Test Automation

The company has significant experience in production test automation and RF testing. With numerous functional (bed of nails) and final testers built from our experts we have created efficient and cost effective production solutions for telecommunications and commercial product testing.

Furthermore our testing experience had expanded to semiconductor testing for prototype RF chip characterizations. Characterizations included phase noise, EVM, IP3 tests over voltage and temperature range.

Edge Processing

Edge Processing and Hardware Acceleration is a core part of our technical offering, focused on achieving speed, low latency, and power efficiency in critical systems.

Algorithm Optimizations: We understand how algorithms work and the key compromises required to achieve lower memory or processing speed performance. Using our long expertise we can tailored algorithms to work on microcontrollers. This could require design iterations between the master algorithm and the final implementation. Our expertise can help to expedite this process and perform key decisions early.

Hardware Acceleration, FPGAs (Field-Programmable Gate Arrays). FPGAs are semiconductor devices that can be configured by the customer after manufacturing, allowing for custom, highly parallel logic circuits.

Performance Benefits: Utilizing FPGAs delivers:

  • Highly Parallel Processing: The custom hardware architecture allows multiple data streams or calculations to occur simultaneously.
  • Low-Latency Data Processing: The direct, custom hardware pipeline avoids the overhead of traditional CPU-based systems, leading to minimal delays.

Mission-Critical Application: In the Space Sector, this acceleration provides the required speed for real-time sensing and control while simultaneously minimizing power consumption, which is a critical factor for long-duration missions and battery-dependent platforms.

Clock Jitter seen through DPO

Sensing and Mechatronics

The company has significant experience with mechatronics systems, and sensing. We have worked with a range of different sensors, like accelerometers, magnetometers, angular sensors, IMUs, hydrophones and so on. We have integrated these sensors in different applications like drone controllers and dispensers. We perform Real-time data acquisition and analysis directly at the source, minimizing latency.

Precision Mechatronics and Motor Control We integrate high-precision hardware and software for robust electromechanical systems. Our expertise includes precision motor control for articulation and positioning, consistently achieving millimeter-range accuracy for sophisticated industrial automation platforms. Our designs have maintained operational performance for years, deployed in quantities of thousands.

Sensing

We bring intelligence directly to the data source. We specialize in interfacing, real-time data acquisition and analysis from specialized sensors (e.g., Hydrophones, magnetic sensors). Processing data locally on low-power devices drastically reduces latency and minimizes bandwidth—essential for efficient systems.

Embedded System Design

Dedicated, high-reliability computational systems for specific, time-critical tasks.

AI Zerocaliber is a specialized engineering firm that delivers turn-key, high-reliability embedded intelligence. We design, develop, and deliver custom hardware and safety-critical firmware, ensuring predictable, robust, and high-performance operation in the world’s most demanding environments—from industrial automation to the challenges of space.

Holistic Product Lifecycle View

From initial concept and R&D to final production testing and long-term component obsolescence planning—we cover the entire journey.

Hardware development

Dedicated systems based on Microcontrollers and FPGAs

  • Advanced PCB Design: Specializing in complex, multi-layered HDI boards.
  • Rigorous Validation: Signal and Power Integrity Simulations to guarantee flawless performance before manufacturing

Firmware development

We deliver high-quality firmware by utilizing modern development methods based on:

  • Multiple Microcontrollers Heritage
  • Barebones or RTOS based systems
  • Structural and Layered Programming for Design Re-Use
  • Customer Training and Code Delivery

Quality & Assurance

We deliver high-quality firmware by utilizing modern development methods based on:

  • TDD (Test-Driven Development): Ensuring robust and reliable code from the start.
  • Safety Critical Systems: Ensuring predictable execution and compliance for mission-critical tasks.
  • Mock Tools for Testing