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Operation 

After installation, the Device should function without operator intervention.  Use the
status LEDs to monitor the Device operation in the network.  

SDC

(Signal Detect / Coax)

On = The coax link is up.

SDF

(Signal Detect / Fiber)

On = The fiber link is up.

PWR

(Power)

On = The Device is connected to

external power.

Remote Management 

The CSDTF30xx-11x chassis Device can remotely manage the
SSDTF30xx-11x, the stand-alone version of the Device, or
another CSDTF30xx-11x.  

For example, a local CSDTF3011-115 Device 

(that is installed

in a managed Transition Networks PointSystem™ chassis)

is

connected, via fiber, to a remote SSDTF3011-115 Device.  An
example of a managed single-fiber network has a local
CSDTF3029-115 Device connected, via fiber, to a remote
SDTF3029-116.

See the SNMP section (below) for a list of commands that can
be used to monitor and manage the CSDTF30xx-11x and
SSDTF30xx-11x Devices.

NOTE: 

In a managed network, both the local and remote

Devices must be set to “software” mode (see page 2). 

SNMP

See the on-line documentation that comes with Transition Networks FocalPoint™
software for applicable commands and usage.

Use SNMP at an attached terminal or at a remote location to monitor the Device by
monitoring:

Media Device power

Copper link and fiber link status 

(local and/or remote)

AIS detected on copper link and fiber link

(local and/or remote)

Hardware switch settings

Also, use SNMP to enter network commands that:

Bootload the firmware

(local only)

Enable/disable loopback on the copper link

(local and/or remote)

Enable/disable loopback on the fiber link 

(local and/or remote)

Enable/disable Transmit All Ones on the fiber link when the copper link
is down (local and/or remote)

Enable/disable Transmit All Ones on the copper link when the fiber  link
is down 

(local and/or remote)

Power-down the Device

CSDTF30xx-11x

6

24-hour Technical Support: 1-800-260-1312 -- International: 00-1-952-941-7600

CSDTF

CO
AX

Fiber

SDF

SDC

PWR

TX

RX

RX

TX

CL

FL

[email protected] -- Click the “Transition Now” link for a live Web chat.

7

Fiber Cable 

Single mode fiber (recommended):  

9 µm 

Multimode fiber (recommended):  

62.5/125 µm 

Multimode fiber (optional):  

100/140, 85/140, 50/125 µm 

CSDTF3011-115

850 nm multimode

Fiber Optic Transmitter Power:

min: -14.0 dBm

max: -12.0 dBm

Fiber Optic Receiver Sensitivity:

min: -25.0 dBm

max: -12.0 dBm

Link Budget:

11.0 dB

CSDTF3012-115

1310 nm single mode

Fiber-optic Transmitter Power:

min: -27.0 dBm

max: -10.0 dBm

Fiber-optic Receiver Sensitivity:

min: -34.0 dBm

max: -14.0 dBm

Link Budget:

7.0 dB

CSDTF3013-115

850 nm multimode

Fiber Optic Transmitter Power:

min: -19.0 dBm

max: -14.0 dBm

Fiber Optic Receiver Sensitivity:

min: -32.5 dBm

max: -14.0 dBm

Link Budget:

13.5 dB

CSDTF3014-115

1310 nm single mode

Fiber-optic Transmitter Power:

min: -19.0 dBm

max: -14.0 dBm

Fiber-optic Receiver Sensitivity:

min: -34.0 dBm

max: -3.0 dBm

Link Budget:

15.0 dB

CSDTF3015-115

1310 nm single mode

Fiber Optic Transmitter Power:

min: -8.0 dBm

max: -2.0 dBm

Fiber Optic Receiver Sensitivity:

min: -38.0 dBm

max: -8.0 dBm

Link Budget:

30.0 dB

CSDTF3016-115

1310 nm single mode

Fiber-optic Transmitter Power:

min: -5.0 dBm

max: 0.0 dBm

Fiber-optic Receiver Sensitivity:

min: -38.0 dBm

max: -8.0 dBm

Link Budget:

33.0 dB

CSDTF3017-115

1550 nm single mode

Fiber-optic Transmitter Power:

min: -5.0 dBm

max: 0.0 dBm

Fiber-optic Receiver Sensitivity:

min: -34.0 dBm

max: -7.0 dBm

Link Budget:

29.0 dB

CSDTF3018-115

1300 nm multimode

Fiber-optic Transmitter Power:

min: -19.0 dBm

max: -14.0 dBm

Fiber-optic Receiver Sensitivity:

min: -33.5 dBm

max: -14.0 dBm

Link Budget:

14.5 dB

Cable Specifications

Copper Cable 

E1:

Cable Type:

RG-59

Gauge:

24 to 22 AWG

Differential Characteristic Impedance:

75 ohm +/- 10%

Summary of Contents for CSDTF3011-115

Page 1: ...8 ft SC 1310 nm single mode 60 km 37 3 miles CSDTF3017 115 75 ohm BNC coax 100 m 328 ft SC 1550 nm single mode 80 km 49 7 miles CSDTF3018 115 75 ohm BNC coax 100 m 328 ft MT RJ 1300 nm multimode 2 km 1 2 miles CSDTF3022 115 75 ohm BNC coax 100 m 328 ft ST 1310 nm single mode 15 km 9 3 miles CSDTF3025 115 75 ohm BNC coax 100 m 328 ft MT RJ 1310 nm single mode 20 km 12 4 miles User s Guide CSDTF30xx...

Page 2: ...ce mode is determined by the most recently saved on board microprocessor settings Hardware Mode Software Mode H H S S E1 Configuration switch 4 IMPORTANT Switch 4 MUST be set to the down position to set the Device for E1 configuration 1 2 3 4 E1 Configuration down Important techsupport transition com Click the Transition Now link for a live Web chat 3 Switch 2 Fiber Transmit All Ones Up Disables t...

Page 3: ...software control the network administrator can initiate the loop back test function on the coax interface local or remote or on the fiber interface local or remote CL FL techsupport transition com Click the Transition Now link for a live Web chat 5 Installation Continued Install the Copper Cable 1 Locate or build coax cables with female connectors installed at both ends 2 Connect the coax cables t...

Page 4: ...on the copper link when the fiber link is down local and or remote Power down the Device CSDTF30xx 11x 6 24 hour Technical Support 1 800 260 1312 International 00 1 952 941 7600 CSDTF COAX Fiber SDF SDC PWR TX RX RX TX CL FL techsupport transition com Click the Transition Now link for a live Web chat 7 Fiber Cable Single mode fiber recommended 9 µm Multimode fiber recommended 62 5 125 µm Multimode...

Page 5: ...pecified herein may result in hazardous radiation exposure techsupport transition com Click the Transition Now link for a live Web chat 9 Technical Specifications For use with Transition Networks Model CSDTF30xx 11x or equivalent Standards Emissions CISPR A Telecordia TR NWT 001089 designed to meet NOT tested FCC Part 68 T1 E1 Physical layer ITU T ANSI AT T and ETSI European Technical Standard TBR...

Page 6: ... mode enter the local copper loop back command and then use a bit error test unit to run a bit error test Verify the local fiber connection by starting a remote fiber loop back hardware mode set the loop back switch on the remote Device to FL software mode enter the remote fiber loop back command and then use a bit error test unit to run a bit error test Verify the remote copper connection by star...

Page 7: ...adian Department of Communications Le présent appareil numérique n émet pas de bruits radioélectriques dépassant les limites applicables aux appareils numériques de la Class A prescrites dans le Règlement sur le brouillage radioélectrique édicté par le ministère des Communications du Canada European Regulations Warning This is a Class A product In a domestic environment this product may cause radi...

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