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PB2WO80AChameleon WLAN 80 Wireless LAN Adapter

Wav Inc.
Chameleon WLAN 80 Wireless LAN Adapter - FCC ID PB2WO80A - Wav Inc.
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Mar 13, 2001
Application Purpose
Original Equipment
Date of Application
Oct 31, 2000
Equipment Note
Chameleon WLAN 80 Wireless LAN Adapter
Frequency Range
2412.00000000 - 2462.00000000
Company
Wav Inc.
Country
United States

Documents & Files

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Users Manual

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Attestation Statements

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Block Diagram

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Cover Letter(s)

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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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

PLANNED STATEMENTS FOR MANUAL USA - Federal Communications Commission (FCC) Interference Statement This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) this device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. Information to the user. NOTE: This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses, and can radiate radio frequency energy. If not installed and used in accordance with the instructions, it may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try and correct the interference by one or more of the following measures: · Reorient or relocate the receiving antenna. · Increase the distance between the equipment and the receiver. · Connect the equipment to an outlet on a circuit different from that to which the receiver is connected. · Consult the dealer or an experienced radio/TV technician for help RF Safety Statement Caution: Exposure to Radio Frequency radiation. When external antennae with gains over 0dBi are connected to the WAV PC Card they shall be placed in such a manner to minimize the potential for human contact during normal operation. In order to avoid the possibility of exceeding the FCC radio frequency exposure limits, human proximity to the antenna shall not be less than 20 cm (8 inches) during normal operation. WAV Inc. is not responsible for any radio or television interference caused by unauthorized modification of the devices included with this IEEE 802.11 WAV PC Card, or the substitution or attachment of connecting cables and equipment other than specified by WAV Inc. The correction of interference caused by such unauthorized modification, substitution or attachment will be the responsibility of the user.

Attestation Statements

Product Specifications Material:Polycarbonate radome, aluminum feed Length/Weight: 3 dBi Models16 inches, 1.5 lbs 6 dBi Models19 inches, 1.5 lbs 9 dBi Models27 inches, 2.0 lbs 12 dBi Model41 inches, 2.5 lbs Antenna Diameter:1", main mast OD Series Interface:N female connector Mounting Kit:Mast mount kit included Mounting Dimensions:Use mast up to 2" OD Options:Reflector Option Kit Pigtail Cable Option Part 15 Reverse Connectors 3 dBi, 6 dBi, 9 dBi & 12 dBi antennas provide uniform omni coverage Unique design allows economical build out Mounting kit includes all hardware needed Reflector option provides directional beamshaping & increased performance OD Series Omni Antenna For WLAN, Video, PCS, and Data Systems The OD Series Antennas are optimized for use in a wide variety of wireless systems. Typical uses include WLAN access points or bridge, PCS Microcell, WLL and surveil- lance transmitters. These antennas consist of a collinear array with elements stacked vertically. Unique phasing cancels out-of-phase current distribution, improving system performance. This design maintains an omni pattern in the horizontal plane. The OD Series are free space antennas; no ground plane is required. An option for the OD series is a reflector kit that beam shapes the omni pattern into a directional cardioid shape. This can result in improved directional gain, and isolation for reduced interference. The low profile black radome (1" diameter) makes the antennas durable and rugged. They can withstand the harshest environments of snow, wind, rain and ice. The feed assembly is made of precision machined aluminum components and is irridited for weather protection. The antennas comes with all the hardware needed to install it to a mast. The OD antennas normally terminate with a Specifications Frequency & Gain:See above Bandwidth @2:1 SWR:140 MHz, 85 MHz for OD12 Nominal Impedance:50 ohms Max. Power (continuous):100 watts Vertical Beamwidth (-3 dB point): 3 dBi Model55 degrees 6 dBi Models25 degrees 9 dBi Models14 degrees 12 dBi Model 7 degrees Wind Loading (flat plate equiv.):30-40 sq. inches Rated Wind Velocity:100+ mph Lightning Protection:External suggested female N connector. Optional models include pigtail cable with connector. For ISM, Part 15 compliant connectors are available (reverse polarized), please consult factory. Model Numbers ModelFreq.(MHz)GainApplications OD6-19001850-19906 dBiPCS, CDMA/TDMA OD9-19001850-19909 dBiPCS, CDMA/TDMA OD3-24002400-24853 dBiWLAN, ISM, Video OD6-24002400-24856 dBiWLAN, ISM, Video OD9-24002400-24859 dBiWLAN, ISM, Video OD12-2400 2400-2485 12 dBiWLAN, ISM, Video Frequencies subject to bandwidth constraints; confirm desired frequencies at time of order. For pigtail cable options and special frequencies, please consult factory for latest model numbers and configurations. Reflector OptionsModel Add-on kit for 6 dBi modelsODR6-Kit Add-on kit for 9 dBi modelsODR9-Kit Add-on kit for 12 dBi modelsODR12-Kit OD9, OD12, OD6 Shown OD9 Mounted & Reflector Kit US Office & Headquarters: 3900-B River Road, Schiller Park, IL 60176 Tel: 800-648-2800 or 847-671-6690 Fax: 847-671-6715 UK Office: 106 Anglesey Business Park, Hednesford, Staffs. WS12 5NR UK Tel: (+44) 1543-878343 Fax: (+44) 1543-871714 Visit our web page at www.mobilemark.com. Specifications subject to change without notice (6/2000).

Attestation Statements

Telex ® Technical Data WLAN Antenna Order No. 2415AB Specifications Electrical: Frequency Range ......................................................................................................................2400-2483 MHz VSWR ...................................................................................................................Less than 2:1, 1.5:1 Nominal Nominal Impedance...............................................................................................................................50 ohms Gain ......................................................................................................................13.5 dBi (11.3 dBd) Nominal Front-to-Back ratio ................................................................................................................greater than 20 dB Half-power Beamwidth ......................................................................................................................30 degrees Polarization.............................................................................................................................................Vertical Mechanical: Size ........................................................................................................................................................18" long Mounting method ............................................................................clamps to vertical mast up to - 1 5/8" O.D. Cable length ...................................................................................................................................................36" Cable Type ......................................................................................RG-58 A/U Type, 50 ohm, low-loss, white Connector ........................................................Specify Reverse TNC (polarized) or Reverse SMA (polarized) General Description This antenna is a totally enclosed 16 element Yagi an - tenna for the 2400 to 2483 MHz frequency band. It is de - signed to be used as a bridge antenna between two networks or for point to point communications. It has a nominal VSWR of 1.5:1 and is less than 2:1 over the en - tire frequency band. The gain is 13.5 dBi and the half-power beamwidth is 30 degrees. This antenna is normally mounted on a mast and is vertically polarized. R 8601 East Cornhusker Highway, Lincoln, NE 68505 Phone: (402) 467-5321 FAX: (402) 467-3279 Since it is the intent of TELEX COMMUNICATIONS, INC. to continually improve its prod - ucts, Telex reserves the right to make specification and design changes without notice. Printed in U.S.A.April 2000

Block Diagram

Block diagram description of the Lucent WaveLAN PC Card 2.4GHz, High Speed 1 WaveLAN PC Card 2.4 GHz High Speed DESCRIPTION OF THE BLOCK DIAGRAM The various parts of the Block diagram are numbered and an explanation is given of these blocks. First the transmitter will be described: A) Digital Signal Processor. (22) Function : Generate spreaded signal with an Barker sequence of 11, the original raw data rate of 1, 2, 5.5 or 11 Megabits is transformed to a symbol rate of one MegaBaud and multiplied with eleven and modulated with a DQPSK ( Differential Quadrature Phase Shift Keying ) Modulation for 1 and 2 Mbps or DQPSKCCK (CCK = Complementary Code Keying) for 5.5 and 11 Mbps. The unfiltered data comes out of I and Q and goes to the up/down mixer (6) B) The above signals are mixed in (6) in a so called quadrature modulator with the Intermediate Frequency ( IF) of 352 MHz. C) The upmixer is fed by the VCO of 704 MHz, which is divided by 2 to 352 MHz. D) The SAW ( 8 ) filters all unwanted mixing products, such that only the 352 MHz band remains. E) This signal goes into the RF upmixer ( 9) SA2420 were it is mixed with the RF VCO with a range of 2050 to 2150 MHz. F) The Rx/Tx switch (17) brings the signal to the variable attenuator (10 ), where the output level is controlled. G) The signal is fed through a 2.4- 2.5 GHz bandpass filter (11) to remove all unwanted mixer products, and thus to get a clean signal for further processing. H) The signal is amplified in (12), with approx 23 dB to an output level of approx. 15 dBm I) This signal goes to the RX/TX antenna (23/24) via the special connector with a switch inside to disable the antenna. J) The output power is controlled with a so called power feed back loop (15) in which the output power is compared with a DAC value from (10) Receiver functions. K) The receive signal enters the antenna passes the RX/TX switch (14) and (13) this is set to RX mode. L) The signal goes through the 2.4 GHz filter (16) to remove all unwanted spectral components in order to deliver a clean signal for the receiver. M) A Low Noise Amplifiers (LNA) (in 9) is used to amplify the weak signal to a level fitted for down mixing. N) The AGC (27) can amplify or attenuate the signal according to the Digital signal processor required input with a step size of 26 dB. O) Again the Rx/Tx switch in the Rx mode is passed and also the same filter as in transmit mode ( 18). P) The down mixer (9) mixes the 2.4 GHz with the 2.1 GHz to the 352 MHz IF. Q) The signal of 352 MHz is amplified again (9) and filtered by a SAW filter (19) to give a clean signal for the second mixer. Block diagram description of the Lucent WaveLAN PC Card 2.4GHz, High Speed 2 R) The Downmixer (6) mixes the 352 MHz signal down to the I and Q signals, also the auto gain control can increase the level to the required level via line 20. S) The very low amplitude baseband I and Q signal is amplified in the AMPs (6) to a level fitted for the Analog to Digital converters (22), which make it a proper signal for the digital signal processor. T) The digital signal processor (22) removes the spreading as present on the signal with a so called autocorrelation function. The resulting output of the processor is a received data rate of 1, 2, 5.5 or 11 Megabits. VCO , PLL and OSC. U) These three form one entity to generate a single tone signal for down mixing. There are two of these blocks available, one for the IF LO (7 and 6 ) (352MHz ) and one for the RF LO (25 and 26) of 2050 to 2150 MHz. V) All the PLL’s and the processor (2) have one reference Crystal of 22 MHz (4) with an accuracy of 25 ppm. General circuits: W) Antenna Diversity. This functin may be placed on the radio board or on extended board (as part of external antenna. Depending on the signal strength and signal quality the Digital processor (22) can choose between the two antenna’s (23) and (24) which gives the best signal. This is done initial during the training sequence in the received signal. X) Automatic Gain control. Depending on the signal strength and signal quality the Digital processor (22) can choose to increase or decrease the signal level at the digital input, this is done by reducing or increasing the gain in the receiver via the LNA-AGC (in 9). Y) The Signal processor (22) can read via the MAC (2) the registers for programming all parameters for transmit/receive functions Z) The MAC is used to do the handshaking with the PCMCIA bus (1 ) and handling the IEEE protocol. Also used to load the PLL frequencies and dividers, also used to interface to the FlashROM which contains all parameters for the PLL’s and the Callcode. AA) Not shown is the regulator to supply the 3.3 Volt out of the 5 Volt out of the PCMCIA Bus (1) Guus Jansen Rev. A 12Apr99/BVos Block diagram description of the Lucent WaveLAN PC Card 2.4GHz, High Speed 3 INDICATION MAIN PARTS Rev. A 12Apr99/BVos 2: HERMES 3. AT29C010 4 CDFDCJ2 5. KM68V1000 6. SA1630 7. MQE 901-704 8 + 19. L545D 9. SA2420 11 + 18. LFSN30N17C2450B 12. BFP420 + BFP450 13 + 17. BAR63 14. BAR80 16. LFJ30-07B2450 22. THESEUS-HS (High Sped) 25. MQG101-2098 26. UMA1021

Cover Letter(s)

Federal Communications Commission Equipment Approval Services P.O. Box 358315 Pittsburgh, PA 15251-5315 RE: Modular Transmitter Certification Request for WAV Chameleon WLAN80 FCC ID: PB2WO80A Date: November 1, 2000 To The Commission: This certification request is for the WAV Chameleon Model WLAN80 PCMCIA WLAN Module. The WLAN80 is a 2.4 GHz direct sequence 11 Mb/s transceiver incorporated into a PCMCIA package. This device is identical to the Lucent WaveLan RF-Modem for Wireless LAN Model LUC PC24-H-FC, test report 56305-90203-1, FCC ID: IMRWLPC24H. The difference being that WAV inc. has tested this device as a modular transmitter with additional antennas not tested by Lucent. This request is for modular transmitter approval per DA 00-1407 Released June 26,2000 and 15.247. Addressing DA 00-1407 this device: 1. This device has it’s own RF shielding and was tested as a stand-alone device. 2. This device has buffered modulation/data inputs. 3. This device has it’s own power supply regulation. 4. This device incorporates a unique antenna connector per section 15.203 and 15.204(c). Please reference Lucent’s original submission. 5. This device was tested in a stand-alone configuration. 6. This device is labeled with it’s own FCC identification number. When installed in another device, the outside of the device into which the module is installed will display a label stating: “CONTAINS FCC ID: PB2WO80A” 7. Section 15.231 does not apply to this device. 8. Sections 2.1091, 2.1093, 15.319(I), 15.407(f), 15.253(f), 15.255(g) do not apply to this device. This device complies with 15.247(b)(4) when operated in a portable product because the device is limited to a 0dBi gain antenna and is incapable of transmitting over 15dBm (32mW). For fixed applications, the manual states the antenna must be at least 20cm from human proximity. See user manual for additional clarification. Form 159 has been electronically paid via credit card. If there are any questions about this request, please call me at the number below. Thank you for your attention. Respectfully submitted, Charles D. Bolvin Technical Services Manager WAV Inc. [email protected] 630-818-1006 Voice 630-818-4450 FAX

Cover Letter(s)

Nederland B.V. Zadelstede 1-10 3431 JZ Nieuwegein The Netherlands Phone: +31 30 6097666 Fax: +31 30 6097556 FCC... Nieuwegein, 27 September 2000 Re: Processing Gain WaveLAN PC Cards - For Chip/symbol rate etc. see the table below: Bit rateChip/symbol rateBit/symbol rateChip/bit rate 1 Mbit/sec111, DBPSK11 2 Mbit/sec112, DQPSK5.5 5.5 Mbit/sec84, CCK2 11 Mbit/sec88, CCK1 Sincerely yours, Bert Vos, Certifications Support, Email: [email protected] Encl. cc:

Internal Photos

Internal, Top View Internal, Bottom View

Test Report

October 31, 2000 WAV, Inc. Attn:Mr. Chuck Bolvin 245 West Roosevelt Road Building 7, Suite 48 West Chicago, IL 60185 UL Reference:File MC1343, Project 00NK34916 Subject:EMC Test and Measurement Report for Chameleon WLAN 80 Modular Transmitter Dear Mr. Bolvin: We have provided with this letter your EMC Test Report for the above referenced model. The product was determined to comply with the requirements noted in the report. Please review the attached report and direct any questions or comments to me. Samples were returned following testing. We appreciate your interest in UL’s EMC Services, and encourage you to contact us in the future should you need EMC test services. This closes Project 00NK34916. Best regards,Reviewed by: Jack Steiner (Ext 42307)Michael J. Windler Engineering Group LeaderAssociate Managing Engineer International EMC ServicesInternational EMC Services UL International EMC Services 333 Pfingsten Road Northbrook, Illinois 60062-2096 (800) 873-8536 Fax No. (847) 272-8864 http://www.ul.com/emc/ FCC ID: PB2WO80A File MC1343 Project 00NK34916Page 1 of 10 UL International EMC Services www.ul.com/emc (800) USE UL EMC EMC – TEST REPORT Issue Date: October 31, 2000 √EMISSIONS IMMUNITY Test Report File No.:MC1343 Project No.:00NK34916 Model / Type:Chameleon WLAN 80 Kind of Product:Modular Transmitter Applicant:WAV, Inc. License Holder:WAV, Inc. Address:245 West Roosevelt Road :Building 7, Suite 48 :West Chicago, IL 60185 Manufacturer:Same as Applicant : Test Result : COMPLIANT This report without appendices consists of 10 pages. Appendix A contains test photos, Appendix B contains original test data, Appendix C contains sample calculations and Appendix D contains a block diagram of the measurement system. The data contained in this report reflects only the items tested in the configurations and mode of operations described. An attempt has been made to arrange the EUT, with the equipment provided, into a test configuration which maximizes the observed emissions of the EUT while simulating, as close as practical, a typical end-use installation. The photos and data provided in this report document that configuration. Underwriters Laboratories Inc. authorizes the above company to reproduce this report provided it is reproduced in its entirety. Underwriters Laboratories Inc.333 Pfingsten Rd. Northbrook, IL 60062 Fax: (847) 272-8864 FCC ID: PB2WO80A File MC1343 Project 00NK34916Page 2 of 10 UL International EMC Services www.ul.com/emc (800) USE UL EMC REPORT DIRECTORY SECTIONTITLE GENERAL 1.0 General Product Description 1.1 Model Differences 1.2 Environmental Conditions in Test Lab 1.3 Calibration Details of Equipment Used for Measurement 1.4 EUT (Equipment Under Test) Configuration 1.5 Antenna Configuration 1.6EUT Operating Mode 1.7Device Modifications EMISSIONS 2.0Emissions Test Regulations Radiated Electric Field Emissions IMMUNITY 3.0Immunity Test Regulations CONCLUSION 4.0General Remarks 4.1Summary APPENDICIES ATest Setups (Photos, Diagrams and Drawings) BTest Data CSample Calculations DBlock Diagram of the Measurement System FCC ID: PB2WO80A File MC1343 Project 00NK34916Page 3 of 10 UL International EMC Services www.ul.com/emc (800) USE UL EMC 1.0GENERAL PRODUCT DESCRIPTION The EUT is a 2.4GHz, direct sequence spread spectrum modular transmitter in a self- contained PCMCIA card. The EUT is identical to a previously certified device (Lucent Technologies, Model LUC PC24 –H-FC, FCC ID: IMRWLPC24H), except for the following: 1. External antenna configurations. 2. The Lucent card was tested inside a host laptop computer. This EUT (Chameleon WLAN 80) was tested external to a laptop. The original Lucent Test Report is attached as Attachment 1 (Senton Test Report No. 56305-90203-1) for reference purposes. 1.0.1Equipment Mobility: Table-top 1.0.2Test Voltage and Frequency: Voltage (V)Frequency (Hz) 12060 1.1MODEL DIFFERENCES Any other model(s) represented by the models tested in this investigation will be documented by the manufacturer. 1.2ENVIRONMENTAL CONDITIONS IN TEST LAB Temperature:20-25 °C Relative Humidity:30-60% RH Atmospheric Pressure:860-1060 mbar 1.3CALIBRATION OF EQUIPMENT USED FOR MEASUREMENT All test equipment and test accessories are calibrated on a regular basis. The maximum time between calibrations is one year or what is recommended by the manufacturer, whichever is less. All test equipment calibrations are traceable to the National Institute of Standards and Technology (NIST), therefore, all test data recorded in this report is traceable to NIST. FCC ID: PB2WO80A File MC1343 Project 00NK34916Page 4 of 10 UL International EMC Services www.ul.com/emc (800) USE UL EMC 1.4EUT CONFIGURATION(s) See Appendix A for individual set-up configuration(s). In addition to the EUT, the following peripheral devices and/or cables were connected during the measurement: DeviceManufacturerModelSerial #FCC ID EUT Chameleon WLAN 80 (Lucent Silver OEM 802.11b 2.4Ghz WLAN Adapter) LucentChameleon WLAN 80 (Lucent Model 012699/B) 00UT25330564PB2WO80A (Lucent IMRWLPC24H) CF-25 Laptop Computer PanasonicCF-25EGC2AAMN/AACJ9TGCF-25 Lightning Arrestor AMPP/N: 15X24B999XN/AN/A PCMCIA Card Extender SwartP/N: EXT-PCM-68-CC N/AN/A PCMCIA Extender Cable Assembly 20cm Card-WizeP/N: FLEX-11N/AN/A 12 dBi OMNI Antenna MobileMarkP/N: OD12-2400N/AN/A 13.5 dBi YAGI Antenna TelexP/N: 2415ABN/AN/A CableManuf.LengthTypeShield TypeShield Termination YAGI LMR-200 Coaxial Cable STD N Lucent20 feetP/N: 848 274 171Bonded aluminum foil and tinned copper braid Continuous YAGI Lucent to STD N Male Pigtail LucentN/AP/N: 848 223 350N/AN/A OMNI Belden 9913 Coaxial Cable RP-TNC Aironet20 feetP/N: 420-003346-020 Tinned copper braid Continuous OMNI Lucent to RP- TNC Jack Pigtail WAVN/AP/N: LUC-RPJACK N/AN/A FCC ID: PB2WO80A File MC1343 Project 00NK34916Page 5 of 10 UL International EMC Services www.ul.com/emc (800) USE UL EMC 1.5ANTENNA CONFIGURATIONS COVERED AntennaEUT Output Power Antenna Gain Total EIRPExposure Category *OMNI15…

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Test Report

EMV-PrüfzentrumEMI/EMC-Testcenter Page 1 of 165 Pages Straubing, March 24, 1999 T E S T - R E P O R T No. 56305-90203-1 for LUC PC24-H-FC RF-modem for wireless LAN Applicant:Lucent Technologies Nederland B.V. Purpose of testing:To show compliance with FCC Code of Federal Regulations, Part 15 Subpart C, Section §15.247 Note: The test data of this report relate only to the individual item which has been tested. This report shall not be reproduced except in full extent without the written approval of the testing laboratory. EMV-Prüfzentrum EMI/EMC-Testcenter FCC-ID: IMRWLPC24H Test Report No. 56305-90203-1 Page 2 of 165 Pages Table of Conte nts 1. Administrative Data....................................................................................3 2. Identification of Test Laboratory.................................................................4 3. Summary of Test Results...........................................................................5 4. Operation Mode of EUT..............................................................................6 5. Configuration of EUT and Peripheral Devices............................................8 6. Setup of Host..............................................................................................9 7. Measuring Methods..................................................................................10 7.1. Minimum 6 dB Bandwidth (§ 15.247.a2)............................................10 7.2. Maximum Peak Output Power (§ 15.247.b)........................................11 7.3. Peak Power Density (§ 15.247.d).................................................11 7.4. Conducted Emission 0.45 MHz - 30 MHz (§15.207)..........................12 7.5. Radiated Emission 30 MHz - 1 GHz (§15.209, §15.247.c, §15.205.a,b).......................................................................................14 7.6. Radiated Emission 1 GHz - 25 GHz (§15.209, §15.247.c, §15.205.a,b).......................................................................................16 8. Equipment List..........................................................................................18 9. Photographs Taken During Testing..........................................................20 10. List of Measurements...............................................................................26 11. Test Results..............................................................................................27 EMV-PrüfzentrumEMI/EMC-Testcenter FCC-ID: IMRWLPC24HTest Report No. 56305-90203-1 Page 3 of 165 Pages 1.Administrative Data Equipment Under Test (EUT): LUC PC24-H-FC Serial number(s):90890026(RF-modem) Sample no. 1(external antenna) Type of equipment:RF-modem using DSSS technology for wireless connection for e.g. portable and mobile computers which have a PCMCIA-bus. Parts/accessories: • RF-modem LUC PC24-H-FC, part no. 011337 • external omni-directional antenna AIN24-OD- 0202, part no. 010096 (for additional information see "Configuration of EUT and Peripheral Devices" on page 8) FCC-ID:IMRWLPC24H Applicant:Lucent Technologies Nederland B.V. (full address)Zadelstede 1-10 NL-3431 JZ Nieuwegein The Netherlands Contract identification:--- Contact person:Mr. Wout Kerkhof Manufacturer:Lucent Technologies Nederland B.V. Receipt of EUT:March 16, 1999 Date of test:March 16 to 23, 1999 Note:--- Responsible for testing:Rainer Heller Responsible for test report:Rainer Heller EMV-PrüfzentrumEMI/EMC-Testcenter FCC-ID: IMRWLPC24HTest Report No. 56305-90203-1 Page 4 of 165 Pages 2.Identification of Test Laboratory Test Laboratory:Senton GmbH EMI/EMC Test Center (full address):Aeussere Fruehlingstrasse 45 D-94315 Straubing Germany Contact person:Mr. Johann Roidt Communication:Telephone(+49) 0 94 21 / 55 22-0 Fax (+49) 0 94 21 / 55 22-99 eMail:[email protected] FCC file number:31040/SIT 1300F2 Industry Canada file number:IC 3050 EMV-PrüfzentrumEMI/EMC-Testcenter FCC-ID: IMRWLPC24HTest Report No. 56305-90203-1 Page 5 of 165 Pages 3.Summary of Test Results The tested sample (including accessories) complies with the requirements set forth in the Code of Regulations Part 15 Subpart C, Section §15.247 (intentional radiators) of the Federal Communication Commission (FCC). Johann RoidtRainer Heller Technical ManagerTest Engineer EMV-PrüfzentrumEMI/EMC-Testcenter FCC-ID: IMRWLPC24HTest Report No. 56305-90203-1 Page 6 of 165 Pages 4.Operation Mode of EUT All tests were performed using the "WaveLAN-II Engineering Test Program", Version v01.15b (Feb 24 1999). According to applicant three different kinds of modulation are used for transmission specified by the appropriate bit rate: Transmit mode (TX): Operating frequencyRated output power (conducted) [dBm]Test [GHz]Bit rate 2 MbpsBit rate 5.5 Mbps Bit rate 11 Mbps performed 1 2.412+15+15+15X 2.417+15+15+15 2.422+15+15+15 2.427+15+15+15 2.432+15+15+15 2.437+15+15+15 2.442+15+15+15X 2.447+15+15+15 2.452+15+15+15 2.457+15+15+15 2.462+15+15+15X Receive mode (RX): Operating frequency [GHz] Test performed 2.412 2.417 2.422 2.427 2.432 2.437 2.442X 2.447 2.452 2.457 2.462 Note: See next page for instructions supplied by applicant to achieve required operation mode. 1 Full testing with bit rate 11 Mbps only EMV-PrüfzentrumEMI/EMC-Testcenter FCC-ID: IMRWLPC24HTest Report No. 56305-90203-1 Page 7 of 165 Pages INSTRUCTIONS - TEST PROGRAM WaveLAN Engineering Test Program, V01.15b, Mar 15, 1999 SETUP • INSERT Modem • INSERT Test Program disk • SWITCH ON PC • GO TO A:\ • TYPE Cert_eng • MAIN MENU appears • SELECT INITIALISE and ENTER • INITIALISE appears for a short time, green power LED is on • Program returns automatically to MAIN MENU CHANNEL SELECTION • SELECT SET CHANNEL from MAIN MENU and ENTER • SELECT channel and ENTER • RESULTS appear • ESC (back to MAIN MENU ) TX MODE • SELECT TX CONTINUOUS ON from MAIN MENU and ENTER, • SET BIT RATE parameters: 2=2Mbps; 3=5.5Mbps; 5=11Mbps and ENTER (Modem transmits spectrum with specified bit rate on selected channel…

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Test Report

Measurement file output name is: 5mbit.cnd Input command file name is: INPUT.CMD Note: 5.5 Mbit, 6 dB SIR tested for ( 15 dB SNR - 10.4 + 1 impl. losses). Input CW correction level: 6 dB Takes into account 1 dB of implementation loss (allowed 2 dB). Lowcount is: 1000 messages Only RxD errors are taken into account since these need better SIR then preamble at 1 MBit Highcount is: 50000 messages Attention: Input the red cells for correct spreadsheet calculations! total errors 45 out of 280 measurement points. Rx level DUT is: -53 dBm percentage 16.07% Number of received data errors as a function of frequency and interference level OK? =<20%, OK Not measured combinations listed as "-1" HIJKLMN O PQ RS Uncorrected Interference level dialed at CW generator -60 -59 -58 -57 -56 -55 -54 -53 -52 RxD Errors PDA RxD Errors PDA Both error True CW interference level at receiver input (dBm) detected missing detected missing RxD and -66 -65 -64 -63 -62 -61 -60 -59 -58 full test full test up to CW AT CW PDA J/S ratio (dB) -13 #PDA -12 #PDA -11 #PDA -10 #PDA -9 #PDA -8 #PDA -7 #PDA -6 #PDA -5 #PDA range range =< -59 dBm = -59 dBm =< -59 dBm Frequency (Hz) (J/S = -5-1 dB) (J/S = -5-1 dB) time date 2409000000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:53:49 4/15/99 2409050000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:52:18 4/15/99 2409100000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:50:48 4/15/99 2409150000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:49:19 4/15/99 2409200000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 1000 0 50000 OK, 0 RxD error s OK, No PDA err o 000 15:47:48 4/15/99 2409250000 0 10…

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Contact Information

Applicant

Charles D Bolvin(VP of Technology)
[email protected]630-818-1006Fax: 630-818-4450

Technical Contact

WAV Inc.Charles D Bolvin
[email protected]630 818-1006

245 West Roosevelt Road · West Chicago, Illinois · United States

Non-Technical Contact

WAV Inc.Charles D Bolvin
[email protected]630 818-1006

Test Firm

UL LLCRick Titus
[email protected]847-664-3281Fax: 847-509-6321

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz35.00 mW

Other Applications from Wav Inc.

Bar Code Scanner and WiFi Interface - FCC ID PB24220CF10 - Wav Inc.
PB24220CF10

Bar Code Scanner and WiFi Interface

Nov 07, 2007

Equipment Class

DTS - Digital Transmission System
WAV ChameleonRF SPT1700 - FCC ID PB2SPT1700 - Wav Inc.
PB2SPT1700

WAV ChameleonRF SPT1700

Nov 17, 2003

Equipment Class

DSS - Part 15 Spread Spectrum Transmitter
WAV ChameleonRF hand held terminal - FCC ID PB2SPT1800 - Wav Inc.
PB2SPT1800

WAV ChameleonRF hand held terminal

Oct 08, 2003

Equipment Class

DSS - Part 15 Spread Spectrum Transmitter
Wrist-worn scanner transmitter - FCC ID PB2WT2270 - Wav Inc.
PB2WT2270

Wrist-worn scanner transmitter

Apr 24, 2003

Equipment Class

DSS - Part 15 Spread Spectrum Transmitter