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BRWDSMTX102.4 GHz Transceiver

Horizon Hobby, LLC
2.4 GHz Transceiver - FCC ID BRWDSMTX10 - Horizon Hobby, LLC
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Nov 03, 2005
Application Purpose
Original Equipment
Date of Application
Nov 03, 2005
Equipment Note
2.4 GHz Transceiver
Frequency Range
2402.00000000 - 2478.00000000
Company
Horizon Hobby, LLC
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

X1TXM 2.4GHz DSSS Module User Manual. Horizon Hobby Inc., 1657 Country Club Dr., Milpitas CA 95035 USA 408 945 9800 1. Features • 2.4Ghz Direct Sequence Spread Spectrum (DSSS) radio transceiver module. • Operates in the unlicensed worldwide ISM band (2.4 GHz to 2.483.5GHz) band • Fully integrated power regulation with a wide input unregulated operating range 2.4 to 3.6V. • Fully integrated local oscillator and 12MHz 20ppm reference crystal • 200mA operating current • Transmit power up to 100mW EIRP • Receive sensitivity up to -95dBm • DSSS data rates up to 250kbps • 1 mile operating range • Full packet assembling and disassembling • Auto transaction sequencer • Fully buffered digital interface with high voltage tolerant inputs 2. Pin description Pin Number Name Description 1 GND Module Ground 2 VDD Module power input 3 IRQ Interrupt Request 4 RST Reset, active High 5 MOSI Master out, slave In data 6 nSS Slave Select, Active Low 7 SCLK SPI data clock 8 MISO Master in, slave out data 9 GND Module Ground 10 XOUT Clock output from module 11 TXRX Switch antenna to transmit direction 12 RXTX Switch antenna to receive direction 3. Specifications Parameter Value Units Storage Temp -65 to 105 Degrees Celsius VDD 2.4 to 3.6 Volts Receive Sensitivity -95 dBm Transmit power (conducted) 17 dBm MAX Transmit power (radiated) 19 dBm MAX Idle current 1 mA Receive current 22 mA Transmit current 200 mA 4. Block Diagram Framer Interface Buffer DSSS Modem VCO Xtal SE2550BL Power Amplifier CYWUSB6936 DSSS 2.4GHz Radio 2dBi Antenna 12MHz FCC ID: BRWDSMTX10 System Interface Horizon Hobby X1TXM Module Block Diagram Power Regulator Power Regulator 5. Module User Requirements 5.1 This module must be integrated into a device where the user cannot access the antenna connector. 5.2 Only a 2dBi antenna can be used with this module. The antenna must meet and not exceed the gain and pattern of the supplied Inpaq DAM00BM11500209 folded dipole antenna. 5.3 Changes or modifications to the module that are not expressly approved by Horizon Hobby could void the user’s authority to operate the equipment. 5.4 The device must contain the following permanent labeling on the exterior of the device as follows: Contains FCC ID: BRWDSMTX10 5.5 The user manual of the device must contain the following paragraph: 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. Caution: Changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. This product contains a radio transmitter with wireless technology which has been tested and found to be compliant with the applicable regulations governing a radio transmitter in the 2.400 GHz to 2.4835 GHz frequency range. The following countries associated regulatory agencies recognizing the noted certifications for this product as authorized for sale and use are: USA Canada Belgium Denmark France Finland Germany Italy Netherlands Spain Sweden UK 5.6 This module meets the requirements for a mobile device that may be used at separation distances of more than 20cm from the human body. 5.7 This module may only be used in battery powered devices.

Cover Letter(s)

Page 1 of 4 American TCB November 1, 2005 RE: FCC ID: BRWDSMTX10 Attention: Tim Johnson Please find our responses to your comments on this Application below: 1) Please justify use of the DoC authorization. This does not appear to directly apply to this device. There is no justification for a DoC procedure for this device. The suggested use of the FCC logo has been removed from the user instructions and the logo has been removed from the drawing of the proposed label. 2) The labeling shows an FCC DoC logo, but the device appears to be tested in a portable device and therefore not directly connected or considered a PC peripheral under 15.3. Please review/explain. Refer to (1) above. 3) If this device is subject to a DoC, then the manual is missing the appropriate information on a single page that is given in 2.1077. Refer to (1) above. 4) The device appears to be tested within a portable device. This type of device is commonly held against the stomach during use and 20 cm as a mobile device does not appear to always be possible. Note this type of transmitter commonly have a neck strap as well. Please review/explain in more detail the intended types of installations. The device provided was used for convenience to provide power/signaling to the EUT. The actual antenna used during testing was connected to the host (refer to additional test configuration photograph uploaded showing connection from module to antenna) but the host system will not be used with this device. The host systems that will use this device will be designed to ensure that the antenna and its feed point will be positioned on the device to provide a 20cm separation from persons. Further the host device will be designed to ensure that the normal location of hands on the controller and the location of the controls will also be more than 20cm from the antenna. To relieve some of these issues please change the application to one for limited modular approval. The limitations should restrict the module’s use to Horizon Hobby’s end products. Page 2 of 4 5) Please explain the intent of this module as these are typically not allowed to be installed by the end user and also not clear what types of devices this is intended for. Additionally see items 3 and 4 above. It is uncertain if these devices can meet appropriate RF exposure requirements if their intent is for a portable controller. The modules will be used in purpose-built controllers that are designed to operate in the 2.4 GHz band (current units use alternative frequency bands for model control). There is no intent to provide the end user with the module, in fact the end user would not have access to the module as it would be installed inside the controller. See also item (4) above for rf exposure concerns. 6) The operational description mentions 100 mW, while testing shows about 3 dB lower. Additionally some testing even appears to mention a 21.6 dBm output. Note that the FCC expects tests all testing to be performed at maximum output power. Please explain/comment as necessary. The original intent was to operate at a nominal power of 100mW, and the actual measured power at this nominal setting was 21.6dBm. At this power level the device failed spurious emissions limits. The final power to be used in the US devices will be the 17dBm power setting referenced in the application. The operating/installation guide defines conducted output power as being 18dBm max and the radiated power as being 20dBm (conducted power plus 2dBi gain of the antenna). These has been modified to reflect a maximum output power of 17dBm, eirp of 19dBm, in-line with the measured values. 7) Photographs regarding what antenna was tested (i.e. to be approved) was not provided. Please provide. A spec sheet for the antenna has been uploaded. 8) AC power line emissions are generally required for modular approvals since there is no guarantee that an integrator will use a battery powered device and the grantee can not maintain control of the installation for another integrator. Simply instructing the integrator to only use in battery installations is not sufficient. See attached. Please provided further justification or AC powerline emissions testing as necessary. If the device can be powered from AC mains while using (i.e. some airplane controllers make use of AC adapters and an PC adapter for use in training programs), then AC line emissions become necessary as well Some controllers that can utilize a PC interface can be operated at the same time as powered. Although the module is currently intended for use in Horizon Hobby controllers that would not have a provision for being powered from an external AC-DC adapter, your suggestions have been noted and a test for AC conducted emissions has been performed. During that test we did spot check the emissions at the fundamental frequency and the harmonics and saw no increase in these emissions from the module. Page 3 of 4 9) FYI....Generally the FCC strongly prefers for the FCC ID to be visible to the user upon purchase and after installation (when possible). Modular approvals are somewhat unique in the respect that they do get integrated and it is hard to meet this requirement per se. However generally we see that these types of devices would place the labels on the shield of the device. By placing on the bottom side of the board, anyone opening the device (for any reason, including compliance issues) may not have access to the label, especially if the board is soldered in by the integrator instead of placed on a removable mount. We highly suggest that labeling be done on the shield on the other side of the board instead of underneath. Your comment is noted. This device will only be installed by Horizon Hobby (see [4] above) into their own controllers and the outside of the host enclosure will contain the FCC ID for the module. 10) The user manual tends to suggest issues that need to be in the manual for the integrator. However it is not clear that this information…

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Cover Letter(s)

American TCB 6731 Whittier Ave Suite C110 McLean, Va. 22101 9 th October 2005 Gentlemen: This is your letter of authorization to accept our appointment of Elliott Laboratories, Inc. as Agent for Horizon Hobby Inc., 1657 Country Club Dr., Milpitas CA 95035, to sign applications before the Commission and to make representations to you on our behalf. Elliott Laboratories is to receive and exchange data between our company and the Commission. This authorization is made pursuant to Section 2.911(c) of the FCC Rules and expires on 9 th October 2006. I hereby certify on behalf of Horizon Hobby Inc., 1657 Country Club Dr., Milpitas CA 95035 ("Applicant") that neither Applicant nor any party to the application (officers, directors, and 5% shareholders) is subject to a denial of Federal benefits that includes FCC benefits pursuant to section 5301 of the Anti-Drug Abuse Act of 1988. 21 U.S.C. 853a. Sincerely, Paul Beard Inventor, Lead Engineer - Spektrum

Cover Letter(s)

Paul Beard Horizon Hobby Inc. 1657 Country Club Dr., Milpitas CA 95035 USA American TCB 6731 Whittier Ave Suite C110 McLean, Va. 22101 October 9 th 2005 Dear Examiner: I am writing to avoid the possibility of an inadvertent disclosure of proprietary information. The accompanying Form 731 is being filed with the commission on our behalf by Elliott Laboratories, Inc., a consulting and testing laboratory. Included as exhibits with the enclosed application are block diagrams, schematics, and a detailed description of the theory of operation of the device. It is our intention to provide the commission with a full disclosure of our product so that its merits can be evaluated. Indeed, we are pleased to provide any further information that the commission might wish to see. It is not our intention, however, to make our proprietary process a matter of public record. In view of the fact that the block diagrams, schematics, and associated theory of operation disclose the mechanism of our process, we ask that these portions (block diagrams, schematics, and theory of operation) of our application be withheld from public inspection as provided under FCC section 0.459. These documents contain details of the proprietary operation of product. These details are not readily discernible - even to technically sophisticated individuals - from our hardware and constitute trade secrets. In addition, we request temporary non-disclosure for the user manual and all photographs. We request therefore that these documents and this letter be segregated from the body of our evaluation report and withheld from public inspection. Thank you for your attention. Please let the undersigned know if the Commission disagrees with our position or requires further justification. Sincerely, Paul Beard Inventor, Lead Engineer - Spektrum

Cover Letter(s)

EXHIBIT 10: Modular Approval Requirements Modular Approval is being requested for this device. There are eight requirements that the device must meet for full modular approval. The following paragraphs detail these requirements and the manner in which the device meets them. The module meets all of the technical specifications applicable to the frequency band of operation. The module has its own RF shielding. The top (component side) is fully enclosed by a tin plated shield which is soldered to the rf ground plane continuously on all 4 sides. The bottom (solder side) is a fully poured copper gound layer. No traces are on this layer. There are vias between the ground layer and shield at least every 0.020” All modulation and data input(s) are buffered. U1 contains isolators for each digital interface pin. The isolators are separately powered and are tolerant of being drive above the VDD of the device. The clock domain of this circuit is also independent. RESET is protected by a capacitor (C2) so that the device always powers into an idle state. The module has its own power supply regulation and local reference oscillator. The module contains its own power supply regulation and the rf reference oscillator is contained within the module. Power supply regulation is provided via six internal, separately decoupled LDOs inside U1. The module does not need to be powered by a regulated power source. The voltage range is 2.7 to 3.6Vdc. U1 also contains a complete VCO driven by an internal reference oscillator. The reference oscillator uses X1, a 12MHz reference crystal completely contain on the moduel. The modular transmitter must comply with the antenna requirements of Section 15.203 and 15.204(c). The certification submission contains a detailed description of the configuration of all antennas that will be used with the module. The module connects to its antenna via a micro-coax connector). This connector must be internally connected to the antenna without the possibility of user access. The antenna is a 2dBi folded dipole. Inpaq Antenna part# DAMA00BM11500209 was provided for testing. The antenna connector is not user accessible. Only folded dipole antennas with 2dBi gain or less can be used with this module. For Industry Canada, the module meets certification labeling requirements. Host devices that contain separately certified modules do not need to be re-certified, provided that they meet the following conditions: • The host device, as a stand alone unit without any separately certified modules, complies with all applicable Radio Standards Specifications. • The host device and all the separately certified modules it contains jointly meet the safety requirements of RSS-102, if applicable. • The host device complies with the certification labeling requirements of each of the modules it contains. The module is appropriately labeled with a permanently adhered white label on the solder side of the module. For the FCC, the modular transmitter must be tested in a stand-alone configuration, i.e., the module must not be inside another device during testing. This is intended to demonstrate that the module is capable of complying with Part 15 emission limits regardless of the device into which it is eventually installed. Unless the transmitter module will be battery powered, it must comply with the AC line conducted requirements found in Section 15.207. Test data contained in this application is for the device tested as a stand- alone battery powered device. Radiated spurious emissions data demonstrating compliance with the requirements of Part 15 of the FCC rules for intentional radiators has been provided. No AC conducted tests were performed as this module will only be used in battery operated devices. The module was mounted on the back of a plastic device (with no metal) with the antenna mounted in a typical orientation to best represent the arrangement of the module in a typical device. For the FCC, the modular transmitter must be labeled with its own FCC ID number, and, if the FCC ID is not visible when the module is installed inside another device, then the outside of the device into which the module is installed must also display a label referring to the enclosed module. This exterior label can use wording such as the following: “Contains Transmitter Module FCC ID: XYZMODEL1” or “Contains FCC ID: XYZMODEL1.” The module is appropriately labeled. The label is mounted on the solder side of the module. Information to the integrator of this system regarding the labeling requirements for the host system are contained in the instructions provided with the module (X1TXM User guide). The modular transmitter must comply with any applicable RF exposure The module meets the requirements for a mobile device that may be used at separation distances of more than 20cm from the human body. Refer to the MPE calculation.

External Photos

External Photographs

ID Label/Location Info

J 1 Location of the FCC label FCC ID: BRWDSMTX10 X1TXM Module Horizon Hobby Inc., 1657 Country Club Dr., Milpitas CA 95035 USA 408 945 9800 X1TXM Label Drawing FCC ID: BRWDSMTX10 IC: 6157A-BRWDSMT 0.450" 0.725" Attached by permenant adhesive X1TXM Module PDF created with FinePrint pdfFactory trial version www.pdffactory.com

Internal Photos

Internal Photographs

Operational Description

UNLESS OTHER SPECIFIED TOLERANCES ON X 3 X.X 0.5 X.XX 0.05 ANGLES HOLEDIA INPAQ TECHNOLOGY CO., LTD. SCALE UNITmm DRAWN BY CHECKED BY: DESIGNED BY APPROVED BY THIS DRAWINGS AND SPECIFICATIONS ARE THE PROPERTY OF INPAQ TECHNOLOGY CO.,LTD.AND SHALL NOT BE REPRODUCED OR USED AS THE BASIS FOR THE MANUFACTURE OR SALE OF APPARATUS OR DEVICES WITHOUT PERMISSION DOCUMENT PAGE REV. TITLE2.4GHz A0 Type Antenna for DAMA0BR11500200 NO. 001510101041 A0 PAGE 1 OF 5 2.4GHz A0 Type Antenna for DAMA0BR11500200 1. Explanation of Part Number (1) Product type : DAM (2) Appearance Series : A0 (3) Frequency : B (4) Coaxial Cable Specification : R1 (5)Coaxial Cable Length : 150 (6)Connector Types :02 (7) Suffix for special requirements : 00 2. Electrical properties: Item Property Frequency Range 2.4~2.4835 GHz Impedance 50 Ω (Typ.) VSWR (see Fig 1) 2.0 max. Return loss (see Fig 2) -10 dB max. Gain 2.0 dBi (Typ.) Polarization Vertical Radiation pattern Near omni-directional in the horizontal plane Admitted power 1 W Electrical wave 1/2 dipole 50A1 R B1 00AMD (3)(1)(2)(4)(5)(6) 00 (7) 2 UNLESS OTHER SPECIFIED TOLERANCES ON X 3 X.X 0.5 X.XX 0.05 ANGLES HOLEDIA INPAQ TECHNOLOGY CO., LTD. SCALE UNITmm DRAWN BY CHECKED BY: DESIGNED BY APPROVED BY THIS DRAWINGS AND SPECIFICATIONS ARE THE PROPERTY OF INPAQ TECHNOLOGY CO.,LTD.AND SHALL NOT BE REPRODUCED OR USED AS THE BASIS FOR THE MANUFACTURE OR SALE OF APPARATUS OR DEVICES WITHOUT PERMISSION DOCUMENT PAGE REV. TITLE2.4GHz A0 Type Antenna for DAMA0BR11500200 NO. 001510101041 A0 PAGE 2 OF 5 Figure 1. VSWR Figure 2. Return Loss UNLESS OTHER SPECIFIED TOLERANCES ON X 3 X.X 0.5 X.XX 0.05 ANGLES HOLEDIA INPAQ TECHNOLOGY CO., LTD. SCALE UNITmm DRAWN BY CHECKED BY: DESIGNED BY APPROVED BY THIS DRAWINGS AND SPECIFICATIONS ARE THE PROPERTY OF INPAQ TECHNOLOGY CO.,LTD.AND SHALL NOT BE REPRODUCED OR USED AS THE BASIS FOR THE MANUFACTURE OR SALE OF APPARATUS OR DEVICES WITHOUT PERMISSION DOCUMENT PAGE REV. TITLE2.4GHz A0 Type Antenna for DAMA0BR11500200 NO. 001510101041 A0 PAGE 3 OF 5 Figure 3. Gain The Gain pattern was measuring in INPAQ’s FAR-field chamber . DUT will be placed on the table of rotator , a standard horn antenna and Vector Network Analyzer was using to collected data. ( Please contact to INPAQ for more detail ) z Measuring factors definition DUT Standard ANT. X (0 ) Y (90 ) Z 270 180 Chamber UNLESS OTHER SPECIFIED TOLERANCES ON X 3 X.X 0.5 X.XX 0.05 ANGLES HOLEDIA INPAQ TECHNOLOGY CO., LTD. SCALE UNITmm DRAWN BY CHECKED BY: DESIGNED BY APPROVED BY THIS DRAWINGS AND SPECIFICATIONS ARE THE PROPERTY OF INPAQ TECHNOLOGY CO.,LTD.AND SHALL NOT BE REPRODUCED OR USED AS THE BASIS FOR THE MANUFACTURE OR SALE OF APPARATUS OR DEVICES WITHOUT PERMISSION DOCUMENT PAGE REV. TITLE2.4GHz A0 Type Antenna for DAMA0BR11500200 NO. 001510101041 A0 PAGE 4 OF 5 3. Mechanical properties: Item Property Color Black ( Typ.) Coaxial-Cable Mini Coaxial 1.13 Plastic Cover TPU or TPE Antenna Base PC Fixed pin BSBM ( surface treatment ) Connector Mini Coaxial Connector Operating Temperature : -20~+65 Storage Temperature : -40~+80 4. Environmental Characteristics: No Item Test Condition Specification 4-1 High Temperature/Humidity Operating test 1.Temperature+60±2. 2.Humidity90~95%RH 3.Time24hrs 4-2 Low Temperature/Humidity Operating test 1.Temperature-20±2. 2.Humidity0%RH 3.Time24hrs 4-3 High Temperature/Humidity Storage 1.Temperature+80±2. 2.Humidity90~95%RH 3.Time88hrs 4-4 Low Temperature/Humidity Storage 1.Temperature-40±2. 2.Humidity0%RH 3.Time28hr 4-5 Temperature Cycle Operating Test 1.Temperature-40~+75 2.Duration z 88 Hours, z 45min/dwelling@ -40, z 10per min./transition from –40 to 75, z 45min/dwelling@75, 4-6 Temperature Shock Test 1.Temperature-40±~+85. 2.Time30 minutes/dwelling, 5 minutes/ transition, 24 cycles 1. Normal functional test must be satisfied after the test. 2. No material deformation is allowed. UNLESS OTHER SPECIFIED TOLERANCES ON X 3 X.X 0.5 X.XX 0.05 ANGLES HOLEDIA INPAQ TECHNOLOGY CO., LTD. SCALE UNITmm DRAWN BY CHECKED BY: DESIGNED BY APPROVED BY THIS DRAWINGS AND SPECIFICATIONS ARE THE PROPERTY OF INPAQ TECHNOLOGY CO.,LTD.AND SHALL NOT BE REPRODUCED OR USED AS THE BASIS FOR THE MANUFACTURE OR SALE OF APPARATUS OR DEVICES WITHOUT PERMISSION DOCUMENT PAGE REV. TITLE2.4GHz A0 Type Antenna for DAMA0BR11500200 NO. 001510101041 A0 PAGE 5 OF 5 4. Physical Dimension : 67.0±0.2 150±3mm 16.9±0.2 19.5±0.2 RG-178 Base2 Base1 Cover Mini Coaxial Connector Unitmm

RF Exposure Info

MPE Calculations The device is a wireless module designed for use in devices that will have the antenna t a distance of 20cm or more from persons. The OEM guidelines specify a minimum separation distance of at least 20cm, consistent with this classification. FCC part 1.1310, Table 1 limits the power density for uncontrolled exposure. The power density, P d (mW/cm 2 ) calculated from the maximum EIRP, P t (mW) and the distance, d (m), between the transmitting antenna and the closest person, can be calculated using: P d = P t /(4 pd 2 ) Frequency MPE Limit (mW/cm 2 ) Output Power (mW) Max. Antenna Gain (dBi) EIRP (mW) Pd at 20cm (mW/cm 2 ) Distance where Pd = limit (cm) 2402 to 2478 MHz 1.00 46.8 2.0 74.1 0.01 2.4 As shown in the calculations above, the power density 20cm from the device is below the maximum permitted level for uncontrolled exposure.

Test Report

File: R61491 Page 1 of 31 2016-01 Electromagnetic Emissions Test Report and Application for Grant of Equipment Authorization pursuant to FCC Part 15, Subpart C (15.247) DTS Specifications and Industry Canada RSS 210 Issue 6 for an Intentional Radiator on the Horizon Hobby, Inc. Model: X1TXM Spektrum DSM X1 FCC ID: BRWDSMTX10 UPN: 6157A-BRWDSMT GRANTEE: Horizon Hobby, Inc. 1657 Country Club Dr., Milpitas, CA 95035 TEST SITE: Elliott Laboratories, Inc. 684 W. Maude Avenue Sunnyvale, CA 94086 REPORT DATE: October 10, 2005 FINAL TEST DATE: October 6 and October 10, 2005 AUTHORIZED SIGNATORY: ______________________________ Mark Briggs Principal Engineer Elliott Laboratories, Inc. is accredited by the A2LA, certificate number 2016-01, to perform the test(s) listed in this report. This report shall not be reproduced, except in its entirety, without the written approval of Elliott Laboratories, Inc. Elliott Laboratories, Inc. -- EMC Department Test Report Report Date: October 10, 2005 File: R61491 Page 2 of 29 Pages DECLARATIONS OF COMPLIANCE Equipment Name and Model: X1TXM Spektrum DSM X1 Manufacturer: Horizon Hobby, Inc. 1657 Country Club Dr., Milpitas, CA 95035 Tested to applicable standards: Industry Canada RSS-Gen Issue 1 RSS 210 Issue 6 “Low-power Licence-exempt Radiocommunication Devices (All Frequency Bands): Category I Equipment” Measurement Facility Description Filed With Department of Industry: Departmental Acknowledgement Number: IC2845 SV2 Dated August 16, 2007 I declare that the testing was performed or supervised by me; that the test measurements were made in accordance with the above mentioned departmental standards (through the use of ANSI C63.4: 2003 as referenced by FCC Part 15 and by section 1.0 of RSS-212, Issue 1, “Test Facilities and Test Methods for Radio Equipment” / RSS-Gen Issue 1); and that the equipment performed in accordance with the data submitted in this report. Signature ______________________________ Name Mark Briggs Title Principal Engineer Company Elliott Laboratories Inc. Address 684 W. Maude Ave Sunnyvale, CA 94086 USA Date: October 10, 2005 Elliott Laboratories, Inc. -- EMC Department Test Report Report Date: October 10, 2005 File: R61491 Page 3 of 29 Pages TABLE OF CONTENTS COVER PAGE..................................................................................................................................................................................1 DECLARATIONS OF COMPLIANCE......................................................................................................................................2 TABLE OF CONTENTS...............................................................................................................................................................3 SCOPE.............................................................................................................................................................................................4 OBJECTIVE...................................................................................................................................................................................4 SUMMARY OF RESULTS...........................................................................................................................................................5 DIGITAL TRANSMISSION SYSTEMS (2400 – 2483.5MHZ)............................................................................................5 GENERAL REQUIREMENTS APPLICABLE TO ALL BANDS.........................................................................................5 MEASUREMENT UNCERTAINTIES....................................................................................................................................6 EQUIPMENT UNDER TEST (EUT) DETAILS..........................................................................................................................7 GENERAL...................................................................................................................................................................................7 ENCLOSURE..............................................................................................................................................................................7 MODIFICATIONS....................................................................................................................................................................7 SUPPORT EQUIPMENT..........................................................................................................................................................7 EUT INTERFACE PORTS........................................................................................................................................................7 EUT OPERATION DURING TESTING..................................................................................................................................8 ANTENNA REQUIREMENTS................................................................................................................................................8 TEST SITE......................................................................................................................................................................................9 GENERAL INFORMATION....................................................................................................................................................9 CONDUCTED EMISSIONS CONSIDERATIONS................................................................................................................9 RADIATED EMISSIONS CONSIDERATIONS....................................................................................................................9 MEASUREMENT INSTRUMENTATION................................................................................................................................10 RECEIVER SYSTEM............…

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Test Setup Photos

Radiated Emissions Test Configuration Photographs Module installed in remote control unit for testing – panel remained off during testing. Enclosure is plastic. Test fixture on its side for radiated emissions measurements Test fixture upright for radiated emissions measurements

Test Setup Photos

Conducted Emissions Test Configuration Photographs Conducted Emissions Test Configuration Photographs Photo showing connection of EUT rf port to antenna in host fixture.

Contact Information

Applicant

Jason Rosa(Lead Quality and Compliance Associate)
[email protected]217-403-3218Fax: 217-403-3672

Technical Contact

Elliott Laboratories Inc.Mark Briggs
[email protected]408-245-7800

684 West Maude Ave. · Sunnyvale, California · United States

Non-Technical Contact

Elliott Laboratories Inc.Mark Briggs
[email protected]408-245-7800

Test Firm

Elliott Laboratories LLCDavid Bare
[email protected]408-245-7800Fax: 408-245-3499

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz47.00 mW
Modular Type
Limited Single Modular Approval
Confidentiality
Long Term
Grant Notes
Power Output listed is Conducted. Limited Modular Approval (LMA) restricted to installation in devices manufactured by that applicant. Information must not be provided to the end user regarding how to install or remove this RF module in the user�s manual of the end product which will integrate this module. The antenna 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 must be provided with transmitter operating conditions for satisfying RF exposure compliance.

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