EN RF Test Report

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1 EN RF Test Report Report No.: Test Model: Series Model: RE150528C08A EYSFCN EYSGCN Received Date: May 28, 2015 Test Date: Jun. 04 ~ Jun. 12, 2015 (For all tests except Receiver Blocking test) Feb. 24, 2017 (For Receiver Blocking test) Issued Date: Mar. 02, 2017 Applicant: TAIYO YUDEN CO., LTD. Address: 8-1, Sakae-cho, Takasaki-shi, Gunma, , Japan Issued By: Lab Address: Test Location: Bureau Veritas Consumer Products Services (H.K.) Ltd., Taoyuan Branch No. 47-2, 14th Ling, Chia Pau Vil., Lin Kou Dist., New Taipei City, Taiwan, R.O.C. No. 19, Hwa Ya 2nd Rd., Wen Hwa Vil., Kwei Shan Dist., Taoyuan City 33383, TAIWAN (R.O.C.) This report is for your exclusive use. Any copying or replication of this report to or for any other person or entity, or use of our name or trademark, is permitted only with our prior written permission. This report sets forth our findings solely with respect to the test samples identified herein. The results set forth in this report are not indicative or representative of the quality or characteristics of the lot from which a test sample was taken or any similar or identical product unless specifically and expressly noted. Our report includes all of the tests requested by you and the results thereof based upon the information that you provided to us. You have 60 days from date of issuance of this report to notify us of any material error or omission caused by our negligence, provided, however, that such notice shall be in writing and shall specifically address the issue you wish to raise. A failure to raise such issue within the prescribed time shall constitute your unqualified acceptance of the completeness of this report, the tests conducted and the correctness of the report contents. Unless specific mention, the uncertainty of measurement has been explicitly taken into account to declare the compliance or non-compliance to the specification. This report should not be used by the client to claim product certification, approval, or endorsement by TAF or any government agencies. Report No.: RE150528C08A Page No. 1 / 29 Report Format Version: 6.1.3

2 Table of Contents Release Control Record Certificate of Conformity Summary of Test Results Test Instruments Measurement Uncertainty Maximum Measurement Uncertainty Modification Record General Information General Description of EUT Description of Test Modes Test Mode Applicability and Tested Channel Detail Description of Support Units Configuration of System under Test General Description of Applied Standards Test Procedure and Results Transmitter Parameters RF Output Power Limits of RF Output Power Test Procedures Deviation from Test Standard Test Setup Test Results Power Spectral Density Limit of Power Spectral Density Test Procedures Deviation of Test Standard Test Setup Test Results Occupied Channel Bandwidth Limit of Occupied Channel Bandwidth Test Procedure Deviation from Test Standard Test Setup Test Results Transmitter Unwanted Emissions in the Out-of-band Domain Limits of Transmitter Unwanted Emissions in the Out-of-band Domain Test Procedure Deviation from Test Standard Test Setup Test Results Transmitter Spurious Emissions Limits of Transmitter Spurious Emissions Test Procedure Deviation from Test Standard Test Setup Test Results Receiver Spurious Emissions Limit of Receiver Spurious Emissions Test Procedure Deviation from Test Standard Test Setup Test Results Receiver Blocking Report No.: RE150528C08A Page No. 2 / 29 Report Format Version: 6.1.3

3 4.7.1 Limit of Receiver Blocking Test Procedure Deviation from Test Standard Test Setup Configuration Test Results Photographs of the Test Configuration Appendix Information on the Testing Laboratories Report No.: RE150528C08A Page No. 3 / 29 Report Format Version: 6.1.3

4 Release Control Record Issue No. Description Date Issued RE150528C08A Original release Mar. 02, 2017 Report No.: RE150528C08A Page No. 4 / 29 Report Format Version: 6.1.3

5 1 Certificate of Conformity Product: Bluetooth Low Energy module Brand: TAIYO YUDEN Test Model: EYSFCN Series Model: EYSGCN Sample Status: Engineering sample Applicant: TAIYO YUDEN CO., LTD. Test Date: Jun. 04 ~ Jun. 12, 2015 (For all tests except Receiver Blocking test) Feb. 24, 2017 (For Receiver Blocking test) Standards: EN V2.1.1 ( ) The above equipment has been tested by Bureau Veritas Consumer Products Services (H.K.) Ltd., Taoyuan Branch, and found compliance with the requirement of the above standards. The test record, data evaluation & Equipment Under Test (EUT) configurations represented herein are true and accurate accounts of the measurements of the sample s EMC characteristics under the conditions specified in this report. Prepared by :, Date: Mar. 02, 2017 Polly Chien / Specialist Approved by :, Date: Mar. 02, 2017 Ken Liu / Senior Manager Report No.: RE150528C08A Page No. 5 / 29 Report Format Version: 6.1.3

6 2 Summary of Test Results The EUT has been tested according to the following specifications: EN V2.1.1 Clause Test Parameter Results RF Output Power Pass Power Spectral Density Pass Duty cycle, Tx-sequence, Tx-gap (Non-adaptive equipment) Medium Utilization (MU) Factor (Non-Adaptive Equipment) Adaptivity (Adaptive Equipment using modulation other than FHSS) Not Applicable Not Applicable Not Applicable (Note 1) Occupied Channel Bandwidth Pass Transmitter Unwanted Emissions in the out-of-band Domain Transmitter Unwanted Emissions in the Spurious Domain Pass Pass Receiver Spurious Emissions Pass Receiver Blocking Pass Geo-location capability Not Applicable Note: 1. These requirements do not apply for equipment with a maximum declared RF Output power of less than 10 dbm EIRP or for equipment when operating in a mode where the RF Output power is less than 10 dbm EIRP. Report No.: RE150528C08A Page No. 6 / 29 Report Format Version: 6.1.3

7 2.1 Test Instruments Test Date: Jun. 04 ~ Jun. 12, 2015 Description & Manufacturer Model No. Serial No. Calibrated Date Calibrated Until Spectrum Analyzer Agilent E4440A MY Mar. 09, 2015 Mar. 08, 2016 Spectrum Analyzer Rohde & Schwarz FSV Feb. 10, 2015 Feb. 09, 2016 Signal Generator Agilent E4438C MY Dec. 19, 2014 Dec. 18, 2015 Open Switch and Control Unit OSP120 B Nov. 28, 2014 Nov. 27, 2015 Rohde & Schwarz Vector Signal Generator Rohde & Schwarz SMJ100A Nov. 21, 2014 Nov. 20, 2015 RF and Microwave Siganl Generator SMB100A Nov. 14, 2014 Nov. 13, 2015 Rohde & Schwarz BILOG Antenna SCHWARZBECK VULB Feb. 04, 2015 Feb. 03, 2016 HORN Antenna ETS Feb. 10, 2015 Feb. 09, 2016 HORN Antenna SCHWARZBECK BBHA 9170 BBHA Feb. 05, 2015 Feb. 04, 2016 Preamplifier Agilent 8449B 3008A01976 Aug. 22, 2014 Aug. 21, 2015 Preamplifier Agilent 8447D 2944A10634 Aug. 22, 2014 Aug. 21, 2015 RF signal cable HUBER+SUHNER SUCOFLEX /4 Aug. 22, 2014 Aug. 21, 2015 RF signal cable HUBER+SUHNER SUCOFLEX Aug. 22, 2014 Aug. 21, 2015 CA G.9 RF signal cable 0(3m) & NF090(3m)*2 & HUBER+SUHNER CA F.9 TCF427S(2m)*1 Apr. 07, 2015 Apr. 06, (2m) Software ADT_Radiated_ ADT. V NA NA NA Antenna Tower Max-Full MFA-440H NA NA 10dB Attenuation JFW 50HF-010-SMA NA NA NA Turn Table ADT NA SN30303 NA NA Controller Max-Full MF7802 MF NA NA Temperature & Humidity chamber TERCHY MHU-225AU Jun. 18, 2014 Jun. 17, 2015 Note: 1. The calibration interval of the above test instruments is 12 months and the calibrations are traceable to NML/ROC and NIST/USA. 2. The test was performed in HwaYa RF Chamber The horn antenna and preamplifier (model: 8449B) are used only for the measurement of emission frequency above 1GHz if tested. Report No.: RE150528C08A Page No. 7 / 29 Report Format Version: 6.1.3

8 Test Date: Feb. 24, 2017 Description & Manufacturer Model No. Serial No. Calibrated Date Calibrated Until Spectrum Analyzer Rohde & Schwarz FSV Mar. 03, 2016 Mar. 02, 2017 Vector signal generator Agilent E4438C MY Nov. 03, 2016 Nov. 02, 2017 Open Switch and Control Unit Rohde & Schwarz OSP120 B Jan. 10, 2017 Jan. 09, 2018 Vector Signal Generator Rohde & Schwarz SMJ 100A Dec. 09, 2016 Dec. 08, 2017 RF and Microwave Signal Generator Rohde & Schwarz SMB100A Dec. 23, 2016 Dec. 22, 2017 Note: 1. The calibration interval of the above test instruments is 12 months and the calibrations are traceable to NML/ROC and NIST/USA. 2. The test was performed in HwaYa RF Chamber 2. Report No.: RE150528C08A Page No. 8 / 29 Report Format Version: 6.1.3

9 2.2 Measurement Uncertainty Where relevant, the following measurement uncertainty levels have been estimated for tests performed on the EUT: This uncertainty represents an expanded uncertainty expressed at approximately the 95% confidence level using a coverage factor of k=2. Parameter Uncertainty Occupied Channel Bandwidth ±1.06 x 10-8 RF output power, conducted Power Spectral Density, conducted Unwanted Emissions, conducted db db ±3.294 db All emissions, radiated ±0.23 C Temperature ±0.3 % Supply voltages ±0.3 % Time ±2.53 % 2.3 Maximum Measurement Uncertainty For the test methods, according to ETSI EN standard, the measurement uncertainty figures shall be calculated in accordance with ETR [4] and shall correspond to an expansion factor (coverage factor) k = 1,96 or k = 2 (which provide confidence levels of respectively 95 % and 95,45 % in the case where the distributions characterizing the actual measurement uncertainties are normal (Gaussian)). Maximum measurement uncertainty Parameter Uncertainty Occupied Channel Bandwidth ±5 % RF output power, conducted ±1.5 db Power Spectral Density, conducted ±3 db Unwanted Emissions, conducted ±3 db All emissions, radiated ±6 db Temperature ±1 C Supply voltages ±3 % Time ±5 % 2.4 Modification Record There were no modifications required for compliance. Report No.: RE150528C08A Page No. 9 / 29 Report Format Version: 6.1.3

10 3 General Information 3.1 General Description of EUT Product Brand Test Model Series Model Model Difference Status of EUT Nominal Voltage Normal Testing Voltage Temperature Operating Range Modulation Type Transfer Rate Operating Frequency Number of Channel 40 Adaptive/Non-Adaptive EIRP Power (Measured Max. Average) Antenna Type Accessory Device Data Cable Supplied Bluetooth Low Energy module TAIYO YUDEN EYSFCN EYSGCN Refer to note for more details Engineering sample 1.8~3.6Vdc (host equipment) 230Vac -40~85 GFSK 1Mbps 2402 ~ 2480MHz non-adaptive Equipment adaptive Equipment without the possibility to switch to a non-adaptive mode adaptive Equipment which can also operate in a non-adaptive mode 6.31dBm Chip antenna with 1.3dBi gain Adapter NA Note: 1. This report is issued as a supplementary report of the original report no.: RE150528C08. The difference compared with the original design is updating standard from EN V1.9.1 to V Therefore, only Receiver Blocking test had been re-tested and the other test data was kept in this report. 2. The following models are provided to this EUT. Brand Model Difference TAIYO YUDEN EYSFCN EYSGCN Main model Family model Different software is written. The software of radio control portion is totally same. Report No.: RE150528C08A Page No. 10 / 29 Report Format Version: 6.1.3

11 3.2 Description of Test Modes 40 channels are provided to this EUT: Channel FREQ. FREQ. FREQ. FREQ. Channel Channel Channel (MHz) (MHz) (MHz) (MHz) Report No.: RE150528C08A Page No. 11 / 29 Report Format Version: 6.1.3

12 3.2.1 Test Mode Applicability and Tested Channel Detail EUT Configure Mode Applicable to ROP PSD DC/TS/TG MU AD OCB EOB SE< 1G SE 1G RB Where ROP: RF Output Power PSD: Power Spectral Density DC/TS/TG: Duty Cycle/ Tx-Sequence / Tx-gap AD: Adaptivity (Channel Access Mechanism) EOB: Transmitter unwanted emissions in the out-of-band domain SE 1G: Unwanted Emissions in the Spurious Domain above 1 GHz MU: Medium Utilization OCB: Occupied Channel Bandwidth Description SE<1G: Unwanted Emissions in the Spurious Domain below 1 GHz RB: Receiver Blocking Note: The EUT had been pre-tested on the positioned of each 3 axis. The worst case was found when positioned on Y-plane. RF Output Power Test: Pre-Scan has been conducted to determine the worst-case mode from all possible combinations between available modulations, data rates and antenna ports (if EUT with antenna diversity architecture). Following channel(s) was (were) selected for the final test as listed below. EUT Configure Mode Available Channel Tested Channel Modulation Type Data Rate (Mbps) - 0 to 39 0, 19, 39 GFSK 1.0 Power Spectral Density Test: Pre-Scan has been conducted to determine the worst-case mode from all possible combinations between available modulations, data rates and antenna ports (if EUT with antenna diversity architecture). Following channel(s) was (were) selected for the final test as listed below. EUT Configure Mode Available Channel Tested Channel Modulation Type Data Rate (Mbps) - 0 to 39 0, 19, 39 GFSK 1.0 Occupied Channel Bandwidth Test: Pre-Scan has been conducted to determine the worst-case mode from all possible combinations between available modulations, data rates and antenna ports (if EUT with antenna diversity architecture). Following channel(s) was (were) selected for the final test as listed below. EUT Configure Mode Available Channel Tested Channel Modulation Type Data Rate (Mbps) - 0 to 39 0, 39 GFSK 1.0 Transmitter Unwanted Emission in the Out-of-band Domain Test: Pre-Scan has been conducted to determine the worst-case mode from all possible combinations between available modulations, data rates and antenna ports (if EUT with antenna diversity architecture). Following channel(s) was (were) selected for the final test as listed below. EUT Configure Mode Available Channel Tested Channel Modulation Type Data Rate (Mbps) - 0 to 39 0, 39 GFSK 1.0 Report No.: RE150528C08A Page No. 12 / 29 Report Format Version: 6.1.3

13 Unwanted Emissions in the Spurious Domain Test (Below 1 GHz): Pre-Scan has been conducted to determine the worst-case mode from all possible combinations between available modulations, data rates and antenna ports (if EUT with antenna diversity architecture). Following channel(s) was (were) selected for the final test as listed below. EUT Configure Mode Available Channel Tested Channel Modulation Type Data Rate (Mbps) - 0 to 39 0 GFSK 1.0 Unwanted Emissions in the Spurious Domain Test (above 1 GHz): Pre-Scan has been conducted to determine the worst-case mode from all possible combinations between available modulations, data rates and antenna ports (if EUT with antenna diversity architecture). Following channel(s) was (were) selected for the final test as listed below. EUT Configure Mode Available Channel Tested Channel Modulation Type Data Rate (Mbps) - 0 to 39 0, 39 GFSK 1.0 Receiver Blocking test: Pre-Scan has been conducted to determine the worst-case mode from all possible combinations between available modulations, data rates and antenna ports (if EUT with antenna diversity architecture). Following channel(s) was (were) selected for the final test as listed below. EUT Configure Mode Available Channel Tested Channel Modulation Type Data Rate (Mbps) - 0 to 39 0, 39 GFSK 1.0 Test Condition: Applicable to Environmental Conditions Input Power (System) Tested by ROP 25 deg. C, 60% RH 230Vac, 50Hz Frank Liu PSD 25 deg. C, 60% RH 230Vac, 50Hz Frank Liu OCB 25 deg. C, 60% RH 230Vac, 50Hz Frank Liu EOB 25 deg. C, 60% RH 230Vac, 50Hz Frank Liu SE<1G 29 deg. C, 71% RH 230Vac, 50Hz Cedric Wu SE 1G 29 deg. C, 71% RH 230Vac, 50Hz Cedric Wu RB 29 deg. C, 71% RH 230Vac, 50Hz Alan Wu Report No.: RE150528C08A Page No. 13 / 29 Report Format Version: 6.1.3

14 3.3 Description of Support Units The EUT has been tested as an independent unit together with other necessary accessories or support units. The following support units or accessories were used to form a representative test configuration during the tests. ID Product Brand Model No. Serial No. FCC ID Remarks A. Notebook Panasonic CF-T2 NA NA Supplied by the manufacturer. B. DC Power Supply R&S NGSM 32/ NA - Note: 1. All power cords of the above support units are non-shielded (1.8m). 2. Item A, B were placed under the test table. ID Descriptions Qty. Length (m) Shielding (Yes/No) Cores (Qty.) Remarks 1. DC cable N 0-2. USB cable Y 0 Supplied by the manufacturer Configuration of System under Test DC Power Supply (B) (1) DC in EUT Notebook (A) (2) USB 3.4 General Description of Applied Standards The EUT is a RF Product. According to the specification of the EUT declared by the manufacturer, it must comply with the requirements of the following standards: ETSI EN V2.1.1 ( ) All test items have been performed and recorded as per the above standards. Report No.: RE150528C08A Page No. 14 / 29 Report Format Version: 6.1.3

15 4 Test Procedure and Results Transmitter Parameters 4.1 RF Output Power Limits of RF Output Power Condition Frequency Band Limit (e.i.r.p) Under all test conditions 2400 ~ MHz AV: 20dBm Test Procedures Refer to chapter of ETSI EN V Measurement Method Conducted measurement Radiated measurement Deviation from Test Standard No deviation Test Setup The measurements for RF output power was performed at both normal environmental conditions and at the extremes of the operating temperature. Controlling software (provided by manufacturer) has been activated to set the EUT on specific channel and power level. EUT R & S Open Switch and Control Unit OSP 120 Control PC Test Results EIRP Power (dbm) Test Condition (CH0) 2402 MHz (CH19) 2440 MHz (CH39) 2480 MHz Tnom( ) +25 Vnom(v) Tmin( ) -40 Vnom(v) Tmax( ) +85 Vnom(v) Report No.: RE150528C08A Page No. 15 / 29 Report Format Version: 6.1.3

16 4.2 Power Spectral Density Limit of Power Spectral Density Condition Frequency Band Limit (e.i.r.p.) Under normal conditions 2400 ~ MHz 10dBm / 1MHz Test Procedures Refer to chapter of ETSI EN V Measurement Method Conducted measurement Radiated measurement Option 1: For equipment with continuous and non-continuous transmissions Option 2: For equipment with continuous transmission capability or for equipment operating (or with the capability to operate) with a constant duty cycle (e.g. Frame Basedequipment) Deviation of Test Standard No deviation Test Setup The test setup has been constructed as the normal test condition. In case of conducted measurements the transmitter shall be connected to the measuring equipment via a suitable attenuator. The power spectral density as defined in EN clause shall be measured and recorded. Controlling software (provided by manufacturer) has been activated to set the EUT on specific status. EUT R & S Open Switch and Control Unit OSP 120 Control PC Test Results Channel Channel Frequency (MHz) Power Density (dbm/1mhz) (EIRP) Limit (dbm/1mhz) (EIRP) Pass/Fail Pass Pass Pass Report No.: RE150528C08A Page No. 16 / 29 Report Format Version: 6.1.3

17 4.3 Occupied Channel Bandwidth Limit of Occupied Channel Bandwidth Additional requirement Condition All types of equipment For non-adaptive using wide band modulations other than FHSS system and e.i.r.p >10dBm. For non-adaptive Frequency Hopping system and e.i.r.p >10dBm. Limit Shall fall completely within the band 2400 to MHz. Less than 20MHz Less than 5MHz Test Procedure Refer to chapter of ETSI EN V Measurement Method Conducted measurement Radiated measurement Deviation from Test Standard No deviation Test Setup These measurements only were performed at normal test conditions. The measurement shall be performed only on the lowest and the highest frequency within the stated frequency range. In case of conducted measurements the transmitter shall be connected to the measuring equipment via a suitable attenuator. Controlling software (provided by manufacturer) has been activated to set the EUT on specific status Test Results Channel Occupied Measured Frequencies Channel Frequency Bandwidth Limit Pass/Fail (MHz) (MHz) F L (MHz) F H (MHz) F L > 2400 MHz Pass and F H < MHz Pass Note: F L is the lowest frequency of the 99% occupied bandwidth of power envelope. F H is the highest frequency of the 99% occupied bandwidth of power envelope. Report No.: RE150528C08A Page No. 17 / 29 Report Format Version: 6.1.3

18 4.4 Transmitter Unwanted Emissions in the Out-of-band Domain Limits of Transmitter Unwanted Emissions in the Out-of-band Domain Condition Under all test conditions Limit The transmitter unwanted emissions in the out-of-band domain but outside the allocated band, shall not exceed the values provided by the mask in below figure Test Procedure Refer to chapter of ETSI EN V2.1.1 Measurement Method Conducted measurement Radiated measurement Deviation from Test Standard No deviation Test Setup The measurements were performed at normal environmental conditions and shall be repeated at the extremes of the operating temperature. The measurement was performed at the lowest and the highest channel on which the equipment can operate. The equipment was configured to operate under its worst case situation with respect to output power. In case of conducted measurements the transmitter shall be connected to the measuring equipment via a suitable attenuator. The frequency has to be recorded for the right and left end above threshold of highest and lowest channel respectively. Report No.: RE150528C08A Page No. 18 / 29 Report Format Version: 6.1.3

19 4.4.5 Test Results Channel Frequency 2402MHz 2480MHz Test Condition Freq. (MHz) OOB Emission (MHz) ~ 2400 Power (dbm/ MHz) Freq. (MHz) ~ Power (dbm/ MHz) Freq. (MHz) OOB Emission (MHz) ~ Power (dbm/ MHz) Freq. (MHz) ~ Power (dbm/ MHz) Tnom( ) +25 Vnom(V) Tmin( ) -40 Vnom(V) Tmax( ) +85 Vnom(V) Limit (dbm/mhz) Pass/Fail Pass Pass Pass Pass Report No.: RE150528C08A Page No. 19 / 29 Report Format Version: 6.1.3

20 4.5 Transmitter Spurious Emissions Limits of Transmitter Spurious Emissions Frequency Range Maximum Power Limit Bandwidth 30 MHz to 47 MHz -36dBm 100kHz 47 MHz to 74 MHz -54dBm 100kHz 74 MHz to 87,5 MHz -36dBm 100kHz 87,5 MHz to 118 MHz -54dBm 100kHz 118 MHz to 174 MHz -36dBm 100kHz 174 MHz to 230 MHz -54dBm 100kHz 230 MHz to 470 MHz -36dBm 100kHz 470 MHz to 862 MHz -54dBm 100kHz 862 MHz to 1 GHz -36dBm 100kHz 1GHz ~ 12.75GHz -30dBm 1MHz Note: These limits are e.r.p. for emissions up to 1 GHz and as e.i.r.p. for emissions above 1 GHz Test Procedure Refer to chapter of ETSI EN V2.1.1 Measurement Method Conducted measurement Radiated measurement For Conducted measurement: The level of unwanted emissions shall be measured as their power in a specified load (conducted spurious emissions) and their effective radiated power when radiated by the cabinet or structure of the equipment with the antenna connector(s) terminated by a specified load (cabinet radiation). Conducted measurement (For equipment with multiple transmit chains): Option 1: The results for each of the transmit chains for the corresponding 1MHz segments shall be added and compared with the limits. Option 2: The results for each of the transmit chains shall be individually compared with the limits after these limits have been reduced by 10 x log (N) (number of active transmit chains) Deviation from Test Standard No deviation Test Setup 1. For the actual test configuration, please refer to the related Item in this test report (Photographs of the Test Configuration). 2. The equipment was configured to operate under its worst case situation with respect to output power. 3. The test setup has been constructed as the normal use condition. Controlling software (provided by manufacturer) has been activated to set the EUT on specific status. Report No.: RE150528C08A Page No. 20 / 29 Report Format Version: 6.1.3

21 4.5.5 Test Results Below 1GHz Worst-case Data: Frequency Range 30MHz ~ 1GHz Operating Channel 0 Spurious Emission Level Frequency (MHz) Antenna Polarization Level (dbm) Limit (dbm) Margin (db) V H V H V V H H V V H H Above 1GHz Worst-case Data: Frequency Range 1GHz ~ 12.75GHz Operating Channel 0, 39 Channel 0 39 Spurious Emission Level Frequency Antenna Level Limit Margin (MHz) Polarization (dbm) (dbm) (db) V H V H Report No.: RE150528C08A Page No. 21 / 29 Report Format Version: 6.1.3

22 4.6 Receiver Spurious Emissions Limit of Receiver Spurious Emissions Frequency Range Maximum Power Limit Bandwidth 30 MHz ~ 1 GHz -57dBm 100 khz 1 GHz ~ GHz -47dBm 1 MHz Note: These limits are e.r.p. for emissions up to 1 GHz and as e.i.r.p. for emissions above 1 GHz Test Procedure Refer to chapter of ETSI EN V Measurement Method Conducted measurement Radiated measurement For Conducted measurement: The level of unwanted emissions shall be measured as their power in a specified load (conducted spurious emissions) and their effective radiated power when radiated by the cabinet or structure of the equipment with the antenna connector(s) terminated by a specified load (cabinet radiation). Conducted measurement (For equipment with multiple transmit chains): Option 1: The results for each of the transmit chains for the corresponding 1MHz segments shall be added and compared with the limits. Option 2: The results for each of the transmit chains shall be individually compared with the limits after these limits have been reduced by 10 x log (N) (number of active transmit chains) Deviation from Test Standard No deviation Test Setup 1. For the actual test configuration, please refer to the related Item in this test report (Photographs of the Test Configuration). 2. Testing was performed when the equipment was in a receive-only mode. 3. The test setup has been constructed as the normal use condition. Controlling software (provided by manufacturer) has been activated to set the EUT on specific status. Report No.: RE150528C08A Page No. 22 / 29 Report Format Version: 6.1.3

23 4.6.5 Test Results RX Worst-case Data: Frequency Range 30 MHz ~ 1 GHz Operating Channel 0 Spurious Emission Level Frequency (MHz) Antenna Polarization Level (dbm) Limit (dbm) Margin (db) V H H H H V V H V H V H V Frequency Range 1 GHz ~ GHz Operating Channel 0, 39 Channel 0 39 Spurious Emission Level Frequency Antenna Level Limit Margin (MHz) Polarization (dbm) (dbm) (db) V H H V Report No.: RE150528C08A Page No. 23 / 29 Report Format Version: 6.1.3

24 4.7 Receiver Blocking Limit of Receiver Blocking This requirement applies to all receiver categories. Receiver Category Category 1 Category 2 Category 3 Minimum performance criterion PER 10% Alternative performance criteria (See note) Note: The manufacturer was declared performance criteria is x % for the intended use of the equipment. Wanted signal mean power from companion device (dbm) P min + 6 db P min + 6 db P min + 6 db Receiver Category 1 Equipment Blocking Signal Frequency (MHz) , , , , , ,5 Blocking Signal Power (dbm) (See note 2) Type of blocking signal -53 CW -47 CW -47 CW 2 673,5 Note 1: P min is the minimum level of the wanted signal (in dbm) required to meet the minimum performance criteria as defined in clause 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) Receiver Category 2 Equipment Blocking Signal Blocking Frequency Signal Power (MHz) (dbm) (See note 2) Type of blocking signal P min + 6 db ,5-57 CW P min + 6 db ,5-47 CW Note 1: P min is the minimum level of the wanted signal (in dbm) required to meet the minimum performance criteria as defined in clause 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.: RE150528C08A Page No. 24 / 29 Report Format Version: 6.1.3

25 Wanted signal mean power from companion device (dbm) P min + 12 db P min + 12 db Receiver Category 3 Equipment Blocking Signal Frequency (MHz) , Blocking Signal Power (dbm) (See note 2) Type of blocking signal -57 CW -47 CW 2 583,5 Note 1: P min is the minimum level of the wanted signal (in dbm) required to meet the minimum performance criteria as defined in clause 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 Procedure Refer to chapter of EN V Measurement Method Conducted measurement Radiated measurement Deviation from Test Standard No deviation Test Setup Configuration Report No.: RE150528C08A Page No. 25 / 29 Report Format Version: 6.1.3

26 4.7.5 Test Results Receiver blocking performance when operating at the lowest operating channel P min : -93dBm antenna gain(g) : 1.3 dbi at the antenna connector The actual blocking signal power(note1) in front of the antenna Note1: For the conducted measurements, the level shall be corrected as follows: the actual blocking signal power = blocking signal power + G Wanted signal Blocking signal mean power from The actual blocking Channel frequency companion device signal power (dbm) (MHz)) (dbm) Pass/Fail Pass 0 P min + 6 db Pass Pass Pass Receiver blocking performance when operating at the highest operating channel P min : -92 dbm antenna gain(g) : 1.3 dbi at the antenna connector The actual blocking signal power(note1) in front of the antenna Note1: For the conducted measurements, the level shall be corrected as follows: the actual blocking signal power = blocking signal power + G Wanted signal Blocking signal mean power from The actual blocking Channel frequency companion device signal power (dbm) (MHz)) (dbm) Pass/Fail Pass 39 P min + 6 db Pass Pass Pass Report No.: RE150528C08A Page No. 26 / 29 Report Format Version: 6.1.3

27 5 Photographs of the Test Configuration TX / RX Spurious Emission Test Report No.: RE150528C08A Page No. 27 / 29 Report Format Version: 6.1.3

28 Report No.: RE150528C08A Page No. 28 / 29 Report Format Version: 6.1.3

29 Appendix Information on the Testing Laboratories We, Bureau Veritas Consumer Products Services (H.K.) Ltd., Taoyuan Branch, were founded in 1988 to provide our best service in EMC, Radio, Telecom and Safety consultation. Our laboratories are accredited and approved according to ISO/IEC If you have any comments, please feel free to contact us at the following: Linko EMC/RF Lab Tel: Fax: Hsin Chu EMC/RF/Telecom Lab Tel: Fax: Hwa Ya EMC/RF/Safety Lab Tel: Fax: Web Site: The address and road map of all our labs can be found in our web site also. --- END --- Report No.: RE150528C08A Page No. 29 / 29 Report Format Version: 6.1.3

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