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6 List Sequence Measurements
List Sequence Measurements
3
Burst start time is the start time of the burst referring to the start of the analysis interval. If averaging is on and
average number is N, the final burst width results is calculated by averaging N burst start time results.
4
Rump up time is the time difference between 10% and 90% voltage points (relative to peak) on the positive slope of
the burst, here burst has the same meaning in Burst width. If averaging is on and average number is N, rump up
time is calculated after N PVT traces are merged.
5
Ramp down time is the time difference between 90% and 10% voltage points (relative to peak) on the negative
slope of the burst, here burst has the same meaning in Burst width. If averaging is on and average number is N,
rump down time is calculated after N PVT traces are merged.
6
Off power is calculated as the averaged power between the –48th and –16th chip before the burst start time. If
average is on and average number is N, the off power is calculated after N PVT traces are merged.
7
Maximum power is the maximum peak level in the range specified by Analysis Time Slot and Measured Time Slots
(in dBm). If average is on and average number is N, the maximum power is calculated after N PVT traces are
merged.
8
Minimum power is the minimum peak level in the range specified by Analysis Time Slot and Measured Time Slots
(in dBm). If average is on and average number is N, the minimum power is calculated after N PVT traces are
merged.
9
Trace sample interval is a floating point number representing the time between samples of the merged envelop
trace data, which could be read by using FETCh:LSEQuencer<l>:ACQuire<m>:ASTep<n>:TDPVt:TRACe?
If average is on and average number is N, this result is calculated after N PVT traces are merged.
10
Trace sample number is the number of data points in the merged envelop trace data, which could be read by using
FETCh:LSEQuencer<l>:ACQuire<m>:ASTep<n>:TDPVt:TRACe?
Only up to 2000 envelop trace points can be returned. So, the envelop trace returned may be decimated. If average
is on and average number is N, this result is calculated after N PVT traces are merged.
11
Off power before is the averaged power between the start time of the analysis interval and the –34th chip before
the burst start time. This value is used for the limit check. The upper limit is –65 dBm. Though limited by analysis
interval, this result is derived from 8960 Tdscdma Transmit ON/OFF Power result: Range 1 OFF Power, whereas it
is the averaged power or the highest chip power between –160th to –34th chips of the averaged trace for TS1, and
–864th to –34th chips of the averaged trace for UpPTS. Please see 3.8.5 of TDSCDMA Meas PD 1131831 for
details.
If average is on and average number is N, this result is calculated after N PVT traces are merged.
12
Average power over –33rd ~ –14th chip is the averaged power between –33rd chip to –14th chip of the burst. This
value is used for the limit check. Its upper limit is –50 dBm. This result is derived from the 8960 Tdscdma Transmit
ON/OFF Power result: Range 2 OFF Power, which is the averaged or highest chip power between –33rd to –14th
chips of the averaged trace. Please see 3.8.5 of TDSCDMA Meas PD 1131831 for details.
If average is on and average number is N, this result is calculated after N PVT traces are merged.
13
Off power after is the averaged power between the 860th chips to the end of the analysis interval. This result is
derived from the 8960 Tdscdma Transmit ON/OFF Power result: Range 3 OFF Power, which is the averaged power
between 860th to 1711st chips of the averaged trace. Please see 3.8.5 of TDSCDMA Meas PD 1131831 for
details.
If average is on and average number is N, this result is calculated after N PVT traces are merged.
14
Max burst start time is the maximum start time of the burst referring to the start of the analysis interval. If
averaging is on and average number is N, this results is the maximum value of the N burst start time results.
238
Sequence Analyzer User's & Programmer's Reference
Содержание E6650A EXF
Страница 34: ...1 About the Test Set Mouse and Keyboard Control 34 Sequence Analyzer User s Programmer s Reference...
Страница 94: ...2 Programming the Test Set Common Commands 94 Sequence Analyzer User s Programmer s Reference...
Страница 129: ...4 Mode Functions Undefined variable Primary ProductName Sequence Analyzer User s Programmer s Reference 129...
Страница 145: ...5 System Functions Undefined variable Primary ProductName Sequence Analyzer User s Programmer s Reference 145...
Страница 206: ...5 System Functions System 206 Sequence Analyzer User s Programmer s Reference...
Страница 214: ...6 List Sequence Measurements File File See File on page 146 214 Sequence Analyzer User s Programmer s Reference...
Страница 474: ...6 List Sequence Measurements Mode Mode See Mode on page 130 474 Sequence Analyzer User s Programmer s Reference...
Страница 478: ...6 List Sequence Measurements Print Print See Print on page 151 478 Sequence Analyzer User s Programmer s Reference...
Страница 642: ...6 List Sequence Measurements System System See System on page 152 642 Sequence Analyzer User s Programmer s Reference...