
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Aruba 503H Hospitality Access Points Installation Guide Installation Guide | July 20201 The Aruba AP-503H Access Points are high-performance, multi-radio wireless devices that can be deployed in either controller-based (AOS) or controller-less (Instant) modes in hospitality and branch or teleworker deployments. The Aruba AP-503H Hospitality Access Points support the full 802.11ax (Wi-Fi 6) featureset with dual 2x2 MIMO radios, deliver locationing functions, and can serve as a flexible IOT gateway, delivered through the built-in BLE and 802.15.4 radio. A variety of mounting scenarios are supported by a range of mount kits (sold separately). Make sure to purchase the correct mount kit for the intended deployment of the AP. Hardware Overview The following sections outline the hardware components of the Aruba AP-503H Access Points. Figure 1 AP-503H (front view) 1 2Aruba 503H Hospitality Access Points | Installation Guide Figure 2 AP-503H (side and rear view) Figure 3 AP-503H (bottom view) Security Screw Reset DC Adapter 12V 1 2 3 Console E0 E1E2 Aruba 503H Hospitality Access Points | Installation Guide3 LEDs The hidden LED displays located on the front panel of the access point indicate the following functions: System Status The System Status LED indicates the operating condition of the access point, See Table 1. Table 1 System Status LEDs 1 Blinking: one second on/one second off, 2 second cycle. 2 Flashing Pattern 1: mostly on, briefly off, 2 second cycle. 3 Flashing Pattern 2: mostly off, briefly on, 2 second cycle. Radio Status The Radio Status LED indicates the operating mode of the access point’s radios. See Table 2. Table 2 Radio Status LEDs 1 Alternating: one second each color, 2 second cycle. LED Display Settings The LEDs have three operating modes that can be selected in the system management software: Default mode: Refer to Table 1 and Table 2 Off mode: LEDs are off Blink mode: LEDs blink green Force the LEDs into off mode and back to software defined mode by pressing the reset button for a short duration. Warning: pressing the reset button for longer than 10 seconds may cause the AP to reset and return to factory default state. Color/StateMeaning OffDevice powered off Green- blinking 1 Device booting, not ready Green- solidDevice ready, fully functional, no network restrictions Green- flashing pattern 1 2 Device ready, fully functional, uplink negotiated in sub-optimal speed (<1Gbps) Green- flashing pattern 2 3 Deep sleep mode RedSystem error condition - Immediate attention required Color/StateMeaning OffAP powered off, or both radios disabled Green- solidBoth radios enabled in access mode Green- blinking One radio enabled in access mode, other disabled Amber- solidBoth radios enabled in monitor mode Amber- blinkingOne radio enabled in monitor mode, other disabled Green/Amber- alternating 1 Green: one radio in access mode Amber: one radio in monitor mode 4Aruba 503H Hospitality Access Points | Installation Guide Console Port The 5-pin Micro-B connector is located on the back of this device. Use the proprietary AP-CBL-SERU cable for direct management of this device when connected to a laptop or serial console (a standard USB cable cannot be used for this interface). For pin-out details, refer to Figure 4. Figure 4 Micro-B Port Pin-out Ethernet Ports The Aruba AP-503H access points are equipped with one active uplink Ethernet port E0, shown in Figure 2. The port is 10/100/1000 Base-T, auto-sensing MDI/MDX, which supports uplink connectivity when linked by an Ethernet cable. Refer to Figure 5 for a detailed port pin-out. The Aruba AP-503H access points support downlink network connectivity through E1-E2 Ethernet ports. The ports are 10/100/1000Base-T auto-sensing MDI/MDX. Figure 5 AP-503H (Ethernet Port) Physical Security Options A Kensington Lock Slot is available with the desktop mount accessory A security screw hole can be used with the mounting bracket Reset Button The reset button located on the side of the device (showed in Figure 2) can be used to reset the access point to factory default settings or turn off/on the LED display. Use one of the following methods to reset the access point to factory default settings: To reset during normal operation: 1.Hold the reset button for more than 10 seconds while the access point is running. 2.Release the reset button. To reset during power up, hold the reset button while the access point is powering up. The system status LED will flash again within 15 seconds indicating that the reset is completed. The access point will now continue to boot with the factory default settings. To toggle the LED display between Off and Normal: During the normal operation of the access point, shortly press and release the reset button using a small, narrow object, such as a paperclip. Bluetooth Low Energy / Zigbee Radio Aruba AP-503H Access Points are equipped with an integrated BLE and Zigbee radio that provides the following capabilities: location and asset-tracking applications 1: NC 2: RXD 3: TXD 4: GND 5: GND Ethernet Port RJ45 Female Pin-Out Signal Name 1 2 3 4 5 6 7 8 BI_DC+ BI_DC- BI_DD+ BI_DD- BI_DA+ BI_DA- BI_DB+ BI_DB- Function Bi-directional pair +C Bi-directional pair -C Bi-directional pair +D Bi-directional pair -D Bi-directional pair +A Bi-directional pair -A Bi-directional pair +B Bi-directional pair -B Aruba 503H Hospitality Access Points | Installation Guide5 wireless console access IoT gateway applications Power Ethernet port E0 supports PoE-in (AP is a class 3 802.3af PoE-PD device), allowing the device to draw power from compliant PoE power sources. If PoE is not available, the access point has a 12V DC power input to support an AC-to-DC power adapter (sold separately). When both PoE and DC power sources are available, the DC power source takes priority. Before You Begin Refer to the sections below before beginning the installation process. Pre-Installation Checklist Before installing your Aruba AP-503H Access Points, be sur…
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DECLARATION OF CONFORMITY FCC ID: Q9DAPINH503 Date: August 11, 2020 Please be notified that we, the undersigned, Hewlett Packard Enterprise Company declares that the product which bears the above FCC ID is also compliant with the FCC requirements for sDOC. And the sDoC procedure shall be carried out prior to marketing the device in the US. Sincerely, ---------------------------------------------------------- Name: Phillip Carranco Position: Regulatory Compliance Manager Hewlett Packard Enterprise Company
Date: 2020-08-11 Federal Communications Commission 7435 Oakland Mills Road Columbia MD 21046 To whom it may concern: I, the undersigned, hereby authorize MRT Technology (Taiwan) Co., Ltd to act on our behalf in all manners relating to application for equipment authorization, including signing of all documents relating to these matters. Any and all acts carried out by MRT Technology (Taiwan) Co., Ltd on our behalf shall have the same effect as acts of our own. I, 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. 853(a). In authorizing MRT Technology (Taiwan) Co., Ltd as our representative, we still recognize that we are responsible to: a) comply with the relevant provisions of the certification program; b) make all necessary arrangements for the conduct of the evaluation, including provision for examining documentation and access to all areas, records (including internal audit reports) and personnel for the purposes of evaluation (e.g. testing, inspection, assessment, surveillance, reassessment) and resolution of complaints; c) make claims regarding certification only in respect of the scope for which certification has been granted; d) do not use our product certification in such a manner as to bring the Certification Division into disrepute and not make any statement regarding our product certification which the Certification Division may consider misleading or unauthorized; e) upon suspension or cancellation of certification, discontinue use of all advertising matter that contains any reference thereto and return any certification documents as required by the Certification Division; f) use certification only to indicate the products are certified as being in conformity with specified standards; g) endeavor to ensure that no certificate or report nor any part thereof is used in a misleading manner; h) ensure that any reference to our product certification in communication media such as documents, brochures or advertising, complies with the requirements of the Certification Division; i) keep a record of all complaints made known to us relating to the product’s compliance with requirements of the relevant standard and to make these records available when requested; j) take appropriate action with respect to such complaints and any deficiencies found in products or services that affect compliance with the requirements for certification; k) document the actions taken. This authorization is valid until further written notice from the applicant. Sincerely Yours, Name: Phillip Carranco Position: Regulatory Compliance Manager Hewlett Packard Enterprise Company
Federal Communications Commission 7435 Oakland Mills Road Columbia MD 21046 Subject: Request for Confidentiality FCC ID: (Q9DAPINH503) To Whom It May Concern: Pursuant to the provisions of Sections 0.457 and 0.459 of the Commission’s rules (47 CFR §§ 0.457, 0.459), we are requesting the Commission to withhold the following attachments as confidential document from public disclosure indefinitely. Schematic Diagram Block Diagram Theory of Operation Software Security Requirements Cover Letter 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. In additional to above mentioned documents, pursuant to Public Notice DA 04-1705 of the Commission’s policy, in order to comply with the marketing regulations in 47 CFR §2.803 and the importation rules in 47 CFR §2.1204, while ensuring that business sensitive information remains confidential until the actual marketing of newly authorized devices. We are requesting the commission to grant short-term confidentiality request on the following attachments until (180 days): External Photos Internal Photos Test Setup Photos User Manual It is our understanding that all measurement test reports, FCC ID label format and correspondent during certification review process cannot be granted as confidential documents and those information will be available for public review once the grant of equipment authorization is issued. Best Regards Name: Phillip Carranco Position: Regulatory Compliance Manager Hewlett Packard Enterprise Company 2020-08-11
Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Attn: Office of Engineering and Technology. FCC ID: Q9DAPINH503 Models: APINH503 Applicant: Aruba Networks Date: July 23, 2020 To Whom It May Concern: We, Aruba Networks submit this formal request to the FCC Authorization and Evaluation Division for an Expedited Review for the DFS radar testing required by KDB 388624 D01 Pre-Approval Guidance (PAG) Procedure on FCC ID: Q9DAPINH503 Reasoning for Expedited Review: The APINH503 (FCC ID: Q9DAPINH503) and the APIN0504/APIN0505 (FCC ID: Q9DAPIN0504505) utilize the same Broadcom RF Chipset Model: BCM47622) but have different PCB form factors, housing and Antenna gains. The APINH503 utilizes 2 x Dual-Band Internal Antenna’s with gains of 1.73dBi (2.4GHz) and 5.04dBi (5GHz). The APIN0504 utilizes 2 (female) RP-SMA connectors for External Antennas with lowest gains of 2.0dBi in (2.4GHz and 5GHz) Band, while the APIN0505 utilized 2 integrated dual-band antennas with gains of 4.9dBi (2.4GHz) and 5.7dBi (5GHz) Band. FCC ID: Q9DAPIN0504505 DFS Verification testing was performed at the FCC on December 10, 2019. The DFS detection functionality has not been changed between these devices. Please refer to page 2 for the “Expedited Review Information” table. Sincerely, ____________________________ Signature Name/Position: Phillip Carranco / Manager Regulatory Compliance Phone: 650-236-9490 Email: [email protected] ] Expedited Review Required Information FCC ID(s) of Previously Granted DFS Devices Q9DAPIN0504505 FCC ID of New Application Q9DAPINH503 Technology (802.11x, frame based, MIMO, smart antenna, etc.) 802.11ax / MIMO 802.11ax / MIMO Bandwidth information and differences 20, 40 and 80MHz 20, 40 and 80MHz Antenna Information DFS Testing: 2.0dBi DFS Testing APINH503: 5.04dBi Differences in DFS functioning, circuitry, software, etc. Uses Broadcom RF Chipset Model: BCM47622 and DFS waveform detection mechanism Uses Broadcom RF Chipset Model: BCM47622 and DFS waveform detection mechanism Differences between the products such as Tx Power, modulation, receivers, processing circuitry Supports 2 Tx / 2 Rx paths 18 dBm per path Supports 2 Tx / 2 Rx paths 18 dBm per path Name of Test Labs for Various Grants MRT Technology (Taiwan) Co MRT Technology (Taiwan) Co.
Software Defined Radio (SDR) Date: August 11, 2020 Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Attention: OET Dept. FCC ID: Q9DAPINH503 Regarding Certification as a Software Defined Radio This letter is to notify the FCC of our intentions regarding submitting for grant approvals as a Software Defined Radio in accordance to KDB 442812 D01 SDR Apps Guide v02r03. All supporting documentation to be approved as an SDR will be included. Sign by: Print Name: Phillip Carranco Title: Regulatory Compliance Manager Company: Hewlett Packard Enterprise Company
Report No.: 2007TW0002-UE 1 of 3 EUT Photograph (1) EUT Photo (2) EUT Photo Report No.: 2007TW0002-UE 2 of 3 (3) EUT Photo (4) EUT Photo Report No.: 2007TW0002-UE 3 of 3 (5) EUT Photo (6) EUT Photo
Label Location Label
Report No.: 2007TW0002-UE 1 of 6 EUT Photograph (1) EUT Photo (2) EUT Photo Report No.: 2007TW0002-UE 2 of 6 (3) EUT Photo (4) EUT Photo Report No.: 2007TW0002-UE 3 of 6 (5) EUT Photo (6) EUT Photo Report No.: 2007TW0002-UE 4 of 6 (7) EUT Photo (8) EUT Photo Report No.: 2007TW0002-UE 5 of 6 (9) EUT Photo (10) EUT Photo Report No.: 2007TW0002-UE 6 of 6 (11) EUT Photo (12) EUT Photo
MRT Technology (Taiwan) Co., Ltd Report No.: 2007TW0002-U6 Phone: +886-3-3288388 Report Version: V01 Web: www.mrt-cert.com Issue Date: 08-06-2020 Page Number: 1 of 6 RF Exposure Evaluation Declaration FCC ID: Q9DAPINH503 Applicant: Hewlett Packard Enterprise Company Application Type: Certification Product: ACCESS POINT Model No.: APINH503 Trademark: , FCC Classification: Digital Transmission System (DTS) Unlicensed National Information Infrastructure (UNII) Reviewed By: ( Paddy Chen ) Approved By: ( Chenz Ker ) The test results relate only to the samples tested. The test results shown in the test report are traceable to the national/international standards through the calibration of the equipment and evaluated measurement uncertainty herein. The test report shall not be reproduced except in full without the written approval of MRT Technology (Taiwan) Co., Ltd. Report No.: 2007TW0002-U6 Page Number: 2 of 6 Revision History Report No. Version Description Issue Date Note 2007TW0002-U6 Rev. 01 Initial Report 08-06-2020 Valid Report No.: 2007TW0002-U6 Page Number: 3 of 6 1. PRODUCT INFORMATION 1.1. Equipment Description 1.2. Antenna Description Antenna Type Frequency Band (GHz) Max Peak Gain (dBi) BF Dir Gain (dBi) CDD Dir Gain (dBi) For Power For PSD Wi-Fi Internal Antenna (2.4GHz 2*2 MIMO, 5GHz 2*2 MIMO) PIFA 2.4 1.73 4.71 1.73 4.71 5 5.04 8.05 5.04 8.05 Bluetooth / ZigBee Internal Antenna Monopole 2.4 2.49 Note: 1. The EUT supports Cyclic Delay Diversity (CDD) mode, and CDD signals are correlated. For CDD transmissions, directional gain is calculated as follows, N ANT = 2, N SS = 1. If all antennas have the same gain, G ANT , Directional gain = G ANT + Array Gain, where Array Gain is as follows. • For power spectral density (PSD) measurements on all devices, Array Gain = 10 log (N ANT / N SS ) dB = 3.01; • For power measurements on IEEE 802.11 devices, Array Gain = 0 dB for N ANT ≤ 4; 2. The EUT also supports Beam Forming mode, and the Beam Forming support 802.11n/ac/ax, not include 802.11a/b/g. Directional gain = G ANT + BF Gain, BF Gain was declared by the applicant. 3. Antenna type and antenna gain are provided by the manufacturer. Product Name ACCESS POINT Model No. APINH503 Wi-Fi Specification 802.11a/b/g/n/ac/ax Bluetooth Specification v5.0 single mode, BLE only Zigbee Specification 802.15.4 Operating Temperature 0 ~ 40 °C Power Type AC Adapter or PoE input Operating Environment Indoor Use Report No.: 2007TW0002-U6 Page Number: 4 of 6 2. RF Exposure Evaluation 2.1. Limits According to FCC 1.1310: The criteria listed in the following table shall be used to evaluate the environment impact of human exposure to radio frequency (RF) radiation as specified in 1.1307(b) LIMITS FOR MAXIMUM PERMISSIBLE EXPOSURE (MPE) Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Field Strength (A/m) Power Density (mW/cm 2 ) Average Time (Minutes) (A) Limits for Occupational/ Control Exposures 300-1500 -- -- f/300 6 1500-100,000 -- -- 5 6 (B) Limits for General Population/ Uncontrolled Exposures 300-1500 -- -- f/1500 6 1500-100,000 -- -- 1 30 f= Frequency in MHz Calculation Formula: Pd = (Pout*G)/(4*pi*r 2 ) Where Pd = power density in mW/cm 2 Pout = output power to antenna in mW G = gain of antenna in linear scale Pi = 3.1416 r = distance between observation point and center of the radiator in cm Pd is the limit of MPE, 1mW/cm². If we know the maximum gain of the antenna and the total power input to the antenna, through the calculation, we will know the distance r where the MPE limit is reached. Report No.: 2007TW0002-U6 Page Number: 5 of 6 2.2. Test Result of RF Exposure Evaluation Product ACCESS POINT Test Item RF Exposure Evaluation Antenna Gain: Refer to clause 1.2. Test Mode Frequency Band (MHz) Max Conducted Power (dBm) Antenna Gain (dBi) Max EIRP (dBm) Bluetooth-LE 2402 ~ 2480 9.0 2.49 11.49 ZigBee 2405 ~ 2480 9.0 2.49 11.49 802.11b/g/n/ax 2412 ~ 2462 25.0 1.73 26.73 802.11a/n/ac/ax 5180 ~ 5320, 5500 ~ 5720, 5745 ~ 5825 25.0 5.04 30.04 Note: Turn-up power from operation description was taken into account for above max conducted power. Test Mode Frequency Band (MHz) Maximum EIRP (dBm) Power Density at R = 20 cm (mW/cm 2 ) Limit (mW/cm 2 ) Bluetooth-LE 2402 ~ 2480 11.49 0.0028 1 ZigBee 2405 ~ 2480 11.49 0.0028 1 802.11b/g/n/ax 2412 ~ 2462 26.73 0.0937 1 802.11a/n/ac/ax 5180 ~ 5320, 5500 ~ 5720, 5745 ~ 5825 30.04 0.2008 1 CONCULISON: WLAN 2.4GHz, WLAN 5GHz and Bluetooth-LE or ZigBee can transmit simultaneously. The max Power Density at R (20 cm) = 0.0028mW/cm 2 + 0.0937mW/cm 2 + 0.2008mW/cm 2 = 0.2973mW/cm 2 < 1mW/cm 2 . Therefore, the Min Safety Distance is 20cm. The End Report No.: 2007TW0002-U6 Page Number: 6 of 6 Appendix - EUT Photograph Refer to “2007TW0002-UE” file.
MRT Technology (Taiwan) Co., Ltd Report No.: 2007TW0002-U4 Phone: +886-3-3288388 Report Version: V01 Web: www.mrt-cert.com Issue Date: 08-06-2020 Page Number: 1 of 302 FCC ID: Q9DAPINH503 Applicant: Hewlett Packard Enterprise Company Application Type: Certification Product: ACCESS POINT Model No.: APINH503 Brand Name: , FCC Classification: Unlicensed National Information Infrastructure (UNII) FCC Rule Part(s): Part15 Subpart E (Section 15.407) Test Procedure(s): ANSI C63.10-2013, KDB 789033 D02v02r01, KDB 662911 D01v02r01 Test Date: July 15 ~ August 06, 2020 MEASUREMENT REPORT FCC PART 15 Subpart E WLAN 802.11a/n/ac/ax Reviewed By: ( Paddy Chen ) Approved By: (Chenz Ker) The test results relate only to the samples tested. This equipment has been shown to be capable of compliance with the applicable technical standards as indicated in the measurementreport and was tested in accordance with the measurement procedures specified in KDB 789033 D02v02r01. Test results reported hereinrelate only to the item(s) tested. The test report shall not be reproduced except in full without the written approval of MRT Technology (Taiwan) Co., Ltd. Report No.: 2007TW0002-U4 Page Number: 2 of 302 Revision History Report No. Version Description Issue Date Note 2007TW0002-U4 Rev. 01 Initial Report 08-06-2020 Valid Report No.: 2007TW0002-U4 Page Number: 3 of 302 CONTENTS Description Page General Information ....................................................................................................................... 6 1. INTRODUCTION ..................................................................................................................... 7 1.1. Scope ........................................................................................................................... 7 1.2. MRT Test Location ....................................................................................................... 7 2. PRODUCT INFORMATION ..................................................................................................... 8 2.1. Equipment Description .................................................................................................. 8 2.2. Product Specification Subjective to this Report ............................................................. 8 2.3. Working Frequencies for this report .............................................................................. 9 2.4. Test Mode .................................................................................................................... 9 2.5. Description of Available Antennas ............................................................................... 10 2.6. Description of Antenna RF Port .................................................................................. 10 2.7. Description of Test Configuration and Software ........................................................... 11 2.8. Duty Cycle ................................................................................................................... 11 2.9. EMI Suppression Device(s)/Modifications ................................................................... 13 2.10. Labeling Requirements ............................................................................................... 13 2.11. Test Environment Condition ........................................................................................ 13 3. DESCRIPTION OF TEST ...................................................................................................... 14 3.1. Evaluation Procedure ................................................................................................. 14 3.2. AC Line Conducted Emissions ................................................................................... 14 3.3. Radiated Emissions .................................................................................................... 15 4. ANTENNA REQUIREMENTS ................................................................................................ 16 5. TEST EQUIPMENT CALIBRATION DATE ............................................................................ 17 6. MEASUREMENT UNCERTAINTY ......................................................................................... 18 7. TEST RESULT ...................................................................................................................... 19 7.1. Summary .................................................................................................................... 19 7.2. 26dB Bandwidth Measurement ................................................................................... 20 7.2.1. Test Limit .................................................................................................................... 20 7.2.2. Test Procedure used ................................................................................................... 20 7.2.3. Test Setting ................................................................................................................. 20 7.2.4. Test Setup .................................................................................................................. 20 7.2.5. Test Result .................................................................................................................. 21 7.3. 6dB Bandwidth Measurement ..................................................................................... 39 7.3.1. Test Limit .................................................................................................................... 39 Report No.: 2007TW0002-U4 Page Number: 4 of 302 7.3.2. Test Procedure used ................................................................................................... 39 7.3.3. Test Setting ................................................................................................................. 39 7.3.4. Test Setup .........................................................…
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Report No.: 2007TW0002-U4 Page Number: 33 of 302 802.11ax-HE20 26dB Bandwidth - Ant 1 / Ant 0 + 1 Channel 36 (5180MHz) Channel 44 (5220MHz) Channel 48 (5240MHz) Channel 52 (5260MHz) Channel 60 (5300MHz) Channel 64 (5320MHz) Report No.: 2007TW0002-U4 Page Number: 34 of 302 Channel 100 (5500MHz) Channel 116 (5580MHz) Channel 140 (5700MHz) Channel 144 (5720MHz) Channel 149 (5745MHz) Channel 157 (5785MHz) Report No.: 2007TW0002-U4 Page Number: 35 of 302 Channel 165 (5825MHz) Report No.: 2007TW0002-U4 Page Number: 36 of 302 802.11ax-HE40 26dB Bandwidth - Ant 1 / Ant 0 + 1 Channel 38 (5190MHz) Channel 46 (5230MHz) Channel 54 (5270MHz) Channel 62 (5310MHz) Channel 102 (5510MHz) Channel 110 (5550MHz) Report No.: 2007TW0002-U4 Page Number: 37 of 302 Channel 134 (5670MHz) Channel 142 (5710MHz) Channel 151 (5755MHz) Channel 159 (5795MHz) Report No.: 2007TW0002-U4 Page Number: 38 of 302 802.11ax-HE80 26dB Bandwidth - Ant 1 / Ant 0 + 1 Channel 42 (5210MHz) Channel 58 (5290MHz) Channel 106 (5530MHz) Channel 122 (5610MHz) Channel 138 (5690MHz) Channel 155 (5775MHz) Report No.: 2007TW0002-U4 Page Number: 39 of 302 7.3. 6dB Bandwidth Measurement 7.3.1.Test Limit The minimum 6dBbandwidth shall be at least 500 kHz. 7.3.2.Test Procedure used KDB 789033 D02v02r01 - Section C.2 7.3.3.Test Setting 1. Set center frequency to the nominal EUT channel center frequency. 2. RBW = 100 kHz. 3. VBW ≥ 3 × RBW. 4. Detector = Peak. 5. Trace mode = max hold. 6. Sweep = auto couple. 7. Allow the trace to stabilize. 8. Measure the maximum width of the emission that is constrained by the frequencies associated with the two outermost amplitude points (upper and lower frequencies) that are attenuated by 6 dB relative to the maximum level measured in the fundamental emission. 7.3.4.Test Setup Report No.: 2007TW0002-U4 Page Number: 40 of 302 7.3.5.Test Result Product ACCESS POINT Test Engineer Eric Lin Test Site SR2 Test Date 2020/07/22 Test Mode Data Rate/ MCS Channel No. Frequency (MHz) 6dB Bandwidth (MHz) Limit (MHz) Result Ant 1 / Ant 0 + 1 802.11a 6Mbps 149 5745 16.38 ≥ 0.5 Pass 802.11a 6Mbps 157 5785 16.37 ≥ 0.5 Pass 802.11a 6Mbps 165 5825 16.38 ≥ 0.5 Pass 802.11ac-VHT20 MCS0 149 5745 17.61 ≥ 0.5 Pass 802.11ac-VHT20 MCS0 157 5785 17.64 ≥ 0.5 Pass 802.11ac-VHT20 MCS0 165 5825 17.61 ≥ 0.5 Pass 802.11ac-VHT40 MCS0 151 5755 36.37 ≥ 0.5 Pass 802.11ac-VHT40 MCS0 159 5795 36.39 ≥ 0.5 Pass 802.11ac-VHT80 MCS0 155 5775 75.76 ≥ 0.5 Pass 802.11ax-HE20 MCS0 149 5745 18.94 ≥ 0.5 Pass 802.11ax-HE20 MCS0 157 5785 18.98 ≥ 0.5 Pass 802.11ax-HE20 MCS0 165 5825 18.99 ≥ 0.5 Pass 802.11ax-HE40 MCS0 151 5755 37.64 ≥ 0.5 Pass 802.11ax-HE40 MCS0 159 5795 37.56 ≥ 0.5 Pass 802.11ax-HE80 MCS0 155 5775 76.44 ≥ 0.5 Pass Report No.: 2007TW0002-U4 Page Number: 41 of 302 802.11a 6dB Bandwidth - Ant 1 / Ant 0 + 1 Channel 149 (5745MHz) Channel 157 (5785MHz) Channel 165 (5825MHz) Report No.: 2007TW0002-U4 Page Number: 42 of 302 802.11ac-VHT20 6dB Bandwidth - Ant 1 / Ant 0 + 1 Channel 149 (5745MHz) Channel 157 (5785MHz) Channel 165 (5825MHz) 802.11ac-VHT40 6dB Bandwidth - Ant 1 / Ant 0 + 1 Channel 151 (5755MHz) Channel 159 (5795MHz) Report No.: 2007TW0002-U4 Page Number: 43 of 302 802.11ac-VHT80 6dB Bandwidth - Ant 1 / Ant 0 + 1 Channel 155 (5775MHz) Report No.: 2007TW0002-U4 Page Number: 44 of 302 802.11ax-HE20 6dB Bandwidth - Ant 1 / Ant 0 + 1 Channel 149 (5745MHz) Channel 157 (5785MHz) Channel 165 (5825MHz) 802.11ax-HE40 6dB Bandwidth - Ant 1 / Ant 0 + 1 Channel 151 (5755MHz) Channel 159 (5795MHz) Report No.: 2007TW0002-U4 Page Number: 45 of 302 802.11ax-HE80 6dB Bandwidth - Ant 1 / Ant 0 + 1 Channel 155 (5775MHz) Report No.: 2007TW0002-U4 Page Number: 46 of 302 7.4. Output Power Measurement 7.4.1.Test Limit 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. For an indoor access point operating in the band 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 (23.98dBm) or 11dBm +10 log (26dB BW). For the band 5.725-5.85 GHz, the maximum conducted output power over the frequency band of operation shall not exceed 1 W (30dBm). If transmitting antennas of directional gain greater than 6dBi are used, the maximum conducted output power shall be reduced by the amount in dB that the directional gain of the antenna exceeds 6dBi. 7.4.2.Test Procedure Used KDB 789033D02v01r04- Section E)3)b) Method PM-G 7.4.3.Test Setting Average power measurements were perform only when the EUT was transmitting at its maximum power control level usin…
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D8 Building, No.2 Tian'edang Rd., Wuzhong Economic · Suzhou · China
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 4 | 15E | 5.75 GHz - 5.83 GHz | 270.00 mW |
Access Point
Equipment Class
6ID - 15E 6 GHz Low Power Indoor Access PointHPE Aruba User Experience Sensor
Equipment Class
DTS - Digital Transmission SystemHPE Aruba User Experience Sensor
Equipment Class
DTS - Digital Transmission SystemACCESS POINT
Equipment Class
DTS - Digital Transmission SystemACCESS POINT
Equipment Class
NII - Unlicensed National Information Infrastructure TX