Test. Report. Manufacturer. Model No. FCC ID. Technology. and. 1. This. 3. This. pp John Newell. as UL. Date of Issue: 28 May 2013.

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1 Test Report TESTT REPORT No. : UL-RPT-RP89265JD7 V3. Manufacturer Model No. FCC ID IC Certification No. Technology Test Standard(s) : & R Cambridge Ltd (RCM) : L22Y : YONDNW- : 792 -DNW : Bluetooth Basic Rate & EDR : FCC Parts 5. 9, 5.9(a) & 5.247, Industry Canada RSS-2 8.(a), 8.(b), 8.(d), 8.4( 2) & 8.5 and RSS-Gen 4.6.3, 4.8, 4.9, 4. & 6.. This test report shall not be reproduced in full or partial, without the written approval of RFI Global Services Ltd trading as UL. 2. The results in this report apply only to the sample(s) tested. 3. This sample tested is in compliance with the above standard(s). 4. The test results in this report are traceable to the national or international standards. 5. Version 3. supersedes all previous versions. Date of Issue: 28 May 3 Checked by: Sarah Williams WiSE Laboratory Engineer Issued by : pp John Newell Group Quality Manager, WiSE Basingstoke, UL Verification Services This laboratory is accredited by UKS. The tests reported herein have been performed in accordance with its terms of accreditation. The Bluetooth word mark and logos are owned by the Bluetooth SIG, Inc. and any use of such marks by RFI Global Services Ltd trading as UL is under licence. Other trademarks and trade names are those of their respective owners. RFI Global Services Ltd trading as UL Pavilion, shwood Park, shwood Way, Basingstoke, Hampshire, RG23 8BG, UK Telephone: +44 ()256 3 Facsimile: +44 ()256 3

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3 Table of Contents. Customer Information Summary of Testing General Information Summary of Test s Methods and Procedures Deviations from the Test Specification 6 3. Equipment Under Test (EUT) Identification of Equipment Under Test (EUT) Description of EUT Modifications Incorporated in the EUT dditional Information Related to Testing Support Equipment 8 4. Operation and Monitoring of the EUT during Testing Operating Modes Configuration and Peripherals 9 5. Measurements, Examinations and Derived s General Comments 5.2. Test s Receiver/Idle Mode Radiated Spurious Emissions Transmitter db Bandwidth Transmitter Carrier Frequency Separation Transmitter Number of Hopping Frequencies and verage Time of Occupancy Transmitter Maximum Peak Output Power Transmitter Radiated Emissions Transmitter Band Edge Radiated Emissions Measurement Uncertainty Report Revision History RFI Global Services Ltd trading as UL Page 3 of 48

4 . Customer Information Company Name: ddress: &R Cambridge Ltd (RCM) Pembroke venue, Waterbeach, Cambridgeshire CB25 9QR United Kingdom Page 4 of 48 RFI Global Services Ltd trading as UL

5 2. Summary of Testing 2.. General Information Specification Reference: 47CFR5.247 Specification Title: Code of Federal Regulations Volume 47 (Telecommunications) 2: Part 5 Subpart C (Intentional Radiators) Section Specification Reference: 47CFR5.9 Specification Title: Code of Federal Regulations Volume 47 (Telecommunications) 2: Part 5 Subpart B (Unintentional Radiators) Section 5.9 Specification Reference: 47CFR5.9 Specification Title: Code of Federal Regulations Volume 47 (Telecommunications) 2: Part 5 Subpart C (Intentional Radiators) Section 5.9 Specification Reference: RSS-Gen Issue 3 December Specification Title: General Requirements and Information for the Certification of Radio pparatus Specification Reference: RSS-2 Issue 8 December Specification Title: Licence-exempt Radio pparatus (ll Frequency Bands): Category I Equipment. Site Registration: FCC: 9735; Industry Canada: 3245B-2 Location of Testing: RFI Global Services Ltd trading as UL, Unit 3 Horizon, Wade Road, Kingsland Business Park, Basingstoke, Hampshire, RG24 8H, United Kingdom Test Dates: 9 March 3 to 8 March 3 RFI Global Services Ltd trading as UL Page 5 of 48

6 2.2. Summary of Test s FCC Reference (47CFR) IC Reference Measurement Part 5.9 RSS-Gen 4./6. Receiver/Idle Mode Radiated Spurious Emissions Part 5.247(a)() RSS-Gen RSS-2 8.(a) Transmitter db Bandwidth Part 5.247(a)() RSS-2 8.(b) Transmitter Carrier Frequency Separation Part 5.247(a)()(iii) Part 5.247(b)() Part 5.247(d)/ 5.9(a) Part 5.247(d)/ 5.9(a) Key to s RSS-2 8.(d) RSS-Gen 4.8 RSS-2 8.4(2) RSS-Gen 4.9 RSS RSS-Gen 4.9 RSS = Complied = Did not comply Transmitter Number of Hopping Frequencies and verage Time of Occupancy Transmitter Maximum Peak Output Power Transmitter Radiated Emissions Transmitter Band Edge Radiated Emissions 2.3. Methods and Procedures Reference: NSI C63.4 (3) Title: Reference: NSI C63. (9) Title: merican National Standard for Methods of Measurement of Radio-Noise Emissions from Low-Voltage Electrical and Electronic Equipment in the Range of 9 khz to GHz merican National Standard for Testing Unlicensed Wireless Devices 2.4. Deviations from the Test Specification For the measurements contained within this test report, there were no deviations from, additions to, or exclusions from the test specification identified above. Page 6 of 48 RFI Global Services Ltd trading as UL

7 3. Equipment Under Test (EUT) 3.. Identification of Equipment Under Test (EUT) Brand Name: rcam Model Name or Number: L22Y Serial Number: Not marked or stated Hardware Version Number: Software Version Number:. FCC ID: YONDNW- Industry Canada Certification Number: 792-DNW 3.2. Description of EUT The equipment under test was a Bluetooth module Modifications Incorporated in the EUT No modifications were applied to the EUT during testing. RFI Global Services Ltd trading as UL Page 7 of 48

8 3.4. dditional Information Related to Testing Tested Technology: Bluetooth Power Supply Requirement: Nominal 5 VDC Type of Unit: Channel Spacing: Transceiver MHz Mode: Basic Rate Enhanced Data Rate Modulation: GFSK π/4-dqpsk 8DQPSK Packet Type: (Maximum Payload) DH5 2DH5 3DH5 Data Rate (Mbit/s): 2 3 Maximum Peak Output Power: Transmit Frequency Range: Transmit Channels Tested: Receive Frequency Range: Receive Channels Tested: 3.5. Support Equipment 8.9 dbm 22 MHz to 24 MHz Channel ID Channel Number Channel Frequency (MHz) Bottom 22 Middle Top MHz to 24 MHz Channel ID Channel Number Channel Frequency (MHz) Bottom 22 Middle Top The following support equipment was used to exercise the EUT during testing: Description: Brand Name: Model Name or Number: Serial Number: Laptop Dell Latitude D6 Not marked or stated Description: Brand Name: Model Name or Number: Serial Number: Ethernet to SPI conversion PCB Not marked or stated Not marked or stated Not marked or stated Page 8 of 48 RFI Global Services Ltd trading as UL

9 4. Operation and Monitoring of the EUT during Testing 4.. Operating Modes The EUT was tested in the following operating mode(s): Transmit mode with Basic Rate (DH5 packets) or EDR (2DH5 or 3DH5 packets) as required. The EUT was in Bluetooth test mode at maximum power for all tests. Receiver/idle mode Configuration and Peripherals The EUT was tested in the following configuration(s): The EUT was connected to the Ethernet to SPI conversion circuit board, which in turn was connected to a laptop via an Ethernet cable. CSR Bluetest3 application on the laptop PC was used to control the device. RFI Global Services Ltd trading as UL Page 9 of 48

10 5. Measurements, Examinations and Derived s 5.. General Comments Measurement uncertainties are evaluated in accordance with current best practice. Our reported expanded uncertainties are based on standard uncertainties, which are multiplied by an appropriate coverage factor to provide a statistical confidence level of approximately 95%. Please refer to Section 6. Measurement Uncertainty for details. In accordance with UKS requirements all the measurement equipment is on a calibration schedule. ll equipment was within the calibration period on the date of testing. Page of 48 RFI Global Services Ltd trading as UL

11 5.2. Test s Receiver/Idle Mode Radiated Spurious Emissions Test Summary: Test Engineer: David Doyle Test Date: 2 March 3 Test Sample Serial Number: Not marked or stated FCC Reference: Part 5.9 Industry Canada Reference: RSS-Gen 4. / 6. Test Method Used: s detailed in NSI C63. Sections 6.3 and 6.5 referencing NSI C63.4 Frequency Range: Environmental Conditions: Temperature ( C): 22 Relative Humidity (%): 26 Note(s): MHz to MHz. The final measured value, for the given emission, in the table below incorporates the calibrated antenna factor and cable loss. 2. ll other emissions shown on the pre-scan plot were investigated and found to be ambient or > db below the applicable limit or below the measurement system noise floor. 3. Measurements below GHz were performed in a semi-anechoic chamber (RFI sset Number K) at a distance of 3 metres. The EUT was placed at a height of cm above the reference ground plane in the centre of the chamber turntable. Maximum emission levels were determined by height searching the measurement antenna over the range metre to 4 metres. s: Quasi Peak Frequency (MHz) ntenna Polarity Level Limit.99 Vertical Complied Vertical Complied 4.6 Vertical Complied Vertical Complied RFI Global Services Ltd trading as UL Page of 48

12 Receiver/Idle Mode Radiated Spurious Emissions (continued) FCC Part 5.9 Radiated Emissions Class B MHz-GHz 3m FCC Part 5 Class B Field Strength QP 3M 45 Level in dbµv/m M M M M M M M M M M G Frequency in Hz Note: This plot is a pre-scan and for indication purposes only. For final measurements, see accompanying table. Test Equipment Used: : RFI No. Instrument Manufacturer Type No. Serial No. Date Calibration Due Cal. Interval (Months) K 5m RSE Chamber Rainford EMC N/ N/ 24 Oct 3 2 M379 Test Receiver Rohde & Schwarz ESIB7 3 5 Oct ntenna Chase CBL May 3 2 G543 mplifier Sonoma 3N 2 3 pr ttenuator Hewlett Packard 849B Jan 4 2 Page 2 of 48 RFI Global Services Ltd trading as UL

13 Receiver/Idle Mode Radiated Spurious Emissions (continued) Test Summary: Test Engineer: David Doyle Test Date: 2 March 3 Test Sample Serial Number: Not marked or stated FCC Reference: Part 5.9 Industry Canada Reference: RSS-Gen 4. / 6. Test Method Used: s detailed in NSI C63. Sections 6.3 and 6.6 referencing NSI C63.4 Frequency Range: Environmental Conditions: Temperature ( C): 23 Relative Humidity (%): 29 Note(s): GHz to 2.5 GHz. The final measured value, for the given emission, in the table below incorporates the calibrated antenna factor and cable loss. 2. Pre-scans above GHz were performed in a fully anechoic chamber (RFI sset Number K2) at a distance of 3 metres. The EUT was placed at a height of.5 metres above the test chamber floor in the centre of the chamber turntable. ll measurement antennas were placed at a fixed height of.5 metres above the test chamber floor, in line with the EUT. Final measurements above GHz were performed in a semi-anechoic chamber (RFI sset Number K) at a distance of 3 metres. The EUT was placed at a height of cm above the reference ground plane in the centre of the chamber turntable. Maximum emission levels were determined by height searching the measurement antenna over the range metre to 4 metres. 3. No spurious emissions were detected above the noise floor of the measuring receiver therefore the highest peak noise floor reading of the measuring receiver was recorded as shown in the table below. The peak level was compared to the average limit as opposed to being compared to the peak limit because this is the more onerous limit. s: Frequency (MHz) ntenna Polarity Peak Level verage Limit Horizontal Complied RFI Global Services Ltd trading as UL Page 3 of 48

14 Receiver/Idle Mode Radiated Spurious Emissions (continued) * RBW MHz * RBW MHz * VBW 3 MHz dbµv * VBW 3 MHz. dbµv Ref dbµv * tt db SWT ms GHz Ref dbµv * tt db SWT ms GHz MXH MXH D 54 dbµv D 54 dbµv C C Start GHz MHz/ Stop 4 GHz Start 4 GHz MHz/ Stop 6 GHz Date: 2.MR.3 9::7 Date: 2.MR.3 9:42:4 * RBW MHz * RBW MHz * VBW 3 MHz dbµv * VBW 3 MHz dbµv Ref dbµv * tt db SWT ms GHz Ref dbµv * tt db SWT ms GHz MXH MXH D 54 dbµv D 54 dbµv C C Start 6 GHz MHz/ Stop 8 GHz Start 8 GHz 475 MHz/ Stop 2.75 GHz Date: 2.MR.3 9:36:9 Date: 2.MR.3 9:33: Test Equipment Used: RFI No. Instrument Manufacturer Type No. Serial No. Date Calibration Due Cal. Interval (Months) K2 3m RSE Chamber Rainford EMC N/ N/ 4 Nov 3 2 M6 Test Receiver Rohde & Schwarz ESU Feb Pre mplifier Hewlett Packard 8449B 85 4 Nov ntenna EMCO Nov ntenna Flann Microwave Nov ntenna Flann Microwave Nov ntenna Flann Microwave Nov 3 2 Page 4 of 48 RFI Global Services Ltd trading as UL

15 5.2.2.Transmitter db Bandwidth Test Summary: Test Engineer: David Doyle Test Date: 9 March 3 Test Sample Serial Number: Not marked or stated FCC Reference: Part 5.247(a)() Industry Canada Reference: RSS-Gen / RSS-2 8.(a) Test Method Used: s detailed in NSI C63. Section 6.9. Environmental Conditions: Temperature ( C): 24 Relative Humidity (%): 33 RFI Global Services Ltd trading as UL Page 5 of 48

16 Transmitter db Bandwidth (continued) s DH5: Channel db Bandwidth (khz) Bottom Middle Top * RBW khz * RBW khz * VBW khz dbm * VBW khz -3.8 dbm Ref dbm * tt db SWT 25 ms GHz Ref dbm * tt db SWT 25 ms GHz Offset D 7.8. dbmdb Delta 2 [T ].4 db Offset D 7.3. dbm db Delta 2 [T ] -.3 db khz khz MXH - D2-2.2 dbm 2 MXH - D2-2.7 dbm C - C Center 2.2 GHz khz/ Span 5 MHz Center 2.44 GHz khz/ Span 5 MHz Date: 8.MR.3 2:58:25 Bottom Channel Date: 8.MR.3 3::7 Middle Channel Ref dbm * tt db * RBW khz * VBW khz SWT 25 ms -3. dbm GHz Offset D 6.6. dbm db Delta 2 [T ] -.9 db khz MXH - D2-3.4 dbm C Center 2.48 GHz khz/ Span 5 MHz Date: 8.MR.3 3:3:33 Top Channel Page 6 of 48 RFI Global Services Ltd trading as UL

17 Transmitter db Bandwidth (continued) s 2DH5: Channel db Bandwidth (khz) Bottom Middle Top * RBW khz * RBW khz * VBW khz dbm * VBW khz dbm Ref dbm * tt db SWT 25 ms GHz Ref dbm * tt db SWT 25 ms GHz Offset. db D 6.5 dbm Delta 2 [T ].65 db Offset. db D 5.9 dbm Delta 2 [T ].22 db MHz MHz MXH - D2-3.5 dbm 2 MXH - D2-4. dbm C - C Center 2.2 GHz khz/ Span 5 MHz Center 2.44 GHz khz/ Span 5 MHz Date: 8.MR.3 3::42 Bottom Channel Date: 8.MR.3 3:9:3 Middle Channel Ref dbm * tt db * RBW khz * VBW khz SWT 25 ms -5. dbm GHz Offset. db D 5. dbm Delta 2 [T ].5 db MHz MXH - D2-4.9 dbm C Center 2.48 GHz khz/ Span 5 MHz Date: 8.MR.3 3:7:9 Top Channel RFI Global Services Ltd trading as UL Page 7 of 48

18 Transmitter db Bandwidth (continued) s 3DH5: Channel db Bandwidth (khz) Bottom 34.3 Middle Top * RBW khz * RBW khz * VBW khz -5. dbm * VBW khz dbm Ref dbm * tt db SWT 25 ms GHz Ref dbm * tt db SWT 25 ms GHz Offset. db D 6.5 dbm Delta 2 [T ].59 db Offset. db D 5.8 dbm Delta 2 [T ].62 db MHz MHz MXH - D2-3.5 dbm 2 MXH - D2-4.2 dbm C - C Center 2.2 GHz khz/ Span 5 MHz Center 2.44 GHz khz/ Span 5 MHz Date: 8.MR.3 3:2:39 Bottom Channel Date: 8.MR.3 3:5: Middle Channel Ref dbm * tt db * RBW khz * VBW khz SWT 25 ms -6.3 dbm GHz Offset. db D 5. dbm Delta 2 [T ].6 db MHz MXH - D2-4.9 dbm C Center 2.48 GHz khz/ Span 5 MHz Date: 8.MR.3 3:6:42 Top Channel Page 8 of 48 RFI Global Services Ltd trading as UL

19 Transmitter db Bandwidth (continued) Test Equipment Used: RFI No. Instrument Manufacturer Type No. Serial No. Date Calibration Due Cal. Interval (Months) M6 Test Receiver Rohde & Schwarz ESU Feb ttenuator tlan TecRF N May 3 2 RFI Global Services Ltd trading as UL Page 9 of 48

20 Transmitter Carrier Frequency Separation Test Summary: Test Engineers: David Doyle & Mark Percival Test Dates: March 3 & 8 March 3 Test Sample Serial Number: Not marked or stated FCC Reference: Part 5.247(a)() Industry Canada Reference: RSS-2 8.(b) Test Method Used: s detailed in NSI C63. Section Environmental Conditions: Temperature ( C): 22 to 25 Relative Humidity (%): 28 to Note(s):. The db bandwidth measured for the middle channel operating at 244 MHz was used to calculate the limit. s: DH5 Carrier Frequency Separation (khz) Limit ( 2 / 3 of db BW) (khz) (khz) Complied Delta [T] Ref Lvl -.7 db dbm. MHz. db Offset RBW khz VBW khz SWT 6 ms RF tt db Unit dbm - VIEW IN M Center GHz Title: Date: 8.MR.3 4:2:5 khz/ Span 2 MHz Page of 48 RFI Global Services Ltd trading as UL

21 Transmitter Carrier Frequency Separation (continued) Note(s):. The db bandwidth measured for the middle channel operating at 244 MHz was used to calculate the limit. s: 2DH5 Carrier Frequency Separation (khz) Limit ( 2 / 3 of db BW) (khz) (khz) Complied Ref dbm * tt db * RBW khz * VBW khz SWT ms 5.96 dbm 2.44 GHz Offset. db Delta 2 [T2 ] -.2 db.3528 MHz 2 VIEW 2 PK VIEW C Center GHz khz/ Span 2 MHz Date:.MR.3 9:2:37 RFI Global Services Ltd trading as UL Page 2 of 48

22 Transmitter Carrier Frequency Separation (continued) Note(s):. The db bandwidth measured for the middle channel operating at 244 MHz was used to calculate the limit. s: 3DH5 Carrier Frequency Separation (khz) Limit ( 2 / 3 of db BW) (khz) (khz) Complied Ref dbm * tt db * RBW khz * VBW khz SWT ms 5.94 dbm 2.44 GHz Offset. db Delta 2 [T2 ] -.3 db.3528 MHz 2 VIEW 2 PK VIEW C Center GHz khz/ Span 2 MHz Date:.MR.3 9:23:23 Test Equipment Used: RFI No. Instrument Manufacturer Type No. Serial No. Date Calibration Due Cal. Interval (Months) M6 Test Receiver Rohde & Schwarz ESU Feb ttenuator tlan TecRF N May 3 2 Page 22 of 48 RFI Global Services Ltd trading as UL

23 Transmitter Number of Hopping Frequencies and verage Time of Occupancy Test Summary: Test Engineer: David Doyle Test Date: 2 March 3 Test Sample Serial Number: Not marked or stated FCC Reference: Industry Canada Reference: Part 5.247(a)()(iii) RSS-2 8.(d) Test Method Used: s detailed in NSI C63. Section & Environmental Conditions: Temperature ( C): 23 Relative Humidity (%): 29 Note(s):. Tests were performed to identify the average time of occupancy in number of channels (79) x.4 seconds. The calculated period is 3.6 seconds. s: Emission Width (μs) Number of Hops in 3.6 Seconds verage Time of Occupancy (s) Limit (s) (s) Complied RFI Global Services Ltd trading as UL Page 23 of 48

24 Transmitter Number of Hopping Frequencies and verage Time of Occupancy (continued) * RBW khz RBW MHz * VBW khz * VBW 3 MHz 7.52 dbm Ref dbm * tt db SWT ms Ref dbm tt 25 db SWT 5 ms µs Offset. db Offset. db Delta 2 [T ].69 db ms SGL MXH * CLRWR TRG - - TRG -.7 dbm C - C Start 2.4 GHz 8.35 MHz/ Stop GHz Center 2.44 GHz µs/ Date: 2.MR.3 2:38:8 Date: 2.MR.3 2:53: Ref dbm tt 25 db RBW khz * VBW khz SWT 32 s Offset. db * VIEW C Center 2.44 GHz 3.2 s/ Date: 2.MR.3 2:56:49 Test Equipment Used: RFI No. Instrument Manufacturer Type No. Serial No. Date Calibration Due Cal. Interval (Months) M6 Test Receiver Rohde & Schwarz ESU Feb ttenuator tlan TecRF N May 3 2 Page 24 of 48 RFI Global Services Ltd trading as UL

25 Transmitter Maximum Peak Output Power Test Summary: Test Engineer: David Doyle Test Date: 9 March 3 Test Sample Serial Number: Not marked or stated FCC Reference: Part 5.247(b)() Industry Canada Reference: RSS-Gen 4.8 / RSS-2 8.4(2) Test Method Used: s detailed in NSI C63. Section 6.. Environmental Conditions: Temperature ( C): 24 Relative Humidity (%): 33 RFI Global Services Ltd trading as UL Page 25 of 48

26 Transmitter Maximum Peak Output Power (continued) s: DH5 Channel Conducted Peak Power (dbm) Conducted Peak Power Limit (dbm) Bottom Complied Middle Complied Top Complied Channel Conducted Peak Power (dbm) Declared ntenna Gain (dbi) EIRP (dbm) De Facto EIRP Limit (dbm) Bottom Complied Middle Complied Top Complied Page 26 of 48 RFI Global Services Ltd trading as UL

27 Transmitter Maximum Peak Output Power (continued) s: DH5 * RBW 2 MHz * RBW 2 MHz * VBW MHz 8.93 dbm * VBW MHz 8.25 dbm Ref dbm * tt db SWT 2.5 ms GHz Ref dbm * tt db SWT 2.5 ms GHz Offset. db Offset. db MXH - MXH C - C Center 2.2 GHz khz/ Span 7 MHz Center 2.44 GHz khz/ Span 7 MHz Date: 8.MR.3 2:38:3 Date: 8.MR.3 2:4:8 Bottom Channel Middle Channel Ref dbm * tt db Offset. db * RBW 2 MHz * VBW MHz SWT 2.5 ms 7.57 dbm GHz MXH C Center 2.48 GHz khz/ Span 7 MHz Date: 8.MR.3 2:42: Top Channel RFI Global Services Ltd trading as UL Page 27 of 48

28 Transmitter Maximum Peak Output Power (continued) s: 2DH5 Channel Conducted Peak Power (dbm) Conducted Peak Power Limit (dbm) Bottom Complied Middle Complied Top Complied Channel Conducted Peak Power (dbm) Declared ntenna Gain (dbi) EIRP (dbm) De Facto EIRP Limit (dbm) Bottom Complied Middle Complied Top Complied Page 28 of 48 RFI Global Services Ltd trading as UL

29 Transmitter Maximum Peak Output Power (continued) s: 2DH5 * RBW 2 MHz * RBW 2 MHz * VBW MHz 7.65 dbm * VBW MHz 6.75 dbm Ref dbm * tt db Offset. db SWT 2.5 ms GHz Ref dbm * tt db Offset. db SWT 2.5 ms GHz MXH - MXH C - C Center 2.2 GHz khz/ Span 7 MHz Center 2.44 GHz khz/ Span 7 MHz Date: 8.MR.3 2:44:55 Date: 8.MR.3 2:44:6 Bottom Channel Middle Channel Ref dbm * tt db Offset. db * RBW 2 MHz * VBW MHz SWT 2.5 ms 6.58 dbm GHz MXH C Center 2.48 GHz khz/ Span 7 MHz Date: 8.MR.3 2:43:24 Top Channel RFI Global Services Ltd trading as UL Page 29 of 48

30 Transmitter Maximum Peak Output Power (continued) s: 3DH5 Channel Conducted Peak Power (dbm) Conducted Peak Power Limit (dbm) Bottom Complied Middle Complied Top Complied Channel Conducted Peak Power (dbm) Declared ntenna Gain (dbi) EIRP (dbm) De Facto EIRP Limit (dbm) Bottom Complied Middle Complied Top Complied Page of 48 RFI Global Services Ltd trading as UL

31 Transmitter Maximum Peak Output Power (continued) s: 3DH5 * RBW 2 MHz * RBW 2 MHz * VBW MHz 7.97 dbm * VBW MHz 7.24 dbm Ref dbm * tt db Offset. db SWT 2.5 ms GHz Ref dbm * tt db Offset. db SWT 2.5 ms GHz MXH - MXH C - C Center 2.2 GHz khz/ Span 7 MHz Center 2.44 GHz khz/ Span 7 MHz Date: 8.MR.3 2:46:4 Date: 8.MR.3 2:46:59 Bottom Channel Middle Channel Ref dbm * tt db Offset. db * RBW 2 MHz * VBW MHz SWT 2.5 ms 6.24 dbm GHz MXH C Center 2.48 GHz khz/ Span 7 MHz Date: 8.MR.3 2:48:8 Test Equipment Used: Top Channel RFI No. Instrument Manufacturer Type No. Serial No. Date Calibration Due Cal. Interval (Months) M6 Test Receiver Rohde & Schwarz ESU Feb ttenuator tlan TecRF N May 3 2 RFI Global Services Ltd trading as UL Page 3 of 48

32 Transmitter Radiated Emissions Test Summary: Test Engineer: David Doyle Test Date: 2 March 3 Test Sample Serial Number: Not marked or stated FCC Reference: Parts 5.247(d) & 5.9(a) Industry Canada Reference: RSS-Gen 4.9 / RSS Test Method Used: s detailed in NSI C63. Sections 6.3 and 6.5 referencing NSI C63.4 Frequency Range Environmental Conditions: Temperature ( C): 22 Relative Humidity (%): 26 Note(s): MHz to MHz. The final measured value, for the given emission, in the table below incorporates the calibrated antenna factor and cable loss. 2. The preliminary scans showed similar emission levels below GHz, for each channel of operation. Therefore final radiated emissions measurements were performed with the EUT set to the top channel only. 3. ll other emissions shown on the pre-scan plot were investigated and found to be ambient or > db below the applicable limit or below the measurement system noise floor. 4. Measurements below GHz were performed in a semi-anechoic chamber (RFI sset Number K) at a distance of 3 metres. The EUT was placed at a height of cm above the reference ground plane in the centre of the chamber turntable. Maximum emission levels were determined by height searching the measurement antenna over the range metre to 4 metres. s: Quasi-Peak / DH5 Frequency (MHz) ntenna Polarity Level Limit Vertical Complied Page 32 of 48 RFI Global Services Ltd trading as UL

33 Transmitter Radiated Emissions (continued) FCC Part 5.9 Radiated Emissions Class B MHz-GHz 3m FCC Part 5 Class B Field Strength QP 3M 45 Level in dbµv/m M M M M M M M M M M G Frequency in Hz Note: This plot is a pre-scan and for indication purposes only. For final measurements, see accompanying table. Test Equipment Used: RFI No. Instrument Manufacturer Type No. Serial No. Date Calibration Due Cal. Interval (Months) K 5m RSE Chamber Rainford EMC N/ N/ 24 Oct 3 2 M379 Test Receiver Rohde & Schwarz ESIB7 3 5 Oct ntenna Chase CBL May 3 2 G543 mplifier Sonoma 3N 2 3 pr ttenuator Hewlett Packard 849B Jan 4 2 RFI Global Services Ltd trading as UL Page 33 of 48

34 Transmitter Radiated Emissions (continued) Test Summary: Test Engineer: David Doyle Test Date: March 3 Test Sample Serial Number: Not marked or stated FCC Reference: Parts 5.247(d) & 5.9(a) Industry Canada Reference: RSS-Gen 4.9 / RSS Test Method Used: s detailed in NSI C63. Sections 6.3 and 6.6 referencing NSI C63.4 Frequency Range Environmental Conditions: Temperature ( C): 22 Relative Humidity (%): Note(s): GHz to 25 GHz. The final measured value, for the given emission, in the table below incorporates the calibrated antenna factor and cable loss. 2. The emission shown on the GHz to 4 GHz plot is the EUT fundamental at 24 MHz. 3. ll other emissions shown on the pre-scan plot were investigated and found to be ambient or > db below the applicable limit or below the measurement system noise floor. 4. In accordance with NSI C63. Section , if the peak measurements are below the average limit, then average measurements are not required. 5. Pre-scans above GHz were performed in a fully anechoic chamber (RFI sset Number K2) at a distance of 3 metres. The EUT was placed at a height of.5 metres above the test chamber floor in the centre of the chamber turntable. ll measurement antennas were placed at a fixed height of.5 metres above the test chamber floor, in line with the EUT. Final measurements above GHz were performed in a semi-anechoic chamber (RFI sset Number K) at a distance of 3 metres. The EUT was placed at a height of cm above the reference ground plane in the centre of the chamber turntable. Maximum emission levels were determined by height searching the measurement antenna over the range metre to 4 metres. Page 34 of 48 RFI Global Services Ltd trading as UL

35 Transmitter Radiated Emissions (continued) s: Peak / Bottom Channel / DH5 Frequency (MHz) ntenna Polarity Peak Level verage Limit 43.8 Horizontal Complied Horizontal Complied.385 Horizontal Complied s: Peak / Middle Channel / DH5 Frequency (MHz) ntenna Polarity Peak Level verage Limit Horizontal Complied Horizontal Complied Horizontal Complied s: Peak / Top Channel / DH5 Frequency (MHz) ntenna Polarity Peak Level verage Limit Horizontal Complied Horizontal Complied Horizontal Complied s: Peak / Hopping Mode / DH5 Frequency (MHz) ntenna Polarity Peak Level verage Limit 49. Horizontal Complied Horizontal Complied Horizontal Complied RFI Global Services Ltd trading as UL Page 35 of 48

36 Transmitter Radiated Emissions (continued) * RBW MHz * RBW MHz * VBW 3 MHz 45. dbµv * VBW 3 MHz dbµv Ref dbµv * tt db SWT ms GHz Ref dbµv * tt db SWT ms GHz Offset 6.2 db Offset 6.2 db 9 9 V * MXH MXH D 74 dbµv D 54 dbµv C C Start GHz MHz/ Stop 4 GHz Start GHz MHz/ Stop 4 GHz Date: 2.MR.3 :32:58 Date: 2.MR.3 :34: verage Detector Peak Detector * RBW MHz * RBW MHz * VBW 3 MHz 4.88 dbµv * VBW 3 MHz dbµv Ref dbµv * tt db SWT ms GHz Ref dbµv * tt db SWT ms GHz MXH MXH D 54 dbµv D 54 dbµv C C Start 4 GHz MHz/ Stop 6 GHz Start 6 GHz MHz/ Stop 8 GHz Date:.MR.3 :4:26 Date:.MR.3 :7:2 Page 36 of 48 RFI Global Services Ltd trading as UL

37 Transmitter Radiated Emissions (continued) * RBW MHz * RBW MHz * VBW 3 MHz 47.6 dbµv * VBW 3 MHz 49.5 dbµv Ref dbµv * tt db SWT ms GHz Ref dbµv * tt db SWT 35 ms GHz MXH MXH D 54 dbµv D 54 dbµv C C Start 8 GHz 475 MHz/ Stop 2.75 GHz Start 2.75 GHz 525 MHz/ Stop 8 GHz Date:.MR.3 2:7:9 Date:.MR.3 :5:47 Ref dbµv * tt db * RBW MHz * VBW 3 MHz SWT 45 ms 48. dbµv GHz MXH D 54 dbµv C - - Start 8 GHz MHz/ Stop 25 GHz Date:.MR.3 2::24 Note: These plots are pre-scans and for indication purposes only. For final measurements, see accompanying tables. RFI Global Services Ltd trading as UL Page 37 of 48

38 Transmitter Radiated Emissions (continued) Test Equipment Used: RFI No. Instrument Manufacturer Type No. Serial No. Date Calibration Due Cal. Interval (Months) K2 3m RSE Chamber Rainford EMC N/ N/ 4 Nov 3 2 M6 Test Receiver Rohde & Schwarz ESU Feb Pre mplifier Hewlett Packard 8449B 85 4 Nov ttenuator HP pr ntenna EMCO Nov ntenna Flann Microwave Nov ntenna Flann Microwave Nov ntenna Flann Microwave Nov ntenna Flann Microwave 82-4 Nov ntenna Flann Microwave Nov 3 2 Page 38 of 48 RFI Global Services Ltd trading as UL

39 Transmitter Band Edge Radiated Emissions Test Summary: Test Engineer: David Doyle Test Date: 2 March 3 Test Sample Serial Number: Not marked or stated FCC Reference: Parts 5.247(d) & 5.9(a) Industry Canada Reference: RSS-Gen 4.9 / RSS Test Method Used: s detailed in NSI C63. Sections Environmental Conditions: Temperature ( C): 23 Relative Humidity (%): 29 Note(s):. The final measured value, for the given emission, in the table below incorporates the calibrated antenna factor and cable loss. 2. * - dbc limit. RFI Global Services Ltd trading as UL Page 39 of 48

40 Transmitter Band Edge Radiated Emissions (continued) s: Static Mode / DH5 Frequency (MHz) ntenna Polarity Peak Level (dbµv/m) Limit. Horizontal * 8.8 Complied Horizontal Complied Frequency (MHz) ntenna Polarity verage Level Limit Horizontal Complied * RBW khz * RBW MHz * VBW khz 68.2 dbµv * VBW 3 MHz dbµv Ref dbµv * tt db SWT ms 2. GHz Ref dbµv * tt db SWT 2.5 ms 2.48 GHz Offset D dbµv Offset 6.2 db MXH 9 D dbµv MXH 9 D 74 dbµv C C F F Center 2.4 GHz 5 MHz/ Span MHz Center GHz 5 MHz/ Span MHz Date: 2.MR.3 :48: Lower Band Edge Peak Static Date: 2.MR.3 :34:4 Upper Band Edge Peak Static Ref dbµv * tt db Offset 6.2 db * RBW MHz * VBW Hz SWT 5 s dbµv 2.48 GHz MXH 9 D 54 dbµv C F Center GHz 5 MHz/ Span MHz Date: 2.MR.3 :43:8 Upper Band Edge verage Static Page of 48 RFI Global Services Ltd trading as UL

41 Transmitter Band Edge Radiated Emissions (continued) s: Hopping Mode / DH5 Frequency (MHz) ntenna Polarity Peak Level (dbµv/m) Limit. Horizontal Complied Horizontal Complied Frequency (MHz) ntenna Polarity verage Level Limit Horizontal Complied * RBW khz * RBW MHz * VBW khz 6.69 dbµv * VBW 3 MHz dbµv Ref dbµv * tt db SWT ms 2. GHz Ref dbµv * tt db SWT 2.5 ms 2.48 GHz Offset D dbµv Offset 6.2 db MXH 9 D2 88. dbµv MXH 9 D 74 dbµv C C F F Center 2.4 GHz 5 MHz/ Span MHz Center GHz 5 MHz/ Span MHz Date: 2.MR.3 :55:52 Date: 2.MR.3 2::37 Lower Band Edge Peak Hopping Upper Band Edge Peak Hopping Ref dbµv * tt db Offset 6.2 db * RBW MHz * VBW Hz SWT 5 s 39.3 dbµv 2.48 GHz MXH 9 D 54 dbµv C F Center GHz 5 MHz/ Span MHz Date: 2.MR.3 2::6 Upper Band Edge verage Hopping RFI Global Services Ltd trading as UL Page 4 of 48

42 Transmitter Band Edge Radiated Emissions (continued) s: Static Mode / 2DH5 Frequency (MHz) ntenna Polarity Peak Level (dbµv/m) Limit. Horizontal Complied Horizontal Complied Frequency (MHz) ntenna Polarity verage Level Limit Horizontal Complied * RBW khz * RBW MHz * VBW khz dbµv * VBW 3 MHz 66.8 dbµv Ref dbµv * tt db SWT ms 2. GHz Ref dbµv * tt db SWT 2.5 ms 2.48 GHz Offset D db dbµv Offset 6.2 db MXH 9 D dbµv MXH 9 D 74 dbµv C C F F Center 2.4 GHz 5 MHz/ Span MHz Center GHz 5 MHz/ Span MHz Date: 2.MR.3 :52:23 Lower Band Edge Peak Static Date: 2.MR.3 :39:38 Upper Band Edge Peak Static Ref dbµv * tt db Offset 6.2 db * RBW MHz * VBW Hz SWT 5 s dbµv 2.48 GHz MXH 9 D 54 dbµv C F Center GHz 5 MHz/ Span MHz Date: 2.MR.3 ::26 Upper Band Edge verage Static Page 42 of 48 RFI Global Services Ltd trading as UL

43 Transmitter Band Edge Radiated Emissions (continued) s: Hopping Mode / 2DH5 Frequency (MHz) ntenna Polarity Peak Level (dbµv/m) Limit. Horizontal Complied Horizontal Complied Frequency (MHz) ntenna Polarity verage Level Limit Horizontal Complied * RBW khz * RBW MHz * VBW khz dbµv * VBW 3 MHz.77 dbµv Ref dbµv * tt db SWT ms 2. GHz Ref dbµv * tt db SWT 2.5 ms 2.48 GHz Offset D db dbµv Offset 6.2 db MXH 9 D dbµv MXH 9 D 74 dbµv C C F F Center 2.4 GHz 5 MHz/ Span MHz Center GHz 5 MHz/ Span MHz Date: 2.MR.3 :57:3 Lower Band Edge Peak Hopping Date: 2.MR.3 2:8:58 Upper Band Edge Peak Hopping Ref dbµv * tt db Offset 6.2 db * RBW MHz * VBW Hz SWT 5 s dbµv 2.48 GHz MXH 9 D 54 dbµv C F Center GHz 5 MHz/ Span MHz Date: 2.MR.3 2:9:36 Upper Band Edge verage Hopping RFI Global Services Ltd trading as UL Page 43 of 48

44 Transmitter Band Edge Radiated Emissions (continued) s: Static Mode / 3DH5 Frequency (MHz) ntenna Polarity Peak Level (dbµv/m) Limit. Horizontal Complied Horizontal Complied Frequency (MHz) ntenna Polarity verage Level Limit Horizontal Complied * RBW khz * RBW MHz * VBW khz 6.2 dbµv * VBW 3 MHz dbµv Ref dbµv * tt db SWT ms 2. GHz Ref dbµv * tt db SWT 2.5 ms 2.48 GHz Offset D dbµv Offset 6.2 db MXH 9 D dbµv MXH 9 D 74 dbµv C C F F Center 2.4 GHz 5 MHz/ Span MHz Center GHz 5 MHz/ Span MHz Date: 2.MR.3 :53:34 Lower Band Edge Peak Static Date: 2.MR.3 :42:39 Upper Band Edge Peak Static Ref dbµv * tt db Offset 6.2 db * RBW MHz * VBW Hz SWT 5 s dbµv 2.48 GHz MXH 9 D 54 dbµv C F Center GHz 5 MHz/ Span MHz Date: 2.MR.3 :43:8 Upper Band Edge verage Static Page 44 of 48 RFI Global Services Ltd trading as UL

45 Transmitter Band Edge Radiated Emissions (continued) s: Hopping Mode / 3DH5 Frequency (MHz) ntenna Polarity Peak Level (dbµv/m) Limit. Horizontal * 28.4 Complied Horizontal Complied Frequency (MHz) ntenna Polarity verage Level Limit Horizontal Complied * RBW khz * RBW MHz * VBW khz dbµv * VBW 3 MHz 62.7 dbµv Ref dbµv * tt db SWT ms 2. GHz Ref dbµv * tt db SWT 2.5 ms 2.48 GHz Offset 6.2 db D 6. dbµv Offset 6.2 db MXH 9 D2 86. dbµv MXH 9 D 74 dbµv C C F F Center 2.4 GHz 5 MHz/ Span MHz Center GHz 5 MHz/ Span MHz Date: 2.MR.3 :59:5 Lower Band Edge Peak Hopping Date: 2.MR.3 2::33 Upper Band Edge Peak Hopping Ref dbµv * tt db Offset 6.2 db * RBW MHz * VBW Hz SWT 5 s.89 dbµv 2.48 GHz MXH 9 D 54 dbµv C F Center GHz 5 MHz/ Span MHz Date: 2.MR.3 2:7:56 Upper Band Edge verage Hopping RFI Global Services Ltd trading as UL Page 45 of 48

46 Transmitter Band Edge Radiated Emissions (continued) Test Equipment Used: RFI No. Instrument Manufacturer Type No. Serial No. Date Calibration Due Cal. Interval (Months) K2 3m RSE Chamber Rainford EMC N/ N/ 4 Nov 3 2 M6 Test Receiver Rohde & Schwarz ESU Feb Pre mplifier Hewlett Packard 8449B 85 4 Nov ntenna EMCO Nov ttenuator HP pr 3 2 Page 46 of 48 RFI Global Services Ltd trading as UL

47 6. Measurement Uncertainty No measurement or test can ever be perfect and the imperfections give rise to error of measurement in the results. Consequently the result of a measurement is only an approximation to the value of the measurand (the specific quantity subject to measurement) and is only complete when accompanied by a statement of the uncertainty of the approximation. The expression of uncertainty of a measurement result allows realistic comparison of results with reference values and limits given in specifications and standards. The uncertainty of the result may need to be taken into account when interpreting the measurement results. The reported expanded uncertainties below are based on a standard uncertainty multiplied by an appropriate coverage factor such that a confidence level of approximately 95% is maintained. For the purposes of this document approximately is interpreted as meaning effectively or for most practical purposes. Measurement Type Range Confidence Level (%) Calculated Uncertainty Conducted Maximum Peak Output Power 2.4 GHz to GHz 95% ±.3 db Carrier Frequency Separation 2.4 GHz to GHz 95% ±.92 ppm verage Time of Occupancy 2.4 GHz to GHz 95% ±.3 ns db Bandwidth 2.4 GHz to GHz 95% ±.92 ppm Radiated Spurious Emissions MHz to 26.5 GHz 95% ±2.94 db The methods used to calculate the above uncertainties are in line with those recommended within the various measurement specifications. Where measurement specifications do not include guidelines for the evaluation of measurement uncertainty the published guidance of the appropriate accreditation body is followed. RFI Global Services Ltd trading as UL Page 47 of 48

48 7. Report Revision History Version Number Revision Details Page No(s) Clause Details. - - Initial Version Update to Industry Canada certification number Update to location of testing address Page 48 of 48 RFI Global Services Ltd trading as UL

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