User manual MOTOROLA DCT2000 BIS

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Manual abstract: user guide MOTOROLA DCT2000 BIS

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[. . . ] DCT 2000 Digital Consumer Terminal Installation Manual CURSOR MESSAGES REMOTE CHANNEL A/B GUIDE INFO POWER MENU SELECT A/B POWER Graphical symbols and supplement warning marking locations on the bottom of the appliance. This symbol indicates that dangerous voltage levels are present within the equipment. These voltages are not insulated and may be of sufficient strength to cause serious bodily injury when touched. The symbol may also appear on schematics. This symbol calls attention to a critical procedure, or means refer to the instruction manual for opening or service information. [. . . ] To install the video connection: § § For a conventional TV, use a 75-ohm coaxial cable with F-type connectors. For a monitor, use an RCA phono cable to connect the VIDEO connector to the monitor. 2 3 4 5 Locate the cabling diagram that matches the subscriber's configuration requirement. Connect the cables as illustrated in the diagram. Perform the basic operational check in this section after the DCT 2000 is installed. DCT 2000 Installation Manual 3-2 Installation Standard Cabling Diagram The DCT 2000 will output on either channel 3 or 4 depending on the configuration message from the control system. Figure 3-1 illustrates a standard diagram connecting the DCT 2000 to a TV using RF connectors: Figure 3-1 Standard cabling AUX AUD IO IN TO T V/VCR RF IN CAB LE IN R L AUD IO OU T TO RF IN SPDIF S-V IDEO V IDEO T V Pass Card HIGH SPEED OUT OF BAND IR DATA SWITCHED 105-125V 60Hz 4A MAX 500W MAX From cable outlet AUDIO IN R CABLE IN L AUDIO OUT VIDEO IN SVIDEO IN R L TV The remodulated channel, 3 or 4, does not carry stereo for digital channels. Connect the DCT 2000 using RCA baseband connectors to receive stereo on digital channels. These connections are illustrated later in this section. DCT 2000 Installation Manual Installation 3-3 STARFONE module cabling diagram Figure 3-2 illustrates the RF wiring diagram for the DCT 2000 when it has a telephone return modem: Figure 3-2 Standard wiring with a STARFONE module AUX AUD IO IN TO T V/VCR RF IN CAB LE IN TO RF IN PHONE R L AUD IO OU T SPDIF S-V IDEO V IDEO T V Pass Card HIGH SPEED OUT OF BAND IR DATA SWITCHED 105-125V 60Hz 4A MAX 500W MAX Subscriber telephone hookup From cable outlet AUDIO IN R CABLE IN L AUDIO OUT VIDEO IN SVIDEO IN R L TV For service providers planning to implement RF return capabilities, it is recommended the DCT 2000 be wired for both the STARFONE telephone return and the integrated STARVUE RF return. This enables the operator to move the DCT 2000 into a two-way RF return without rewiring the DCT 2000 later. DCT 2000 Installation Manual 3-4 Installation Standard VCR Cabling Diagram Figure 3-3 illustrates the basic cabling diagram that enables you to record the channel being viewed: Figure 3-3 Standard VCR cabling AUX AUD IO IN TO T V/VCR RF IN CAB LE IN R L AUD IO OU T TO RF IN SPDIF S-V IDEO V IDEO T V Pass Card HIGH SPEED OUT OF BAND IR DATA SWITCHED 105-125V 60Hz 4A MAX 500W MAX From cable source AUDIO IN CABLE IN AUDIO R IN L AUDIO R OUT L VIDEO IN SVIDEO IN CABLE IN R AUDIO OUT R L VIDEO IN SVIDEO IN CABLE OUT VIDEO OUT SVIDEO OUT L VCR TV The remodulated channel, 3 or 4 does not carry stereo for digital channels. Connect the DCT 2000 using RCA baseband connectors to receive stereo on digital channels. These connections are illustrated later in this section. DCT 2000 Installation Manual Installation 3-5 RF Bypass Switch VCR Cabling Diagrams Proper operation of the RF Bypass feature requires special configuration in the control system and in the EPG settings. The STARFONE return module is used in a one-way addressable system to send information to the controller through the subscriber's telephone hookup. Figure 3-4 illustrates the cabling diagram that enables viewing an unscrambled analog channel on TV while recording another channel through the DCT 2000: Figure 3-4 RF Bypass switch with VCR (STARFONE return module installed) From cable source AUX AUD IO IN TO T V/VCR SPDIF RF OUT RF IN RF IN CONV IN TO RF IN PHONE CAB LE IN R L AUD IO OU T V IDEO S-V IDEO T V Pass Card HIGH SPEED OUT OF BAND IR DATA SWITCHED 105-125V 60Hz 4A MAX 500W MAX Subscriber telephone hookup AUDIO IN CABLE IN R AUDIO IN L R VIDEO IN SVIDEO IN CABLE IN L AUDIO OUT VIDEO IN SVIDEO IN CABLE OUT AUDIO R OUT L VIDEO OUT SVIDEO OUT R L VCR TV If the operator plans to implement two-way RF return functionality in the future, the installer should use the integrated STARVUE RF return. DCT 2000 Installation Manual 3-6 Installation Figure 3-5 illustrates the cabling diagram that uses the RF return and enables viewing of an unscrambled analog channel on TV while recording another channel through the DCT 2000: Figure 3-5 Cabling with RF Bypass module (using RF return) AUX AUD IO IN TO T V/VCR SPDIF RF OUT RF IN RF IN CONV IN TO RF IN S-V IDEO V IDEO T V Pass Card HIGH SPEED OUT OF BAND IR CAB LE IN R L AUD IO OU T DATA SWITCHED 105-125V 60Hz 4A MAX 500W MAX From cable source AUDIO IN CABLE IN R AUDIO IN L R VIDEO IN SVIDEO IN CABLE IN L AUDIO OUT VIDEO IN SVIDEO IN CABLE OUT AUDIO R OUT L VIDEO OUT SVIDEO OUT R L VCR TV DCT 2000 Installation Manual Installation 3-7 A/B In Module Cabling Diagrams The A/B In module is commonly used in dual-cable systems. Figure 3-6 illustrates a DCT 2000 that is equipped with a STARFONE module: Figure 3-6 A/B In module with a STARFONE module Cable A AUX AUD IO IN TO T V/VCR RF IN SPDIF A TO RF IN CABLE IN PHONE S-V IDEO V IDEO T V Pass Card HIGH SPEED OUT OF BAND IR B CAB LE IN R L AUD IO OU T DATA SWITCHED 105-125V 60Hz 4A MAX 500W MAX Subscriber telephone hookup Cable B AUDIO IN R CABLE IN L AUDIO OUT VIDEO IN SVIDEO IN R L TV Figure 3-7 illustrates a DCT 2000 with the return on Cable A: Figure 3-7 A/B In module with return on Cable A A TO RF OUT T V/VCR RF IN AUX AUD IO IN TO RF IN SPDIF S-V IDEO V IDEO T V Pass Card HIGH SPEED OUT OF BAND IR B CAB LE IN R L AUD IO OU T DATA SWITCHED 105-125V 60Hz 4A MAX 500W MAX Cable A (Return) Cable B AUDIO IN R CABLE IN L AUDIO OUT VIDEO IN SVIDEO IN R L TV DCT 2000 Installation Manual 3-8 Installation Figure 3-8 illustrates a DCT 2000 when the return is on Cable B: Figure 3-8 A/B In module with return on Cable B Cable A AUX AUD IO IN TO T V/VCR SPDIF A TO RF IN CABLE IN RF IN S-V IDEO V IDEO T V Pass Card HIGH SPEED OUT OF BAND IR B CAB LE IN R L AUD IO OU T DATA SWITCHED 105-125V 60Hz 4A MAX 500W MAX Cable B (Return) AUDIO IN R CABLE IN L AUDIO OUT VIDEO IN SVIDEO IN R L TV DCT 2000 Installation Manual Installation 3-9 Dual A/B-RF Bypass Module Cabling Diagrams The Dual A/B-RF Bypass module is commonly used in dual-cable systems. Both Cable A and Cable B are cable signals coming from the service provider. The service provider determines which source will be the return cable. Choose the cabling diagram that matches the return configuration you need. The Dual A/B cable system using a STARFONE module utilizes the telephone modem as the return path to the service provider. Figure 3-9 illustrates a DCT 2000 with a STARFONE module: Figure 3-9 Return on STARFONE module Cable A A RF OUT AUX AUD IO IN TO RF IN PHONE SPDIF S-V IDEO V IDEO T V Pass Card HIGH SPEED OUT OF BAND IR B CAB LE IN R L AUD IO OU T DATA SWITCHED 105-125V 60Hz 4A MAX 500W MAX Subscriber telephone hookup Cable B AUDIO IN R CABLE IN L AUDIO OUT VIDEO IN SVIDEO IN R L TV DCT 2000 Installation Manual 3-10 Installation Figure 3-10 illustrates a DCT 2000 with the Dual A/B RF Bypass module when the return is on Cable A: Figure 3-10 Return on Cable A A TO RF OUT T V/VCR RF IN AUX AUD IO IN TO RF IN SPDIF S-V IDEO V IDEO T V Pass Card HIGH SPEED OUT OF BAND IR B CAB LE IN R L AUD IO OU T DATA SWITCHED 105-125V 60Hz 4A MAX 500W MAX Cable A (Return) Cable B AUDIO IN R CABLE IN L AUDIO OUT VIDEO IN SVIDEO IN R L TV Figure 3-11 illustrates a DCT 2000 with a Dual A/B RF Bypass module when the return is on Cable B: Figure 3-11 Return on Cable B Cable A A RF OUT AUX AUD IO IN TO RF IN SPDIF S-V IDEO V IDEO T V Pass Card HIGH SPEED OUT OF BAND IR B CAB LE IN R L AUD IO OU T DATA SWITCHED 105-125V 60Hz 4A MAX 500W MAX Cable B (Return) AUDIO IN R CABLE IN L AUDIO OUT VIDEO IN SVIDEO IN R L TV DCT 2000 Installation Manual Installation 3-11 Composite Baseband and S-Video Cabling Diagrams Connecting the DCT 2000 using the baseband RCA type outputs enables the subscriber to experience stereo and Dolby Surroundâ sound on digital channels when available. Figure 3-12 illustrates the standard baseband audio and video outputs of the DCT 2000: Figure 3-12 Standard baseband cabling See appropriate cable diagram AUX AUD IO IN TO T V/VCR RF IN CAB LE IN R L AUD IO OU T TO RF IN SPDIF S-V IDEO V IDEO T V Pass Card HIGH SPEED OUT OF BAND IR DATA SWITCHED 105-125V 60Hz 4A MAX 500W MAX Either or AUDIO IN R CABLE IN L AUDIO OUT VIDEO IN SVIDEO IN R L TV The S-Video connector is part of the Home Theatre option and is not included on all DCT 2000s. When connecting the video path, never connect baseband composite video and S-Video together. Because some entertainment equipment will not support both video inputs simultaneously, use only one connection path. DCT 2000 Installation Manual 3-12 Installation Figure 3-13 illustrates the baseband audio and video outputs of the DCT 2000 that are available to connect to a VCR: Figure 3-13 Composite VCR cabling See appropriate cable diagram AUX AUD IO IN TO T V/VCR RF IN CAB LE IN R L AUD IO OU T TO RF IN SPDIF S-V IDEO V IDEO T V Pass Card HIGH SPEED OUT OF BAND IR DATA SWITCHED 105-125V 60Hz 4A MAX 500W MAX Either or CABLE IN R AUDIO IN L VIDEO IN SVIDEO IN CABLE OUT AUDIO R OUT L VIDEO OUT SVIDEO OUT VCR Either or AUDIO IN R CABLE IN L AUDIO OUT VIDEO IN SVIDEO IN R L TV When connecting the video path, never connect baseband composite video and S-Video together. Because some entertainment equipment will not support both video inputs simultaneously, use only one connection path. DCT 2000 Installation Manual Installation 3-13 Stereo Cabling Diagram (Baseband) This audio configuration does not provide for a TV playing through the stereo. [. . . ] Figure B-17 illustrates the renewable security status LEDs: Figure B-17 Renewable security status LEDs TvPC Crypto mode TvPC status P TvPC status MUTE MUTE Alternating with P TvPC Revision MUTE MUTE Figure B-18 illustrates the RENEWABLE SECURITY OSD: Figure B-18 RENEWABLE SECURITY - OSD RENEWABLE SECURITY SYSTEM STATUS TvPC NOT REQUIRED CRYPTO: STATUS: VERSION: STAND ALONE 00 00 DCT 2000 Installation Manual Diagnostics B-19 TvPC Required - LED and OSD Table B-15 shows how the LED and OSD indicate whether further operation of the DCT 2000 requires the TvPC: Table B-15 TvPC required LED n Y OSD NOT REQUIRED IS REQUIRED Status TvPC not required TvPC is required Current Mode Table B-16 lists the current mode as displayed on the LED and the OSD: Table B-16 Current mode LED A S n OSD STAND ALONE SUPPORT NOT MATED Status Stand alone Support Not mated TvPC Status Table B-17 shows the TvPC status as displayed on the LEDs and the OSD: Table B-17 TvPC status LEDs and OSD 00 01 02 03 04 05 0a 0b 0C 0d Status OK TvPC communication problem TvPC required Validator does not match between GK and TvPC Invalid unit key number Old TvPC unit address TvPC not mated TvPC/base module unit address mismatch New TvPC, but wrong version number TvPC unit address mismatch DCT 2000 Installation Manual B-20 Diagnostics d 09: Upstream Modem Status These diagnostics display the appropriate set of STARVUE II (RF) and STARFONE (telephone) modem information based on the module installed in the DCT 2000. STARVUE II (RF) Diagnostics This diagnostic shows the status and operating parameters for the STARVUE II RF return. See Tables B-18 and B-19 for testing the parameters. Figure B-19 illustrates the STARVUE II diagnostics LEDs: Figure B-19 STARVUE II diagnostics LEDs Decimal point P STARVUE frequency MUTE MUTE Transmitter status Alternating with P STARVUE power level MUTE MUTE Transmitter status Figure B-20 illustrates the STARVUE II DIAGNOSTICS OSD: Figure B-20 STARVUE II DIAGNOSTICS OSD STARVUE II DIAGNOSTICS STATUS FREQUENCY LEVEL IPPV t 9. 0 MHz 34 DISABLED The Level field indicates the approximate power value of the STARVUE II transmitter in dBmV. [. . . ]

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