Description
The NI PCI-7813R is a high-performance data acquisition card from National Instruments. Below are its key parameters, specifications, dimensions, weight, series, features, and applications described in English:
Parameters and Specifications:
- Channels: The card provides 8 analog input channels, capable of differential or single-ended input1.
- Resolution: 24-bit resolution for analog inputs1.
- Maximum Sampling Rate: Each channel can sample at up to 500 ks/s1.
- Input/Output Voltage Range: ±10v for both input and output1.
- Bus Interface: PCI1.
- Digital I/O Lines: 60 lines, configurable as input, output, timers, or custom logic2.
- FPGA: Features a Virtex-II 3 million-gate FPGA that can be programmed using LabVIEW FPGA modules23.
Dimensions and Weight:
- Dimensions: Exact dimensions may vary slightly depending on the packaging and accessories. However, a general industrial card size can be expected.
- Weight: Typically, a card like NI PCI-7813R would weigh several hundred grams, but the exact weight is not specified in the references.
Series:
- The NI PCI-7813R belongs to the NI series of data acquisition cards designed for industrial automation and test applications.
Features:
- Flexibility: The card offers configurable digital I/O lines, timers, and custom logic, providing great flexibility in various applications6.
- High-Speed Data Acquisition: With a maximum sampling rate of 500 ks/s per channel, it’s suitable for high-speed data acquisition tasks1.
- Programmable FPGA: The integrated FPGA allows for customization and enhanced performance through LabVIEW FPGA programming23.
- User-Defined Triggering: Features 25 ns resolution for user-defined triggering, timing, and on-board decision-making3.
- Compatibility and Expandability: Can be connected to other NI devices, such as the NI 9151, for analog and digital I/O expansion or signal conditioning3.
Applications:
- The NI PCI-7813R is suitable for a wide range of industrial automation, test, and measurement applications where high-speed data acquisition, digital control, and custom logic are required. It can be integrated into systems for data logging, process control, machine vision, and other precision measurement tasks.
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