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Probe Card


Cost Effective Electrical Connections For Advanced ICs

NanoNexus manufacture electrical connectors for miniature device to comunicate with larger systems. We enable higher density device and lower cost with higher performance. IC devsities continue to increase following Moore'saw to reduce fabrication costs by placing more parts on each wafer built. At the same time ICs have increased operating frequency to provide faster operation and data bandwidthis. These two trends are key to providing the end cunsumer with faster, lowe cost products which consume less power.



Advanced Probe Cards

NanoNexus Advanced probe card products make use of standard components from our self assembled MEMS technology. The geometry of individure contactors and placement of these contactors are determined by a planar photolithoragphy process similar to that used to fabricate integrated circuits. The result is precision allowing fine pitch and high parallelism without the high cost associated with micron level mechanical assembly.

For more information, www.nanonexus.com

ConventorWare
A comprehensive, integrated toolset for designing MEMS and micro-fluidic systems, evaluating their performance and optimizing them for manufacturability
 Key to CoventorWare¡¯s value is the high-level of integration among the modules. This frees users from the burden of manually transferring design data among multiple, stand-alone tools. CoventorWare also includes a complete set of MEMS design tutorials and has an easy-to-use interface making it very easy to get started.. With CoventorWare, you¡¯ll spend more time thinking about your design, not about how to use your software. CoventorWare is comprised of four major modules that can be used individually to complement an existing design flow, or jointly to provide a complete MEMS design flow:

The only simulation tool that quickly evaluates the behavior of MEMS devices and surrounding electronics within a schematic-based system-level modeling environment
With this one tool, you can create layout masks, define the fabrication process, automatically generate and visualize 3D solid models for input into field solvers
Analyze, understand and verify any MEMS or microfluidic design using these best-in-class 3D field solvers optimized for MEMS-specific coupled physics
Create complex linear and non-linear reduced-order MEMS models that are compatible with standard IC simulators

For more information, www.coventor.com