NI PCI-7813R

¥5,622.00

Parameters and Specifications:

  • Channel Count: 8 (Analog input channels: 8 differential or 16 single-ended)1.
  • Resolution: 24 bits1.
  • Maximum Sample Rate: 500 ks/s per channel1.
  • Input Voltage Range: ±10V1.
  • Output Voltage Range: ±10V1.
  • Digital I/O Lines: 241.
  • Counter/Timers: 21.
  • Bus Interface: PCI1.
Category:

Description

Parameters and Specifications:

  • Channel Count: 8 (Analog input channels: 8 differential or 16 single-ended)1.
  • Resolution: 24 bits1.
  • Maximum Sample Rate: 500 ks/s per channel1.
  • Input Voltage Range: ±10V1.
  • Output Voltage Range: ±10V1.
  • Digital I/O Lines: 241.
  • Counter/Timers: 21.
  • Bus Interface: PCI1.

Dimensions and Weight:

  • Dimensions: Not specified in the search results.
  • Weight: Not specified in the search results.

Series:

  • NI PCI Series1234.

Features:

  • High-resolution analog I/O: With 24-bit resolution, it provides accurate data acquisition1.
  • Flexible configuration: Supports both differential and single-ended analog input1.
  • Extensive digital I/O: With 24 digital I/O lines, it offers connectivity for various digital devices1.
  • Programmable with LabVIEW FPGA: The Virtex-II FPGA can be programmed using LabVIEW FPGA modules5.
  • Integrated triggers and timing: Supports user-defined triggers, timing, and on-board decision-making with 25 ns resolution5.
  • On-board memory: Comes with 196 KB on-board memory and DMA data read/write for high-speed digital patterns5.
  • Built-in examples: Includes examples for I2C, SPI, S/PDIF, RS232, and other digital communication protocols5.
  • Self-diagnostic system: The relay-based self-diagnostic system continuously monitors the status of the relay hardware and software operations6.

Role:

The NI PCI-7813R is a data acquisition and control module designed for industrial automation and test applications. It provides high-resolution analog I/O, extensive digital I/O, and programmable FPGA capabilities. This module can be used in various applications where accurate data acquisition, control, and signal conditioning are required