Test report TRFWL. Texas Instruments Inc. CC3100 Booster-pack CC3100MODR11MAMOB ETSI EN V1.8.1 ( )

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1 ONE WORLD OUR APPROVAL Test report TRFWL Date of issue: November 20, 2014 Applicant: Texas Instruments Inc. Product: CC3100 Booster-pack Model: CC3100MODR11MAMOB Specifications: ETSI EN V1.8.1 ( ) Electromagnetic compatibility and Radio spectrum Matters (ERM); Wideband transmission systems; Data transmission equipment operating in the 2.5 GHz ISM band and using wide band modulation techniques; Harmonized EN covering essential requirements under article 3.2 of the R&TTE directive Nemko Canada Inc., a testing laboratory, is accredited by the Standards Council of Canada. The tests included in this report are within the scope of this accreditation ETSI EN DTS; Date: May 2013 SCC Accredited LAB LAB Accrédité CCN TM

2 Test location Company name: Nemko Canada Inc. Address: 303 River Road City: Ottawa Province: Ontario Postal code: K1V 1H2 Country: Canada Telephone: Facsimile: Toll free: Website: Tested by: Kevin Rose, Wireless/EMC Specialist Reviewed by: Andrey Adelberg, Senior Wireless/EMC Specialist Date: November 20, 2014 Signature: Limits of responsibility Note that the results contained in this report relate only to the items tested and were obtained in the period between the date of initial receipt of samples and the date of issue of the report. This test report has been completed in accordance with the requirements of ISO/IEC All results contain in this report are within Nemko Canada s ISO/IEC accreditation. Copyright notification Nemko Canada Inc. authorizes the applicant to reproduce this report provided it is reproduced in its entirety and for use by the company s employees only. Any use which a third party makes of this report, or any reliance on or decisions to be made based on it, are the responsibility of such third parties. Nemko Canada Inc. accepts no responsibility for damages, if any, suffered by any third party as a result of decisions made or actions based on this report. Nemko Canada Inc. Report reference ID: TRFWL Page 2 of 29

3 Table of contents Table of contents... 3 Section 1. Report summary Applicant and manufacturer Test specifications Statement of compliance Exclusions Test report revision history... 4 Section 2. Summary of test results ETSI EN V1.8.1 ( ) test results... 5 Section 3. Equipment under test (EUT) details Sample information EUT information Technical information Product description and theory of operation EUT exercise details EUT setup diagram... 6 Section 4. Engineering considerations Modifications incorporated in the EUT Technical judgment Deviations from laboratory tests procedures... 7 Section 5. Test conditions Atmospheric conditions Power supply range Regulated lead-acid battery power sources Other power sources... 8 Section 6. Measurement uncertainty Uncertainty of measurement... 9 Section 7. Test equipment Test equipment list Section EN Clause RF output power EN Clause Power Spectral Density EN Clause Adaptivity (adaptive equipment using modulations other than FHSS) EN Clause Occupied Channel Bandwidth EN Clause Transmitter unwanted emissions in the out-of-band domain EN Clause Transmitter unwanted emissions in the spurious domain EN Clause Receiver spurious emissions Clause Receiver blocking Section 9. Block diagrams of test set-ups Radiated emissions set-up Report reference ID: TRFWL Page 3 of 29

4 Section 1 Report summary Section 1. Report summary 1.1 Applicant and manufacturer Company name Texas Instruments Inc. Address TI Boulevard City Dallas Province/State Texas Postal/Zip code Country USA 1.2 Test specifications ETSI EN V1.8.1 ( ) Electromagnetic compatibility and Radio spectrum Matters (ERM); Wideband transmission systems; Data transmission equipment operating in the 2.5 GHz ISM band and using wide band modulation techniques; Harmonized EN covering essential requirements under article 3.2 of the R&TTE directive 1.3 Statement of compliance In the configuration tested, the EUT was found compliant. Testing was completed against all relevant requirements of the test standard. Results obtained indicate that the product under test complies in full with the requirements tested. The test results relate only to the items tested. See Summary of test results for full details. 1.4 Exclusions None 1.5 Test report revision history Revision # TRF Details of changes made to test report Original report issued Report reference ID: TRFWL Page 4 of 29

5 Section 2: Summary of test results Section 2. Summary of test results 2.1 ETSI EN V1.8.1 ( ) test results Clause Test description Verdict Technical requirements for Frequency Hopping equipment Not applicable Technical requirements for other types of Wide Band modulation Applicable RF ouput power Pass Power Spectral Density Pass Duty Cycle, Tx-sequence, Tx-gap Not applicable Medium Utilisation (MU) factor Not applicable Adaptivity (adaptive equipment using modulations other than FHSS) Pass Occupied Channel Bandwidth Pass Transmitter unwanted emissions in the out-of-band domain Pass Transmitter unwanted emissions in the spurious domain Pass Receiver spurious emissions Not applicable Receiver Blocking Not applicable 4 Notes: 1 The EUT is not frequency hopping device. 2 This requirement does not apply for equipment with a maximum declared RF Output power level of less than 10 e.i.r.p. or for equipment when operating in a mode where the RF Output power is less than 10 e.i.r.p. 3 This requirement does not apply to non-adaptive equipment or adaptive equipment operating in a non-adaptive mode providing the equipment complies with the requirements and/or restrictions applicable to non-adaptive equipment 4 This EUT is not a receiver. Report reference ID: TRFWL Page 5 of 29

6 Section 3: Equipment under test (EUT) details Section 3. Equipment under test (EUT) details 3.1 Sample information Receipt date July 21, 2014 Nemko sample ID number 4 and EUT information Product name Model Serial number CC3100 Booster-pack CC3100MODR11MAMOB N/A 3.3 Technical information Operating band Operating frequency Modulation type Power requirements Antenna information MHz MHz b/g/n 230 VAC, 50 Hz via Laptop power adapter connected with USB cord to EUT Taiyo Yuden 2.4 GHz Multilayer RadiEdge Antenna, MN: AH 316M245001, Peak Gain: 1.9 dbi The EUT uses a unique antenna coupling/ non-detachable antenna to the intentional radiator. 3.4 Product description and theory of operation The EUT is designed to be used as a standalone development platform for application development using the CC3100 device. It can be also used in conjunction with compatible booster-packs to enhance the peripherals available in the system. The board features on-board emulation using FTDI device and has an array of sensors for an out of the box experience. This board can be directly connected to the PC using software development platforms including CCS and IAR. 3.5 EUT exercise details There were 2 samples provided for testing: one with the permanent antenna and the second one is with the 50 Ω antenna cable for conducted measurements. EUT was controlled from laptop using Radio Tool 0.5 CLI application. 3.6 EUT setup diagram Figure 3.6-1: Setup diagram Report reference ID: TRFWL Page 6 of 29

7 Section 4: Engineering consideration Section 4. Engineering considerations 4.1 Modifications incorporated in the EUT There were no modifications performed to the EUT during this assessment. 4.2 Technical judgment As per manufacture request the CC3200MODR1M2AMOB model was considered as a representative sample and all the tests were performed on it. CC3100MODR11MAMOB is a depopulated version of the CC3200MODR1M2AMOB and therefor was deemed compliant. 4.3 Deviations from laboratory tests procedures No deviations were made from laboratory procedures. Report reference ID: TRFWL Page 7 of 29

8 Section 6: Measurement uncertainty Section 5. Test conditions 5.1 Atmospheric conditions Temperature C Relative humidity % Air pressure mbar When it is impracticable to carry out tests under these conditions, a note to this effect stating the ambient temperature and relative humidity during the tests shall be recorded and stated. 5.2 Power supply range The normal test voltage for equipment to be connected to the mains shall be the nominal mains voltage. For the purpose of the present document, the nominal voltage shall be the declared voltage, or any of the declared voltages, for which the equipment was designed. The frequency of the test power source corresponding to the ac mains shall be between 49 Hz and 51 Hz. 5.3 Regulated lead-acid battery power sources When the radio equipment is intended for operation from the usual types of regulated lead-acid battery power source the normal test voltage shall be 1.1 multiplied by the nominal voltage of the battery (6 V, 12 V, etc.). 5.4 Other power sources For operation from other power sources or types of battery (primary or secondary), the normal test voltage shall be that declared by the equipment manufacturer and where appropriate agreed by the accredited test laboratory. Such values shall be recorded and stated. Report reference ID: TRFWL Page 8 of 29

9 Section 6: Measurement uncertainty Section 6. Measurement uncertainty 6.1 Uncertainty of measurement Nemko Canada Inc. has calculated measurement uncertainty and is documented in EMC/MUC/001 Uncertainty in EMC measurements. Measurement uncertainty was calculated using the methods described in CISPR 16-4 Specification for radio disturbance and immunity measuring apparatus and methods Part 4: Uncertainty in EMC measurements; as well as described in UKAS LAB34: The expression of Uncertainty in EMC Testing. Measurement uncertainty calculations assume a coverage factor of K=2 with 95% certainty. Report reference ID: TRFWL Page 9 of 29

10 Section 7: Test equipment Section 7. Test equipment 7.1 Test equipment list Table 7.1-1: Equipment list Equipment Manufacturer Model no. Asset no. Cal cycle Next cal. 3 m EMI test chamber TDK SAC-3 FA year Mar. 18/15 Flush mount turntable Sunol FM2022 FA NCR Controller Sunol SC104V FA NCR Antenna mast Sunol TLT2 FA NCR Horn antenna (1 18 GHz) EMCO 3115 FA year Mar. 10/15 Pre-amplifier (1 18 GHz) JCA JCA FA year June 23/15 Bilog antenna ( MHz) Sunol JB3 FA year Mar. 12/15 50 Ω coax cable C.C.A. None FA year June 23/15 50 Ω coax cable Huber + Suhner NONE FA year June 23/15 Horn antenna GHz EMCO 3116 FA year Sept. 06/ GHz pre-amplifier Narda BBS-1826N612 FA VOU Temperature chamber Thermotron SM-16C FA year NCR Multimeter Fluke 16 FA year Feb. 04/15 Note: NCR - no calibration required, VOU - verify on use Report reference ID: TRFWL Page 10 of 29

11 Clause RF output power Section EN Clause RF output power Definitions and limits Definition Clause limit The RF output power is defined as the mean equivalent isotropic radiated power (e.i.r.p.) of the equipment during a transmission burst. For adaptive equipment using wide band modulations other than FHSS, the maximum RF output power shall be20. The maximum RF output power for non-adaptive equipment shall be declared by the supplier and shall not exceed 20. See clause m). For non-adaptive equipment using wide band modulations other than FHSS, the maximum RF output power shall be equal to or less than the value declared by the supplier. This limit shall apply for any combination of power level and intended antenna assembly Test summary Test date July 28, 2014 Temperature 21 C Test engineer Kevin Rose Air pressure 1003 mbar Verdict Pass Relative humidity 38 % Observations, settings and special notes The measurements for RF output power shall be performed at both normal environmental conditions and at the extremes of the operating temperature range. Resolution bandwidth Video bandwidth Detector mode Power integration Trace mode 100 khz 300 khz RMS Over the channel BW Power average over 100 sweeps Report reference ID: TRFWL Page 11 of 29

12 Clause RF output power Test data Table 8.1-1: Output power measurements results 23 degrees 230 Vac Modulation b g n Frequency, MHz Conducted output power, Antenna gain, dbi EIRP, EIRP limit, EIRP margin, db Table 8.1-2: Output power measurements results -20 degrees 90 Vac Modulation b g n Frequency, MHz Conducted output power, Antenna gain, dbi EIRP, EIRP limit, EIRP margin, db Table 8.1-3: Output power measurements results -20 degrees 264 Vac Modulation b g n Frequency, MHz Conducted output power, Antenna gain, dbi EIRP, EIRP limit, EIRP margin, db Table 8.1-4: Output power measurements results 70 degrees 90 Vac Modulation b g n Frequency, MHz Conducted output power, Antenna gain, dbi EIRP, EIRP limit, EIRP margin, db Report reference ID: TRFWL Page 12 of 29

13 Clause RF output power Test data Table 8.1-5: Output power measurements results 70 degrees 264 Vac Modulation b g n Frequency, MHz Conducted output power, Antenna gain, dbi EIRP, EIRP limit, EIRP margin, db Report reference ID: TRFWL Page 13 of 29

14 Clause Power Spectral Density 8.2 EN Clause Power Spectral Density Definitions and limits Definition Clause limit The Power Spectral Density is the mean equivalent isotropically radiated power (e.i.r.p.) spectral density during a transmission burst. These measurements shall only be performed at normal test conditions. For equipment using wide band modulations other than FHSS, the maximum Power Spectral Density is limited to 10 per MHz Test summary Test date July 28, 2014 Temperature 21 C Test engineer Kevin Rose Air pressure 1003 mbar Verdict Pass Relative humidity 38 % Observations, settings and special notes The measurement shall be repeated for the equipment being configured to operate at the lowest, the middle, and the highest frequency of the stated frequency range. These frequencies shall be recorded. These measurements shall only be performed at normal test conditions The emissions over the range 2400 MHz to MHz. Spectrum analyser settings: Resolution bandwidth: 10 khz Video bandwidth: 30 khz Detector mode: RMS Trace mode: Max Hold Sweep Points: Test data Table 8.2-1: Power Spectral Density limits Modulation Frequency, MHz Limit, Level, Margin, db b g n Report reference ID: TRFWL Page 14 of 29

15 EN , Clause Adaptivity (adaptive equipment using modulations other than FHSS) 8.3 EN Clause Adaptivity (adaptive equipment using modulations other than FHSS) Definitions and limits Definition: Clause limit Non-LBT based Detect and Avoid is a mechanism for equipment using wide band modulations other than FHSS and by which a given channel is made 'unavailable' because interference was reported after the transmission in that channel. 1) During normal operation, the equipment shall evaluate the presence of a signal on its current operating channel. If it is determined that a signal is present with a level above the detection threshold defined in 4). the channel shall be marked as 'unavailable'. 2) The channel shall remain unavailable for a minimum time equal to 1 s after which the channel may be considered again as an 'available' channel. 3) The total time during which equipment has transmissions on a given channel without re-evaluating the availability of that channel, is defined as the Channel Occupancy Time. 4) The Channel Occupancy Time shall be less than 40 ms. Each such transmission sequence shall be followed with an Idle Period (no transmissions) of minimum 5 % of the Channel Occupancy Time with a minimum of 100 μs. After this, the procedure as in step 1 needs to be repeated. 5) The detection threshold shall be proportional to the transmit power of the transmitter: for a 20 e.i.r.p. transmitter the detection threshold level (TL) shall be equal or lower than -70 /MHz at the input to the receiver (assuming a 0 dbi receive antenna). For power levels below 20 e.i.r.p., the detection threshold level may be relaxed to TL = -70 /MHz Pout e.i.r.p. (Pout in ) Test summary Test date: January 17, 2014 Temperature: 22 C Test engineer: David Light Air pressure: 1003 mbar Verdict: Pass Relative humidity: 26 % Observations, settings and special notes Note: Test was performed on January test report 2014_251898_EU_ Report reference ID: TRFWL Page 15 of 29

16 EN , Clause Adaptivity (adaptive equipment using modulations other than FHSS) Test data Figure 8.3-1: b Low channel Fixed Frame Period plus CCA Figure 8.3-2: Polling after interference /MHz with -30 Figure 8.3-3: b high channel Fixed Frame Period plus CCA Figure 8.3-4: Polling after interference /MHz with -30 Report reference ID: TRFWL Page 16 of 29

17 EN , Clause Adaptivity (adaptive equipment using modulations other than FHSS) Test data continued Figure 8.3-5: g Low channel Fixed Frame Period plus CCA Figure 8.3-6: Polling after interference /MHz with -30 Figure 8.3-7: g high channel Fixed Frame Period plus CCA Figure 8.3-8: Polling after interference /MHz with -30 Report reference ID: TRFWL Page 17 of 29

18 EN , Clause Adaptivity (adaptive equipment using modulations other than FHSS) Test data continued Figure 8.3-9: n Low channel Fixed Frame Period plus CCA Figure : Polling after interference /MHz with -30 Figure : n high channel Fixed Frame Period plus CCA Figure : Polling after interference /MHz with -30 Report reference ID: TRFWL Page 18 of 29

19 EN , Clause Occupied Channel Bandwidth 8.4 EN Clause Occupied Channel Bandwidth Definitions and limits Definition: Clause limit The Occupied Channel Bandwidth is the bandwidth that contains 99 % of the power of the signal. These measurements shall only be performed at normal test conditions. The Occupied Channel Bandwidth shall fall completely within the band given in clause 1. In addition, for non-adaptive systems using wide band modulations other than FHSS and with e.i.r.p greater than 10, the occupied channel bandwidth shall be less than 20 MHz Test summary Test date July 28, 2014 Temperature 21 C Test engineer Kevin Rose Air pressure 1003 mbar Verdict Pass Relative humidity 38 % Observations, settings and special notes Receiver settings Resolution bandwidth: Video bandwidth: Detector mode: Trace mode: 100 khz 300 khz RMS Max Hold Report reference ID: TRFWL Page 19 of 29

20 EN , Clause Occupied Channel Bandwidth Test data Table 8.4-1: 99 % band edge b results Channel, MHz Band edge results, MHz Limit, MHz Margin, MHz Table 8.4-2: 99 % band edge g results Channel, MHz Band edge results, MHz Limit, MHz Margin, MHz Table 8.4-3: 99 % band edge n results Channel, MHz Band edge results, MHz Limit, MHz Margin, MHz Report reference ID: TRFWL Page 20 of 29

21 EN , Clause Transmitter unwanted emissions in the out-of-band domain 8.5 EN Clause Transmitter unwanted emissions in the out-of-band domain Definitions and limits Definition: Clause limit Transmitter unwanted emissions in the out-of-band domain are emissions when the equipment is in Transmit mode, on frequencies immediately outside the necessary bandwidth which results from the modulation process, but excluding spurious. The spurious emissions of the transmitter shall not exceed the values in Table in the indicated bands Table 8.5-1: Transmitter limits Frequency range, MHz Limit BW to 2400 BW BW to to BW BW to BW -20 Notes: The above limit values apply to narrowband emissions, e.g. as caused by local oscillator leakage. The measurement bandwidth for such emissions may be as small as necessary to achieve a reliable measurement result Test summary Test date July 28, 2014 Temperature 21 C Test engineer Kevin Rose Air pressure 1003 mbar Verdict Pass Relative humidity 38 % Observations, settings and special notes Spurious domain Out-of-band (OOB) domain Allocated band Out-of-band (OOB) domain Spurious domain A B C 2400 MHz 2BW 2400 MHz BW 2400 MHz MHz MHz + BW MHz + 2BW A: 10 /MHz (EIRP) B: 20 /MHz (EIRP) C: Spurious domain limits BW = Occupied channel bandwidth in MHz or 1 MHz, whichever is greater Figure 8.5-1: Transmit mask The emissions over the range Spectrum analyser settings: Resolution bandwidth: 1 MHz Video bandwidth: 3 MHz Detector mode: RMS Trace mode: Max Hold Sweep Points: Report reference ID: TRFWL Page 21 of 29

22 EN , Clause Transmitter unwanted emissions in the out-of-band domain Test data Frequency range, MHz 23 degrees 230 VAC Level, Table 8.5-2: Transmitter unwanted emissions in the out-of-band domain b 70 degrees 90 VAC Level, 70 degrees 264 VAC Level, -20 degrees 90 VAC Level, -20 degrees 264 VAC Level, Limit, Minimum margin, db BW BW BW BW Frequency range, MHz 23 degrees 230 VAC Level, Table 8.5-3: Transmitter unwanted emissions in the out-of-band domain g 70 degrees 90 VAC Level, 70 degrees 264 VAC Level, -20 degrees 90 VAC Level, -20 degrees 264 VAC Level, Limit, Minimum margin, db BW BW BW BW Frequency range, MHz 23 degrees 230 VAC Level, Table 8.5-4: Transmitter unwanted emissions in the out-of-band domain n 70 degrees 90 VAC Level, 70 degrees 264 VAC Level, -20 degrees 90 VAC Level, -20 degrees 264 VAC Level, Limit, Minimum margin, db BW BW BW BW Report reference ID: TRFWL Page 22 of 29

23 EN , Clause Transmitter unwanted emissions in the spurious domain 8.6 EN Clause Transmitter unwanted emissions in the spurious domain Definitions and limits Definition: Clause limit Transmitter unwanted emissions in the spurious domain are emissions outside the allocated band and outside the out-ofband domain, when the equipment is in Transmit mode. These measurements shall only be performed at normal test conditions. The spurious emissions of the transmitter shall not exceed the values in Table in the indicated bands Table 8.6-1: Transmitter limits Frequency range Limit when operating, Measurement Bandwidth 30 MHz to 47 MHz khz 47 MHz to 74 MHz khz 74 MHz to 87,5 MHz khz 87,5 MHz to 118 MHz khz 118 MHz to 174 MHz khz 174 MHz to 230 MHz khz 230 MHz to 470 MHz khz 470 MHz to 862 MHz khz 862 MHz to 1 GHz khz 1 GHz to 12,75 GHz MHz Notes: The above limit values apply to narrowband emissions, e.g. as caused by local oscillator leakage. The measurement bandwidth for such emissions may be as small as necessary to achieve a reliable measurement result Test summary Test date July 28, 2014 Temperature 21 C Test engineer Kevin Rose Air pressure 1003 mbar Verdict Pass Relative humidity 38 % Report reference ID: TRFWL Page 23 of 29

24 EN , Clause Transmitter unwanted emissions in the spurious domain Observations, settings and special notes The spectrum was searched from 30 MHz to GHz. Cabinet radiation measurements were performed a 3 m distance. No emission within 10 db of the limit were detected The pre-scans were performed with spectrum analyzer using following settings: The emissions over the range 30 MHz to MHz shall be identified. Spectrum analyser settings: Resolution bandwidth: 100 khz Video bandwidth: 300 khz Detector mode: Peak Trace mode: Max Hold Sweep Points: The emissions over the range 1 GHz to GHz shall be identified. Spectrum analyser settings: Resolution bandwidth: 1 MHz Video bandwidth: 3 MHz Detector mode: Peak Trace mode: Max Hold Sweep Points: Sweep time: For non-continuous transmissions (duty cycle less than 100 %), the sweep time shall be sufficiently long, such that for each 1 MHz frequency step, the measurement time is greater than two transmissions of the UUT. Allow the trace to stabilize. Any emissions identified during the sweeps above that fall within the 6 db range below the applicable limit or above, shall be individually measured Report reference ID: TRFWL Page 24 of 29

25 Level in Level in Section 8 EN , Clause Transmitter unwanted emissions in the spurious domain Test data E N Tx GHz GHz M M G Frequency in Hz -75 1G 2G 3G 4G 5G G Frequency in Hz Figure 8.6-1: Radiated spurious emissions example MHz Figure 8.6-2: Radiated spurious emissions example GHz Report reference ID: TRFWL Page 25 of 29

26 EN , Clause Receiver spurious emissions 8.7 EN Clause Receiver spurious emissions Definitions and limits Definition: Clause limit Transmitter unwanted emissions in the spurious domain are emissions outside the allocated band and outside the out-ofband domain, when the equipment is in Transmit mode. These measurements shall only be performed at normal test conditions. The spurious emissions of the transmitter shall not exceed the values in in the indicated bands Table 8.7-1: Spurious emission limits for receivers Frequency range Maximum power, e.r.p. Measurement bandwidth 30 MHz to 1 GHz khz 1 GHz to GHz MHz Test summary Test date July 28, 2014 Temperature 21 C Test engineer Kevin Rose Air pressure 1003 mbar Verdict Pass Relative humidity 38 % Observations, settings and special notes The spectrum was searched from 30 MHz to GHz. Cabinet radiation measurements were performed a 3 m distance. No RX radio emissions were detected within 10 db of the limit. The pre-scans were performed with spectrum analyzer using following settings: The emissions over the range 30 MHz to MHz shall be identified. Spectrum analyser settings: Resolution bandwidth: 100 khz Video bandwidth: 300 khz Detector mode: Peak Trace mode: Max Hold Sweep Points: The emissions over the range 1 GHz to GHz shall be identified. Spectrum analyser settings: Resolution bandwidth: 1 MHz Video bandwidth: 3 MHz Detector mode: Peak Trace mode: Max Hold Sweep Points: Report reference ID: TRFWL Page 26 of 29

27 Level in Section 8 EN , Clause Receiver spurious emissions Test data E N Rx M M G 2G 3G 4G 5G G Frequency in Hz Figure 8.7-1: Radiated spurious emissions example 30 MHz GHz Report reference ID: TRFWL Page 27 of 29

28 Clause Receiver blocking 8.8 Clause Receiver blocking Definitions and limits Definition Clause limit Receiver blocking is a measure of the capability of the adaptivity mechanism to operate as intended (see clause ) in the presence of an unwanted signal (blocking signal) on frequencies other than those of the operating channel and the adjacent channels. Adaptive equipment using wide band modulations other than FHSS, shall comply with the requirements defined in clauses (non-lbt based DAA) or (LBT based DAA) in the presence of a blocking signal with characteristics as provided in table below Table 8.8-1: Receiver blocking parameters Equipment Type Wanted signal mean power Blocking signal Frequency, (LBT / non- LBT) from companion device MHz Blocking signal power, Type of interfering signal sufficient to maintain the LBT or 2 488,5 link (see note 2) (see note 1) Non-LBT CW NOTE 1: The highest blocking frequency shall be used for testing the lowest operating channel, while the lowest blocking frequency shall be used for testing the highest operating channel. NOTE 2: A typical value which can be used in most cases is 50 /MHz Test summary Test date July 28, 2014 Temperature 21 C Test engineer Kevin Rose Air pressure 1003 mbar Verdict Pass Relative humidity 38 % Observations, settings and special notes None Test data Please refer to the section 8.3 of this document for the test results. Report reference ID: TRFWL Page 28 of 29

29 Section 9: Block diagrams of test set-ups Section 9. Block diagrams of test set-ups 9.1 Radiated emissions set-up Radio absorbing material Antenna mast Test antenna 4 m 3 m EUT Test antenna 1.5 m Nonconducting table 1 m Turn table Metal ground plane Receiver Report reference ID: TRFWL Page 29 of 29

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