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User’s Guide
SSDTF10xx-10x
Stand-Alone Devices
• T1 / E1 with Remote Management
• Copper to Fiber
Transition Networks SSDTF10xx-10x series
Devices encode and decode T1 or E1 twisted-pair
copper signals over fiber optic cable to extend the
distance and transmission reliability of high-speed
T1 or E1 data traffic. The device is framing independent (as ESF vs. D4) and supports all
common line codes (e.g., AMI, B8ZS, HDB3).
The SSDTF10xx-10x is designed to be installed in pairs. For example, instal
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SSDTF10xx-10x Part Number Port Two - Single Fiber Optic Port One - Copper Installation SSDTF1029-105 ** RJ-45 SC, 1310 mn (TX)/1550 nm (RX) CAUTION: Wear a grounding device and observe electrostatic discharge precautions 1.5 km (5,000 feet) * single mode, 20 km (12.4 miles)* when setting the jumper and switches. Failure to observe this caution could result in SSDTF1029-106 ** RJ-45 SC, 1550 mn (TX)/1310 nm (RX) damage to, and subsequent failure of, the device. 1.5 km (5,000 feet) * single mod
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SSDTF10xx-10x Installation -- Continued Installation -- Continued 1 Switch 1, Copper -- transmit all ones Set the loop-back switch UP - Disables the transmit all ones Hardware mode: function on the copper interface. The loop-back switch is located on the front panel of the device and is used for Copper - Transmit All Ones - Disabled installation and network debugging procedures. DOWN - Transmits an “all ones” pattern on the copper interface when the signal To set the switch, use a small flat-
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SSDTF10xx-10x Installation -- Continued Installation -- Continued Settings for T1 configuration (right switch set, SW 1) T1/short-haul signal T1/long-haul signal Use switches 3 and 4 on the left switch set to select T1/short-haul signal (see the drawing below). Use switches 3 and 4 on the left switch set to select T1/long-haul signal (see the drawing below). Use switches 1, 2, and 3 on the right switch set to select the proper network cable settings. The drawing below lists the seven options.
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SSDTF10xx-10x Installation -- Continued Installation -- Continued Install the copper cable Power the device 1. Locate or build twisted-pair copper cables that are compliant with the Note: The external power supply provided with this product is UL listed by the specifications on page 11 with RJ-45 connectors at both ends. power supply’s manufacturer. 2. Ensure that the MDI/MDI-X switch is set according to the network conditions 1. Install the power adapter cord to the back of the device. (see p
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SSDTF10xx-10x Cable Specifications Cable Specifications -- Continued Fiber cable Fiber cable SSDTF1027-105 1300 nm multimode Single mode fiber (recommended): 9 µm Fiber Optic Transmitter Power: min: -19.0 dBm max: -10.0 dBm Multimode fiber (recommended): 62.5/125 µm Fiber Optic Receiver Sensitivity: min: -32.5 dBm max: -14.0 dBm Multimode fiber (optional): 100/140, 85/140, 50/125 µm Link Budget: 13.5 dB SSDTF1011-105 850 nm multimode SSDTF1029-105 1310 nm (TX)/1550 nm (RX) simplex Fiber Opt
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SSDTF10xx-10x Technical Specifications Troubleshooting For use with Transition Networks Model SSDTF10xx-10x or equivalent If the device fails, isolate and correct the failure by determining the answers to the following questions and then taking the indicated action: Standards: Emissions: CISPR A; Telecordia TR-NWT-001089 (designed to meet; NOT tested); FCC Part 68; T1/E1 1. Is the PWR (Power) LED illuminated? Physical layer: ITU-T, ANSI, AT&T, and ETSI; European NO Technical Standard: TBR 12; Br
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SSDTF10xx-10x 4. Is data transfer failing? Contact Us YES Technical support • Verify the local copper connection by starting a local copper loop-back Technical support is available 24 hours a day: (hardware mode: set the loop-back switch on the local device to “CL”, U.S.A. and Canada: 1-800-260-1312 software mode: enter the local copper loop-back command) and then use a International: 00-1-952-941-7600 bit error test unit to run a bit error test. Transition now Chat live via the Web with Transit
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SSDTF10xx-10x Compliance Information CISPR22/EN55022 Class A + EN55024 CE Mark FCC regulations This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to part 15 of the FCC rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with