
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
ϬϬʳImportant Safety Warningsʳ “Installation” should include bonding the screen of the coaxial cable to the earth at the building entrance per ANSI/NFPA 70, the National Electrical Code (NEC), in particular Section 820.93. Grounding of Outer Conductive Shield of a Coaxial Cable. ϬʳInstallation Follow the procedures below to install the hardware. Figure 1 illustrates the connection relationship. 1. Connect one end of the coaxial cable (not included) to the CABLE port on the modem, and connect the other end to the cable wall outlet. Be sure not to bend or over tighten the cables as this may strain the connector and cause damage. If you plan to connect the modem and television to the same wall outlet, you must use a cable line splitter (not included). 2. Connect one end of the Ethernet cable to an Ethernet port on the modem, and connect the other end to the Ethernet port on the PC. 3. Connect one end of the Phone line cable to a VoIP port (Tel) on the modem, and connect the other end to the phone port of the phone set. 4. Connect one end of the DC power adapter to the POWER port on the modem, and connect the other end to an electric outlet on the wall. ϬʳConnectors on the rear panel of the Modem This list of connectors describes where to connect the cables and power adapter when installing the cable modem. 1. POWER: This is where you connect the included RJ11 cable. The other end connects to the phone line port on the Telephone set. 3.ETHERNET: This is where you connect the Ethernet RJ45 cable. The other end connects to the Ethernet port on the PC or NIC. 4.RESET button: Reset the device to factory defaults by pressing and holding the button for more than 10 seconds. 5.CABLE Connector: This is where you connect the coaxial cable (not included) that leads to the cable splitter (not included) or the cable wall Figure 1 illustrates the connection relationship fails. DSGreen Indicatesthatdataisbeing receivedfromthecable network.Indicatesthatthe cablemodemhasacquireda DSchannel. US Green Indicatesthatdataisbeing transmittedtothecable network.Indicatesthatthe cablemodemhasacquiredan upstreamchannel ReadyGreen LEDwillflashslowlywhen performingupstreamranging. LEDwillflashquicklywhen 3 power adapter. Remember to use only the power adapter that came with the Cable Modem. PleaseseetheLEDdescriptionsbelow: LEDCOLORDESCRIPTION PowerGreen IndicatesthattheDevicehas successfullycompleted internalpowerͲontests.LED flashesifpowerͲonselftest acquiringanIPAddressand ConfigurationFile. LEDwillremainoffifthecable modemconfigurationfilehas networkaccesssetto “disable”.TheLEDwillremain solidwhenthecablemodem isregisteredonthecable network. TelGreen LEDMUSTremainsolid,when onͲhook LEDMUSTflashwhenaphone is“OffͲhook” WPSGreen LEDflasheswhenpushingthe HardwareWPS(attheright outlet. 2.TEL:This is where you connect the phone line sideofCPE)button. WLAN Green WhenWifinetworkis available,LEDwillbeon. Ethern et Green Indicatesconnectivity betweentheEthernetporton thecablemodemandthePC’s Ethernetport.LEDflashes whentrafficisbeingpassed. ϬϬʳSpecification Operating Environment: 40 degree C max. 4 ϬʳSafety Notices 1. When this device is placed upright with the aid of the stand, the stand must be fixed at a 90-degree angle to the cable modem˗otherwise the device ϬʳWall-Mount Installation You can mount this device on a wall using the two mounting brackets on the bottom of the device. We recommend that you use two round or pan head screws. 1. Install two screws on a flat surface using Figure 2 on the opposite page as a reference. The screws should protrude from the wall so that you can fit the device between the head of the screw and the wall. If you install the screws into drywall, use hollow wall anchors to ensure that the device does not pull away from the wall due to prolonged strain 56 Figure 3: The screw’s size Figure 2: The distance of the pothook (Horizontal) from the cable and power connectors. 540.00771.005 ٟ Federal Communications Statement 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. If not installed and used in accordance with the instructions, the device may cause harmful interference to radio communications. There is no guarantee, however, that interference will not occur in a particular installation. If this device causes harmful interference to radio or television reception, which can be determined by turning it off and on, the user can try to correct the interference by one of the following measures: - Increase the separation between the device and the equipment with which it is interfering (for example, a television or radio). - Connect the device into an electrical outlet on a different circuit than the interfered device is connected. - Consult the dealer or an experienced radio/TV technician for help. ٟ FCC Regulatory Information 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. FCC Caution: Any changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate this device. IEEE 802.11b or 802.11g operation of this device in the U.S.A. is firmware-limited to channels 1 through 11. 2. Mount the device onto the wall. Use Figure 3 on the opposite page as a reference: Ϭ Commission (FCC) Interference ٟ FCC Radiation Exposure Statement This device complies with…
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Neutron Engineering Inc. Project No.: 1108C255 Page 2 of 13 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 3 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 3 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 4 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 4 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 5 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 5 of 13 1108C255 1108C255
2011.08.110.0 2011.08.16UpdateLongli0.1N/AN/A DVW2100 PTT Label 500.00xxx.005U10C059.87 Yanli Yu Scale: 2/1 NOTES: 1.Material: #50 Mylar + 25# PET(matte, printable) 2.Adhesive: Acrylic 3.Adhesive thickness : 50#Mylar: 0.024+/-0.003mm 25#PET : 0.018+/-0.003mm 4.Printing Color:Black 5.Background: White 6.Packaging Style: Reel 7.The part must be RoHS compliant Package style Printing Arial,4.8pt "X"market code depend on areas Printing Arial, 3.8pt Scale: 1/1 Vendor provide 16 45 Remark: XXXXXXX U10C059.80,XXXXXXXDVW2110; U10C059.82,XXXXXXXDVW2118; U10C059.87,XXXXXXXDVW2117; Vendor Code Ubee Part No.: Input: 12V 1A Model name: DVW2110 FCC ID: XCNDVW2110 16 45 Ubee Part No.: XXXXXXX Input: 12V 1A Model name: DVW2110 Factory ID: X FCC ID: XCNDVW2110 PTT Label Location 2011.08.110.0 DVW2100 Label Placement U10C059.87 Yanli Yu
Neutron Engineering Inc. Project No.: 1108C255 Page 6 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 6 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 7 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 7 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 8 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 8 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 9 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 9 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 10 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 10 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 11 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 11 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 12 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 12 of 13 1108C255 1108C255 Neutron Engineering Inc. Project No.: 1108C255 Page 13 of 13 1108C255
Neutron Engineering Inc. FCC RF EXPOSURE REPORT FCC ID: XCNDVW2110 Project No. : 1108C255 Equipment : Cable Modem BCM3379 WeMTA Model : DVW2110 Applicant : Ubee Interactive Corp. Address : 6F-9, No.38, Taiyuan St. Jhubei Hsinchu Taiwan According: : FCC Guidelines for Human Exposure IEEE C95.1 Neutron Engineering Inc. No.3, Jinshagang 1st Road, ShiXia, Dalang Town, Dong Guan, China. TEL : (0769) 8318-3000 FAX : (0769) 8319-6000 Neutron Engineering Inc. MPE CALCULATION METHOD: Calculation Method of RF Safety Distance: where: S = power density P = power input to the 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 Ant. Brand name Model Name Antenna TypeConnector Gain (dBi) 1 N/A FX01Z34-0 G-EF Dipole ANT R-SMA 2.0 TEST RESULTS EUT: Cable Modem BCM3379 WeMTA Model Name : DVW2110 Temperature: 24 °C Relative Humidity: 60 % Pressure: 1016 hPa Test Voltage : AC 120V/60Hz Test Mode : TX B MODE /CH01, CH06, CH11 Antenna Gain (dBi) Antenna Gain (numeric) Peak Output Power (dBm) Peak Output Power (mW) Power Density (S) (mW/cm 2 ) Limit of Power Density (S) (mW/cm 2 ) Te s t Result 2.0 1.5849 17.17 52.1195 0.016442 1 Complies 2.0 1.5849 17.22 52.7230 0.016632 1 Complies 2.0 1.5849 17.38 54.7016 0.017256 1 Complies Neutron Engineering Inc. EUT: Cable Modem BCM3379 WeMTA Model Name : DVW2110 Temperature: 24 °C Relative Humidity: 60 % Pressure: 1016 hPa Test Voltage : AC 120V/60Hz Test Mode : TX G MODE /CH01, CH06, CH11 Antenna Gain (dBi) Antenna Gain (numeric) Peak Output Power (dBm) Peak Output Power (mW) Power Density (S) (mW/cm 2 ) Limit of Power Density (S) (mW/cm 2 ) Te s t Result 2.0 1.5849 15.12 32.5087 0.010255 1 Complies 2.0 1.5849 14.92 31.0456 0.009794 1 Complies 2.0 1.5849 15.25 33.4965 0.010567 1 Complies EUT: Cable Modem BCM3379 WeMTA Model Name : DVW2110 Temperature: 24 °C Relative Humidity: 60 % Pressure: 1016 hPa Test Voltage : AC 120V/60Hz Test Mode : TX N MODE-20MHz /CH01, CH06, CH11 Antenna Gain (dBi) Antenna Gain (numeric) Peak Output Power (dBm) Peak Output Power (mW) Power Density (S) (mW/cm 2 ) Limit of Power Density (S) (mW/cm 2 ) Te s t Result 2.0 1.5849 14.74 29.7852 0.009396 1 Complies 2.0 1.5849 14.82 30.3389 0.009571 1 Complies 2.0 1.5849 15.00 31.6228 0.009976 1 Complies Note: All test result is complies.
Neutron Engineering Inc. Report No.: NEI-FCCP-1-1108C255 Page 1 of 97 FCC Radio Test Report FCC ID: XCNDVW2110 This report concerns (check one) : Original Grant Class II Change Issued Date : Sep. 16, 2011 Project No. : 1108C255 Equipment : Cable Modem BCM3379 WeMTA Model Name : DVW2110 Applicant : Ubee Interactive Corp. Address : 6F-9, No.38, Taiyuan St. Jhubei Hsinchu Taiwan Tested by: Neutron Engineering Inc. EMC Laboratory Date of Receipt: Aug. 29, 2011 Date of Test: Aug. 29, 2011 ~ Sep. 14, 2011 Testing Engineer : (Ares Liu) Technical Manager : (Leo Hung) Authorized Signatory : (Steven Lu) Neutron Engineering Inc. No.3,Jinshagang 1st Road, ShiXia, Dalang Town, Dong Guan, China. TEL : (0769) 8318-3000 FAX : (0769) 8319-6000 Neutron Engineering Inc. Report No.: NEI-FCCP-1-1108C255 Page 2 of 97 Declaration Neutron represents to the client that testing is done in accordance with standard procedures as applicable and that test instruments used has been calibrated with the standards traceable to National Measurement Laboratory (NML) of R.O.C, or National Institute of Standards and Technology (NIST) of U.S.A. Neutron's reports apply only to the specific samples tested under conditions. It is manufacture’s responsibility to ensure that additional production units of this model are manufactured with the identical electrical and mechanical components. Neutronshall have no liability for any declarations, inferences o r generalizations drawn by the client or others from Neutron issued reports. Neutron’s reports must not be used by the client to claim product endorsement by the authorities or any agency of the Government. This report is the confidential property of the client. As a mutual protection to the clients, the public and Neutron-self, extracts from the test report shall not be reproduced except in full with Neutron’s authorized written approval. Neutron’s laboratory quality assurance procedures are in compliance with the ISO Guide 17025 requirements, and accredited by the conformity assessment authorities listed in this test report. Limitation For the use of the authority's logo is limited unless the Test Standard(s)/Scope(s)/Item(s) mentioned in this test report is (are) included in the conformity assessment authorities acceptance respective. Neutron Engineering Inc. Report No.: NEI-FCCP-1-1108C255 Page 3 of 97 Table of Contents Page 1 . CERTIFICATION 5 2 . SUMMARY OF TEST RESULTS 6 2.1 TEST FACILITY 7 2.2 MEASUREMENT UNCERTAINTY 7 3 . GENERAL INFORMATION 8 3.1 GENERAL DESCRIPTION OF EUT 8 3.2 DESCRIPTION OF TEST MODES 10 3.3 TABLE OF PARAMETERS OF TEXT SOFTWARE SETTING 11 3.4 BLOCK DIGRAM SHOWING THE CONFIGURATION OF SYSTEM TESTED 12 3.5 DESCRIPTION OF SUPPORT UNITS (RADIATED MODE) 13 4 . EMC EMISSION TEST 14 4.1 CONDUCTED EMISSION MEASUREMENT 14 4.1.1 POWER LINE CONDUCTED EMISSION LIMITS 14 4.1.2 MEASUREMENT INSTRUMENTS LIST AND SETTING 14 4.1.3 TEST PROCEDURE 15 4.1.4 DEVIATION FROM TEST STANDARD 15 4.1.5 TEST SETUP 15 4.1.6 EUT OPERATING CONDITIONS 15 4.1.7 TEST RESULTS 16 4.2 RADIATED EMISSION MEASUREMENT 20 4.2.1 RADIATED EMISSION LIMITS 20 4.2.2 MEASUREMENT INSTRUMENTS LIST ANS SETTING 21 4.2.3 TEST PROCEDURE 22 4.2.4 DEVIATION FROM TEST STANDARD 22 4.2.5 TEST SETUP 23 4.2.6 EUT OPERATING CONDITIONS 23 4.2.7 TEST RESULTS (BETWEEN 30 – 1000 MHZ) 24 4.2.8 TEST RESULTS (ABOVE 1000 MHZ) 26 5 . BANDWIDTH TEST 62 5.1 APPLIED PROCEDURES / LIMIT 62 5.1.1 MEASUREMENT INSTRUMENTS LIST 62 5.1.2 TEST PROCEDURE 62 5.1.3 DEVIATION FROM STANDARD 62 5.1.4 TEST SETUP 63 5.1.5 EUT OPERATION CONDITIONS 63 5.1.6 TEST RESULTS 64 Neutron Engineering Inc. Report No.: NEI-FCCP-1-1108C255 Page 4 of 97 Table of Contents Page 6 . MAXIMUM OUTPUT POWER TEST 70 6.1 APPLIED PROCEDURES / LIMIT 70 6.1.1 MEASUREMENT INSTRUMENTS LIST 70 6.1.2 TEST PROCEDURE 70 6.1.3 DEVIATION FROM STANDARD 70 6.1.4 TEST SETUP 70 6.1.5 EUT OPERATION CONDITIONS 70 6.1.6 TEST RESULTS 71 7 . ANTENNA CONDUCTED SPURIOUS EMISSION 72 7.1 APPLIED PROCEDURES / LIMIT 72 7.1.1 MEASUREMENT INSTRUMENTS LIST 72 7.1.2 TEST PROCEDURE 72 7.1.3 DEVIATION FROM STANDARD 72 7.1.4 TEST SETUP 72 7.1.5 EUT OPERATION CONDITIONS 72 7.1.6 TEST RESULTS 73 8 . POWER SPECTRAL DENSITY TEST 88 8.1 APPLIED PROCEDURES / LIMIT 88 8.1.1 MEASUREMENT INSTRUMENTS LIST 88 8.1.2 TEST PROCEDURE 88 8.1.3 DEVIATION FROM STANDARD 88 8.1.4 TEST SETUP 88 8.1.5 EUT OPERATION CONDITIONS 88 8.1.6 TEST RESULTS 89 9 . EUT TEST PHOTO 95 Neutron Engineering Inc. Report No.: NEI-FCCP-1-1108C255 Page 5 of 97 1. CERTIFICATION E q u i p m e n t : Cable Modem BCM3379 WeMTA Brand Name : Ubee Model Name : DVW2110 Applicant : Ubee Interactive Corp. Date of Test : Aug. 29, 2011 ~ Sep. 14, 2011 T e s t I t e m : ENGINEERING SAMPLE Standards : FCC Part15, Subpart C(15.247) / ANSI C63.4 : 2003 The above equipment has been tested and found compliance with the requirement of the relative standards by Neutron Engineering Inc. EMC Laboratory. The test data, data evaluation, and equipment configuration contained in our test report (Ref No. NEI-FCCP-1-1108C255) were obtained utilizing the test procedures, test instruments, test sites that has been accredited by the Authority of NVLAP and TAF according to the ISO-17025 quality assessment standard and technical standard(s). Neutron Engineering Inc. Report No.: NEI-FCCP-1-1108C255 Page 6 of 97 2. SUMMARY OF TEST RESULTS Test procedures according to the technical standards: FCC Part15 (15.247) , Subpart C Standard Section Test Item Judgment Remark 15.207 Conducted Emission PASS 15.247(d) Antenna conducted Spurious EmissionPASS 15.247(a)(2) 6dB Bandwidth PASS 15.247(b)(3) Peak Output Power PASS 15.209/15.205 Radiated Spurious Emission PASS 15.247(e) Power Spectral Density PASS 15.203 Antenna Requirement PASS NOTE: (1)” N/A” denotes test is not applicable in this Test Report Neutron Engineering Inc. Report No.: NEI-FCCP-1-1108C255 Page 7 of 97 2.1 TEST FACILITY The test facilities used to collect the test data in this report is DG-CB03/DG-C02 at the location…
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Neutron Engineering Inc. Report No.: NEI-FCCP-1-1108C255 Page 95 of 97 9. EUT TEST PHOTO Conducted Measurement Photos Neutron Engineering Inc. Report No.: NEI-FCCP-1-1108C255 Page 95 of 97 9. EUT TEST PHOTO Conducted Measurement Photos Neutron Engineering Inc. Report No.: NEI-FCCP-1-1108C255 Page 96 of 97 Radiated Measurement Photos 30-1000MHz Neutron Engineering Inc. Report No.: NEI-FCCP-1-1108C255 Page 96 of 97 Radiated Measurement Photos 30-1000MHz Neutron Engineering Inc. Report No.: NEI-FCCP-1-1108C255 Page 97 of 97 Radiated Measurement Photos Above 1000MHz Neutron Engineering Inc. Report No.: NEI-FCCP-1-1108C255 Page 97 of 97 Radiated Measurement Photos Above 1000MHz
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 54.70 mW |

XGS-PON
Equipment Class
DTS - Digital Transmission System
GPON
Equipment Class
NII - Unlicensed National Information Infrastructure TX
GPON IAD
Equipment Class
6ID - 15E 6 GHz Low Power Indoor Access Point
WeMTA
Equipment Class
6ID - 15E 6 GHz Low Power Indoor Access Point
Docsis3.1 advance WiFi 6E Voice Gateway
Equipment Class
6ID - 15E 6 GHz Low Power Indoor Access Point