The WSDA-101 is a wireless gateway that streams synchronized sensor data to your DAQ systems with up to eight analog output channels (0–3 VDC). It offers ±50 μs synchronization, lossless throughput, and easy USB connectivity for seamless integration with MicroStrain LXRS sensor networks.
The WSDA-101 delivers effortless wireless sensing with the added power of analog output. Designed for fast deployment and seamless integration, it connects MicroStrain sensor networks to your DAQ systems with up to eight analog channels—bringing real-time, synchronized data to your fingertips. Compact and easy to use, the WSDA-101 is the bridge between modern wireless sensing and traditional measurement workflows.
| WSDA-101 Analog Data Sheet | Data Sheets | English |
| Analog Output Base Station User Guide | Manual/Operating manual | English |
| Technical Note - WSDA-101 Analog Output Setup | Manual/Operating manual | English |
Certificates and Approvals
| WSDA-101 Declaration of Conformity (UK) | Declaration of Conformity | English |
| WSDA-101 Declaration of Conformity (EU) | Declaration of Conformity | English |
8 Analog Output Channels
Delivers 0–3 V signals for easy connection to lab and industrial systems.
Easy Integration
Connects directly to PLCs, DAQs, and many other devices that accept analog inputs.
Low-Latency Performance
Provides fast, responsive measurements for real‑time control and monitoring.
LXRS Wireless Compatibility
Supports lossless LXRS communication with analog output disabled.
Simple Setup and Measurement
Works seamlessly with SensorConnect software for quick configuration and data viewing.
Unlock the full potential of your WSDA-101 with MicroStrain wireless nodes. These versatile devices transform traditional wired sensors into flexible wireless networks, supporting inputs like strain, acceleration, temperature, and millivolt signals. With advanced sampling modes—including synchronized, high-speed burst, and low-duty cycle—the nodes deliver precision and efficiency for any application. Check out our wireless nodes to build a complete, scalable sensing solution.
The RF Optimization Guide helps you get the most reliable performance from your wireless sensors by outlining best practices for antenna placement, line-of-sight planning, and environmental considerations. Use this resource to improve signal strength, reduce interference, and ensure dependable data transmission across your deployment.
The 3DM-CV7-GNSS/INS is an ultra-compact, tactical-grade GNSS-aided Inertial Navigation System that packs advanced navigation capabilities into just 15.6 grams and 38x30x10mm. It features onboard dual-frequency GNSS receivers with tightly coupled integration, making it the next evolution in inertial navigation technology for space-constrained platforms.
Tightly coupled integration means the GNSS and inertial sensors work together at the raw measurement level, providing superior performance compared to loosely coupled systems. This approach delivers more accurate navigation, better GNSS outage bridging, and robust performance in challenging environments where GNSS signals may be weak or intermittent.
The 3DM-CV7-GNSS/INS includes onboard dual-frequency GNSS receivers for complete autonomous navigation, while the 3DM-CV7-INS requires external GNSS input. The GNSS/INS version provides an all-in-one solution with tightly coupled integration, eliminating the need for separate GNSS receivers and simplifying system integration.
The system includes onboard dual-frequency GNSS receivers supporting L1/L5 frequencies for enhanced accuracy and robust signal tracking. The integrated GNSS provides autonomous positioning without requiring external receivers, while the tightly coupled architecture ensures optimal sensor fusion performance.
Onboard GNSS receivers provide:
Yes, the tactical-grade IMU with advanced Extended Kalman Filter maintains accurate navigation during GNSS outages. The tightly coupled architecture provides superior GNSS outage bridging compared to loosely coupled systems, ensuring continuous navigation in challenging conditions.
The 3DM-CV7-GNSS/INS is ideal for:
Absolutely. The system features sophisticated orientation algorithms, precise internal time management, and highly adaptable event triggering systems designed for complex navigation applications. Its compact size and tactical-grade performance make it perfect for autonomous robotics requiring reliable navigation.
The tried-and-tested Adaptive Extended Kalman Filter provides sophisticated sensor fusion between the onboard GNSS receivers and tactical-grade IMU. It automatically adapts to changing dynamics, ensures optimal accuracy and stability across diverse operational environments, and provides superior navigation performance.
The system combines tactical-grade inertial sensors, dual-frequency GNSS receivers, tightly coupled integration, and adaptive filtering to maintain accuracy in challenging environments. The comprehensive multi-point calibration over full industrial temperature range ensures consistent performance across operational conditions.
Yes, as part of the MicroStrain by HBK product line, the 3DM-CV7-GNSS/INS is NDAA compliant, making it suitable for U.S. government and critical infrastructure applications requiring secure navigation solutions.
The 3DM-CV7-GNSS/INS sets new benchmarks with its 15.6-gram weight, 38x30x10mm size, tactical-grade performance, onboard dual-frequency GNSS, tightly coupled integration, and ITAR-free classification - delivering capabilities unmatched in such a compact package.