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Application Note

                                          860 DSPi QAM
The Communication industry uses two simple measurements to describe the quality of data
communications: MER and BER. Both measure the effect of noise and other disturbances on the
transmitted bits. BER measures how often symbols are pushed into neighboring symbols “territories,”
causing these symbols to be misinterpreted. BER is expressed as the ratio of errored bits per some
number of bits sent (given as a power of 10). BER does not measure the purity or condition of the QAM
signal itself, though a poor BER is an indicator of poor quality. Because the BER measurement detects
and counts every misinterpreted bit, it is a sensitive indicator of problems caused by transient or “bursty”
noise interference.




 For Additional Help Contact
 Trilithic Applications Engineering                                                                860 DSPi QAM
 1-800-344-2412 or 317-895-3600                                                         P/N 0010275004 – Rev 5/07
 support@trilithic.com or                                                                                  1 of 3
 www.trilithic.com

                                Copyright © 2007 Trilithic, Inc. All Rights Reserved.
Application Note

The 860DSP literally counts the bits with the IL-1 option. When trying to measure BER at 1x10-9 it is good
engineering practice to wait until the meter has received enough bits to measure 1x109 or one billion bits.
With a 256 QAM channel this will take approximately 30 seconds.

MER and BER measurements detect different types of impairments. MER is the measurement in dB of
the RMS error magnitude over the average symbol magnitude. The higher the error magnitude, the lower
the MER. MER essentially assigns a value to the “fuzziness” of the symbol cluster. The larger or fuzzier
the cluster becomes, the lower the MER. Consequently, the farther the dots move from their ideal
locations, the poorer the MER. Each symbol or “dot” on the constellation is framed by decision
boundaries. When the carrier falls inside the boundaries, the information is transmitted without errors.
MER determines how much margin the system has before failure. Low MER is not noticeable on the
subscriber’s picture until system failure. MER is a good figure of merit for the QAM signal.

BER is a good indicator of fast, intermittent transients.




 For Additional Help Contact
 Trilithic Applications Engineering                                                                860 DSPi QAM
 1-800-344-2412 or 317-895-3600                                                         P/N 0010275004 – Rev 5/07
 support@trilithic.com or                                                                                  2 of 3
 www.trilithic.com

                                Copyright © 2007 Trilithic, Inc. All Rights Reserved.
Application Note




Impairments include:
   • Laser clipping (most common cause)
   • Sweep interference
   • Corroded or loose connections
   • Microphonics

Therefore, if you have high MER but errors are present, they are probably caused by intermittent
interference. This shows up on a constellation diagram as a lone dot that is away from the main cluster.
The best way to test this is with the 860DSP in the BER mode. Gray lines are Pre-BER errors and Black
lines are Post-BER errors. It is much easier to see BER errors in this mode than one lone dot on the
constellation and the time duration can be set from 200, 400, or 600 seconds. This is a very useful tool to
help the technician to isolate and fix ingress problems, since the BER errors are graphically displayed vs
time, instead of trying to see just a few lone dots separate from the cluster on the constellation screen.

Scientific Notation
1.00E+00                  1/1                                  One
1.00E-01                  1/10                                 One in Ten
1.00E-02                  1/100                                One in One Hundred
1.00E-03                  1/1,000                              One in One Thousand
1.00E-04                  1/10,000                             One in Ten Thousand
1.00E-05                  1/100,000                            One in One Hundred Thousand
1.00E-06                  1/1,000,000                          One in One Million
1.00E-07                  1/10,000,000                         One in Ten Million
1.00E-08                  1/100,000,000                        One in One Hundred Million
1.00E-09                  1/1,000,000,000                      One in One Billion
1.00E-10                  1/10,000,000,000                     One in Ten Billion
1.00E-11                  1/100,000,000,000                    One in One Hundred Billion
1.00E-12                  1/1,000,000,000,000                  One in One Trillion
0.00E-00                  0x100                                (No Errors)




 For Additional Help Contact
 Trilithic Applications Engineering                                                                860 DSPi QAM
 1-800-344-2412 or 317-895-3600                                                         P/N 0010275004 – Rev 5/07
 support@trilithic.com or                                                                                  3 of 3
 www.trilithic.com

                                Copyright © 2007 Trilithic, Inc. All Rights Reserved.

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860 dspi qam_appnote

  • 1. Application Note 860 DSPi QAM The Communication industry uses two simple measurements to describe the quality of data communications: MER and BER. Both measure the effect of noise and other disturbances on the transmitted bits. BER measures how often symbols are pushed into neighboring symbols “territories,” causing these symbols to be misinterpreted. BER is expressed as the ratio of errored bits per some number of bits sent (given as a power of 10). BER does not measure the purity or condition of the QAM signal itself, though a poor BER is an indicator of poor quality. Because the BER measurement detects and counts every misinterpreted bit, it is a sensitive indicator of problems caused by transient or “bursty” noise interference. For Additional Help Contact Trilithic Applications Engineering 860 DSPi QAM 1-800-344-2412 or 317-895-3600 P/N 0010275004 – Rev 5/07 support@trilithic.com or 1 of 3 www.trilithic.com Copyright © 2007 Trilithic, Inc. All Rights Reserved.
  • 2. Application Note The 860DSP literally counts the bits with the IL-1 option. When trying to measure BER at 1x10-9 it is good engineering practice to wait until the meter has received enough bits to measure 1x109 or one billion bits. With a 256 QAM channel this will take approximately 30 seconds. MER and BER measurements detect different types of impairments. MER is the measurement in dB of the RMS error magnitude over the average symbol magnitude. The higher the error magnitude, the lower the MER. MER essentially assigns a value to the “fuzziness” of the symbol cluster. The larger or fuzzier the cluster becomes, the lower the MER. Consequently, the farther the dots move from their ideal locations, the poorer the MER. Each symbol or “dot” on the constellation is framed by decision boundaries. When the carrier falls inside the boundaries, the information is transmitted without errors. MER determines how much margin the system has before failure. Low MER is not noticeable on the subscriber’s picture until system failure. MER is a good figure of merit for the QAM signal. BER is a good indicator of fast, intermittent transients. For Additional Help Contact Trilithic Applications Engineering 860 DSPi QAM 1-800-344-2412 or 317-895-3600 P/N 0010275004 – Rev 5/07 support@trilithic.com or 2 of 3 www.trilithic.com Copyright © 2007 Trilithic, Inc. All Rights Reserved.
  • 3. Application Note Impairments include: • Laser clipping (most common cause) • Sweep interference • Corroded or loose connections • Microphonics Therefore, if you have high MER but errors are present, they are probably caused by intermittent interference. This shows up on a constellation diagram as a lone dot that is away from the main cluster. The best way to test this is with the 860DSP in the BER mode. Gray lines are Pre-BER errors and Black lines are Post-BER errors. It is much easier to see BER errors in this mode than one lone dot on the constellation and the time duration can be set from 200, 400, or 600 seconds. This is a very useful tool to help the technician to isolate and fix ingress problems, since the BER errors are graphically displayed vs time, instead of trying to see just a few lone dots separate from the cluster on the constellation screen. Scientific Notation 1.00E+00 1/1 One 1.00E-01 1/10 One in Ten 1.00E-02 1/100 One in One Hundred 1.00E-03 1/1,000 One in One Thousand 1.00E-04 1/10,000 One in Ten Thousand 1.00E-05 1/100,000 One in One Hundred Thousand 1.00E-06 1/1,000,000 One in One Million 1.00E-07 1/10,000,000 One in Ten Million 1.00E-08 1/100,000,000 One in One Hundred Million 1.00E-09 1/1,000,000,000 One in One Billion 1.00E-10 1/10,000,000,000 One in Ten Billion 1.00E-11 1/100,000,000,000 One in One Hundred Billion 1.00E-12 1/1,000,000,000,000 One in One Trillion 0.00E-00 0x100 (No Errors) For Additional Help Contact Trilithic Applications Engineering 860 DSPi QAM 1-800-344-2412 or 317-895-3600 P/N 0010275004 – Rev 5/07 support@trilithic.com or 3 of 3 www.trilithic.com Copyright © 2007 Trilithic, Inc. All Rights Reserved.