|
NetTest CMA8800 (CMA 8000) OTDR
Original Price: $5,000
With its modular design, the CMA 8800 OTDR meets the most demanding test
requirements for a variety of applications from fault location to testing high
fiber count networks. It includes all of the features of the CMA4000i Optical
Test System plus a GPIB Interface, Optical Switch option and Built-In Printer
option. In addition, it can be configured with a power meter, light source and
Visual Fault Locator to handle any optical testing requirements.
Benefits
The all-in-one system for characterizing optical networks:
-
Commissioning
-
Fault location / restoration
-
Maintenance
-
End to End optical loss budget testing
-
System documentation
Detailed Product Description
Leading technology for the amateur or pro
The CMA 8800 offers all the features of a mainframe OTDR in a rugged,
economical, field-portable unit. When the CMA 8800 OTDR is configured with one
of our many single-, dual-, tri- or quad-wavelength OTDR modules, it becomes
the world's fastest OTDR for testing multimode or single-mode fiber. With a
test range from 21 dB to 50 dB, you can test longer lengths with less averaging
time. Along with dead zones as short as three meters, you can be sure you're
getting complete and accurate data for your entire length of fiber.
The optional Optical Switch, when used in conjunction with the S 918A bare
ribbon fiber adapter, becomes the most efficient method for testing bare ribbon
fibers. The built-in printer option allows the user to print the test results
right in the field, saving valuable time. In addition, the GPIB Interface lets
you conduct tests remotely, using a computer to control the CMA 8800 OTDR.
Time saving, intelligent software minimizes the necessary steps needed to
perform frequent functions. Its multi-tasking ability allows the CMA 8800 OTDR
to test, analyze and display data faster than any other OTDR available. Based
on hundreds of hours of field operation observations, NetTest engineers created
workflow and logic scripts for the most complicated day-to-day OTDR tasks. The
result is a simplified, easy-to-use operational interface, which decreases
field test time, technician training and the chance of operator-induced errors.
Combining the CMA8800 OTDR Construct mode with the reporting capability in
NetTest's industry-leading NetWorks Emulation software provides the fastest,
most efficient solution on the market for installation, commissioning and
reporting of high fiber count cables where bi-directional testing is required.
Test modes for your specific application
From the Power-On state, the user may select from several different modes of
operation, each designed to expedite specific operations such as fault
locating, repetitive high count fiber testing customized maintenance testing,
power level testing, visual fault testing, and storage maintenance.
Fault Locate mode provides the fastest and easiest solution on the market for
determining the fiber length or fault location. Fully automated, one-button
operation makes it the ideal mode for the novice user. Results are compiled and
displayed in as little as seven seconds and include:
-
Table format with distance to fault
-
Combined trace and table format
-
Event table analysis
Construct Mode simply eliminates time consuming setups common to repetitive
practices of testing, storing, analyzing and documenting high fiber count
cables. From the setup screen, the operator can quickly select one or all
wavelengths to test, the file naming structure and specific fiber count for a
given cable. Once setup, the OTDR acts as a "task master," to automatically:
-
Select the wavelengths
-
Test the fiber at all selected wavelengths
-
Analyze the trace data
-
Store the trace and analysis data to either floppy or hard drive
-
Alert the technician to move to the next fiber to be tested and increment the
filename to the next sequential number
-
Continue this process until all fibers have been tested
Expert OTDR allows the user to perform traditional OTDR functions with dedicated
hard keys tied to frequently used OTDR parameters such as pulse width,
range/resolution and wavelength. This mode provides on-the-fly parameter
changes for increased speed and determination of fine-tuned settings. Key
features of Expert mode include:
-
Realtime Testing
-
Splice Optimization
-
Loss Mode Setup
-
Dual Wavelength Testing
-
Trace Compare Mode
-
Trace Shift Capability
-
Trace Analysis
-
Event Table Editing
Designed with ease of use in mind, all Instrument Setup Parameters are available
from a single Quick Setup Screen accessible through a dedicated hardkey. From
here, any or all automatic setups may be set and run in succession, once the
test button has been pressed. Some of the Automatic Setups include:
AUTOMODE: Selects optimum Pulse Width, Distance Range, Distance Resolution and
Number of Averages for the fiber lengths attached prior to testing each fiber.
AUTO ANALYSIS: Initiates a fiber trace analysis immediately upon completion of
the data acquisition process.
AUTO SAVE: Automatically saves the trace data and Analysis information to the
storage medium of choice.
AUTOPRINT: Automatically prints the trace data and Analysis information to the
Printer of choice.
SPECIAL MODES - Sometimes specific applications may require specialized testing
or functions.
Dual Pulsewidth - Allows full dynamic range testing with initial connector
deadzones of less than 50 meters.
Multiple Wavelength - Suited for high fiber count bare fiber testing
applications such as reel testing.
PON Mode - Optimized for optical networks utilizing optical splitter technology.
Test Suite Mode - In conjunction with the optical switch option, the Test Suite
Mode allows successive testing of up to 12 fibers without user intervention.
Features
-
Highest OTDR dynamic range in the world - 50 dB
-
Measure fibers from 3 m to 250 km
-
OTDR, LTS and VFL in a single module
-
Fully automatic one-button testing
-
12 port Optical Switch (optional)
-
Built-in thermal printer (optional)
-
GPIB Interface for remote control by a PC
Specifications
| Optical Time Domain Reflectometer |
Module 4439 |
Module 4453 |
Module 4454 |
Module 4476 |
| Center Wavelengths |
1310 nm
1550 nm
|
1310 nm
1550 nm
1625 nm |
1310 nm
1410 nm
1550 nm
1625 nm
|
1550 nm
1625 nm |
| Dynamic range |
1310 nm:
43 dB
1550 nm:
46 dB |
40 dB |
36 dB |
40 dB |
| Initial Reflective Deadzone |
3 m |
4 m |
3.5 m |
4 m< |
Literature
|