200928-01.TR05

AX203NGW

PD99560D2, CTPClassification=CTP IC:VisualMarkings=, CTPClassification=CTP IC

Desblancs, Claire

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Document DEVICE REPORTAX203NG-Test-Report-Intel-pd9ax203ng-ex-23-8
N° 1-6736
Scope available on www.cofrac.fr

CERTIFICATE #3478.01
TEST REPORT

EUT Description Brand Name Model Name FCC/IC ID Date of Test Start/End Features

WLAN and BT, 2x2 PCIe M.2 2230 adapter card Intel® Wi-Fi 6 AX203 AX203NGW FCCID: PD9AX203NG / IC: 1000M-AX203NG 2020-10-16 / 2020-10-30 802.11ax, Dual Band, 2x2 Wi-Fi 6 + Bluetooth® 5.1 (see section 5)

Applicant Address Contact Person Telephone/Fax/ Email

Intel Mobile Communications
100 Center Point Circle, Suite 200 Columbia, South Carolina 29210 USA Steven Hackett
[email protected]

Reference Standards

FCC CFR Title 47 Part 15 C RSS-247 issue 2, RSS-Gen issue 5 A1 (see section 1)

Test Report identification Revision Control

200928-01.TR05
Rev. 00 This test report revision replaces any previous test report revision (see section 8)

The test results relate only to the samples tested. This report shall not be reproduced, except in full, without the written approval of the laboratory. Reference to accreditation shall be used only by full reproduction of test report.

Issued by
Digitally signed by Z.OUACHICHA Date: 2021.01.18 12:37:47 +01'00'
Zayd OUACHICHA (Test Engineer Lead)

Reviewed by
Digitally signed by In Cheiel Date: 2021.01.18 14:22:07 +01'00'
Cheiel IN (Technical Manager)

Intel Corporation S.A.S ­ WRF Lab 425 rue de Goa ­ Le Cargo B6 - 06600, Antibes, France
Tel. +33493001400 / Fax +33493001401
Reference:WRF-DCS-TF-012 Version: 003 Application Date: 09/29/2020

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Test Report N° 200928-01.TR05
Table of Contents

Rev. 00

1. Standards, reference documents and applicable test methods ......................................................................... 3
2. General conditions, competences and guarantees ............................................................................................. 3
3. Environmental Conditions ...................................................................................................................................... 3
4. Test samples ............................................................................................................................................................ 4
5. EUT Features ............................................................................................................................................................ 5
6. Remarks and comments ......................................................................................................................................... 6
7. Test Verdicts summary ........................................................................................................................................... 6
7.1. BT ....................................................................................................................................................................... 6
8. Document Revision History .................................................................................................................................... 6
Annex A. Test & System Description ....................................................................................................................... 7
A.1 MEASUREMENT SYSTEM........................................................................................................................................ 7 A.2 TEST EQUIPMENT LIST .......................................................................................................................................... 9 A.3 MEASUREMENT UNCERTAINTY EVALUATION ......................................................................................................... 11
Annex B. Test Results ............................................................................................................................................. 12
B.1 20DB BANDWIDTH AND CARRIER FREQUENCY SEPARATION ................................................................................... 12 B.1.1 Test limits .................................................................................................................................................................. 12 B.1.2 Results tables ............................................................................................................................................................ 12 B.1.3 Results screenshot .................................................................................................................................................... 13
B.2 NUMBER OF HOPPING CHANNELS ......................................................................................................................... 16 B.2.1 Test limits .................................................................................................................................................................. 16 B.2.2 Test procedure .......................................................................................................................................................... 16 B.2.3 Results tables ............................................................................................................................................................ 16
B.3 TIME OF OCCUPANCY (DWELL TIME) .................................................................................................................... 20 B.3.1 Test procedure .......................................................................................................................................................... 20 B.3.2 Results tables ............................................................................................................................................................ 20 B.3.3 Results Screenshot ................................................................................................................................................... 21
B.4 MAXIMUM PEAK OUTPUT POWER ANTENNA GAIN .................................................................................................. 27 B.4.1 Test Limits ................................................................................................................................................................. 27 B.4.2 Test procedure .......................................................................................................................................................... 27 B.4.3 Results tables ............................................................................................................................................................ 27 B.4.4 Results Screenshot ................................................................................................................................................... 28
B.5 OUT-OF-BAND EMISSION (CONDUCTED) ................................................................................................................ 30 B.5.1 Test limits .................................................................................................................................................................. 30 B.5.2 Test procedure .......................................................................................................................................................... 30 B.5.3 Test results ................................................................................................................................................................ 31
B.6 RADIATED SPURIOUS EMISSION ............................................................................................................................ 43 B.6.1 Standards references ................................................................................................................................................ 43 B.6.2 Test procedure .......................................................................................................................................................... 43 B.6.3 Test Results............................................................................................................................................................... 44
Annex C. Photographs ............................................................................................................................................ 47
C.1 TEST SETUP ....................................................................................................................................................... 47 C.2 TEST SAMPLE ..................................................................................................................................................... 49

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Test Report N° 200928-01.TR05
1. Standards, reference documents and applicable test methods

Rev. 00

FCC ISED

1. FCC Title 47 CFR part 15 - Subpart C ­ §15.247 Operation within the bands 902-928 MHz, 2400-2483.5 MHz, and 5725-5850 MHz. 2019-10-01 Edition
2. FCC Title 47 CFR part 15 - Subpart C ­ §15.209 Radiated emission limits; general requirements. 2019-10-01 Edition
3. FCC OET KDB 558074 D01 v05r02 - Guidance for compliance measurements on digital transmission system, frequency hopping spread spectrum system, and hybrid system devices operating under section 15.247 of the FCC rules.
4. FCC OET KDB 662911 D01 v02r01 - Emissions Testing of Transmitters with Multiple Outputs in the Same Band. 5. ANSI C63.10-2013 - American National Standard of Procedures for Compliance Testing of Unlicensed Wireless
Devices
1. RSS-247 Issue 2 - Digital Transmission Systems (DTSs), Frequency Hopping Systems (FHSs) and LicenseExempt Local Area Network (LE-LAN) Devices.
2. RSS-Gen Issue 5 A1- General Requirements for Compliance of Radio Apparatus. 3. FCC OET KDB 558074 D01 v05r02 - Guidance for compliance measurements on digital transmission system,
frequency hopping spread spectrum system, and hybrid system devices operating under section 15.247 of the FCC rules. 4. FCC OET KDB 662911 D01 v02r01 - Emissions Testing of Transmitters with Multiple Outputs in the Same Band. 5. ANSI C63.10-2013 - American National Standard of Procedures for Compliance Testing of Unlicensed Wireless Devices

2. General conditions, competences and guarantees
 Tests performed under FCC standards identified in section 1 are covered by A2LA accreditation.  Tests performed under ISED standards identified in section 1 are covered by Cofrac accreditation.  Intel Corporation SAS Wireless RF Lab (Intel WRF Lab) is an ISO/IEC 17025:2017 laboratory accredited by the
American Association for Laboratory Accreditation (A2LA) with the certificate number 3478.01.  Intel Corporation SAS Wireless RF Lab (Intel WRF Lab) is an Accredited Test Firm recognized by the FCC, with
Designation Number FR0011.  Intel Corporation SAS Wireless RF Lab (Intel WRF Lab) is an ISO/IEC 17025:2017 testing laboratory accredited
by the French Committee for Accreditation (Cofrac) with the certificate number 1-6736.  Intel Corporation SAS Wireless RF Lab (Intel WRF Lab) is a Registered Test Site listed by ISED, with ISED
#1000Y.  Intel WRF Lab declines any responsibility with respect to the identified information provided by the customer
and that may affect the validity of results.  Intel WRF Lab only provides testing services and is committed to providing reliable, unbiased test results and
interpretations.  Intel WRF Lab is liable to the client for the maintenance of the confidentiality of all information related to the
item under test and the results of the test.  Intel WRF Lab has developed calibration and proficiency programs for its measurement equipment to ensure
correlated and reliable results to its customers.  This report is only referred to the item that has undergone the test.  This report does not imply an approval of the product by the Certification Bodies or competent Authorities.  Complete or partial reproduction of the report cannot be made without written permission of Intel WRF Lab.

3. Environmental Conditions
 At the site where the measurements were performed the following limits were not exceeded during the tests:

Temperature Humidity

23.1ºC ± 2.6ºC 46.8% ±11.5%

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Test Report N° 200928-01.TR05

4. Test samples

Sample

Control #

200928-01.S01

#01 170000-01.S02

180717-03.S14

200928-01.S03

170801-01.S42

#02 180717-03.S18

200611-03.S11

200611.03-S12

200928-01.S04

170000-01.S16

#03 180717-03.S13

200611-03.S28

200611-03.S29

Description WiFi 6 Module
Laptop Extender WiFi 6 Module
Laptop Extender Main Antenna Aux Antenna WiFi 6 Module
Laptop Extender Main Antenna Aux Antenna

Rev. 00

Model

Serial #

Date of receipt

Note

AX203NGW

WFM: FC448214839F 2020-10-02

Latitude E5450

21HTPF2

2017-03-28

RF Conducted

PCB00651_01 AX203NGW

6510818-132 WFM:FC448214839A

2018-08-21 2020-10-02

Latitude E5450 HrP Extender db
Skycross

GTXV562 6510818-133
-

2018-01-18 2018-08-21 2020-07-15

Used for 30MHz18GHz Radiated Spurous Emissions
Tests

Skycross AX203NGW

WFM:FC4482148421

2020-07-15 2020-10-02

Latitude E5470 HrP Extender db
Skycross

C2HTPF2 6510818-131
-

2017-06-13 2018-08-21 2020-07-01

Used for 18GHz-26.5 GHz Radiated
Spurious Emissions Tests

Skycross

-

2020-07-01

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Test Report N° 200928-01.TR05
5. EUT Features
The herein information is provided by the customer

Brand Name Model Name Software Version Driver Version Prototype / Production
Supported Radios

Intel® Wi-Fi 6 AX203 AX203NGW 99.3500.51.0-01594 99.0.58.2 Production
802.11b/g/n 802.11a/n/ac/ax

Antenna Information

Bluetooth 5.1
Transmitter Manufacturer Antenna type Part number Declared antenna gain (dBi)

2.4GHz (2400.0 ­ 2483.5 MHz)
5.2GHz (5150.0 ­ 5350.0 MHz) 5.6GHz (5470.0 ­ 5725.0 MHz) 5.8GHz (5725.0 ­ 5825.0 MHz)
2.4GHz (2400.0 ­ 2483.5 MHz)

Main (chain A) SkyCross PIFA antenna N/A +3.24

Aux (chain B) Skycross PIFA antenna N/A +3.24

Rev. 00

Document

Filename Intel_Ref_Antenna data_HMC-M2 Ant_Spec_Universe_SkyCross Antenna

Date of receipt 2013-01-28

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Test Report N° 200928-01.TR05

Rev. 00

6. Remarks and comments
1. No deviations were made from the test methods listed in section 1 of this report

7. Test Verdicts summary
The statement of conformity to applicable standards in the table below are based on the measured values, without taking into account the measurement uncertainties.

7.1.

BT

FCC part

RSS part

15.247 (a) (1)

RSS-247 Clause 5.1 (a) and (b)

15.247 (a) (1) (iii)
15.247 (a) (1) (iii)
15.247 (b) (1)
15.247 (d)
15.247 (d) 15.209
P: Pass F: Fail NM: Not Measured NA: Not Applicable

RSS-247 Clause 5.1 (d) RSS-247 Clause 5.1 (d) RSS-247 Clause 5.4 (b) RSS-247 Clause 5.5 RSS-247 Clause 5.5 RSS-GEN A1 Clause 8.9

Test name 20dB Bandwidth and Carrier frequency separation Number of hopping channels Time of Occupancy (Dwell Time) Maximum Peak Output Power and antenna gain Out-of-band Emissions (conducted)
Out-of-band Emissions (radiated)

Verdict
P
P P P P
P

8. Document Revision History

Revision # Rev. 00

Modified by Z.OUACHICHA

Revision Details First Issue

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Test Report N° 200928-01.TR05

Rev. 00

Annex A. Test & System Description

A.1 Measurement System

Measurements were performed using the following setups.

The DUT was installed in a test fixture and this test fixture is connected to a laptop computer and AC/DC power adapter. The laptop computer was used to configure the EUT to continuously transmit at a specified output power using all different modes and modulation schemes.

Conducted test setup

Spectrum Analyzer

AC/DC Power Adapter
Controlling Laptop

EUT

10dB AT T

Radiated test setup Radiated Setup 30 MHz - 1 GHz (Transmitter tests)

Radiated Setup 1 GHz ­ 6.4 GHz (Transmitter tests)

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Test Report N° 200928-01.TR05
Radiated Setup 6.4 GHz - 18 GHz (Transmitter tests)
Radiated Setup 18 GHz ­ 26.5 GHz (Transmitter tests)

Rev. 00

Sample Calculation The spurious received voltage V(dBuV) in the spectrum Analyzer is converted to Electric field strength using the transducer factor F corresponding to the Rx path Loss:
F (dB/m)= Rx Antenna Factor (dB/m) + Cable losses (dB) ­ Amplifiers Gain (dBi) E (dBuV/m) = V(dBuV) + F (dB/m)
For field strength measurements made at other than the distance at which the applicable limit is specified, the field strength of the emission at the distance specified by the limit is deduced as follows:
ESpecLimit = EMeas + 20*log(DMeas/DSpecLimit) where ESpecLimit is the field strength of the emission at the distance specified by the limit, in dBV/m EMeas is the field strength of the emission at the measurement distance, in dBV/m DMeas is the measurement distance, in m DSpecLimit is the distance specified by the limit, in m
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Test Report N° 200928-01.TR05

A.2 Test Equipment List

Conducted setup ID# Device 0316 Spectrum Analyzer

0442 RF cable 50cm

1044 0583 1002

10dB Attenuator + MH4 Temp & Humidity Logger Measurement SW v1.4.10.8

Type/Model FSV30 Coax 2.92mm Male To 2.92mm Male N/A RA12E-TH1-RAS Octopi

Serial # 103309
N/A
N/A RA12-B9D6E N/A

Manufacturer Rohde & Schwarz
PASTERNACK
N/A AVITECH Step AT

Cal. Date 2019-09-02
2020-08-26
N/A 2019-09-06 N/A

Radiated Setup #1 ID# Device

Type/Model

0135 Anechoic Chamber

FACT3

0136 Turn Table

ETS

0147 Switch & Positioning systems EMC Center

0530 Measurement SW

EMC32, v10.40.10

1033 Boresight antenna mast

BAM 4.0-P

0420 Spectrum Analyzer

FSV40

0993 Biconical antenna 30 MHz ­ 1 UBAA9115

+

GHz

BBVU9135

+

DGA9552N

0325 Horn antenna 3117

3117

0141 Horn Antenna 3117 + Amplifier 3117 + HPF6.4

0334 Double-Ridged Waveguide 3116C+PA Horn with Pre-Amplifier 18 GHz to 40 GHz

0202 Cable 1m - 30MHz to 18 GHz

UFB311A-0-336050U300

0206 Cable 1.2m ­ 18 to 40 GHz

UFA147A-0-0480200200

0263 Cable 1m - 1GHz to 18GHz

UFA147A

0369 Cable 2m - 26.5GHz to 40GHz 794-9191-2000A

0371 Cable 1m ­ 30 MHz - 18GHz

UFB311A-0-059050U50U

0758 Cable 7.5m - 30MHz to 18GHz 0501051057000GX

0809 Cable 7m - 18GHz to 40GHz R286304009

0859 Cable 2.5m - 30MHz to 18GHz 0500990992500KE

0797 Temp & Humidity Logger

RA12E-TH1-RAS

N/A: Not Applicable ___________________________________________

Serial # 5720 00159757 100623 P/278/2890.01 101556 0286 + CH 9044

00157734 00157736

00169308bis + 00196308

MFR 64639223229-001

MFR 64639223720-003

-

E00327

MFR

64639

223230-001

18.23.181

-

19.23.395

RA12-D0EB1A

Manufacturer ETS-Lindgren ETS-Lindgren ETS-Lindgren Rohde & Schwarz Maturo Rohde & Schwarz Schwarzbeck
ETS-Lindgren ETS-Lindgren
ETS-Lindgren
Micro-coax
Micro-coax
Utilflex Atem Micro-coax
Radiall Radiall Radiall Avtech

Cal. Date 2020-07-06 N/A N/A 2020-06-24 N/A 2020-05-25 2019-11-22
2019-08-12 2020-04-02
2019-07-24
2020-08-25
2020-08-25
2020-08-25 2020-08-25 2020-08-25
2020-08-25 2020-08-25 2020-08-25 2019-07-04

Rev. 00
Cal. Due Date 2021-09-02 2021-02-26 N/A 2021-09-06 N/A
Cal. Due Date 2022-07-06 N/A N/A 2021-06-24 N/A 2022-05-25 2021-11-22
2021-08-12 2022-04-02
2021-07-24
2021-02-25
2021-02-25
2021-02-25 2021-02-25 2021-02-25
2021-02-25 2021-02-25 2021-02-25 2021-07-04

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Test Report N° 200928-01.TR05

Radiated Setup #2 ID# Device

Type/Model

Serial #

Manufacturer

0337 Anechoic chamber

RFD-FA-100

5996

ETS Lindgren

0238 Switch & Positioner

EMCenter

00151232

ETS Lindgren

0382 Antenna Tower

2171B-3.0M

00150123

ETS Lindgren

0383 Turntable

-

-

ETS Lindgren

0329 Measurement SW

EMC32, v10.50.10 100401

Rohde & Schwarz

0133 Spectrum Analyzer

FSV40

101358

Rohde & Schwarz

0138 Double Ridge Horn (1- 18GHz) 3117

00152266

ETS Lindgren

0141 Horn Antenna 3117 + Amplifier 3117 + HPF6.4

00157736

ETS-Lindgren

0334 Double Horn Ridged antenna 3116C-PA

00169308bis 00196308

+ ETS-Lindgren

0871 RF Cable 1-18GHz, 1.5 m

0501050991200GX 19.21.710

Radiall

0860 RF Cable 1-18GHz, 1.2 m

2301761761200PJ 12.22.1104

Radiall

0275 RF Cable 1-18GHz - 6.5m

140-8500-11-51

001

Spectrum

0684 RF Cable 1GHz-18GHz 1.5m -

-

Spirent

0679 RF Cable 18-40 GHz 6m

R286304009

1747364

Radiall

0028 RF Cable 1.2m 40MHz-40GHz 794-9191-1200A DA585

Atem

0725 RF Cable 1-9.5GHz 1.2m

0500990991200KE -

Radiall

0796 Temp & Humidity Logger

RA12E-TH1-RAS RA12-D4F316

Avtech

Cal. Date 2020-07-06 N/A N/A N/A N/A 2020-02-25 2020-03-08 2020-04-02
2019-07-24
2020-08-20 2020-08-20 2020-08-20 2020-08-20 2020-08-20 2020-08-20 2020-08-20 2019-07-05

Rev. 00
Cal. Due Date 2022-07-06 N/A N/A N/A N/A 2022-02-25 2022-03-08 2022-04-02
2021-07-24
2021-02-20 2021-02-20 2021-02-20 2021-02-20 2021-02-20 2021-02-20 2021-02-20 2021-07-05

N/A: Not Applicable
Shared Radiated Equipment ID# Device 0616 Power Sensor 0617 Power Sensor 0618 Power Sensor

Type/Model NRP-Z81 NRP-Z81 NRP-Z81

Serial # 104385 104386 104382

Manufacturer Rohde & Schwarz Rohde & Schwarz Rohde & Schwarz

Cal. Date 2020-04-08 2020-04-08 2020-04-08

Cal. Due Date 2022-04-08 2022-04-08 2022-04-08

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Test Report N° 200928-01.TR05

Rev. 00

A.3 Measurement Uncertainty Evaluation

The system uncertainty evaluation is shown in the table below with a coverage factor of k = 2 to indicate a 95% level of confidence:

Measurement type

Uncertainty

Unit

Timing

±0.12

%

Power Spectral density

±1.47

dB

Occupied bandwidth

±2.07

%

Conducted Power

±1.03

dB

Conducted Spurious Emission <26.5 GHz

±2.93

dB

Radiated tests <1GHz

±5.26

dB

Radiated tests 1GHz ­ 26.5 GHz

±4.34

dB

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Test Report N° 200928-01.TR05
Annex B. Test Results

Rev. 00

The herein test results were performed by:
Test case measurement 20dB Bandwidth and Carrier frequency separation Number of hopping channels Time of Occupancy (Dwell Time) Maximum Peak Output Power and antenna gain Out-of-band Emissions (conducted) Spurious Radiated Emissions
B.1 20dB Bandwidth and carrier frequency separation
B.1.1 Test limits

Test Engineer Z.Ouachicha Z.Ouachicha Z.Ouachicha Z.Ouachicha Z.Ouachicha A.Lounes, N.Bui

FCC part 15.247 (a) (1)

RSS part
RSS-247 Clause 5.1 (a)
and (b)

Limits
Frequency hopping systems shall have hopping channel carrier frequencies separated by a minimum of 25 kHz or the 20 dB bandwidth of the hopping channel, whichever is greater. Alternatively, frequency hopping systems operating in the 2400-2483.5 MHz band may have hopping channel carrier frequencies that are separated by 25 kHz or two-thirds of the 20 dB bandwidth of the hopping channel, whichever is greater, provided the systems operate with an output power no greater than 125 mW.

B.1.2 Results tables

Mode
Basic Rate GFSK
EDR /4-DQPSK
EDR 8-DPSK
Max Value

Packet Type DH5 2DH5 3DH5

Channel Number
0 39 78 0 39 78 0 39 78

Frequency [MHz] 2402 2441 2480 2402 2441 2480 2402 2441 2480

20dB BW [MHz] 0.941 0.947 0.946 1.396 1.397 1.405 1.413 1.416 1.413

Freq. Separation [kHz] 1000.0
1000.0
1002.5

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Test Report N° 200928-01.TR05 B.1.3 Results screenshot

Basic Rate - GFSK
20dB BW ­ CH39

Rev. 00

Freq. Separation

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EDR ­ /4-DQPSK
20dB BW ­ CH78

Rev. 00

Freq. Separation

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EDR ­ 8-DPSK
20dB BW ­ CH39

Rev. 00

Freq. Separation

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Test Report N° 200928-01.TR05
B.2 Number of hopping channels
B.2.1 Test limits

Rev. 00

FCC part
15.247 (a) (1) (iii)

RSS part
RSS-247 Clause 5.1 (d)

Limits
Frequency hopping systems in the 2400-2483.5 MHz band shall use at least 15 channels.

B.2.2 Test procedure
The conducted setup shown in section Test & System Description was used to measure the number of hopping channels. The antenna terminal of the EUT is connected to the spectrum through an attenuator, and the spectrum analyzer reading is compensated to include the RF path loss.
B.2.3 Results tables

Mode
Basic Rate GFSK EDR
/4-DQPSK EDR
8-DPSK

Packet Type DH5 2DH5 3DH5

Number of hopping channels 79 79 79

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Test Report N° 200928-01.TR05

Number of hopping channels
Basic Rate ­ GFSK

Rev. 00

Basic Rate ­ GFSK

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EDR ­ /4-DPSK

Rev. 00

EDR ­ /4-DPSK

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EDR ­ 8-DPSK

Rev. 00

EDR ­ 8-DPSK

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Test Report N° 200928-01.TR05
B.3 Time of Occupancy (Dwell Time)

Rev. 00

FCC part
15.247 (a) (1) (iii)

RSS part
RSS-247 Clause 5.1 (d)

Limits
The average time of occupancy (Dwell Time) on any channel shall not be greater than 0.4 seconds within a period of 0.4 seconds multiplied by the number of hopping channels employed.

B.3.1 Test procedure
The conducted setup shown in section Test & System Description was used to measure the dwell time. The antenna terminal of the EUT is connected to the spectrum through an attenuator, and the spectrum analyzer reading is compensated to include the RF path loss.
In the worst case, the system makes 1600 hops per second with 79 channels, providing a 1 timeslot length of 625s.
A DH1 packet, with independence of the modulation, needs 1 time slot for transmitting and 1 time slot for receiving. Then, the system makes in the worst case 1600/2 = 800 hops per second with 79 channels. So each channel appears 800/79 = 10.13 times per second and, for a period of 0.4 x 79 = 31.6 seconds, each channel appears 10.13 x 31.6 = 320.11 times.
A DH3 packet, with independence of the modulation, needs 3 time slots for transmitting and 1 time slot for receiving. Then, the system makes in the worst case 1600/4 = 400 hops per second with 79 channels. So each channel appears 400/79 = 5.1 times per second and, for a period of 0.4 x 79 = 31.6 seconds, each channel appears 5.1 x 31.6 = 161.16 times.
A DH5 packet, with independence of the modulation, needs 5 time slots for transmitting and 1 time slot for receiving. Then, the system makes in the worst case 1600/6 = 266.67 hops per second with 79 channels. So each channel appears 166.67/79 = 3.37 times per second and, for a period of 0.4 x 79 = 31.6 seconds, each channel appears 3.37 x 31.6 = 106.49 times.
Thus, the total time of occupancy is obtained by multiplying the calculated maximum number of appearances per packet type and the measured Tx-time, as shown in the results screenshots.

B.3.2 Results tables

Mode
Basic Rate GFSK
EDR /4-DQPSK
EDR 8-DPSK

Packet Type
DH1 DH3 DH5 2-DH1 2-DH3 2-DH5 3-DH1 3-DH3 3-DH5

Times of appearance
320.11 161.16 106.49 320.11 161.16 106.49 320.11 161.16 106.49

Tx-time [ms]
0.380 1.635 2.877 0.384 1.638 2.888 0.389 1.634 2.887

Dwell Time [ms]
121.76 263.48 306.40 122.81 264.01 307.50 124.56 263.34 307.45

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Test Report N° 200928-01.TR05 B.3.3 Results Screenshot

BDR ­ GFSK
DH1 Tx-Time

Rev. 00

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DH3 Tx-Time

Rev. 00

DH5 Tx-Time

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EDR ­ /4-DQPSK
2-DH1 Tx-Time

Rev. 00

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2-DH3 Tx-Time

Rev. 00

2-DH5 Tx-Time

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EDR ­ 8-DPSK
3-DH1 Tx-Time

Rev. 00

3-DH3 Tx-Time

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3-DH5 Tx-Time

Rev. 00

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B.4 Maximum Peak Output Power antenna gain

Rev. 00

B.4.1 Test Limits

FCC part
15.247 (b) (1)

RSS part

Limits
(b) The maximum peak conducted output power of the intentional radiator shall not exceed the following:

RSS-247 Clause 5.4 (b)

(1) For frequency hopping systems operating in the 2400-2483.5 MHz band employing at least 75 non-overlapping hopping channels, and all frequency hopping systems in the 5725-5850 MHz band: 1 watt. (...) (4) The conducted output power limit specified in paragraph (b) of this section is based on the use of antennas with directional gains that do not exceed 6 dBi.

B.4.2 Test procedure
The conducted setup shown in section Test & System Description was used to measure the maximum peak output power. The antenna terminal of the EUT is connected to the spectrum through an attenuator, and the spectrum analyzer reading is compensated to include the RF path loss.
B.4.3 Results tables

Mode
Basic Rate GFSK
EDR /4-DQPSK
EDR 8-DPSK Max Value

Packet Type DH5
2DH5
3DH5

Channel Number
0 39 78 0 39 78 0 39 78

Frequency [MHz]
2402 2441 2480 2402 2441 2480 2402 2441 2480

Peak Power [dBm]
8.30 8.75 8.91 8.73 9.06 9.15 8.78 9.1 9.2

Peak Power [mW]
6.76 7.50 7.78 7.46 8.05 8.22 7.55 8.13 8.32

Peak Power EIRP [dBm]
11.54 11.99 12.15 11.97 12.30 12.39 12.02 12.34 12.44

Peak Power EIRP [mW]
14.26 15.81 16.41 15.74 16.98 17.34 15.92 17.14 17.54

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Test Report N° 200928-01.TR05 B.4.4 Results Screenshot

Basic Rate - GFSK
Peak Power ­ CH78

Rev. 00

EDR ­ /4-DQPSK
Peak Power ­ CH78
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Test Report N° 200928-01.TR05

EDR ­ 8-DPSK
Peak Power ­ CH78

Rev. 00

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Test Report N° 200928-01.TR05

Rev. 00

B.5
B.5.1

Out-of-band emission (conducted)
Test limits

FCC part 15.247 (d)

RSS part
RSS-247 Clause 5.5

Limits
In any 100 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 20 dB below that in the 100 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.

B.5.2 Test procedure
The conducted setup shown in section Test & System Description was used to measure the out-of-band emissions (conducted). The antenna terminal of the EUT is connected to the spectrum through an attenuator, and the spectrum analyzer reading is compensated to include the RF path loss.

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Test Report N° 200928-01.TR05 B.5.3 Test results

Basic Rate - GFSK
BE Low NR Freq Section ­ CH0

Rev. 00

BE Low R Freq Section ­ CH0

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Test Report N° 200928-01.TR05

BE High R Freq Section ­ CH78

Rev. 00

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Test Report N° 200928-01.TR05

BE Low NR Freq Section ­ Hopping

Rev. 00

BE Low R Freq Section ­ Hopping

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Test Report N° 200928-01.TR05

BE High R Freq Section ­ Hopping

Rev. 00

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Test Report N° 200928-01.TR05

EDR ­ /4-DQPSK
BE Low NR Freq Section ­ CH0

Rev. 00

BE Low R Freq Section ­ CH0

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Test Report N° 200928-01.TR05

BE High R Freq Section ­ CH78

Rev. 00

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Test Report N° 200928-01.TR05

BE Low NR Freq Section ­ Hopping

Rev. 00

BE Low R Freq Section ­ Hopping

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Test Report N° 200928-01.TR05

BE High R Freq Section ­ Hopping

Rev. 00

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Test Report N° 200928-01.TR05

EDR ­ 8-DPSK
BE Low NR Freq Section ­ CH0

Rev. 00

BE Low R Freq Section ­ CH0

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Test Report N° 200928-01.TR05

BE High R Freq Section ­ CH78

Rev. 00

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Test Report N° 200928-01.TR05

BE Low NR Freq Section ­ Hopping

Rev. 00

BE Low R Freq Section ­ Hopping

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Test Report N° 200928-01.TR05

BE High R Freq Section ­ Hopping

Rev. 00

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Test Report N° 200928-01.TR05
B.6 Radiated spurious emission
B.6.1 Standards references

Rev. 00

FCC part
15.247 (d) 15.209 (a)

RSS part

Limits
Radiated emissions which fall in the restricted bands, as defined in §15.205(a), must also comply with the radiated emission limits specified in §15.209(a):

RSS-247 Clause 5.5
RSS GEN A1 Clause 8.9

Freq Range (MHz) 30-88 88-216 216-960
Above 960

Field Stregth (V/m) 100 150 200 500

Field Stregth (dBV/m) 40 43.5 46 54

Meas. Distance (m) 3 3 3 3

The emission limits shown in the above table are based on measurements employing CISPR quasi-peak detector except for the frequency bands 9-90 kHz, 110-490 kHz and above 1000 MHz. Radiated emission limits in these three bands are based on measurements employing an average detector. For average radiated emission measurements above 1000 MHz, there is also a limit specified when measuring with peak detector function, corresponding to 20 dB above the indicated values in the table.

B.6.2 Test procedure
The radiated setups shown in section Test & System Description were used to measure the radiated spurious emissions. Depending of the frequency range and bands being tested, different antennas and filters were used. The final measurement is done by varying the antenna height from 1 m to 4 m, the EUT azimuth over 360º and for both Vertical and Horizontal polarizations. The radiated spurious emission was measured on the worst case configuration found.

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Test Report N° 200928-01.TR05

B.6.3 Test Results

Radiated spurious - 30 MHz ­ 1 GHz

Radiated Spurious ­ All modes

Rev. 00

Frequency

Quasi-Peak

Limit

Margin

Polar

MHz

dBµV/m

dBµV/m

dB

---

47.8

33.7

68.2

34.5

V

Note 1: The spurious signals detected do not depend on either the operating channel or the modulation mode.

Frequency MHz
3000.0 14411.0 21999.5
Frequency MHz
3000.0 17493.5 19527.0 19527.0 21999.5
Frequency MHz
3000.0 14860.5 19841.0 19841.0 22000.0

1 GHz ­ 26.5 GHz, BR ­ GFSK
Radiated Spurious ­ CH0 DH5

MaxPeak dBµV/m
56.0 50.6 49.2

Average dBµV/m
-------

Limit dBµV/m
68.2 68.2 68.2

Radiated Spurious ­ CH39 DH5

Margin dB 12.2 17.6 19.0

MaxPeak dBµV/m
56.4 53.0 --48.3 49.7

Average dBµV/m
----38.0 -----

Limit dBµV/m
68.2 68.2 54.0 74.0 68.2

Radiated Spurious ­ CH78 DH5

Margin dB 11.8 15.2 16.0 25.7 18.5

MaxPeak dBµV/m
55.9 51.6 --46.5 49.5

Average dBµV/m
----36.8 -----

Limit dBµV/m
68.2 68.2 54.0 74.0 68.2

Margin dB 12.3 16.6 17.2 27.5 18.7

Polar --V V V
Polar --V H V V V
Polar --H V V V V

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Test Report N° 200928-01.TR05
1 GHz ­ 26.5 GHz, EDR ­ /4-DQPSK
Radiated Spurious ­ CH0 2DH5

Frequency MHz
3000.0 12525.5 12526.0 22000.0

MaxPeak dBµV/m
55.9 50.9 --49.6

Average dBµV/m
----36.5 ---

Limit dBµV/m
68.2 74.0 54.0 68.2

Margin dB 12.3 23.1 17.5 18.6

Radiated Spurious ­ CH39 2DH5

Frequency MHz
3000.0 17518.0 19527.0 19528.5 22000.0

MaxPeak dBµV/m
55.8 52.7 --46.6 49.7

Average dBµV/m
----34.7 -----

Limit dBµV/m
68.2 68.2 54.0 74.0 68.2

Margin dB 12.4 15.5 19.3 27.4 18.5

Radiated Spurious ­ CH78 2DH5

Frequency MHz
3000.0 17496.5 21999.5

MaxPeak dBµV/m
56.9 54.0 50.1

Average dBµV/m
-------

Limit dBµV/m
68.2 68.2 68.2

Margin dB 11.3 14.2 18.1

Rev. 00
Polar --V H H V
Polar --V H V H V
Polar --V H V

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Test Report N° 200928-01.TR05
1 GHz ­ 26.5 GHz, EDR ­ 8-DPSK
Radiated Spurious ­ CH0 3DH5

Frequency MHz
3000.0 17345.0 21999.5

MaxPeak dBµV/m
55.8 53.5 49.5

Average dBµV/m
-------

Limit dBµV/m
68.2 68.2 68.2

Margin dB 12.4 14.7 18.7

Frequency MHz
3000.0 17498.5 19527.0 19527.5 22000.0

Radiated Spurious ­ CH39 3DH5

MaxPeak dBµV/m
55.7 53.5 --46.0 49.7

Average dBµV/m
----34.6 -----

Limit dBµV/m
68.2 68.2 54.0 74.0 68.2

Margin dB 12.5 14.7 19.4 28.0 18.5

Frequency MHz
3000.0 17526.0 22000.0

Radiated Spurious ­ CH78 3DH5

MaxPeak dBµV/m
56.5 52.6 49.5

Average dBµV/m
-------

Limit dBµV/m
68.2 68.2 68.2

Margin dB 11.7 15.6 18.6

Rev. 00
Polar --H H V
Polar --V H V V V
Polar --V V V

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