Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Declaration Letter Date: October 8 th , 2024 FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Innovation, Science and Economic Development Canada Certification and Engineering Bureau P.O. Box 11490, Station ‘H’ 3701 Carling Ave., Building 94 Ottawa, Ontario K2H 8S2 Canada Dear Sir/Madam, We, Airvine Scientific, Inc., hereby declare that for our product, Airvine WaveCore Indoor Wireless Bridge, model: 1000RH-US with FCC ID: 2BAAIWC-1000RH-US00 and IC: 30790- 1000RHUS has two radios (2.4 GHz radio and 6 GHz radio). There are two chains for 2.4 GHz radio, however, in final product, the antenna is only connected to Chain0 port and Chain1 port is only a backup port. We will disable 2.4 GHz radio Chain1 via built-in software. Sincerely, Robert Olstad Sr. Director of Product Management +1 925-297-7725 [email protected] Airvine Scientific, Inc. 1500 Wyatt Drive, Suite #9 Santa Clara, CA 95054, USA
Attestation Letter Date: October 8 th , 2024 FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Ref: Attestation Statements per KDB 987594 D01 U-NII 6GHz General Requirements v02r02 We, Airvine Scientific, Inc., attest that this device under FCC ID: 2BAAIWC-1000RH-US00 complies with device protocol requirements and operational restrictions: for Indoor Access Point 6ID. 1. Device Protocol Attestation Statement: The Low-power indoor access point’s Transmit Power Envelope (TPE) element has information fields for power limits for connecting client/subordinate devices. The TPE information is contained in the device signals that are used by connecting client/subordinate devices to ensure that each device knows the regulatory TX powers it is allowed to transmit at. There is a regulatory info field in the access point’s device beacon and probe response frames which details this device type when the client/subordinate associates to the access point device. 2. Statement acknowledging device restrictions: a. Low-power indoor Access Point. Access Point operating in the 5.925-7.125 GHz band shall be supplied power from a wired connection, has an integrated antenna, is not battery- powered, and does not have a weatherized enclosure. b. This device's operation will not be allowed on oil platforms, cars, trains, boats, and aircraft, except that operation of this device is permitted in large aircraft while flying above 10,000 feet only in the 5.925- 6.425 GHz band. c. Indoor access points are prohibited for control of or communications with unmanned aircraft systems, including drones. Sincerely, Robert Olstad Sr. Director of Product Management +1 925-297-7725 [email protected] Airvine Scientific, Inc. 1500 Wyatt Drive, Suite #9 Santa Clara, CA 95054, USA
CFR 47 §2.911(d)(5)(i) Attestation Letter Attestation Letter Date: Sept 10 th , 2024 FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Ref: Attestation Statements CFR 47 §2.911(d)(5)(i) Filing FCC ID: 2BAAIWC-1000RH-US00 Airvine Scientific, Inc. (“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. Sincerely, Robert Olstad Sr. Director of Product Management 669-231-4318 [email protected] Airvine Scientific, Inc. 1500 Wyatt Drive, Suite #9 Santa Clara, CA 95054, USA
CFR 47 §2.911 (d)(5)(ii) Attestation Letter Attestation Letter Date: Sept 10 th , 2024 FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 R ef: Attestation Statements CFR 47 §2.911(d)(5)(ii) Filing FCC ID: 2BAAIWC-1000RH-US00 Airvine Scientific, Inc. (“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, Robert Olstad Sr. Director of Product Management 669-231-4318 [email protected] Airvine Scientific, Inc. 1500 Wyatt Drive, Suite #9 Santa Clara, CA 95054, USA
1500 Wyatt Drive, Suite 9, Santa Clara, CA 95054 ∙ Phone: 669/231-4318 ∙ Fax: 669/231-4398 ∙ www.airvine.com Attestation Letter for Agent S ept 24 th , 2024 FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Ref: Attestation Statements Part 2.911 (d)(7) Filing FCC ID: 2BAAIWC-1000RH-US00 Airvine Scientific, Inc. certifies that, as of the date of the filing of the application, Airvine Scientific, Inc. is our designated U.S. agent for service of process for the above referenced FCC ID: 2BAAIWC-1000RH-US00. Airvine Scientific, Inc. 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 proceeding involving the equipment. Airvine Scientific, Inc. accepts, as of the date of the filing of the application, the obligation of the designated U.S. agent for service of process for the above referenced FCC ID. Designated U.S. Agent Information: Company name: Airvine Scientific, Inc. (FRN: 0033250523) Address: 1500 Wyatt Drive, Suite #9, Santa Clara, CA 95054, USA Contact person: Robert Olstad Tel: +1 699-231-4318 Email: [email protected] Sincerely, Applicant Name Airvine Scientific, Inc. Applicant Printed Name Robert Olstad
1500 Wyatt Drive, Suite 9, Santa Clara, CA 95054 ∙ Phone: 669/231-4318 ∙ Fax: 669/231-4398 ∙ www.airvine.com Sept 10 th , 2024 FEDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: Agent Authorization To whom it may concern: We Airvine Scientific, Inc., the undersigned, Hereby authorizes Bay Area Compliance Laboratories Inc. to act on its behalf in all matters relating to application for Equipment authorization, including the signing of all documents relating to these matters. All acts carried out by Bay Area Compliance Laboratories Inc. on our behalf shall have the same effect as our own action. We, the undersigned, hereby certify that we are not subject to a denial of federal benefits, that includes FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 862. This authorization is valid until further written notice from the applicant. Sincerely Yours, Robert Olstad Sr. Director of Product Management 669-231-4318 [email protected] Airvine Scientific, Inc. 1500 Wyatt Drive, Suite #9 Santa Clara, CA 95054, USA
QA-FR-172-A FCC Confidential Authorization Sept 9, 2024 F EDERAL COMMUNICATIONS COMMISSIONS Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: C onfidentiality Request regarding application for certification of FC C ID: 2BAAIWC-1000RH-US00 In accordance with Sections 0.457 and 0.459 of the Commission’s Rules, Airvine Scientific, Inc., hereby requests long-term confidential treatment of information accompanying this application as outlined below: •Block Diagram •Schematics •Operation Description •U-NII Software Security Declaration As well as short-term confidential treatment of information accompanying this application as outlined below: •Internal Photos •User’s Manual •External Photos •Test Set-up Photos The above materials contain proprietary and confidential information not customarily released to the public. The public disclosure of these materials provides unjustified benefits to its competitors in the market. S incerely, R obert Olstad Sr. Director of Product Management 669-231-4318 [email protected] Airvine Scientific, Inc. 1500 Wyatt Drive, Suite #9, Santa Clara, CA 95054, USA
Product Label Placement - US Version Label #1
Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 15 of 94 FCC Part 15.407/ISEDC RSS-248 Test Report 5 FCC §2.1091, FCC §15.407(f) & ISEDC RSS-102 – RF Exposure 5.1 Applicable Standards As per FCC §15.407(f) Radio frequency devices operating under the provisions of this part are subject to the radio frequency radiation exposure requirements specified in §§ 1.1307(b), 1.1310, 2.1091, and 2.1093 of this chapter, as appropriate. All equipment shall be considered to operate in a “general population/uncontrolled” environment. Applications for equipment authorization of mobile or portable devices operating under this section must contain a statement confirming compliance with these requirements. Technical information showing the basis for this statement must be submitted to the Commission upon request. As per FCC §1.1310(d) (3), At operating frequencies above 6 GHz, the MPE limits listed in Table 1 in paragraph (e)(1) of this section shall be used in all cases to evaluate the environmental impact of human exposure to RF radiation as specified in §1.1307(b) of this part. TABLE 1 TO §1.1310(E)(1)—LIMITS FOR MAXIMUM PERMISSIBLE EXPOSURE (MPE) Frequency range (MHz) Electric field strength (V/m) Magnetic field strength (A/m) Power density (mW/cm 2 ) Averaging time (minutes) (i) Limits for Occupational/Controlled Exposure 0.3-3.0 614 1.63 *(100) ≤ 6 3.0-30 1842/f 4.89/f *(900/f 2 ) < 6 30-300 61.4 0.163 1.0 < 6 300-1,500 f/300 < 6 1,500-100,000 5 < 6 (ii) Limits for General Population/Uncontrolled Exposure 0.3-1.34 614 1.63 *(100) < 30 1.34-30 824/f 2.19/f *(180/f 2 ) < 30 30-300 27.5 0.073 0.2 < 30 300-1,500 f/1500 < 30 1,500-100,000 1.0 < 30 f = frequency in MHz. * = Plane-wave equivalent power density. Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 16 of 94 FCC Part 15.407/ISEDC RSS-248 Test Report According to ISEDC RSS-102 Issue 6 Section 6.6: Field reference level exposure exemption limits Field reference level (FRL) exposure evaluation is required if the separation distance between the user and/or bystander and the device’s radiating element is greater than 20 cm (i.e. mobile devices), except when the device operates as follows: below 20 MHz and the source-based, time-averaged maximum EIRP of the device is equal to or less than 1 W (adjusted for tune-up tolerance) at or above 20 MHz and below 48 MHz and the source-based, time-averaged maximum EIRP of the device is equal to or less than 4.49/ƒ0.5W (adjusted for tune-up tolerance), where ƒ is in MHz at or above 48 MHz and below 300 MHz and the source-based, time-averaged maximum EIRP of the device is equal to or less than 0.6 W (adjusted for tune-up tolerance) at or above 300 MHz and below 6 GHz and the source-based, time-averaged maximum EIRP of the device is equal to or less than 1.31×10−2f0.6834W (adjusted for tune-up tolerance), where ƒ is in MHz at or above 6 GHz and the source-based, time-averaged maximum EIRP of the device is equal to or less than 5 W (adjusted for tune-up tolerance) In these cases, the information contained in the RF exposure technical brief may be limited to information that demonstrates how the EIRP was derived. 5.2 MPE Prediction Predication of MPE limit at a given distance, Equation from OET Bulletin 65, Edition 97-01 S = PG/4R² 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 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 17 of 94 FCC Part 15.407/ISEDC RSS-248 Test Report 5.3 MPE Result for FCC Radio Frequency (MHz) Antenna Gain (dBi) Maximum Power (dBm) Maximum EIRP (dBm) Maximum EIRP (mW) Power Density at 20cm (mW/cm^2) Limit (mW/cm^2) 2.4GHz Wi-Fi 2437 3.6 24.32 27.92 619.44 0.123 1.0 6 GHz Wi-Fi 6105 18.49 - 27.97 626.61 0.125 1.0 The device is compliant with the requirement MPE limit for uncontrolled exposure. The maximum power density at the distance of 20 cm is 0.116 mW/cm 2 for 2.4 GHz Wi-Fi and 0.125 for 6 GHz Wi-Fi. Limit is 1 mW/cm 2 . Worst Case Sum of Ratios: 2.4 GHz Wi-Fi + 6 GHz Wi-Fi = (0.123/1.0) + (0.125/1.0) = 0.248 < 1.0 For the different combination of transmitters, a separation distance of 20 cm complies with the SAR simultaneous transmission limit of ≤ 1.0. 5.4 IC Exemption 2.4 GHz Wi-Fi The EIRP of this device is 27.92 dBm (619.44 mW) which is less than the exemption threshold, i.e., 1.31*10^(- 2) * f^(0.6834) = 2.70 W. Therefore, the RF exposure evaluation is exempt. 6 GHz Wi-Fi The EIRP of this device is 27.97 dBm (626.61 mW) which is less than the exemption threshold, i.e., 5 W. Therefore, the RF exposure evaluation is exempt. Worst Case Sum of Ratios: 2.4 GHz Wi-Fi + 6 GHz Wi-Fi: (0.61944/2.7) + (0.62661/5) = 0.355 < 1.0 Therefore, RF exposure is not required.
3 Hamanor st. Holon 5886103, P.O.Box 1852 Holon 5811801, Israel Tel: +972-3-5599661 Fax: +972-3-5599677 e-mail: [email protected] web: www.mars-antennas.com Airvine WaveCore Antenna Datasheet Part Number: 170-00010-001/2 Sept 2024 Specifications: Electrical and RF Antenna Type 4 Polarity, Directional, Panel Frequency range 5.925 to 7.125 GHz Gain (Typical) 16 dBi Polarization V, H, & Dual Slant ±45 o 3dB Beamwidth Azimuth 18° Maximum 3dB Beamwidth Elevation 38° Maximum Input power, max. 4 Watts Input Impedance 50 Ohm Lightning Protection DC Grounded Mechanical Dimensions (HxW) 220mm x 220mm Cable/Connectors Four Low Loss Coax Cables with MCXX connectors on one end (to 6G RF module) the other end connected to Panel Antenna (solder to antenna is suitable). Environmental and Regulatory Operating Temp -45C to +70C Hazardous Material RoHS 3 Compliant Hazardous Material REACH Compliant (latest revision) Max Humidity 95% (or higher) Safety Suitable for embedded use in a system where the system must be compliance to EN/UL/IEC 62368-1 Safety Standard. 3 Hamanor st. Holon 5886103, P.O.Box 1852 Holon 5811801, Israel Tel: +972-3-5599661 Fax: +972-3-5599677 e-mail: [email protected] web: www.mars-antennas.com Antenna Patterns 3 Hamanor st. Holon 5886103, P.O.Box 1852 Holon 5811801, Israel Tel: +972-3-5599661 Fax: +972-3-5599677 e-mail: [email protected] web: www.mars-antennas.com H Pol Azimuth Peak 17.5 dBi at 7.0 GHz 3 Hamanor st. Holon 5886103, P.O.Box 1852 Holon 5811801, Israel Tel: +972-3-5599661 Fax: +972-3-5599677 e-mail: [email protected] web: www.mars-antennas.com H Pol Elevation Peak 17.5 dBi at 7.0 GHz 3 Hamanor st. Holon 5886103, P.O.Box 1852 Holon 5811801, Israel Tel: +972-3-5599661 Fax: +972-3-5599677 e-mail: [email protected] web: www.mars-antennas.com V Pol Azimuth Peak 18.49 dBi at 6.5 GHz 3 Hamanor st. Holon 5886103, P.O.Box 1852 Holon 5811801, Israel Tel: +972-3-5599661 Fax: +972-3-5599677 e-mail: [email protected] web: www.mars-antennas.com V Pol Elevation Peak 18.49 dBi at 6.5 GHz 3 Hamanor st. Holon 5886103, P.O.Box 1852 Holon 5811801, Israel Tel: +972-3-5599661 Fax: +972-3-5599677 e-mail: [email protected] web: www.mars-antennas.com +45 Pol Azimuth Peak 17.36 dBi at 7.0 GHz 3 Hamanor st. Holon 5886103, P.O.Box 1852 Holon 5811801, Israel Tel: +972-3-5599661 Fax: +972-3-5599677 e-mail: [email protected] web: www.mars-antennas.com +45 Pol Elevation Peak 17.36 dBi at 7.0 GHz 3 Hamanor st. Holon 5886103, P.O.Box 1852 Holon 5811801, Israel Tel: +972-3-5599661 Fax: +972-3-5599677 e-mail: [email protected] web: www.mars-antennas.com -45 Pol Azimuth Peak 18.23 dBi at 7.0 GHz 3 Hamanor st. Holon 5886103, P.O.Box 1852 Holon 5811801, Israel Tel: +972-3-5599661 Fax: +972-3-5599677 e-mail: [email protected] web: www.mars-antennas.com -45 Pol Elevation Peak 18.23 dBi at 7.0 GHz 3 Hamanor st. Holon 5886103, P.O.Box 1852 Holon 5811801, Israel Tel: +972-3-5599661 Fax: +972-3-5599677 e-mail: [email protected] web: www.mars-antennas.com Antenna Picture 3 Hamanor st. Holon 5886103, P.O.Box 1852 Holon 5811801, Israel Tel: +972-3-5599661 Fax: +972-3-5599677 e-mail: [email protected] web: www.mars-antennas.com Front Side Back Side
Note: This test report is prepared for the customer shown above and for the device described herein. It may not be duplicated or used in part without prior written consent from Bay Area Compliance Laboratories Corp. This report must not be used by the customer to claim product certification, approval, or endorsement by A2LA*, NIST, or any agency of the Federal Government. * This report may contain data that are not covered by the A2LA accreditation and are marked with an asterisk “*” (Rev.2) FCC PART 15.407 ISEDC RSS-248, ISSUE 2, DECEMBER 2022 TEST REPORT For Airvine Scientific, Inc. 1500 Wyatt Drive, Suite #9 Santa Clara, CA 95054, USA FCC ID: 2BAAIWC-1000RH-US00 IC: 30790-1000RHUS R e p o r t T y p e : O r i g i n a l R e p o r t P r o d u c t T y p e : A i r v i n e W a v e C o r e I n d o o r W i r e l e s s B r i d g e Prepared By: Michael Papa RF Test Engineer Report Number: R2406141-407 Report Date: 2024-10-04 Reviewed By: Steven Lianto EMC & RF Lead Bay Area Compliance Laboratories Corp. 1274 Anvilwood Avenue, Sunnyvale, CA 94089, USA Tel: (408) 732-9162 Fax: (408) 732-9164 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 2 of 94 FCC Part 15.407/ISEDC RSS-248 Test Report TABLE OF CONTENTS 1 GENERAL DESCRIPTION ......................................................................................................................................... 5 1.1 PRODUCT DESCRIPTION FOR EQUIPMENT UNDER TEST (EUT) ................................................................................ 5 1.2 MECHANICAL DESCRIPTION OF EUT ....................................................................................................................... 5 1.3 OBJECTIVE ............................................................................................................................................................... 5 1.4 RELATED SUBMITTAL(S)/GRANT(S) ........................................................................................................................ 5 1.5 TEST METHODOLOGY .............................................................................................................................................. 6 1.6 MEASUREMENT UNCERTAINTY ............................................................................................................................... 6 1.7 TEST FACILITY REGISTRATIONS .............................................................................................................................. 6 1.8 TEST FACILITY ACCREDITATIONS ............................................................................................................................ 7 2 SYSTEM TEST CONFIGURATION .......................................................................................................................... 9 2.1 JUSTIFICATION ......................................................................................................................................................... 9 2.2 EUT EXERCISE SOFTWARE ...................................................................................................................................... 9 2.3 DUTY CYCLE CORRECTION FACTOR ...................................................................................................................... 10 2.4 SPECIAL EQUIPMENT ............................................................................................................................................. 11 2.5 EQUIPMENT MODIFICATION ................................................................................................................................... 11 2.6 LOCAL SUPPORT EQUIPMENT ................................................................................................................................ 11 2.7 REMOTE SUPPORT EQUIPMENT .............................................................................................................................. 11 2.8 POWER SUPPLY AND LINE FILTERS ........................................................................................................................ 11 2.9 INTERFACE PORTS AND CABLING .......................................................................................................................... 11 3 SUMMARY OF TEST RESULTS ............................................................................................................................. 12 4 FCC §15.203 & ISEDC RSS-GEN §6.8 – ANTENNA REQUIREMENTS ............................................................ 13 4.1 APPLICABLE STANDARDS ...................................................................................................................................... 13 4.2 ANTENNA DESCRIPTION ........................................................................................................................................ 14 5 FCC §2.1091, FCC §15.407(F) & ISEDC RSS-102 – RF EXPOSURE ................................................................... 15 5.1 APPLICABLE STANDARDS ...................................................................................................................................... 15 5.2 MPE PREDICTION .................................................................................................................................................. 16 5.3 MPE RESULT FOR FCC ......................................................................................................................................... 17 5.4 IC EXEMPTION ....................................................................................................................................................... 17 6 FCC §15.407(B), §15.207 & ISEDC RSS-GEN §8.8 – AC LINE CONDUCTED EMISSIONS ........................... 18 6.1 APPLICABLE STANDARDS ...................................................................................................................................... 18 6.2 TEST …
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Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 1 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report Annex A – Emission Bandwidth Naming Convention: Frequency(MHz)_Channel_Bandwidth_Mode_Chain 5985MHz_7_80MHz BW_be-mode_Chain 0 5985MHz_7_80MHz BW_be-mode_Chain 1 5985MHz_7_80MHz BW_be-mode_Chain 2 5985MHz_7_80MHz BW_be-mode_Chain 3 6145MHz_39_80MHz BW_be-mode_Chain 0 6145MHz_39_80MHz BW_be-mode_Chain 1 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 2 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6145MHz_39_80MHz BW_be-mode_Chain 2 6145MHz_39_80MHz BW_be-mode_Chain 3 6385MHz_87_80MHz BW_be-mode_Chain 0 6385MHz_87_80MHz BW_be-mode_Chain 1 6385MHz_87_80MHz BW_be-mode_Chain 2 6385MHz_87_80MHz BW_be-mode_Chain 3 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 3 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6465MHz_103_80MHz BW_be-mode_Chain 0 6465MHz_103_80MHz BW_be-mode_Chain 1 6465MHz_103_80MHz BW_be-mode_Chain 2 6465MHz_103_80MHz BW_be-mode_Chain 3 6545MHz_119_80MHz BW_be-mode_Chain 0 6545MHz_119_80MHz BW_be-mode_Chain 1 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 4 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6545MHz_119_80MHz BW_be-mode_Chain 2 6545MHz_119_80MHz BW_be-mode_Chain 3 6705MHz_151_80MHz BW_be-mode_Chain 0 6705MHz_151_80MHz BW_be-mode_Chain 1 6705MHz_151_80MHz BW_be-mode_Chain 2 6705MHz_151_80MHz BW_be-mode_Chain 3 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 5 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6865MHz_183_80MHz BW_be-mode_Chain 0 6865MHz_183_80MHz BW_be-mode_Chain 1 6865MHz_183_80MHz BW_be-mode_Chain 2 6865MHz_183_80MHz BW_be-mode_Chain 3 6945MHz_199_80MHz BW_be-mode_Chain 0 6945MHz_199_80MHz BW_be-mode_Chain 1 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 6 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6945MHz_199_80MHz BW_be-mode_Chain 2 6945MHz_199_80MHz BW_be-mode_Chain 3 7025MHz_215_80MHz BW_be-mode_Chain 0 7025MHz_215_80MHz BW_be-mode_Chain 1 7025MHz_215_80MHz BW_be-mode_Chain 2 7025MHz_215_80MHz BW_be-mode_Chain 3 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 7 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6025MHz_15_160MHz BW_be-mode_Chain 0 6025MHz_15_160MHz BW_be-mode_Chain 1 6025MHz_15_160MHz BW_be-mode_Chain 2 6025MHz_15_160MHz BW_be-mode_Chain 3 6185MHz_47_160MHz BW_be-mode_Chain 0 6185MHz_47_160MHz BW_be-mode_Chain 1 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 8 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6185MHz_47_160MHz BW_be-mode_Chain 2 6185MHz_47_160MHz BW_be-mode_Chain 3 6345MHz_79_160MHz BW_be-mode_Chain 0 6345MHz_79_160MHz BW_be-mode_Chain 1 6345MHz_79_160MHz BW_be-mode_Chain 2 6345MHz_79_160MHz BW_be-mode_Chain 3 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 9 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6505MHz_111_160MHz BW_be-mode_Chain 0 6505MHz_111_160MHz BW_be-mode_Chain 1 6505MHz_111_160MHz BW_be-mode_Chain 2 6505MHz_111_160MHz BW_be-mode_Chain 3 6575MHz_143_160MHz BW_be-mode_Chain 0 6575MHz_143_160MHz BW_be-mode_Chain 1 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 10 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6575MHz_143_160MHz BW_be-mode_Chain 2 6575MHz_143_160MHz BW_be-mode_Chain 3 6825MHz_175_160MHz BW_be-mode_Chain 0 6825MHz_175_160MHz BW_be-mode_Chain 1 6825MHz_175_160MHz BW_be-mode_Chain 2 6825MHz_175_160MHz BW_be-mode_Chain 3 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 11 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6985MHz_207_160MHz BW_be-mode_Chain 0 6985MHz_207_160MHz BW_be-mode_Chain 1 6985MHz_207_160MHz BW_be-mode_Chain 2 6985MHz_207_160MHz BW_be-mode_Chain 3 6125MHz_31_320MHz BW_be-mode_Chain 0 6125MHz_31_320MHz BW_be-mode_Chain 1 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 12 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6125MHz_31_320MHz BW_be-mode_Chain 2 6125MHz_31_320MHz BW_be-mode_Chain 3 6265MHz_63_320MHz BW_be-mode_Chain 0 6265MHz_63_320MHz BW_be-mode_Chain 1 6265MHz_63_320MHz BW_be-mode_Chain 2 6265MHz_63_320MHz BW_be-mode_Chain 3 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 13 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6425MHz_95_320MHz BW_be-mode_Chain 0 6425MHz_95_320MHz BW_be-mode_Chain 1 6425MHz_95_320MHz BW_be-mode_Chain 2 6425MHz_95_320MHz BW_be-mode_Chain 3 6585MHz_127_320MHz BW_be-mode_Chain 0 6585MHz_127_320MHz BW_be-mode_Chain 1 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 14 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6585MHz_127_320MHz BW_be-mode_Chain 2 6585MHz_127_320MHz BW_be-mode_Chain 3 6745MHz_159_320MHz BW_be-mode_Chain 0 6745MHz_159_320MHz BW_be-mode_Chain 1 6745MHz_159_320MHz BW_be-mode_Chain 2 6745MHz_159_320MHz BW_be-mode_Chain 3 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 15 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6905MHz_191_320MHz BW_be-mode_Chain 0 6905MHz_191_320MHz BW_be-mode_Chain 1 6905MHz_191_320MHz BW_be-mode_Chain 2 6905MHz_191_320MHz BW_be-mode_Chain 3
Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 1 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report Annex B – Maximum EIRP Naming Convention: Frequency (MHz)_Channel_Bandwidth_Mode_Chain 5985MHz_7_80MHz BW_be-mode_Chain 0 5985MHz_7_80MHz BW_be-mode_Chain 1 5985MHz_7_80MHz BW_be-mode_Chain 2 5985MHz_7_80MHz BW_be-mode_Chain 3 6145MHz_39_80MHz BW_be-mode_Chain 0 6145MHz_39_80MHz BW_be-mode_Chain 1 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 2 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6145MHz_39_80MHz BW_be-mode_Chain 2 6145MHz_39_80MHz BW_be-mode_Chain 3 6385MHz_87_80MHz BW_be-mode_Chain 0 6385MHz_87_80MHz BW_be-mode_Chain 1 6385MHz_87_80MHz BW_be-mode_Chain 2 6385MHz_87_80MHz BW_be-mode_Chain 3 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 3 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6465MHz_103_80MHz BW_be-mode_Chain 0 6465MHz_103_80MHz BW_be-mode_Chain 1 6465MHz_103_80MHz BW_be-mode_Chain 2 6465MHz_103_80MHz BW_be-mode_Chain 3 6545MHz_119_80MHz BW_be-mode_Chain 0 6545MHz_119_80MHz BW_be-mode_Chain 1 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 4 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6545MHz_119_80MHz BW_be-mode_Chain 2 6545MHz_119_80MHz BW_be-mode_Chain 3 6705MHz_151_80MHz BW_be-mode_Chain 0 6705MHz_151_80MHz BW_be-mode_Chain 1 6705MHz_151_80MHz BW_be-mode_Chain 2 6705MHz_151_80MHz BW_be-mode_Chain 3 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 5 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6865MHz_183_80MHz BW_be-mode_Chain 0 6865MHz_183_80MHz BW_be-mode_Chain 1 6865MHz_183_80MHz BW_be-mode_Chain 2 6865MHz_183_80MHz BW_be-mode_Chain 3 6945MHz_199_80MHz BW_be-mode_Chain 0 6945MHz_199_80MHz BW_be-mode_Chain 1 Airvine Scientific, Inc. FCC ID: 2BAAIWC-1000RH-US00, IC: 30790-1000RHUS Report Number: R2406141-407 Page 6 of 15 FCC Part 15.407/ISEDC RSS-248 Test Report 6945MHz_199_80MHz BW_be-mode_Chain 2 6945MHz_199_80MHz BW_be-mode_Chain 3 7025MHz_215_80MHz BW_be-mode_Chain 0 7025MHz_215_80MHz BW_be-mode_Chain 1 7025MHz_215_80MHz BW_be-mode_Chain 2 7025MHz_215_80MHz BW_be-mode_Chain 3 Ai…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 3 | 15E | 6.11 GHz - 6.91 GHz | 627.00 mW |