
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
8x4G-x WiFi Dual Band 4 Gigabit LAN Port GPON HGU Version 1.0 Date 2014.07.25 Copyright@2014 Mitrastar Network Technology Incorporation Quick Installation Guide Model List: Product Description Product Name POTS USB WiFi 2.4 WiFi 5.0 RF UPS Wall Adapter 844G Service Gateway, UPS Power Interface 844G-1 2 1 1 1 0 1 0 844G Service Gateway, Std Power Interface 844G-2 2 1 1 1 0 0 1 854G Service Gateway, RF and UPS Power Interface 854G-1 2 1 1 1 1 1 0 854G Service Gateway, RF and Std Power Interface 854G-2 2 1 1 1 1 0 1 1. How to Use the Devices? The device can be used in two types: Standing type and Wall mount type: a) Standing type (Vertically stand as below) b) Wall mount type ( Connectors upside and LED downside direction, there is a fiber tray for the Wall Mount) 2. Hardware Connections for the 4 models a. Open the PON Cover, connect the fiber cable to the Fiber SC connector of the device. b. Use a Gigabit Ethernet Cable to connect a computer to an Ethernet port for initial configuration and/or internet connection. C. Use the provided UPS or Power Adaptor source to the POWER Socket. Need to push the ON/OFF button to the ON position if Power Adaptor is used. d. Connect the USB dongle to the USB port if USB wants to be used Model 1: 844G-1 (Power on via UPS) Rear Panel (From Up to Down) Front Panel LED printing (From Up to Down) USB POWER RESET BROADBAND ETHERNET 4 SERVICE ETHERNET 3 WiFi 2.4GHz ETHERNET 2 WiFi 5GHz ETHERNET 1 ETHERNET 4 PHONE 1 ETHERNET 3 PHONE 2 ETHERNET 2 POWER ETHERNET 1 PHONE 1 PHONE 2 USB Model 2: 844G-2 (Power on via Power Adaptor) Rear Panel (From Up to Down) Front Panel LED printing (From Up to Down) USB POWER RESET BROADBAND ETHERNET 4 SERVICE ETHERNET 3 WiFi 2.4GHz ETHERNET 2 WiFi 5GHz ETHERNET 1 ETHERNET 4 PHONE 1 ETHERNET 3 PHONE 2 ETHERNET 2 ON/OFF ETHERNET 1 POWER PHONE 1 PHONE 2 USB Model 3: 854G-1 (Power on via UPS) Rear Panel (From Up to Down) Front Panel LED printing (From Up to Down) USB POWER RESET BROADBAND ETHERNET 4 SERVICE ETHERNET 3 WiFi 2.4GHz ETHERNET 2 WiFi 5GHz ETHERNET 1 ETHERNET 4 PHONE 1 ETHERNET 3 PHONE 2 ETHERNET 2 POWER ETHERNET 1 RF PHONE 1 PHONE 2 USB RF Model 4: 854G-2 (Power on via Power Adaptor) Rear Panel (From Up to Down) Front Panel LED printing (From Up to Down) USB POWER RESET BROADBAND ETHERNET 4 SERVICE ETHERNET 3 WiFi 2.4GHz ETHERNET 2 WiFi 5GHz ETHERNET 1 ETHERNET 4 PHONE 1 ETHERNET 3 PHONE 2 ETHERNET 2 ON/OFF ETHERNET 1 POWER PHONE 1 RF PHONE 2 USB RF 3. Configurations Step1: In your browser, go to http://192.168.1.1, the following screen appears, enter the default username and password: admin/admin and click Login. Step2: After Log into the Web GUI, click Quick Start, then configure the device for Internet Connection and Wireless connection. Step 3: Click Connect to Internet, Configure the Connection Type and DNS that ISP assigned. Click Here Step 4: Click Configure Wireless Network, Enable the wireless and configure the SSID as you like, the wireless WPA/WPA2 password will be generated automatically. Search the SSID CXNK12345678, type the correct WiFi password, then your Notebook can be connected to the device via WiFi for the internet. Certifications Federal Communications Commission (FCC) Interference Statement The device complies with Part 15 of FCC rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference. (2) This device must accept any interference received, including interference that may cause undesired operations. This device 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 device 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 device does cause harmful interference to radio/television reception, which can be determined by turning the device off and on, the user is encouraged to try to correct the interference by one or more of the following measures: β’ Reorient or relocate the receiving antenna. β’ Increase the separation between the equipment and the receiver. β’ Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. β’ Consult the dealer or an experienced radio/TV technician for help. Radiation Exposure Statement β’ This device and its antenna(s) must not be co-located or operating in conjunction with any other antenna or transmitter. β’ For operation within 5.15 ~ 5.25GHz frequency range, it is restricted to indoor environment. β’ IEEE 802.11b, 802.11g or 802.11n (20MHz) operation of this product in the U.S.A. is firmware-limited to channel 1 through 11. IEEE 802.11n (40MHz) operation of this product in the U.S.A. is firmware-limited to channel 3 through 9. β’ This equipment complies with FCC radiation exposure limits set forth for an uncontrolled environment. This equipment should be installed and operated with minimum distance 20cm between the radiator and your body. Notices Changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate the equipment. The device complies with the essential requirements of the R&TTE Directive 1995/5/EC. Radiation Exposure Statement This equipment complies with EU radiation exposure limits set forth for an uncontrolled environment. This equipment should be installed and operated with minimum distance 20cm between the radiator and your body. National Communications Commission (NCC) Article 12 Without permission, any company, firm or user shall not alter the frequency, increase the power, or change the characteristics and functions of the original design of the certified lower power frequency eleβ¦
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1 of 9 External Photo (1) EUT Photo (844G-1) (2) EUT Photo (844G-1) (3) EUT Photo (844G-1) (4) EUT Photo (844G-1) (5) EUT Photo (854G-1) (6) EUT Photo (854G-1) (7) EUT Photo (854G-1) (8) EUT Photo (854G-1) (9) EUT Photo (UPS-30W) (10) EUT Photo (UPS-30W) (11) EUT Photo (UPS-30W) (12) EUT Photo (UPS-30W) (13) EUT Photo (UPS-30W) (14) EUT Photo (UPS-36W) (15) EUT Photo (UPS-36W) (16) EUT Photo (UPS-36W) (17) EUT Photo (UPS-36W) (18) EUT Photo (UPS-36W)
844G-1 Labels: 1, Supplier provide label 2, Product label
854G-1 Labels: 1, Supplier provide label 2, Product label
1 of 7 Internal Photo (1) EUT Photo (844G-1) (2) EUT Photo (844G-1) (3) EUT Photo (844G-1) (4) EUT Photo (844G-1) (5) EUT Photo (844G-1) (6) EUT Photo (844G-1) (7) EUT Photo (854G-1) (8) EUT Photo (854G-1) (9) EUT Photo (854G-1) (10) EUT Photo (854G-1) (11) EUT Photo (854G-1) (12) EUT Photo (854G-1) (13) EUT Photo (854G-1)
MRT Technology (Suzhou) Co., Ltd Report No.: 1408RSU00405 Phone: +86-512-66308358 Report Version: V01 Fax: +86-512-66308368 Issue Date: 08-06-2014 Web: www.mrt-cert.com FCC ID: 2ABLK-8X4G-1 Page Number: 1 of 7 RF Exposure Evaluation Declaration FCC ID: 2ABLK-8X4G-1 APPLICANT: Calix Inc. Application Type: Certification Product: WIFI dual band 4 GE LAN GPON HGU Model No.: 844G-1, 854G-1 Brand Name: Calix FCC Classification: Digital Transmission System (DTS) Unlicensed National Information Infrastructure (UNII) Reviewed By : ( Robin Wu ) Approved By : ( Marlin Chen ) 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 (Suzhou) Co., Ltd. Report No.: 1408RSU00405 FCC ID: 2ABLK-8X4G-1 Page Number: 2 of 7 Revision History Report No. Version Description Issue Date 1408RSU00405 Rev. 01 Initial report 08-06-2014 Report No.: 1408RSU00405 FCC ID: 2ABLK-8X4G-1 Page Number: 3 of 7 1. PRODUCT INFORMATION 1.1. Equipment Description Note: There are different Fiber modules of model number, and evaluated the different Fiber module in βFCC DOC reportβ. Product Name WIFI dual band 4 GE LAN GPON HGU Model No. 844G-1, 854G-1 Frequency Range For 2.4G Band: 802.11b/g/n: 2412 ~ 2462 MHz For 5.0G Band: 802.11a/n/ac: 5150 ~ 5250MHz; 5725 ~ 5850MHz Type of Modulation 802.11b: DSSS 802.11g/a/n/ac: OFDM Maximum Average Output Power For 2.4G Band: 802.11b: 20.98dBm 802.11g: 21.24dBm 802.11n-HT20: 20.65dBm 802.11n-HT40: 19.70dBm For 5.0G Band: 802.11a: 21.99dBm 802.11n-HT20: 21.38dBm 802.11n-HT40: 21.75dBm 802.11ac-VHT20: 21.67dBm 802.11ac-VHT40: 21.69dBm 802.11ac-VHT80: 21.12dBm Report No.: 1408RSU00405 FCC ID: 2ABLK-8X4G-1 Page Number: 4 of 7 1.2. Antenna Description Antenn a Type Frequency Band (GHz) T X Paths Directional Gain (dBi) Non Beam Forming Beam Forming PCB Antenna 2.4 2 1.90 -- 5.2 4 2.17 8.04 5.8 4 2.70 8.70 Note: 1. Transmit at 2.4GHz support two antennas, and support four antennas at 5GHz transmit. 2. The EUT supports Beam Forming mode, and the Beam Forming support 802.11n/ac, not include 802.11a. 3. Correlated signals include, but are not limited to, signals transmitted in any of the following modes: ο¬ Any transmit Beam Forming mode, whether fixed or adaptive (e.g., phased array modes, closed loop MIMO modes, Transmitter Adaptive Antenna modes, Maximum Ratio Transmission (MRT) modes, and Statistical Eigen Beam Forming (EBF) modes). 4. Unequal antenna gains, with equal transmit powers. For antenna gains given by G 1 , G 2 , ..., G N dBi ο¬ transmit signals are correlated, then ο¬ Directional gain = 10 log[(10 G1/20 + 10 G2/20 + ... + 10 GN/20 ) 2 /N ANT ] dBi [Note the β20βs in the denominator of each exponent and the square of the sum of terms; the object is to combine the signal levels coherently.] Report No.: 1408RSU00405 FCC ID: 2ABLK-8X4G-1 Page Number: 5 of 7 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*r2) Where Pd = power density in mW/cm2 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/cmΒ². 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.: 1408RSU00405 FCC ID: 2ABLK-8X4G-1 Page Number: 6 of 7 2.2. Test Result of RF Exposure Evaluation Product WIFI dual band 4 GE LAN GPON HGU Test Item RF Exposure Evaluation Antenna Gain: The maximum Gain measured in fully anechoic chamber is 1.90dBi for 2.4GHz, 2.17dBi for 5.2GHz, 2.03dBi for 5.3GHz, 2.55dBi for 5.6GHz and 2.70dBi for 5.8GHz in logarithm scale. For 2.4G ISM Band: Test Mode Frequency Band (MHz) Maximum Average Output Power (dBm) Power Density at R = 20 cm (mW/cm 2 ) Limit (mW/cm 2 ) 802.11b 2412 ~ 2462 20.98 0.0386 1 802.11g 2412 ~ 2462 21.24 0.0410 1 802.11n-HT20 2412 ~ 2462 20.65 0.0307 1 802.11n-HT40 2422 ~ 2452 19.70 0.0288 1 For 5G UNII Band: Test Mode Frequency Band (MHz) Maximum Average Output Power (dBm) Power Density at R = 20 cm (mW/cm 2 ) Limit (mW/cm 2 ) 802.11a 5180 ~ 5240 15.66 0.0121 1 5725 ~ 5825 21.99 0.0586 1 802.11n-HT20 5180 ~ 5240 15.93 0.0128 1 5725 ~ 5825 21.38 0.0509 1 802.11n-HT40 5190 ~ 5230 16.42 0.0144 1 5755 ~ 5795 21.75 0.0554 1 802.11ac-VHT20 5180 ~ 5240 15.89 0.0127 1 5725 ~ 5825 21.38 0.0509 1 802.11ac-VHT40 5190 ~ 5230 16.08 0.0133 1 5755 ~ 5795 21.69 0.0547 1 802.11ac-VHT80 5210 15.87 0.0127 1 5775 21.12 0.0479 1 Report No.: 1408RSU00405 FCC ID: 2ABLK-8X4G-1 Page Number: 7 of 7 CONCULISON: Both of the WLAN 2.4GHz Band and WLAN 5GHz Band can transmit simultaneously. Therefore, the Max Power Density at R (20 cm) = 0.0410mW/cm 2 + 0.0586mW/cm 2 = 0.0996mW/cm 2 < 1mW/cm 2 . So the EUT complies with the requirement. The End
MRT Technology (Suzhou) Co., Ltd Report No.: 1408RSU00401 Phone: +86-512-66308358 Report Version: V01 Fax: +86-512-66308368 Issue Date: 08-06-2014 Web: www.mrt-cert.com FCC ID: 2ABLK-8X4G-1 Page Number: 1 of 290 IC: 4009A-8X4G1 FCC ID: 2ABLK-8X4G-1 IC: 4009A-8X4G1 APPLICANT: Calix Inc. Application Type: Certification Product: WIFI dual band 4 GE LAN GPON HGU Model No.: 844G-1, 854G-1 Brand Name: Calix FCC Classification: Digital Transmission System (DTS) FCC Rule Part(s): Part 15.247 IC Rule(s): RSS-210 Issue 8 Test Procedure(s): KDB 558074 D01v03r01, KDB 662911 D01v02r01, KDB 662911 D02v01 Test Date: July 11 ~ 26, 2014 MEASUREMENT REPORT FCC PART 15.247 / RSS-210 WLAN 802.11a/b/g/n/ac Reviewed By : ( Robin Wu ) Approved By : ( Marlin Chen ) 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 measurement report and was tested in accordance with the measurement procedures specified in KDB 558074 D01v03r01. Test results reported herein relate only to the item(s) tested. The test report shall not be reproduced except in full without the written approval of MRT Technology (Suzhou) Co., Ltd. Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 2 of 290 IC: 4009A-8X4G1 Revision History Report No. Version Description Issue Date 1408RSU00401 Rev. 01 Initial report 08-06-2014 Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 3 of 290 IC: 4009A-8X4G1 CONTENTS Description Page 1. INTRODUCTION ..................................................................................................................... 6 1.1. Scope ........................................................................................................................... 6 1.2. MRT Test Location ....................................................................................................... 6 2. PRODUCT INFORMATION ..................................................................................................... 7 2.1. Equipment Description .................................................................................................. 7 2.2. Frequency / Channel Operation .................................................................................... 8 2.3. Description of Available Antennas ................................................................................ 9 2.4. Description of Antenna RF Port .................................................................................. 10 2.5. Device Capabilities ...................................................................................................... 11 2.6. Test Configuration ....................................................................................................... 11 2.7. EMI Suppression Device(s)/Modifications .................................................................... 11 2.8. Labeling Requirements ................................................................................................ 11 2.9. Test Software ............................................................................................................. 12 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. 6dB 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. Output Power Measurement ....................................................................................... 46 7.3.1. Test Limit ................................................................................................................ 46 7.3.2. Test Procedure Used .............................................................................................. 46 7.3.3. Test Setting ............................................................................................................. 46 7.3.4. Test Setup ............................................................................................................... 47 7.3.5. Test Result of Output Power ................................................................................... 48 Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 4 of 290 IC: 4009A-8X4G1 7.4. Power Spectral Density Measurement .............β¦
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Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 36 of 290 IC: 4009A-8X4G1 802.11n-HT40 6dB Bandwidth - Ant 0 / Ant 0 + 1 + 2 + 3 Channel 151 (5755MHz) Channel 159 (5795MHz) 802.11ac-VHT40 6dB Bandwidth - Ant 0 / Ant 0 + 1 + 2 + 3 Channel 151 (5755MHz) Channel 159 (5795MHz) 802.11ac-VHT80 6dB Bandwidth - Ant 0 / Ant 0 + 1 + 2 + 3 Channel 155 (5775MHz) Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 37 of 290 IC: 4009A-8X4G1 802.11a 6dB Bandwidth - Ant 1 / Ant 0 + 1 + 2 + 3 Channel 149 (5745MHz) Channel 157 (5785MHz) Channel 165 (5825MHz) 802.11n-HT20 6dB Bandwidth - Ant 1 / Ant 0 + 1 + 2 + 3 Channel 149 (5745MHz) Channel 157 (5785MHz) Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 38 of 290 IC: 4009A-8X4G1 Channel 165 (5825MHz) 802.11ac-VHT20 6dB Bandwidth - Ant 1 / Ant 0 + 1 + 2 + 3 Channel 149 (5745MHz) Channel 157 (5785MHz) Channel 165 (5825MHz) Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 39 of 290 IC: 4009A-8X4G1 802.11n-HT40 6dB Bandwidth - Ant 1 / Ant 0 + 1 + 2 + 3 Channel 151 (5755MHz) Channel 159 (5795MHz) 802.11ac-VHT40 6dB Bandwidth - Ant 1 / Ant 0 + 1 + 2 + 3 Channel 151 (5755MHz) Channel 159 (5795MHz) 802.11ac-VHT80 6dB Bandwidth - Ant 1 / Ant 0 + 1 + 2 + 3 Channel 155 (5775MHz) Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 40 of 290 IC: 4009A-8X4G1 802.11a 6dB Bandwidth - Ant 2 / Ant 0 + 1 + 2 + 3 Channel 149 (5745MHz) Channel 157 (5785MHz) Channel 165 (5825MHz) 802.11n-HT20 6dB Bandwidth - Ant 2 / Ant 0 + 1 + 2 + 3 Channel 149 (5745MHz) Channel 157 (5785MHz) Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 41 of 290 IC: 4009A-8X4G1 Channel 165 (5825MHz) 802.11ac-VHT20 6dB Bandwidth - Ant 2 / Ant 0 + 1 + 2 + 3 Channel 149 (5745MHz) Channel 157 (5785MHz) Channel 165 (5825MHz) Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 42 of 290 IC: 4009A-8X4G1 802.11n-HT40 6dB Bandwidth - Ant 2 / Ant 0 + 1 + 2 + 3 Channel 151 (5755MHz) Channel 159 (5795MHz) 802.11ac-VHT40 6dB Bandwidth - Ant 2 / Ant 0 + 1 + 2 + 3 Channel 151 (5745MHz) Channel 159 (5795MHz) 802.11ac-VHT80 6dB Bandwidth - Ant 2 / Ant 0 + 1 + 2 + 3 Channel 155 (5775MHz) Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 43 of 290 IC: 4009A-8X4G1 802.11a 6dB Bandwidth - Ant 3 / Ant 0 + 1 + 2 + 3 Channel 149 (5745MHz) Channel 157 (5785MHz) Channel 165 (5825MHz) 802.11n-HT20 6dB Bandwidth - Ant 3 / Ant 0 + 1 + 2 + 3 Channel 149 (5745MHz) Channel 157 (5785MHz) Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 44 of 290 IC: 4009A-8X4G1 Channel 165 (5825MHz) 802.11ac-VHT20 6dB Bandwidth - Ant 3 / Ant 0 + 1 + 2 + 3 Channel 149 (5745MHz) Channel 157 (5785MHz) Channel 165 (5825MHz) Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 45 of 290 IC: 4009A-8X4G1 802.11n-HT40 6dB Bandwidth - Ant 3 / Ant 0 + 1 + 2 + 3 Channel 151 (5755MHz) Channel 159 (5795MHz) 802.11ac-VHT40 6dB Bandwidth - Ant 3 / Ant 0 + 1 + 2 + 3 Channel 151 (5755MHz) Channel 159 (5795MHz) 802.11ac-VHT80 6dB Bandwidth - Ant 3 / Ant 0 + 1 + 2 + 3 Channel 155 (5775MHz) Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 46 of 290 IC: 4009A-8X4G1 7.3. Output Power Measurement Β§15.247(b)(3); RSS-210 [A8.4] 7.3.1. Test Limit For FCC The maximum out power shall be less 1 Watt (30dBm). Limit for Non-Beam Forming Output power Limit 2412 ~ 2462MHz: Limit (dBm) = 30dBm Output power Limit 5745 ~ 5825MHz: Limit (dBm) = 30dBm Limit for Beam Forming Output power Limit 5745 ~ 5825MHz: Limit (dBm) = 30dBm - (8.7dBi - 6dBi) = 27.3dBm For IC The maximum peak conducted output power shall be exceed 1 Watt (30dBm) and the E.I.R.P shall not exceed 4 Watt (36dBm). 7.3.2. Test Procedure Used KDB 558074 D01v03r01 - Section 9.1.3 PKPM1 Peak Power Method (for signals with BW β€ 50MHz) KDB 558074 D01v03r01 - Section 9.1.2 PKPM1 Peak Power Method (for signals with BW Λ 50MHz) 7.3.3. Test Setting Method PKPM1 (Peak Power Measurement of Signals with DTS BW β€ 50MHz) Peak power measurements were performed only when the EUT was transmitting at its maximum power control level using a broadband power meter with a pulse sensor. The pulse sensor employs a VBW = 50MHz so this method was only used for signals whose DTS bandwidth was less than or equal to 50MHz. Method PKPM1 (Peak Power Measurement of Signals with DTS BW Λ 50MHz) 1) Set the RBW = 1MHz. 2) Set the VBW β₯ 3RBW 3) Set the span β₯ 1.5 x DTS bandwidth. Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 47 of 290 IC: 4009A-8X4G1 4) Detector = peak. 5) Sweep time = auto couple. 6) Trace mode = max hold. 7) Allow trace to fully stabilize. 8) Use the instrumentβs band/channel power measurement function with the band limits set equal to the DTS bandwidth edges (for some instruments, this may require a manual override to select peak detector). 7.3.4. Test Setup Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 48 of 290 IC: 4009A-8X4G1 7.3.5. Test Result of Output Power Power output test was verified over all data rates of each mode shown as below, and then choose the maximum power output (yellow marker) for final test of each channel. MCS Index for 802.11n N TX Data Rate (Mbps) 802.11b 802.11g 20MHz Bandwidth 40MHz Bandwidth 800ns GI 400ns GI 800ns GI 400ns GI 0 1 1 6 6.5 7.2 13.5 15.0 1 1 2 9 13.0 14.4 27.0 30.0 2 1 5.5 12 19.5 21.7 40.5 45.0 3 1 11 18 26.0 28.9 54.0 60.0 4 1 -- 24 39.0 43.3 81.0 90.0 5 1 -- 36 52.0 57.8 108.0 120.0 6 1 -- 48 58.5 65.0 121.5 135.0 7 1 -- 54 65.0 72.2 135.0 150.0 8 2 -- -- 13.0 14.4 27.0 30.0 9 2 -- -- 26.0 28.9 54.0 60.0 10 2 -- -- 39.0 43.3 81.0 90.0 11 2 -- -- 52.0 57.8 108.0 120.0 12 2 -- -- 78.0 86.7 162.0 180.0 13 2 -- -- 104.0 115.6 216.0 240.0 14 2 -- -- 117.0 130.0 243.0 270.0 15 2 -- -- 130.0 144.0 270.0 300.0 MCS Index for 802.11n N TX Data Rate (Mbps) 802.11a 20MHz Bandwidth 40MHz Bandwidth 800ns GI 400ns GI 800ns GI 400ns GI 24 4 6 26.0 28.8 54.0 60.0 25 4 9 52.0 57.6 108.0 120.0 26 4 12 78.0 86.8 162.0 180.0 27 4 18 104.0 115.6 216.0 240.0 28 4 24 156.0 173.2 324.0 360.0 29 4 36 β¦
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Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 54 of 290 IC: 4009A-8X4G1 Test Mode Data Rate (Mbps) Channel No. Freq. (MHz) Ant 0 Average Power (dBm) Ant 1 Average Power (dBm) Ant 2 Average Power (dBm) Ant 3 Average Power (dBm) Total Average Power (dBm) Limit (dBm) Result Ant 0 + 1 + 2 + 3, Non-Beam Forming 11a 6 149 5745 15.56 15.93 14.08 14.62 21.13 β€30 Pass 11a 6 157 5785 16.49 16.75 14.92 15.48 21.99 β€30 Pass 11a 6 165 5825 15.86 16.41 14.64 15.25 21.61 β€30 Pass 11n-HT20 6.5 149 5745 15.69 16.15 14.62 14.78 21.38 β€30 Pass 11n-HT20 6.5 157 5785 15.25 15.64 14.22 14.39 20.94 β€30 Pass 11n-HT20 6.5 165 5825 14.86 16.53 13.57 14.37 20.99 β€30 Pass 11ac-VHT20 6.5 149 5745 15.73 16.04 14.31 15.16 21.38 β€30 Pass 11ac-VHT20 6.5 157 5785 15.06 15.96 14.30 14.79 21.09 β€30 Pass 11ac-VHT20 6.5 165 5825 14.99 15.52 13.96 14.50 20.80 β€30 Pass 11n-HT40 13.5 151 5755 16.00 16.71 14.78 15.18 21.75 β€30 Pass 11n-HT40 13.5 159 5795 15.72 16.25 14.17 14.72 21.31 β€30 Pass 11ac-VHT40 13.5 151 5755 16.09 16.36 14.94 15.12 21.69 β€30 Pass 11ac-VHT40 13.5 159 5795 15.37 16.34 14.27 14.83 21.29 β€30 Pass 11ac-VHT80 29.3 155 5775 15.36 16.21 13.98 14.53 21.12 β€30 Pass Ant 0 + 1 + 2 + 3, Beam Forming 11n-HT20 6.5 149 5745 12.28 12.34 10.78 11.14 17.71 β€30 Pass 11n-HT20 6.5 157 5785 12.87 13.39 11.64 12.50 18.67 β€30 Pass 11n-HT20 6.5 165 5825 13.34 13.58 11.66 12.16 18.78 β€30 Pass 11ac-VHT20 6.5 149 5745 12.58 12.75 11.18 10.73 17.92 β€30 Pass 11ac-VHT20 6.5 157 5785 11.96 12.31 10.91 11.14 17.64 β€30 Pass 11ac-VHT20 6.5 165 5825 13.19 13.42 11.36 12.02 18.60 β€30 Pass 11n-HT40 13.5 151 5755 12.26 12.64 10.86 11.33 17.85 β€30 Pass 11n-HT40 13.5 159 5795 12.00 12.54 10.63 11.37 17.71 β€30 Pass 11ac-VHT40 13.5 151 5755 13.26 13.49 11.59 12.09 18.70 β€30 Pass 11ac-VHT40 13.5 159 5795 12.54 12.51 11.16 11.26 17.94 β€30 Pass 11ac-VHT80 29.3 155 5775 12.42 12.51 11.13 11.64 17.98 β€30 Pass Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 55 of 290 IC: 4009A-8X4G1 7.4. Power Spectral Density Measurement Β§15.247(e); RSS-210 [A8.2] 7.4.1. Test Limit The maximum permissible power spectral density is 8dBm in any 3 kHz band. Limit for Non-Beam Forming Power Spectral Density 5745 ~ 5825MHz: Limit (dBm / 3kHz) = 8dBm / 3kHz Limit for Beam Forming Power Spectral Density 5745 ~ 5825MHz: Limit (dBm / 3kHz) = 8dBm / 3kHz - (8.7dBi - 6dBi) = 5.3dBm / 3kHz 7.4.2. Test Procedure Used KDB 558074 D01v03r01 - Section 10.2 Method PKPSD 7.4.3. Test Setting 1. Analyzer was set to the center frequency of the DTS channel under investigation 2. Span = 1.5 times the DTS channel bandwidth 3. RBW = 3kHz 4. VBW = 10kHz 5. Detector = peak 6. Sweep time = auto couple 7. Trace mode = max hold 8. Trace was allowed to stabilize Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 56 of 290 IC: 4009A-8X4G1 7.4.4. Test Setup Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 57 of 290 IC: 4009A-8X4G1 7.4.5. Test Result Test Mode Data Rate (Mbps) Channel No. Freq. (MHz) Ant 0 PSD (dBm / 3kHz) Ant 1 PSD (dBm / 3kHz) Total PSD (dBm / 3kHz) Limit (dBm / 3kHz) Result Ant 0 11b 1 1 2412 -0.68 -- -0.68 β€8 Pass 11b 1 6 2437 -0.44 -- -0.44 β€8 Pass 11b 1 11 2462 -0.44 -- -0.44 β€8 Pass 11g 6 1 2412 -3.55 -- -3.55 β€8 Pass 11g 6 6 2437 -3.19 -- -3.19 β€8 Pass 11g 6 11 2462 -5.78 -- -5.78 β€8 Pass 11n-HT20 6.5 1 2412 -6.04 -- -6.04 β€8 Pass 11n-HT20 6.5 6 2437 -4.69 -- -4.69 β€8 Pass 11n-HT20 6.5 11 2462 -6.35 -- -6.35 β€8 Pass 11n-HT40 13.5 3 2422 -12.56 -- -12.56 β€8 Pass 11n-HT40 13.5 6 2437 -9.48 -- -9.48 β€8 Pass 11n-HT40 13.5 9 2452 -12.16 -- -12.16 β€8 Pass Ant 1 11n-HT20 6.5 1 2412 -- -6.44 -6.44 β€8 Pass 11n-HT20 6.5 6 2437 -- -6.65 -6.65 β€8 Pass 11n-HT20 6.5 11 2462 -- -8.59 -8.59 β€8 Pass 11n-HT40 13.5 3 2422 -- -12.80 -12.80 β€8 Pass 11n-HT40 13.5 6 2437 -- -10.49 -10.49 β€8 Pass 11n-HT40 13.5 9 2452 -- -13.95 -13.95 β€8 Pass Ant 0 + 1 11n-HT20 6.5 1 2412 -7.03 -7.69 -4.34 β€8 Pass 11n-HT20 6.5 6 2437 -5.45 -6.81 -3.07 β€8 Pass 11n-HT20 6.5 11 2462 -6.80 -8.63 -4.61 β€8 Pass 11n-HT40 13.5 3 2422 -13.22 -12.67 -9.93 β€8 Pass 11n-HT40 13.5 6 2437 -9.75 -8.34 -5.98 β€8 Pass 11n-HT40 13.5 9 2452 -12.38 -11.37 -8.84 β€8 Pass Report No.: 1408RSU00401 FCC ID: 2ABLK-8X4G-1 Page Number: 58 of 290 IC: 4009A-8X4G1 Test Mode Data Rate (Mbps) Channel No. Freq. (MHz) Ant 0 PSD (dBm / 3kHz) Ant 1 PSD (dBm / 3kHz) Ant 2 PSD (dBm / 3kHz) Ant 3 PSD (dBm / 3kHz) Total PSD (dBm / 3kHz) Limit (dBm / 3kHz) Result Ant 0 + 1 + 2 + 3, Non-Beam Forming 11a 6 149 5745 -5.48 -9.60 -9.19 -11.55 -2.34 β€8 Pass 11a 6 157 5785 -5.79 -10.59 -12.36 -11.66 -3.21 β€8 Pass 11a 6 165 5825 -7.82 -10.63 -12.14 -12.16 -4.28 β€8 Pass 11n-HT20 6.5 149 5745 -5.35 -9.13 -10.34 -10.03 -2.18 β€8 Pass 11n-HT20 6.5 157 5785 -6.27 -9.42 -10.53 -10.07 -2.70 β€8 Pass 11n-HT20 6.5 165 5825 -6.83 -8.78 -11.30 -10.41 -2.97 β€8 Pass 11ac-VHT20 6.5 149 5745 -6.05 -9.17 -10.70 -9.80 -2.52 β€8 Pass 11ac-VHT20 6.5 157 5785 -5.31 -8.95 -10.73 -10.41 -2.24 β€8 Pass 11ac-VHT20 6.5 165 5825 -7.05 -10.03 -11.71 -10.88 -3.51 β€8 Pass 11n-HT40 13.5 151 5755 -5.71 -11.19 -13.50 -12.05 -3.45 β€8 Pass 11n-HT40 13.5 159 5795 -5.83 -11.67 -13.32 -12.37 -3.62 β€8 Pass 11ac-VHT40 13.5 151 5755 -4.16 -10.17 -9.44 -11.37 -1.76 β€8 Pass 11ac-VHT40 13.5 159 5795 -5.98 -10.80 -12.97 -11.28 -3.37 β€8 Pass 11ac-VHT80 29.3 155 5775 -6.10 -13.60 -14.15 -15.81 -4.51 β€8 Pass Ant 0 + 1 + 2 + 3, Beam Forming 11n-HT20 6.5 149 5745 -8.65 -14.68 -15.80 -15.91 -6.52 β€5.3 Pass 11n-HT20 6.5 157 5785 -11.46 -14.68 -15.95β¦
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D8 Building, Youxin Industrial Park, No.2 Β· Suzhou Β· China
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 5 | 15C | 5.78 GHz - 5.78 GHz | 897.40 mW |
GigaPro
Equipment Class
6PP - 15E 6 GHz Subordinate Indoor DeviceGigaSpire
Equipment Class
NII - Unlicensed National Information Infrastructure TXGigaSpire
Equipment Class
DTS - Digital Transmission SystemGS7 XGS Tri Gateway, GS7 10GE Tri Gateway
Equipment Class
6PP - 15E 6 GHz Subordinate Indoor Device
GigaSpire BLAST u6t
Equipment Class
NII - Unlicensed National Information Infrastructure TX