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PGCWL-2111Wireless LAN USB Adaptor

UAT Inc.
Wireless LAN USB Adaptor - FCC ID PGCWL-2111 - UAT Inc.
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Dec 13, 2001
Application Purpose
Original Equipment
Date of Application
Dec 13, 2001
Equipment Note
Wireless LAN USB Adaptor
Frequency Range
2412.00000000 - 2462.00000000
Company
UAT Inc.
Country
Taiwan

Documents & Files

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Users Manual

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Block Diagram

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Cover Letter(s)

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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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RF Exposure Info

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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

Wireless LAN USB Adaptor WL-2111 Quick Installation Guide V.1.0 Quick Installation Guide of WL-2111 1 Copyright Copyright © 2001, All rights reserved. This manual and software described in it are copyrighted with all rights reserved. This manual may not be copied, in whole or in part, without written consent. All product names are trademarks and or registered trademarks of their respective companies. Quick Installation Guide of WL-2111 2 Table of Contents Page Brief Introduction................................................................................3 Item List...........................................................................................3 Features............................................................................................3 Notice..............................................................................................4 Software Installation...........................................................................4-8 Ad-Hoc Mode..............................................................................8-9 Infrastructure Mode.....................................................................10-11 Using WL-2111.................................................................................12 Wireless USB vs. Wireless AP............................................................12-13 Functions of Monitor Utility...................................................................14 Monitor.......................................................................................14 Statistics......................................................................................15 Site Survey...................................................................................16 Encryption...................................................................................17 Advanced....................................................................................18 Version........................................................................................18 Infrastructure to Ad-Hoc...................................................................19-20 Uninstall Driver..............................................................................21-22 FCC Regulation.................................................................................23 Quick Installation Guide of WL-2111 3 Wireless USB Adaptor provided by UAT Inc. is designed to be small, portable & compatible in many different platforms. It provides users with reliable and high-speed connection to the Internet & supports simple plug-and-play function. Your package should contain all the components listed below. If anything is missing or damaged, please contact the dealer/ service provider from whom the equipment was purchased. l One (1) WL-2111 Wireless USB Adapter l One (1) USB cable l One (1) CD (incl. Driver) l This Quick Installation Guide - Product Name 11Mbps Wireless LAN USB Adaptor Model Number WL-2111 Interface USB V1.0 Modulation Technique DSSS (Direct Sequence Spread Spectrum) Frequency Band 2.400~2.4835 GHz Number of Channels USA & Canada 11; Europe 13; France 4; Japan 13 Data Rate 11Mbps, 5.5Mbps, 2Mbps, 1 Mbps Modulation CCK, DQPSK, DBPSK Physical Media Protocol CSMA/CA (Collision Avoidance) Supported Operating Systems Microsoft Windows 95/98/2000, NT4.0, Linux Red Hat 6.2 Medium Access IEEE 802.11, IEEE02.11b Fully Compliant Ethernet Port Standards Fully Supports All IEEE 802.3 10/100Mbit/S Networking Operating Range Indoor: 50M-100M, Outdoor: 100M-300M Dimension 123x100x34 mm Environmental 32° to 122° F (0° to 50°C), 10 to 90% (non-condensing) Brief Introduction Item List Features Quick Installation Guide of WL-2111 4 Read Me First: 1. Please install the driver first before plug in the USB adaptor. 2. Before you install the driver, please do the following: a. Right click “My Computer”‡ “Properties” ‡ Disable current LAN card installed in the computer. b. Right click the “Network Neighborhood” ‡”Properties” ‡ “TCP/IP” ‡ Choose “Obtain an IP address automatically” To have your Wireless USB Adaptor working properly, please follow the step-by-step instructions listed below to successfully install the Adaptor. 1. Insert the CD driver (included in the package) to your CD-ROM drive. 2. Choose “My Computer” from the desktop. 3. Under My Computer, double click CD-ROM drive 4. Double click the “setup” iconto start installation. 5. Installation Wizard will appear as follow: Choose “Next” to continue. Notice Software Installation Quick Installation Guide of WL-2111 5 (Figure 1) 6. License Agreement: Please read the “License Agreement” carefully. Click “Yes” to continue with the installation. (Figure 2) Quick Installation Guide of WL-2111 6 7. Adapter Type Dialog: Please Choose “Application & USB Drivers” as adaptor type & “Next” Note: By selecting this installation option, you will install the Applications (Configuration & Monitor Utility and Firmware Upgrade Utility) and the latest USB (A) drivers. If the USB (A) drivers have been previously installed and they have not been uninstalled prior to the new installation the new drivers will overwrite the old ones without prompting you. If you would like to uninstall the driver installed in the past. Please refer to page 21 & 22 (Figure 3) 8. Select “Next” to continue. Quick Installation Guide of WL-2111 7 9. Choose Destination Location: This will save the driver in “C:\Program Files\ATMEL\802.11 Wireless LAN”. Click “Next” to continue. (Figure 4) 10. Select Program Folder: Choose the folder you wish to add the program icon then click “Next” (Figure 5) Quick Installation Guide of WL-2111 8 11. Choose the Mode of Operation (Ad-Hoc or Infrastructure): Note: In Ad-Hoc Mode the wireless stations can directly communicate with each other. In Infrastructure Mode the use of an Access Point is necessary in order for the wireless clients to communicate with each other. Ad-Hoc Mode In Ad-Hoc Mode the wireless stations can directly communicate with eac…

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Block Diagram

ATMEL 503A USB REV00(G) SYSTEM BLOCK RF=2.412~2.484GHzIF=374MHz+/-11MHz 2.412~2.484GHz Receive 2.412~2.484GHz2.412~2.484GHz 2038~2110MHz 748MHz Transmit 2.412~2.484GHz TX/RX SWITCH FILTER HFA3983 POWER AMP HFA3683 RF-IF CONVERSION SAWTEK Band Pass FILTER HFA3783 IF-Baseband CONVERSION ANTENNA VCO2074VCO748 HFA3861B DSSS Baseband Processor ATMEL AT76C503A CPU and MAC SRAM 128*8 Flash ROM 128K*8 OSC 36MHz XTAL 12MHz USB to PC OSC 44MHz

Cover Letter(s)

----- Original Message ----- From: Jack Tsai <[email protected]> To: Mike Kuo <[email protected]> Sent: Wednesday, December 12, 2001 8:52 AM Subject: Fw: UAT Inc., FCC ID:PGCWL-2111, AN01T1427 > Re-sending! > > > ----- Original Message ----- > From: Jack Tsai <[email protected]> > To: Mike Kuo <[email protected]> > Sent: Friday, December 07, 2001 10:03 AM > Subject: Re: UAT Inc., FCC ID:PGCWL-2111, AN01T1427 > > > > Dear Mike, > > > > 1. Sure, the -14.93 dBm is conducted power on grant. > > 2. Re-MPE calculation, see attachment. > > > > Best regards, > > > > Jack Tsai > > ----- Original Message ----- > > From: Mike Kuo <[email protected]> > > To: 'Jack Tsai' <[email protected]> > > Sent: Friday, December 07, 2001 10:19 AM > > Subject: RE: UAT Inc., FCC ID:PGCWL-2111, AN01T1427 > > > > > > > Dear Jack: > > > > > > Let us take a look the antenna conducted output power again. > > > > > > In the page 23 of test report, the max. radiated emission field strength > > is > > > 84.30dBuV/m. To calculate the Antenna conducted output power, you used > > G=1 > > > and came out with 0.081mW as the antenna conducted output power. > > > > > > In the MPE calculation, you used 0.081mW as the max. conducted output > > power > > > with the antenna gain of 4dBi to calculate the separation distance. > > > > > > My questions to you are : > > > > > > 1. The max. radiated emission field strength was measured with integral > > > antenna of 4dBi gain. You should use 4dBi ( 2.512) to calculate the > > antenna > > > conducted output power. The antenna conducted output power with 4dBi > > > antenna gain is 3.2144E-05W or -14.93dBm. Since the Grant will only > list > > > the antenna conducted output power, please confirm this number. > > > > > > 2. Based upon the max. conducted output power of -14.93dBm, you need to > > redo > > > the MPE calculation. Please provide it. > > > > > > Best Regards > > > > > > Mike Kuo / TCB Certifier Dear Mike, In responsed to your question. Q4: New product specification. Q5: Re-do peak radiation emission. See attachment! Best regards, Jack Tsai: Dear Mike, In response to your e-mial for Q3. The attachment is re-do radiation emission. And detector mode of mesurement is QP and averager(above 1GHz). Best regards, Jack Tsai Training Research Co., Ltd. [email protected] From: Mike Kuo To: 'julian_trc' Sent: Tuesday, October 16, 2001 6:50 AM Subject: RE: FCC ID Application for AN01T1427(FCC ID:PGCWL-2111) Dear Julian : Answer to Question 1 and 2 are O.K.. This device will be certifier as DTS. Your answer to question #3 can not be accepted. To measure spurious emission is a well established guideline for years, engineering justification on alternate measurement procedures can not be accepted. Please provide additional test data to comply the questions #3: Question #3: Spurious Emission :There are two ways of measurement to comply with 15.247 ( c ) requirements. If antenna conducted method is used, the RBW shall be 100kHz and VBW > RBW, scan up to 10th harmonics. All harmonic / spurious emissions must be 20dB dow n of highest emission level measured with 100kHz RBW. Or if radiated measurement is used, the RBW =1MHz , VBW =10Hz. All harmonic / Spurious emission must comply with 15.209 requirements.In the page 28 of test report, RBW=VBW=3MHz was used during Radiated measurement. With this type of settings, it does not comply with measurement setup. In addition, there is no instrument setting information given for data presented in Section 5.5 of test report. Please redo the spurious emission measurement. Best Regards Mike Kuo / TCB Certifier From: julian_trc [mailto:[email protected]] Sent: Wednesday, October 15, 2008 12:29 AM To: [email protected] Subject: FCC ID Application for AN01T1427(FCC ID:PGCWL-2111) Dear Mike, for Question #1:Please provide Processing Gain Test Data, Jack gave me a pdf file and attach in this mail for the answer Question #1. About Question #2:Output power:Radiated...........in the page 52 of test report is 4 dBi but 0 dBi antenna gain was used for calculation. Please explain. I attach the pdf file (filename Mpe) that is my colleagues answer and the item antenna should belong to EUT. Question#3:Spurious Emision:In my opinion that reducing the resolution Bandwidth will reduce the noise floor and the measurement result is 2nd harmonic attenuation have been more than 20dB. the Spurious emissiom measurement come after in the chapter 5.5. These are my answers. I hope they would not bother you a lot. Question #1: Please provide Process Gain Test Data. Question #2: Output power : Radiated measurement was used to measure output power. Since the conducted output power will be listed on the grant. The radiated measurement must be properly calculated using the antenna gain. On page 23 of test report, such calculated was made. However, the antenna gain as indicated in the 52 of test report is 4dBi but 0dBi antenna gain was used for calculation. Please explain. Question #3: Spurious Emission : There are two ways of measurement to comply with 15.247 ( c ) requirements. If antenna conducted method is used, the RBW shall be 100kHz and VBW > RBW, scan up to 10th harmonics. All harmonic / spurious emissions must be 20dB down of highest emission level measured with 100kHz RBW. Or if radiated measurement is used, the RBW =1MHz , VBW =10Hz. All harmonic / Spurious emission must comply with 15.209 requirements. In the page 28 of test report, RBW=VBW=3MHz was used during Radiated measurement. With this type of settings, it does not comply with measurment setup. In addition, there is no instrument setting information given for data presented in Section 5.5 of test report. Please redo the spurious emission measurement. Question #4: Please provide Product specification which includes the design output power to verify the calculated antenna conducted output power which is -14.93dBm. (Radiated field strength 84.3dBuV/m @ 3 meter with 4dBi antenna Gain). Question #5: In the redo-radiated …

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ID Label/Location Info

LABEL Format: 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 Model No.:WL-2111 FCC ID:PGCWL-2111 LABEL Size: 45 x 30 mm LABEL Position:

Operational Description

Operation Principles: ATMEL AT76C503A: A RISC CPU with IEEE802.11b MAC layer. An ARM7TDMI RISC CPU core. MAC layer compliant with IEEE802.11 and IEEE802.11b. Supports data rate of 1Mbps, 2Mbps, 5.5Mbps and 11Mbps, with automatic fallback. Supports Wire Equivalence Privacy(WEP) as in IEEE802.11. Digital interface with HFA3861B, the DSSS baseband processor. Built in USB interface, for connection to a desktop or notebook PC, with 12Mbps data rate. Data flow is bidirectional from PC, through USB interface, through CPU and MAC, to HFA3861B. A 36Mhz oscillator is used to provide main clock of the RISC CPU. The external 12MHz crystal provides clock of USB interface. Flash ROM and SRAM: Memory resources of CPU. Flash ROM is nonvolatile memory. Firmware program is stored in flash ROM. SRAM is volatile memory resource for CPU operation. HFA3861B: DSSS baseband processor. Direct Sequence Spread Spectrum(DSSS) baseband modulator/demodulator. Supports Differential Binary Phase Shift Keying(DBPSK), Differential Quadrature Phase Shift Keying(DQPSK), and Complementary Code Keying(CCK), as PHY layer in IEEE802.11 and IEEE802.11b. Data Rate(Mbps) ModulationDBPSKDQPSKCCKCCK FCC compliant processing gain. Digital data from MAC layer is modulated to produce analog I/Q baseband signal for transmission. Received analog I/Q baseband signal is demodulated into digital data and sent to MAC layer. Baseband spectrum occupies 0~11MHz, for any of the above modulation or data rate. On chip analog to digital and digital to analog circuit for analog I and Q inputs and outputs. Main analog signals are TXI+, TXI-, TXQ+, TXQ-, RXI+,RXI-, RXQ+, and RXQ-. Operating clock is provided by a 44MHz oscillator. HFA3783: I/Q modulator/demodulator. Baseband I/Q signals are combined and converted to IF(Intermediate Frequency). IF center frequency is 374MHz. Bandwidth is 22MHz. IF signals are IF_TX+, IF_TX-, IF_RX+ and IF_RX-. IF signals are sent to or from the SAWTEK bandpass filter, and then converted to RF by HFA3683. Baseband I/Q signals are TXI+, TXI-, TXQ+, TXQ-, RXI+,RXI-, RXQ+, and RXQ-. Baseband I/Q signals are fed from or to the baseband processor, HFA3861B. An on chip frequency synthesizer is used to generate the 374MHz Local Oscillator frequency required by the mixer. An external VCO of 748MHz center frequency is used in the frequency synthesizer loop. The 44MHz oscillator provides the reference frequency required by the frequency synthesizer. HFA3683: RF to IF converter. IF signals are converted to or from RF(Radio Frequency) signals. RF signals lie in the ISM(Industrial Scientific Medical) band, 2.4~2.5GHz, as in IEEE802.11 and IEEE802.11b. An on chip frequency synthesizer is used to generate the Local Oscillator frequency, 2.038~2.110GHz, required by the mixer. An external VCO of 2.074GHz center frequency is used in the frequency synthesizer loop. The 44MHz oscillator provides the reference frequency required by the frequency synthesizer. HFA3983: Power amplifier for tranmission. TX/RX switch: Transmission or reception multiplexing switch. Transmission/reception are half duplex.

RF Exposure Info

Test Repot --------------------------------------------------------------------------------- 1/55 Report No.: U1215223 Training Research Co., Ltd., TEL:886-2-26935155, Fax:886-2-26934440 Conducted Power- Measurement of MPE (RF Exposure Calculations) Limits for Maximum Permissible Exposure (MPE) Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Filed Strength (H) (A/m) Power Density (S) (mW/cm2) Averaging Time |E| 2 , |H| 2 or S (minutes) (A) Limits for Occupational/Controlled Exposure 0.3-3.06141.631006 3.0-301842/f4.89/f900/f 2 6 30-30061.40.1631.06 300-1500----f/3006 1500-100,000----56 (B) Limits for General Population/Uncontrolled Exposure 0.3-1.346141.6310030 1.34-30824/f2.19/f180/f 2 30 30-30027.50.0730.230 300-1500----f/150030 1500-100,000----1.030 According to OET BULLETIN 56 Fourth Edition/August 1999, Equation for Predicting RF Fields: -14.93 dBm = 0.03214mW = 0.00001062 mW/cm 2 Where: S = power density (in appropriate units, e.g. mW/cm2) P = power input to the antenna (in appropriate units, e.g., mW) 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 (appropriate units, e.g., cm) The Numeric gain G of antenna with a gain specified in dB is determined by: G = Log -1 (dB gain/10) G = Log -1 (4.0/10) = 2.512 S = PG 4R 2 S = 0.03214 x 2.512 4 2

Schematics

F 14 User Revision: Dec 19, 2000 1_IF_STAGE Page Size: Patras Science Park, 26500 Platani,Patra, Greece Voice: 3061-961220 Fax: 3061-961221 TITLE:DATE: of COMPANY PROPRIETARY PE1 IF_DET 3783-IF_TX- 3783-LO_IN+ 3783-PE2 IF_COUPLE2 3783-IF_RX- saw4 saw3 IF_COUPLE1 3783-IF_RX+ SAW9 saw10 MIC1 MIC2 3783-LO_IN- 3783-CAL_EN 3783-TXI+ 3783-TXI- 3783-TXQ+ 3783-TXQ- 3783-IF_TX+ RADIO_PD 00 0 0 0 0 00 0 0 0 0 0 0 0 0 VCCA VCCA 0 0 0 PE2 PE1 LE_IF SD_RF_IF SCLK_RF_IF IF_DET TX_IF_AGC RX_IF_AGC RXI- TXI+ 44MHz_REF 44MHz_REF_cw 0 0 VCCS 0 IF+ IF- 00 0 0 VCCC VCCB IF_VCO_GND 0IF_VCO_GND IF_VCO_GND IF_VCO_GND 0 VCCC 0 0 0 CAL_EN 0 TXI- VREF RXQ- RXQ+ RXI+ IF_VCO_GND TXQ+ TXQ- 3V3 R21 2.87K C27 100pF R17 100 C26 0.1uF C22 0.1UF C21 68pF C200.1UF C19100pF C12 1nF C11 1nF R20 1k C13 0.1UF L24 68nH 1 2 C171 180pF C37 22pF C36 22pF R23 680 L27 bead 12 R2 2K C4 220pF C32 220pF C25 1nF C163 1nF C24 0.1UF U2 F4106-44 4 2 13 VDD GND ENDOUT L1 68NH 1 2 FL1 SAWTEK855653 9 10 781112 3 4 1256 IN IN_RET GROUNDS3GROUNDS4CASE2CASE3 OUT OUT_RET CASE CASE1 GROUNDS1GROUNDS2 C34 220pF C33 220pF R22 1k C8 10nF C2 10uF C28 0.1UF C29 0.1UF Q1 MMBT4401 1 3 2 C10 10nF C5 3.3pF C31 10nF L4 68NH 1 2 C16 3,9nF R4 0 C15 0,22UF R5 2K Q2 IRLML6302 1 32 C30 0.1UF C1 10uF U1 MIC5205-2.8 3 1 4 2 5 IN SHDN BP GND OUT C14 0,022UF R6 3,92K R18 100 C3 100pF R50 NP-0 R470 R3 49,9 U4 DMP-VCX748S6 5 3 46 1 2 GND0 VT GND1GND2 RF VDD C17 10nF R1 1k L3 15nH 1 2 L2 27nH 1 2 R9 536 R16 124 R12 536 R15 124 U3 HFA3783 1 2 3 4 5 6 7 8 9 10 11 12 131415161718192021222324 36 35 34 33 32 31 30 29 28 27 26 25 484746454443424140393837 RX_AGC_VCC SPARE IF_RX+ IF_RX- TX_BIAS_GND TX_VAGC TX_BIAS_VCC IF_TX+ IF_TX- TX_AGC_VCC TX_AGC_GND TX_AGC_SUB REF_BYREF_INSYNTH_SUBSYNTH_GNDSYNTH_VDDCLKDATALECP_VDDCP_DOCP_GNDLD RXQ+ RXQ- TXI+ TXI- 1.2V_OUT TXQ+ TXQ- LO_GND LO_VCC LO_IN+ LO_IN- LO_SUB RX_AGC_GND RX_VAGC RX_AGC_SUB IF_DETECT PE1PE2 CAL_EN RX_DEM_GND RX_BB_VCC RX_BB_GND RXI+ RXI- C23 68pF C131 100pF C7 1nF C6 3.3pF C9 1nF C18 0.1UF C35 100pF R10 124 R11 124 C161 C L16 15nH 1 2 C162 C 0 OHM for UPC2745 NO POP NO POP NO POP NO POP NO POP PUT 0 OHM PUT 0 OHM NO POP PUT 0 OHM NO POP NO POP NO POP NO POPNO POP F 24 User Revision: Dec 19, 2000 2_RF_FRONTEND Page Size: Patras Science Park, 26500 Platani,Patra, Greece Voice: 3061-961220 Fax: 3061-961221 TITLE:DATE: of COMPANY PROPRIETARY 3683-UP_ CONV MIC26_MX_IN+ MIC27_MX_IN- MIC25 MIC24 MIC35 MIC14 MI C20 VCCD VCCE MIC15 MIC16MIC17 MIC23 U12-CHOCK MIC3 MIC7 MIC9 MIC1 MIC2 MIC10 MIC5 MIC4 MIC11 MIC22MIC21 MIC6 0 0 0 0 0 RX_RF_AGC 0 0 0 44MHz_REF_cw LE_RF SCLK_RF_IF SD_RF_IF VCCC VCCB 0 0 3V3 TRSW TX_DET PE1 PE2 T/R_SW_n VCCB 0 IF- IF+ 0 0 0 PA_PE 0 0 0 0 3V3 0 0 0 0 ANTSEL_n GND_RFR GND_RFR GND_RFR GND_RFR GND_RFR VCCA 0 ANTSEL 0 GND_RFR 0 0 0 0 0 GND_RFR GND_RFR 00 00 0 00 0 3V3 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 00 0 0 VCCA L912 NP 12 C800 C L45 120nH C802 100pF C167 C C168 C GND IN OUT GND FL4 LF3216-B2R4EAA 1 3 2 4 C244 10nF C166 10nF C164 C C165 C U951 INA-32063 1 2 34 5 6 GND1 GND2 INPOUT GND3 VD L23 1.8nH C157 NP C803 C L18 bead L913 NP 12 C160 NP C98 1nF C96 1nF C76 7pF C172 C C75 3.3pF C65 270pF C53 100pF C50 7pF C42 0.1UF R34 11.5K L10 1.2nH 1 2 C73 4.7pF C92 10nF C91 10nF C81 220pF C77 220pF C68 7pF C64 7pF U10 DMP-VCX2074S6 5 3 46 1 2 GND0 VT GND1GND2 RFOUT VDD R28 180 R26100 R27 180 C38 10uF C43 0.1UF C174 C L6 bead 1 2 R32 10 C56 1nF R31 10 C57 1nF R33 1k GND1 INOUT GND0 FL2 MDR642E 4 3 2 1 L8 4.7NH 1 2 L12 2.2NH 12 U8 HFA3983 1 2 3 4 5 6 7 8 9 10 11 12 13 14 29 15 16 17 18 19 20 21 23 24 25 27 28 26 22 GND1 VCC1 PE GND2 VCC2 REXT_OS REXT_DS VCC_DS GND3 GND4 RFOUT GND5 GND6 GND7 PADDLE GND8 GND9 GND10 GND11 GND12 GND13 GND14 GND15 GND16 GND17 GND18 VCC3 DET_OUT RFIN U6 UPC2762T 123 456 rfingnd1gnd2 rfout gnd3 vcc C95 0.1UF R29 3.74K R30 3.74K C58 1nF C60 0.1UF C97 0.1UF C74 10nF R37 20 R40 1.1K C94 0.068UF R45 649 R46 1.5K C59 1nF C99 10nF C66 10nF C79 10nF C89 10nF C84 10nF C83 10nF C82 10nF R39 1.1K C52 10nF U5 MIC5205-3.0 3 1 4 2 5 IN SHDN BP GND OUT C40 10uF C44 0.1UF C69 10nF C70 10nF C72 10nF C71 10nF L28 NP-180NH 12 C55 7pF C54 7pF C41 7pF R24 180 L11 68NH 1 2 L9 68NH 1 2 C141 NP-0.56pF C88 NP-22pF C87NP-1nF GND IN OUT GND FL3 MDR642E 4 3 2 1 C86 NP-0.1uF R25 180 C67 NP-1.5pF C39 10uF U12 HFA3683A 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17181920212223242526272829303132 42 39 44 46 34 35 36 37 48 47 45 43 41 40 38 33 60626455535163615958575654525049 GND1 LNA_VCC1 GND2 RX_IN GND3 BIAS1_VCC1 GND4 H/L PE2 PE1 TX_VCC1 GND5 TXA_OUT GND6 GND7 GND8 TX_VCC1_1GND9TXA_INGND10LEDATACLKREF_BYREF_INGND11SYN_VCC2GND12CP_VCC2CP_DOGND13LD GND15 GND14 GND16 GND17 TX_MX_OUT TX_MX_VCC2 TX_MX_VCC3 TX_MX_VCC4 RX_MX_OUT- TX_MX_IN- RX_LO_DRIVER_VCC1 LO_VCC1 LO_IN- LO_IN+ TX_LO_DRIVER_VCC1 TX_MX_VCC1 GND21GND22GND23GND20GND19GND18 COL_OUT RF_OUT ITAT_RES2 BIAS2_VCC1 PTAT_RES1 ITAT_RES1 PRE_VCC1 RX_MX_IN TX_MX_IN+ RX_MX_OUT+ C85 7pF C61 1nF C63 1pF L5 bead 12 C62 2.7pF L7 6.8NH 1 2 C170 C C140 NP-0.56pF C115 NP-0.56pF L22 4.3nH 12 C90 0.1uF R61 0 R35 1.5K R36 9.53K R44 75 R43 75 C158 NP R42 91 C93 0.68UF L21 1.8nH 12 L911 NP 12 C48 7pF J1 sma_ra 1 2345 IN GND1GND2GND3GND4 C46 7pF ANT1 C51 7pF C154 7pF U7 UPG158TB 2 3 1 4 5 6 GND OUT2 OUT1 VC2 IN VC1 U11 UPG158TB 2 3 1 4 5 6 GND OUT2 OUT1 VC2 IN VC1 C45 7pF C4500 7pF ANT2 L20 1.8nH 12 C49 7pF R65 0 C80 3.3pF C78 3.3pF C47 7pF C801 100pF YELLOWGREENRED F 34 User Revision: Dec 19, 2000 3_BASEBAND Page Size: Patras Science Park, 26500 Platani,Patra, Greece Voice: 3061-961220 Fax: 3061-961221 TITLE:DATE: of COMPANY PROPRIETARY 3861- IREF 3861- COMPRES2 3861-COMP RES1 MCLK DI GITAL ANALOG ANALOG U5-5-/RW 3861-IIN+ 3861-IIN- 3861-QIN+ 3861-QIN- CCA GP1 CCA GP1 0 0 00 VCCS 00 0 0 TXQ- TXQ+ TXI- TXI+ ANTSEL RX_CLK RX_DATA MD_RDY TX_CLK TX_DATA TX_RDY CCA RX_PE TX_PE RESET_BB_n RX_IF_AGC TX_IF_AGC RX_RF_AGC ANTSEL_n IF_DET 44MHz_REF CSB 0 0 3V3 VREF VCCS S_DATA BB_RW TX_DET VCCS VCCS RXI+ RXI- RXQ+ RXQ- S_CLK R58180 C108 0.1UF C111 10nF C100 10uF R59 976 C113 0.1UF C110 0.1UF C109 0.1u…

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Test Report

Test Repot --------------------------------------------------------------------------------- 1/55 Report No.: U1215223 Training Research Co., Ltd., TEL:886-2-26935155, Fax:886-2-26934440 MEASUREMENT REPORT of WIRELESS LAN Applicant: UAT Inc. Model No.:WL-2111 EUT:Wireless LAN FCC ID:PGCWL-2111 Report No.:U1215223 Test by : Training Research Co., Ltd. TEL : 886-2-26935155 FAX : 886-2-26934440 2, Lane 194, Huan-Ho Street, Hsichih, Taipei Hsien 221, Taiwan, R.O.C. Test Repot --------------------------------------------------------------------------------- 3/55 Report No.: U1215223 Training Research Co., Ltd., TEL:886-2-26935155, Fax:886-2-26934440 Tables of Contents I. GENERAL 1.1 Introduction ...................................................................................................................... 5 1.2 Description of EUT .......................................................................................................... 5 1.3 Description of Support Equipment ................................................................................... 6 1.4 Configuration of System Under Test ................................................................................ 8 1.5 Verify the Frequency and Channel ................................................................................... 9 1.5.1 Verify the Frequency Pairs ............................................................................................ 9 1.6 Test Procedure ................................................................................................................. 10 1.7 Location of the Test Site .................................................................................................. 10 1.8 General Test Condition .................................................................................................... 10 II. Section 15.207: Power line conducted emissions for AC powered units 2.1 Test Condition & Setup ................................................................................................... 11 2.2 List of Test Instruments .................................................................................................. 11 2.3 Test Configuration .......................................................................................................... 12 2.4 Test Result of Conducted Emissions .............................................................................. 13 2.4.1 EUT Station Transmit Only ......................................................................................... 13 III. Section 15.247(a)(2): Bandwidth for direct sequence system 3.1 Test Condition & Setup ................................................................................................... 16 3.2 Test Instruments Configuration ...................................................................................... 16 3.3 List of Test Instruments .................................................................................................. 16 3.4 Test Result of Bandwidth ................................................................................................ 17 IV. Section 15.247(a) (2) : Power Output 4.1 Test Condition & Setup ................................................................................................... 21 4.2 List of Test Instruments .................................................................................................. 22 4.3 Test Result of Fundamental Emission ............................................................................ 23 Test Repot --------------------------------------------------------------------------------- 4/55 Report No.: U1215223 Training Research Co., Ltd., TEL:886-2-26935155, Fax:886-2-26934440 V. Section 15.247(c) (2) : Spurious Emissions (Radiated) 5.1 Test Condition & Setup ................................................................................................ 24 5.2 List of Test Instruments ................................................................................................ 25 5.2.1 Duty Cycle Factor Measurement ............................................................................... 26 5.3 Test Instruments Configuration .................................................................................... 27 5.4 Test Result of Second Harmonic .................................................................................. 28 5.5 Test Result of Spurious Radiated Emissions ................................................................ 29 5.5.1 Base and Handset Station Transmit Only .................................................................. 29 VI. Section 15.247(d) : Power Spectral Density 6.1 Test Condition & Setup ................................................................................................ 41 6.2 Test Instruments Configuration .................................................................................... 42 6.3 List of Test Instruments................................................................................................. 42 6.4 Required of Carrier Frequency ..................................................................................... 43 6.5 Test Result of Power Spectral Density ......................................................................... 46 Appendix A: Set Up Procedure .............................................................................................. 50 Appendix B: Antenna Spec. .................................................................................................... 51 Appendix C: Part15.203 .......................................................................................................... 52 Appendix D: RF Exposure Calculations ............................................................................... 53 Test Repot --------------------------------------------------------------------------------- 5/55 Report No.: U1215223 Training Research Co., Ltd., TEL:886-2-26935155, …

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Test Report

Test Repot ---------------------------------------------------------------------------------- 1/6 Report No.: U1215223 Training Research Co., Ltd., TEL:886-2-26935155, Fax:886-2-26934440 Test Result of Harmonic and Spurious Radiated Emissions EUT's transmit only The highest peak values of radiated emissions form the EUT at various antenna heights, antenna polarizations, EUT orientation, etc. are recorded on the following. FCC ID:PGCWL-2111 Test Conditions:Testing room : Temperature : 24 ° CHumidity : 64 % RH Testing site : Temperature : 27° CHumidity : 75 % RH Detector mode: Peak Table 1 Radiated Emissions for above 1GHz [CH 1, Horizontal] Radiated Emission FCC Class B ( 3 m ) Frequency (GHz) Amplitude (dBμV/m) …

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Contact Information

Applicant

Tom Chen(Manager, R & D)
[email protected]886-2-87978488Fax: 886-2-26570997

Test Firm

Training Research Co., Ltd.Jack Tsai
[email protected]886-2-26935155Fax: 886-2-26934440

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz32.10 µW
Grant Notes
The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter. End-users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance.

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