Chapter 4
Programming
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National Instruments Corporation
4-49
8-1 muxes that can drive the four RTSI board signals with any of the seven
RTSI trigger signals and the AISTART or AISTOP signal.
See the DAQ-STC manual for information on programming the RTSI
interface. The function
MSC_RTSI_Pin_Configure
is very
straightforward and easy to use.
Notice that, of the four RTSI board signals, only RTSI_BRD0 is connected
to GENTRIG0. The remaining three are unused. The GENTRIG0 signal is
a logical AND of the CONVERT pulse and the DOTRIG0 bit in the
configuration memory. When the DOTRIG0 is set, the GENTRIG line is
driven by the CONVERT signal. This can be driven out to the RTSI lines
and used by some other board for synchronization purposes.
Analog Triggering
The AT-MIO-16E-1, AT-MIO-16E-2, AT-MIO-64E-3,
AT-MIO-16XE-10, and AT-AI-16XE-10 contain true analog triggering
hardware, which provides fast slope and level detection, as well as window
detection. The mode selection circuitry is in the DAQ-STC, while the
analog comparison is performed by onboard circuitry.
Refer to the Analog Trigger section of Chapter 10, Miscellaneous
Functions, in the DAQ-STC Technical Reference Manual for information
about the analog trigger functionality of the DAQ-STC. The various modes,
Low Window, High Window, Middle Window, high and low hysteresis are
discussed. The signals connected to the High Value and Low Value are
analog signals generated by CALDAC11 and CALDAC12. These are the
remaining two CALDACs on the MB88341 chip. The first 10 CALDACs
were used up by the calibration circuitry. The AT-MIO-16XE-10 and
AT-AI-16XE-10 use AD8522, which has two 12-bit serial DACs, for
analog trigerring. For more information about the MB88341 and AD8522,
see Chapter 5,
, later in this manual.
One of two sources may be used as the trigger source, the PFI0/TRIG1
input on the I/O connector or the analog inputs passing through the PGIA.
The PGIA allows you to apply gain to an external signal for more flexible
triggering conditions. The PFI0/TRIG1 pin has an input voltage range of s
to the PGIA path at a gain of 1. The Analog_Trigger_Drive bit in the
Analog_Trigger_Etc_Register controls which input is used. The PGIA
output is selected when this bit is cleared, and the PFI0/TRIG1 input is
selected when this bit is set. When the PFI0/TRIG1 input is being used for
an analog signal, it must be disconnected from the DAQ-STC PFI input.
You can do this by clearing the Analog_Trigger_Drive bit in the DAQ-STC.
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