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NetDAQ
Service Manual
2-16
Table 2-1. Microprocessor Interrupt Sources
Microprocessor Pin
Signal Name
Description
A1U1-96
CINT*
Real-Time Clock Interrupt; 64 per second.
A1U1-121
XTINT*
External Trigger Interrupt.
A1U1-120
KINT*
Keyboard Interrupt; interrupts on each debounced
change of keyboard conditions.
n/a
n/a
A/D Communication Interrupt; internal to the
microprocessor.
n/a
n/a
RS-232 Interface Interrupt; internal to the
microprocessor.
n/a
n/a
Timer Interrupt; internal to the microprocessor.
n/a
n/a
Debug Serial Interface Interrupt; internal to the
microprocessor.
A1U1-119
EINT*
Ethernet Interface.
n/a
n/a
Timer Interrupt; internal to the microprocessor.
n/a
n/a
Display Serial Interface Interrupt; internal to the
microprocessor.
n/a
n/a
Watchdog Timer; internal to the microprocessor.
A1U1-118
DISRX
Display Interrupt..
A1U1-97
TOTINT*
Totalizer Interrupt; interrupts on totalizer overflow from a
count of 4,294,967,295 to 0.
The Microprocessor also has several internal DMA (Direct Memory Access) controllers
that are used by the serial communication channels. Each serial communication channel
has a DMA channel that handles character reception and another that handles character
transmission. The use of these DMA controllers is transparent to the external operation
of the Microprocessor, but it is important to understand that communication is handled at
hardware speeds without the need for an interrupt for each character being transferred.
A watchdog timer internal to the Microprocessor is programmed to have a 10-second
timeout interval. If the code executed by the Microprocessor fails to reinitialize the
watchdog timer every 10 seconds or less, then A1U1-117 (POR*) is driven low for 16
cycles of SCLK (approximately 1 microsecond). This results in a complete hardware
reset of the instrument, which restarts operation.
Address Decoding
2-34.
The four chip-select outputs on the Microprocessor are individual software programmed
elements that allow the Microprocessor to select the base address, the size, and the
number of wait states for the memory accessed by each output.
The FLSH* signal (A1U1-128) enables accesses to 512 kilobytes of Flash Memory
(A1U21). The FLSH* signal goes through jumper W3, which must always be installed
during normal instrument operation. W3 is removed only during the initial programming
of the Flash Memory during production at the factory.
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