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F4AWLRG601802.11 b/g radio module

B plus B SmartWorx, Inc.
802.11 b/g radio module - FCC ID F4AWLRG601 - B plus B SmartWorx, Inc.
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Jun 27, 2010
Application Purpose
Original Equipment
Date of Application
Jun 27, 2010
Equipment Note
802.11 b/g radio module
Frequency Range
2412.00000000 - 2462.00000000
Company
B plus B SmartWorx, Inc.
Country
United States

Documents & Files

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Users Manual

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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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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

Product Specification 802.11b/g SDIO/SPI Airborne Radio WLRG-RA-DP600 Family Revision: 2.4 June 2010 File name: wlrg-ra-dp601 product brief v2.4 Document Number: 846-8310-240 Product Brief – Airborne SDIO/SPI 802.11b/g Radio Quatech, Inc. 846-8310-240 June 2010 2 1.0 Product Description The WLNG-RA-DP600 family is a Marvell 88W8686 based 802.11b/g SDIO/SPI radio, designed by Quatech, to support handheld, mobile station and other power sensitive applications. The radio features the following:  802.11b/g radio  Based upon Marvell Libertas 88W8686 Chipset  30 pin high density SMT connector (Molex 53748-0308)  Single (1) Hirose U.FL RF connector for 802.11b/g  Supports WEP, WPA, WPA2 (Home and Enterprise) and 802.1x Supplicants  Bluetooth Co-existence 3-wire interface through main connector  SDIO 1.0 and Generic SPI host interface through 30 pin header  Operating Temperature (-30°C to 85°C)  Storage temp (-30°C to 125°C)  Advanced Low power modes  High vibration mounting holes  Supports host downloaded radio firmware  Single antenna  Driver support for WinCE 5.0, Windows Mobile 5.0/6.0, Linux 2.6 and other embedded OS‟s  Small form factor radio module (Dimensions: 29mm x 21mm x 6.0mm) Figure 1- Lakemore Radio Example Product Brief – Airborne SDIO/SPI 802.11b/g Radio Quatech, Inc. 846-8310-240 June 2010 3 2.0 Block Diagram The following outlines the block diagram of the radio: Marvell 88W8686 IEEE 802.11 MAC Processor & RF Transciever S D I O / S P I I n t e r f a c e Power Management 32.768KHz Xtal Oscillator 40 MHz Xtal Oscillator 802.11b/g FEM U.FL RF Connector VDD (3.3VDC) B T C o e x i s t e n c e Serial EEPROM 802.11b/g RF VHIO (1.8VDC or VDD) External Sleep Clock Option Available Product Brief – Airborne SDIO/SPI 802.11b/g Radio Quatech, Inc. 846-8310-240 June 2010 4 3.0 Model Numbers The following table identifies the model numbers associated with the radio family. Please contact Quatech sales for details, quotes and availability. Table 1 - Model Numbers 802.11b802.11gSDIOSPIBT CoVDDVHIO WLRG-RA-DP601 802.11b/g, SDIO/SPI, Bluetooth Coexistence, VDD & VHIO supply (Lakemore) ll l 1 l 1 llll WLEG-RA-DP601 802.11b/g SDIO/SPI Radio Eval Kit WLRG-RA-DP601 radio SDIO Adapter Card Tools/Documentation CD Drivers (WinCE/Linux/XP) l Notes:1. Interface selection through pin 5 (SDIO) on main conector. 2. Radio supports external sleep oscillator option. Please contact Quatech sales for more information. 3. The Bluetooth Coexistance interface does not include RF antenna sharing option. For more details contact Quatech sales. RoHS Eval Kit Model Number WiFiInterfaceSupply Description Product Brief – Airborne SDIO/SPI 802.11b/g Radio Quatech, Inc. 846-8310-240 June 2010 5 4.0 Pin out and Connectors Table 2 – Radio Pin Definition Pin Signal Pin I/O Type Description 1 GND Ground 2 GND Ground 3 DNC Reserved pin, DO NOT CONNECT 4 VHIO Supply Input Host Digital I/O Supply voltage for SDIO/SPI and Bluetooth interfaces. VHIO = 1.8VDC or VDD. Internally decoupled to GNDHIO. 5 SDIO Digital Input Serial Host mode. SPI = GND, SDIO = VDD 6 VHIO Supply Input Host Digital I/O Supply voltage for SDIO/SPI and Bluetooth interfaces. VHIO = 1.8VDC or VDD. Internally decoupled to GNDHIO. 7 DATA2 Digital I/O SDIO Bit 2 (VHIO Domain) SDIO 4-bit: Data bit 2 or Read Wait (Optional) SDIO 1-bit: Read Wait (Optional) SDIO SPI: Reserved SPI: SPI Interrupt output (active low) 8 GND Ground 9 GND Ground 10 DATA1 Digital I/O SDIO Bit 1 (VHIO Domain) SDIO 4-bit: Data bit 1 SDIO 1-bit: Interrupt SDIO SPI: Reserved SPI: Data Output 11 DATA3 Digital I/O SPI/SDIO Card Select (Active Low) (VHIO Domain) SDIO 4-bit: Data bit 3 SDIO 1-bit: Reserved SDIO SPI: Card Select (Active Low) 12 SERCLK Digital Input SPI/SDIO Clock from host(VHIO Domain) SDIO 4-bit: Clock input SDIO 1-bit: Clock Input SDIO SPI: Clock Input SPI: Clock Input 13 DATA0 Digital I/O SDIO Bit 0 (VHIO Domain) SDIO 4-bit: Data bit 0 SDIO 1-bit: Data Line SDIO SPI: Data Output SPI: SPI Device Select (Active Low) 14 CMD Digital Input SPI/SDIO data input for 4-Wire mode, data input/output for 3-wire mode. (VHIO Domain) SDIO Command/Response SDIO 4-bit: Command/response SDIO 1-bit: Command SDIO SPI: 4-wire = Data Input. 3-wire = Data I/O SPI: Data Input 15 VDD Analog Supply Input Supply Voltage (3.3VDC) 16 WLNAPU Digital Input (Pull Down) Card Power Up Enable from Host (active High). Internal Pull-up. 17 VDD Analog Supply Input Supply Voltage (3.3VDC) 18 SPI_RSTn Digital Input SPI Device RESET from MCU. Active Low 19 RF_ACTIVE Digital Input Asserted by the BT device during Rx or Tx slots that it wishes to use. 20 DNC Reserved pin, DO NOT CONNECT 21 TXCONF Digital Output Transmission confirmed. Pulled low when the radio wants to prevent the BT device‟s use of the medium 22 STATUS Digital Input Pulsed if the BT device has a priority need for the slot. After that it indicates the BT radio mode (Tx or RX) 23 DNC Reserved pin, DO NOT CONNECT 24 MCU_WAKEUP Digital Output MCU “wake up” request to the host. Active high. (GPIO5) 25 NC/SLEEPCLK No connect, optional SLEEPCLK pin for host sourced sleep clock. 26 MAC_WAKEUP Digital Input WLAN MAC “wake-up”/interrupt from the host MCU. Active high (GPIO4) 27 UARTSIN 1.8V UART UART Serial Input. 28 UARTSOUT 1.8V UART UART Serial Output. 29 GND Ground 30 GND Ground Product Brief – Airborne SDIO/SPI 802.11b/g Radio Quatech, Inc. 846-8310-240 June 2010 6 Table 3 - SDIO Interface Definition Table SDIO Pin Module Pin SD 4-bit Pin Name SD 4-bit Description SD 1-bit Pin Name SD 1-bit Description 1 11 DATA3 Data bit 3 N/C Reserved 2 14 CMD Command line. CMD Command line. 3 1, 2, 8,9, 29, 30 VSS1 Ground (GND) VSS1 Ground 4 4, 6 VDD Supply Voltage (VHIO) VDD Supply Voltage (VHIO) 5 12 CLK Clock from host (up to 48MHz) CLK Clock from host (up to 48MHz) 6 1, 2, 8,9, 29, 30 VSS2 Ground (GND) VSS2 Ground 7 13 DATA0 Data bit 0 DATA Data line 8 10 DATA1 Data bit 1 IRQ Interrupt 9 7 DATA2 Data bit 2 RW Read/Write (optional) Table 4 - SPI Interface …

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Cover Letter(s)

Date: June 28, 2010 Dear Application Examiner: Quatech, Quatech model WLRG-RA-DP601, FCC ID: F4AWLRG601, is seeking limited modular approval. The radio meets the requirements for limited modular approval as detailed in FCC 15.212. Compliance to each of the requirements is described below: 1. “The modular transmitter must have its own RF shielding.” The radio portion of the module is contained in its own RF shielding. The shielding is installed at the factory. Please see the Internal Photos exhibit. 2. “The modular transmitter must have buffered modulation/data inputs.” The EUT has buffered data inputs to insure compliance with Part 15 requirements under conditions of excessive data rates or over- modulation. Please see the Schematics exhibit. 3. “The modular transmitter must have its own power supply regulation.” The EUT has its own power supply regulation to insure compliance with Part 15 requirements regardless of the quality or level of external DC supplying the module from the host unit. Please see Schematics exhibit. Also, the technical report exhibit contains AC power line conducted emissions data taken with the EUT powered from a linear power supply that contains no EMC suppression components. 4. “The modular transmitter must comply with the antenna requirements of Section 15.203 and 15.204(c).” The EUT meets the FCC antenna requirements. Please see Antenna information exhibit and internal photos exhibit. 5. “The modular transmitter must be tested in a stand-alone configuration.” The EUT was not tested in a stand-alone configuration and is therefore seeking a limited modular approval. The module was tested in the host device. Please see test setup photos exhibit and technical report exhibit. 6. “The modular transmitter must be labeled with its own FCC ID number.” The EUT is labeled with its own FCC ID number. Please see FCC ID label & location exhibit. Since the FCC ID number will not be visible when the module is installed inside a host printer, another label with the FCC ID will be applied to the exterior of the printer. 7. “The modular transmitter must comply with any specific rule or operating requirements applicable to the transmitter and the manufacturer must provide adequate instructions along with the module to explain any such requirements.” The EUT is compliant with all applicable FCC rules. Detail instructions for maintaining compliance are given in the User Manual. 8. “The modular transmitter must comply with any applicable RF exposure requirements.” The EUT is compliant with all applicable RF exposure requirements. Please see RF Exposure Exhibit. Please contact me if you have additional questions. Your attention to this matter is greatly appreciated. Sincerely, Name: Steve Runkel Title: CEO/President

External Photos

EMCS28457-SAR © 2010, MET Laboratories, Inc Page 25 of 33 EUT PHOTOS EMCS28457-SAR © 2010, MET Laboratories, Inc Page 26 of 33 EUT Label EMCS28457-SAR © 2010, MET Laboratories, Inc Page 27 of 33 EMCS28457-SAR © 2010, MET Laboratories, Inc Page 28 of 33 EMCS28457-SAR © 2010, MET Laboratories, Inc Page 29 of 33 EMCS28457-SAR © 2010, MET Laboratories, Inc Page 30 of 33 EMCS28457-SAR © 2010, MET Laboratories, Inc Page 31 of 33 TEST SET-UP EMCS28457-SAR © 2010, MET Laboratories, Inc Page 32 of 33

Internal Photos

EMCS28457-SAR © 2010, MET Laboratories, Inc Page 25 of 33 EUT PHOTOS EMCS28457-SAR © 2010, MET Laboratories, Inc Page 26 of 33 EUT Label EMCS28457-SAR © 2010, MET Laboratories, Inc Page 27 of 33 EMCS28457-SAR © 2010, MET Laboratories, Inc Page 28 of 33 EMCS28457-SAR © 2010, MET Laboratories, Inc Page 29 of 33 EMCS28457-SAR © 2010, MET Laboratories, Inc Page 30 of 33 EMCS28457-SAR © 2010, MET Laboratories, Inc Page 31 of 33 TEST SET-UP EMCS28457-SAR © 2010, MET Laboratories, Inc Page 32 of 33

Operational Description

KEY FEATURES 802.11b/g radio SDIO v1.0 (1 & 4 bit), SPI (1 & 4 bit)  Based upon Marvell Libertas 88W8686 Chipset 30 pin high density SMT connector Single U.FL RF connector for 802.11b/g Supports WEP, WPA, WPA2 (Home and Enterprise) and 802.1x Supplicants Bluetooth Co-existence 3-wire interface through main connector Advanced Low power modes High vibration mounting holes Supports host downloaded radio firmware Driver supports for WinCE 5.0, Windows Mobile 5.0/6.0, Linux 2.6 and other embedded OS’s Small form factor radio module (29mm x 21mm x 6mm) RoHS compliant High Performance Embedded Radio Airborne™ is a line of highly integrated 802.11 radios and modules. The Airborne Embedded 802.11b/g SDIO-SPI Radio delivers a high performance, integrated solution for consumer and industrial wireless applications using the latest IEEE 802.11b/g platform. It delivers a cost and space efficient solution, provided by a small profile design and direct down SMT high density connection to the system board. Interoperable and Advanced Security The Airborne Embedded 802.11b/g SDIO- SPI Radio is a complete high-speed wireless solution that uses the latest 802.11b/g chipset from Marvell Libertas 88W8686. It provides compatibility with the 802.11b DSSS and 802.11g orthogonal frequency division multiplexing (OFDM) standards. The module includes integrated antenna connectors that provide a direct connection from the radio to the antenna. The module is a true upgrade option - no soldered connections are required. It can be upgraded in the field or added to a managed product configuration. As the latest addition to the Airborne Radio family the WLRG-RA-DP600 includes support for full speed SDIO (1 & 4 bit) and SPI, through the Quatech standard 30 pin connector. The WLRG-RA-DP600 family includes full hardware and software support for AES/CCMP, RC4, WEP, WPA and WPA2 encryption. Provision for enterprise level EAP supplicants is fully supported. In addition the module provides the latest 802.11 standards, including QoS and Transit Power Control. WLRG-RA-DP600 Series - SDIO/SPI 5675 Hudson Industrial Parkway Hudson, OH 44236 1.800.553.1170 www.quatech.com Bluetooth Coexistence is provided via three wire interface, and supports Packet Transfer Arbitration (PTA) as specified in the IEEE802.15.2 standard. The Airborne Embedded 802.11b/g SDIO- SPI Radio incorporates the most advanced power save technology, enabling original equipment manufacturers (OEMs) to utilize intelligent power control to minimize peak and overall power consumption and maximize battery life. Quatech provides unparalleled software support to OEMs, including radio drivers for Linux, Windows CE, Windows XP, Windows Mobile 5.0/6.0 and other leading real-time operating systems. OEMs count on Quatech’s technical expertise and experience to ease 802.11 radio integration and meet their time-to-market goals. Applications Designed specifically with power, performance and flexibility in mind, the Airborne™ family of radios are the wireless choice for machine-to-machine (M2M), Medical, Industrial and Mobile Enterprise applications. Quatech supplies the highest performance M2M WiFi radio products available, these are backed with industry leading support and product warranties. Please contact Quatech for further details and connect with reliability and performance. Model Selection Guide Airborne TM Embedded 802.11b/g SDIO-SPI Radio Model No. WiFiInterfaceSupply RoHS 802.11b802.11gSDIO SPI BT CoX*VBATVHIO WLRG-RA-DP601  To evaluate all available features and receive evaluation tools, order below. WLEG-RA-DP601802.11b/g SDIO/SPI Radio Evaluation Kit WLRG-RA-DP601 radio, SDIO Adapter Card, Tools/Documentation CD, Drivers (Windows CE, XP and Linux) * Bluetooth Coexistence Support Block Diagram 5675 Hudson Industrial Parkway Hudson, OH 44236 1.800.553.1170 www.quatech.com Mechanical Outline Technology IEEE 802.11b/g, WiFi Compliant Interfaces SDIO v1.0 (1&4 bit), SPI (1 & 4 bit), Bluetooth Coexistence Frequency 2.4-2.4835 GHz (US/Canada/Europe) 2.4-2.497 GHz (Japan) Modulation Technology DSSS, CCK, OFDM Modulation Type DBPSK, DQPSK, CCK, BPSK, QPSK, 16QAM, 64QAM Network Access ModesInfrastructure, ad-hoc Channels US/Canada - 11 channels Europe - 13 France - 4 channels Japan - 14 channels (13 channels for ‘g’) Wireless Data Rates802.11b - 11,5.5,2,1 Mbs 802.11g - 54,48,36,24,18,12,9,6 Mbs MACCSMA/CA with ACK, RTS, CTS Sensitivity -92dBm @ 1Mb/s (802.11b) -85dBm @ 11Mb/s (802.11b) -87dBm @ 6Mb/s (802.11g) -82dBm @ 18Mb/s (802.11g) -75dBm @ 36Mb/s (802.11g) -70dBm @ 54Mb/s (802.11g) Security ProtocolsDisabled, WEP 64 & 128 bit, WPA (TKIP), WPA (AES), WPA2 (AES), 802.1x (EAP) Supplicant Antenna U.FL coaxial connectors, 50 ohms, supports diversity SupplyVDD=3.3VDC +/-10%, VHIO= 3.3VDC+/- 10% or 1.8 VDC+/- 10% DC Characteristics 802.11g Tx mode current= 161 mA (Typ) 802.11g Rx mode current= 174 mA (Typ) 802.11b Tx mode current= 218 mA (Typ) 802.11b Rx mode current = 146mA (Typ) IEEE Power Save (PSP) Mode = 6mA (Typ) Power Down Mode= 160mA Operating and Storage TempOperating: -30°C to +85° C, Storage -50°C to + 125°C Connector 30 Pin High density SMT Connector (Molex 53748-0308) Agency ApprovalsFCC Part 15 Class B Sub C Intentional Radiator, IOC RSS-210 (Pending) Specifications Connectors Radio Connector 053748-0308 (Molex) 0.50mm (.020") Pitch SlimStack™ Plug, Surface Mount, Dual Row, Vertical, 3.00mm (.118") Stack Height, 30 Circuits Board Connector 052991-0308 (Molex) 0.50mm (.020") Pitch SlimStack™ Receptacle, Surface Mount, Dual Row, Vertical, 3.00mm (.118") Stack Height, 30 Circuits RF Connector U.FL (Hirose) Ultra Small Surface Mount Coaxial Connector

RF Exposure Info

Specifications subject to change without notice. 3425 N.44 th Street, LINCOLN, NE 68504 USA SALES PHONE: 800.228.4563 PHONE: 402.467.4491 • FAX: 402.467.4528 www.centurion.com • [email protected] Copyright  2004 Centurion Wireless Technologies, Inc. All Rights Reserved Specifications: ƒ Versatile and easy to use antenna for 2.4 to 2.5 GHz Bluetooth and IEEE 802.11 devices ƒ Designed for easy connection to radio cards ƒ Utilizes Centurion’s patented PCB Microsphere technology ƒ Has a ground plane incorporated into the resonator structure, therefore no additional ground plane is required to radiate efficiently Frequency Range 2.4 – 2.5 GHz Gain 2 dBi Polarization Linear Impedance 50 ohms VSWR <2.5:1 Dimensions (L x W x H) 1.88" x .5"x .032" Weight 2 g Cable & Connector: Model # Part # Cable Connector NanoBlue-IP04 MAF94045 100mm, Ø 1.13mm IPEX MHF NanoBlue MAF94102 100mm, RG-178 Flying Lead NanoBlue a – 9/05/05 NanoBlue Model Number: NanoBlue Internal Antenna – Embedded Azimuth Plane 2.45 GHz Elevation Plane Phi = 90 2.45 GHz Elevation Plane Phi = 0 2.45 GHz 1.88"

RF Exposure Info

L-COM, INC. 45 BEECHWOOD DRIVE NORTH ANDOVER, MA 01845 WWW.L-COM.COM E-MAIL: [email protected] PHONE: 1-800-343-1455 FAX: 1-978-689-9484 © L-com, Inc. All Rights Reserved. L-com Global Connectivity and the L-com logo are registered marks. HyperLink Wireless 2.4 GHz 5.5 dBi Reverse Polarity- SMA "Rubber Duck" Wireless LAN Antenna Applications and Features Applications: y 2.4 GHz ISM Band y IEEE 802.11b and 802.11g Wireless LAN y Bluetooth® y WiFi y Wireless Video Systems y Multipoint and Mobile Applications Features: y Flexible "Rubber Duck" antenna y Tilt and swivel design y RP-SMA Connector y RoHS Compliant y Optional Magnetic Mount Available Model: HG2405RD-RSP Description This compact 2.4GHz omnidirectional "rubber-duck" WiFi antenna provides broad coverage and 5.5 dBi gain. It is a coaxial sleeve design with an omni-directional pattern. It is ideally suited for IEEE 802.11b and 802.11g wireless LANs, Bluetooth® and other WLAN applications. Measuring 8.2" long, this flexible antenna features a tilt-and-swivel reverse-polarity SMA connector, allowing them to be used vertically, at a right angle, or any angle in-between. It is suitable as a replacement RF antenna for many access points and radios that are equipped with reverse-polarity SMA connectors including D-Link®, Linksys® WET11 and others. Application Note: This antenna is not for use with U.S.Robotics® RP-SMA equipped devices. Specifications Frequency 2400-2500 MHz Gain 5.5 dBi Impedance 50 Ohm VSWR < 2.0 Weight 0.7 oz. (20 g) Length 8.2" (208 mm) Diameter 0.5" (13 mm) Finish Matte Black Connector Reverse Polarity SMA Plug Operating Temperature -40° C to 85° C (-40° F to 185° F) Flame Rating UL 94HB Polarization Vertical RoHS Compliant Yes L-COM, INC. 45 BEECHWOOD DRIVE NORTH ANDOVER, MA 01845 WWW.L-COM.COM E-MAIL: [email protected] PHONE: 1-800-343-1455 FAX: 1-978-689-9484 © L-com, Inc. All Rights Reserved. L-com Global Connectivity and the L-com logo are registered marks. Antenna Gain Pattern Guaranteed Quality This product is backed by L-Com's Limited Warranty Optional Magnetic Mount Model Description HMA6-RSPA10 Reverse-Polarity SMA-Jack (RP-SMA Jack) magnetic mount with 5 ft. high performance low-loss 100 series cable terminated with a Reverse-Polarity SMA Plug (RP-SMA Plug) connector. Custom connectors and cable lengths also available.

RF Exposure Info

5 4 3 2 1 UNLESS OTHERWISE SPECIFIED: WEIGHT: REV DWG. NO. A SIZE TITLE: NAME DATE COMMENTS: Q.A. MFG APPR. ENG APPR. CHECKED DRAWN FINISH MATERIAL INTERPRET GEOMETRIC TOLERANCING PER: APPLICATION USED ON NEXT ASSY PROPRIETARY AND CONFIDENTIAL THE INFORMATION CONTAINED IN THIS DRAWING IS THE SOLE PROPERTY OF <INSERT COMPANY NAME HERE>. ANY REPRODUCTION IN PART OR AS A WHOLE WITHOUT THE WRITTEN PERMISSION OF <INSERT COMPANY NAME HERE> IS PROHIBITED. FILENAME ACH2-AT-DP002 121409 cm ACH-AT-DP002 QUATECH, INC. encapsulated SHEET 1 OF 2 Vendor's drawings 5 4 3 2 1 UNLESS OTHERWISE SPECIFIED: WEIGHT: REV DWG. NO. A SIZE TITLE: NAME DATE COMMENTS: Q.A. MFG APPR. ENG APPR. CHECKED DRAWN FINISH MATERIAL INTERPRET GEOMETRIC TOLERANCING PER: APPLICATION USED ON NEXT ASSY PROPRIETARY AND CONFIDENTIAL THE INFORMATION CONTAINED IN THIS DRAWING IS THE SOLE PROPERTY OF <INSERT COMPANY NAME HERE>. ANY REPRODUCTION IN PART OR AS A WHOLE WITHOUT THE WRITTEN PERMISSION OF <INSERT COMPANY NAME HERE> IS PROHIBITED. FILENAME 121409 cm ACH-AT-DP002 QUATECH, INC. encapsulated SHEET 2 OF 2 ACH2-AT-DP002 Vendor's drawings Antenna Gain Pattern L-COM model number HG2402RD-RSF

RF Exposure Info

MET Laboratories, Inc. Safety Certification - EMI - Telecom Environmental Simulation 914 WEST PATAPSCO AVENUE ! BALTIMORE, MARYLAND 21230-3432 ! PHONE (410) 354-3300 ! FAX (410) 354-3313 33439 WESTERN AVENUE ● UNION CITY, CALIFORNIA 94587 ● PHONE (510) 489-6300 ● FAX (510) 489-6372 3162 BELICK STREET ● SANTA CLARA, CALIFORNIA 95054 ● PHONE (408 748-3585 ● FAX (510) 489-6372 EMCS28457-SAR © 2010, MET Laboratories, Inc Page 1 of 33 Dosimetric Assessment Test Report for the Qualtech Airborne Radio Tested and Evaluated In Accordance With FCC OET 65 Supplement C: 01-01 Prepared for Qualtech, Inc 5675 Hudson Indl. Parkway Hudson, OH 44236 Engineering Statement: The measurements shown in this report were made in accordance with the procedures specified in Supplement C to OET Bulletin 65 of the Federal Communications Commission (FCC) Guidelines [FCC 2001] and Industry Canada RSS-102 for uncontrolled exposure. I assume full responsibility for the accuracy and completeness of these measurements, and for the qualifications of all persons taking them. It is further stated that upon the basis of the measurements made, the equipment evaluated is capable of compliance for localized specific absorption rate (SAR) for uncontrolled environment/general population exposure limits specified in ANSI/IEEE Std. C95.1-1999. EMCS28457-SAR © 2010, MET Laboratories, Inc Page 2 of 33 SAR Evaluation Certificate of Compliance APPLICANT: Qualtech, Inc Applicant Name and Address: Qualtech, Inc 5675 Hudson Indl. Parkway Hudson, OH 44236 USA Test Location: MET Laboratories, Inc.` 3162 Belick Street Santa Clara, CA 95054 USA EUT: Airborne Radio 802.11bg Date of Receipt: June 11, 2010 RF exposure environment: Uncontrolled Exposure/General Population RF exposure category: Portable Power supply: 3.7V 1200mAh Battery Antenna: External Dipole Production/prototype: Production Modulation: DTS Duty Cycle: 100% TX Range: 2400-2483.5MHz 802.11 b 2400-2483.5MHz 802.11 g Max SAR Measured SAR 1g (W/kg) Body: 0.993 0.442 Anderson Soungpanya Electromagnetic Compatibility Lab EMCS28457-SAR © 2010, MET Laboratories, Inc Page 3 of 33 INTRODUCTION ................................................................................................................................................ 4 SAR DEFINITION ............................................................................................................................................... 4 DESCRIPTION OF DEVICE UNDER TEST (EUT) ..........................................................................................5 SAR MEASUREMENT SYSTEM....................................................................................................................... 6 MEASUREMENT SUMMARY........................................................................................................................... 7 FLOW CHART OF THE RECOMMENDED PRACTICES AND PROCEDURES ........................................... 9 DATA EVALUATION PROCEDURES ............................................................................................................. 13 SYSTEM PERFORMANCE CHECK................................................................................................................ 15 SIMULATED EQUIVALENT TISSUES ........................................................................................................... 15 SAR SAFETY LIMITS ...................................................................................................................................... 16 ROBOT SYSTEM SPECIFICATIONS .............................................................................................................. 17 1.1. Specifications ................................................................................................................ 17 1.2. Data Acquisition Electronic (DAE) System: ................................................................ 17 1.3. Phantom(s): ................................................................................................................... 17 SAR Measurement System ................................................................................................................................. 18 1.4. RX90BL Robot ............................................................................................................. 18 1.5. Robot Controller ........................................................................................................... 18 1.6. Light Beam Switch ....................................................................................................... 18 1.7. Data Acquisition Electronics ........................................................................................ 18 1.8. Electo-Optical Converter (EOC)................................................................................... 19 1.9. Measurement Server ..................................................................................................... 19 1.10. Dosimetric Probe ...................................................................................................... 19 1.11. SAM Phantom........................................................................................................... 19 1.12. Planar Phantom ......................................................................................................... 19 1.13. Validation Planar Phantom ....................................................................................... 19 1.14. Device Holder ........................................................................................................... 20 1.15. System Validation Kits ............................................................................................. 20 TEST EQUIPMENT LIST.................................................................................................................................. 21 MEASUREMENT UNCERTANTIES................................................................…

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Test Report

MET Laboratories, Inc. Safety Certification - EMI - Telecom Environmental Simulation 914 WEST PATAPSCO AVENUE ! BALTIMORE, MARYLAND 21230-3432 ! PHONE (410) 354-3300 ! FAX (410) 354-3313 33439 WESTERN AVENUE ● UNION CITY, CALIFORNIA 94587 ● PHONE (510) 489-6300 ● FAX (510) 489-6372 3162 BELICK STREET ● SANTA CLARA, CALIFORNIA 95054 ● PHONE (408 748-3585 ● FAX (510) 489-6372 The Nation’s First Licensed Nationally Recognized Testing Laboratory June 28, 2010 Quatech, Inc. 5675 Hudson Indl. Pkwy. Hudson, OH 44236 Dear Chris Myers, Enclosed is the EMC Wireless test report for compliance testing of the Quatech, Inc., WLRG-RA-DP601 as tested to the requirements of Title 47 of the CFR, Ch. 1 (10-1-06 ed.), ICES-003, Issue 4 February 2004 for Digital Devices and FCC Part 15 Subpart C, RSS-210, Issue 7, June 2007 for Intentional Radiators. Thank you for using the services of MET Laboratories, Inc. If you have any questions regarding these results or if MET can be of further service to you, please feel free to contact me. Sincerely yours, MET LABORATORIES, INC. Jennifer Warnell Documentation Department Reference: (\Quatech, Inc.\EMC28457-FCC247 Rev. 2) Certificates and reports shall not be reproduced except in full, without the written permission of MET Laboratories, Inc. Electromagnetic Compatibility Quatech , Inc. Cover Page WLRG-RA-DP601 CFR Title 47, 15.247; RSS-210, Issue 7, June 2007 & ICES-003 MET Report: EMC28457-FCC247 Rev. 2 © 2010, MET Laboratories, Inc. Page ii of x DOC-EMC702 2/18/2010 Electromagnetic Compatibility Criteria Test Report for the Quatech, Inc. WLRG-RA-DP601 Tested under the FCC Certification Rules contained in ICES-003 for Digital Devices & 15.247 Subpart C & RSS-210, Issue 7, June 2007 for Intentional Radiators MET Report: EMC28457-FCC247 Rev. 2 June 28, 2010 Prepared For: Quatech, Inc. 5675 Hudson Indl. Pkwy. Hudson, OH 44236 Prepared By: MET Laboratories, Inc. 914 W. Patapsco Ave. Baltimore, MD 21230 Electromagnetic Compatibility Quatech , Inc. Cover Page WLRG-RA-DP601 CFR Title 47, 15.247; RSS-210, Issue 7, June 2007 & ICES-003 MET Report: EMC28457-FCC247 Rev. 2 © 2010, MET Laboratories, Inc. Page iii of x DOC-EMC702 2/18/2010 Electromagnetic Compatibility Criteria Test Report for the Quatech, Inc. WLRG-RA-DP601 Tested under the FCC Certification Rules contained in ICES-003 for Digital Devices & 15.247 Subpart C & RSS-210, Issue 7, June 2007 for Intentional Radiators Len Knight, Project Engineer Jennifer Warnell Electromagnetic Compatibility Lab Documentation Department Engineering Statement: The measurements shown in this report were made in accordance with the procedures indicated, and the emissions from this equipment were found to be within the limits applicable. I assume full responsibility for the accuracy and completeness of these measurements, and for the qualifications of all persons taking them. It is further stated that upon the basis of the measurements made, the equipment tested is capable of operation in accordance with the requirements of the FCC Rules Part 15.247 and Industry Canada standards ICES-003, Issue 4 February 2004, RSS-210, Issue 7, June 2007 under normal use and maintenance. Shawn McMillen, Wireless Manager, Electromagnetic Compatibility Lab Electromagnetic Compatibility Quatech , Inc. Report Status WLRG-RA-DP601 CFR Title 47, 15.247; RSS-210, Issue 7, June 2007 & ICES-003 MET Report: EMC28457-FCC247 Rev. 2 © 2010, MET Laboratories, Inc. Page iv of x DOC-EMC702 2/18/2010 Report Status Sheet Revision Report Date Reason for Revision  June 23, 2010 Initial Issue. 1 June 28, 2010 Engineer corrections. 2 June 28, 2010 Editorial corrections. Electromagnetic Compatibility Quatech , Inc. Table of Contents WLRG-RA-DP601 CFR Title 47, 15.247; RSS-210, Issue 7, June 2007 & ICES-003 MET Report: EMC28457-FCC247 Rev. 2 © 2010, MET Laboratories, Inc. Page v of x DOC-EMC702 2/18/2010 Table of Contents I. Executive Summary .................................…

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Contact Information

Applicant

Mike McNatt(Compliance Engineer)
[email protected]815-433-5100Fax: 815-433-5100

Technical Contact

Quatech, Inc.Christopher Myers
[email protected]3306559000

5675 Hudson Industrial Parkway · Hudson, Ohio · United States

Test Firm

EUROFINS ELECTRICAL AND ELECTRONIC TESTING NA, INCGreg Kovolenko
[email protected]4108444071Fax: 4103543313

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz82.40 mW
Modular Type
Limited Single Modular Approval
Confidentiality
Long Term
Grant Notes
Output power listed is conducted. Limited modular approval. This device is intended for mobile and portable applications. For portable applications the module must be installed on similar platforms as described in this filing. For portable applications, only the 2 dBi dipole antenna has been authorized and must be installed outside of the host. The antenna(s) used for this transmitter must not be co-located or operating in conjunction with any other antenna. The highest reported body SAR is: 0.993 W/kg.

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