Description
The NI SCXI-1349 is a high-performance data acquisition device specifically designed for the NI SCXI platform. Below is a breakdown of its parameters, specifications, dimensions, weight, series, features, and functions in English:
Parameters and Specifications:
Analog Input: It offers 32 channels for analog input.
Analog Output: It has 4 channels for analog output.
Digital I/O: It provides 8 channels of digital I/O.
Maximum Sampling Rate: The device can achieve a maximum sampling rate of 1 ms/s.
Resolution: It has a resolution of 16 bits.
Communication Interface: The SCXI-1349 utilizes a USB communication interface.
Dimensions and Weight:
Dimensions: According to some sources, the dimensions of the NI SCXI-1349 are approximately 9.5″ x 5.5″ x 2.0″ (length x width x height). However, another source indicates a different dimension of 7.2 x 6.8 x 1.2 inches. It’s always advisable to refer to the official specifications for the most accurate dimensions.
Weight: The weight is specified as 1.5 pounds or 2KG. It’s important to note that these values may vary depending on the specific configuration or accessories included.
Series:
The NI SCXI-1349 belongs to the SCXI series of data acquisition modules and accessories offered by National Instruments.
Features:
High-Performance Acquisition: The SCXI-1349 is designed for high-speed and high-resolution data acquisition, suitable for various measurement and control applications.
Multi-Channel Capability: With 32 analog input channels, it can handle multiple signals simultaneously, enhancing measurement efficiency.
Versatile Connectivity: The USB communication interface allows for easy integration into various systems and networks.
Modular Design: The SCXI-1349 can be easily integrated with other SCXI modules, providing flexibility and scalability.
Functions and Applications:
Data Acquisition: The SCXI-1349 is used to acquire analog and digital signals from various sensors and transducers.
Signal Conditioning: It may also include signal conditioning circuitry to convert, amplify, or filter the acquired signals.
System Integration: The device can be seamlessly integrated into larger measurement and automation systems, such as those used in industrial control, research and development, or test and measurement applications.
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