
ACCELERATE YOUR DESIGN, PROCESS PORTING & SILICON
Analog, Mixed-Signal & RF Engineering
Analog & RF Design | Design Optimization | PVT Closure | Technology Migration | Silicon Characterization | Test Optimization

Analog & RF Design | Design Optimization | PVT Closure | Technology Migration | Silicon Characterization | Test Optimization
Circuit architecture, design, simulation, optimization, and implementation support for analog, mixed-signal and RF IC development.
Engage AID for a defined circuit block, subsystem, performance objective, or specialized engineering support.
Improve circuit performance and robustness across process, voltage, temperature, loading, and other operating conditions.
AID supports design-space exploration, multi-objective optimization, corner analysis, and specification closure.
Migrate and re-optimize existing analog and RF IP for new semiconductor processes and technology nodes.
AID supports characterization of the existing design, definition of target performance, redesign, optimization, and verification in the destination technology.
Turn first-silicon measurements into actionable engineering information.
AID supports silicon characterization, simulation-to-measurement correlation, performance analysis, and model refinement to identify and address gaps between expected and measured circuit behavior.
Reduce characterization and production-test effort while maintaining the engineering information and coverage required for product decisions.
AID applies predictive modeling and silicon-data analysis to identify opportunities for more efficient characterization and test strategies.
Develop analog and RF circuits capable of maintaining selected performance characteristics as process, voltage, temperature, loading, and other operating conditions change.
AID has demonstrated adaptive techniques across multiple analog circuit types in simulation, silicon, and hardware.

Improve analog and RF performance across PVT, loading, and operating conditions.
Explore design alternatives and improve performance, power, area, and robustness.
Re-optimize existing circuits for a new process technology or technology node.
Correlate measured silicon with simulation, understand performance variation, and identify opportunities for improvement.
Use predictive engineering techniques to reduce unnecessary measurements and test effort while maintaining required engineering information.
Add specialized analog, mixed-signal, and RF engineering capability when internal resources, schedules, or technical requirements demand it.

Every customer has different priorities.
We apply our proprietary AI-based technologies to improve the characteristics that matter most to your product.

AI is not the product we ask your engineering team to adopt.
Engineering results are.
AID has developed proprietary computational, machine-learning, and predictive-engineering technologies specifically for analog and RF circuits.
Our engineers use these capabilities alongside established semiconductor design methods to explore design spaces, predict circuit behavior, optimize performance, analyze silicon data, and develop adaptive circuits.
This gives AID an additional engineering capability that can complement your existing design organization and development flow.
No new design environment for your engineers to learn. AID applies the technology as part of the engineering engagement.

Start with:
One circuit block.
One specification challenge.
One technology migration.
One silicon-characterization objective.
One test-optimization opportunity.
Together, we define the required inputs, target specifications, success criteria, deliverables, and schedule.
A focused initial engagement allows both teams to establish technical results before expanding the scope.

AID develops proprietary technologies that augment conventional analog and RF engineering.
These capabilities are applied within AID engineering engagements and can also support selected customer technology-development programs.
Rapidly predict circuit specifications across design variables, PVT, loading, and operating conditions.
Explore large design spaces and identify circuit configurations that meet multiple engineering objectives.
Use available circuit information and measurements to improve characterization and test efficiency.
Enable selected analog circuit characteristics to remain more stable as operating conditions change.

Measured silicon results demonstrating the practical application of AID technologies.
Transform static datasheets into interactive information platform.
Explore self-tuning analog and next-generation software-defined analog products and technologies.
Predictive Test Optimization reduces production test measurements without sacrificing coverage.
AID engineering capabilities can support semiconductor development across:
Communications & Connectivity
Data Center & Computing
Automotive
Industrial
Aerospace & Defense
Semiconductor IP & SoC Development

Analog Intelligent Design Inc.
About Analog Intelligent Design Inc. We are A provider of AI-powered analog design services and IP for the semiconductor industry. Founded by analog and AI engineers, we're dedicated to helping customers solve the growing complexity and risk in analog IC design by leveraging the power of artificial intelligence.
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