Introduction to the DT-X3348 Compact 8-Channel Vibration and Sound Signal Acquisition Device

时间:2025-10-14

The DT-X3348 is a compact 8-channel vibration and sound signal acquisition device that utilizes dual AD technology, providing a high dynamic range of up to 160dB and adjustable sampling rates up to 500kS/s. Its independent design makes it particularly suitable for applications requiring few channels and outdoor testing. With an IP65-rated structure, it can operate stably even in harsh environments.

The DT-X3348 is a versatile and reliable signal acquisition device designed for various industrial applications. Its compact size and 8-channel capability make it ideal for scenarios where space is limited or where only a few channels are needed. The device's dual AD technology ensures high-quality signal acquisition with a dynamic range of up to 160dB, allowing for accurate measurement and analysis of vibration and sound signals.

One of the key features of the DT-X3348 is its adjustable sampling rates, which can be set as high as 500kS/s. This flexibility enables users to customize the device's performance based on their specific testing requirements. Whether capturing high-frequency signals or conducting detailed analysis, the DT-X3348 offers the versatility needed to meet diverse testing needs.

The independent design of the DT-X3348 further enhances its usability, particularly for outdoor testing scenarios. Its IP65-rated structure provides protection against dust and water ingress, ensuring reliable operation even in challenging environments. This durability makes the device well-suited for field testing applications where robustness and stability are essential.

In conclusion, the DT-X3348 is a powerful and adaptable signal acquisition device that offers high performance in a compact and rugged design. With its dual AD technology, adjustable sampling rates, and IP65-rated structure, it is a reliable choice for capturing and analyzing vibration and sound signals in industrial settings, outdoor environments, and beyond.