Bluetooth (Basic rate/edr) FCC Test Report. FOR: Pearl Automation Inc. Model Name: / Model Number: RearVision Car Adapter / P120

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1 Bluetooth (Basic rate/edr) FCC Test Report FOR: Pearl Automation Inc. Model Name: / Model Number: RearVision Car Adapter / P2 Product Description: RearVision consists of 2 main components. The Car Adapter, which is an accessory that connects to the vehicle s OBD-II diagnostic port, and the Camera Frame which is an accessory that is mounted at the license plate of the vehicle. The Car Adapter will relay information from the Camera Frame and vehicle environmental and state information over Bluetooth/WiFi, and that information will be relayed to the phone over Bluetooth/WiFi and displayed to the driver via the phone app. FCC ID: 2AG6M-P2 47 CFR Part [DSS] TEST REPORT #: EMC-PEARL P2-DSS-BT-Rev DATE: FCC Recognized. A2LA Accredited CETECOM Inc. 4 Dixon Landing Road Milpitas, CA 9535 U.S.A. Phone: + (48) Fax: + (48) info@cetecom.com CETECOM Inc. is a Delaware Corporation with Corporation number: V The BLUETOOTH trademarks are owned by Bluetooth SIG, Inc., U.S.A. and licensed to CETECOM Inc. Copyright by CETECOM

2 Date of Report : Page 2 of 88 TABLE OF CONTENTS Assessment Administrative Data Identification of the Testing Laboratory Issuing the Test Report Identification of the Client Identification of the Manufacturer Equipment under Test (EUT) Specification of the Equipment under Test Identification of the Equipment Under Test (EUT) Identification of Ancillary equipment EUT Sample Configuration Test mode of operation with multiple modulations: Subject of Investigation Summary of Measurement Results... 6 Measurements Measurement Uncertainty... 7 Environmental Conditions During Testing:... 8 Dates of Testing:... 9 Measurement Procedures Radiated Measurement Sample Calculations for Field Strength Measurements Power Line Conducted Measurement Procedure RF Conducted Measurement Procedure Conducted Measurement Setup without companion device... 5 Technical Specifications Requirements Maximum Peak Conducted Output Power Limits: Test Conditions Test Procedure Test Data: Measurement Result Measurement Plots: Band Edge Compliance & Restricted and Non-restricted Band Edge Limits: 5.247/ Test Conditions Test Procedure... 28

3 Date of Report : Page 3 of Measurement Result Measurement Plots: dB Bandwidth / 99% Bandwidth Limits: Test Conditions: Test Procedure Test Data: Measurement Result Test Data/plots: Carrier Frequency Separation Limits: Test Conditions: Test Procedure: Measurement result: Measurement plots: Number of hopping channels Limits: Test Conditions: Test Procedure: Measurement Result: Measurement Plots: Time of occupancy / Dwell time Limits: Test Conditions Test Procedure: Measurement Result: Test Data/Plots: Transmitter Spurious Emissions & Restricted Bands- Radiated Limits: Test Conditions Test Procedure Measurement Result: Measurement plots: EUT Setup Pictures Test Equipment and Ancillaries used for tests Revision History... 88

4 Date of Report : Page 4 of 88 Assessment The following device was evaluated against the applicable criteria specified in FCC rules Parts of Title 47 of the Code of Federal Regulations and No deviations were ascertained. Company Description Model # Pearl Automation Inc. RearVision Car Adapter P2 Responsible for Testing Laboratory: Franz Engert Digitally signed by Franz Engert DN: cn=franz Engert, c=us, o=cetecom, ou=complience, =franz.engert@cetecom.com Compliance (Compliance Manager) Date Section Name Signature Responsible for the Report: Compliance James Donnellan (Sr. EMC Engineer) James Donnellan Digitally signed by James Donnellan DN: cn=james Donnellan, c=us, o=cetecom Inc., ou=compliance, =james.donnellan@cetecom. com Date: :35:46-7'' Date Section Name Signature The test results of this test report relate exclusively to the test item specified in Section3. CETECOM Inc. USA does not assume responsibility for any conclusions and generalizations drawn from the test results with regard to other specimens or samples of the type of the equipment represented by the test item. The test report may only be reproduced or published in full. Reproduction or publication of extracts from the report requires the prior written approval of CETECOM Inc. USA.

5 Date of Report : Page 5 of 88 2 Administrative Data 2. Identification of the Testing Laboratory Issuing the Test Report Company Name: CETECOM Inc. Department: Compliance Address: 4 Dixon Landing Road Milpitas, CA 9535 U.S.A. Telephone: + (48) Fax: + (48) Compliance Manager: Franz Engert Responsible Project Leader: 2.2 Identification of the Client Ruther Navarro Applicant s Name: Street Address: Pearl Automation Inc. Enterprise Way, Suite A City/Zip Code Scotts Valley, CA 9566 Country USA Contact Person: Hagan O Connor / Erturk Kocalar Phone No (Hagan) / (Erturk) hagan@pearlauto.com / erturk@pearlauto.com. 2.3 Identification of the Manufacturer Manufacturer s Name: Manufacturers Address: City/Zip Code Country Dongguan Primax Electronic & Telecommunications Products Co. Ltd, Liu Wu District, Shek Kit Town, DongGuan City, Guang Dong, China.

6 Date of Report : Page 6 of 88 3 Equipment under Test (EUT) 3. Specification of the Equipment under Test Model #: HW Version : P2 DVTB SW Version : 347 FCC-ID : Product Description: Frequency Range / number of channels: Type(s) of Modulation: Modes of Operation: Antenna Information as declared: Max. Output Powers: Power Supply/ Rated Operating Voltage Range: operating temperature range Other Radios included in the device: Prototype / Production unit 2AG6M-P2 RearVision Car Adapter Nominal band: Center to center: 242(ch ) 248(ch 78), 79 channels Bluetooth Basic/EDR: GFSK, π /4 DQPSK, 8DPSK Hopping Custom internal PCB Trace Antenna. For RF conducted measurements, a temporary connection was made from measurement equipment to the 5Ohm UFL port of the EUT. Documented max antenna gain: 2.4GHz = dbi 5 dbm EIRP (Max Power per Spec 4 db plus dbi gain) CAR Battery Min. 4.VDC, Nom. ( 2.VDC -4.5VDC), Max 6VDC Tlow: -2 C/ Tnom: 25 C/ Tmax:45 C 5G WLAN 2.4G WLAN BT LE Prototype; Production; Pre-Production

7 Date of Report : Page 7 of Identification of the Equipment Under Test (EUT) EUT # Serial Number HW Version SW Version Notes/Comments AA66E4 DVTB 347 Radiated Sample 2 AA6754 DVTB 347 Conducted Sample 3.3 Identification of Ancillary equipment STE # Type Manufacturer Model Serial Number Notes/Comments MacBook Air A465 Apple C2QQ66&G4FY 2 Battery EUT Sample Configuration Used to setup channel modes prior to test. Supply power to EUT EUT Set-Up # Combination of AE used for test set up EUT# + AE2 2 EUT#2 +AE2 Comments The radio of the EUT was stimulated directly in a test mode not accessible by the end user. The internal antenna was connected. The radio of the EUT was stimulated directly in a test mode not accessible by the end user. The measurement equipment was connected to the 5Ohm UFL port of the EUT.

8 Date of Report : Page 8 of Test mode of operation with multiple modulations:. The EUT was set low, mid and high channels with a Max Duty Cycle and GFSK modulation using special software that is not available to the end user. 2. The channels and modulation schemes of the EUT were set using this software. 3. Based on measurements, the GFSK modulation scheme has the highest output power followed by GFSK. 4. The GFSK and 8-DPSK modulation schemes were used in all test cases as they are considered the worst case with respect to power. 5. During tests which require Frequency Hopping, the packet length is DH3 unless otherwise noted.

9 Date of Report : Page 9 of 88 4 Subject of Investigation The objective of the evaluation documented in this report was to assess if the performance of the EUT meets the relevant requirements specified in FCC rules Part of Title 47 of the Code of Federal Regulations. This test report is to support a request for new equipment authorization under the FCC ID: 2AG6M-P2. All testing was performed on the product referred to in Section 3 as the EUT. During the testing process the EUT was tested with transmitter sets on low, mid and high channels. For radiated measurements, all data in this report shows the worst case between horizontal and vertical antenna polarizations and orientations of the EUT. Testing procedures are based on ANSI C63.:23 for FHSS systems. A worst case evaluation for the highest power modulation has been carried out for GFSK and 8-DPSK modulation with maximum Duty Cycle..

10 Date of Report : Page of 88 5 Summary of Measurement Results Test Specification 5.247(b)() 5.247(d) 5.247(a)() 5.247(a)() 5.247(a)() 5.247(a)()(iii) 5.247(d) 5.29 (a) 5.27(a) Test Case Maximum Peak Conducted Output Power Band Edge Compliance Spectrum Bandwidth Carrier Frequency Separation Number of Hopping Channels Time of occupancy TX Spurious emissions- Radiated AC Conducted Emissions <3MHz Temperature and Voltage Conditions Nominal Nominal Nominal Nominal Nominal Nominal Nominal Nominal Note: NA= Not Applicable; NP= Not Performed. Mode Pass Fail NA NP Result GFSK QPSK 8DPSK GFSK 8DPSK GFSK QPSK 8DPSK GFSK 8DPSK GFSK 8DPSK GFSK QPSK 8DPSK GFSK 8DPSK GFSK 8DPSK Complies Complies Complies Complies Complies Complies Complies Complies

11 Date of Report : Page of 88 6 Measurements 6. Measurement Uncertainty Where relevant, the following measurement uncertainty levels have been estimated for tests performed on the apparatus, with 95% confidence interval (in db delta to result), based on a coverage factor k=. Uncertainty in db radiated <3MHz Uncertainty in db radiated 3MHz - GHz Uncertainty in db radiated > GHz Uncertainty in db Conducted measurement standard deviation k= % confidence interval in db % confidence interval in db in delta to Result (rounded up to next decimal point) +/- 2.5 db +/- 2. db +/- 2.3dB +/-.7dB 7 Environmental Conditions During Testing: The following environmental conditions were maintained during the course of testing: Ambient Temperature: 2-25 C Relative humidity: 4-6% 8 Dates of Testing: April 22, 26 May 24, 26

12 Date of Report : Page 2 of 88 9 Measurement Procedures 9. Radiated Measurement The radiated measurement is performed according to: ANSI C63. (23) The exploratory measurement is accomplished by running sweeps at and 4m antenna heights over the required frequency range with R&S Test-SW EMC32 for both antenna polarizations. During each frequency scan the turntable rotates by no more thandeg. The highest emissions are selected with an automatic algorithm of EMC32 searching for peaks in the noise floor and ensuring that broadband signals are not selected multiple times. The maxima are then again maximized through a fine search in frequency domain, maximized in the 36deg range of the turntable, and maximized over antenna height between m and 4m and for positioning of the EUT. The above procedure is repeated for transmission low mid and high channel. In case there are no emissions above noise floor level only the maximum trace is reported as described above. The results are split up into up to 4 frequency ranges due to antenna bandwidth restrictions. A magnetic loop is used from 9 khz to 3 MHz, a Biconilog antenna is used from 3 MHz to GHz, and two different horn antennas are used to cover frequencies up to 4 GHz. Radiated Emissions Test Setup Below 3MHz Measurements EUT at 8cm 3 m Distance Turn-Table EMI Receiver

13 Date of Report : Page 3 of 88 Radiated Emissions Test Setup 3MHz-GHz Measurements Height Scan -4m 3 m Distance EUT at 8 cm Turn-Table BiLog Measurement Antenna Chamber Ground plane EMI Receiver Radiated Emissions Test Setup Above GHz Measurements Height Scan -4m 3 m Distance EUT at 5cm Horn Measurement Antenna Turn-Table Chamber Ground plane EMI Receiver

14 Date of Report : Page 4 of Sample Calculations for Field Strength Measurements Field Strength is calculated from the Spectrum Analyzer/ Receiver readings, taking into account the following parameters:. Measured reading in dbµv 2. Cable Loss between the receiving antenna and SA in db and 3. Antenna Factor in db/m All radiated measurement plots in this report are taken from a test SW that calculates the Field Strength based on the following equation: Example: FS (dbµv/m) = Measured Value on SA (dbµv)- Cable Loss (db)+ Antenna Factor (db/m) Frequency (MHz) Measured SA (dbµv) Cable Loss (db) Antenna Factor Correction (db) Field Strength Result (dbµv/m) Power Line Conducted Measurement Procedure AC Power Line conducted emissions measurements performed according to: ANSI C63.4 (24)

15 Date of Report : Page 5 of RF Conducted Measurement Procedure 9.4. Conducted Measurement Setup without companion device Spectrum Analyzer or EN Power Sensor RF cable 5OHm EUT USB or Ethernet cable Laptop/PC with control SW to directly stimulate the transmitter/receiver of the EUT

16 Date of Report : Page 6 of 88 Technical Specifications Requirements. Maximum Peak Conducted Output Power.. Limits: Maximum Peak Output Power: FCC (b)(): W..2 Test Conditions Tnom: 2 o C; Vnom: Car Battery..3 Test Procedure Refer to C section.9 Hopping OFF Spectrum Analyzer settings: Span = 3 RBW RBW The DTS bandwidth of the emission being measured VBW 3 RBW Sweep = auto Detector function = peak Trace = max hold Use the marker-peak function to set the marker to the peak of the emission. Specified Antenna Gain (dbi): GHz: + dbi

17 Date of Report : Page 7 of Test Data: Maximum Peak Conducted Output Power (dbm) Modulation Frequency (MHz) GFSK π/4 DQPSK DPSK Limit: 3 dbm..5 Measurement Result Pass.

18 Date of Report : Page 8 of Measurement Plots: Ch. / 242 MHz Maximum Peak Conducted Power Modulation/Packet Type: GFSK / Max. DC * RBW 2 MHz Marker [T ] * VBW 5 MHz.8 dbm Ref 5 dbm *Att db SWT ms GHz Offset db A PK MAXH LVL DB Center 2.42 GHz 5 khz/ Span 5 MHz Date: 2.MAY.26 4:43:53

19 Date of Report : Page 9 of 88 Ch.39 / 244 MHz Ref 5 dbm Offset db Modulation/Packet Type: GFSK / % DC * RBW 2 MHz Marker [T ] * VBW 5 MHz.45 dbm *Att db SWT ms GHz A PK MAXH - LVL DB Center 2.44 GHz 5 khz/ Span 5 MHz Date: 2.MAY.26 4:5:37

20 Date of Report : Page 2 of 88 Ch.78 / 248 MHz Ref 5 dbm Modulation/Packet Type: GFSK / Max. DC * RBW 2 MHz Marker [T ] * VBW 5 MHz.3 dbm *Att db SWT ms GHz Offset db A PK MAXH - LVL DB Center 2.48 GHz 5 khz/ Span 5 MHz Date: 2.MAY.26 4:54:36

21 Date of Report : Page 2 of 88 Ch. / 242 MHz Maximum Peak Conducted Power Modulation/Packet Type: π/4 DQPSK / Max. DC * RBW 2 MHz Marker [T ] * VBW 5 MHz 9.58 dbm Ref 5 dbm *Att db SWT ms GHz Offset db A PK MAXH LVL DB Center 2.42 GHz 5 khz/ Span 5 MHz Date: 2.MAY.26 4:46:5

22 Date of Report : Page 22 of 88 Ch.39 / 244 MHz Ref 5 dbm Modulation/Packet Type: π/4 DQPSK / Max. DC * RBW 2 MHz Marker [T ] * VBW 5 MHz 9.96 dbm *Att db SWT ms GHz Offset db A PK MAXH - LVL DB Center 2.44 GHz 5 khz/ Span 5 MHz Date: 2.MAY.26 4:52:6

23 Date of Report : Page 23 of 88 Ch.78 / 248 MHz Ref 5 dbm Modulation/Packet Type: π/4 DQPSK / Max. DC * RBW 2 MHz Marker [T ] * VBW 5 MHz 9.76 dbm *Att db SWT ms GHz Offset db A PK MAXH - LVL DB Center 2.48 GHz 5 khz/ Span 5 MHz Date: 2.MAY.26 4:56:57

24 Date of Report : Page 24 of 88 Ch. / 242 MHz Maximum Peak Conducted Power Modulation/Packet Type: 8-DPSK / Max. DC * RBW 2 MHz Marker [T ] * VBW 5 MHz 9.93 dbm Ref 5 dbm *Att db SWT ms GHz Offset db A PK MAXH LVL DB Center 2.42 GHz 5 khz/ Span 5 MHz Date: 2.MAY.26 4:47:36

25 Date of Report : Page 25 of 88 Ch.39 / 244 MHz Ref 5 dbm Modulation/Packet Type: 8-DPSK / Max. DC * RBW 2 MHz Marker [T ] * VBW 5 MHz.29 dbm *Att db SWT ms GHz Offset db A PK MAXH - LVL DB Center 2.44 GHz 5 khz/ Span 5 MHz Date: 2.MAY.26 4:49:9

26 Date of Report : Page 26 of 88 Ch.78 / 248 MHz Ref 5 dbm Modulation/Packet Type: 8-DPSK / Max. DC * RBW 2 MHz Marker [T ] * VBW 5 MHz.2 dbm *Att db SWT ms GHz Offset db A PK MAXH - LVL DB Center 2.48 GHz 5 khz/ Span 5 MHz Date: 2.MAY.26 4:58:

27 Date of Report : Page 27 of 88.2 Band Edge Compliance & Restricted and Non-restricted Band Edge.2. Limits: 5.247/ (a) Except as shown in paragraph (d) of this section, only spurious emissions are permitted in any of the frequency bands listed below:

28 Date of Report : Page 28 of 88 FCC5.247 (d) In any khz bandwidth outside the frequency band in which the spread spectrum or digitally modulated intentional radiator is operating, the radio frequency power that is produced by the intentional radiator shall be at least 2 db below that in the khz bandwidth within the band that contains the highest level of the desired power, based on either an RF conducted or a radiated measurement, provided the transmitter demonstrates compliance with the peak conducted power limits. If the transmitter complies with the conducted power limits based on the use of RMS averaging over a time interval, as permitted under paragraph (b)(3) of this section, the attenuation required under this paragraph shall be 3 db instead of 2 db. Attenuation below the general limits specified in 5.29(a) is not required. In addition, radiated emissions which fall in the restricted bands, as defined in 5.25(a), must also comply with the radiated emission limits specified in 5.29(a) (see 5.25(c))..2.2 Test Conditions Tnom: 22.4 o C; Vnom: Car Battery.2.3 Test Procedure Refer to C Section Spectrum Analyzer settings for band edge: Span: wide enough to capture the peak level of the emission operating on the channel closest to the bandedge, as well as any modulation products which fall outside of the authorized band of operation. RBW % of the span VBW RBW Sweep Time: Auto Detector = peak Trace = max. hold Allow the trace to stabilize. Set the marker on the emission at the bandedge, or on the highest modulation product outside of the band, if this level is greater than that at the bandedge. Spectrum Analyzer settings for restricted band: Peak measurements are made using a peak detector and RBW= MHz, VBW RBW At 3 meter distance radiated limits are: *PEAK LIMIT= 74dBµV/m *AVG. LIMIT= 54dBµV/m For conducted measurements at the antenna port: *PEAK LIMIT= -2.2 dbm EIRP *AVG. LIMIT= -4.2 dbm EIRP Start frequency & stop frequency according to frequency range specified in the restricted band table in FCC section 5.25

29 Date of Report : Page 29 of Measurement Result Pass..2.5 Measurement Plots:.2.5. Non Restricted Band edge Lower Band Edge Ch. Low / 242MHz Hopping Disabled Peak Ref 5.8 dbm *Att db * RBW khz * VBW 3 khz SWT 35 ms Delta 2 [T ] db -2.8 MHz GFSK (DH5) 98% DC Offset db Marker [T ] 9.9 dbm GHz A PK MAXH - LVL DB Center 2.4 GHz MHz/ Span MHz Date: 2.MAY.26 6:5:28

30 Date of Report : Page 3 of 88 Lower Band Edge Ch. Low Hopping Enabled Peak GFSK (DH) Ref 5 dbm * RBW khz * VBW 3 khz * Att db SWT 2 ms Delta 2 [T ] db MHz Offset db Marker [T ] 9.43 dbm GHz A PK MAXH - LVL DB Center 2.4 GHz MHz/ Span MHz Date: 3.MAY.26 9::6

31 Date of Report : Page 3 of 88 Lower Band Edge Ch. Low / 242MHz Hopping Disabled Peak Ref 5.8 dbm *Att db * RBW khz * VBW 3 khz SWT 35 ms Delta 2 [T ] db MHz 8DPSK (3-DH5) 97% DC Offset db Marker [T ] 5.63 dbm GHz A PK MAXH - LVL DB Center 2.4 GHz MHz/ Span MHz Date: 2.MAY.26 6:9:

32 Date of Report : Page 32 of 88 Lower Band Edge Ch. Low / 242MHz Hopping Enabled Peak 8DPSK (3-DH5) * RBW khz Delta 2 [T ] * VBW 3 khz -6.3 db Ref 5 dbm * Att 2 db SWT 5 ms MHz Offset db Marker [T ] 9.35 dbm GHz A PK MAXH - LVL DB Center 2.4 GHz MHz/ Span MHz Date: 3.MAY.26 9::53

33 Date of Report : Page 33 of Restricted Band Upper Restricted Band (Hopping Mode Disabled) Ch. High / 248MHz Band: MHz Peak GFSK (DH5) * RBW MHz Marker [T ] *VBW 3 MHz dbm Ref 2 dbm * Att 5 db SWT 2 ms GHz 2 Offset db A PK MAXH LVL - -2 D -2.2 dbm -3-4 SWP of 6DB Start GHz.65 MHz/ Stop 2.5 GHz Date: 7.MAY.26 6:47:3 Note: Antenna gain is not in the offset.

34 Date of Report : Page 34 of 88 Upper Restricted Band (Hopping Mode Enabled) Ch. High / 248MHz Band: MHz Peak Ref 2 dbm * Att 5 db * RBW MHz * VBW 3 MHz SWT 2 ms Marker [T ] -48. dbm GHz GFSK (DH5) Max. DC 2 Offset db A PK MAXH LVL - -2 D -2.2 dbm -3-4 SWP of 6DB Start GHz.65 MHz/ Stop 2.5 GHz Date: 7.MAY.26 6:23:49 Note: Antenna gain is not in the offset..

35 Date of Report : Page 35 of 88 Upper Restricted Band (Hopping Mode Disabled) Ch. High / 248MHz Band: MHz Peak 8DPSK (3-DH5) * RBW MHz Marker [T ] *VBW 3 MHz dbm Ref 2 dbm * Att 5 db SWT 2 ms GHz 2 Offset db A PK MAXH LVL - -2 D -2.2 dbm -3-4 SWP of 6DB Start GHz.65 MHz/ Stop 2.5 GHz Date: 7.MAY.26 6:49:3 Note: Antenna gain is not in the offset.

36 Date of Report : Page 36 of 88 Upper Restricted Band (Hopping Mode Enabled) Ch. High / 248MHz Band: MHz Peak 8DPSK (3-DH5) * RBW MHz Marker [T ] * VBW 3 MHz dbm Ref 2 dbm * Att 5 db SWT 2 ms GHz 2 Offset db PK MAXH A SGL LVL - -2 D -2.2 dbm -3-4 SWP of 6DB Start GHz.65 MHz/ Stop 2.5 GHz Date: 7.MAY.26 6:3:58 Note: Antenna gain is not in the offset.

37 Date of Report : Page 37 of 88 Upper Restricted Band (Hopping Mode Disabled) Ch. High / 248MHz Band: MHz Avg. GFSK (DH5) * RBW MHz Marker [T ] * VBW 3 MHz dbm Ref 2 dbm * Att 5 db SWT 2 ms GHz 2 Offset db A RM* AVG LVL SWP of D -4.2 dbm 6DB Start GHz.65 MHz/ Stop 2.5 GHz Date: 7.MAY.26 6:: Note: Antenna gain is not in the offset.

38 Date of Report : Page 38 of 88 Upper Restricted Band (Hopping Mode Enabled) Ch. High / 248MHz Band: MHz Avg. Ref 2 dbm * Att 5 db * RBW MHz * VBW 3 MHz SWT 2 ms Marker [T ] dbm GHz GFSK (DH5) Max. DC 2 Offset db A RM* AVG LVL SWP of D -4.2 dbm 6DB Start GHz.65 MHz/ Stop 2.5 GHz Date: 7.MAY.26 6:9:9 Note: Antenna gain is not in the offset.

39 Date of Report : Page 39 of 88 Upper Restricted Band (Hopping Mode Disabled) Ch. High / 248MHz Band: MHz Avg. 8DPSK (3-DH5) * RBW MHz Marker [T ] * VBW 3 MHz dbm Ref 2 dbm * Att 5 db SWT 2 ms GHz 2 Offset db A RM* AVG LVL SWP of D -4.2 dbm 6DB Start GHz.65 MHz/ Stop 2.5 GHz Date: 7.MAY.26 6:2:58 Note: Antenna gain is not in the offset.

40 Date of Report : Page 4 of 88 Upper Restricted Band (Hopping Mode Enabled) Ch. High / 248MHz Band: MHz Avg. 8DPSK (3-DH5) * RBW MHz Marker [T ] * VBW 3 MHz dbm Ref 2 dbm * Att 5 db SWT 2 ms GHz 2 Offset db A RM* AVG LVL SWP of D -4.2 dbm 6DB Start GHz.65 MHz/ Stop 2.5 GHz Date: 7.MAY.26 6:9:9 Note: Antenna gain is not in the offset.

41 Date of Report : Page 4 of dB Bandwidth / 99% Bandwidth.3. Limits: For Reference only..3.2 Test Conditions: Tnom: 2.5 o C; Vnom: Car Battery. Hopping OFF Testing was done on all 3 modulations with Max. duty cycle..3.3 Test Procedure Measurement according to DA -75:2 Spectrum Analyzer settings: Span: approximately 2 to 3 times the 2 db bandwidth, centered on the hopping channel RBW % of the 2 db bandwidth Sweep Time: Auto Detector = peak Trace = max. hold

42 Date of Report : Page 42 of Test Data: 2dB Bandwidth / 99% Bandwidth Modulation Frequency (MHz) GFSK π/4 DQPSK DPSK Measurement Result Not Applicable (for reference only)

43 Date of Report : Page 43 of Test Data/plots: Ch. / 242 MHz 2dB Bandwidth Modulation: GFSK / Max. DC Ref 5 dbm * Att db * RBW 2 khz *VBW khz SWT 3 ms Delta [T ] -2.3 db khz Offset db Marker [T ] 6.3 dbm GHz A Delta 2 [T ] PK MAXH db khz LVL DB Center 2.42 GHz 3 khz/ Span 3 MHz Date: 6.MAY.26 7::22

44 Date of Report : Page 44 of 88 Ch.39 / 244 MHz Modulation: GFSK / Max. DC * RBW 2 khz Marker [T ] * VBW khz 6.5 dbm Ref 5 dbm * Att db SWT 3 ms GHz Offset db Delta 2 [T ] -2.7 db khz A PK MAXH Delta [T ] db khz LVL DB Center 2.44 GHz 3 khz/ Span 3 MHz Date: 6.MAY.26 7:23:29

45 Date of Report : Page 45 of 88 Ch.78 / 248 MHz Modulation: GFSK / Max. DC * RBW 2 khz Delta [T ] * VBW khz db Ref 5 dbm * Att db SWT 3 ms khz Offset db Marker [T ] 6.9 dbm GHz A PK MAXH - 2 Delta 2 [T ] db khz LVL DB Center 2.48 GHz 3 khz/ Span 3 MHz Date: 6.MAY.26 7:26:2

46 Date of Report : Page 46 of 88 Ch. / 242 MHz Modulation: π/4 DQPSK / Max. DC * RBW 2 khz Marker [T ] *VBW khz -.73 dbm Ref 5 dbm * Att db SWT 3 ms 2.48 GHz Offset db Delta 2 [T ] db PK MAXH khz Delta [T ] db khz A LVL DB Center 2.42 GHz 3 khz/ Span 3 MHz Date: 6.MAY.26 7:5:

47 Date of Report : Page 47 of 88 Ch.39 / 244 MHz Modulation: π/4 DQPSK / Max. DC * RBW 2 khz Marker [T ] * VBW khz -.68 dbm Ref 5 dbm * Att db SWT 3 ms GHz Offset db Delta 2 [T ] -2.7 db PK MAXH khz Delta [T ] -2.4 db khz A LVL DB Center 2.44 GHz 3 khz/ Span 3 MHz Date: 6.MAY.26 7:2:6

48 Date of Report : Page 48 of 88 Ch.78 / 248 MHz Modulation: π/4 DQPSK / Max. DC * RBW 2 khz Delta 2 [T ] * VBW khz -2.6 db Ref 5 dbm * Att db SWT 3 ms khz Offset db Marker [T ] -.74 dbm PK MAXH GHz Delta [T ] db khz A LVL DB Center 2.48 GHz 3 khz/ Span 3 MHz Date: 6.MAY.26 7:28:47

49 Date of Report : Page 49 of 88 Ch. / 242 MHz Modulation: 8-DPSK / Max. DC * RBW 2 khz Delta [T ] *VBW khz -2. db Ref 5 dbm * Att db SWT 3 ms khz Offset db Marker [T ] -.57 dbm PK MAXH GHz Delta 2 [T ] db khz A LVL DB Center 2.42 GHz 3 khz/ Span 3 MHz Date: 6.MAY.26 7:3:2

50 Date of Report : Page 5 of 88 Ch.39 / 244 MHz Modulation: 8-DPSK / Max. DC * RBW 2 khz Delta [T ] * VBW khz -2.4 db Ref 5 dbm * Att db SWT 3 ms 747. khz Offset db Marker [T ] -. dbm PK MAXH GHz Delta 2 [T ] db khz A LVL DB Center 2.44 GHz 3 khz/ Span 3 MHz Date: 6.MAY.26 7:6:5

51 Date of Report : Page 5 of 88 Ch.78 / 248 MHz Modulation: 8-DPSK / Max. DC * RBW 2 khz Delta 2 [T ] * VBW khz db Ref 5 dbm * Att db SWT 3 ms khz Offset db Marker [T ] -.3 dbm PK MAXH GHz Delta [T ] db khz A LVL DB Center 2.48 GHz 3 khz/ Span 3 MHz Date: 6.MAY.26 7:3:27

52 Date of Report : Page 52 of 88.4 Carrier Frequency Separation.4. Limits: (a) () Frequency hopping systems shall have hopping channel carrier frequencies separated by a minimum of 25 khz or the 2 db bandwidth of the hopping channel, whichever is greater. Alternatively, frequency hopping systems operating in the MHz band may have hopping channel carrier frequencies that are separated by 25 khz or two-thirds of the 2 db bandwidth of the hopping channel, whichever is greater, provided the systems operate with an output power no greater than 25 mw. Considering the maximum 2 db bandwidth measured of each modulation, the minimum carrier frequency separation is: GFSK =.626 MHz For 8PSK: =.923 MHz.4.2 Test Conditions: Tnom: 2.3 o C; Vnom: Car Battery.4.3 Test Procedure: Measurement according to ANSI C63.-23Section The EUT shall have its hopping function enabled. a) Span: Wide enough to capture the peaks of two adjacent channels. b) RBW: adjust as necessary to best identify the center of each individual channel. c) Video (or average) bandwidth (VBW) RBW. d) Sweep: Auto. e) Detector function: Peak. f) Trace: Max hold. g) Allow the trace to stabilize. Use the marker-delta function to determine the separation between the peaks of the adjacent channels..4.4 Measurement result: Channel Separation: Pass GFSK:.7 MHz 8-DPSK:.6 MHz

53 Date of Report : Page 53 of Measurement plots: Channel Separation Packet Type: DH5 Modulation: GFSK Hopping On Channel 39 & Channel 4 Ref 5 dbm * Att db * RBW 2 khz *VBW 2 khz SWT 4 ms Delta [T ] -.74 db MHz Offset db Marker [T ] 5.75 dbm GHz A PK MAXH - LVL DB Center 2.44 GHz 4 khz/ Span 4 MHz Date: 6.MAY.26 8::39

54 Date of Report : Page 54 of 88 Channel Separation Packet Type: DH5 Modulation: 8-DPSK Hopping On Channel 39 & Channel 4 Ref 5 dbm * Att db * RBW 2 khz *VBW 2 khz SWT 4 ms Delta [T ].26 db.6 MHz Offset db Marker [T ] 2.45 dbm GHz A PK MAXH - LVL DB Center 2.44 GHz 4 khz/ Span 4 MHz Date: 6.MAY.26 8:8:44

55 Date of Report : Page 55 of 88.5 Number of hopping channels.5. Limits: (a) () (ii) (iii) At least 5 non-overlapping channels.5.2 Test Conditions: Tnom: 22 o C; Vnom: Car Battery..5.3 Test Procedure: Measurement according to ANSI C Section Hopping function: enabled Spectrum Analyzer settings: Span = the entire frequency band of operation Set RBW to capture the peaks. VBW RBW Sweep = auto Detector function = peak Trace = max hold The EUT must have its hopping function enabled during the test..5.4 Measurement Result: Number of hopping channels: 79 Pass

56 Date of Report : Page 56 of Measurement Plots: No. of Hopping frequencies Packet Type: DH5 Modulation: GFSK Hopping On Total Hopping channels = 79 * RBW 5 khz Delta [T ] *VBW 3 MHz -.8 db Ref 25 dbm * Att db SWT 2 ms MHz Offset db Marker [T ] 2.2 dbm GHz A PK MAXH LVL DB Center GHz 8.35 MHz/ Span 83.5 MHz Date: 6.MAY.26 8:28:3

57 Date of Report : Page 57 of 88 Packet Type: DH5 No. of Hopping frequencies Modulation: 8-DPSK Hopping On Total Hopping channels = 79 * RBW 5 khz Delta [T ] *VBW 3 MHz -.26 db Ref 2 dbm * Att db SWT 2 ms MHz 2 Offset db Marker [T ] 6.49 dbm GHz A PK MAXH LVL DB Center GHz 8.35 MHz/ Span 83.5 MHz Date: 6.MAY.26 8:7:3

58 Date of Report : Page 58 of 88.6 Time of occupancy / Dwell time.6. Limits: (a) () (iii) The average time of occupancy on any channel shall not be greater than.4 seconds within a period of.4 seconds multiplied by the number of hopping channels employed. Frequency hopping systems may avoid or suppress transmissions on a particular hopping frequency provided that a minimum of 5 channels are used. Observation Period =.4s x No. of hopping channels =.4 x 79 = 3.6 s.6.2 Test Conditions Tnom: 23 o C; Vnom: Car Battery.6.3 Test Procedure: Duration of Pulse Measurement Spectrum Analyser Settings: RBW= MHz VBW= 3MHz Sweep Time= ms Sweep Mode= Single Detector=Peak Trigger= Video Observation Period Spectrum Analyser Settings: RBW= MHz VBW= 3MHz Sweep Time= 3.6 s Sweep Mode= Single Detector=Peak Trigger= Free Run A 3.6 second sweep was performed for each test case. The trace data was saved and the number of Tx pulses were computed by applying a threshold. The time of occupancy was calculated by multiplying the number of Tx pulses by the duration of the pulse.

59 Date of Report : Page 59 of Measurement Result: Channel Timing Modulation Pulse Duration (ms) # hops 3.6s total dwell time in 3.6s (ms) Limit Result 38 DH GFSK < 4 in 3.6s Pass 38 DH3 GFSK < 4 in 3.6s Pass 38 DH5 GFSK < 4 in 3.6s Pass 38 2-DH3 π/4 DQPSK < 4 in 3.6s Pass 38 3-DH5 8-DPSK < 4 in 3.6s Pass

60 Date of Report : Page 6 of Test Data/Plots:.6.5. GFSK DH Duration of Pulse RBW MHz Delta [T ] *VBW 3 MHz -.65 db Ref 3 dbm *Att 5 db SWT ms µs 3 Offset db Marker [T ].52 dbm ms A SGL PK* CLRWR TRG.4 dbm TRG LVL DB Center 2.44 GHz ms/ Date: 6.MAY.26 9:52:7

61 Date of Report : Page 6 of 88 Transmission on Time in Observation Period (3.6s) Modulation: GFSK Packet Type: DH Number of Tx Bursts = 32 RBW MHz Delta [T ] *VBW 3 MHz. db Ref 3 dbm *Att 5 db SWT 3.6 s µs 3 Offset db Marker [T ] dbm ms A SGL PK* CLRWR LVL DB Center 2.44 GHz 3.6 s/ Date: 6.MAY.26 2:8:

62 Date of Report : Page 62 of GFSK DH3 Duration of Pulse RBW MHz Marker [T ] *VBW 3 MHz.32 dbm Ref 3 dbm *Att 5 db SWT ms ms 3 Offset db Delta [T ] -.3 db ms A SGL PK* CLRWR TRG LVL DB Center 2.44 GHz ms/ Date: 6.MAY.26 2:2:56

63 Date of Report : Page 63 of 88 Transmission on Time in Observation Period (3.6s) Modulation: GFSK Packet Type: DH3 Number of Tx Bursts =55 RBW MHz Delta [T ] *VBW 3 MHz. db Ref 3 dbm *Att 5 db SWT 3.6 s µs 3 Offset db Marker [T ] dbm ms A SGL PK* CLRWR LVL DB Center 2.44 GHz 3.6 s/ Date: 6.MAY.26 2:5:4

64 Date of Report : Page 64 of GFSK DH5 Duration of Pulse RBW MHz Delta [T ] * VBW 3 MHz -.42 db Ref 3 dbm * Att 5 db SWT ms ms 3 Offset db Marker [T ].5 dbm ms A SGL PK* CLRWR TRG 9.4 dbm TRG LVL DB Center 2.44 GHz ms/ Date: 7.MAY.26 9:5:26

65 Date of Report : Page 65 of 88 Transmission on Time in Observation Period (3.6s) Modulation: GFSK Packet Type: DH5 Number of Tx Bursts =95 RBW 5 khz Delta [T ] *VBW 2 MHz. db Ref 3 dbm * Att 5 db SWT 3.6 s. s 3 Offset db Marker [T ] dbm 2. ms A SGL PK* CLRWR LVL DB Center 2.44 GHz 3.6 s/ Date: 7.MAY.26 9:2:22

66 Date of Report : Page 66 of π/4 DQPSK 2-DH3 Duration of Pulse RBW MHz Marker [T ] *VBW 3 MHz 6.24 dbm Ref 3 dbm * Att 5 db SWT 2 ms ms 3 Offset db Delta [T ] -.8 db ms A SGL PK* CLRWR TRG LVL DB Center 2.44 GHz 2 ms/ Date: 7.MAY.26 :34:27

67 Date of Report : Page 67 of 88 Transmission on Time in Observation Period (3.6s) Modulation: 8-DPSK Packet Type: DH5 Number of Tx Bursts =3 RBW MHz Delta [T ] *VBW 3 MHz. db Ref 3 dbm * Att 5 db SWT 3.6 s. s 3 Offset db Marker [T ] dbm 2. ms A SGL PK* CLRWR LVL DB Center 2.44 GHz 3.6 s/ Date: 7.MAY.26 9:47:43

68 Date of Report : Page 68 of DPSK 3-DH5 Duration of Pulse RBW MHz Delta [T ] *VBW 3 MHz -.4 db Ref 3 dbm * Att 5 db SWT 2 ms ms 3 Offset db Marker [T ] 5.92 dbm ms A SGL PK* CLRWR TRG LVL DB Center 2.44 GHz 2 ms/ Date: 7.MAY.26 :38:35

69 Date of Report : Page 69 of 88 Transmission on Time in Observation Period (3.6s) Modulation: π/4 DQPSK Packet Type: DH5 Number of Tx Bursts =5 RBW MHz Delta [T ] *VBW 3 MHz.2 db Ref 3 dbm * Att 5 db SWT 3.6 s ms 3 Offset db Marker [T ] -45. dbm ms A SGL PK* CLRWR TRG LVL DB Center 2.44 GHz 3.6 s/ Date: 7.MAY.26 :39:58

70 Date of Report : Page 7 of 88.7 Transmitter Spurious Emissions & Restricted Bands- Radiated.7. Limits: 5.247/5.25/5.29 & RSS-Gen 8.9/ 8. (restricted bands) (a) Except as shown in paragraph (d) of this section, only spurious emissions are permitted in any of the frequency bands listed below: Radiated emissions which fall in the restricted bands, as defined in 5.25(a), must also comply with the radiated emission limits specified in 5.29(a) (see 5.25(c)). *PEAK LIMIT= 74dBµV/m *AVG. LIMIT= 54dBµV/m Table : Frequency of emission (MHz) Field 3m (µv/m) dBµV/m dbµv/m dbµv/m Above dbµv/m Field 3m (dbµv/m)

71 Date of Report : Page 7 of 88 Table 2: Frequency of emission (MHz) Field strength (µv/m) / (dbuv/m) Measurement Distance (m) /F(kHz) / /F(kHz) / / (29.5) 3 Radiated spurious emissions shall be measured for the transmit frequencies, transmit power, and data rate for the lowest, middle and highest channel in each frequency band of operation and for the highest gain antenna for each antenna type, and using the appropriate parameters and test requirements described in 5.4. The highest (or worst-case) data rate shall be recorded for each measurement. When testing at other than specified distance in the standard, the approach calculation by using 4 db/decade extrapolation factor equation (4) as follow: Conversion factor (CF) = 4 log (D/d) = 4 log (3m / 3m) = 8dB.7.2 Test Conditions Tnom: 23 o C; Vnom: Car Battery

72 Date of Report : Page 72 of Test Procedure Measurement according to: ANSI C63. (23) Analyzer Settings: From 9 KHz 3 MHz RBW = 9 KHz Detector: Peak From 3 MHz GHz Detector = Peak / Quasi-Peak RBW=2 KHz (<GHz) Above GHz Detector = Peak / Average RBW= MHz Test mode: Modulation: GFSK and 8-DPSK- the highest conducted output power. Unless mentioned otherwise, the emissions outside the limit lines in the plots are from the transmit signal. Plots reported here represent the worst case emissions for horizontal and vertical antenna polarizations and for three orientations of the EUT..7.4 Measurement Result: Pass.

73 Date of Report : Page 73 of Measurement plots: Note: Worst case representation for all modes of operation in this frequency range. Limits adjusted for 3m measurement GFSK Radiated Emissions: 9 KHz - 3 MHz Modulation: GFSK Channel: 39 Max. Duty Cycle khz.637 dbµv/ m 35.8 khz.22 dbµv/ m 9 8 Level in dbµv/m khz dbµv/ m FCC 5 9kHz converted to 3m k k M 2M 3M 5M M 2 3M Frequency in Hz FCC 5 9kHz converted to 3m Preview Result -PK+

74 Date of Report : Page 74 of 88 Radiated Emissions: 3 MHz GHz Modulation: GFSK Channel: Max. Duty Cycle FCC 5C PK FCC 5C AVG Level in dbµv/m M M G Frequency Radiated Emissions: 3 MHz GHz Modulation: GFSK Channel: 39 Max. Duty Cycle 8 Level in dbµv/m M M G Frequency in Hz Preview Result 2-PK+ Preview Result -RMS FCC 5C AVG FCC 5C PK RMS-RMS MaxPeak-PK+

75 Date of Report : Page 75 of 88 Radiated Emissions: 3 MHz GHz Modulation: GFSK Channel: 78 Max. Duty Cycle 8 Level in dbµv/m MHz dbµv/m 3M M G Frequency in Hz Preview Result 2-PK+ Preview Result -RMS FCC 5C AVG FCC 5C PK RMS-RMS MaxPeak-PK+ Radiated Emissions: GHz 3GHz Modulation: GFSK Channel: Max. Duty Cycle Level in dbµv/m GHz dbµv/m FCC 5C PK FCC 5C AVG Note: Emission above limit is the Tx Signal Frequency in MHz Preview Result 2-PK+ Preview Result -RMS FCC 5C AVG FCC 5C PK RMS-RMS MaxPeak-PK+

76 Date of Report : Page 76 of 88 Radiated Emissions: GHz 3GHz Modulation: GFSK Channel: 78 Max. Duty Cycle Level in dbµv/m GHz dbµv/m FCC 5C PK FCC 5C AVG Frequency Preview Result 2-PK+ [Preview Result 2.Result:2] FCC 5C AVG [..\ ] Note: Emission above limit is the Tx Signal Preview Result -RMS [Preview Result.Result:] Radiated Emissions: GHz 3GHz Modulation: GFSK Channel: 78 Max. Duty Cycle Level in dbµv/m GHz dbµv/m FCC 5C PK FCC 5C AVG Note: Emission above limit is the Tx Signal Frequency in MHz Preview Result 2-PK+ Preview Result -RMS FCC 5C AVG FCC 5C PK RMS-RMS MaxPeak-PK+

77 Date of Report : Page 77 of 88 Radiated Emissions: 3-8 GHz Modulation: GFSK Channel: Max. Duty Cycle Level in dbµv/m GHz 42.7 dbµv/ m GHz dbµv/ m FCC 5C PK FCC 5C AVG 3G 5G G 8G Frequency in Hz Preview Result 2-PK+ Preview Result -RMS FCC 5C AVG FCC 5C PK R MS-R MS MaxPeak-PK+ Radiated Emissions: 3-8 GHz Modulation: GFSK Channel: 39 Max. Duty Cycle 8 FCC 5C PK 7 6 FCC 5C AVG Level in dbµv/m GHz dbµv/ m GHz dbµv/ m GHz dbµv/ m 2 3G 5G G 8G Frequency in Hz Preview Result 2-PK+ Preview Result -RMS FCC 5C AVG FCC 5C PK R MS-R MS MaxPeak-PK+

78 Date of Report : Page 78 of 88 Radiated Emissions: 6-8 GHz Modulation: GFSK Channel: 78 Max. Duty Cycle 8 FCC 5C PK Level in dbµv/m GHz 3.65 dbµv/m FCC 5C AVG 3G 5G G 8G Frequency in Hz Preview Result 2-PK+ Preview Result -R MS FCC 5C AVG FCC 5C PK RMS-R MS MaxPe a k-pk+

79 Date of Report : Page 79 of 88 Radiated Emissions: 8-26 GHz Modulation: GFSK Channel: 39 Max. Duty Cycle d B u V p e r m d B u V p e r m 5 45 Level in dbµv/m Frequency in GHz 7 4 d B u V p e r m 5 4 d B u V p e r m P re v ie w R e su lt -P K + P re v ie w R e su lt 2 -R M S D a ta R e d u c tio n R e su lt [6 ]-P K + D a ta R e d u c tio n R e su lt 2 [6 ]-R M S

80 Date of Report : Page 8 of DPSK Radiated Emissions: 9 KHz - 3 MHz Modulation: 8-DPSK Channel: 39 Max. Duty Cycle khz.336 dbµv/ m 35.8 khz.245 dbµv/ m 9 8 Level in dbµv/m khz dbµv/ m FCC 5 9kHz converted to 3m k k M 2M 3M 5M M 2 3M Frequency in Hz FCC 5 9kHz converted to 3m Preview Result -PK+

81 Date of Report : Page 8 of 88 Radiated Emissions: 3 MHz GHz Modulation: 8-DPSK Channel: Max. Duty Cycle 8 FCC 5C PK Level in dbµv/m FCC 5C AVG 3M M G Frequency Preview Result 2-PK+ [Preview Result 2.Result:2] Preview Result -RMS [Preview Result.Result:] FCC 5C AVG [..\ ] Radiated Emissions: 3 MHz GHz Modulation: 8-DPSK Channel: 39 Max. Duty Cycle 8 7 FCC 5C PK Level in dbµv/m MHz 7.6 dbµv/m MHz dbµv/m FCC 5C AVG - 3M M G Frequency in Hz

82 Date of Report : Page 82 of 88 Radiated Emissions: 3 MHz GHz Modulation: 8-DPSK Channel: 78 Max. Duty Cycle 9 Level in dbµv/m MHz dbµv/m MHz dbµv/m FCC 5C PK FCC 5C AVG 3M M G Frequency Preview Result 2-PK+ [Preview Result 2.Result:2] FCC 5C AVG [..\ ] Preview Result -RMS [Preview Result.Result:] Radiated Emissions: GHz 3GHz Modulation: 8-DPSK Channel: Max. Duty Cycle 33 Level in dbµv/m GHz dbµv/m 2.42 GHz dbµv/m FCC 5C PK FCC 5C AVG Frequency Note: Emission above limit is the Tx Signal

83 Date of Report : Page 83 of 88 Radiated Emissions: GHz 3GHz Modulation: 8-DPSK Channel: 39 Max. Duty Cycle Level in dbµv/m GHz dbµv/m 2.44 GHz 9.78 dbµv/m FCC 5C PK FCC 5C AVG Frequency Note: Emission above limit is the Tx Signal Radiated Emissions: GHz 3GHz Modulation: 8-DPSK Channel: 78 Max. Duty Cycle Level in dbµv/m GHz dbµv/m 2.48 GHz dbµv/m FCC 5C PK FCC 5C AVG Frequency Note: Emission above limit is the Tx Signal

84 Date of Report : Page 84 of 88 Radiated Emissions: 3 8 GHz Modulation: 8-DPSK Channel: Max. Duty Cycle Level in dbµv/m GHz dbµv/ m 3.2 GHz dbµv/ m FCC 5C PK FCC 5C AVG 3G 5G G 8G Frequency in Hz Preview Result 2-PK+ Preview Result -RMS FCC 5C AVG FCC 5C PK RMS-RMS MaxPeak-PK+ Radiated Emissions: 3 8 GHz Modulation: 8-DPSK Channel: 39 Max. Duty Cycle Level in dbµv/m GHz dbµv/ m GHz dbµv/ m FCC 5C PK FCC 5C AVG 3G 5G G 8G Frequency in Hz Preview Result 2-PK+ Preview Result -RMS FCC 5C AVG FCC 5C PK RMS-RMS MaxPeak-PK+

85 Date of Report : Page 85 of 88 Radiated Emissions: 3 8 GHz Modulation: 8-DPSK Channel: 78 Max. Duty Cycle Level in dbµv/m GHz dbµv/ m GHz dbµv/ m FCC 5C PK FCC 5C AVG 3G 5G G 8G Frequency in Hz Preview Result 2-PK+ Preview Result -RMS FCC 5C AVG FCC 5C PK R MS-R MS MaxPeak-PK+

86 Date of Report : Page 86 of 88 Radiated Emissions: 8-26 GHz Modulation: 8-DPSK Channel: 39 Max. Duty Cycle d B u V p e r m d B u V p e r m 5 45 Level in dbµv/m Frequency in GHz 7 4 d B u V p e r m 5 4 d B u V p e r m P re v ie w R e su lt -P K + P re v ie w R e su lt 2 -R M S D a ta R e d u c tio n R e su lt [6 ]-P K + D a ta R e d u c tio n R e su lt 2 [6 ]-R M S

87 Date of Report : Page 87 of 88 EUT Setup Pictures Please refer to EMC-PEARL-4-6-P2-TestSetupPhotos.pdf 2 Test Equipment and Ancillaries used for tests Item Name Equipment Type Manufacturer Model Serial # Calibration Cycle Turn table Turn table EMCO 275 N/A N/A N/A MAPS Position Controller Controller ETS Lindgren N/A N/A Antenna Mast Antenna Mast EMCO 275 N/A N/A N/A High Pass Filter Filter 5HC27 Trilithic Inc Part of system calibration High Pass Filter Filter 4HC6 Trilithic Inc Part of system calibration 6GHz High Pass Filter Filter HPM56 Microtronics Part of system calibration Pre-Amplifier Amplifier JS4-26 Miteq 66 Part of system calibration Last Calibrati on Date Relay Switch Unit Relay Switch Unit Rohde&Schwarz RSU / N/A N/A Spectrum Analyzer Analyzer Rohde&Schwarz FSU Years Jun 23 Antenna Biconilog 342E Biconlog Antenna EMCO 342E years 6/4/24 Antenna Loop 652 Loop Antenna ETS Lindgren years 3/3/24 Antenna Horn 35 SN 35 Horn Antenna EMCO years 7/24/25 Antenna Horn 36 Horn Antenna ETS Lindgren years 7/22/25 LISN FCC-LISN LISN FCC FCC-LISN Years 3/26/25 Digital Barometer Compact Digital Barometer Control Company Years 4/7/25 Digital Radio Comm. Tester Digital Radio CMU 2 # Comm. Tester R&S CMU 2 # 82 2 Years 7/4/25 ESU 4 Receiver R&S ESU years 6/29/25 Thermometer Humidity Thermometer TM32 Humidity Dickson TM Year 7/29/25

88 Date of Report : Page 88 of 88 3 Revision History Date Report Name Changes to report Prepared by EMC-PEARL P2-DSS-BT First Version James Donnellan EMC-PEARL P2-DSS-BT- Rev Corrected Cal cycle FSU James Donnellan

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