FCC Report (WIFI) Shenzhen Reo-link Digital Technology Co., Ltd B509, University Town Business Park LiShan Road, NanShan, Shenzhen, Guangdong, China
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1 FCC Report (WIFI) Applicant: Address of Applicant: Manufacturer/y: Address of Manufacturer/y: Equipment Under Test (EUT) Product Name: Shenzhen Reo-link Digital Technology Co., Ltd B509, University Town Business Park LiShan Road, NanShan, Shenzhen, Guangdong, China SHENZHEN BAICHUAN SECURITY TECHNOLOGY CO.,LTD 5th Floor, Building 7, Tangtou 3rd Industrial Area, Shiyan Town, Bao'an District, Shenzhen City, China WiFi IP Camera Model No.: Reolink Argus 2 Trade Mark: FCC ID: 2AL7VARGUS2 Applicable standards: FCC CFR Title 47 Part 15 Subpart C Section :2017 Date of sample receipt: January 16, 2018 Date of Test: January 17-22, 2018 Date of report issued: January 23, 2018 Test Result : PASS * * In the configuration tested, the EUT complied with the standards specified above. Authorized Signature: Robinson Lo Laboratory Manager This results shown in this test report refer only to the sample(s) tested, this test report cannot be reproduced, except in full, without prior written permission of the company. The report would be invalid without specific stamp of test institute and the signatures of compiler and approver.
2 2 Version Version No. Date Description 00 January 23, 2018 Original Prepared By: Date: January 23, 2018 Project Engineer Check By: Date: January 23, 2018 Reviewer Telephone: +86 (0) Fax: +86 (0) Page 2 of 64
3 3 Contents 1 COVER PAGE VERSION CONTENTS TEST SUMMARY GENERAL INFORMATION GENERAL DESCRIPTION OF EUT TEST MODE DESCRIPTION OF SUPPORT UNITS TEST FACILITY TEST LOCATION TEST INSTRUMENTS LIST TEST RESULTS AND MEASUREMENT DATA ANTENNA REQUIREMENT CONDUCTED EMISSIONS CONDUCTED PEAK OUTPUT POWER CHANNEL BANDWIDTH POWER SPECTRAL DENSITY BAND EDGES Conducted Emission Method Radiated Emission Method SPURIOUS EMISSION Conducted Emission Method Radiated Emission Method TEST SETUP PHOTO EUT CONSTRUCTIONAL DETAILS...55 Page Telephone: +86 (0) Fax: +86 (0) Page 3 of 64
4 4 Test Summary Test Item Section in CFR 47 Result Antenna requirement / (c) Pass AC Power Line Conducted Emission Pass Conducted Peak Output Power (b)(3) Pass Channel Bandwidth (a)(2) Pass Power Spectral Density (e) Pass Band Edge (d) Pass Spurious Emission / Pass Pass: The EUT complies with the essential requirements in the standard. Remark: Test according to ANSI C63.4:2014 and ANSI C63.10:2013. Measurement Uncertainty Test Item Range Measurement Uncertainty Notes Radiated Emission 9kHz ~ 30MHz 4.34dB (1) Radiated Emission 30MHz ~ 1000MHz 4.24dB (1) Radiated Emission 1GHz ~ 26.5GHz 4.68dB (1) AC Power Line Conducted Emission 0.15MHz ~ 30MHz 3.45dB (1) Note (1): The measurement uncertainty is for coverage factor of k=2 and a level of confidence of 95%. Telephone: +86 (0) Fax: +86 (0) Page 4 of 64
5 5 General Information 5.1 General Description of EUT Product Name: WiFi IP Camera Model No.: Reolink Argus 2 Serial No.: 001 Test sample(s) ID: Sample(s) Status GTS Engineer sample Channel numbers: b/802.11g /802.11n(HT20): n(HT40):9 Channel separation: Modulation technology: Antenna Type: Antenna gain: Power supply: 5MHz b: Direct Sequence Spread Spectrum (DSSS) g/802.11n(H20)/802.11n(HT40): Orthogonal Division Multiplexing (OFDM) Integral antenna 3.0 dbi(declared by Applicant) Rechargeable battery: DC3.7V; DC 5V from USB Telephone: +86 (0) Fax: +86 (0) Page 5 of 64
6 Operation each of channel Channel Channel Channel Channel Note: MHz MHz MHz MHz MHz MHz MHz MHz MHz MHz MHz In section 15.31(m), regards to the operating frequency range over 10 MHz, the Lowest frequency, the middle frequency, and the highest frequency of channel were selected to perform the test, and the selected channel see below: Test channel b/802.11g/802.11n(HT20) n(HT40) Lowest channel 2412MHz 2422MHz Middle channel 2437MHz 2437MHz Highest channel 2462MHz 2452MHz 5.2 Test mode Transmitting mode Keep the EUT in continuously transmitting mode Remark: During the test, the dutycycle >98%, the test voltage was tuned from 85% to 115% of the nominal rated supply voltage, and found that the worst case was under the nominal rated supply condition. So the report just shows that condition s data. We have verified the construction and function in typical operation. All the test modes were carried out with the EUT in transmitting operation, which was shown in this test report and defined as follows: Pre-scan all kind of data rate in lowest channel, and found the follow list which it was worst case. Mode b g n(HT20) n(HT40) Data rate 1Mbps 6Mbps 6.5Mbps 13Mbps 5.3 Description of Support Units Manufacturer Description Model Serial Number APPLE USB Charger A1399 N/A Telephone: +86 (0) Fax: +86 (0) Page 6 of 64
7 5.4 Test Facility The test facility is recognized, certified, or accredited by the following organizations: FCC Registration No.: , Shenzhen EMC Laboratory has been registered and fuly described in a report filed with the (FCC) Federal Communications Commission. The acceptance letter from the FCC is maintained in files. Registration , January 08, Industry Canada (IC) Registration No.: 9079A-2 The 3m Semi-anechoic chamber of has been registered by Certification and Engineering Bureau of Industry Canada for radio equipment testing with Registration No.: 9079A-2, August 15, Test Location All tests were performed at: Address: Xixiang Road, Baoan District, Shenzhen, Guangdong, China Tel: Fax: Telephone: +86 (0) Fax: +86 (0) Page 7 of 64
8 6 Test Instruments list Radiated Emission: Item Test Equipment Manufacturer Model No. Inventory No. Cal.Date (mm-dd-yy) Cal.Due date (mm-dd-yy) 1 3m Semi- Anechoic Chamber ZhongYu Electron 9.0(L)*6.0(W)* 6.0(H) GTS250 July July Control Room ZhongYu Electron 6.2(L)*2.5(W)* 2.4(H) GTS251 N/A N/A 3 ESU EMI Test Receiver R&S ESU26 GTS203 June June Loop Antenna Zhinan ZN30900A GTS534 June June BiConiLog Antenna SCHWARZBECK VULB9163 GTS214 June June Double-ridged horn antenna SCHWARZBECK 9120D GTS208 June June Horn Antenna ETS-LINDGREN GTS218 June June RF Amplifier HP 8347A GTS204 June June RF Amplifier HP 8349B GTS206 June June Broadband Preamplifier SCHWARZBECK BBV9718 GTS535 June June PSA Series Spectrum Analyzer Agilent E4440A GTS536 June June EMI Test Software AUDIX E3 N/A N/A N/A 13 Coaxial Cable GTS N/A GTS210 June June Coaxial Cable GTS N/A GTS211 June June Coaxial Cable GTS N/A GTS210 June June Coaxial Cable GTS N/A GTS212 June June Thermo meter N/A N/A GTS256 June June D.C. Power Supply Instek PS-3030 GTS232 June June Conducted Emission Item Test Equipment Manufacturer Model No. Inventory No. Cal.Date (mm-dd-yy) Cal.Due date (mm-dd-yy) 1 Shielding Room ZhongYu Electron 7.3(L)x3.1(W)x2.9(H) GTS252 May May EMI Test Receiver R&S ESCI 7 GTS552 June June Coaxial Switch ANRITSU CORP MP59B GTS225 June June Artificial Mains Network SCHWARZBECK MESS NSLK8127 GTS226 June June High voltage probe SCHWARZBECK TK9420 GTS537 June June ISN SCHWARZBECK NTFM 8158 GTS565 June June Coaxial Cable GTS N/A GTS227 June June EMI Test Software AUDIX E3 N/A N/A N/A 9 Thermo meter KTJ TA328 GTS233 June June dB Pulse er Rohde & Schwarz N/A GTS224 June June General used equipment: Item Test Equipment Manufacturer Model No. Inventory No. Cal.Date (mm-dd-yy) Cal.Due date (mm-dd-yy) 1 Barometer ChangChun DYM3 GTS257 June June Telephone: +86 (0) Fax: +86 (0) Page 8 of 64
9 7 Test results and Measurement Data 7.1 Antenna requirement Standard requirement: requirement: FCC Part15 C Section /247(c) An intentional radiator shall be designed to ensure that no antenna other than that furnished by the responsible party shall be used with the device. The use of a permanently attached antenna or of an antenna that uses a unique coupling to the intentional radiator, the manufacturer may design the unit so that a broken antenna can be replaced by the user, but the use of a standard antenna jack or electrical connector is prohibited (c) (1)(i) requirement: (i) Systems operating in the MHz band that is used exclusively for fixed. Point-to-point operations may employ transmitting antennas with directional gain greater than 6dBi provided the maximum conducted output power of the intentional radiator is reduced by 1 db for every 3 db that the directional gain of the antenna exceeds 6dBi. EUT Antenna: The antenna is integral antenna, the best case gain of the antenna is 3.0 dbi Telephone: +86 (0) Fax: +86 (0) Page 9 of 64
10 7.2 Conducted Emissions Test Requirement: FCC Part15 C Section Test Method: Test Range: Receiver setup: : Test setup: ANSI C63.10: KHz to 30MHz RBW=9KHz, VBW=30KHz, Sweep time=auto range (dbuv) Quasi-peak Average to 56* 56 to 46* * Decreases with the logarithm of the frequency. Test procedure: Test Instruments: Test mode: Test results: 1. The E.U.T and simulators are connected to the main power through a line impedance stabilization network (L.I.S.N.). This provides a 50ohm/50uH coupling impedance for the measuring equipment. 2. The peripheral devices are also connected to the main power through a LISN that provides a 50ohm/50uH coupling impedance with 50ohm termination. (Please refer to the block diagram of the test setup and photographs). 3. Both sides of A.C. line are checked for maximum conducted interference. In order to find the maximum emission, the relative positions of equipment and all of the interface cables must be changed according to ANSI C63.10:2013 on conducted measurement. Refer to section 6.0 for details Refer to section 5.2 for details Pass Telephone: +86 (0) Fax: +86 (0) Page 10 of 64
11 Measurement data Line: Telephone: +86 (0) Fax: +86 (0) Page 11 of 64
12 Neutral: Notes: 1. An initial pre-scan was performed on the line and neutral lines with peak detector. 2. Quasi-Peak and Average measurement were performed at the frequencies with maximized peak emission. 3. Final =Receiver Read level + LISN + Cable Loss 4. If the average limit is met when using a quasi-peak detector receiver, the EUT shall be deemed to meet both limits and measurement with the average detector receiver is unnecessary. Telephone: +86 (0) Fax: +86 (0) Page 12 of 64
13 7.3 Conducted Peak Output Power Test Requirement: Test Method: : Test setup: FCC Part15 C Section (b)(3) KDB D01 DTS Meas Guidance V03 30dBm Test Instruments: Test mode: Test results: Refer to section 6.0 for details Refer to section 5.2 for details Pass Measurement Data Test CH Peak Output Power (dbm) b g n(HT20) n(HT40) (dbm) Result Lowest Middle Pass Highest Telephone: +86 (0) Fax: +86 (0) Page 13 of 64
14 7.4 Channel Bandwidth Test Requirement: Test Method: : Test setup: FCC Part15 C Section (a)(2) KDB D01 DTS Meas Guidance V03 >500KHz Test Instruments: Test mode: Test results: Refer to section 6.0 for details Refer to section 5.2 for details Pass Measurement Data Channel Bandwidth Test CH b g n(HT20) n(HT40) Lowest (KHz) Result Middle >500 Pass Highest Test plot as follows: Telephone: +86 (0) Fax: +86 (0) Page 14 of 64
15 Test mode: b Lowest channel Middle channel Highest channel Telephone: +86 (0) Fax: +86 (0) Page 15 of 64
16 Test mode: g Lowest channel Middle channel Highest channel Telephone: +86 (0) Fax: +86 (0) Page 16 of 64
17 Test mode: n(HT20) Lowest channel Middle channel Highest channel Telephone: +86 (0) Fax: +86 (0) Page 17 of 64
18 Test mode: n(HT40) Lowest channel Middle channel Highest channel Telephone: +86 (0) Fax: +86 (0) Page 18 of 64
19 7.5 Power Spectral Density Test Requirement: Test Method: : Test setup: FCC Part15 C Section (e) KDB D01 DTS Meas Guidance V03 8dBm/3kHz Test Instruments: Test mode: Test results: Refer to section 6.0 for details Refer to section 5.2 for details Pass Measurement Data Power Spectral Density (dbm) Test CH b g n(HT20) n(HT40) Lowest (dbm/3khz) Result Middle Pass Highest Telephone: +86 (0) Fax: +86 (0) Page 19 of 64
20 Test plot as follows: Test mode: b Lowest channel Middle channel Highest channel Telephone: +86 (0) Fax: +86 (0) Page 20 of 64
21 Test mode: g Lowest channel Middle channel Highest channel Telephone: +86 (0) Fax: +86 (0) Page 21 of 64
22 Test mode: n(HT20) Lowest channel Middle channel Highest channel Telephone: +86 (0) Fax: +86 (0) Page 22 of 64
23 Test mode: n(HT40) Lowest channel Middle channel Highest channel Telephone: +86 (0) Fax: +86 (0) Page 23 of 64
24 7.6 Band edges Conducted Emission Method Test Requirement: Test Method: : Test setup: FCC Part15 C Section (d) KDB D01 DTS Meas Guidance V03 In any 100 khz bandwidth outside the frequency band in which the spread spectrum 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. Test Instruments: Test mode: Test results: Refer to section 6.0 for details Refer to section 5.2 for details Pass Telephone: +86 (0) Fax: +86 (0) Page 24 of 64
25 Test plot as follows: Test mode: b Lowest channel Test mode: g Highest channel Lowest channel Highest channel Telephone: +86 (0) Fax: +86 (0) Page 25 of 64
26 Test mode: n(HT20) Lowest channel Highest channel Test mode: n(HT40) Lowest channel Highest channel Telephone: +86 (0) Fax: +86 (0) Page 26 of 64
27 7.6.2 Radiated Emission Method Test Requirement: FCC Part15 C Section and Test Method: ANSI C63.10:2013 Test Range: All of the restrict bands were tested, only the worst band s (2310MHz to 2500MHz) data was showed. Test site: Measurement Distance: 3m Receiver setup: Detector RBW VBW Value Above 1GHz Peak 1MHz 3MHz Peak Average 1MHz 3MHz Average : Value Above 1GHz Average Peak Test setup: Test Procedure: Test Instruments: Test mode: Test results: 1. The EUT was placed on the top of a rotating table 1.5 meters above the ground at a 3 meter camber. The table was rotated 360 degrees to determine the position of the highest radiation. 2. The EUT was set 3 meters away from the interference-receiving antenna, which was mounted on the top of a variable-height antenna tower. 3. The antenna height is varied from one meter to four meters above the ground to determine the maximum value of the field strength. Both horizontal and vertical polarizations of the antenna are set to make the measurement. 4. For each suspected emission, the EUT was arranged to its worst case and then the antenna was tuned to heights from 1 meter to 4 meters and the rota table was turned from 0 degrees to 360 degrees to find the maximum reading. 5. The test-receiver system was set to Peak Detect Function and Specified Bandwidth with Maximum Hold Mode. 6. If the emission level of the EUT in peak mode was 10dB lower than the limit specified, then testing could be stopped and the peak values of the EUT would be reported. Otherwise the emissions that did not have 10dB margin would be re-tested one by one using peak, quasi-peak or average method as specified and then reported in a data sheet. 7. The radiation measurements are performed in X, Y, Z axis positioning. And found the Y axis positioning which it is worse case, only the test worst case mode is recorded in the report. Refer to section 6.0 for details Refer to section 5.2 for details Pass Telephone: +86 (0) Fax: +86 (0) Page 27 of 64
28 Measurement data: Remark: The pre-test were performed on lowest, middle and highest frequencies, only the worst case s (lowest and highest frequencies) data was showed. Test mode: b Test channel: Lowest Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line Polarization Horizontal Horizontal Vertical Vertical Average value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line Polarization Horizontal Horizontal Vertical Vertical Test mode: b Test channel: Highest Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line Polarization Horizontal Horizontal Vertical Vertical Average value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line Polarization Horizontal Horizontal Vertical Vertical Remark: 1. Final =Receiver Read level + Antenna + Cable Loss Preamplifier 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Telephone: +86 (0) Fax: +86 (0) Page 28 of 64
29 Test mode: g Test channel: Lowest Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line Polarization Horizontal Horizontal Vertical Vertical Average value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line Polarization Horizontal Horizontal Vertical Vertical Test mode: g Test channel: Highest Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line Polarization Horizontal Horizontal Vertical Vertical Average value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line Polarization Horizontal Horizontal Vertical Vertical Remark: 1. Final =Receiver Read level + Antenna + Cable Loss Preamplifier 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Telephone: +86 (0) Fax: +86 (0) Page 29 of 64
30 Test mode: n(HT20) Test channel: Lowest Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line Polarization Horizontal Horizontal Vertical Vertical Average value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line Polarization Horizontal Horizontal Vertical Vertical Test mode: n(HT20) Test channel: Highest Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line Polarization Horizontal Horizontal Vertical Vertical Average value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line Polarization Horizontal Horizontal Vertical Vertical Remark: 1. Final =Receiver Read level + Antenna + Cable Loss Preamplifier 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Telephone: +86 (0) Fax: +86 (0) Page 30 of 64
31 Test mode: n(HT40) Test channel: Lowest Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line Polarization Horizontal Horizontal Vertical Vertical Average value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line Polarization Horizontal Horizontal Vertical Vertical Test mode: n(HT40) Test channel: Highest Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line Polarization Horizontal Horizontal Vertical Vertical Average value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line Polarization Horizontal Horizontal Vertical Vertical Remark: 1. Final =Receiver Read level + Antenna + Cable Loss Preamplifier 2. The emission levels of other frequencies are very lower than the limit and not show in test report. Telephone: +86 (0) Fax: +86 (0) Page 31 of 64
32 7.7 Spurious Emission Conducted Emission Method Test Requirement: Test Method: : Test setup: FCC Part15 C Section (d) KDB D01 DTS Meas Guidance V03 In any 100 khz bandwidth outside the frequency band in which the spread spectrum 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. Test Instruments: Test mode: Test results: Refer to section 6.0 for details Refer to section 5.2 for details Pass Telephone: +86 (0) Fax: +86 (0) Page 32 of 64
33 Test plot as follows: Test mode: b Lowest channel Middle channel 30MHz~25GHz Highest channel 30MHz~25GHz 30MHz~25GHz Telephone: +86 (0) Fax: +86 (0) Page 33 of 64
34 Test mode: g Lowest channel Middle channel 30MHz~25GHz Highest channel 30MHz~25GHz 30MHz~25GHz Telephone: +86 (0) Fax: +86 (0) Page 34 of 64
35 Test mode: Lowest channel n(HT20) Middle channel 30MHz~25GHz Highest channel 30MHz~25GHz 30MHz~25GHz Telephone: +86 (0) Fax: +86 (0) Page 35 of 64
36 Test mode: Lowest channel n(HT40) Middle channel 30MHz~25GHz Highest channel 30MHz~25GHz 30MHz~25GHz Telephone: +86 (0) Fax: +86 (0) Page 36 of 64
37 7.7.2 Radiated Emission Method Test Requirement: FCC Part15 C Section Test Method: ANSI C63.10:2013 Test Range: 30MHz to 25GHz Test site: Measurement Distance: 3m Receiver setup: Detector RBW VBW Value 30MHz-1GHz Quasi-peak 120KHz 300KHz Quasi-peak Above 1GHz Peak 1MHz 3MHz Peak Average 1MHz 3MHz Average : Value 30MHz-88MHz Quasi-peak 88MHz-216MHz Quasi-peak 216MHz-960MHz Quasi-peak 960MHz-1GHz Quasi-peak Above 1GHz Average Peak Test setup: Below 1GHz Above 1GHz Telephone: +86 (0) Fax: +86 (0) Page 37 of 64
38 Test Procedure: Test Instruments: Test mode: Test results: 1. The EUT was placed on the top of a rotating table(0.8 meters below 1G and 1.5 meters above 1G) above the ground at a 3 meter camber. The table was rotated 360 degrees to determine the position of the highest radiation. 2. The EUT was set 3 meters away from the interference-receiving antenna, which was mounted on the top of a variable-height antenna tower. 3. The antenna height is varied from one meter to four meters above the ground to determine the maximum value of the field strength. Both horizontal and vertical polarizations of the antenna are set to make the measurement. 4. For each suspected emission, the EUT was arranged to its worst case and then the antenna was tuned to heights from 1 meter to 4 meters and the rota table was turned from 0 degrees to 360 degrees to find the maximum reading. 5. The test-receiver system was set to Peak Detect Function and Specified Bandwidth with Maximum Hold Mode. 6. If the emission level of the EUT in peak mode was 10dB lower than the limit specified, then testing could be stopped and the peak values of the EUT would be reported. Otherwise the emissions that did not have 10dB margin would be re-tested one by one using peak, quasi-peak or average method as specified and then reported in a data sheet. 7. The radiation measurements are performed in X, Y, Z axis positioning. And found the Y axis positioning which it is worse case, only the test worst case mode is recorded in the report. Refer to section 6.0 for details Refer to section 5.2 for details Pass Remark: Pre-scan all kind of the place mode (X-axis, Y-axis, Z-axis), and found the Y-axis which it is worse case. Telephone: +86 (0) Fax: +86 (0) Page 38 of 64
39 Measurement Data Below 1GHz Horizontal: Telephone: +86 (0) Fax: +86 (0) Page 39 of 64
40 Vertical: Telephone: +86 (0) Fax: +86 (0) Page 40 of 64
41 Above 1GHz Test mode: b Test channel: Lowest Peak value: Read Antenna Cable Preamp Line Loss (dbuv) (db/m) polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Average value: Read Antenna Cable Preamp Line Loss (dbuv) (db/m) polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Remark: 1. Final =Receiver Read level + Antenna + Cable Loss Preamplifier 2. *, means this data is the too weak instrument of signal is unable to test. Telephone: +86 (0) Fax: +86 (0) Page 41 of 64
42 Test mode: b Test channel: Middle Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Average value: Read Antenna Cable Preamp Line Loss (dbuv) (db/m) polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Remark: 1. Final =Receiver Read level + Antenna + Cable Loss Preamplifier 2. *, means this data is the too weak instrument of signal is unable to test. Telephone: +86 (0) Fax: +86 (0) Page 42 of 64
43 Test mode: b Test channel: Highest Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Average value: Read Antenna Cable Preamp Line Loss (dbuv) (db/m) polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Remark: 1. Final =Receiver Read level + Antenna + Cable Loss Preamplifier 2. *, means this data is the too weak instrument of signal is unable to test. Telephone: +86 (0) Fax: +86 (0) Page 43 of 64
44 Test mode: g Test channel: lowest Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Average value: Read Antenna Cable Preamp Line Loss (dbuv) (db/m) polarization Vertical Vertical Vertical * Vertical * Vertical * Vertica Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Remark: 1. Final =Receiver Read level + Antenna + Cable Loss Preamplifier 2. *, means this data is the too weak instrument of signal is unable to test. Telephone: +86 (0) Fax: +86 (0) Page 44 of 64
45 Test mode: g Test channel: Middle Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Average value: Read Antenna Cable Preamp Line Loss (dbuv) (db/m) polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Remark: 1. Final =Receiver Read level + Antenna + Cable Loss Preamplifier 2. *, means this data is the too weak instrument of signal is unable to test. Telephone: +86 (0) Fax: +86 (0) Page 45 of 64
46 Test mode: g Test channel: Highest Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Average value: Read Antenna Cable Preamp Line Loss (dbuv) (db/m) polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Remark: 1. Final =Receiver Read level + Antenna + Cable Loss Preamplifier 2. *, means this data is the too weak instrument of signal is unable to test. Telephone: +86 (0) Fax: +86 (0) Page 46 of 64
47 Test mode: n(HT20) Test channel: Lowest Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Average value: Read Antenna Cable Preamp Line Loss (dbuv) (db/m) polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Remark: 1. Final =Receiver Read level + Antenna + Cable Loss Preamplifier 2. *, means this data is the too weak instrument of signal is unable to test. Telephone: +86 (0) Fax: +86 (0) Page 47 of 64
48 Test mode: n(HT20) Test channel: Middle Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Average value: Read Antenna Cable Preamp Line Loss (dbuv) (db/m) polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Remark: 1. Final =Receiver Read level + Antenna + Cable Loss Preamplifier 2. *, means this data is the too weak instrument of signal is unable to test. Telephone: +86 (0) Fax: +86 (0) Page 48 of 64
49 Test mode: n(HT20) Test channel: Highest Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line polarization * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Average value: Read Antenna Cable Preamp Line Loss (dbuv) (db/m) polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Remark: 1 Final =Receiver Read level + Antenna + Cable Loss Preamplifier 2 *, means this data is the too weak instrument of signal is unable to test. Telephone: +86 (0) Fax: +86 (0) Page 49 of 64
50 Test mode: n(HT40) Test channel: Lowest Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Average value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Remark: 1. Final =Receiver Read level + Antenna + Cable Loss Preamplifier 2. *, means this data is the too weak instrument of signal is unable to test. Telephone: +86 (0) Fax: +86 (0) Page 50 of 64
51 Test mode: n(HT40) Test channel: Middle Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Average value: Read Antenna Cable Preamp Line Loss (dbuv) (db/m) polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Remark: 1. Final =Receiver Read level + Antenna + Cable Loss Preamplifier 2. *, means this data is the too weak instrument of signal is unable to test. Telephone: +86 (0) Fax: +86 (0) Page 51 of 64
52 Test mode: n(HT40) Test channel: Highest Peak value: Read (dbuv) Antenna (db/m) Cable Loss Preamp Line polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Average value: Read Antenna Cable Preamp Line Loss (dbuv) (db/m) polarization Vertical Vertical Vertical * Vertical * Vertical * Vertical Horizontal Horizontal Horizontal * Horizontal * Horizontal * Horizontal Remark: 1 Final =Receiver Read level + Antenna + Cable Loss Preamplifier 2 *, means this data is the too weak instrument of signal is unable to test. Telephone: +86 (0) Fax: +86 (0) Page 52 of 64
53 8 Test Setup Photo Radiated Emission Telephone: +86 (0) Fax: +86 (0) Page 53 of 64
54 Conducted Emission Telephone: +86 (0) Fax: +86 (0) Page 54 of 64
55 9 EUT Constructional Details Telephone: +86 (0) Fax: +86 (0) Page 55 of 64
56 Telephone: +86 (0) Fax: +86 (0) Page 56 of 64
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