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H8NDWG855WiFi EMTA Cable Modem

Askey Computer Corp
WiFi EMTA Cable Modem - FCC ID H8NDWG855 - Askey Computer Corp
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Aug 28, 2006
Application Purpose
Original Equipment
Date of Application
Aug 28, 2006
Equipment Note
WiFi EMTA Cable Modem
Frequency Range
2412.00000000 - 2462.00000000
Company
Askey Computer Corp
Country
Taiwan

Documents & Files

Select a file to view

Users Manual

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Attestation Statements

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Block Diagram

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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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Operational Description

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RF Exposure Info

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Schematics

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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

DWG855 digital ⎢ BROADBAND EMTA GATEWAY Important Information ii CAUTION Disconnect power before servicing. CAUTION This device is intended for indoor operation only. Telephone jacks Line 1 and Line 2 must not be connected to outside wiring. CAUTION To ensure reliable operation and to prevent overheating, provide adequate ventilation for this modem and keep it away from heat sources. Do not locate near heat registers or other heat-producing equipment. Provide for free air flow around the EMTA Gateway and its power supply. CABLE INSTALLER: This reminder is provided to call your attention to Article 820-40 of the National Electrical Code (Section 54 of the Canadian Electrical Code, Part 1) which provides guidelines for proper grounding and, in particular, specifies that the cable ground shall be connected to the grounding system of the building as close to the point of cable entry as practical. PacketCable and DOCSIS compliant This product was designed according to Data over Cable Service Interface Specifications and PacketCable Voice Over IP Cable Telephony Specifications. It will operate on any DOCSIS-compliant Hybrid Fiber Coax (HFC) cable system and offers DOCSIS and PacketCable Baseline Privacy to promote secure internet transactions and PC-secure telephone service. Operating Information Operating Temperature: 0 ̊ - 40 ̊ C (32 ̊ - 104 ̊ F) Storage Temperature:-30 ̊ to 65 ̊ C If you purchased this product at a retail outlet, please read the following: Product Registration Please fill out the product registration card (packed separately) and return it immediately, or register on-line at rca.com. Registering allows us to contact you if needed. Product Information Keep your sales receipt to obtain warranty parts and service and for proof of purchase. Attach it Illustrations contained in this document are for representation only. iii here and record the serial and model numbers in case you need them. The numbers are located on the back of the product. Model No. ____________________________Serial No ________________________________ Purchase Date: ________________________Dealer/Address/Phone: _________________________ Important Information iv Table of Contents Illustrations contained in this document are for representation only. v Chapter 1: Connections and Setup Introduction............................................................................................................................ 1 EMTA Gateway Features..................................................................................................... 1 What’s on the CD-ROM...................................................................................................... 1 Accessing the Diagnostics Display through the CD-ROM.................................................... 2 Computer Requirements.................................................................................................... 3 Setting the Modem in the Stand......................................................................................... 3 Wall Mounting................................................................................................................... 4 EMTA Gateway Overview.......................................................................................................... 5 Front Panel........................................................................................................................ 5 Rear Panel......................................................................................................................... 7 Relationship among the Devices........................................................................................ 7 What the Modem Does...................................................................................................... 9 What the Modem Needs to Do Its Job................................................................................. 9 Contact Your Local Cable Company................................................................................. 10 Connecting the EMTA Gateway to a Single Computer............................................................. 12 Attaching the Cable TV Wire to the EMTA Gateway........................................................... 12 Important Connection Information.................................................................................. 13 USB Connection to One Computer................................................................................... 13 USB Connection - Using the Installation Wizard................................................................ 14 USB Connection - Without Using the Installation Wizard................................................... 15 Using Windows 2000 for USB Connection........................................................................ 15 Using Windows Me for USB Connection............................................................................ 18 Using Windows XP for USB Connection............................................................................ 19 Ethernet Connection to One Computer............................................................................ 23 Connecting More Than Two Computers to the EMTA Gateway......................................... 23 Table of Contents vi Telephone or Fax Connection.......................................................................................... 24 Activating the EMTA Gateway................................................................................................. 26 Chapter 2: Web Configuration Accessing the Internet........................................................................................................... 27 Outline of Web Manager.................................................................................................. 27 Status.................................................................................................................................... 29 Software.....…

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Block Diagram

BCM3368 DC 15V X’TAL 25MHz Power Jack 15VDC to 3.3VDC1.2VDC3.3VDC TO 2.5VDC FLASH 4Mx16bit SDRAM 16Mx16 F-connector Diplexer Upstream Downstream BCM3420 RF Transformer RJ-45 Connector x 4-port BCM5325 Ethernet Switch PKE535VWBP-D49(Le-RoHS)/RCA/DWG855 Block Diagram USB Jack USB 1 * 4 Wafer Console RJ11 RJ11 VOIP SLIC Le9500D SLIC Le9500D TEL1 Wireless US Eth1 POWER DS TEL2 Battery Li-ION Battery Charger Li-ION Battery USB ETH4 ETH3 ETH2 ETH1 X’TAL 25MHz BCM4318 wireless LAN Frequency Range : 2412~2462MHz 3.3VDC To 1.8VDC (SC1202) Eth2 Eth3 Eth4 Online 3.3VDC SES X’TAL 20MHz X’TAL 12MHz NET2282 X’TAL 16MHz

External Photos

Report No: 068H025-RF-US-P05V01 Page: 71 of 79 Version:1.0 Attachement ¾ EUT Photograph (1) EUT Photo (2) EUT Photo

ID Label/Location Info

ASKEY COMPUTER CORP. 10F, NO.119, CHIENKANG RD., CHUNG-HO, TAIPEI, TAIWAN, R.O.C. FCC ID.: H8NDWG855 FCC ID and DoC Label The FCC ID and DoC Label will be placed on the equipment as shown in the photograph below. WiFi EMTA Cable Modem Model No.: DWG855xx F F C C C C I I D D : : H8NDWG855 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. S/N: Made in Taiwan Trade name: RCA Model number.: DWG855xx

Internal Photos

Report No: 068H025-RF-US-P05V01 Page: 72 of 79 Version:1.0 (3) EUT Photo (4) EUT Photo Report No: 068H025-RF-US-P05V01 Page: 73 of 79 Version:1.0 (5) EUT Photo (6) EUT Photo Report No: 068H025-RF-US-P05V01 Page: 74 of 79 Version:1.0 (7) EUT Photo (8) EUT Photo Report No: 068H025-RF-US-P05V01 Page: 75 of 79 Version:1.0 (9) EUT Photo (10) EUT Photo Report No: 068H025-RF-US-P05V01 Page: 76 of 79 Version:1.0 (11) EUT Photo Report No: 068H025-RF-US-P05V01 Page: 77 of 79 Version:1.0 (12) EUT Photo (13) EUT Photo Report No: 068H025-RF-US-P05V01 Page: 78 of 79 Version:1.0 (14) EUT Photo Report No: 068H025-RF-US-P05V01 Page: 79 of 79 Version:1.0 (15) EUT Photo

Operational Description

Report No: 068H025-RF-US-P05V01 Page: 6 of 79 Version:1.0 1.2. Operational Description EUT is a WiFi EMTA Cable Modem. This device provided four kinds of transmitting speed 1, 2, 5.5 and 11Mbps for IEEE 802.11b and eight kinds of transmitting speed 6, 9, 12, 18, 24, 36, 48 and 54Mbps for IEEE 802.11g. The device of RF carrier is DQPSK, DBPSK and CCK. The device adapts Digitally Modulation Spread Spectrum modulation. The Connector antenna was provides diversity function to improve the receiving function. This Wireless Router, compliant with IEEE 802.11b and IEEE 802.11g, is a high-efficiency Wireless LAN adapter. It allows your computer to connect to a wireless network and to share resources, such as files or printers without being bound to the network wires. Operation in 2.4GHz Direst Sequence Spread Spectrum (DSSS) radio transmission for IEEE 802.11b and Orthogonal Frequency Division Multiplexing (OFDM) for IEEE 802.11g, the Wireless Router Wired Equivalent Protection (WEP) algorithm is used. In addition, its standard compliance ensures that it can communicate with any IEEE 802.11b and IEEE 802.11g network. What the Modem Does THE EUT is an integrated telephony and wireless gateway that is Cable Labs DOCSIS 1.0/1.1/2.0, CableHome1.1 and Packet Cable 1.0/1.1 compliant product that provides high-speed Internet access as well as primary line telephony, and fax/modem services via an existing CATV infrastructure. The EUT is equipped with 2-RJ-11 POTS interfaces, 4-port Ethernet switch, USB, and IEEE802.11b/g Wireless interfaces. The EUT can inter-operate with the Packet Cable compliant head end equipment and provide the IP-based voice communications. What the Modem Needs to Do Its Job The Right Cable Company: Make sure your local cable company provides data services that use cable TV industry-standard DOCSIS-compliant and Packet Cable-compliant technology. The Internet/Telephony Service Provider (ISP/TSP): Your cable company provides you access to an Internet Service Provider (ISP) and Telephony Service Provider (TSP). The ISP is your gateway to the Internet and provides you with a pipeline to access Internet content on the World Wide Web (WWW). The TSP provides you with telephony access to other modems or other telephony services over the Public Switched Telephone Network (PSTN).

RF Exposure Info

Report No. 068H025-RF-US-Exp Page: 1 of 4 Version:1.0 RF Exposure Evaluation declaration Product Name :WiFi EMTA Cable Modem Model No. :DWG855xx FCC ID. :H8NDWG855 Applicant : ASKEY COMPUTER CORP. Address : 10F, NO.119, CHIENKANG RD., CHUNG-HO, TAIPEI, TAIWAN, R.O.C. Date of Receipt : 2006/08/04 Date of Declaration : 2006/08/14 Report No. : 068H025-RF-US-Exp The declaration results relate only to the samples calculated. The declaration shall not be reproduced except in full without the written approval of QuieTek Corporation. Report No. 068H025-RF-US-Exp Page: 2 of 4 Version:1.0 1. RF Exposure Evaluation 1.1. 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 Friis Formula Friis transmission 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 id the limit of MPE, 1 mW/cm 2 . 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. 1.2. Test Procedure Software provided by client enabled the EUT to transmit and receive data at lowest, middle and highest channel individually. The temperature and related humidity: 18°Cand 78% RH. Report No. 068H025-RF-US-Exp Page: 3 of 4 Version:1.0 1.3. Test Result of RF Exposure Evaluation Product WiFi EMTA Cable Modem Test Mode Mode 1: Transmit Test Condition RF Exposure Evaluation Antenna Gain Antenna Gain: The maximum Gain measured in fully anechoic chamber is 2dBi in linear scale. Output Power Into Antenna & RF Exposure Evaluation Distance: IEEE 802.11b Channel Channel Frequency (MHz) Output Power to Antenna (mW) Power Density at R = 20 cm (mW/cm 2 ) 1 2412.00 136.1445 0.0410 6 2437.00 160.3245 0.0483 11 2462.00 141.9058 0.0427 The power density Pd (4th column) at a distance of 20 cm calculated from the Friis transmission formula is far below the limit of 1 mW/cm 2 . Report No. 068H025-RF-US-Exp Page: 4 of 4 Version:1.0 Product WiFi EMTA Cable Modem Test Mode Mode 1: Transmit Test Condition RF Exposure Evaluation Antenna Gain Antenna Gain: The maximum Gain measured in fully anechoic chamber is 1.8dBi in linear scale. Output Power Into Antenna & RF Exposure Evaluation Distance: IEEE 802.11g Channel Channel Frequency (MHz) Output Power to Antenna (mW) Power Density at R = 20 cm (mW/cm 2 ) 1 2412.00 163.3052 0.0492 6 2437.00 174.1807 0.0524 11 2462.00 166.3413 0.0501 The power density Pd (4th column) at a distance of 20 cm calculated from the Friis transmission formula is far below the limit of 1 mW/cm 2 .

Schematics

AA BB CC DD EE 4 4 3 3 2 2 1 1 TitleSize Document Number R e v Date: of ASKEY COMPUTER CORP. Sheet Eng. PCB PKE530VW-D49(EU-ROHS) A Block_Diagram 9 10 , 17 星期三 五月 , 2006 RTA1025W SLICSLIC RJ11 - Phone 1RJ11 - Phone 2 PKE530VW-D49 - Wireless Voice Gateway US TUNER DS JTAG PortandConsole Port (BCM3368) Block Diagram VOIP/CPU/MAC/PHY POWER SUPPLY +3.3V (BCM3420) Front PanelLED's 16MB or 32MB DDR SDRAM +1.2V 15VDC Regulated WallAdapter +HV converter+HV converter Cable Modem Reference Design 100baseT BCM94318MPGH 802.11 Module EBI BUS 2MB, 4MB, 8MB or 16MB FLASH AA BB CC DD EE 4 4 3 3 2 2 1 1 USB_DM USB_VBUSUSB-DP USB_AVD_3P3USB_AVD_1P8 MPI_AD18 NET2282_DM_FULL_SPEEDNET2282_DP_FULL_SPEED12MHZ_XOUT12MHZ_XINUSB_VBUS_SENSE MPI_AD0MPI_AD1MPI_AD2MPI_AD3MPI_AD4MPI_AD5MPI_AD6MPI_AD7MPI_AD8MPI_AD9MPI_AD10MPI_AD11MPI_AD12MPI_AD13MPI_AD14MPI_AD15MPI_AD16MPI_AD17MPI_AD19MPI_AD20MPI_AD21MPI_AD22MPI_AD23MPI_AD24MPI_AD25MPI_AD26MPI_AD27MPI_AD28MPI_AD29MPI_AD30MPI_AD31 NET2282_DM_HI_SPEEDNET2282_DP_HI_SPEED NET2282_USB_DPNET2282_USB_DM +1.8V +3.3V +3.3V+3.3V +3.3V +3.3V +1.8V +3.3V USB_VBUS_SENSE (3) BCM3368_USB_DM (3)BCM3368_USB_DP (3) MPI_AD[31:0] (2,9) MPI_PAR (2,9) MPI_PERR_N (2,9) MPI_DEVSEL_N (2,9) MPI_RESET_N (2,9) MPI_CLK (2,9) PCI_SERR_N (2,9) MPI_CBE_0 (2,9) MPI_IRDY_N (2,9) PCI_FRAME_N (2,9) MPI_TRDY_N (2,9) MPI_CBE_1 (2,9) MPI_STOP_N (2,9) MPI_CBE_2 (2,9) MPI_CBE_3 (2,9) MPI_REQ1_N (3) MPI_GNT1_N (3) MPI_IRQ_N (3,9) TitleSize Document Number R e v Date: Sheet of BCM93368WVG (824-1 15030-0000) P8 USB 2.0 Broadcom Corporation16215 Alton ParkwayP.O. Box 57013 C 49 , 17 星期三 五月 , 2006 Irvine, California 92619-7013 PRELIMINARY Broadc om Confidential All Rights Reserved Do not routestubs to R417and R418. Do not routestubs to R407and R408. Locate these components in close proximity to oneanother at the card edge. R405 20 1% V403 C424 22pF FB402 600 C411 0.1uF R317 10K C405 0.01uF J303 USB-RA VBUS 1 DM 2 DP 3 GND 4 S1 5 S2 6 R406 20 1% C412 0.01uF R414 1K U301SR05 C41710uF R403 0 D301 SD05C R401 10K R4180 Y40112.000MHz18pF,FUND C406 0.1uF R417 0 C4180.1uF R412 12.1K R423 10K R311 10K C413 0.1uF C401 10uF FB401 600 C42010uF U401NET2282 EEWRDATA 31 EECLK 30 PCI_EXTARB 113 EERDDATA 32 FS_DM 23 EXT12K 16 VDDE_3P3 3 VDDE_3P3 38 VDDE_3P3 49 VDDE_3P3 64 VDDE_3P3 77 VDDE_3P3 89 VDDE_3P3 101 VDDE_3P3 120 VDDEI_1P8 11 VDDEI_1P8 48 VDDEI_1P8 74 VDDEI_1P8 106 VDDEI_1P8 119 VIO 45 VSS 2 VSS 10 VSS 40 VSS 46 VSS 53 VSS 59 VSS 67 VSS 73 VSS 81 VSS 88 VSS 95 VSS 102 VSS 117 AVDB_3P3 14 AVDF_3P3 24 AVDF_1P8 17 AVDP_1P8 12 AVSB 15 AVSF 21 AVSF 18 AVSP 13 FS_DP 22 HS_DM 20 HS_DP 19 ANPD 25 ATPGTEST 34 GPIO[3]/USBLED 6 GPIO[2] 7 GPIO[1] 8 GPIO[0] 9 PCI_HOSTMODE 112 LCLK_OUT 28 EECS_N 29 NC 58 NC 92 POSCEN_N 4 PWRDOWN_N 5 RAMBIST 60 RESET_N 1 TXD 115 RXD 114 TEST1 33 TEST0 27 VBUS 35 XIN 118 XOUT 116 PCI_AD[0] 110 PCI_AD[1] 109 PCI_AD[2] 108 PCI_AD[3] 107 PCI_AD[4] 105 PCI_AD[5] 104 PCI_AD[6] 103 PCI_AD[7] 100 PCI_AD[8] 98 PCI_AD[9] 97 PCI_AD[10] 96 PCI_AD[11] 94 PCI_AD[12] 93 PCI_AD[13] 91 PCI_AD[14] 90 PCI_AD[15] 87 PCI_AD[16] 72 PCI_AD[17] 71 PCI_AD[18] 70 PCI_AD[19] 69 PCI_AD[20] 68 PCI_AD[21] 66 PCI_AD[22] 65 PCI_AD[23] 63 PCI_AD[24] 57 PCI_AD[25] 56 PCI_AD[26] 55 PCI_AD[27] 54 PCI_AD[28] 52 PCI_AD[29] 51 PCI_AD[30] 50 PCI_AD[31] 47 PCI_CBE[0] 99 PCI_CBE[1] 86 PCI_CBE[2] 75 PCI_CBE[3] 61 PCI_CLK 39 PCI_CLKRUN_N 111 PCI_DEVSEL_N 80 PCI_FRAME_N 76 PCI_GNT_N 41 PCI_INTA_N 36 PCI_IRDY_N 78 PCI_PERR_N 83 PCI_REQ_N 42 PCI_IDSEL 62 PCI_PAR 85 PCI_PMEIN_N 44 PCI_PMEOUT_N 43 PCI_RST_N 37 PCI_SERR_N 84 PCI_STOP_N 82 PCI_TRDY_N 79 SIM 26 C408 10uF C4190.01uF C407 0.01uF C414 0.01uF C4210.1uF R318 15K C402 0.1uF R420 0/DNI C409 0.1uF R407 39.2 1% R419 0 (DNI) C4220.01uF C315 1000pF C403 0.01uF R415 0/DNI C415 0.1uF R413 10K C410 0.01uF R408 39.2 1% L402 DNI V401 R411 1K C423 22pF C416 0.01uF L401 DNI V402 C3160.1uF C404 0.1uF AA BB CC DD EE 4 4 3 3 2 2 1 1 DS_AGCI_CTLUS_OUT_PUS_OUT_NDS_RFT_CLKDS_RFT_DATAUS_OE ONLINE TEL1 D/SU/S TEL2 BCM3368_USB_LED_N PWRDS_RFT_CS1 USPLL_VDD_2P5USDAC_VDD_1P2USPLL_VDD_1P2USDAC_AVDD_2P5DS_AFE_PGA_AVDD_2P5 US_RBIAS_VSS US_RBIASDS_AFE_CLK_VDD_2P5DS_AFE_VDD_1P2 PWR U/S BCM3368_USB_LED_N TEL1 D/S DS_RFT_CS0 DS_RFT_CS0 ONLINE TEL2 Message DS_RFT_CS1 +1.2V +2.5VA +2.5VA +3.3V +3.3V US_OUTPUT (6) IF_AGC (6) DS _IF_N (6)DS_IF_P (6)RFT_CLK (6) RFT_DATA (6) BCM5325_EPHY_LINK_ACT_LED1BCM5325_EPHY_LINK_ACT_LED3BCM5325_EPHY_LINK_ACT_LED4BCM5325_EPHY_LINK_ACT_LED2 WLAN_LED BCM5325_EPHY_COLSN_LED2BCM5325_EPHY_COLSN_LED3BCM5325_EPHY_COLSN_LED4 Wireless_LED_Error USB_LED_Error SES_Active_White BCM5325_EPHY_COLSN_LED1 SES_Active_Or ange TitleSize Document Number R e v Date: of ASKEY COMPUTER CORP. Sheet Eng. PCB PKE530VW-D49(EU-ROHS) A RF 9 10 , 17, 星期三 五月 2006 RTA1025W IF signal p olarity swapped to match differential pair trace lengths. The USDAC_BIAStrace must be as short as possible. Place thesecomponents near the BCM3368. NOTE: Route AMPoutputs as matchedpair. Place these componentsnear the BCM3368. Place Transformerclose to Diplexer tominimize single-endedsecondary tr ace length. Place thesecomponents in closeproximity to oneanother. Place thesecomponents near the BCM3368. ETH1POWERTEL2 Wi-Fi U/S STBYBATTEL1 D/S USB Online ETH2ETH3 ETH4 C517 0.1uF R548300 12 R511 300 1 2 LD1LED-W hite/SMD/DNI 2 1 L502 30nH R550 300/DNI 1 2 C518470pF R539 0R 1 2 C5041000pF R433 300/DNI 1 2 D401 1 2 3 581114 6497 12101513 FB503600 R505 DNI FB510600 R345 300/DNI 1 2 C23 47pF 1 2 C28 47pF 12 C22 47pF 1 2 C5054.7uF C519470pF R402 300/DNI 1 2 C5031000pF R534300/DNI 12 C5014.7uF R430 300/DNI 1 2 R545 300 12 FB505600 BCM3368 DOCSIS MAC/PHY, (4 OF 5) and TEST CLOCKS LED DRIVERS U101ABCM3368A1 RFT_CLK A14 RFT_DATA B14 RFT_CS[0] D14 RFT_CS[1] D12 US_OE D22 RF_BURST D23 US_POWER[0] C24 US_POWER[1] D24 US_POWER[2] C23 US_POWER[3] E23 US_POWER[4] C25 US_POWER[5] E24 DS_QAM(+) A17 DS_QAM(-) B17 DS_AGCI_CTL D16 DS_AGCT_CTL C15 DS_BCLK A15 DS_ADCLK B15 US_RBIAS B26 US_DAC_VDD_1P2 F25 US_OUT(+) D26 US_OUT(-) E26 TEST_ENABLE B24 MDDR_BYP_CLK0 A22 S…

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Test Report

Report No: 068H025-RF-US-P05V01 Page: 1 of 79 Version:1.0 Test Report Product Name:WiFi EMTA Cable Modem Model No. :DWG855xx FCC ID. :H8NDWG855 Applicant : ASKEY COMPUTER CORP. Address : 10F, NO.119, CHIENKANG RD., CHUNG-HO, TAIPEI, TAIWAN, R.O.C. Date of Receipt:2006/08/04 Issued Date :2006/08/15 Report No. :068H025-RF-US-P05V01 The test results relate only to the samples tested. The test report shall not be reproduced except in full without the written approval of QuieTek Corporation. Report No: 068H025-RF-US-P05V01 Page: 2 of 79 Version:1.0 Test Report Certification Issued Date : 2006/08/15 Report No. : 068H025-RF-US-P05V01 Product Name : WiFi EMTA Cable Modem Applicant : ASKEY COMPUTER CORP. Address : 10F, NO.119, CHIENKANG RD., CHUNG-HO, TAIPEI, TAIWAN, R.O.C. Manufacturer : ASKEY COMPUTER CORP. Model No. : DWG855xx FCC ID. : H8NDWG855 Rated Voltage : AC 120 V / 60 Hz EUT Voltage : Battery 12.6V Trade Name : RCA Applicable Standard : FCC CFR Title 47 Part 15 Subpart C Section 15.247 Test Result : Complied The test results relate only to the samples tested. The test report shall not be reproduced except in full without the written approval of QuieTek Corporation. Documented By : ( Carol Tsai ) Tested By : ( Louis Hsu ) Approved By : ( Gene Chang ) Report No: 068H025-RF-US-P05V01 Page: 3 of 79 Version:1.0 TABLE OF CONTENTS Description Page 1. General Information.................................................................................................................5 1.1. EUT Description..........................................................................................................................5 1.2. Operational Description.............................................................................................................6 1.3. Test Mode....................................................................................................................................7 1.4. Tested System Details................................................................................................................8 1.5. Configuration of tested System................................................................................................9 1.6. EUT Exercise Software............................................................................................................10 1.7. Test Facility................................................................................................................................11 2. Conducted Emission.............................................................................................................12 2.1. Test Equipment.........................................................................................................................12 2.2. Test Setup..................................................................................................................................12 2.3. Limits...........................................................................................................................................13 2.4. Test Procedure..........................................................................................................................13 2.5. Test Specification......................................................................................................................13 2.6. Test Result.................................................................................................................................14 2.7. Test Photo..................................................................................................................................22 3. Peak Power Output................................................................................................................23 3.1. Test Equipment.........................................................................................................................23 3.2. Test Setup..................................................................................................................................23 3.3. Limits...........................................................................................................................................23 3.4. Test Specification......................................................................................................................23 3.5. Test Result.................................................................................................................................24 4. Radiated Emission.................................................................................................................26 4.1. Test Equipment.........................................................................................................................26 4.2. Test Setup..................................................................................................................................26 4.3. Limits...........................................................................................................................................27 4.4. Test Procedure..........................................................................................................................27 4.5. Test Specification......................................................................................................................27 4.6. Test Result.................................................................................................................................28 4.7. Test Photo..................................................................................................................................52 5. Band Edge................................................................................................................................54 5.1. Test Equipment.........................................................................................................................54 5.2. Test Setup...........…

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Test Setup Photos

Report No: 068H025-RF-US-P05V01 Page: 22 of 79 Version:1.0 2.7. Test Photo Test Mode : Mode 1: Transmit Description: Front View of Conducted Emission Test Setup Test Mode : Mode 1: Transmit Description: Back View of Conducted Emission Test Setup Report No: 068H025-RF-US-P05V01 Page: 52 of 79 Version:1.0 4.7. Test Photo Test Mode : Mode 1: Transmit Description: Front View of Radiated Emission Test Setup (Bi-Log) Test Mode : Mode 1: Transmit Description: Back View of Radiated Emission Test Setup (Bi-Log) Report No: 068H025-RF-US-P05V01 Page: 53 of 79 Version:1.0 Test Mode : Mode 1: Transmit Description: Front View of Radiated Emission Test Setup (Horn)

Contact Information

Applicant

Jack Po(Manager)
[email protected]886 2 2228-7588Fax: 886 2 3234-9340

Technical Contact

Quietek CorporationGeorge Chen
[email protected]886-2-8601-3788

No. 5-22, Ruei-Shu Valley, Ruei-Ping Tsuen, · Taipei · Taiwan

Non-Technical Contact

Quietek CorporationMicki Ho
[email protected]886-2-8792-6808

Test Firm

QuieTek CorporationKevin (Yu-Lung) Chen
[email protected]886-2-87926808Fax: 886-2-87926628

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz174.00 mW
Grant Notes
Power output listed is conducted. The antenna(s) 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. End-users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance.

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