having calculated out 340 Processing Gains for a specific channel, use the percentile average function of Microsoft Excel to figure out the final result. Example: see the first row of 11Mb/s @ Channel 6 Frequency—Jammer frequency = fo-8.5 =2437-8.5 = 2428.50 MHz; (S/N)o—16.4 dB @11 Mb/s (see Item 1); Lsys—2.0 dB (see Item 1); PER— 8.0%, which is the failure criteria; Jammer— -57.2dBm, which is the Jammer level @ PER=8.0%; Mj—Jamming Margin. 5.5 (dB) = -57.2 (dBm) – (-62.7) (dBm) (see Item 3). On here, also see the next page of spread sheet, which shows that XMIT level = -62.7 dBm); Gp—Processing Gain = (S/N)o + Mj + Lsys = 16.4 + 5.5 + 2.0 = 23.9 (dB). After having calculated out 340 Gps, use the percentile function of Microsoft Excel, the final Gp of 11Mb/s @ Ch 6 is 12.9 dB. At the same time, incorporate those 340 data into f—Gp chart, you’ll get a whole picture of it. Chip/symbol rate, the symbol/bit rate and the Chip/bit Bit rate Chip/symbol rate Bit/symbol rate Chip/bit rate Gp (dB) Spe c (dB) 1 Mbit/sec 11 1, DBPSK 11 13.2 10 2 Mbit/sec 11 2, DQPSK 5.5 12.6 10 5.5 Mbit/sec 8 4, CCK 2 13.4 10 11 Mbit/sec 8 8, CCK 1 12.9 10 Note: 1. Gp is Processing Gain; 2. Spec is Processing Gain specifications defined by FCC on DSSS systems. Processing GainISL37400M 11Mbps CHANNEL 6 Processing Gain Gp = (S/N)o + Mj + Lsys Freq.Gp(S/N)oMj=J/SLsysJammerPER (MHz)(dB)(dB)(dB)(dB)(dBm)(%) 2428.5023.916.45.52.0-57.2<=8.0 2428.5523.916.45.52.0-57.2<=8.0 2428.6023.916.45.52.0-57.2<=8.0 2428.6523.816.45.42.0-57.3<=8.0 2428.7023.816.45.42.0-57.3<=8.0 2428.7524.016.45.62.0-57.1<=8.0 2428.8024.116.45.72.0-57.0<=8.0 2428.8524.116.45.72.0-57.0<=8.0 2428.9024.216.45.82.0-56.9<=8.0 2428.9524.116.45.72.0-57.0<=8.0 2429.0024.416.46.02.0-56.7<=8.0 2429.0524.316.45.92.0-56.8<=8.0 2429.1024.316.45.92.0-56.8<=8.0 2429.1524.316.45.92.0-56.8<=8.0 2429.2024.416.46.02.0-56.7<=8.0 2429.2523.716.45.32.0-57.4<=8.0 2429.3023.316.44.92.0-57.8<=8.0 2429.3523.216.44.82.0-57.9<=8.0 2429.4022.216.43.82.0-58.9<=8.0 2429.4521.316.42.92.0-59.8<=8.0 2429.5021.216.42.82.0-59.9<=8.0 2429.5521.116.42.72.0-60.0<=8.0 2429.6021.116.42.72.0-60.0<=8.0 2429.6521.016.42.62.0-60.1<=8.0 2429.7021.016.42.62.0-60.1<=8.0 2429.7520.816.42.42.0-60.3<=8.0 2429.8020.716.42.32.0-60.4<=8.0 2429.8521.116.42.72.0-60.0<=8.0 2429.9021.016.42.62.0-60.1<=8.0 2429.9521.116.42.72.0-60.0<=8.0 2430.0020.916.42.52.0-60.2<=8.0 2430.0520.916.42.52.0-60.2<=8.0 2430.1020.516.42.12.0-60.6<=8.0 2430.1519.516.41.12.0-61.6<=8.0 2430.2019.516.41.12.0-61.6<=8.0 2430.2519.016.40.62.0-62.1<=8.0 2430.3019.016.40.62.0-62.1<=8.0 2430.3518.716.40.32.0-62.4<=8.0 2430.4018.716.40.32.0-62.4<=8.0 2430.4518.516.40.12.0-62.6<=8.0 2430.5018.416.40.02.0-62.7<=8.0 2430.5518.416.40.02.0-62.7<=8.0 2430.6018.416.40.02.0-62.7<=8.0 2430.6518.116.4-0.32.0-63.0<=8.0 2430.7017.916.4-0.52.0-63.2<=8.0 2430.7517.416.4-1.02.0-63.7<=8.0 2430.8017.416.4-1.02.0-63.7<=8.0 2430.8517.116.4-1.32.0-64.0<=8.0 2430.9017.116.4-1.32.0-64.0<=8.0 2430.9516.916.4-1.52.0-64.2<=8.0 2431.0016.816.4-1.62.0-64.3<=8.0 2431.0516.716.4-1.72.0-64.4<=8.0 2431.1016.716.4-1.72.0-64.4<=8.0 2431.1516.316.4-2.12.0-64.8<=8.0 2431.2016.516.4-1.92.0-64.6<=8.0 2431.2516.416.4-2.02.0-64.7<=8.0 2431.3016.316.4-2.12.0-64.8<=8.0 2431.3516.316.4-2.12.0-64.8<=8.0 2431.4015.816.4-2.62.0-65.3<=8.0 2431.4515.916.4-2.52.0-65.2<=8.0 2431.5015.716.4-2.72.0-65.4<=8.0 2431.5515.516.4-2.92.0-65.6<=8.0 2431.6015.416.4-3.02.0-65.7<=8.0 2431.6515.216.4-3.22.0-65.9<=8.0 2431.7015.116.4-3.32.0-66.0<=8.0 2431.7515.016.4-3.42.0-66.1<=8.0 2431.8015.016.4-3.42.0-66.1<=8.0 2431.8514.916.4-3.52.0-66.2<=8.0 2431.9015.016.4-3.42.0-66.1<=8.0 2431.9515.116.4-3.32.0-66.0<=8.0 2432.0015.116.4-3.32.0-66.0<=8.0 2432.0515.116.4-3.32.0-66.0<=8.0 2432.1015.016.4-3.42.0-66.1<=8.0 2432.1514.816.4-3.62.0-66.3<=8.0 2432.2014.916.4-3.52.0-66.2<=8.0 2432.2514.916.4-3.52.0-66.2<=8.0 2432.3014.816.4-3.62.0-66.3<=8.0 2432.3514.616.4-3.82.0-66.5<=8.0 2432.4014.316.4-4.12.0-66.8<=8.0 2432.4514.516.4-3.92.0-66.6<=8.0 2432.5014.616.4-3.82.0-66.5<=8.0 2432.5514.516.4-3.92.0-66.6<=8.0 2432.6014.316.4-4.12.0-66.8<=…
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Power Line Conducted Power Line Conducted Radiated Radiated
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 95.50 mW |

Wi-Fi 7 Outdoor Mesh AP
Equipment Class
DTS - Digital Transmission System
Wi-Fi 7 Outdoor Mesh AP
Equipment Class
DTS - Digital Transmission SystemTri-band Wi-Fi 6E Wireless AP
Equipment Class
DTS - Digital Transmission System
Tri-band Wi-Fi 7 Wireless AP
Equipment Class
6ID - 15E 6 GHz Low Power Indoor Access Point
Wi-Fi 6E Mesh Extender
Equipment Class
DTS - Digital Transmission System