SCXI-1141

¥3,206.00

‌Parameters‌:

‌Channel Count‌: 4 channels (or 8 channels, depending on the configuration)‌
‌Input Type‌: Single-ended or differential‌
‌Input Range‌: ±10 V‌
‌Resolution‌: 16 bits‌
‌Sampling Rate‌: Up to 100 kHz (or 333 kS/s at any gain)‌
‌Cutoff Frequency‌: Programmable, ranging from 0.1 Hz to 10 kHz (or 10 Hz to 25 kHz)‌

‌Specifications‌:

‌Power Supply‌: 24 VDC‌
‌Power Consumption‌: 5 W‌
‌Operating Temperature‌: -20°C to 65°C‌
‌Protection Level‌: IP66‌

Category:

Description

‌Parameters‌:

‌Channel Count‌: 4 channels (or 8 channels, depending on the configuration)‌
‌Input Type‌: Single-ended or differential‌
‌Input Range‌: ±10 V‌
‌Resolution‌: 16 bits‌
‌Sampling Rate‌: Up to 100 kHz (or 333 kS/s at any gain)‌
‌Cutoff Frequency‌: Programmable, ranging from 0.1 Hz to 10 kHz (or 10 Hz to 25 kHz)‌

‌Specifications‌:

‌Power Supply‌: 24 VDC‌
‌Power Consumption‌: 5 W‌
‌Operating Temperature‌: -20°C to 65°C‌
‌Protection Level‌: IP66‌

SCXI-1141

SCXI-1141

SCXI-1141

‌Dimensions and Weight‌:

‌Dimensions‌: 146 mm x 89 mm x 30 mm‌
‌Weight‌: 0.5 kg‌

‌Series‌:

The NI SCXI-1141 belongs to the NI SCXI module series.‌

‌Features‌:

‌High Accuracy‌: The module adopts high-precision components to ensure the accuracy of measurement data.‌
‌High Reliability‌: The module is designed to be sturdy and durable, suitable for use in harsh environments.‌
‌Ease of Use‌: The module is easy to install and configure.‌
‌Programmable Filters‌: The SCXI-1141 features eight-order programmable filters with a cutoff frequency range of 10 Hz to 25 kHz.‌
‌Combination Filter Technology‌: It combines analog filters and switched-capacitor filters, providing 10,000 discrete, software-programmable cutoff frequencies.‌

‌Applications‌:

The NI SCXI-1141 is a versatile tool for data acquisition and control applications, integrating programmable filters, high-speed data transmission, modular design, and ease of programming and control. It is suitable for various industrial, research, and educational applications where precise and reliable signal filtering is required.‌