
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
User Guide Bluetooth Wireless Adaptor http://www.skypower.com Skypower Wireless Ltd. Unit 508, Tower B, New Mandarin Plaza TST East, Kowloon, Hong Kong 1 3 2 May require plug adaptor for some models. 1 Product Overview Introduction EZadapt™ - Mobile Phone Bluetooth Adaptor Skypower's Bluetooth Headsets are truly certified Bluetooth V1.1 Headsets. They link to any mobile phone that is truly Bluetooth V1.1 compatible, allowing you full flexibility to choose your own preferred Bluetooth mobile phone. If your mobile phone does not support Bluetooth - you still can connect Skypower's Headset to the mobile phone by 'Bluetooth-enabling' your mobile phone with Skypower's Bluetooth adaptor - the EZadapt™. EZadapt™ - connects to almost any mobile phone and at the same time acts as your mobile phone click- on-belt holder. 1 Table of Content - English Product Review Introduction Quick Start Recharging the Battery Using EZclip Additional Information 2 3 4 4 5 8 Using EZadapt Pairing - Headset with EZadapt™ 'Pairing' is a Bluetooth common term for the simple setup of matching your Headset with your phone, so that your Headset will 'listen' only to your mobile phone (through the EZadapt™), and your mobile phone will 'talk' only to your Headset (and no one else can listen to your conversation). To pair - proceed as follows: 1. Make sure that both the Headset and EZadapt™ are switched OFF. 2. Press and hold button ON on the Headset for more than 8 sec. At first you see the LED blinking YELLOW, but after about 5 sec it changes to blinking RED and GREEN alternatively. Now release the button. 3. Press and hold the single button on the EZadapt™ for more than 8 sec. At first you see the LED blinking YELLOW, but after about 5 sec it changes to blinking RED and GREEN alternatively. Now release the button. 4. Wait and watch for a few seconds. If the LEDs on both Headset and EZadapt™ change to blinking green - the pairing is successful, both ready for taking and making calls. Switch ON If the EZadapt™ is OFF and you wish to switch it ON - press and hold button ON for about 3 sec. until you see the LED blinking YELLOW. Then release the button. Now EZadapt™ tries to link with the Bluetooth Headset. If the Headset has been switched on beforehand, and if that Headset and the EZadapt™ were already paired previously - then the Bluetooth link will be established automatically and the LEDs on both Headset and EZadapt™ will blink GREEN. If linking is not successful, the LEDs in both EZadapt™ and Headset continue to blink YELLOW. If after 3 minutes the Headset and EZadapt™ are still unsuccessful to link - each will shut down eventually (to conserve battery). Switch OFF Press and hold the button for about 3 sec. until the LED goes off (no more blinking). 5 11 12 Note : 8 Additional Information Limited Warranty Skypower warrants this Product to be free from defects in material and workmanship at the time of its original purchase by a consumer, and for a subsequent period of one (1) year. If, during the warranty period, this Product fails to operate under normal use and service, due to improper materials or workmanship, Skypower subsidiaries, authorized distributors or Skypower Service Partners will, at their option, either repair or replace the Product in accordance with the terms and conditions stipulated herein. Conditions The warranty is valid only if the original receipt issued to the original purchaser by the dealer, specifying the date of purchase and serial number, is presented with the Product to be repaired or replaced. Skypower reserves the right to refuse warranty service if this information has been removed or changed after the original purchase of the Product from the dealer. This warranty does not cover any failure of the Product due to normal wear and tear, or due to misuse, including but not limited to use in other than the normal and customary manner, in accordance with Skypower's instructions for use and maintenance of the Product. Nor does this warranty cover any failure of the Product due to accident, modification or adjustment, acts of God, improper ventilation or damages resulting from liquid. This warranty does not cover Product failure due to improper repair installations, modifications or service performed by a non-Skypower Service Partner or opening of the Product by non certified persons. THERE ARE NO EXPRESS WARRANTIES, WHETHER WRITTEN OR ORAL, OTHER THAN THIS PRINTED LIMITED WARRANTY. ALL IMPLIED WARRANTIES, INCLUDING WITHOUT LIMITATION THE IMPLIED WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE, ARE LIMITED TO THE DURATION OF THIS LIMITED WARRANTY. IN NO EVENT SHALL SKYPOWER BE LIABLE FOR INCIDENTAL OR CONSEQUENTIAL DAMAGES OF ANY 10 NATURE WHATSOEVER, INCLUDING BUT NOT LIMITED TO LOST PROFITS OR COMMERCIAL LOSS, TO THE FULL EXTENT THOSE DAMAGES CAN BE DISCLAIMED BY LAW. Some countries/states do not allow the exclusion or limitation of incidental or consequential damage, or limitation of the duration of implied warranties, so the preceding limitations or exclusions may not apply to you. The warranty provided does not affect the consumer’s statutory rights under national legislation in force, nor does it affect the consumer’s rights against the dealer arising from their sales/purchase contract. FCC statement This device complies with part 15 of FCC rules. Operation is subject to he following two conditions : (1) this device may not cause harmful interference and (2) this device must accept any interference received including interference hat may cause undesired operation. Caution: Changes or modifications not expressly approved by Skypower will void the user's authority to operate the equipment. NOTE: This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, us…
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SKYPOWER <MBA xxxxxxxxxx> Block Diagram Codec Speaker line from cell phone User Input Switches Microphone line to cell phone System Micro Controller (RAM/ SRAM) Battery Battery Charger LED External Charger On Board DC Regulation PLL BPF Demod MOD Power Amp Tx Ant Rx Ant LNA On Chip Functions BPF 2402~2480MHz Crystal 24MHz
CETECOM Inc. 411 Dixon Landing Road Milpitas, CA 95035 U.S.A. Phone: + 1 408 586 6200 Fax: + 1 408 586 6299 e-mail: [email protected] URL: www.cetecom.com Federal Communication Commission Equipment Authorization Division, Application Processing Branch 7435 Oakland Mills Road Columbia, MD 21048 October 16, 2000 TO WHOM IT MAY CONCERN Pursuant to Paragraphs §0.457 and 0.459 of the Commission’s Rules (47 C.F.R.) and Section §552(b)(4) of the Freedom of Information Act, Skypower Wireless Ltd. requests confidentiality for the following products: FCC ID Number Product Title/Model QGY-MBA23011 Bluetoorh Headset Model# MBA23011 For the product stated above, we request that the following information be held confidential: 1) Electrical Schematics of the Circuitry 2) Operational description No other items submitted as part of the equipment authorization filing process are deemed confidential. The above exhibits contain Skypower Wireless Ltd. trade secrets and proprietary information that could be of benefit to our competitors regarding the design of our mobile handset. This material is not customarily available to the general public and we request that it be withheld from public inspection. If you have any questions, please feel free to contact me at the address shown below. Sincerely, Lothar Schmidt Technical Manager
Answers to Questions: 1) Use of this device appears that it may conflict with mobile phone grants having the following restrictions: "Body-worn operations are restricted to belt-clips, holsters or similar accessories that have no metallic components in the assembly..." and "SAR compliance for body-worn operating configurations is limited to the specific belt-clips/holsters/accessories tested for this filing." Please comment. Depending on your response, grant restrictions may be needed for operation only with specific phones. Answer 1) Measurements were performed to determine the influence of the EUT on a dominant transmitter's SAR. Please see the attached test report(SAR_338_2002_FCC_1900_2450). 2) Apr02 TCB notes Portable pg 12 refers "separately configured portable devices that operate in a co-located transmission environment," which is applicable to this filing. Analogy can be made to July02 TCB Excl List Tx Categ II) e), which for example says TCB can approve a mobile phone containing Bluetooth less than 5mW. However this filing does not contain a dominant transmitter. Grant note for no colocation is not appropriate. One way to begin to address the colocation issue is as follows. Since device will always be used with a mobile phone, SAR evaluation with one or more dominant transmitter (phone) options should be done, e.g., one or more granted handsets operating in Parts 22 & 24. For handset modes and channels that produced the highest body-worn SAR, repeat those configurations with Bluetooth belt-clip installed and transmitting (hopping disabled). More specifically, the following tests are recommended: a) phone with this belt-clip installed but switched off b) setup a) with both phone and this belt-clip transmitting Test results from one handset would need to be reviewed by FCC to determine if additional testing would be needed to determine compliance. Depending on your response and/or test results, grant restrictions may be needed for operation only with specific phones. Answer 2) Measurements were performed to determine the influence of the EUT on a dominant transmitter's SAR. Please see the attached test report(SAR_249_2002_FCC_1900_2450). 3) What is expected spacing from phone to body when this device is installed on phone? Answer 3) 2.5 cm. 4) Op desc is for Bluetooth function only. Please submit general device use and op desc. Answer 4) See attached file(MBA Operational Description).
FCC ID: QGY-MBA23011
CETECOM Inc. 411 Dixon Landing Road Milpitas, CA 95035 U.S.A. Phone: + 1 (408) 586 6200 Fax: + 1 (408) 586 6299 E-mail: [email protected] http://www.cetecom.com CETECOM Inc. is a Delaware Corporation with Corporation number: 2113686 Board of Directors: Dr. Harald Ansorge, Dr. Klaus Matkey, Hans Peter May V.2.16M-2002-03-12 g:\emc\projects\skypower\338-2002_23011\sar\report\sar_338_2002_fcc_1900_2450.doc © Copyright by CETECOM SAR Test Report No.: SAR_338_2002_FCC_1900_2450 for the Skypower Wireless Ltd. 2402MHz – 2480MHz Wireless Headset Dongle Model Number : 23011 FCC ID: QGY-MBA23011 Date of Report: 12/04/2002 Date of issue: 12/04/2002 Report Copy No.: 01 SAR Test Report No. SAR_338_2002_FCC_1900_2450 Date of Report: 12/04/2002 Page 2 of 29 V.2.16M-2002-03-12 This report shall not be reproduced except in full without the written approval of: CETECOM Inc. SAR 411 Dixon Landing Road Milpitas, CA 95035 U.S.A. Contents 1. ASSESSMENT ................................................................................................................ 4 2. ADMINISTRATIVE DATA ................................................................................................ 5 2.1. Identification of the Testing Laboratory Issuing the SAR Assessment Report.............. 5 2.2. Identification of the Client ........................................................................................ 5 2.3. Identification of the Manufacturer ............................................................................ 5 3. EQUIPMENT UNDER INVESTIGATION (EUI)................................................................. 6 3.1. Identification of the Equipment under Investigation ................................................. 6 3.2. Front View of the Equipment under Investigation .................................................... 7 4. SUBJECT OF INVESTIGATION ...................................................................................... 8 4.1. The IEEE Standard C95.1 and the FCC Exposure Criteria...................................... 8 4.2. Distinction Between Exposed Population, Duration of Exposure and Frequencies .. 8 4.3. Distinction between Maximum Permissible Exposure and SAR Limits..................... 9 4.4. SAR Limit ................................................................................................................ 9 5. THE FCC MEASUREMENT PROCEDURE................................................................... 10 5.1. General Requirements .......................................................................................... 10 5.2. Device Operating Next to a Person’s Ear .............................................................. 10 5.3. Test Positions........................................................................................................ 11 5.4. Test positions of device relative to head................................................................ 11 5.5. Test to be Performed............................................................................................. 14 5.6. Body-worn and Other Configurations.................................................................... 14 5.7. Procedure for assessing the peak spatial-average SAR ........................................ 15 5.8. Determination of the largest peak spatial-average SAR ........................................ 17 6. THE MEASUREMENT SYSTEM.................................................................................... 18 6.1. Robot system specification.................................................................................... 18 6.2. Probe and amplifier specification........................................................................... 19 6.3. Phantoms.............................................................................................................. 19 SAR Test Report No. SAR_338_2002_FCC_1900_2450 Date of Report: 12/04/2002 Page 3 of 29 V.2.16M-2002-03-12 This report shall not be reproduced except in full without the written approval of: CETECOM Inc. SAR 411 Dixon Landing Road Milpitas, CA 95035 U.S.A. 6.4. SAR measurement procedure ............................................................................... 20 6.5. SARA2 Interpolation and Extrapolation schemes.................................................. 20 6.6. Interpolation of 2D area scan ................................................................................ 21 6.7. Extrapolation of 3D scan ....................................................................................... 21 6.8. Interpolation of 3D scan and volume averaging..................................................... 21 7. UNCERTAINTY ASSESSMENT ....................................................................................23 7.1. Measurement Uncertainty Budget ......................................................................... 24 8. TEST RESULTS SUMMARY ......................................................................................... 26 8.1. Test configurations: ............................................................................................... 26 8.2. Body SAR results for GSM 1900MHz band for Mobile Bluetooth Adapter (MBA) .. 27 8.3. Measurement Conclusions: ................................................................................... 27 8.4. Validation Check Results....................................................................................... 28 9. REFERENCES............................................................................................................... 29 SAR Test Report No. SAR_338_2002_FCC_1900_2450 Date of Report: 12/04/2002 Page 4 of 29 V.2.16M-2002-03-12 This report shall not be reproduced except in full without the written approval of: CETECOM Inc. SAR 411 Dixon Landing Road Milpitas, CA 95035 U.S.A. 1. Assessment The Skypower Wireless Ltd. Mobile Bluetooth Adapter (MBA) wireless headset dongle is in complianc…
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SAR Test Report No : SAR_338_2002_FCC_1900_2450 Date of Report: 12/04/2002 Appendix A Page 1 of 3 Appendix A: Measurement Plots Plot 1. Date: 12/03/2002 Temperature Air / Liquid: 21.0C / 21.0C Liquid mass density (): 1 DCP 1 X=9, Y=13.6, Z=8.7 Probe factors (S/N 0123) (ConvF): 0.610 Simulated tissue dielectric parameters: r :53.16 : 1.576 Position: Ericsson phone only Operating mode: Cell-phone TX Cell-phone Channel / Frequency 661 / 1880 MHz EUT Channel / Frequency N/A Maximum 1 gram SAR: 0.073W/Kg Maximum 10 gram SAR: 0.040W/Kg Power reference start: 0.016W/Kg Power reference end 0.016W/Kg Power reference change 2 0.00% 1 DCP: Diode compression potential for different types of modulation is determined during the calibration of the probe. See section 6.2 of this report Probe and Amplifier Specification. Crest factor is not used. 2 The power reference change is calculated by the test system with more digits than indicated in the power reference start and end values. SAR Test Report No : SAR_338_2002_FCC_1900_2450 Date of Report: 12/04/2002 Appendix A Page 2 of 3 Plot 2. Date: 12/03/2002 Temperature Air / Liquid: 21.0C / 21.0C Liquid mass density (): 1 DCP 1 X=9, Y=13.6, Z=8.7 Probe factors (S/N 0123) (ConvF): 0.610 Simulated tissue dielectric parameters: r :53.16 : 1.576 Position: EUT belt clip configuration, EUT touching phantom. Operating mode: Cell-phone TX, EUT off Cell-phone Channel / Frequency 661 / 1880 MHz EUT Channel / Frequency N/A Maximum 1 gram SAR: 0.091W/Kg Maximum 10 gram SAR: 0.052W/Kg Power reference start: 0.022W/Kg Power reference end 0.022W/Kg Power reference change 2 0.00% 1 DCP: Diode compression potential for different types of modulation is determined during the calibration of the probe. See section 6.2 of this report Probe and Amplifier Specification. Crest factor is not used. 2 The power reference change is calculated by the test system with more digits than indicated in the power reference start and end values. SAR Test Report No : SAR_338_2002_FCC_1900_2450 Date of Report: 12/04/2002 Appendix A Page 3 of 3 Plot 3. Date: 12/03/2002 Temperature Air / Liquid: 21.0C / 21.0C Liquid mass density (): 1 DCP 1 X=9, Y=13.6, Z=8.7 Probe factors (S/N 0123) (ConvF): 0.610 Simulated tissue dielectric parameters: r :53.16 : 1.576 Position: EUT belt clip configuration, EUT touching phantom Operating mode: Cell-phone TX, EUT TX hopping off Cell-phone Channel / Frequency 661 / 1880 MHz EUT Frequency 2440 MHz Maximum 1 gram SAR: 0.099W/Kg Maximum 10 gram SAR: 0.055W/Kg Power reference start: 0.022W/Kg Power reference end 0.022W/Kg Power reference change 2 0.00% 1 DCP: Diode compression potential for different types of modulation is determined during the calibration of the probe. See section 6.2 of this report Probe and Amplifier Specification. Crest factor is not used. 2 The power reference change is calculated by the test system with more digits than indicated in the power reference start and end values.
SAR Test Report No.: SAR_338_2002_FCC_1900_2450 Date of Report:12/04/2002 Appendix B Page 1 of 7 Appendix B: Photos EUT Photos Photo 1: EUT front. SAR Test Report No.: SAR_338_2002_FCC_1900_2450 Date of Report:12/04/2002 Appendix B Page 2 of 7 Photo 2: EUT back. SAR Test Report No.: SAR_338_2002_FCC_1900_2450 Date of Report:12/04/2002 Appendix B Page 3 of 7 Set-up Photos Photo 3: Ericsson phone only. SAR Test Report No.: SAR_338_2002_FCC_1900_2450 Date of Report:12/04/2002 Appendix B Page 4 of 7 Photo 4: Ericsson phone only distance. SAR Test Report No.: SAR_338_2002_FCC_1900_2450 Date of Report:12/04/2002 Appendix B Page 5 of 7 Photo 5: EUT belt clip configuration, EUT touching phantom. SAR Test Report No.: SAR_338_2002_FCC_1900_2450 Date of Report:12/04/2002 Appendix B Page 6 of 7 Photo 6: EUT belt clip configuration, EUT touching phantom distance. SAR Test Report No.: SAR_338_2002_FCC_1900_2450 Date of Report:12/04/2002 Appendix B Page 7 of 7 Photo 7: Photo to demonstrate 15 cm Z-axis flat phantom.
SAR Test Report No: SAR_338_2002_FCC_1900_2450 Date of Report:12/04/2002 Appendix C Page 1 of 23 Simulant Tissue Parameters: 1900MHz Head: The following recipe is provided in percentage by weight. 54.9% distilled water 44.92% DGBE 0.18% salt 0.1% bactericide Di-electric constants measured on 12/03/2002. SAR measurements were made within 24 hours of the measurement of liquid parameters. 21.0C Freq. Rel. Condy (MHz) Perm. (S/m) 1900 38.63 1.456 1900MHz Body: The following recipe is provided in percentage by weight. 69.17% distilled water 30.29% DGBE 0.44% salt 0.1% bactericide Di-electric constants measured on 12/03/2002. SAR measurements were made within 24 hours of the measurement of liquid parameters. 21.0C Freq. Rel. Condy (MHz) Perm. (S/m) 1850.2 53.35 1.563 1880 53.16 1.576 1909.8 52.96 1.58 Conductivity 1.4 1.45 1.5 1.55 1.6 1.65 1850187018901910 frequency (MHz) conductivity (S/m) 1900Body liquid 1528 std +5% -5% Permittivity 49 50 51 52 53 54 55 56 57 1850187018901910 frequency (MHz) relative permittivity 1900Body liquid 1528 std +5% -5% Environment: Temperature: 20.9C to 21.0C Humidity: 45% _ 55 % SAR Test Report No: SAR_249_2002_FCC_1900_2450 Date of Report:12/04/2002 Appendix C Page 2 of 23 Test Equipment: Test Equipment Model Serial Instrument description Supplier/Manufacturer Model Serial No. Calibration (date) Bench top Robot Mitsubishi supplied by Indexsar RV-E2 Serial No. N/A SAM Phantom Upright shell phantom made by Antennessa digitized and mounted by Indexsar SAM 04/02 FT08 N/A 1900MHz Head Tissue Simulant Cetecom Inc. 1900 Head N/A 12/03/2002 1900MHz Body Tissue Simulant Cetecom Inc. 1900 Body N/A 12/03/2002 1900MHz Dipole IndexSAR – IEEE 1528 design IXD-190 0016 7/30/2002 Netwok Analyzer Agilent 8753ES US39172511- 04/04/2002- RF Amplifier Vectawave N/A N/A N/A Power Meter Rohde and Schwartz NRVD 836875/020 5/2002 Power Sensor Rohde and Schwartz URV5-Z2 836029/034 5/2002- Power Sensor Rohde and Schwartz URV5-Z2 836029/035 5/2002- SAR Probe IndexSAR IXP-050 S/N 0123 10/25/2002 Probe amplifier Indexsar IXA-010 S/N 043 N/A- Thermometer Control Company 4039 20410549 11/20/2002 SAR Test Report No: SAR_249_2002_FCC_1900_2450 Date of Report:12/04/2002 Appendix C Page 3 of 23 IMMERSIBLE SAR PROBE CALIBRATION REPORT Part Number: IXP – 050 S/N 0123 25 th October 2002 Indexsar Limited Oakfield House Cudworth Lane Newdigate Surrey RH5 5DR Tel: +44 (0) 1306 631 233 Fax: +44 (0) 1306 631 834 e-mail: [email protected] SAR Test Report No: SAR_249_2002_FCC_1900_2450 Date of Report:12/04/2002 Appendix C Page 4 of 23 INTRODUCTION This Report presents measured calibration data for a particular Indexsar SAR probe (S/N 0123) and describes the procedures used for characterisation and calibration. Indexsar probes are characterised using procedures that, where applicable, follow the recommendations of CENELEC [1] and IEEE [2] standards. The procedures incorporate techniques for probe linearisation, isotropy assessment and determination of liquid factors (conversion factors). Calibrations are determined by comparing probe readings with analytical computations in canonical test geometries (waveguides) using normalised power inputs. Each step of the calibration procedure and the equipment used is described in the sections below. CALIBRATION PROCEDURE 1. Equipment Used For the first part of the characterisation procedure, the probe is placed in an isotropy measurement jig as pictured in Figure 1. In this position the probe can be rotated about its axis by a non-metallic belt driven by a stepper motor. The probe is attached via its amplifier and an optical cable to a PC. A schematic representation of the test geometry is illustrated in Figure 2. A balanced dipole (900 MHz) is inserted horizontally into the bracket attached to a second belt (Figure 1). The dipole can also be rotated about its axis. A cable connects the dipole to a signal generator, via a directional coupler and power meter. The signal generator feeds an RF amplifier at constant power, the output of which is monitored using the power meter. The probe is positioned so that its sensors line up with the rotation center of the source dipole. By recording output voltage measurements of each channel as both the probe and the dipole are rotated, data are obtained from which the spherical isotropy of the probe can be optimised and its magnitude determined. The calibration process requires E-field measurements to be taken in air, in 900 MHz simulated brain liquid and at other frequencies/liquids as appropriate. 2. Linearising probe output The probe channel output signals are linearised in the manner set out in Refs [1] and [2]. The following equation is utilized for each channel: U lin = U o/p + U o/p 2 / DCP (1) where U lin is the linearised signal, U o/p is the raw output signal in voltage units and DCP is the diode compression potential in similar voltage units. SAR Test Report No: SAR_249_2002_FCC_1900_2450 Date of Report:12/04/2002 Appendix C Page 5 of 23 DCP is determined from fitting equation (1) to measurements of U lin versus source feed power over the full dynamic range of the probe. The DCP is a characteristic of the schottky diodes used as the sensors. For the IXP-050 probes with CW signals the DCP values are typically 0.10V (or 20 in the voltage units used by Indexsar software, which are V*200). 3. Selecting channel sensitivity factors to optimise isotropic response The basic measurements obtained using the calibration jig (Fig 1) represent the output from each diode sensor as a function of the presentation angle of the source (probe and dipole rotation angles). The directionality of the orthogonally-arranged sensors can be checked by analysing the data using dedicated Indexsar software, which displays the data in 3D format as in Figure 3. The left-hand side of this diagram shows the individual channel outputs after linearisation (see above). The program uses these data to balance the channel outputs and then applies an op…
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CETECOM Inc. CETECOM Inc. 411 Dixon Landing Road, Milpitas, CA-95035, USA Phone: +1 408 586 6200 Fax: +1 408 586 6299 www.cetecom.com Issued test report consists of 60 Pages Page 1 (60) Test report no.: EMC_338_FCC15.247_2002 FCC Part 15.247 for FHSS systems / CANADA RSS-210 (Model: 23011) FCC LISTED, REG. NO.: 101450 & RECOGNIZED BY INDUSTRY CANADA IC – 3925 CETECOM Inc. Test report no.:EMC_338FCC15.247_2002 Issue date:2002-09-18 Page 2 (60) Table of Contents 1 General information 1.1 Notes 1.2 Testing laboratory 1.3 Details of applicant 1.4 Application details 1.5 Test item 1.6 Test standards 2 Technical test 2.1 Summary of test results 2.2 Test report 1 General information 1.1 Notes The test results of this test report relate exclusively to the test item specified in 1.5. The CETECOM Inc. USA does not assume responsibility for any conclusions and generalisations drawn from the test results with regard to other specimens or samples of the type of the equipment represented by the test item. The test report may only be reproduced or published in full. Reproduction or publication of extracts from the report requires the prior written approval of the CETECOM Inc USA. TEST REPORT PREPARED BY: EMC Engineer: Harpreet Sidhu 1.2 Testing laboratory CETECOM Inc. 411 Dixon Landing Road, Milpitas, CA-95035, USA Phone: +1 408 586 6200 Fax: +1 408 586 6299 E-mail: [email protected] Internet: www.cetecom.com CETECOM Inc. Test report no.:EMC_338FCC15.247_2002 Issue date:2002-09-18 Page 3 (60) 1.3 Details of applicant Name : Skypower Wireless Ltd. Street : Unit 508 Tower B City / Zip Code : New Mandarin Plaza, TST East, Kowloon Country : Hongkong Contact : Chris Burgin Telephone : +852 2312 2212 Tele-fax : +852 2312 2282 e-mail : [email protected] 1.4 Application details Date of receipt of application : 2002-09-12 Date of receipt test item : 2002-09-12 Date of test : 2002-09-12/13 1.5 Test item Manufacturer : Applicant Marketing Name : Mobile Bluetooth Adapter (MBA) Model No. : 23011 Description : Wireless Headset Dongle HW version 1.0 SW version 1.0 FCC-ID : Additional information Frequency : 2402MHz – 2480MHz Type of modulation : GFSK Number of channels : 79 Antenna : Internal Power supply : 3.7VDC Output power : 4.79dBm (3.013Mw) max. EIRP Extreme vol. Limits : 3.1VDC – 3.7VDC Extreme temp. Tolerance : 0ºC - +55ºC 1.6 Test standards: FCC Part 15 §15.247 (DA00-705) / CANADA RSS-210 Note: All radiated measurements were made in all three orthogonal planes. The values reported are the maximum values. CETECOM Inc. Test report no.:EMC_338FCC15.247_2002 Issue date:2002-09-18 Page 4 (60) 2 Technical test 2.1 Summary of test results No deviations from the technical specification(s) were ascertained in the course of the tests Performed Final Verdict: (only “passed” if all single measurements are “passed”) Passed Technical responsibility for area of testing: 2002-09- 18 EMC & Radio Lothar Schmidt (Manager) Date Section Name Signature Responsible for test report and project leader: 2002-09-18 EMC & Radio Harpreet Sidhu (EMC Engineer) Date Section Name Signature CETECOM Inc. Test report no.:EMC_338FCC15.247_2002 Issue date:2002-09-18 Page 5 (60) 2.2 Test report TEST REPORT Test report no. : EMC_338_FCC15.247_2002 (Model: 23011) CETECOM Inc. Test report no.:EMC_338FCC15.247_2002 Issue date:2002-09-18 Page 6 (60) TEST REPORT REFERENCE LIST OF MEASUREMENTS PAGE ANTENNA GAIN § 15.204 7 CARRIER FREQUENCY SEPERATION §15.247(a) 8 NUMBER OF HOPPING CHANNELS §15.247(a) 9 TIME OF OCCUPANCY (DWELL TIME) §15.247(a) 12 SPECTRUM BANDWIDTH OF FHSS SYSTEM §15.247(a) 15 POWER SPECTRAL DENSITY §15.247 (d) 19 MAXIMUM PEAK OUTPUT POWER § 15.247 (b) (1) 23 BAND EDGE COMPLIANCE §15.247 (c) 31 EMISSION LIMITATIONS §15.247 (c) (1) 35 CONDUCTED EMISSIONS § 15.107/207 52 RECEIVER SPURIOUS RADIATION § 15.209 53 TEST EQUIPMENT AND ANCILLARIES USED FOR TESTS …
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411Dixon Landing · Milpitas, California · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.48 GHz | 3.01 mW |

EZtalk Bluetooth Headset
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Skypower Bluetooth Headset
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter