PCIE-6363 | PClExpress, 32 AI(16-bit, 2MS/s), 4 A0(2.86MS/s), 48

Model: PCI-6363
Categories:
PClExpress, 32 AI(16-bit, 2MS/s), 4 A0(2.86MS/s), 48
DI0O, multi-function /0 device
The PCle-6363 offers analog /0, digital V0, and four 32-bit counters/timers for
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PCIE-6363 | PClExpress, 32 AI(16-bit, 2MS/s), 4 A0(2.86MS/s), 48

Model: PCI-6363
Categories:
PClExpress, 32 AI(16-bit, 2MS/s), 4 A0(2.86MS/s), 48
DI0O, multi-function /0 device
The PCle-6363 offers analog /0, digital V0, and four 32-bit counters/timers for
PWM, encoder, frequency, event counting, etc. The device utilizes high throughput PCI
Express bus and multi-core optimized drivers and application software provide high performance tables
Present. Onboard NI-STC3 timing and synchronization technology provides advanced timing capabilities, including independent modes
Simulates and digital timing engines and retriggers measurement tasks. The PCle-6363 is suitable for base
This data is recorded for a wide range of applications such as control and test automation. Attached N1-DAQmx zone
Dynamic programs and configuration utilities simplify configuration and measurement
Bus interface: PCI-6363 A bus socket that provides the microcomputer bus to the user through a circuit socket for inserting various function cards.
Communication interface: Used when a microcomputer system communicates digitally directly with other systems.
Main functions:
Data buffering: Match the operating speeds of the host and peripherals, providing buffering to eliminate differences in “timing” or data processing speed between the two.
Error or status detection: The PCI-6363 interface usually contains a status register to store various status information for the CPU to check.
Control and timing: Accept control commands and timing signals from the system bus, and provide control and timing logic to achieve control of the data communication process.
Data format conversion: The PCI-6363 provides data format conversion components to complete data splicing or splitting to ensure the compatibility of information formats between computers and peripherals.
Signal conversion: Converting an analog signal to A digital signal (A/D conversion) so that a computer can process it.
Port selection: Port address decoding device selection allows the CPU to select a specific device for communication when connected to multiple external devices.
Receiving and executing CPU commands: Perform operations based on CPU commands.
Interrupt management: Allows peripherals to notify the CPU by interrupt to realize real-time information exchange between the CPU and peripherals.
Programmable functions: Many I/O interface circuits are programmable, and their mode of operation can be controlled by the program.

 

 

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