Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
MAYTON Attestation Statement Letter I Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Date: 2024.03.19 Ref: Attestation Statements Part 2.911(d)(5)(i) Filing FCC Application for FCC ID: 2BAG8-AUTOPROX MAYTON certifies that the equipment for which authorization is sought is not “covered” equipment prohibited for receiving an equipment authorization pursuant to section 2.903 of the FCC rules. Sincerely, Applicant’s Signature: Lim DooYoung Applicant’s Name:
MAYTON Attestation Statement Letter II Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 USA Date: 2024.03.19 Ref: Attestation Statements Part 2.911(d)(5)(ii) Filing FCC Application for FCC ID: 2BAG8-AUTOPROX MAYTON certifies that, as of the date of the filing of the application, the applicant is not identified on the Covered List as an entity producing “covered” equipment. Sincerely, Applicant’s Signature: Applicant’s Name: Lim DooYoung
FCC Attestation Statement US Agent For Service Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Date: 2024.03.19 Ref: Attestation Statements Part 2.911(d)(7) Filing FCC Application for FCC ID: 2BAG8-AUTOPROX MAYTON certifies that, as of the date of the filing of the application, YELINWEI is our designated U.S. agent for service of process for the above reference FCC ID: 2BAG8-AUTOPROX. MAYTON agrees to maintain an agent for no less than one year after the grantee has terminated all marketing and importation or the conclusion of any Commission-related proceedings involving the equipment. MAYTON accepts, as of the date of the filing of the application, the obligation of the designated U.S. agent for service of process for above referenced FCC ID. Designated U.S. Agent Information: Name: YELINWEI Address: Room 201, Building 5, No. 1, East Jiuheng Road, Yuanxiapaifang Street, Longgui Garden, Taihe Town, Baiyun District, Guangzhou City Contact Person: WANGYICHENG Telephone: 13926598677 Email: [email protected] FRN : 0033495128 Sincerely, Applicant’s Signature: Agent’s Signature: Applicant’s Name:Lim DooYoung Agent’s Name:WANGYICHENG
Date: 04/17/2018 VCB_F-01: Operating Procedures Form – FCC Authorization v02 Page 1 of 1 MAYTON Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Date: 2024.03.19 SUBJECT: FCC Application for (FCC ID: 2BAG8-AUTOPROX) To Whom It May Concern: We, the undersigned, hereby authorize Allen.choi in KIEL Institute on our behalf, to apply to the Federal Communications Commission on our equipment. Any and all acts carried out by KIEL Institute on our behalf shall have the same effect as acts of our own. This is to advise that we are in full compliance with the Anti- Drug Abuse Act. We, the applicant, are not subject to a denial of federal benefits pursuant to Section 5301 of the Anti-Drug Act of 1988, 21 USC853a, and no party to the application is subject to a denial of federal benefits pursuant to that section. Sincerely, Client’s signature: Client’s name & title: Lim DooYoung / senior executive Contact information / address: +82 010-4188-7773 / 404, Annam-ro, Bupyeong- gu, Incheon, Republic of Korea
Date: 04/17/2018 VCB_F-01: Operating Procedures Form – FCC Confidentiality v03 Page 1 of 2 MAYTON Federal Communications Commission Authorization and Evaluation Division Confidentiality Request regarding application for certification of FCC ID: 2BAG8-AUTOPROX Pursuant to Sections 0.457 and 0.459 of the Commission’s Rules, we hereby request confidential treatment of information accompanying this application as outlined below: Type of Confidentiality Requested Exhibit Type ☐Short Term ☒Permanent Block Diagrams ☒Short Term External Photos ☒Short Term ☐Permanent* Internal Photos ☐Short Term ☒Permanent Operation Description ☐Short Term ☒Permanent Parts List/BOM ☐Short Term ☒Permanent Schematics ☒Short Term Test Setup Photos ☒Short Term ☐Permanent* User manual *Requires further justification before permanent confidentiality will be allowed. The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these materials may be harmful to the applicant and provide unjustified benefits to its competitors. Permanent Confidentiality: The applicant requests the exhibits listed above as permanently confidential be withheld from public review due to materials that contain trade secrets and proprietary information not customarily released to the public. Short-Term Confidentiality: Pursuant to DA04-1705 June 15, 2004 of the Commission’s public notice, we also request temporary confidential treatment of information accompanying this application as outlined below for an initial period of 180 (ie- “45”, “90” or “180”) days. Sincerely, Client’s signature: Date: 04/17/2018 VCB_F-01: Operating Procedures Form – FCC Confidentiality v03 Page 2 of 2 Client’s name & title: Lim DooYoung / senior executive Contact information / address: +82 010-4188-7773 / 404, Annam-ro, Bupyeong-gu, Incheon, Republic of Korea
FCC Lable location/example Page 1 of 1 FCC ID: 2BAG8-AUTOPROX Product label Sample with FCC label information Following is a sample copy of the label that will be placed on the rear cabinet of the product. The FCC ID Label and compliance statement are marked in the product label. The warning statement and information to the Use are described in the user manual. - Model: AUTOPRO-X Size: 5 * 20 mm Label Location The label shown shall be permanently affixed at a conspicuous location on the device and be readily visible to The user at the time purchase. (Labeling requirements per 2.925)
▪ S = - Note EIRP= Equivalent Isotropic Radiated Power(mW) Operation Mode Evaluation Frequency (MHz) MAX Output Power (dBm) Antenna Gain (dBi) MAX. EIRP (dBm) MAX. EIRP (mW) Distance (cm) Power Density (mW/cm 2 ) Limit (mW/cm2) Result 2.4GHz Wi- Fi 2412~2462 6.612.158.767.52200.001 51Pass 2.4GHz BT 2402~2480 7.401.568.967.87200.001 61Pass 2.4GHz LE 2402~2480 5.151.566.714.69200.000 91Pass 5GHz Wi-Fi UNII 1 5180~5240 -6.064.41-1.650.68200.000 11Pass Result : 0.001 5 + 0.001 6 = 0.003 1 < 1 Maximum Permissible Exposure Calculation maximum calculations of above situations are less than the “1” limit. Conclusion R= Distance to the center of the radiation of the antenna(Over 20cm) EIRP / ( 4 R 2 π ) f = frequency in MHz. * = Plane-wave equivalent power density. S= Maximum power density(mW/cm 2 ) Conclusion of Simultaneous Transmitter CPD = Calculation power density / LPD = Limit of power density The formula of calculated the MPE is CPD1 / LPD 1 + CPD2 / LPD 2 + ...... < 1 The EUT will only be used with a separation of 20 centimeters or greater between the antenna and the body of the user. f/1500 1 <30 <30 <30 <30 <30 1.63 2.19/f 0.073 *(100) *(180/f 2 ) 0.3-1.34 1.34-30 30-300 300-1,500 1,500-100,000 614 824/f 27.5 WIFI + BT FCC Part 2 section 2.1091 (ii) Limits for General Population/Uncontrolled Exposure Averaging time (minutes) Frequency range (MHz) Electric field strength (V/m) Magnetic field strength (A/m) Power density (mW/cm2) 0.2
KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 1 of 80 RF TEST REPORT Report NumberKIEL2403-YW03402-R01 Applicant Company Name MAYTON Address404, Annam-ro Bupyeong-gu, Incheon, South Korea Product Product Name AutoProX Model Name AUTOPRO-X FCC ID2BAG8-AUTOPROX Manufacturer SUZHOU MEIYITE AUTO PARTS CO.,LTD Other Receipt Date 2024.02.07Receipt Number RQW2403-1235 Issued Date 2023.03.29Tested Date2024.02.07 ~ 2024.03.11 Standards FCC Part 15 Subpart C ANSI C63.10 : 2020 Tested byDominic Sim (Sign)#담당서명# Approved by David Jang (Sign)#기책서명# KIEL Institute #원장직인# Daewoo Technopark A-403, 261, Doyak-ro, Bucheon-si, Gyeonggi-do, 14523, Korea. Tel : +82-32-670-8888, Fax : +82-32-670-8889 o This is certified that the above mentioned products have been tested for the sample provided by client. o No part of this document may not be duplicated or reproduced by any means without the express written permission of KIEL Institute. o This test report is irrelevant to KS Q ISO/IEC 17025 and KOLAS accreditation 시 점 확 인 필 정 부 시 점 확 인 센 터 진본 2024-04-01 11:35:12 KST KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 2 of 80 Revision History Issued DateIssued Report No.Revisions 2024.03.25KIEL2403-YW03402Initial Issue 2024.03.29KIEL2403-YW03402-R01Correct typo KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 3 of 80 Contents 1.0 LABORATORY INFORMATION...........................................................................................5 2.0 APPLICANT INFORMATION................................................................................................5 3.0 SUMMARY OF TEST RESULTS............................................................................................6 3.1 Meaurement Uncertainty....................................................................................................... 7 4.0 GENERAL INFORMATION....................................................................................................8 4.1 EUT Description..................................................................................................................... 8 4.1.1 List of Accessories ..........................................................................................................................8 4.1.2 Auxiliary Test equipment.................................................................................................................8 4.1.3 Antenna Information .......................................................................................................................9 4.1.4 Channel List of EUT.......................................................................................................................9 4.2 Description of Test Mode ..................................................................................................... 10 4.2.1 Test Mode Configuration...............................................................................................................10 4.3 General Description of Applied Standard........................................................................... 14 5.0 TEST EQUIPMENT...............................................................................................................15 6.0 TEST RESULTS......................................................................................................................16 6.1 Antenna Requirement.......................................................................................................... 16 6.1.1 Result............................................................................................................................................16 6.2 6 dB Bandwidth................................................................................................................... 17 6.2.1 Regulation.....................................................................................................................................17 6.2.2 Test Procedure...............................................................................................................................17 6.2.3 Test Setup .....................................................................................................................................17 6.2.4 Test Result ....................................................................................................................................18 6.3 Maximum Peak Output Power............................................................................................ 22 6.3.1 Regulation.....................................................................................................................................22 6.3.2 Test Procedure...............................................................................................................................22 6.3.3 Test Setup .....................................................................................................................................23 6.3.4 Test Result ....................................................................................................................................24 6.4 Power Spectral Density........................................................................................................ 26 6.4.1 Regulation.....................................................................................................................................26 6.4.2 Test Procedure...............................................................................................................................26 6.4.3 Test Setup .....................................................................................................................................26 6.4.4 Test Result ....................................................................................................................................27 6.5 Spurious Emission, Band edge and Restricted Bands ........................................................ 31 6.5.1 Regulation........…
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KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 21 of 80 6 dB Bandwith LE1M_2 402 MHzLE2M_2 402 MHz LE1M_2 440 MHzLE2M_2 440 MHz LE1M_2 480 MHzLE2M_2 480 MHz KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 22 of 80 6.3 Maximum Peak Output Power 6.3.1 Regulation §15.247(b)(3) : For systems using digital modulation in the 902-928 MHz, 2400-2483.5 MHz, and 5725-5850 MHz bands: 1 Watt. As an alternative to a peak power measurement, compliance with the one Watt limit can be based on a measurement of the maximum conducted output power. Maximum Conducted Output Power is defined as the total transmit power delivered to all antennas and antenna elements averaged across all symbols in the signaling alphabet when the transmitter is operating at its maximum power control level. Power must be summed across all antennas and antenna elements. The average must not include any time intervals during which the transmitter is off or is transmitting at a reduced power level. If multiple modes of operation are possible (e.g., alternative modulation methods), the maximum conducted output power is the highest total transmit power occurring in any mode. §15.247(b)(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. Except as shown in paragraph (c) of this section, if transmitting antennas of directional gain greater than 6 dBi are used, the conducted output power from the intentional radiator shall be reduced below the stated values in paragraphs (b)(1), (b)(2), and (b)(3) of this section, as appropriate, by the amount in dB that the directional gain of the antenna exceeds 6 dBi. 6.3.2 Test Procedure The method of measurement used to test this DTS device is ANSI C63.10-2020. One of the following procedures may be used to determine the maximum peak conducted output power of a DTS EUT. Peak Power Measurement 1. RBW ≥ DTS bandwidth a) Use the following spectrum analyzer settings: 1) Set the RBW ≥ DTS bandwidth. 2) Set VBW ≥ [3 x RBW]. 3) Set Span ≥ [3 x RBW]. 4) Sweep time : No faster than coupled (auto) time. 5) Detector = Peak. 6) Trace mode = Max hold. b) Allow trace to stabilize c) Use peak marker function to determinie the peak amplitude level Average Power Measurement Measurement using a power meter. a) Averge Power measurement using an RF average power meter, as follows: 1) The EUT is configured to transmit continuously, or to transmit with a constant duty cycle. 2) At all times when the EUT is transmitting, it shall be transmitting at its maximum power control level. 3) The integration period of the power meter exceeds the repetition period of the transmitted signal by at least a factor of five. b) If the transmitter does not transmit continuously, measure the duty cycle, D, of the transmitter output signal. c) Measure the average power of the transmitter. This measurement is an average over both the ON and OFF periods of the transmitter. d) Correct the measurement in dBm by adding [10 log (1 / D)], where D is the duty cycle. KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 23 of 80 6.3.3 Test Setup KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 24 of 80 6.3.4 Test Result Test ModeChannel Frequency [MHz] Peak Output Power [dBm] Limit [dBm] Margin [dB] 802.11b 12 4123.63 30 26.37 62 4374.6125.39 112 4623.7926.21 802.11g 12 4126.35 30 23.65 62 4376.3023.70 112 4626.2323.77 802.11n(HT20) 12 4125.60 30 24.40 62 4376.0923.91 112 4625.7624.24 802.11n(HT40) 32 4226.61 30 23.39 62 4375.9524.05 92 4525.1324.87 LE1M 02 4025.12 30 24.88 192 4405.1524.85 392 4804.3725.63 LE2M 02 4024.80 30 25.20 192 4404.7625.24 392 4803.9126.09 lThe results are measured by Peak/average Power meter & Sensor. KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 25 of 80 Test ModeChannel Frequency [MHz] DCCF [dB] Average Power [dBm] Max Average Power [dB] 802.11b 12 412 0.13 0.440.57 62 4371.671.80 112 4620.740.87 802.11g 12 412 0.40 -6.04-5.64 62 437-6.24-5.84 112 462-6.52-6.12 802.11n(HT20) 12 412 0.44 -6.26-5.82 62 437-6.44-6.00 112 462-6.79-6.35 802.11n(HT40) 32 422 0.93 -6.17-5.24 62 437-6.63-5.70 92 452-7.16-6.23 LE1M 02 402 2.03 2.854.88 192 4402.874.90 392 4802.064.09 LE2M 02 402 4.08 -0.344.46 192 440-0.364.44 392 480-1.213.59 lThe results are measured by Peak/average Power meter & Sensor. KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 26 of 80 6.4 Power Spectral Density 6.4.1 Regulation §15.247(e) : For digitally modulated systems, the power spectral density conducted from the intentional radiator to the antenna shall not be greater than 8 dBm in any 3 kHz band during any time interval of continuous transmission. This power spectral density shall be determined in accordance with the provisions of paragraph (b) of this section. The same method of determining the conducted output power shall be used to determine the power spectral density. 6.4.2 Test Procedure The method of measurement used to test this DTS device is ANSI C63.10-2020. The following procedure shall be used if maximum peak conducted output power was used to determine compliance, and it is optional if the maximum conducted (average) output power was used to determine compliance: a) Set analyzer center frequency to DTS channel center frequency. b) Set the span >1.5 times the DTS bandwidth. c) Set the RBW to 3 kHz ≤RBW ≤100 kHz. d) Set the VBW ≥[3 ×RBW]. e) Detector = peak. f) Sweep time = No faster than coupled (auto) time. g) Trace mode = max hold. h) Allow trace to fully stabilize. i) Use the peak marker function to determine the maximum amplitude level within the RBW. j) If measured value exceeds requirement, then reduce RBW (but no less than 3 kHz) and repeat. 6.4.3 Test Setup KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 27 of 80 6.4.4 Test Result Test ModeChannel Frequency [MHz] 3 kHz PSD [dBm] Limit [dBm] Margin [dB] 802.11b 12 412-21.76 8 29.76 62 437-20.6028.60 112 462-21.5029.50 802.11g 12 412-29.84 8 37.84 62…
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KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 39 of 80 Radiated Emission (Below 1 GHz) Worst case -RE(Below 1 GHz)_802.11n(HT40)_2 422 MHz Frequency [MHz] Quasi-Peak Reading [dBuV] Quasi-Peak Result [dBuV/m] Limit [dBuV/m] Margin [dB] Height [cm] Pol Azimuth [deg] Corrction Factor [dB/m] 49.93925.27 17.4740.0022.53100V75-7.80 194.09242.91 32.7143.5210.81100V195-10.20 323.69436.97 31.4746.0214.55100H125-5.50 388.41532.39 28.5946.0217.43300H166-3.80 453.18937.59 35.5946.0210.43100H285-2.00 579.02025.96 26.4646.0219.56200V2560.50 712.12626.82 29.9246.0216.10100V203.10 Note) 1. Quasi Peak(dBμV/m) = Quasi Peak Reading Value(dBμV) + Correction Factor(dB/m) 2. Correction Factor(dB) = Antenna Factor(dB/m) + Cable Factor(dB) – Pre-Amplifier Factor(dB) 3. Margin(dB) = (Quasi Peak) Limit (dBμV/m) – (Quasi Peak) Result (dBμV/m). KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 40 of 80 Worst case -RE(Below 1 GHz)_LE1M_2 440 MHz Frequency [MHz] Quasi-Peak Reading [dBuV] Quasi-Peak Result [dBuV/m] Limit [dBuV/m] Margin [dB] Height [cm] Pol Azimuth [deg] Corrction Factor [dB/m] 194.09241.71 31.5143.5212.01100H19-10.20 270.45241.95 34.7546.0211.27100H43-7.20 323.64138.36 32.8646.0213.16100H131-5.50 453.02834.86 32.8646.0213.16200H127-2.00 777.33132.39 36.7946.029.23200H1914.40 841.62131.61 36.7146.029.31100H395.10 Note) 1. Quasi Peak(dBμV/m) = Quasi Peak Reading Value(dBμV) + Correction Factor(dB/m) 2. Correction Factor(dB) = Antenna Factor(dB/m) + Cable Factor(dB) – Pre-Amplifier Factor(dB) 3. Margin(dB) = (Quasi Peak) Limit (dBμV/m) – (Quasi Peak) Result (dBμV/m). KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 41 of 80 Radiated Emission (Above 1 GHz) RE(Above1 GHz) _802.11b_2 412 MHz Frequency [MHz] Peak Reading [dBuV] Peak Result [dBuV/m] AVG Reading [dBuV] AVG Result [dBuV/m] DCCF [dB] Height [cm] Pol Azimuth [deg] Corr. [dB/m] Peak Margin [dB] Peak Limit [dBuV/m] AVG Margin [dB] AVG Limit [dBuV/m] 1 386.000 51.5336.3243.8228.740.131.00H8.5-15.21 37.6874.0025.2654.00 * 1 662.500 52.0738.5043.0429.600.131.00H24.3-13.57 35.5074.0024.4054.00 1 757.000 48.5235.2037.4424.250.132.00V263.8 -13.32 38.8074.0029.7554.00 3 155.000 46.2439.5835.0628.530.132.00V186.0-6.66 34.4274.0025.4754.00 * 4 824.000 45.7643.0633.8931.320.132.00V108.4-2.70 30.9474.0022.6854.00 7 236.000 43.6443.8832.3132.680.131.00H207.80.2430.1274.0021.3254.00 Note) 1. Peak Result(dBuV/m) = Peak Reading Value(dBuV) + Correction Factor(dB/m) 2. AVG Result(dBuV/m) = Average Reading Value (dBuV) + Correction Factor(dB/m) + DCCF 3. DCCF(Duty Cycle Correction Factor) = 10 x Log(1/Duty Cycle) 4. Correction Factor(dB/m) = Antenna Factor(dB/m) + Cable Factor(dB) – Pre-Amplifier Factor(dB) + Distance Factor (dB) 5. Margin(dB) = (Peak/AVG) Limit (dBuV/m) – (Peak/AVG) Result (dBuV/m) 6. * - indicates frequency in Restricted Band. KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 42 of 80 RE(Above1 GHz) _802.11b_2 437 MHz Frequency [MHz] Peak Reading [dBuV] Peak Result [dBuV/m] AVG Reading [dBuV] AVG Result [dBuV/m] DCCF [dB] Height [cm] Pol Azimuth [deg] Corr. [dB/m] Peak Margin [dB] Peak Limit [dBuV/m] AVG Margin [dB] AVG Limit [dBuV/m] 1 316.000 51.5835.8541.4025.800.132.00V188.1 -15.73 38.1574.0028.2054.00 1 737.500 49.8536.5141.6328.420.132.00H30.1-13.34 37.4974.0025.5854.00 * 4 874.000 45.0542.5634.2331.870.131.00H78.1-2.49 31.4474.0022.1354.00 * 7 311.000 43.4343.5332.3632.590.132.00H356.80.1030.4774.0021.4154.00 Note) 1. Peak Result(dBuV/m) = Peak Reading Value(dBuV) + Correction Factor(dB/m) 2. AVG Result(dBuV/m) = Average Reading Value (dBuV) + Correction Factor(dB/m) + DCCF 3. DCCF(Duty Cycle Correction Factor) = 10 x Log(1/Duty Cycle) 4. Correction Factor(dB/m) = Antenna Factor(dB/m) + Cable Factor(dB) – Pre-Amplifier Factor(dB) + Distance Factor (dB) 5. Margin(dB) = (Peak/AVG) Limit (dBuV/m) – (Peak/AVG) Result (dBuV/m) 6. * - indicates frequency in Restricted Band. KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 43 of 80 RE(Above1 GHz) _802.11b_2 462 MHz Frequency [MHz] Peak Reading [dBuV] Peak Result [dBuV/m] AVG Reading [dBuV] AVG Result [dBuV/m] DCCF [dB] Height [cm] Pol Azimuth [deg] Corr. [dB/m] Peak Margin [dB] Peak Limit [dBuV/m] AVG Margin [dB] AVG Limit [dBuV/m] * 4 924.000 44.4142.0333.1830.930.132.00H279.5-2.38 31.9774.0023.0754.00 * 7 386.000 44.0644.1032.3032.470.131.00H52.70.0429.9074.0021.5354.00 Note) 1. Peak Result(dBuV/m) = Peak Reading Value(dBuV) + Correction Factor(dB/m) 2. AVG Result(dBuV/m) = Average Reading Value (dBuV) + Correction Factor(dB/m) + DCCF 3. DCCF(Duty Cycle Correction Factor) = 10 x Log(1/Duty Cycle) 4. Correction Factor(dB/m) = Antenna Factor(dB/m) + Cable Factor(dB) – Pre-Amplifier Factor(dB) + Distance Factor (dB) 5. Margin(dB) = (Peak/AVG) Limit (dBuV/m) – (Peak/AVG) Result (dBuV/m) 6. * - indicates frequency in Restricted Band. KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 44 of 80 RE(Above1 GHz) _802.11g_2 412 MHz Frequency [MHz] Peak Reading [dBuV] Peak Result [dBuV/m] AVG Reading [dBuV] AVG Result [dBuV/m] DCCF [dB] Height [cm] Pol Azimuth [deg] Corr. [dB/m] Peak Margin [dB] Peak Limit [dBuV/m] AVG Margin [dB] AVG Limit [dBuV/m] 1 247.000 51.0035.1442.4727.010.402.00H359.9 -15.86 38.8674.0026.9954.00 1 385.000 50.7235.5039.7724.950.401.00H345.7 -15.22 38.5074.0029.0554.00 * 4 824.000 45.3642.6633.9231.620.402.00H281.3-2.70 31.3474.0022.3854.00 7 236.000 44.2344.4732.2632.900.401.00H0.10.2429.5374.0021.1054.00 Note) 1. Peak Result(dBuV/m) = Peak Reading Value(dBuV) + Correction Factor(dB/m) 2. AVG Result(dBuV/m) = Average Reading Value (dBuV) + Correction Factor(dB/m) + DCCF 3. DCCF(Duty Cycle Correction Factor) = 10 x Log(1/Duty Cycle) 4. Correction Factor(dB/m) = Antenna Factor(dB/m) + Cable Factor(dB) – Pre-Amplifier Factor(dB) + Distance Factor (dB) 5. Margin(dB) = (Peak/AVG) Limit (dBuV/m) – (Peak/AVG) Result (dBuV/m) 6. * - indicates frequency in Restricted Band. KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 45 of 80 RE(Above 1 GHz) _802.11g_2…
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KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 64 of 80 Band Edge_802.11g_2 462 MHz Frequency [MHz] Peak Reading [dBuV] Peak Result [dBuV/m] AVG Reading [dBuV] AVG Result [dBuV/m] DCCF [dB] Height [cm] Pol Azimuth [deg] Corr. [dB/m] Peak Margin [dB] Peak Limit [dBuV/m] AVG Margin [dB] AVG Limit [dBuV/m] *2 483.50047.7647.6335.7936.060.401.00H116.2-0.1326.3774.0017.9454.00 *2 496.85748.3548.2935.6335.970.402.00V18.2-0.0625.7174.0018.0354.00 Note) 1. Peak Result(dBuV/m) = Peak Reading Value(dBuV) + Correction Factor(dB/m) 2. AVG Result(dBuV/m) = Average Reading Value (dBuV) + Correction Factor(dB/m) + DCCF 3. DCCF(Duty Cycle Correction Factor) = 10 x Log(1/Duty Cycle) 4. Correction Factor(dB/m) = Antenna Factor(dB/m) + Cable Factor(dB) – Pre-Amplifier Factor(dB) + Distance Factor (dB) 5. Margin(dB) = (Peak/AVG) Limit (dBuV/m) – (Peak/AVG) Result (dBuV/m) 6. * - indicates frequency in Restricted Band. KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 65 of 80 Band Edge_802.11n(HT20)_2 412 MHz Frequency [MHz] Peak Reading [dBuV] Peak Result [dBuV/m] AVG Reading [dBuV] AVG Result [dBuV/m] DCCF [dB] Height [cm] Pol Azimuth [deg] Corr. [dB/m] Peak Margin [dB] Peak Limit [dBuV/m] AVG Margin [dB] AVG Limit [dBuV/m] *2 356.17847.4546.6135.7035.300.443.00V165.3-0.8427.3974.0018.7054.00 *2 390.00047.3246.5235.7335.370.441.00H229.9-0.8027.4874.0018.6354.00 Note) 1. Peak Result(dBuV/m) = Peak Reading Value(dBuV) + Correction Factor(dB/m) 2. AVG Result(dBuV/m) = Average Reading Value (dBuV) + Correction Factor(dB/m) + DCCF 3. DCCF(Duty Cycle Correction Factor) = 10 x Log(1/Duty Cycle) 4. Correction Factor(dB/m) = Antenna Factor(dB/m) + Cable Factor(dB) – Pre-Amplifier Factor(dB) + Distance Factor (dB) 5. Margin(dB) = (Peak/AVG) Limit (dBuV/m) – (Peak/AVG) Result (dBuV/m) 6. * - indicates frequency in Restricted Band. KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 66 of 80 Band Edge_802.11n(HT20)_2 462 MHz Frequency [MHz] Peak Reading [dBuV] Peak Result [dBuV/m] AVG Reading [dBuV] AVG Result [dBuV/m] DCCF [dB] Height [cm] Pol Azimuth [deg] Corr. [dB/m] Peak Margin [dB] Peak Limit [dBuV/m] AVG Margin [dB] AVG Limit [dBuV/m] *2 483.50047.8847.7535.8636.170.443.00H127.4-0.1326.2574.0017.8354.00 *2 487.24047.6647.5535.6736.000.443.00V215.9-0.1126.4574.0018.0054.00 Note) 1. Peak Result(dBuV/m) = Peak Reading Value(dBuV) + Correction Factor(dB/m) 2. AVG Result(dBuV/m) = Average Reading Value (dBuV) + Correction Factor(dB/m) + DCCF 3. DCCF(Duty Cycle Correction Factor) = 10 x Log(1/Duty Cycle) 4. Correction Factor(dB/m) = Antenna Factor(dB/m) + Cable Factor(dB) – Pre-Amplifier Factor(dB) + Distance Factor (dB) 5. Margin(dB) = (Peak/AVG) Limit (dBuV/m) – (Peak/AVG) Result (dBuV/m) 6. * - indicates frequency in Restricted Band. KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 67 of 80 Band Edge_802.11n(HT40)_2 422 MHz Frequency [MHz] Peak Reading [dBuV] Peak Result [dBuV/m] AVG Reading [dBuV] AVG Result [dBuV/m] DCCF [dB] Height [cm] Pol Azimuth [deg] Corr. [dB/m] Peak Margin [dB] Peak Limit [dBuV/m] AVG Margin [dB] AVG Limit [dBuV/m] *2 348.53947.6046.7535.6935.770.931.00H349.7-0.8527.2574.0018.2354.00 *2 390.00047.8347.0335.9836.110.932.00H158.7-0.8026.9774.0017.8954.00 Note) 1. Peak Result(dBuV/m) = Peak Reading Value(dBuV) + Correction Factor(dB/m) 2. AVG Result(dBuV/m) = Average Reading Value (dBuV) + Correction Factor(dB/m) + DCCF 3. DCCF(Duty Cycle Correction Factor) = 10 x Log(1/Duty Cycle) 4. Correction Factor(dB/m) = Antenna Factor(dB/m) + Cable Factor(dB) – Pre-Amplifier Factor(dB) + Distance Factor (dB) 5. Margin(dB) = (Peak/AVG) Limit (dBuV/m) – (Peak/AVG) Result (dBuV/m) 6. * - indicates frequency in Restricted Band. KIEL2403-YW03402-R01 양식-KIEL-P-20-01K(Rev. 6.0) Page: 68 of 80 Band Edge_802.11n(HT40)_2 452 MHz Frequency [MHz] Peak Reading [dBuV] Peak Result [dBuV/m] AVG Reading [dBuV] AVG Result [dBuV/m] DCCF [dB] Height [cm] Pol Azimuth [deg] Corr. [dB/m] Peak Margin [dB] Peak Limit [dBuV/m] AVG Margin [dB] AVG Limit [dBuV/m] *2 483.50048.5948.4636.2137.010.933.00H134.0-0.1325.5474.0016.9954.00 *2 488.53947.9047.793…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 3 | 15C | 2.42 GHz - 2.45 GHz | 4.60 mW |

AutoPro Dual
Equipment Class
PCB - PCS Licensed Transmitter