CE Test Report. : abgn 1x with BT

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1 CE Test Report Equipment Model No. Brand Name Applicant Address : abgn 1x with BT : SDC-WB40NBT : Laird Technologies : Laird Technologies : W66N220 Commerce Court, Cedarburg, Wisconsin 53012, USA Standard : EN V2.1.1 ( ) Received Date : Apr. 07, 2017 Tested Date : Mar. 23 ~ Apr. 30, 2016 (for original test) Apr. 25, 2017 (for new test) We, International Certification Corp., would like to declare that the tested sample has been evaluated and in compliance with the requirement of the above standards. The test results contained in this report refer exclusively to the product. It may be duplicated completely for legal use with the approval of the applicant. It shall not be reproduced except in full without the written approval of our laboratory. Reviewed by: Approved by: James Fan / Assistant Manager Gary Chang / Manager Report No.: ER AC Page : 1 of 62

2 Table of Contents 1 GENERAL DESCRIPTION Information Local Support Equipment List Test Setup Chart Test Equipment List and Calibration Data Testing Applied Standards Measurement Uncertainty TEST CONFIGURATION Testing Condition The Worst Test Modes and Channel Details TRANSMITTER TEST RESULTS RF Output Power Power Spectral Density Occupied Channel Bandwidth Transmitter Unwanted Emissions in the Out-Of-Band Domain Transmitter Unwanted Emissions in the Spurious Domain RECEIVER TEST RESULTS Receiver Spurious Emissions ADAPTIVITY TEST RESULTS Adaptivity and Unwanted Signal Parameters RECEIVER BLOCKING TEST RESULTS Receiver Blocking PHOTOGRAPHS OF THE TEST CONFIGURATION TEST LABORATORY INFORMATION Report No.: ER AC Page : 2 of 62

3 Release Record Report No. Version Description Issued Date ER AC Rev. 01 Initial issue May 16, 2017 Report No.: ER AC Page : 3 of 62

4 Summary of Test Results Ref. Std. Clause Test Items Measured Result RF Output Power dbm. Pass Power Spectral Density Meet the requirement of limit. Pass Duty Cycle, Tx-sequence, Tx-gap Medium Utilisation (MU) factor Only for non-adaptive equipment. Only for non-adaptive equipment Adaptivity Meet the requirement of limit. Pass Occupied Channel Bandwidth Meet the requirement of limit. Pass Transmitter unwanted emissions in the out of band domain Transmitter unwanted emissions in the spurious domain Meet the requirement of limit. Meet the requirement of limit Receiver spurious emissions Meet the requirement of limit. Pass Receiver Blocking Meet the requirement of limit. Pass Geo-location Capability The device has no this capability. N/A N/A Pass Pass N/A Report No.: ER AC Page : 4 of 62

5 1 General Description 1.1 Information This report is issued as a supplementary report to original ICC report no. ER AC. The difference is concerned with following items: Updating standard version from V1.9.1 to V New applicant address Therefore, related test items had been performed and presented in the following sections Specification of the Equipment under Test (EUT) Frequency Range (MHz) IEEE Std RF General Information Ch. Freq. (MHz) Channel Number Transmit Chains (N TX ) Data Rate / MCS b [13] Mbps g [13] Mbps n (HT20) [13] 1 MCS 0-7 Note 1: b uses a combination of DSSS-DBPSK, DQPSK, CCK modulation. Note 2: g/n uses a combination of OFDM-BPSK, QPSK, 16QAM, 64QAM modulation Antenna Details Ant. No. Brand Model Type Connector Gain (dbi) 1 Cisco AIR-ANT 4941 Dipole RP-TNC plug 2 2 Radiall Larsen R Dipole RP-TNC plug EUT Operational Condition Power Supply Type 3.3Vdc from host SW Version Operational Climatic Tnom (20 C) Tmax (55 C) Tmin (-20 C) Accessories N/A Report No.: ER AC Page : 5 of 62

6 1.1.5 Adaptive Equipment non-adaptive Equipment: The maximum RF Output Power (e.i.r.p.): dbm The maximum (corresponding) Duty Cycle: % Adaptive Equipment Adaptive Equipment without the possibility to switch to a non-adaptive mode: The equipment has implemented an LBT based DAA mechanism: The equipment is Frame Based equipment The equipment is Load Based equipment The equipment can switch dynamically between Frame Based and Load Based equipment The equipment has implemented an non-lbt based DAA mechanism The equipment can operate in more than one adaptive mode Adaptive Frequency Hopping using other forms of DAA (non-lbt based)/without Short Control Signaling Transmissions Adaptive Equipment which can also operate in a non-adaptive mode Channel List Channel Frequency(MHz) Report No.: ER AC Page : 6 of 62

7 1.1.7 Test Tool and Duty Cycle Test tool Duty Cycle Of Test Signal (%) Duty Factor Hyper Terminal 99.77% - IEEE b 96.25% - IEEE g 95.08% - IEEE n (HT20) IEEE b IEEE g IEEE n (HT20) Power Setting Modulation Mode Test Frequency (MHz) b g n (HT20) Report No.: ER AC Page : 7 of 62

8 1.2 Local Support Equipment List Support Equipment List No. Equipment Brand Model S/N FCC ID Signal cable / Length (m) 1 Notebook DELL E DoC Test Board RS232, 1m shielded w/o core. 3 Adapter for test board OEM ADS0128- W Note: 1) No.2 & 3 were supplied by applicant. 2) The test board is used for sending commend from notebook to control EUT to transmit/receive continuously. Notebook is disconnected from EUT and removed from test table when EUT is set to transmit/receive continuously 1.3 Test Setup Chart Test Setup Diagram Report No.: ER AC Page : 8 of 62

9 1.4 Test Equipment List and Calibration Data Test Item Test Site Radiated Emissions Fully-anechoic chamber 2 / (05CH02-WS) Tested Date Apr. 30, 2016 Instrument Manufacturer Model No. Serial No. Calibration Date Calibration Until Spectrum Analyzer Agilent N9010A MY Sep. 08, 2015 Sep. 07, 2016 Bilog Antenna MHz Horn Antenna 1G-18G Horn Antenna 18G-40G SCHWARZBECK VULB Dec. 29, 2015 Dec. 28, 2016 SCHWARZBECK BBHA 9120 D 9120D-1205 Jan. 08, 2016 Jan. 07, 2017 SCHWARZBECK BBHA 9170 BBHA Jan. 04, 2016 Jan. 03, 2017 Preamplifier Agilent 83017A MY Jan. 27, 2016 Jan. 26, 2017 Preamplifier MHz EMC EMC Dec. 10, 2015 Dec. 09, 2016 Preamplifier EMC EMC184045B Sep. 01, 2015 Aug. 31, 2016 RF cable-1m HUBER+SUHNER SUCOFLEX104 MY22622/4 Dec. 04, 2015 Dec. 03, 2016 RF cable-1m HUBER+SUHNER SUCOFLEX104 MY22623/4 Dec. 04, 2015 Dec. 03, 2016 RF cable-3m HUBER+SUHNER SUCOFLEX104 MY22621/4 Dec. 04, 2015 Dec. 03, 2016 RF cable-4m HUBER+SUHNER SUCOFLEX104 MY22579/4 Dec. 04, 2015 Dec. 03, 2016 LF cable-0.8m EMC EMC8D-NM-NM-800 EMC8D-NM-NM LF cable-3m LF cable-10m Measurement Software EMC EMC EMC8D-NM-NM EMC8D-NM-NM Dec. 04, 2015 Dec. 03, Dec. 04, 2015 Dec. 03, Dec. 04, 2015 Dec. 03, 2016 AUDIX e g NA NA Note: Calibration Interval of instruments listed above is one year. Report No.: ER AC Page : 9 of 62

10 Test Item Test Site RF Conducted (TH01-WS) Tested Date Apr. 08, 2016 Instrument Manufacturer Model No. Serial No. Calibration Date Calibration Until Spectrum Analyzer ROHDE&SCHWARZ FSV Oct. 14, 2015 Oct. 13, 2016 TEMP&HUMIDITY CHAMBER GIANT FORCE GCT SP-SD MAF Nov. 27, 2015 Nov. 26, 2016 Power Sensor Agilent U2021XA MY Feb. 02, 2016 Feb. 01, 2017 Power Sensor Agilent U2021XA MY Feb. 02, 2016 Feb. 01, 2017 Signal Generator R&S SMB100A Oct. 05, 2015 Oct. 04, 2016 DC POWER SOURCE AC POWER SOURCE Measurement Software Measurement Software GW INSTEK GPC-3060D EM Oct. 20, 2015 Oct. 19, 2016 APC AFC-500W F Oct. 26, 2015 Oct. 25, 2016 Sporton Sporton_ NA NA Agilent EN RF test NA NA Note: Calibration Interval of instruments listed above is one year. Test Item Test Site Adaptivity (TH01-WS) Tested Date Mar. 23, 2016 Instrument Manufacturer Model No. Serial No. Calibration Date Calibration Until Spectrum R&S FSV Dec. 10, 2015 Dec. 09, 2016 Spectrum Keysight N9010A MY May. 18, 2015 May. 17, 2016 Signal Generator R&S SMB100A Oct. 05, 2015 Oct. 04, 2016 RF cable-4m HUBER+SUHNER SUCOFLEX_104 MY15686/4 Dec. 17, 2015 Dec. 16, 2016 RF cable-0.5m HUBER+SUHNER SUCOFLEX_ /4 Dec. 17, 2015 Dec. 16, 2016 RF cable-0.2m HUBER+SUHNER SUCOFLEX_ /4 Dec. 17, 2015 Dec. 16, 2016 RF cable-0.2m HUBER+SUHNER SUCOFLEX_ /4 Dec. 17, 2015 Dec. 16, 2016 Preamplifier EMC EMC Oct. 14, 2015 Oct. 13, 2016 Oscilloscope National Instruments USB-5133 F651FF Jun. 15, 2015 Jun. 14, 2016 Measurement Software Sporton Sporton_ NA NA Note: Calibration Interval of instruments listed above is one year. Report No.: ER AC Page : 10 of 62

11 Test Item Test Site Receiver Blocking (05CH01-WS) Tested Date Apr. 25, 2017 Instrument Manufacturer Model No. Serial No. Calibration Date Calibration Until Wireless connectivity tester ROHDE&SCHWARZ CMW Nov. 07, 2016 Nov. 06, 2017 Signal Generator R&S SMB100A Oct. 19, 2016 Oct. 18, 2017 RF Cable HUBER+SUHNER SUCOFLEX_ /4 Dec. 16, 2016 Dec. 15, 2017 RF Cable HUBER+SUHNER SUCOFLEX_ /4 Dec. 16, 2016 Dec. 15, 2017 RF Cable HUBER+SUHNER SUCOFLEX_ /4 Dec. 16, 2016 Dec. 15, 2017 Note: Calibration Interval of instruments listed above is one year. 1.5 Testing Applied Standards According to the specifications of the manufacturer, the EUT must comply with the requirements of the following standards: EN V2.1.1 ( ) 1.6 Measurement Uncertainty ISO/IEC requires that an estimate of the measurement uncertainties associated with the emissions test results be included in the report. The measurement uncertainties given below are based on a 95% confidence level (based on a coverage factor (k=2) Measurement Uncertainty Parameters Uncertainty Limit Occupied Channel Bandwidth ± % ±5 % RF output power, conducted ±0.537 db ±1.5 db Power Spectral Density, conducted ±0.463 db ±3 db Unwanted Emissions, conducted ±2.505 db ±3 db All emissions, radiated ±3.401 db ±6 db Temperature ±0.6 o C ±3 C Supply voltages ±0.16 % ±3 % Time ±0.1 % ±5 % Report No.: ER AC Page : 11 of 62

12 2 Test Configuration 2.1 Testing Condition Test Item Test Site Ambient Condition Tested By RF Conducted TH01-WS 23 C / 62% Nic Guan Radiated Emission 05CH01-WS C / 64-65% Chris Zeng Adaptivity TH01-WS 22 C / 67% Jack Li Receiver Blocking 05CH01-WS 22.5 C / 62% Jack Li 2.2 The Worst Test Modes and Channel Details Test item Modulation Mode Test Frequency (MHz) Data Rate Test Configuration RF Output Power Power Spectral Density 11b 11g HT / 2442 / / 2442 / / 2442 / Mbps 6 Mbps MCS Occupied Channel Bandwidth Transmitter unwanted emissions in the out of band domain Adaptivity / Unwanted Signal 11b 11g HT / / / Mbps 6 Mbps MCS Transmitter Spurious Emissions 1GHz 11g 2412 / Mbps --- Transmitter Spurious Emissions > 1GHz 11b 11g HT / / / Mbps 6 Mbps MCS 0 Receiver Spurious Emissions 11g 2412 / Mbps --- Receiver Blocking 11b 2412 / Mbps --- NOTE: The EUT was pretested with 3 orientations placed on the table for the radiated emission measurement X, Y, and Z-plane. The X-plane result was found as the worst case and was shown in this report. --- Report No.: ER AC Page : 12 of 62

13 3 Transmitter Test Results 3.1 RF Output Power Limit of RF Output Power For adaptive equipment using wide band modulations other than FHSS, the maximum RF output power shall be 20 dbm Test Procedures Reference to clause of ETSI EN V2.1.1 ( ) Test Setup Report No.: ER AC Page : 13 of 62

14 3.1.4 Test Result of RF Output Power RF Output Power (dbm) Modulation Mode 11b/1Mbps Condition Freq. (MHz) EIRP Power Limit (dbm) Results T nom V nom Pass T min V nom Pass T max V nom Pass T nom V nom Pass T min V nom Pass T max V nom Pass T nom V nom Pass T min V nom Pass T max V nom Pass RF Output Power (dbm) Modulation Mode 11g/6Mbps Condition Freq. (MHz) EIRP Power Limit (dbm) Results T nom V nom Pass T min V nom Pass T max V nom Pass T nom V nom Pass T min V nom Pass T max V nom Pass T nom V nom Pass T min V nom Pass T max V nom Pass Report No.: ER AC Page : 14 of 62

15 RF Output Power (dbm) Modulation Mode HT20/MCS 0 Condition Freq. (MHz) EIRP Power Limit (dbm) Results T nom V nom Pass T min V nom Pass T max V nom Pass T nom V nom Pass T min V nom Pass T max V nom Pass T nom V nom Pass T min V nom Pass T max V nom Pass Report No.: ER AC Page : 15 of 62

16 3.2 Power Spectral Density Limit of Power Spectral Density For equipment using wide band modulations other than FHSS, the maximum Power Spectral Density is limited to 10 dbm per MHz Test Procedures Reference to clause of ETSI EN V2.1.1 ( ) Test Setup Test Result of Power Spectral Density Modulation Mode Freq. (MHz) Power Density (dbm/1mhz) Limit (dbm/1mhz) Results 11b/1Mbps Pass 11b/1Mbps Pass 11b/1Mbps Pass 11g/6Mbps Pass 11g/6Mbps Pass 11g/6Mbps Pass HT20/MCS Pass HT20/MCS Pass HT20/MCS Pass Report No.: ER AC Page : 16 of 62

17 3.3 Occupied Channel Bandwidth Limit of Occupied Channel Bandwidth The Occupied Channel Bandwidth shall fall completely within 2.4~ GHz. In addition, for non-adaptive equipment using wide band modulations other than FHSS and with e.i.r.p greater than 10 dbm, the occupied channel bandwidth shall be less than 20 MHz Test Procedures Reference to clause of ETSI EN V2.1.1 ( ) Test Setup Test Result of Occupied Channel Bandwidth Modulation Mode Frequency (MHz) 99% Bandwidth (MHz) F L at 99% BW (MHz) F H at 99% BW (MHz) Limit F L / F H (MHz) 11b/1Mbps b/1Mbps g/6Mbps g/6Mbps HT20/MCS HT20/MCS Report No.: ER AC Page : 17 of 62

18 3.4 Transmitter Unwanted Emissions in the Out-Of-Band Domain Limit of Transmitter Unwanted Emissions in the Out-Of-Band Domain Test Procedures Reference to clause of ETSI EN V2.1.1 ( ) Test Setup Report No.: ER AC Page : 18 of 62

19 3.4.4 Test Result of Transmitter Unwanted Emissions in the Out-Of-Band Domain Condition Modulation Mode Freq. (MHz) OOB Freq. (MHz) OOB Emissions (dbm) Limit (dbm) T nom V nom 11b/1Mbps T nom V nom 11b/1Mbps T nom V nom 11b/1Mbps T nom V nom 11b/1Mbps Low Band Up Band Report No.: ER AC Page : 19 of 62

20 Condition Modulation Mode Freq. (MHz) OOB Freq. (MHz) OOB Emissions (dbm) Limit (dbm) T nom V nom 11g/6Mbps T nom V nom 11g/6Mbps T nom V nom 11g/6Mbps T nom V nom 11g/6Mbps Low Band Up Band Report No.: ER AC Page : 20 of 62

21 Condition Modulation Mode Freq. (MHz) OOB Freq. (MHz) OOB Emissions (dbm) Limit (dbm) T nom V nom HT20/MCS T nom V nom HT20/MCS T nom V nom HT20/MCS T nom V nom HT20/MCS Low Band Up Band Report No.: ER AC Page : 21 of 62

22 3.5 Transmitter Unwanted Emissions in the Spurious Domain Limit of Transmitter Unwanted Emissions in the Spurious Domain Frequency Range (MHz) Maximum power (dbm) Bandwidth (khz) 30 to to to to to to to to to to Test Procedures Reference to clause of ETSI EN V2.1.1 ( ). Report No.: ER AC Page : 22 of 62

23 3.5.3 Test Setup Below 1GHz Above 1 GHz Report No.: ER AC Page : 23 of 62

24 3.5.4 Transmitter Radiated Unwanted Emissions (Below 1GHz) Modulation 11g Test Freq. (MHz) 2412 Polarization Horizontal Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 24 of 62

25 Modulation 11g Test Freq. (MHz) 2412 Polarization Vertical Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 25 of 62

26 Modulation 11g Test Freq. (MHz) 2472 Polarization Horizontal Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 26 of 62

27 Modulation 11g Test Freq. (MHz) 2472 Polarization Vertical Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 27 of 62

28 3.5.5 Transmitter Radiated Unwanted Emissions (Above 1GHz) for b Modulation 11b Test Freq. (MHz) 2412 Polarization Horizontal Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 28 of 62

29 Modulation 11b Test Freq. (MHz) 2412 Polarization Vertical Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 29 of 62

30 Modulation 11b Test Freq. (MHz) 2472 Polarization Horizontal Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 30 of 62

31 Modulation 11b Test Freq. (MHz) 2472 Polarization Vertical Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 31 of 62

32 3.5.6 Transmitter Spurious Emissions (Above 1GHz) for g Modulation 11g Test Freq. (MHz) 2412 Polarization Horizontal Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 32 of 62

33 Modulation 11g Test Freq. (MHz) 2412 Polarization Vertical Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 33 of 62

34 Modulation 11g Test Freq. (MHz) 2472 Polarization Horizontal Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 34 of 62

35 Modulation 11g Test Freq. (MHz) 2472 Polarization Vertical Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 35 of 62

36 3.5.7 Transmitter Spurious Emissions (Above 1GHz) for n HT 20 Modulation HT20 Test Freq. (MHz) 2412 Polarization Horizontal Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 36 of 62

37 Modulation HT20 Test Freq. (MHz) 2412 Polarization Vertical Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 37 of 62

38 Modulation HT20 Test Freq. (MHz) 2472 Polarization Horizontal Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 38 of 62

39 Modulation HT20 Test Freq. (MHz) 2472 Polarization Vertical Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 39 of 62

40 4 Receiver Test Results 4.1 Receiver Spurious Emissions Limit of Receiver Spurious Emissions Frequency Range Maximum power (dbm) Measurement bandwidth (khz) 30 MHz to 1 GHz Above 1 GHz to GHz Test Procedures Reference to clause of ETSI EN V2.1.1 ( ). Report No.: ER AC Page : 40 of 62

41 4.1.3 Test Setup Below 1GHz Above 1 GHz Report No.: ER AC Page : 41 of 62

42 4.1.4 Receiver Radiated Unwanted Emissions (Below 1GHz) Modulation 11g Test Freq. (MHz) 2412 Polarization Horizontal Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 42 of 62

43 Modulation 11g Test Freq. (MHz) 2412 Polarization Vertical Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 43 of 62

44 Modulation 11g Test Freq. (MHz) 2472 Polarization Horizontal Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 44 of 62

45 Modulation 11g Test Freq. (MHz) 2472 Polarization Vertical Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 45 of 62

46 4.1.5 Receiver Radiated Unwanted Emissions (Above 1GHz) Modulation 11g Test Freq. (MHz) 2412 Polarization Horizontal Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 46 of 62

47 Modulation 11g Test Freq. (MHz) 2412 Polarization Vertical Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 47 of 62

48 Modulation 11g Test Freq. (MHz) 2472 Polarization Horizontal Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 48 of 62

49 Modulation 11g Test Freq. (MHz) 2472 Polarization Vertical Note 1: Measured Value (dbm) = Reading (dbm) + Factor (db) Note 2: Margin (db) = Measured Value (dbm) Limit (dbm) Report No.: ER AC Page : 49 of 62

50 5 Adaptivity Test Results 5.1 Adaptivity and Unwanted Signal Parameters Limit of Adaptivity and Unwanted Signal Parameters Adaptivity and Unwanted Signal Limit Only for adaptive systems and RF Output Power > 10 dbm Non-LBT based Detect and Avoid: minimum remain unavailable = 1sec; minimum Idle Period time = 100us; maximum Channel Occupancy Time (COT) = 40ms detection threshold level = -70 dbm/mhz + 10 x log 10 (100mW / Pout) (Pout in mw e.i.r.p); LBT based Detect and Avoid (Frame Based Equipment): minimum Clear Channel Assessment (CCA) time = 18 us; COT = 1 ms to 10 ms Idle Period = 5% of COT detection threshold level = -70 dbm/mhz + 10 x log 10 (100mW / Pout) (Pout in mw e.i.r.p); LBT based Detect and Avoid (Load Based Equipment with spectrum sharing mechanism IEEE Std.): LBT based spectrum sharing mechanism may implement IEEE [i.3] clause 9, clause 10, clause 16,clause 17, clause 19 and clause 20, or in IEEE [i.4], clause 4, clause 5 and clause 8 detection threshold level = -70 dbm/mhz + 10 x log 10 (100mW / Pout) (Pout in mw e.i.r.p); Short Control Signalling Transmissions: Short Control Signalling Transmissions shall have a maximum duty cycle of 10 % within an observation period of 50 ms. Equipment Type LBT Non-LBT Wanted Signal Mean Power from Companion Device Unwanted Signal Parameters Blocking Signal Frequency (MHz) sufficient to maintain the link (see note 2) 2395 or 2488,5 (see note 1) -30 dbm Blocking Signal Mean power (dbm) -35 (see note 3) Type of Interfering Signal Note 1: The highest frequency shall be used for testing operating channels within the range MHz to MHz, while the lowest frequency shall be used for testing operating channels within the range MHz to 2 483,5 MHz. Note 2: A typical value which can be used in most cases is -50 dbm/mhz. Note 3: The level specified is the level in front of the UUT antenna. In case of conducted measurements, this level has to be corrected by the actual antenna assembly gain. CW Test Procedures Reference to clause of ETSI EN V2.1.1 ( ). Report No.: ER AC Page : 50 of 62

51 5.1.3 Test Setup Test Result of Adaptivity Unwanted Signal and Short Control Signalling Transmissions Adaptivity and Unwanted Signal Result EUT firmware / software version Adaptivity Detection Threshold Level (dbm) Unwanted Signal Level (dbm) -33 Modulation Mode Freq. (MHz) Short Control Signalling Transmissions (ms) Channel Occupancy Time (ms) Idle Period Time (μs) b b g g n (HT20) n (HT20) Limit < 5 ms < 13 ms >18μs Result Complied Adaptivity Pass Unwanted Signal Test Status Pass Report No.: ER AC Page : 51 of 62

52 5.1.5 Test Result of Adaptivity and Unwanted Signal Plots Adaptivity & Unwanted Signal Result Plots Unwanted signal: MHz Unwanted signal: 2395 MHz b MHz b MHz g MHz g MHz n (HT20) MHz n (HT20) MHz Report No.: ER AC Page : 52 of 62

53 5.1.6 Test Result of Short Control Signalling Transmissions Plots Short Control Signalling Transmissions Plots b MHz b MHz g MHz g MHz n (HT20) MHz n (HT20) MHz Report No.: ER AC Page : 53 of 62

54 Channel Occupancy Time b MHz b MHz g MHz g MHz n (HT20) MHz n (HT20) MHz Report No.: ER AC Page : 54 of 62

55 Idle Period Time b MHz b MHz g MHz g MHz n (HT20) MHz n (HT20) MHz Report No.: ER AC Page : 55 of 62

56 6 Receiver Blocking Test Results 6.1 Receiver Blocking Limit of Receiver Blocking Wanted Signal Mean Power from Companion Device (dbm) P min + 6 db P min + 6 db P min + 6 db Receiver Blocking Parameters for Receiver Category 1 Equipment Limit Blocking Signal Frequency (MHz) , , , , , , ,5 Blocking Signal Power (dbm) (see Note 2) Type of Blocking Signal -53 CW -47 CW -47 CW Note 1: P min is the minimum level of the wanted signal (in dbm) required to meet the minimum performance criteria (The minimum performance criterion shall be a PER less than or equal to 10 %) in the absence of any blocking signal. Note 2: The levels specified are levels in front of the UUT antenna. In case of conducted measurements, the levels have to be corrected by the actual antenna assembly gain. Wanted Signal Mean Power from Companion Device (dbm) P min + 6 db P min + 6 db Receiver Blocking Parameters for Receiver Category 2 Equipment Limit Blocking Signal Frequency (MHz) , ,5 Blocking Signal Power (dbm) (see Note 2) Type of Blocking Signal -57 CW -47 CW Note 1: P min is the minimum level of the wanted signal (in dbm) required to meet the minimum performance criteria (The minimum performance criterion shall be a PER less than or equal to 10 %) in the absence of any blocking signal. Note 2: The levels specified are levels in front of the UUT antenna. In case of conducted measurements, the levels have to be corrected by the actual antenna assembly gain. Report No.: ER AC Page : 56 of 62

57 Wanted Signal Mean Power from Companion Device (dbm) P min + 12 db P min + 12 db Receiver Blocking Parameters for Receiver Category 3 Equipment Limit Blocking Signal Frequency (MHz) , ,5 Blocking Signal Power (dbm) (see Note 2) Type of Blocking Signal -57 CW -47 CW Note 1: P min is the minimum level of the wanted signal (in dbm) required to meet the minimum performance criteria (The minimum performance criterion shall be a PER less than or equal to 10 %) in the absence of any blocking signal. Note 2: The levels specified are levels in front of the UUT antenna. In case of conducted measurements, the levels have to be corrected by the actual antenna assembly gain Test Procedures Reference to clause of ETSI EN V2.1.1 ( ) Test Setup Report No.: ER AC Page : 57 of 62

58 6.1.4 Test Result of Receiver Blocking 11b / 2412 MHz Without Interference Signal Sensitivity Level PER minimum performance criteria 10 % Sensitivity Level -96 dbm Want Signal Mean Power form Companion Device (dbm) Blocking Signal Frequency (MHz) Blocking Signal Power (dbm) Test Result Pass Pass Pass Pass Pass Pass Pass Pass Pass Pass Pass Report No.: ER AC Page : 58 of 62

59 11b / 2472 MHz Without Interference Signal Sensitivity Level PER minimum performance criteria 10 % Sensitivity Level -96 dbm Want Signal Mean Power form Companion Device (dbm) Blocking Signal Frequency (MHz) Blocking Signal Power (dbm) Test Result Pass Pass Pass Pass Pass Pass Pass Pass Pass Pass Pass Report No.: ER AC Page : 59 of 62

60 7 Photographs of the Test Configuration Spurious Emission Test Report No.: ER AC Page : 60 of 62

61 Adaptivity, Unwanted Signal and Short Control Signalling Transmissions Test Receiver Blocking Test Report No.: ER AC Page : 61 of 62

62 8 Test laboratory information Established in 2012, ICC provides foremost EMC & RF Testing and advisory consultation services by our skilled engineers and technicians. Our services employ a wide variety of advanced edge test equipment and one of the widest certification extents in the business. International Certification Corp (EMC and Wireless Communication Laboratory), it is our definitive objective is to institute long term, trust-based associations with our clients. The expectation we set up with our clients is based on outstanding service, practical expertise and devotion to a certified value structure. Our passion is to grant our clients with best EMC / RF services by oriented knowledgeable and accommodating staff. Our Test sites are located at Linkou District and Kwei Shan District. Location map can be found on our website Linkou Kwei Shan Kwei Shan Site II Tel: Tel: Tel: No. 30-2, Ding Fwu Tsuen, Lin Kou District, New Taipei City, Taiwan, R.O.C. No. 3-1, Lane 6, Wen San 3rd St., Kwei Shan District, Tao Yuan City 333, Taiwan, R.O.C. If you have any suggestion, please feel free to contact us as below information No. 14-1, Lane 19, Wen San 3rd St., Kwei Shan District, Tao Yuan City 333, Taiwan, R.O.C.. Tel: Fax: ICC_Service@icertifi.com.tw END Report No.: ER AC Page : 62 of 62

CE Test Report. : 45 Series Pluggable module

CE Test Report. : 45 Series Pluggable module CE Test Report Equipment Model No. Brand Name Applicant Address : 45 Series Pluggable module : MSD45N : Laird Technologies : Laird Technologies : W66N220 Commerce Court, Cedarburg, Wisconsin 53012, USA

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