Get the full Zadar technical pack.
Datasheets, user manuals, firmware images, and 3D CAD models for the entire Zadar sensor line — zPRIME, zPULSE, zSIGNAL, and zPROX. Tell us a bit about your project and we'll send you everything you need to evaluate, integrate, and deploy.
- Datasheets— full electrical, RF, and mechanical specs for every sensor in production.
- User Manuals— installation, operation, and integration guides.
- Firmware Images— current standard builds for supported sensors.
- 3D CAD Models— STEP files for sensors and mounting accessories.
- SDK Access— Zadar Ethernet Sensor SDK with C++/Python and ROS support.
Need a custom evaluation?
Hardware loans, custom radar modes, or co-development engagements — Zadar's sales engineering team can scope an evaluation tailored to your stack.
Talk to SalesAlready a developer?
The Zadar Ethernet Sensor SDK is open source under MIT — UDP transport, protobuf decoding, HTTP API, and ROS workspaces. Public on GitHub.
Open the SDK on GitHubFrequently Asked Questions
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Of course! Our component pages have videos of our detection performance and features. Contact us and we'd be happy to show you more.
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Our sensors are designed to work with zVUE as part of our unified Full-stack SDIR platform. This tight integration involving context-aware feedback from zVUE is what allows our sensors to achieve their performance. Contact us and we can work with you based on your specific integration needs.
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Our zVUE Radar Operating System works with all 4D radar sensors in Partial SDIR mode. Its connected radar fusion, data conditioning, and radar preperception libraries immediately boost system performance on any platform. The full performance of radar can only be achieved by combining zVUE with Zadar radar sensors in Full-Stack SDIR mode.
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Our solid-state radar platforms are automotive-grade and are designed for use in harsh, low-maintenance environments.
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No, commercial 60 and 77GHz radars have been used safely for a long time. Our radar technology is not like military or marine radar. It is a low-power, surface-reflecting sensing technology and manufacturers follow strict transmit power limits. Our excellent detection range comes from highly sensitive detectors and SDIR system optimization, not from high transmit power.
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Susceptibility to radar-radar interference is one of the core problems that SDIR solves. In our architecture, improving detection performance and increasing interference resistance go hand-in-hand. SDIR integrates several in-house innovations including RFTDMA modulation, action potential-based detection, and AI denoising that make interference a non-issue.