National Instruments SCXI-1104C Data acquisition card module
Specific parameters
Number of channels: 32 differential channels.
Input voltage range: ± 60 VDC.
Filter cut-off frequency: 10 kHz.
Input coupling method: direct current (DC).
Size: 4.54 inches x 10.75 inches.
Connectors: 50 pin male ribbon cable rear connector and 96 pin male DIN C front connector.
Working temperature: 0 ℃ to 50 ℃.
Recommended preheating time: 20 minutes.
Software driver: NI-DAQ version 6.5.1 (or higher), can be used in application development environments such as LabVIEW, BridgeVIEW, Lab Windows/CVI, Visual Basic, etc.
Product Performance
High precision measurement: It can achieve high-precision acquisition and processing of analog signals, provide accurate and reliable measurement results, and meet the needs of various complex measurement tasks.
Multi channel acquisition: 32 differential channels can simultaneously acquire multiple signals, improving the efficiency and comprehensiveness of data acquisition, suitable for application scenarios that require simultaneous monitoring of multiple parameters.
Flexible signal conditioning: Supports multiple types of sensor signals, such as voltage, current, resistance, etc., and can be customized and controlled through software, including setting gain, filter and other parameters to meet different measurement needs.
Real time processing and analysis: Supports real-time processing and analysis of collected digital signals, can quickly respond to various changes and abnormal situations, provide measurement data and analysis results in a timely manner, and facilitate users’ real-time decision-making and control.
High reliability and stability: Using high-quality hardware and software technology, it can operate stably in harsh working environments, with high reliability and stability, reducing the risk of system failures and data loss.
Good compatibility: Compatible with other hardware and software products of National Instruments, it can be easily integrated into a complete data acquisition solution to achieve more complex data acquisition and processing tasks.
















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