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PE6AWL-1100CWireless Lan Card

Acrowave Systems Co., Ltd
Wireless Lan Card - FCC ID PE6AWL-1100C - Acrowave Systems Co., Ltd
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Apr 03, 2001
Application Purpose
Original Equipment
Date of Application
Apr 03, 2001
Equipment Note
Wireless Lan Card
Frequency Range
2400.00000000 - 2483.50000000
Company
Acrowave Systems Co., Ltd
Country
South Korea

Documents & Files

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Users Manual

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Block Diagram

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External Photos

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ID Label/Location Info

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Internal Photos

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Operational Description

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Schematics

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

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Block Diagram

Copyright© 2000 Acrowave Systems Co., Ltd. 01-04-05 1 of 1 HFA3841 MAC HFA3861 BBP HFA3783 QUAD IF HFA3683 RF/IF CONV HFA3983 RFPA PLL RF LO REF IN PLL I/Q LO I ADC Q ADC RF ADC IF DAC RF 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 PROTOCOL ACCELERATOR DATA ROUTER RADIO I/O HOST I/O PROC BLOCK BOOT BLOCK REF IN CAL_EN T/R_SW FLASH & VOLATILE RAM PROM To HOST

External Photos

Copyright© 2000 Acrowave Systems Co., Ltd. 01-04-05 ACROWAVE SYSTEMS CO., LTD. FCC ID: PE6AWL-1100C JOB #: 689K0 EXHIBIT #: 3A

ID Label/Location Info

Copyright© 2000 Acrowave Systems Co., Ltd. 01-04-05 FCC MARKING/LABEL FOR PART 15 FCC ID : PE6AWL-1100C MODEL NO.:AWL-1100C 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

ID Label/Location Info

LABEL LOCATION ACROWAVE SYSTEMS CO., LTD. FCC ID: PE6AWL-1100C JOB #: 689K0 EXHIBIT #: 2

Internal Photos

Copyright© 2000 Acrowave Systems Co., Ltd. 01-04-05 FCC ID: PE6AWL-1100C EXHIBIT #: 3B Copyright© 2000 Acrowave Systems Co., Ltd. 01-04-05 FCC ID: PE6AWL-1100C EXHIBIT #: 3C Copyright© 2000 Acrowave Systems Co., Ltd. 01-04-05

Operational Description

Copyright© 2000 Acrowave Systems Co., Ltd. 01-04-05 2.1 The Architecture The radio design is centered on the expected signal characteristics of the modulation method. A Differential Quadrature Phase Shift Keying (DQPSK) modulation encodes the data in terms of phase with minimal amplitude variation, improving noise immunity. This is joined with the IEEE 802.11 protocol standard Carrier Sense Multiple Access/Collision Avoidance (CSMA/CA) and with the FCC requirement for 10dB processing gain, to allow signals to be received with approximately 0dB Signal to Noise Ratio (SNR) for a 10 -5 Bit Error Rate (BER). The CSMA/CA protocol allows only one user, per channel, at a time (i.e., first come, first serve) making for a quieter medium. The processing gain, achieved by spreading the signal with a PN code, allows a faint signal to be pulled from the noise while suppressing non-correlating interferers. From the antenna, the received input is applied to the pre-select filter FL1. This filter is a two pole dielectric design, rejecting interferers outside the 2.4GHz ISM band and providing image rejection. The signal enters the HFA3683 RF/IF Converter, first passing through the integrated LNA section and then enters the down converter section of the HFA3683. Low-side local oscillator injection is used to mix down to the single intermediate frequency, 374MHz. The IF receive filter FL3, is a Surface Acoustic Wave (SAW) device used for channel selection within the band. The SAW output is reactively matched to the IF input of the HFA3783 Quadrature IF Modulator/Demodulator. In receive mode, the HFA3783 provides two limiting amplifiers, a quadrature baseband demodulator, and two baseband low pass filters. The two limiting amplifiers or limiters provide most of the receiver gain, giving the radio it’s sensitivity. The baseband circuit samples the waveform with 7-bit ADCs and then despreads and demodulates the received data. On the Transmit side, data can either be DBPSK or DQPSK modulated at 1MSPS (Mega Symbols Per Second), resulting in a baseband quadrature signal with I and Q components. These digital signals are output to the HFA3783 fifth order Butterworth low pass filters, which are used to provide shaping of the phase shift keyed (PSK) signal. The required transmit spectral mask, at the antenna, is -30dBc at the first side-lobe relative to the main lobe. The signals are then quadrature modulated up to IF using the same 2xLO used for the quadrature demodulation. The signal then goes to the high impedance input of the HFA3683 upconverting mixer for conversion to the 2.4GHz - 2.5GHz band. The mixer output goes to the pre-amplifier, in the HFA3683, amplifies the signal and easing the requirement for HFA3983 RFPA gain. FL2, a two pole dielectric bandpass filter, is used to suppress both transmit LO leakage and the undesired sideband. The HFA3983 RFPA amplifies the transmit signal to approximately +18dBm. ACROWAVE SYSTEMS CO., LTD. FCC ID: PE6AWL-1100C JOB #: 689K0 EXHIBIT #: 6A-6F Copyright© 2000 Acrowave Systems Co., Ltd. 01-04-05 The transmit sidelobe performance is approximately -30dBc. Allowing for a 3dB loss in the band select filter FL1, this gives a final output power of +15dBm. 2.2 Transmit Chain Front End Cascade Analysis The large gain in the Power Amplifier, HFA3983, keeps the signal level small for the whole chain before it. This helps conserve supply current and the cost associated with devices that need to handle large signals. The output power at the RF filter is shown as 15dBm, with the output of the Power Amplifier at 18dBm. The design has been optimized for the best use of supply current and cost of the PA. If the output power was lower, the supply current and cost of the PA could be saved with smaller and cheaper devices. If the output power was higher, the signal will be too close to the P1dB and the signal will have excessive distortion, causing regrowth of the side lobes. The transmitted signal must suppress side lobes to -30dB to meet the 802.11 spectral mask specification. Therefore, the output power needs to be controlled very carefully. The run to run variation in gain and insertion loss of the elements in the transmit chain requires either a manual power adjustment or an active power adjustment feedback circuit. In this design, a manual potentiometer is used to adjust output power and side lobe performance on each unit during manufacturing. For purposes of this analysis, the variable attenuator shows 0dB loss and the Modulator output as -12dBm. This was done for illustration purposes only, in actuality the Modulator output has a relatively large output (200mV P-P ) that needs to be significantly attenuated to the level indicated. 2.3 Power Amplifier(HFA3983) The HFA3983 is fabricated in the fastest SiGe BiCMOS process available, allowing superior RF performance, normally found only in GaAs ICs. Cost effective functions, normally requiring external components, are integrated into one IC. The HFA3983 integrates the following functions in one compact 28 pin EPTSSOP: Two Stage, 30dB Gain RFPA, Logarithmic power detect function (15dB Dynamic Range), CMOS level compatible Power Up/Down function, Single Supply, 2.7V to 3.6V Operation. The HFA3983 contains a highly linear RFPA designed to deliver 18dBm and meet an ACPR specification of -30dBc in the 2.4 to 2.5GHz ISM band. The performance of this two stage RFPA can be optimized by adjusting the bias current in each stage with a dedicated resistor. No external positive or negative power supplies are required to set the bias currents. The on chip bias network provides the optimum bias current temperature compensation when low TC external resistors are used. To get the best performance from the HFA3983, the output stage matching network can be tailored using external components. 2.4 2.4GHz RF/IF Converter and Synthesizer(HFA3683) Copyright© 2000 Acrowave Systems Co., Ltd. 01-04-05 The HFA3683A is a monolithic SiGe half duplex RF/IF transcei…

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Schematics

FEDERAL COMMUNICATIONS COMMISSION Laboratory Division 7435 Oakland Mills Road Columbia MD 21046 February 19, 2013 National Institute of Standards and Technology 100 Bureau Drive, Gaithersburg, MD 20899-2150 Attention: Ramona Saar Re: Scope designation Compliance Testing, LLC Dear Sir or Madam: We have been notified by National Institute of Standards and Technology that Compliance Testing, LLC has been accredited as a Telecommunications Certification Body for scope A1 - Low Power Transmitters below 1 GHz (except Spread Spectrum), Unintentional Radiators, EAS (Part 11) & Consumer ISM devices At this time your organization is hereby designated to authorize equipment subject to Certification under the Commission's rules for this scope with the following exclusions: The current TCB Exclusion List may be obtained at www.fcc.gov/labhelp by searching on publication number 628591 Technology for which no published test procedure is available is not eligible for TCB approval. This designation will expire upon expiration of the accreditation or notification of withdrawl of designation for this scope. The FCC TCB database may be accessed on the Internet at www.fcc.gov, E-Filing, OET TCB/Accreditor Electronic Filing, TCB Login. You may submit Certification applications by logging into this site. Sincerely, Rashmi Doshi Chief, Laboratory Division FEDERAL COMMUNICATIONS COMMISSION Laboratory Division 7435 Oakland Mills Road Columbia MD 21046 February 19, 2013 Compliance Testing, LLC 3356 N. San Marcos Place, Suite #107, Chandler, AZ 85225-7176 Attention: Steve Schafer Re: Scope designation Compliance Testing, LLC Dear Sir or Madam: We have been notified by National Institute of Standards and Technology that Compliance Testing, LLC has been accredited as a Telecommunications Certification Body for scope A1 - Low Power Transmitters below 1 GHz (except Spread Spectrum), Unintentional Radiators, EAS (Part 11) & Consumer ISM devices At this time your organization is hereby designated to authorize equipment subject to Certification under the Commission's rules for this scope with the following exclusions: The current TCB Exclusion List may be obtained at www.fcc.gov/labhelp by searching on publication number 628591 Technology for which no published test procedure is available is not eligible for TCB approval. This designation will expire upon expiration of the accreditation or notification of withdrawl of designation for this scope. The FCC TCB database may be accessed on the Internet at www.fcc.gov, E-Filing, OET TCB/Accreditor Electronic Filing, TCB Login. You may submit Certification applications by logging into this site. Sincerely, Rashmi Doshi Chief, Laboratory Division

Test Report

APPLICANT: ACROWAVE SYSTEMS CO., LTD. FCC ID: PE6AWL-1100C TABLE OF CONTENTS TEST REPORT CONTAINING: PAGE 1.............TEST EQUIPMENT LIST & TEST PROCEDURE PAGE 2.............TEST PROCEDURES CONTD. PAGE 3.............PRODUCT DESCRIPTION PAGE 4.............POWERLINE CONDUCTED INTERFERENCE DATA PAGE 5A-5B.........POWERLINE CONDUCTED PLOTS PAGE 6.............6.0dB BANDWIDTH & POWER OUTPUT PAGE 7.............6.0dB BANDWIDTH PLOT PAGE 8.............METHOD OF MEASURING RF CONDUCTED SPURIOUS EMISSIONS & SPURIOUS EMISSIONS AT ANTENNA TERMINALS PAGE 9.............RADIATION INTERFERENCE TEST DATA PAGE 10............METHOD OF MEASURING RADIATION INTERFERENCE PAGE 11............RADIATED SPURIOUS EMISSIONS INTO ADJACENT RESTRICTED BAND PAGE 12............BANDEDGE PLOT PAGE 13............POWER SPECTRAL DENSITY AND PROCESSING GAIN PAGE 14............POWER SPECTRAL DENSITY PLOT EXHIBIT ATTACHMENTS: EXHIBIT 1...........FCC ID LABEL SAMPLE EXHIBIT 2...........SKETCH OF FCC ID LABEL LOCATION EXHIBIT 3A..........FRONT & REAR VIEW EXTERNAL PHOTOS EXHIBIT 3B-C........COMPONENT SIDE & SOLDER SIDE INTERNAL PHOTOS EXHIBIT 4...........BLOCK DIAGRAM EXHIBIT 5A-5D.......SCHEMATICS EXHIBIT 6A-6F.......CIRCUIT DESCRIPTION EXHIBIT 7A-7F.......PROCESSING GAIN TEST METHODS EXHIBIT 8...........PROCESSING GAIN DATA EXHIBIT 9...........INSTRUCTION MANUAL EXHIBIT 10..........TEST SET UP PHOTO - RADIATED EXHIBIT 11..........TEST SET UP PHOTO - POWERLINE APPLICANT: ACROWAVE SYSTEMS CO., LTD. FCC ID: PE6AWL-1100C REPORT #: T:\CUS\A\ACRO\689K0\689K0RPT.DOC TABLE OF CONTENTS LIST TEST EQUIPMENT LIST 1._X_Spectrum Analyzer: HP 8566B-Opt 462, S/N 3138A07786, w/ preselector HP 85685A, S/N 3221A01400, Quasi-Peak Adapter HP 8565OA, S/N 3303A01690 & Preamplifier HP 8449B-OPT H02, S/N 3008A00372 Cal. 1/19/01 2._X_Biconnical Antenna: Eaton Model 94455-1, S/N 1057, Cal 3/15/00 3.___Biconnical Antenna: Electro-Metrics Model BIA-25, S/N 1171 Cal. 3/16/01 4._X_Log-Periodic Antenna: Electro-Metrics Model EM-6950, S/N 632 Cal. 3/15/00 5.___Log-Periodic Antenna: Electro-Metrics Model LPA-30, S/N 409 Cal. 3/15/00 6._X_Double-Ridged Horn Antenna: Electro-Metrics Model RGA-180, 1-18 GHz, S/N 2319 7.___18-26.3GHz Systron Donner Standard Gain Horn #DBE-520-20 8.___Horn 40-60GHz: ATM Part #19-443-6R 9.___Line Impedance Stabilization Network: Electro-Metrics Model ANS-25/2, S/N 2604 Cal. 2/9/00 10.___Temperature Chamber: Tenney Engineering Model TTRC, S/N 11717-7 Cal. 1/21/01 11.___Frequency Counter: HP Model 5385A, S/N 3242A07460 Cal 11/20/00 12.___Peak Power Meter: HP Model 8900C, S/N 2131A00545, Cal. 1/26/01 13._X_Open Area Test Site #1-3meters Cal. 12/22/99 14.___Signal Generator: HP 8640B, S/N 2308A21464 Cal. 11/21/00 15.___Signal Generator: HP 8614A, S/N 2015A07428 16.___Passive Loop Antenna: EMCO Model 6512, 9KHz to 30MHz, S/N 9706-1211 Cal. 6/10/00 17.___Dipole Antenna Kit: Electro-Metrics Model TDA-30/1-4, S/N 153 Cal. 11/24/00 18.___AC Voltmeter: HP Model 400FL, S/N 2213A14499 Cal. 2/1/01 19.___Digital Multimeter: Fluke Model 8012A, S/N 4810047 Cal 9/21/99 20.___Digital Multimeter: Fluke Model 77, S/N 43850817 Cal 11/16/00 21.___Oscilloscope: Tektronix Model 2230, S/N 300572 Cal 2/1/01 TEST PROCEDURE GENERAL: This report shall NOT be reproduced except in full without the written approval of TIMCO ENGINEERING, INC. Shielded interface cables were used in all cases except for cables connecting to the telephone line and the power cords. A test program was run which simulated a normal data transmission on a network. POWER LINE CONDUCTED INTERFERENCE: The procedure used was ANSI STAN- DARD C63.4-1992 using a 50uH LISN. Both lines were observed with the UUT transmitting. The bandwidth of the spectrum analyzer was 10kHz with an appropriate sweep speed. The ambient temperature of the UUT was 77oF with a humidity of 53%. APPLICANT: ACROWAVE SYSTEMS CO., LTD. FCCID: PE6AWL-1100C REPORT #: T:\CUS\A\ACRO\689K0\689K0RPT.DOC PAGE #: 1 TEST PROCEDURES CONTINUED BANDWIDTH 6.0dB: The measurements were made withe the spectrum analyz- er's resolution bandwidth(RBW)=1.0MHz and the video bandwidth(VBW) =3.0MHz and the span set as shown on Page 7A. POWER OUTPUT: The RF power output was measured at the antenna feed point using a peak power meter. ANTENNA CONDUCTED EMISSIONS: The RBW=100KHz, VBW=300KHz and the span set to 10.0MHz and the spectrum was scanned from 30MHz to the 10th Harmonic of the fundamental. Above 1.0GHz the resolution bandwidth was 1.0MHz and the VBW = 3.0MHz and the span to 50MHz. RADIATION INTERFERENCE: The test procedure used was ANSI STANDARD C63.4-1992 using a HEWLETT PACKARD spectrum analyzer with a prese- lector. The bandwidth(RBW) of the spectrum analyzer was 100kHz up to 1GHz and 1.0MHz above 1GHz with an appropriate sweep speed. The VBW above 1.0GHz was = 3.0MHz. The analyzer was calibrated in dB above a microvolt at the output of the antenna. The ambient temperature of the UUT was 77oF with a humidity of 53%. APPLICANT: ACROWAVE SYSTEMS CO., LTD. FCCID: PE6AWL-1100C REPORT #: T:\CUS\A\ACRO\689K0\689K0RPT.DOC PAGE #: 2 PRODUCT DESCRIPTION: This device is a wireless LAN adapter card that provides wireless connection between computers. / - - -- - - - - - - - - - - - - \ /----------\ /------------\ | |PCMCIA | | | | |WIRELESS |-| MICRON | | |NETWORK | | LAPTOP | | |CARD | | | \----------/ | COMPUTER | \------------/ | | | \ - - - - - - - - - - - - - - -- / FREQUENCY RANGE: 2.4-2.4835 GHz SUPPORT BIT RATES: 11 Mbps CCK, 5.5 Mbps CCK, 2 Mbps DQPSK, 1 mPBS dbsk SPREADING: DSSS (Direct Sequence Spread Spectrum) CHIP RATE: 11 Mcps ANTENNA: External 2 dBi Antenna with SMA connector MEDIA ACCESS PROTOCOL: CSMA/CA (Collission Avoidance) with ACK APPLICANT: ACROWAVE SYSTEMS CO., LTD. FCCID: PE6AWL-1100C REPORT #: T:\CUS\A\ACRO\689K0\689K0RPT.DOC PAGE #: 3 APPLICANT: ACROWAVE SYSTEMS CO., LTD. FCC ID: PE6AWL-1100C NAME OF TEST: POWER LINE CONDUCTED INTERFERENCE RULES PART NUMBER: 15.107(a) REQUIREMENTS: .45 - 30 MHz 250 uV OR 47.96 dBuV TEST PROCED…

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Test Report

APPLICANT: ACROWAVE SYSTEMS CO., LTD. FCC ID: PE6AWL-1100C NAME OF TEST: 6.0dB BANDWIDTH RULES PART NUMBER: 15.247(a)(2) REQUIREMENTS: The 6.0dB bandwidth must be greater than 500KHz. MEASUREMENT: The 6.0dB bandwidth measured @ 2442.00MHz was 11.10MHz. MEASUREMENT DATA: See plots on the next 2 pages. NAME OF TEST: POWER OUTPUT RULES PART NUMBER: 15.247(b) 1.0Watt or +30dBm MEASUREMENT: 35.6 mWATTS @ 2442.00 MHz 15.247(c) Method of Measuring RF Power output: The Peak power Sensor was connected in place of the antenna. /--------\ |HP | |PEAK | |PWR MTR | |8900C | \--------/ | /-----------\ /-----------------\ | | UUT | | PEAK POWER | | | Mounted |------| SENSOR HP84811A |------------------/ | in | \-----------------/ | Laptop | | computer | \-----------/ APPLICANT: ACROWAVE SYSTEMS CO., LTD. FCCID: PE6AWL-1100C REPORT #: T:\CUS\A\ACRO\689K0\689K0RPT.DOC PAGE #: 6 15.247(c) Method of Measuring RF Conducted Spurious Emissions /--------\ |HP | |Spectrum| |Analyzer| |8566B | \--------/ | /-----------\ /-----------------\ | |TRANSMITTER| | 50 OHM RESISTIVE| | | UNDER TEST|------| LOAD |-----\ /-------/ \-----------/ \-----------------/ | | |/-------\| \| |/ \-------/ ATTENUATOR NAME OF TEST: SPURIOUS EMISSIONS AT ANTENNA TERMINALS REQUIREMENTS: Emissions must be at least 20dB down from the highest emission level within the authorized band as measured with a 1 MHz RBW. EMISSION dB BELOW FREQUENCY CARRIER ___MHz___ _________ 2413.0 00.0 4824.0 55.2 7235.0 72.0 9648.0 66.0 2442.0 00.0 4884.0 57.9 7328.0 69.4 9772.0 68.4 2467.0 00.0 4934.0 47.5 7402.0 65.7 9868.0 66.4 14802.0 70.3 NOTE: THE SPECTRUM WAS SCANNED TO THE TENTH HARMONIC. APPLICANT: ACROWAVE SYSTEMS CO., LTD. FCCID: PE6AWL-1100C REPORT #: T:\CUS\A\ACRO\689K0\689K0RPT.DOC PAGE #: 8 15.247(c),15.205 &15.209(b) Field_strength_of_spurious_emissions: REQUIREMENTS: FIELD STRENGTH FIELD STRENGTH S15.209 of Fundamental: of Harmonics 30 - 88 MHz 40 dBuV/m @3M 902-928MHz 88 -216 MHz 43.5 2.4-2.4835GHz 216 -960 MHz 46 127.38dBuV/m @3m 54 dBuV/m @3m ABOVE 960 MHz 54dBuV/m REQUIREMENTS: Emissions that fall in the restricted bands (15.205) must be less than 54dBuV/m otherwise the spurious and harmonics must be attenuated by at least 20dB. TEST DATA: EMISSION METER COAX FIELD FCC. FREQUENCY READING LOSS ACF STRENGTH LIMIT MARGIN MHz @ 3m dBuV dB dB dBuV/m dB dB ANT. Antenna Gain Intentional Radiator Emissions 2412.00 67.50 1.09 29.03 97.62 127.38 29.76 V 4824.00R 4.30 1.45 33.93 39.68 54.00 14.32 V 7236.00R 0.50 1.82 36.64 38.96 54.00 15.04 V 9648.00 1.90 2.11 38.59 42.61 54.00 11.39 V 2442.00 66.50 1.10 29.10 96.70 127.38 30.68 V 4884.00R 5.80 1.46 33.99 41.26 54.00 12.74 V 9768.00 8.50 2.12 38.67 49.30 54.00 4.70 V 2467.00 67.00 1.10 29.17 97.27 127.38 30.11 V 4934.00R 4.00 1.47 34.05 39.52 54.00 14.48 V 9868.00 1.30 2.13 38.74 42.17 54.00 11.83 V METHOD OF MEASUREMENT: The procedure used was ANSI STANDARD C63.4-1992 & the Guidance on Measurements for Direct Sequence Spread Spectrum Systems. Measurements were made at the open field test site of TIMCO ENGINEERING INC. located at 849 N.W. State Road, Newberry, FL 32669. APPLICANT: ACROWAVE SYSTEMS CO., LTD. FCCID: PE6AWL-1100C REPORT #: T:\CUS\A\ACRO\689K0\689K0RPT.DOC PAGE #: 9 2.993(a)(b) 2.993(a)(b) Continued Field_strength_of_spurious_emissions: Method of Measuring Radiated Spurious Emissions Hewlett Packard Spectrum Analyzer HP8566A /-----------\ /----------------\ /----\ |CPU With | | ANTENNA | | | | |TRANSMITTER|-------| | \-----| | | UNDER TEST| | | | | \-----------/ \----------------/ \----/ | | | | | | | |? 3.0 meters--?| | | Tuned, Calibrated | Antenna which may /--------------\ be raised from 1-4 Meters | | to 20' above ground |POWER SUPPLY | and changed in polarization. | | \--------------/ Equipment placed 80 cm above ground on a rotatable platform. APPLICANT: ACROWAVE SYSTEMS CO., LTD. FCCID: PE6AWL-1100C REPORT #: T:\CUS\A\ACRO\689K0\689K0RPT.DOC PAGE #: 10

Test Report

APPLICANT: ACROWAVE SYSTEMS CO., LTD. FCC ID: PE6AWL-1100C NAME OF TEST: RADIATED SPURIOUS EMISSIONS INTO ADJACENT RESTRICTED BAND REQUIREMENTS: Emissions that fall in the restricted bands (15.205). These emissions must be less than or equal to 500 uV/m (54 dBuV/m). TEST PROCEDURE: An in band field strength measurement of the fundamental emissions using the RBW and detector function required by C63.4-2000 and FCC rules. The procedure was repeated with an average detector and a plot made. The calculated field strength in the adjacent restricted band is presented below. -102.60 dBm - from Plot + 29.21 dB - ACF + 1.1 dB - Coax Loss ___________ - 72.99 dBm +107.00 ___________ 34.71 dBuV APPLICANT: ACROWAVE SYSTEMS CO., LTD. FCCID: PE6AWL-1100C REPORT #: T:\CUS\A\ACRO\689K0\689K0RPT.DOC PAGE #: 11 APPLICANT: ACROWAVE SYSTEMS CO., LTD. FCC ID: PE6AWL-1100C NAME OF TEST: POWER SPECTRAL DENSITY RULES PART NUMBER: 15.247(d) REQUIREMENTS: The peak level measured must be no greater than +8.0dBm. DATA: THE PLOT IS ON THE NEXT PAGE. The level at 2413.182MHz was -24.10dBm. Calculation: - 72.1 dBm + 13.0 dB ATT + 35.0 Correction Factor NAME OF TEST: PROCESSING GAIN RULES PART NUMBER: 15.247(e) REQUIREMENTS: DATA: The processing gain information supplied by the manufacturer is 10.0dB. See Exhibits 7A-7F and 8A-8C for processing gain test methods and data. APPLICANT: ACROWAVE SYSTEMS CO., LTD. FCCID: PE6AWL-1100C REPORT #: T:\CUS\A\ACRO\689K0\689K0RPT.DOC PAGE #: 13

Test Report

Freq.Gp(S/N)oMj=J/SLsysJammerPER (MHz)(dB)(dB)(dB)(dB)(dBm) 2403.520.2916.41.892-48.116.34 2403.720.8516.42.452-47.553.83 2403.921.0516.42.652-47.354.01 2404.120.9816.42.582-47.424.82 2404.320.3916.41.992-48.014.72 2404.519.5916.41.192-48.814.41 2404.719.3816.40.982-49.027.54 2404.919.3016.40.902-49.14.12 2405.119.2916.40.892-49.114.23 2405.319.5816.41.182-48.824.54 2405.519.2016.40.802-49.22.21 2405.718.3816.4-0.022-50.023.02 2405.918.2916.4-0.112-50.115.05 2406.118.5116.40.112-49.893.79 2406.318.0316.4-0.372-50.374.22 2406.517.7716.4-0.632-50.637.5 2406.716.7716.4-1.632-51.637.8 2406.917.2916.4-1.112-51.117.72 2407.117.2916.4-1.112-51.117.51 2407.317.1116.4-1.292-51.297.24 2407.517.3216.4-1.082-51.087.38 2407.716.5416.4-1.862-51.867.29 2407.916.4516.4-1.952-51.957.74 2408.116.4816.4-1.922-51.927.17 2408.316.4416.4-1.962-51.967.91 2408.516.2016.4-2.202-52.27.89 2408.715.7416.4-2.662-52.667.62 2408.916.0216.4-2.382-52.387.45 2409.115.7316.4-2.672-52.677.62 2409.315.5616.4-2.842-52.847.66 2409.515.7816.4-2.622-52.627.48 2409.715.8516.4-2.552-52.557.28 2409.915.4716.4-2.932-52.937.87 2410.115.3516.4-3.052-53.057.84 2410.315.4716.4-2.932-52.937.49 2410.515.3916.4-3.012-53.017.42 2410.715.3716.4-3.032-53.037.89 2410.915.7116.4-2.692-52.697.73 2411.115.7916.4-2.612-52.616.57 2411.316.3716.4-2.032-52.036.44 2411.515.7216.4-2.682-52.686.65 2411.716.1016.4-2.302-52.37.65 11Mbps CHANNEL 1 Processing Gain Gp=(S/N)o + Mj + Lsys Freq.Gp(S/N)oMj=J/SLsysJammerPER (MHz)(dB)(dB)(dB)(dB)(dBm) 11Mbps CHANNEL 1 Processing Gain Gp=(S/N)o + Mj + Lsys 2411.915.8316.4-2.572-52.577.1 2412.116.2016.4-2.202-52.25.71 2412.316.2316.4-2.172-52.177.5 2412.516.6116.4-1.792-51.796.36 2412.716.2716.4-2.132-52.137.24 2412.916.4216.4-1.982-51.987.46 2413.115.9816.4-2.422-52.427.37 2413.316.0216.4-2.382-52.387.32 2413.516.1916.4-2.212-52.217.58 2413.716.5116.4-1.892-51.897.11 2413.916.8316.4-1.572-51.576.71 2414.116.5716.4-1.832-51.837.81 2414.316.3416.4-2.062-52.066.84 2414.516.6116.4-1.792-51.797.56 2414.716.2916.4-2.112-52.117.4 2414.917.0016.4-1.402-51.47.92 2415.116.3816.4-2.022-52.027.35 2415.316.3816.4-2.022-52.026.65 2415.516.6216.4-1.782-51.786.39 2415.716.7916.4-1.612-51.616.48 2415.916.5216.4-1.882-51.886.76 2416.116.6716.4-1.732-51.737.13 2416.316.7316.4-1.672-51.677.04 2416.516.9616.4-1.442-51.446.82 2416.716.8916.4-1.512-51.517.25 2416.916.9616.4-1.442-51.447.2 2417.117.4016.4-1.002-516.97 2417.317.4016.4-1.002-517.84 2417.517.3916.4-1.012-51.017.87 2417.718.0416.4-0.362-50.367.7 2417.918.1416.4-0.262-50.267.87 2418.118.1616.4-0.242-50.246.45 2418.318.2716.4-0.132-50.136.75 2418.518.6116.40.…

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Contact Information

Applicant

Hyung Yeol Yoon(Director R&D Center)
[email protected]82-2-547-8778Fax: 82-2-547-4779

Test Firm

Timco Engineering, Inc.S Sanders
[email protected]888-472-2424Fax: 352-472-2030

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz35.60 mW

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