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3D-Micromac AG

Chemnitz,  Saxony 
Germany
https://www.3d-micromac.com
  • Booth: 1245

Overview

3D-Micromac AG - Micromachining Excellence 3D-Micromac is the leading specialist in laser micromachining. Our team of experts develop processes, machinery and complete systems at the highest technological level. 3D-Micromac systems and services have been successfully implemented in various high-tech industries worldwide including photovoltaic, semiconductor, glass and display industries, micro diagnostics, and medical technology. Our target is to completely satisfy customer demands even on the most complex projects.


  Products

  • Laser-Based Sample Preparation on Full-Wafer- and Board-Level: microPREP®L

    Our field-proven microPREP® systems accelerate sample preparation for a wide range of failure analysis methods, including TEM, SEM, APT, XRM, and micromechanical testing. The latest development, the microPREP® L, can prepare specimens on bigger samples like 12” wafers or system-level boards. These can even be prepared across multiple areas of the same sample in a single run, without process restarts.

    Free your FIB/SEM for what it does best – speed up your time-to-sample with laser-based sample preparation with microPREP® systems.

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  • Laser Annealing: Selective reference-layer pinning for advanced monolithica

    Magnetic sensors are a key enabling technology for automotive, industrial, consumer and emerging medical/HMI applications. Driven by demand for higher sensitivity, lower power consumption, smaller footprints and greater integration, TMR sensors are gaining relevance.

    Translating this potential into monolithically integrated sensor layouts – from Wheatstone bridges to angle and multi-axis concepts – requires local definition of sensor sensitivity axes at wafer level. Selective laser-based reference-layer pinning provides this capability by combining a selective laser spot with a local magnetic field, allowing defined sensor areas to be pinned in the desired direction – with additional relevance for GMR sensors.

    microVEGA™ xMR is a production-proven platform used in 24/7 high-volume fabs worldwide. It combines localized thermal impact, recipe-based flexibility and on-the-fly processing for cost-efficient production of next-generation TMR/GMR sensor architectures.

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  • Laser Link Trimming: Ensuring fail-safe integrity and long-term robustness

    Laser Link Trimming (LLT) enables permanent hardware configuration for analog, power-management and mixed-signal ICs in automotive, industrial, aerospace and other high-reliability applications. Typical devices include gate drivers, BMS ICs and high-side switches, where LLT supports variant configuration and permanent hardware limits for safety-critical and fail-safe functions.

    Complementing rewritable NVM, Trim-DACs and electrically programmed OTP solutions, LLT creates irreversible, tamper-resistant configurations by modifying predefined metal links – without electrical programming stress or the need for dedicated memory structures.

    microVEGA™ FC enables high-throughput wafer-level LLT on a production-grade platform for semiconductor manufacturing, combining ±200 nm positioning accuracy (3σ), closed-loop process control and on-the-fly processing at up to 400 mm/s for an exceptional balance of speed, precision and process stability.

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