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2AE4M-HS75WHIPswitch 75w

Tempered Networks, Inc.
HIPswitch 75w - FCC ID 2AE4M-HS75W - Tempered Networks, Inc.
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Application Details

Equipment Class
NII - Unlicensed National Information Infrastructure TX
Date of Grant
May 24, 2020
Application Purpose
Original Equipment
Date of Application
May 24, 2020
Equipment Note
HIPswitch 75w
Frequency Range
5745.00000000 - 5825.00000000
Company
Tempered Networks, Inc.
Country
United States

Documents & Files

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Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

QUICK START [email protected] +1206.452.5500ext.2 www.tempered.io 3101 WesternAve. Suite550 Seattle, WA 98121USA HIPswitch-75Series TheHIPswitch-75isasmallform-factor IoTedgegatewaydesignedfornon- Industrialenvironmentswhichfacilitates MODELS PartNumberModelEthernetPortsWi-Fi PLF-0115-02HIPswitch-75e3No PLF-0122-01HIPswitch-75w3Yes Specification Ethernet Ports 3x10/100/1000MbpsRJ-45 ports Operating Temp 0° to 40° C (32°to104°F) Controls1xMicroUSBconsoleportEnvironmentForindooruseonly Displays1xPowerLED 1xWiFiLED 1xActivity/StatusLED DimensionsW: 110mm (4.33”) D:84.5mm(3.33”) H:29.5mm(1.16”) DCPower Input 12V DC,2Amax 5.5×2.1mmpowerinput Weight153g(.337lbs.) Regulatory Approvals CE (75e/w) EN55032:2015,EN55035:2017,EN55024:2010,EN6100-3- 2:2014,EN61000-3-3:2013,EN60950-1:2006+A2:2013 CERED (75w) EN300328,EN301893,EN301489-1, EN301489-3,EN301489-17,EN62311:2008 FCC (75e) Part15BclassB IC (75e) CANICES-3(B)/ NMB-3(B) FCCID (75w) 2AE4M-HS75WICID (75w) 20900-HS75W Topand Front PanelLayouts 1.Activity/StatusLED 2.WiFiLED 3.PowerLED 4.Port1(default:sharednetwork) 5.Port2-3(default:securenetwork) 6.USB(notsupported) privateoverlaynetworksbetweencustomer-providedequipment anddevices. SafetyandWarnings ElevatedOperatingAmbientTemperature:Ifinstalledinaclosedenvi‐ ronment,makesuretheoperatingambienttemperatureiscompatible withthemaximumambienttemperaturespecifiedbythemanufacturer. ReducedAirFlow:Makesuretheamountofairflow requiredforsafeoperationof theequipmentisnotcompromisedduringinstallation. 1. Connect a computer to the HIPswitch-75 using the micro USB console port located on the back of the HIPswitch. 2. Using a terminal (macOS, Linux) or terminal emulator (Windows), connect to the HIPswitch using baud 115200. 3. At the login prompt, enter hipsh, then hipsh as the password. 4. At the hipsh prompt, enter conductor set https://<conductor address>:<port> 6. At the hipsh prompt, enter reboot Afterrebooting,theHIPswitchshouldnowberecognizedintheConductorUI. ProvisioningtheHIPswitch-75 The Conductor is the central configuration and management point for all HIPservices. For provisioning, a HIPswitch must be able to locate the Conductor on your shared network. The fastest method is to connect the HIPswitch via the console port. RegulatoryInformation This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: —Reorient or relocate the receiving antenna. —Increase the separation between the equipment and receiver. —Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. —Consult the dealer or an experienced radio/TV technician for help. This device complies with Industry Canada’s licence-exempt RSSs. Operation is subject to the following two conditions: (1) This device may not cause interference; and (2) This device must accept any interference, including interference that may cause undesired operation of the de‐ vice. Le présent appareil est conforme aux CNR d’Industrie Canada applicables aux appareils radio exempts de licence. L’exploitation est autorisée aux deux conditions suivantes: 1) l’appareil ne doit pas produire de brouillage; 2) l’utilisateur de l’appareil doit accepter tout brouillage ra‐ dioélectrique subi, même si le brouillage est susceptible d’en compromettre le fonction‐ nement." RadiationExposure: This equipment complies with FCC and ISED radiation exposure limits set forth for an uncontrolled environment. This equipment should be installed and operated with minimum distance of 20cm between the radiator and your body and must not be co-lo‐ cated or operating in conjunction with any other antenna or transmitter. De ́ clarationsurl'expositionauxrayonnementsRF:L'autre utilisé pour l'émetteur doit être installé pour fournir une distance de séparation d'au moins 20 cm de toutes les personnes et ne doit pas être colocalisé ou fonctionner conjointement avec une autre antenne ou un autre émetteur. TemperedNetworks,IncdeclaresthattheHIPswitch-75wisincompliancewith Directive 2014/53/EU.ThisdevicemaybeusedinallEUmemberstatessubjectto thefollowingcondition:Thisdevicemayonlybeusedindoors. ThefulltextoftheEUdeclarationofconformityisavailableatthefollowingInternet address:https://repo.tempered.io/DoC/75w FCC WARNING This device complies with part 15 of the FCC Rules. Operat ion is subject to the follo wing two condit ions: (1) this device may not cause harmful interference, and (2) this device must accept any interference received, in cluding interference that may cause undesired operation. Any changes or modifications not expressly approved by the party responsib le for compliance could void the user's authority to operate the equipment. NOTE: This equipment has been tested and found to comply with the lim its for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordan ce with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particula r installat ion. If th is equipment does cause harmful interfe…

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Cover Letter(s)

Tempered Networks, Inc. FCC Software Configuration Control Declaration D ate: May 6, 2020 Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 USA Attn: OET Dept. Product/ Model Number: HIPswitch 75w / Tempered Networks HS75w Regarding FCC Country Code Selection guidelines identified in KDB 594280 D01 Software Configuration Control v02r01. “All applications for equipment authorization for transmitters that can have radio parameters, or other technical parameters, reported to the Commission set by software must have an attestation indicating that no third party will have software, or configuration control, to program the device out of compliance of the technical rules under which it has been certified.” We declare that no third party will have software, or configuration control, to program the device out of compliance of the technical rules under which it has been certified. Name: Mike Viles Date: 2020/05/07 Title: Manager Signatureof applicant FCC Software Configuration Control Declaration Rev1.1

Cover Letter(s)

Tempered Networks, Inc. Agent Authorization C ompany: Tempered Networks, Inc. A ddress: 3101 Western Ave, Suite 550, Seattle, Washington, USA 98121 Product Name: HIPswitch 75w Model Number(s): Tempered Networks HS75w P roduct Description: HIPswitch 75w We author ize MiCOM Labs Inc., 575 Boulder Court, Pleasanton, California 94566, USA, to act on our behalf on all matters concerning the certification of above named equipment. We dec lare that MiCOM Labs Inc. is allowed to forward all information related to the approval and certification of equipment to the regulatory agencies as required and to discuss any issues concerning the approval application. Any and all acts carried out by MiCOM Labs on our behalf shall have the same effect as acts of our own. Signature: Date: 2020/05/07 Name: Mike Viles Title: Manager Company: Tempered Networks, Inc.

Cover Letter(s)

Tempered Networks, Inc. O ffice of Engineering Technology Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 USA Date: 2020/05/07 S ubject; Request for Confidentiality FCC ID: 2AE4M-HS75W To Whom It May Concern, Pursuant to the provisions of the Commission’s rules Title 47 Sections §0.457 and §0.459, we are requesting the Commission to withhold the following attachment(s) as confidential documents from public disclosure indefinitely. Thes e documents contain detailed system and equipment descriptions and are considered as proprietary information in operation of the equipment. The public disclosure of these documents might be harmful to our company and would give competitors an unfair advantage in the market. Schematic Diagram Block Diagram software security requirement Operational Description In addi tional to above mentioned documents, in order to comply with the marketing regulations in Title 47 CFR §2.803 and the importation rules in Title 47 CFR §2.1204, while ensuring that business sensitive information remains confidential until the actual marketing of newly authorized devices, we request Short Term Confidentiality of the following attachment(s); User Manual For 45 days, pursuant to Public Notice DA 04-1705. OR For 180 days pursuantto KDB 726920 D01. It i s our understanding that all measurement test reports, FCC ID label format and correspondence during the certification review process cannot be granted as confidential documents and this information will be available for public review once the grant of equipment authorization is issued. S incerely, S ignature: N ame: Mike Viles Ti tle: Manager

External Photos

External Photos Internal Photos Antenna A Antenna B

ID Label/Location Info

Label & label location Size:40*20mm M/N: Tempered Networks HS75w FCC ID: 2AE4M-HS75W IC: 20900-HS75W This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) This device must accept any interference received, including interference that may cause undesired operation. Label location

Internal Photos

External Photos Internal Photos Antenna A Antenna B

RF Exposure Info

FCC §15.247 (i), §2.1091 – RF Exposure FCC ID: 2AE4M-HS75W 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=0.2m TEST RESULTS MIMO Mode ANT Tune up Produce power Maximu m peak output power (dBm) Output power to antenn a (mW) Antenna Gain (numeric) Power Density (S) (mW/ cm2) Total Power Density (S) (mW/ cm2) Limit (mW / cm2 ) Result 802.11n 20 (2.4G Hz WIFI) A 12±1 13 19.95 1.86 (2.7dBi) 0.00738 0.01476 1 Pass B 12±1 13 19.95 1.86 (2.7dBi) 0.00738 802.11a c20 (U-NII-1) A 14±1 15 31.62 1.86 (2.7dBi) 0.01170 0.02340 1 Pass B 14±1 15 31.62 1.86 (2.7dBi) 0.01170 802.11n 20 (U-NII- 2A) A 11±1 12 15.85 1.86 (2.7dBi) 0.00587 0.01757 1 Pass B 14±1 15 31.62 1.86 (2.7dBi) 0.01170 802.11a c20 (U-NII- 2C)) A 13±1 14 25.12 1.86 (2.7dBi) 0.00930 0.01516 1 Pass B 11±1 12 15.85 1.86 (2.7dBi) 0.00587 802.11n 20 (U-NII-3) A 10±1 11 12.59 1.86 (2.7dBi) 0.00466 0.00932 1 Pass B 10±1 11 12.59 1.86 (2.7dBi) 0.00466 SISO Mode ANT Tune up Produce power Maximu m peak output power (dBm) Output power to antenn a (mW) Antenna Gain (numeric) Power Density (S) (mW/ cm2) Limit (mW / cm2 ) Result 802.11g (2.4G Hz WIFI) A 13±1 14 25.12 1.86 (2.7dBi) 0.00930 1 Pass B 13±1 14 25.12 1.86 (2.7dBi) 0.00930 1 Pass 802.11a 20 (U-NII-1) A 14±1 15 31.62 1.86 (2.7dBi) 0.01170 1 Pass B 14±1 15 31.62 1.86 (2.7dBi) 0.01170 1 Pass 802.11a 20 (U-NII- 2A) A 11±1 12 15.85 1.86 (2.7dBi) 0.00587 1 Pass B 14±1 15 31.62 1.86 (2.7dBi) 0.01170 1 Pass 802.11a 20 (U-NII- 2C)) A 13±1 14 25.12 1.86 (2.7dBi) 0.00930 1 Pass B 12±1 13 19.95 1.86 (2.7dBi) 0.00738 1 Pass 802.11a 20 (U-NII-3) A 10±1 11 12.59 1.86 (2.7dBi) 0.00466 1 Pass B 11±1 12 15.85 1.86 (2.7dBi) 0.00587 1 Pass For the Max simultaneous transmission MPE: Total Power Density (S) (mW/ cm2) Limit (mW/ cm2) Result 802.11n20 (2.4G Hz WIFI)MIMO 0.01476 0.03816 1 Pass 802.11a20 (U-NII- 1)MOMO 0.02340

Test Report

Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E FCC Part 15E Test Report FCC ID: 2AE4M-HS75W Product Name: HIPswitch 75w Trademark: TEMPERED NETWORKS Model Name : Tempered Networks HS75w Prepared For : Tempered Networks, Inc. Address : 3101 Western Ave, Suite 550, Seattle, Washington, USA 98121 Prepared By : Shenzhen BCTC Testing Co., Ltd. Address : BCTC Building & 1-2F, East of B Building, Pengzhou Industrial, Fuyuan 1st Road, Qiaotou Community, Fuyong Street, Bao’an District, Shenzhen, China Test Date: Jan. 09, 2020 – Apr. 20, 2020 Date of Report : Apr. 20, 2020 Report No.: BCTC-FY190703709E Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 1 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E TEST RESULT CERTIFICATION Applicant’s name ................. : Tempered Networks, Inc. Address ................................. : 3101 Western Ave, Suite 550, Seattle, Washington, USA 98121 Manufacture's Name ............ : Tempered Networks, Inc. Address ................................. : 3101 Western Ave, Suite 550, Seattle, Washington, USA 98121 Product description Product name ........................... : HIPswitch 75w Trademark ................................. : TEMPERED NETWORKS Model and/or type reference : Tempered Networks HS75w Standards ............................. : FCC Part15 15.407 ANSI C63.10-2013 KDB 662911 D01 v02r01 KDB 789033 D02 v02r01 This device described above has been tested by BCTC, and the test results show that the equipment under test (EUT) is in compliance with the FCC requirements. And it is applicable only to the tested sample identified in the report. This report shall not be reproduced except in full, without the written approval of BCTC, this document may be altered or revised by BCTC, personal only, and shall be noted in the revision of the document. Prepared by(Engineer): Willem Wang Reviewer(Supervisor): Eric Yang Approved(Manager): Zero Zhou Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 2 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Table of Contents Page 1 . SUMMARY OF TEST RESULTS 6 1.1 TEST FACILITY 7 1.2 MEASUREMENT UNCERTAINTY 7 2 . GENERAL INFORMATION 8 2.1 GENERAL DESCRIPTION OF EUT 8 2.2 DESCRIPTION OF TEST MODES 10 2.3 BLOCK DIGRAM SHOWING THE CONFIGURATION OF SYSTEM TESTED 11 2.4 DESCRIPTION OF SUPPORT UNITS(CONDUCTED MODE) 12 2.5 EQUIPMENTS LIST FOR ALL TEST ITEMS 13 3 . EMC EMISSION TEST 15 3.1 CONDUCTED EMISSION MEASUREMENT 15 3.1.1 POWER LINE CONDUCTED EMISSION LIMITS 15 3.1.2 TEST PROCEDURE 16 3.1.3 DEVIATION FROM TEST STANDARD 16 3.1.4 TEST SETUP 16 3.1.5 EUT OPERATING CONDITIONS 16 3.2 RADIATED EMISSION MEASUREMENT 19 3.2.1 APPLICABLE STANDARD 19 3.2.2 CONFORMANCE LIMIT 19 3.2.3 MEASURING INSTRUMENTS 19 3.2.4 TEST CONFIGURATION 20 3.2.5 TEST PROCEDURE 21 3.2.6 TEST RESULTS (9KHZ – 30 MHZ) 22 3.2.7 TEST RESULTS (30MHZ – 1GHZ) 23 3.2.8 TEST RESULTS (1GHZ-40GHZ) 25 4 . POWER SPECTRAL DENSITY TEST 37 4.1 APPLIED PROCEDURES / LIMIT 37 4.2 TEST PROCEDURE 38 4.3 DEVIATION FROM STANDARD 38 4.4 TEST SETUP 38 4.5 EUT OPERATION CONDITIONS 38 4.6 TEST RESULTS 39 5 . 26DB & 6DB & 99% EMISSION BANDWIDTH 47 5.1 APPLIED PROCEDURES / LIMIT 47 5.2 TEST PROCEDURE 47 Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 3 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Table of Contents Page 5.3 EUT OPERATION CONDITIONS 48 5.4 TEST RESULTS 49 6 . MAXIMUM CONDUCTED OUTPUT POWER 68 6.1 PPLIED PROCEDURES / LIMIT 68 6.2 TEST PROCEDURE 68 6.3 DEVIATION FROM STANDARD 70 6.4 TEST SETUP 70 6.5 EUT OPERATION CONDITIONS 70 6.6 TEST RESULTS 71 7 . OUT OF BAND EMISSIONS 73 7.1 APPLICABLE STANDARD 73 7.2 TEST PROCEDURE 73 7.3 DEVIATION FROM STANDARD 73 7.4 TEST SETUP 73 7.5 EUT OPERATION CONDITIONS 74 7.6 TEST RESULTS 75 8.SPURIOUS RF CONDUCTED EMISSIONS 94 8.1CONFORMANCE LIMIT 94 8.2MEASURING INSTRUMENTS 94 8.3TEST SETUP 94 8.4TEST PROCEDURE 94 8.5TEST RESULTS 94 9. FREQUENCY STABILITY MEASUREMENT 109 9.1 LIMIT 109 9.2 TEST PROCEDURES 109 9.3 TEST SETUP LAYOUT 109 9.4 EUT OPERATION DURING TEST 109 9.5 TEST RESULTS 110 10. ANTENNA REQUIREMENT 116 10.1 STANDARD REQUIREMENT 116 10.2 EUT ANTENNA 116 11. EUT TEST PHOTO 117 12. EUT PHOTO 120 Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 4 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Revision History Report No. Version Description Issued Date BCTC-FY190703709E Rev.01 Initial issue of report Apr. 20, 2020 Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 5 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E 1. SUMMARY OF TEST RESULTS Test procedures according to the technical standards: FCC Part15 (15.407) , Subpart E Standard Section Test Item Judgment Remark 15.209(a), 15.407 (b)(1) 15.407 (b)(4) 15.407 (b)(6) Spurious Radiated Emissions PASS 15.207 Conducted Emission PASS 15.407 (a)(5) 15.1049 26 dB and 99% Emission Bandwidth PASS 15.407(e) Minimum 6 dB bandwidth PASS 15.407 (a)(1) 15.407 (a)(3) Maximum Conducted Output Power PASS 2.1051, 15.407(b)(1) 15.407(b)(4) Band Edge PASS 15.407 (a)(1) 15.407 (a)(3) Power Spectral Density PASS 2.1051, 15.407(b) Spurious Emissions at Antenna Terminals PASS 15.407(g) Frequency Stability Measurement PASS 15.203 Antenna Requirement PASS NOTE: (1)” N/A” denotes test is not applicable in this Test Report Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 6 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E 1.1 TEST FACILITY Shenzhen BCTC Testing Co., Ltd. Add. : BCTC Building & 1-2F, East of B Building, Pengzhou Industrial, Fuyuan 1st Road, Qiaotou Community, Fuyong Street, Bao’an District, Shenzhen, China FCC Test Firm Registration Number: 712850 IC Registered No.: 23583 1.2 MEASUREMENT UNCERTAINTY T…

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Test Report

Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Mode: 802.11n-HT20 5745MHz 6dB bandwidth 5745MHz 99% bandwidth 5785MHz 6dB bandwidth Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 59 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E 5785MHz 99% bandwidth 5825MHz 6dB bandwidth 5825MHz 99% bandwidth Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 60 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Mode: 802.11n-HT40 5755 MHz 6dB bandwidth 5755 MHz 99% bandwidth 5795 MHz 6dB bandwidth Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 61 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E 5795 MHz 99% bandwidth Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 62 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Mode: 802.11ac-HT20 5745MHz 6dB bandwidth 5745MHz 99% bandwidth 5785MHz 6dB bandwidth Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 63 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E 5785MHz 99% bandwidth 5825MHz 6dB bandwidth 5825MHz 99% bandwidth Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 64 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Mode: 802.11ac-HT40 5755 MHz 6dB bandwidth 5755 MHz 99% bandwidth 5795 MHz 6dB bandwidth Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 65 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E 5795 MHz 99% bandwidth Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 66 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Mode: 802.11ac-HT80 5755 MHz 6dB bandwidth 5755 MHz 99% bandwidth Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 67 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E 6. MAXIMUM CONDUCTED OUTPUT POWER 6.1 PPLIED PROCEDURES / LIMIT According to FCC §15.407 The maximum conduced output power should not exceed: Frequency Band(MHz) Limit 5150~5250 250mW 5725~5850 1W 6.2 TEST PROCEDURE . Maximum conducted output power may be measured using a spectrum analyzer/EMI receiver or an RF power meter. 1. Device Configuration If possible, configure or modify the operation of the EUT so that it transmits continuously at i ts maximum power control level (see section II.B.). a) The intent is to test at 100 percent duty cycle; however a small reduction in duty cycle (to no lower than 98 percent) is permitted if required by the EUT for amplitude control purposes. Manufacturers are expected to provide software to the test lab to permit such continuous operation. b) If continuous transmission (or at least 98 percent duty cycle) cannot be achieved due to hardware limitations (e.g., overheating), the EUT shall be operated at its maximum power control level with the transmit duration as long as possible and the duty cycle as high as possible. 2. Measurement using a Spectrum Analyzer or EMI Receiver (SA) Measurement of maximum conducted output power using a spectrum analyzer requires integrating the spectrum across a frequency span that encompasses, at a minimum, either the EBW or the 99-percent occupied bandwidth of the signal.1 However, the EBW must be used to determine bandwidth dependent limits on maximum conducted output power in accordance with § 15.407(a). Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 68 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E a) The test method shall be selected as follows: (i) Method SA-1 or SA-1 Alternative (averaging with the EUT transmitting at full power throughout each sweep) shall be applied if either of the following conditions can be satisfied: • The EUT transmits continuously (or with a duty cycle ≥ 98 percent). • Sweep triggering or gating can be implemented in a way that the device transmits at the maximum power control level throughout the duration of each of the instrument sweeps to be averaged. This condition can generally be achieved by trig gering the instrument’s sweep if the duration of the sweep (with the analyzer configured as in Method SA-1, below) is equal to or shorter than the duration T of each transmission from the EUT and if those transmissions exhibit full power throughout their durations. (ii) Method SA-2 or SA-2 Alternative (averaging across on and off times of the EUT transmissions, followed by duty cycle correction) shall be applied if the conditions of (i) cannot be achieved and the transmissions exhibit a constant duty cycle during the measurement duration. Duty cycle will be considered to be constant if variations are less than ± 2 percent. (iii) Method SA-3 (RMS detection with max hold) or SA-3 Alternative (reduced VBW with max hold) shall be applied if the conditions of (i) and (ii) cannot be achieved. b) Method SA-1 (trace averaging with the EUT transmitting at full power throughout each sweep): (i) Set span to encompass the entire emission bandwidth (EBW) (or, alternatively, the entire 99% occupied bandwidth) of the signal. (ii) Set RBW = 1 MHz. (iii) Set VBW ≥ 3 MHz. (iv) Number of points in sweep ≥ 2 Span / RBW. (This ensures that bin-to-bin spacing is ≤ RBW/2, so that narrowband signals are not lost between frequency bins.) (v) Sweep time = auto. (vi) Detector = RMS (i.e., power averaging), if available. Otherwise, use sample detector mode. (vii) If transmit duty cycle < 98 percent, use a video trigger with the trigger level set to enable triggering only on full power pulses. Transmitter must operate at maximum power control level for the entire duration of every sweep. If the EUT transmits continuously (i.e., with no off intervals) or at…

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Test Report

Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Test Plot 802.11n20 on channel 40 802.11n20 on channel 48 802.11n20 on channel 40 802.11n20 on channel 48 802.11n20 on channel 40 802.11n20 on channel 48 Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 97 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Test Plot 802.11n40 on channel 38 802.11n40 on channel 46 802.11n40 on channel 38 802.11n40 on channel 46 802.11n40 on channel 38 802.11n40 on channel 46 Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 98 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Test Plot 802.11ac20 on channel 36 802.11ac20 on channel 40 802.11ac20 on channel 36 802.11ac20 on channel 40 802.11ac20 on channel 36 802.11ac20 on channel 40 Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 99 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Test Plot 802.11ac20 on channel 48 802.11ac40 on channel 38 802.11ac20 on channel 48 802.11ac40 on channel 38 802.11ac20 on channel 48 802.11ac40 on channel 38 Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 100 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Test Plot 802.11ac40 on channel 46 802.11ac80 on channel 42 802.11 ac40 on channel 46 802.11 ac80 on channel 42 802.11 ac40 on channel 46 802.11 ac80 on channel 42 Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 101 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E 5.8G Test Plot 802.11a on channel 149 802.11a on channel 157 802.11a on channel 149 802.11a on channel 157 802.11a on channel 149 802.11a on channel 157 Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 102 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Test Plot 802.11a on channel 165 802.11n20 on channel 149 802.11a on channel 165 802.11n20 on channel 149 802.11a on channel 165 802.11n20 on channel 149 Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 103 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Test Plot 802.11n20 on channel 157 802.11n20 on channel 165 802.11n20 on channel 157 802.11n20 on channel 165 802.11n20 on channel 157 802.11n20 on channel 165 Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 104 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Test Plot 802.11n40 on channel 151 802.11n40 on channel 159 802.11n40 on channel 151 802.11n40 on channel 159 802.11n40 on channel 151 802.11n40 on channel 159 Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 105 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Test Plot 802.11ac20 on channel 149 802.11ac20 on channel 157 802.11ac20 on channel 149 802.11ac20 on channel 157 802.11ac20 on channel 149 802.11ac20 on channel 157 Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 106 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Test Plot 802.11ac20 on channel 165 802.11ac40 on channel 151 802.11ac20 on channel 165 802.11ac40 on channel 151 802.11ac20 on channel 165 802.11ac40 on channel 151 Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 107 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E Test Plot 802.11ac40 on channel 159 802.11ac80 on channel 155 802.11 ac40 on channel 159 802.11 ac80 on channel 155 802.11 ac40 on channel 159 802.11 ac80 on channel 155 Te s t Report Tel: 400-788-9558 Web: https://www.bctc-lab.com BCTC/RF-EMC-0 07 Ver.:A.0 Page 108 of 121 Shenzhen BCTC Testing Co., Ltd. Report No.: BCTC-FY190703709E 9. Frequency Stability Measurement 9.1 LIMIT Manufactures 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. The transmitter center frequency tolerance shall be ± 20 ppm maximum for the 5 GHz band (IEEE 802.11n specification). 9.2 TEST PROCEDURES 1. The transmitter output (antenna port) was connected to the spectrum analyzer. 2. EUT have transmitted absence of modulation signal and fixed channelize. 3. Set the spectrum analyzer span to view the entire absence of modulation emissions bandwidth. 4. Set RBW = 10 kHz, VBW = 10 kHz with peak detector and maxhold settings. 5. fc is declaring of channel frequency. Then the frequen…

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Contact Information

Applicant

Mike Viles(Sr. Director, Operations)
[email protected]206-452-5500Fax: 206-462-3328

Technical Contact

Tempered Networks, Inc.
[email protected]

United States

Test Firm

Shenzhen BCTC Testing Co., Ltd.Sally He
[email protected]15999690624

Technical Specifications

#Rule PartsFrequency RangePower Output
415E5.75 GHz - 5.83 GHz19.15 mW
Confidentiality
Long Term
Grant Notes
Output power listed is maximum combined conducted power. This device contains 20, 40 and 80 MHz signal bandwidth. Device is a 2x2 MIMO as is described in the filing. The antennas used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter, except in accordance with FCC multi- transmitter product procedures. End-Users must be provided with transmitter operation conditions for satisfying RF exposure compliance.