📄 tktds754.sub
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FPAttributeValueFile
n SubType="IVI"
n SubVersion="1"
v attrAcquisitionStopAfterRangeTable DataType="i"
(TKTDS754_VAL_COMMAND) (1)
""
TKTDS754_VAL_SINGLE_SEQUENCE (2)
"The oscilloscope initiates once and stops after the completion of a "
"single acquisition sequence."
TKTDS754_VAL_LIMIT (3)
"The oscilloscope initiates continuously until the occurance of a Limit "
"Test Condition."
v attrAcquisitionTypeRangeTable DataType="i"
TKTDS754_VAL_NORMAL (0)
"Sets the oscilloscope to the normal acquisition mode. The oscilloscope "
"acquires one sample for each point in the waveform record. The "
"oscilloscope can use real-time or equivalent-time sampling."
TKTDS754_VAL_PEAK_DETECT (1)
"Sets the oscilloscope to the peak-detect acquisition mode. The "
"oscilloscope oversamples the input signal and keeps the minimum and "
"maximum values that correspond to each position in the waveform record. "
"The oscilloscope uses only real-time sampling."
TKTDS754_VAL_HI_RES (2)
"Sets the oscilloscope to the high-resolution acquisition mode. The "
"oscilloscope oversamples the input signal and calculates an average value "
"for each position in the waveform record. The oscilloscope uses only "
"real-time sampling."
TKTDS754_VAL_ENVELOPE (3)
"Sets the oscilloscope to the envelope acquisition mode. The oscilloscope "
"acquires multiple waveforms and keeps the minimum and maximum voltages it "
"acquires for each point in the waveform record. You specify the number "
"of waveforms the oscilloscope acquires with the "
"TKTDS754_ATTR_NUM_ENVELOPES attribute. The oscilloscope can use "
"real-time or equivalent-time sampling."
TKTDS754_VAL_AVERAGE (4)
"Sets the oscilloscope to the average acquisition mode. The oscilloscope "
"acquires multiple waveforms and calculates an average value for each "
"point in the waveform record. You specify the number of waveforms the "
"oscilloscope acquires with the TKTDS754_ATTR_NUM_AVERAGES attribute. The "
"oscilloscope uses real-time or equivalent-time sampling."
v attrBandwidthRangeTable DataType="d"
20e6 (2.00000000000000E+7)
"Sets the channel bandwidth to 20 MHz."
250e6 (2.50000000000000E+8)
"Sets the channel bandwidth to 250 MHz."
500e6 (5.00000000000000E+8)
"Sets the channel bandwidth to 500 MHz. This is the full bandwidth for "
"the channel."
v attrChannelImpedanceRangeTable DataType="d"
TKTDS754_VAL_50_OHMS (5.00000000000000E+1)
"50.0 ohms"
TKTDS754_VAL_1_MEG_OHM (1.00000000000000E+6)
"1.0 mega ohm"
v attrCommCodeRangeTable DataType="i"
TKTDS754_VAL_COMM_AMI (1)
"Alternate Mark Inversion encoding scheme. Use this for communications "
"signals that use alternate mark inversion codes, including B3ZS, B6ZS, "
"B8ZS, and HDB3. \n"
"To trigger on all DS0 signals, select Pulse Width triggering with the "
"level set to 75% for positive pulses. Set the pulse width for each mask "
"as shown below:\n"
"\n"
"DS0 Codirectional, DS0 Sgl - less than 6.24 us.\n"
"DS0 Codirectional, DS0 Dbl - greater than or equal to 6.24 us.\n"
"DS0 Centralized Clock, DS0 Dbl - greater than 1ns\n"
"DS0 Contradirectional, DS0 Conta - greater than 1ns\n"
"DS0 Contradirectional, DS0 Timing - greater than 1ns"
TKTDS754_VAL_COMM_CMI (2)
"Coded Mark Inversion encoding scheme."
TKTDS754_VAL_COMM_NRZ (3)
"Non-Return to Zero codes."
v attrCommPulseFormAMIRangeTable DataType="i"
TKTDS754_VAL_COMM_ISOLATED_PLUS_ONE (2)
""
TKTDS754_VAL_COMM_ISOLATED_MINUS_ONE (3)
""
TKTDS754_VAL_COMM_EYE_DIAGRAM (6)
""
v attrCommPulseFormCMIRangeTable DataType="i"
TKTDS754_VAL_COMM_PLUS_ONE (4)
""
TKTDS754_VAL_COMM_MINUS_ONE (5)
""
TKTDS754_VAL_COMM_EYE_DIAGRAM (6)
""
TKTDS754_VAL_COMM_ZERO (1)
""
v attrCommPulseFormNRZRangeTable DataType="i"
TKTDS754_VAL_COMM_EYE_DIAGRAM (6)
""
TKTDS754_VAL_COMM_RISE (7)
""
TKTDS754_VAL_COMM_FALL (8)
""
TKTDS754_VAL_PATTERN0 (10)
""
TKTDS754_VAL_PATTERN1 (11)
""
TKTDS754_VAL_PATTERN2 (12)
""
TKTDS754_VAL_PATTERN3 (13)
""
TKTDS754_VAL_PATTERN4 (14)
""
TKTDS754_VAL_PATTERN5 (15)
""
TKTDS754_VAL_PATTERN6 (16)
""
TKTDS754_VAL_PATTERN7 (17)
""
v attrCommStandardAMIRangeTable DataType="i"
TKTDS754_VAL_COMM_DS1 (1)
""
TKTDS754_VAL_COMM_DS1A (2)
""
TKTDS754_VAL_COMM_DS1C (3)
""
TKTDS754_VAL_COMM_DS2 (4)
""
TKTDS754_VAL_COMM_DS3 (5)
""
TKTDS754_VAL_COMM_DS3R (6)
""
TKTDS754_VAL_COMM_E1 (8)
""
TKTDS754_VAL_COMM_E2 (9)
""
TKTDS754_VAL_COMM_E3 (10)
""
TKTDS754_VAL_COMM_STS1 (13)
""
TKTDS754_VAL_COMM_CUSTOM (30)
""
v attrCommStandardCMIRangeTable DataType="i"
TKTDS754_VAL_COMM_DS4NA (7)
""
TKTDS754_VAL_COMM_E4 (11)
""
TKTDS754_VAL_COMM_STS3 (14)
""
TKTDS754_VAL_COMM_STM1E (18)
""
TKTDS754_VAL_COMM_CUSTOM (30)
""
v attrCommStandardNRZRangeTable DataType="i"
TKTDS754_VAL_COMM_E5 (12)
""
TKTDS754_VAL_COMM_OC1 (15)
""
TKTDS754_VAL_COMM_OC3 (16)
""
TKTDS754_VAL_COMM_OC12 (17)
""
TKTDS754_VAL_COMM_FC133 (19)
""
TKTDS754_VAL_COMM_FC266 (20)
""
TKTDS754_VAL_COMM_FC531 (21)
""
TKTDS754_VAL_COMM_FC1063 (22)
""
TKTDS754_VAL_COMM_FDDI (23)
""
TKTDS754_VAL_COMM_D1 (24)
""
TKTDS754_VAL_COMM_D2 (25)
""
TKTDS754_VAL_COMM_VIDEO360 (26)
""
TKTDS754_VAL_COMM_10_BASE_T (27)
""
TKTDS754_VAL_COMM_100_BASE_T (28)
""
TKTDS754_VAL_COMM_GB_ETHERNET (29)
""
TKTDS754_VAL_COMM_CUSTOM (30)
""
v attrCursorFunctionRangeTable DataType="i"
TKTDS754_VAL_CURSORS_OFF (1)
"Turns the cursors off."
TKTDS754_VAL_CURSORS_VERT_BAR (2)
"Enables the vertical cursors."
TKTDS754_VAL_CURSORS_HORZ_BAR (3)
""
v attrDelayTriggerCouplingRangeTable DataType="i"
TKTDS754_VAL_DC (1)
"DC coupling"
TKTDS754_VAL_NOISE_REJ (1003)
"Noise reject"
TKTDS754_VAL_MAIN_TRIGGER (1004)
"Sets the delayed trigger coupling to match the setting on the main "
"trigger."
v attrDelayTriggerModeRangeTable DataType="i"
TKTDS754_VAL_RUNS_AFTER_MAIN (1)
"The oscilloscope does not use the delay trigger sub-system. After "
"receiving the main trigger, the oscilloscope waits the length of time you "
"specify with the TKTDS754_ATTR_TRIGGER_DELAY_TIME attribute before "
"acquiring data."
TKTDS754_VAL_TRIG_AFTER_TIME (2)
"After the receiving the main trigger, the oscilloscope waits the length "
"of time you specify with the TKTDS754_ATTR_TRIGGER_DELAY_TIME attribute "
"before it starts looking for a trigger from the delay trigger source. "
"you specify the delay trigger source with the "
"TKTDS754_ATTR_DELAY_TRIGGER_SOURCE attribute. This value is valid only "
"when you set the TKTDS754_ATTR_TRIGGER_TYPE attribute to "
"TKTDS754_VAL_EDGE or TKTDS754_VAL_TV."
TKTDS754_VAL_TRIG_AFTER_EVENTS (3)
"After the receiving the main trigger, the oscilloscope waits the number "
"of trigger events you specify with the TKTDS754_ATTR_DELAY_TRIGGER_EVENTS "
"attribute before it starts acquiring data. This value is valid only when "
"you set the TKTDS754_ATTR_TRIGGER_TYPE attribute to TKTDS754_VAL_EDGE or "
"TKTDS754_VAL_TV."
TKTDS754_VAL_TRIG_AFTER_EVENTS_TIME (4)
"After the receiving the main trigger, the oscilloscope waits the number "
"of trigger events you specify with the TKTDS754_ATTR_DELAY_TRIGGER_EVENTS "
"attribute. The oscilloscope then waits the length of time you specify "
"with the TKTDS754_ATTR_TRIGGER_DELAY_TIME attribute. The oscilloscope "
"then starts acquiring data. This value is valid only when the "
"TKTDS754_ATTR_TRIGGER_TYPE attribute is set to TKTDS754_VAL_EDGE or "
"TKTDS754_VAL_TV."
v attrDelayTriggerSlopeRangeTable DataType="i"
TKTDS754_VAL_POSITIVE (1)
"The delay trigger subsystem triggers on a positive (rising) edge passing "
"through the trigger level."
TKTDS754_VAL_NEGATIVE (0)
"The delay trigger subsystem triggers on a negative (falling) edge passing "
"through the trigger level."
v attrDelayTriggerSourceRangeTable DataType="d"
0 (0.00000000000000E+0)
""
0 (0.00000000000000E+0)
""
0 (0.00000000000000E+0)
""
0 (0.00000000000000E+0)
""
0 (0.00000000000000E+0)
""
v attrFastFrameLengthRangeTable DataType="i"
50 (50)
"Sets the length of each FastFrame frame to 50."
100 (100)
"Sets the length of each FastFrame frame to 100"
250 (250)
"Sets the length of each FastFrame frame to 250."
500 (500)
"Sets the length of each FastFrame frame to 500."
1000 (1000)
"Sets the length of each FastFrame frame to 1000"
2000 (2000)
"Sets the length of each FastFrame frame to 2000."
5000 (5000)
"Sets the length of each FastFrame frame to 5000."
v attrGlitchPolarityRangeTable DataType="i"
TKTDS754_VAL_GLITCH_POSITIVE (1)
"The oscilloscope triggers on a positive glitch."
TKTDS754_VAL_GLITCH_NEGATIVE (2)
"The oscilloscope triggers on a negative glitch."
TKTDS754_VAL_GLITCH_EITHER (3)
"The oscilloscope triggers on either positive or negative glitches."
v attrHDTVFormatRangeTable DataType="i"
TKTDS754_VAL_HDTV_FORMAT_787 (1)
"HDTV format that uses line rate of 787.5 lines per frame and a field rate "
"of 60 Hz."
TKTDS754_VAL_HDTV_FORMAT_1050 (2)
"HDTV format that uses a line rate of 1050 lines per frame and a field "
"rate of 60 Hz."
TKTDS754_VAL_HDTV_FORMAT_1125 (3)
"HDTV format that uses a line rate of 1125 lines per frame and a field "
"rate of 60 Hz."
TKTDS754_VAL_HDTV_FORMAT_1250 (4)
"HDTV format that uses a line rate of 1250 lines per frame and a field "
"rate of 50 Hz."
v attrHistoChannelSourceRangeTable DataType="d"
0 (0.00000000000000E+0)
""
0 (0.00000000000000E+0)
""
0 (0.00000000000000E+0)
""
0 (0.00000000000000E+0)
""
v attrHistoCoordinateSystemRangeTable DataType="i"
TKTDS754_VAL_WAVEFORM_COORDINATES (1)
"Configures the driver to use waveform coordinates for the histogram box "
"position attributes. The units for the TKTDS754_ATTR_HISTO_BOX_LEFT_POS "
"and TKTDS754_ATTR_HISTO_BOX_RIGHT_POS attributes are seconds. The units "
"for the TKTDS754_ATTR_HISTO_BOX_TOP_POS and "
"TKTDS754_ATTR_HISTO_BOX_BOTTOM_POS attributes are volts."
TKTDS754_VAL_PERCENTAGE_COORDINATES (2)
"Configures the driver to use percentages for the histogram box position "
"attributes."
v attrHistoDisplayRangeTable DataType="i"
TKTDS754_VAL_OFF (1)
"The oscilloscope disables the histogram display. However, the "
"oscilloscope continues calculating the histogram and you can continue to "
"take histogram measurements."
TKTDS754_VAL_LINEAR (3)
"The oscilloscope displays the count in each histogram bin."
TKTDS754_VAL_LOG (2)
"The oscilloscope displays the log of the count in each histogram bin."
v attrHistoModeRangeTable DataType="i"
TKTDS754_VAL_OFF (1)
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