
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Technodirectvzla c.a (top electronics) Federal Communications Commission Authorization and Evaluation Division Equipment Authorization Branch 7435 Oakland Mills Road Columbia, MD 21046 [January 16, 2026] U.S. Agent Designation [Technodirectvzla c.a (top electronics)] acknowledges their consent for the following contact located in the United States to act as their agent for service of process for the equipment for which authorization is sought FCC ID: 2BUGE-F680A Name and company of U.S. agent: [GLOCERTS TECHNOLOGY INC] Physical U.S. address of agent: [19784 SUNKISSED RIDGE DR, RIVERSIDE, CA 92507] FRN of U.S. agent: [0036339737] Email address of U.S. agent: [[email protected]] Telephone of U.S.agent: (626) 588-8039 [GLOCERTS TECHNOLOGY INC] acknowledges their obligation to accept service of process on behalf of [Technodirectvzla c.a (top electronics)]. [Technodirectvzla c.a (top electronics)] with the FRN [0037859568] accepts its obligation to maintain an agent for service of process in the United States for no less than 1 year after either the grantee has permanently terminated all marketing and importation of the applicable equipment within the U.S., or the conclusion of any Commission-related administrative or judicial proceeding involving the equipment, whichever is later. By signing this form, we confirm the above and that we are aware of the application requirements listed under § 2.911(d)(7). The information provided in this letter is based on the referenced rule parts of Title 47 of the CFR as well as KDB 986446 D01. Sincerely, Signature Signature [Chen Caimei] [Huiying Fan] [Staff] [Director] [Technodirectvzla c.a (top electronics)] [GLOCERTS TECHNOLOGY INC]
Technodirectvzla c.a (top electronics) (January 15, 2026) Eurofins Electrical and Electronic Testing NA, Inc. 914 West Patapsco Avenue Baltimore, MD 21230 RE: Attestation Statements Part 2.911(d)(5)(i) request for FCC ID: 2BUGE-F680A [Technodirectvzla c.a (top electronics)] (“the applicant”) certifies that the equipment for which authorization is sought is not “covered” equipment prohibited from receiving an equipment authorization pursuant to section 2.903 of the FCC rules. We also certify that, as of the date of the filing of the application, the equipment does not utilize cyber-security or anti-virus software from Kaspersky Lab, Inc, or any of its successors and assignees, which is also on the “covered list”. Sincerely, (Applicant signature) (Applicant printed name) Chen Caimei Technodirectvzla c.a (top electronics) (January 15, 2026) Eurofins Electrical and Electronic Testing NA, Inc. 914 West Patapsco Avenue Baltimore, MD 21230 RE: Attestation Statements Part 2.911(d)(5)(ii) request for FCC ID: 2BUGE-F680A [Technodirectvzla c.a (top electronics)] (“the applicant”) 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 signature) (Applicant printed name) Chen Caimei
Technodirectvzla c.a (top electronics) (January 23, 2026) Eurofins Electrical and Electronic Testing NA, Inc. 914 West Patapsco Avenue Baltimore, MD 21230 RE: CONFIDENTIALITY REQUEST FOR (Wireless router / F680A / FCC ID: 2BUGE-F680A ) To Whom It May Concern: This letter serves as an official request for confidentiality under sections 0.457 and 0.459 of CFR 47. We have requested that the Exhibits Long-Term Confidentiality Short-Term Confidentiality NOTE 2 ID Label/Location No No Attestation Statement No No External Photos No ☐ Block Diagram ☒ ☐ Schematics ☒ ☐ Test Report No No Test Setup Photos No ☐ User’s Manual ☐ NOTE 1 ☒ Internal Photos ☐ NOTE 1 ☒ Parts List / Tune Up ☐ ☐ RF Exposure Info No No Operational Description ☒ ☐ Cover Letter(s) No No SDR Software / Security Info ☒ No required to be submitted with this application be permanently withheld from public review. Above mentioned document contains detailed system and equipment description are considered as proprietary information in operation of the equipment. The public disclosure of above documents might be harmful to our company and would give competitor an unfair advantage in the market. Please contact me if there is any information you may need. Sincerely, Signature: Name: Chen Caimei Title: Staff
Technodirectvzla c.a (top electronics) (January 12, 2026) Eurofins Electrical and Electronic Testing NA, Inc. 914 West Patapsco Avenue Baltimore, MD 21230 RE: LETTER OF AGENT AUTHORIZATION To Whom It May Concern: We, the undersigned, hereby authorize (Shenzhen CTB Testing Technology Co., Ltd.) to act on our behalf in all matters relating to application for equipment authorization, including the signing of all documents relating to these matters. We also hereby certify that no party to the application authorized hereunder is subject to the denial of benefits, including FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C.853(a). This agreement expires one year from the current date. Sincerely, Signature: Name: Chen Caimei Title: Staff
Shenzhen CTB Testing Technology Co., Ltd. Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 1 of 4 Model: F680A External Photos Shenzhen CTB Testing Technology Co., Ltd. Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 2 of 4 WIFI ANT1 WIFI ANT2 Shenzhen CTB Testing Technology Co., Ltd. Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 3 of 4 Shenzhen CTB Testing Technology Co., Ltd. Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 4 of 4
FCC ID LABEL: Label Location: FCC ID: 2BUGE-F680A Model No.: F680A
Operational Description wifi: F680A Wireless router uses MT7612EN chip and MT7603EN Chip. The whole wifi protocol architecture can be divided into three parts: the bottom hardware module, the middle protocol layer and the high-end application layer. The external circuit consists of antenna RF matching circuit, 40MHz oscillation circuit, power filter circuit and output circuit, KEY function key PIO circuit and LED indicator lamp 2.4GWIFI Operation Frequency: 2412-2462 MHz Modulation Type: DSSS, OFDM Number Of Channel 11CH/7 CH Antenna Designation: WiFi (2.4G): External antenna Antenna Gain WiFi (2.4G): Ant1: 5.04dBi Ant2: 4.89dBi Ratings: Input: 100-240V 50/60Hz Output: 12.0V⎓1.0A 5GWIFI Operation Frequency: 5150MHz ~5250MHz 5725MHz ~5850MHz Modulation Type: OFDM Number Of Channel 4CH/5 CH Antenna Designation: WiFi (5G): External antenna Antenna Gain WiFi (5.2G):Ant1: 4.67dBi Ant2: 4.55dBi WiFi (5.8G):Ant1: 5.05dBi Ant2: 5.01dBi Ratings: Input: 100-240V 50/60Hz Output: 12.0V⎓1.0A
FCC §15.247 (i), §2.1091 – RF Exposure FCC ID: 2BUGE-F680A Applied procedures / limit According to FCC §15.247(i) and §1.1307(b)(1), systems operating under the provisions of this section shall be operated in a manner that ensures that the public is not exposed to radio frequency energy level in excess of the Commission’s guidelines. Limits for Occupational / Controlled Exposure Frequency Range (MHz) Electric Field Strength (E) (V/m) Magnetic Field Strength (H) (A/m) Power Density (S) (mW/ cm 2 ) Averaging Time |E| 2 ,|H| 2 or S (minutes) 0.3-3.0 614 1.63 (100)* 6 3.0-30 1842 / f 4.89 / f (900 / f)* 6 30-300 61.4 0.163 1.0 6 300-1500 F/300 6 1500-100,000 5 6 Note: ƒ is frequency in MHz * = Power density limit is applicable at frequencies greater than 100 MHz Limits for General Population / Uncontrolled Exposure Frequency Range (MHz) Electric Field Strength (E) (V/m) Magnetic Field Strength (H) (A/m) Power Density (S) (mW/ cm 2 ) Averaging Time |E| 2 ,|H| 2 or S (minutes) 0.3-1.34 614 1.63 (100)* 30 1.34-30 824/f 2.19/f (180/f)* 30 30-300 27.5 0.073 0.2 30 300-1500 F/1500 30 1500-100,000 1.0 30 Note: f = frequency in MHz * = Plane-wave equivalent power density MPE PREDICTION Predication of MPE limit at a given distance, Equation from OET Bulletin 65, Edition 97-01 Where: S = power density P = power input to antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna,R=20cm Test Result of RF Exposure Evaluation Modes& Channel Freq. (MHz) Tune up Produce power Maximu m peak output power (dBm) Output power to antenna (mW) Antenna Gain (numeric) Power Density (S) (mW/ cm2) Limit (mW / cm2 ) Result 2.4G WIFI ANT1 802.11b&2 462 14±1 15 31.6228 3.1915 (5.04dBi) 0.02 1 Pass 2.4G WIFI ANT2 802.11g&2 462 14±1 15 31.6228 3.0832 (4.89dBi) 0.0194 1 Pass 5.2GWIFI ANT1 802.11a&5 240 15±1 16 39.8107 2.9309 (4.67dBi) 0.0232 1 Pass 5.2GWIFI ANT2 802.11n(H T40)& 5230 15±1 16 39.8107 2.8510 (4.55dBi) 0.0226 1 Pass 5.8GWIFI ANT1 802.11ac2 0&5825 14±1 15 31.6228 3.1989 (5.05dBi) 0.0201 1 Pass 5.8GWIFI ANT2 802.11a&5 825 13±1 14 25.1189 3.1696 (5.01dBi) 0.0158 1 Pass For the Max simultaneous transmission MPE: When a number of sources at different frequencies, and/or broadband sources, contribute to the total exposure, it becomes necessary to weigh each contribution relative to the MPE in accordance with the provisions of Table (A) and Table (B). To comply with the MPE, the fraction of the MPE in terms of E2, H2 (or power density) incurred within each frequency interval should be determined and the sum of all such fractions should not exceed unity. In order to ensure compliance with the MPE for a controlled environment, the sum of the ratios of the power density to the corresponding MPE should not exceed unity. That is Tech nolo gy Tune up Produce power(dBm) Maximum Tune-up (dBm) Antenna Gain(ANT 1/ANT 2) (numeric) Power Density (S) (mW/ cm2) MPE Limit (mW/ cm2) ∑ MPE Ratio ∑ MPE Ratio Limit Result ANT 1 ANT 2 ANT 1 ANT 2 ANT 1 ANT 2 2.4G WIFI MIM O 14 ±1 14 ±1 15 15 ANT1: 3.1915 (5.04dBi) ANT2: 3.0832 (4.89dBi) 0.02 0.0194 1 0.0394 1 Pass Tech nolo gy Tune up Produce power(dBm) Maximum Tune-up (dBm) Antenna Gain(ANT 1/ANT 2) (numeric) Power Density (S) (mW/ cm2) MPE Limit (mW/ cm2) ∑ MPE Ratio ∑ MPE Ratio Limit Result ANT 1 ANT 2 ANT 1 ANT 2 ANT 1 ANT 2 5G WIFI MIM O 15 ±1 15 ±1 16 16 ANT1: 2.9309 (4.67dBi) ANT2: 2.8510 (4.55dBi) 0.0232 0.0226 1 0.0458 1 Pass
Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 66 of 89 802.11ac(VHT40)-5190 802.11ac(VHT40)-5230 802.11ac(VHT80)-5210 802.11n(HT20)-5180 802.11n(HT20)-5200 802.11n(HT20)-5240 Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 67 of 89 802.11n(HT40)-5190 802.11n(HT40)-5230 Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 68 of 89 5745-5825MHz ANT 1: 802.11a-5745 802.11a-5785 802.11a-5825 802.11ac(VHT20)-5745 802.11ac(VHT20)-5785 802.11ac(VHT20)-5825 802.11ac(VHT40)-5755 802.11ac(VHT40)-5795 Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 69 of 89 802.11ac(VHT80)-5775 802.11n(HT20)-5745 802.11n(HT20)-5785 802.11n(HT20)-5825 5802.11n(HT40)-5755 802.11n(HT40)-5795 Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 70 of 89 ANT2: 802.11a-5745 802.11a-5785 802.11a-5825 802.11ac(VHT20)-5745 802.11ac(VHT20)-5785 802.11ac(VHT20)-5825 Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 71 of 89 802.11ac(VHT40)-5755 802.11ac(VHT40)-5795 802.11ac(VHT80)-5775 802.11n(HT20)-5745 802.11n(HT20)-5785 802.11n(HT20)-5825 Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 72 of 89 5802.11n(HT40)-5755 802.11n(HT40)-5795 Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 73 of 89 12. FREQUENCY STABILITY 12.1 Block Diagram Of Test Setup 12.2 Limit Manufacturers of U-NII devices are responsible for ensuring frequency stability such that an emission is maintained within the band of operation under all conditions of normal operation as specified in the user’s manual. 12.3 Test procedure 1. The EUT was placed inside temperature chamber and powered and powered by nominal DC voltage. 2. Set EUT as normal operation. 3. Turn the EUT on and couple its output to spectrum. 4. Turn the EUT off and set the chamber to the highest temperature specified. 5. Allow sufficient time (approximately 30 min) for the temperature of the chamber to stabilize, turn the EUT and measure the operating frequency. 6. Repeat step with the temperature chamber set to the lowest temperature. 12.4 Test Result EUT Radio Test System Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 74 of 89 ANT1: TX Frequency (5150-5250MHz) Voltage vs. Frequency Stability V nom (V)1205180.005351800.00531.0180 V max (V)1325180.012051800.01202.3129 V min (V)1085180.121451800.121423.4375 Limits ±20ppm Result Complies T nom (°C) 20 ffc Max. Deviation (MHz) Max. Deviation (ppm) TEST CONDITIONS Reference Frequency:5180MHz Temperature vs. Frequency Stability T (°C)05180.044451800.04448.5756 T (°C)105180.018751800.01873.6172 T (°C)205180.038851800.03887.4846 T (°C)305180.026351800.02635.0838 T (°C)405180.042951800.04298.2891 Limits ±20ppm Result Complies V nom (V) 120 ffc Max. Deviation (MHz) Max. Deviation (ppm) TEST CONDITIONS Reference Frequency:5180MHz Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 75 of 89 Voltage vs. Frequency Stability V nom (V)1205200.043952000.04398.4331 V max (V) 1325200.0532 5200 0.053210.2332 V min (V)1085200.0186 5200 0.01863.5731 Limits ±20ppm Result Complies T nom (°C) 20 ffc Max. Deviation (MHz) Max. Deviation (ppm) TEST CONDITIONS Reference Frequency:5200MHz Temperature vs. Frequency Stability T (°C)05200.0299 5200 0.02995.7516 T (°C)105200.0387 5200 0.03877.4505 T (°C)205200.0340 5200 0.03406.5338 T (°C)305200.0191 5200 0.01913.6784 T (°C)405200.0338 5200 0.03386.5082 ffc Max. Deviation (MHz) Max. Deviation (ppm) TEST CONDITIONS Reference Frequency:5200MHz Limits ±20ppm Result Complies V nom (V) 120 Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 76 of 89 Voltage vs. Frequency Stability V nom (V)1205240.046952400.04698.9576 V max (V) 1325240.028252400.02825.3813 V min (V)1085240.003352400.00330.6358 Limits ±20ppm Result Complies T nom (°C) 20 ffc Max. Deviation (MHz) Max. Deviation (ppm) TEST CONDITIONS Reference Frequency:5240MHz Temperature vs. Frequency Stability T (°C)05240.052252400.05229.9680 T (°C)105240.032852400.03286.2517 T (°C)205240.044252400.04428.4366 T (°C)305240.035452400.03546.7554 T (°C)405240.018752400.01873.5627 Limits ±20ppm Result Complies V nom (V) 120 ffc Max. Deviation (MHz) Max. Deviation (ppm) TEST CONDITIONS Reference Frequency:5240MHz Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 77 of 89 ANT2: TX Frequency (5150-5250MHz) Voltage vs. Frequency Stability V nom (V)1205180.054951800.054910.6026 V max (V)1325180.071451800.071413.7849 V min (V)1085180.045551800.04558.7863 Limits ±20ppm Result Complies T nom (°C) 20 ffc Max. Deviation (MHz) Max. Deviation (ppm) TEST CONDITIONS Reference Frequency:5180MHz Temperature vs. Frequency Stability T (°C)05180.057951800.057911.1705 T (°C)105180.090451800.090417.4567 T (°C)205180.067051800.067012.9266 T (°C)305180.060851800.060811.7337 T (°C)405180.052851800.052810.2001 ffc Max. Deviation (MHz) Max. Deviation (ppm) TEST CONDITIONS Reference Frequency:5180MHz Limits ±20ppm Result Complies V nom (V) 120 Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 78 of 89 Voltage vs. Frequency Stability V nom (V)1205200.024252000.02424.6525 V max…
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产品规格书 Product Specification IPEX-1.13 gray -2.4G / 5.8G white bendable knife-edge rubber rod antenna - Outgoing line L170MM 客户名称 Customer Name: 项目名称 Project Name: 规格描述 Product Spec:YT-2.4G-SMAJ-1M 供方料号 Supplier P/N: 版V1.1 日 本 REV: 期 Date:2020/03/12 客户承认 Customer Approve 制 作 drawing 审 核 check 批 准 approved 黄勇军王玉美蒋振华 审 核 check 批 准 approved 承 认 approval Manufacturer: ChangzhouMingxiaoNetworkTechnologyCo., Ltd. Manufacturer's Address: Boji Zhiyangu 4#502, ZouDistrict, ZhonglouDistrict, ChangzhouCity, Jiangsu Province 1.Test picture 2.VSWR test ANT1 ANT2: 3.PeakGain(dBi)&Efficiency(%) ANT1: ANT2: ANT2: 4.3D Radiation Pattern ANT1: 5.2D Radiation Pattern ANT1: ANT2: APPROVED DATE DESCRIPTION REV F E D C B 8 7 6 54 3 2 1 A 产品名称(Product Name) 单位(UNIT) mm 一般公差(GENERAL TOLERANCES) 0~1 ±0.1 1~10 ±0.3 30~100 ±1 10~30 ±0.8 ( UNLESS OTHERWISE SPECIFIED ) 100~300 ±2 X° ±1° X.X° ±0.5° 8 7 654 3 2 1 F E D C B A 客户料号(CUS No.) 产品料号(Product No.) 首版日期 (Original Date) 图形名称(Draw Name) 版本(REV) 比例(Scale) 幅面(Size) 页/次(Sheet) 绘图(Draw Name) 审核(Checked) 核准(APPROVED) 尺寸(Dimension) 角度(Angles) 1 2 3 4 No. Name Description Q'ty Part No. 1 5 RoHSCompliant 1 1 1 6 产品图 1/1 A4 A0 2026-01-14 IPEX-1.13灰-2.4G/5.8G白色可折弯刀口胶棒天线-出线L170MM A01 IPEXIPEX-1.13线端 白色下座-卡扣式 下座 胶套 L177MM 白色刀口胶棒 要求: 1.天线外被无破皮.损伤 2.成品须100%测试导通OK 3.成品须100%全检OK. 4.采用环保制程,符合ROHS要求. 5.未注公差请以一般公差为准. 测试条件: 高压:200V DC 导通:0.5 OHM MAX 高压时间:1mS 绝缘阻抗:10M OHM MIN 线材 1.13灰色线 江荣祯 ∅15±0.5 18±0.5 177±2 90° 3 ∅9.5±0.2 170±3 2 1IPEX 1.13灰色线 4 50Ω 50W ≤2.5 ≤5dBi 特性阻抗 最大功率 驻波比 增益 频率范围 2.4G/5.8G 195±3
Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 1 of 89 TEST REPORT Compiled by: Reviewed by: Approved by: Kai Chen Martin Feng Bin Mei / Director Note: If there is any objection to the inspection results in this report, please submit a written report to the company within 15 days from the date of receiving the report. The test report is effective only with both signature and specialized stamp. This result(s) shown in this report refer only to the sample(s) tested. Without written approval of Shenzhen CTB Testing Technology Co., Ltd. this report can’t be reproduced except in full. The tested sample(s) and the sample information are provided by the client. “*” indicates the testing items were fulfilled by subcontracted lab. “#” indicates the items are not in CNAS accreditation scope. Test item description: Wireless router FCC ID: 2BUGE-F680A Trademark(s): Model/Type reference: F680A Applicant’s name: Technodirectvzla c.a (top electronics) Address: AV SALVADOR FEO LA CRUZ EDIF TORRE CRISTAL PISO 1 OF 1-4 URB LAS QUINTAS DE NAGUANAGUA NAGUANAGUA CARABOBO ZONA POSTAL 2005 Manufacturer: ChangzhouMingxiaoNetworkTechnologyCo., Ltd. Address: Boji Zhiyangu 4#502, ZouDistrict, ZhonglouDistrict, ChangzhouCity, Jiangsu Province Prepared By: Shenzhen CTB Testing Technology Co., Ltd. Address: 1&2/F., Building A, No.26, Xinhe Road, Xinqiao, Xinqiao Street, Bao'an District, Shenzhen, Guangdong, China Sample Received Date: Oct. 23, 2025 Sample tested Date: Oct. 23, 2025 to Dec. 01, 2025 Issue Date: Dec. 01, 2025 Report No.: CTB25102309205RF02 Test Standards FCC CFR Title 47 Part 15 Subpart E Section 15.407 Test Results PASS Remark: This is WIFI-5GHz band radio test report. Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 2 of 89 TABLE OF CONTENT Test Report Declaration Page 1. VERSION ....................................................................................................................... 4 2. TEST SUMMARY .......................................................................................................... 5 3. MEASUREMENT UNCERTAINTY .............................................................................. 6 4. PRODUCT INFORMATION AND TEST SETUP ....................................................... 7 4.1 Product Information ................................................................................................................. 7 4.2 Test Setup Configuration ....................................................................................................... 7 4.3 Support Equipment .................................................................................................................. 7 4.5 Test Mode .................................................................................................................................. 8 4.6 Test Environment ..................................................................................................................... 9 5. TEST FACILITY AND TEST INSTRUMENT USED ............................................... 10 5.1 Test Facility.............................................................................................................................. 10 5.2 Test Instrument Used ........................................................................................................... 10 6. AC POWER LINE CONDUCTED EMISSION ......................................................... 13 6.1 Block Diagram Of Test Setup ............................................................................................. 13 6.2 Limit ........................................................................................................................................... 13 6.3 Test procedure ........................................................................................................................ 13 6.4 Test Result ............................................................................................................................... 15 7. RADIATED SPURIOUS EMISSIONS ...................................................................... 17 7.1 Block Diagram Of Test Setup ............................................................................................. 17 7.2 Limit ........................................................................................................................................... 17 7.3 Test procedure ........................................................................................................................ 18 7.4 Test Result ............................................................................................................................... 19 8. BAND EDGE ............................................................................................................... 24 8.1 Block Diagram Of Test Setup ............................................................................................. 24 8.2 Limit ........................................................................................................................................... 24 8.3 Test procedure ........................................................................................................................ 24 8.4 Test Result ............................................................................................................................... 25 9. CONDUCTED OUTPUT POWER ............................................................................ 33 9.1 Block Diagram Of Test Setup ............................................................................................. 33 9.2 Limit ........................................................................................................................................... 33 Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 3 of 89 9.3 Tes…
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Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 28 of 89 802.11n(HT40)-5190 802.11n(HT40)-5230 802.11ac(VH80)-5210 Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 29 of 89 ANT1: 802.11a-5745 802.11a-5825 802.11(ac20)-5745 802.11(ac20)-5825 802.11(ac40)-5755 802.11(ac40)-5795 802.11n(HT20)-5745 802.11n(HT20)-5825 Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 30 of 89 802.11n(HT40)-5755 802.11n(HT40)-5795 802.11ac(VHT80)-5775 Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 31 of 89 ANT2: 802.11a-5745 802.11a-5825 802.11(ac20)-5745 802.11(ac20)-5825 802.11(ac40)-5755 802.11(ac40)-5795 802.11n(HT20)-5745 802.11n(HT20)-5825 Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 32 of 89 802.11n(HT40)-5755 802.11n(HT40)-5795 802.11ac(VHT80)-5775 Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 33 of 89 9. CONDUCTED OUTPUT POWER 9.1 Block Diagram Of Test Setup 9.2 Limit (1) For the band 5.15-5.25 GHz. (i) For an outdoor access point operating in the band 5.15-5.25 GHz, the maximum conducted output power over the frequency band of operation shall not exceed 1 W provided the maximum antenna gain does not exceed 6 dBi. In addition, the maximum power spectral density shall not exceed 17 dBm in any 1 megahertz band. If transmitting antennas of directional gain greater than 6 dBi are used, both the maximum conducted output power and the maximum power spectral density shall be reduced by the amount in dB that the directional gain of the antenna exceeds 6 dBi. The maximum e.i.r.p. at any elevation angle above 30 degrees as measured from the horizon must not exceed 125 mW (21 dBm). (ii) For an indoor access point operating in the band 5.15-5.25 GHz, the maximum conducted output power over the frequency band of operation shall not exceed 1 W provided the maximum antenna gain does not exceed 6 dBi. In addition,the maximum power spectral density shall not exceed 17 dBm in any 1 megahertz band. If transmitting antennas of directional gain greater than 6 dBi are used, both the maximum conducted output power and the maximum power spectral density shall be reduced by the amount in dB that the directional gain of the antenna exceeds 6 dBi. (iii) For fixed point-to-point access points operating in the band 5.15-5.25 GHz, the maximum conducted output power over the frequency band of operation shall not exceed 1 W. In addition, the maximum power spectral density shall not exceed 17 dBm in any 1 megahertz band. Fixed point-to-point U-NII devices may employ antennas with directional gain up to 23 dBi without any corresponding reduction in the maximum conducted output power or maximum power spectral density. For fixed point-to-point transmitters that employ a directional antenna gain greater than 23 dBi, a 1 dB reduction in maximum conducted output power and maximum power spectral density is required for each 1 dB of antenna gain in excess of 23 dBi. Fixed, point-to-point operations exclude the use of point-to-multipoint systems, omnidirectional applications, and multiple collocated transmitters transmitting the same information. The operator of the U-NII device, or if the equipment is professionally installed, the installer, is responsible for ensuring that systems employing high gain directional antennas are used exclusively for fixed, point-to-point operations. (iv) For mobile and portable client devices in the 5.15-5.25 GHz band, the maximum conducted output power over the frequency band of operation shall not exceed 250 mW provided the maximum antenna gain does not exceed 6 dBi. In addition, the maximum power spectral density shall not exceed 11 dBm in any 1 megahertz band. If transmitting antennas of directional gain greater than 6 dBi are used, both the maximum conducted output power and the maximum power spectral density shall be reduced by the amount in dB that the directional gain of the antenna exceeds 6 dBi. (2) For the 5.25-5.35 GHz and 5.47-5.725 GHz bands, the maximum conducted output power over the frequency bands of operation shall not exceed the lesser of 250 mW or 11 dBm + 10 log B, where B is the 26 dB emission bandwidth in megahertz. In addition, the maximum power spectral density shall not exceed 11 dBm in any 1 megahertz band. If transmitting antennas of directional gain greater than 6 dBi are used, both the maximum conducted output power and the maximum power spectral density shall be reduced by the amount in dB that the directional gain of the antenna exceeds 6 dBi. (4) The maximum conducted output power must be measured over any interval of continuous transmission using instrumentation calibrated in terms of an rms-equivalent voltage. (5) The maximum power spectral density is measured as a conducted emission by direct connection of a calibrated test instrument to the equipment under test. If the device cannot be connected directly, alternative techniques acceptable to the Commission may be used. Measurements in the 5.725-5.85 GHz band are made over a reference bandwidth of 500 kHz or the 26 dB emission bandwidth of the device, whichever is less. Measurements in the 5.15-5.25 GHz, 5.25-5.35 GHz, and the 5.47-5.725 GHz bands are made over a EUT Radio Test System Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 34 of 89 bandwidth of 1 MHz or the 26 dB emission bandwidth of the device, whichever is less. A narrower resolution bandwidth can be used, provided that the measured power is integrated over the full reference bandwidth. (h)…
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Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 40 of 89 802.11n(HT40)-5190 802.11n(HT40)-5230 Shenzhen CTB Testing Technology Co., Ltd. Report No.: CTB25102309205RF02 Report Tel: 4008-707-283 Web: http://www.ctb-lab.net Page 41 of 89 5745-5825MHz ANT 1: 802.11a-5745 802.11a-5785 802.1…
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19784 SUNKISSED RIDGE DR, · RIVERSIDE, California, 92507 · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15E | 5.18 GHz - 5.24 GHz | 68.63 mW |
| 2 | 15E | 5.75 GHz - 5.83 GHz | 48.56 mW |