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Semiconductor Chip Design

Overview

We focus on designing and developing indigenous semiconductor integrated circuits (ICs) and System-on-Chip (SoC) solutions, with specialized teams dedicated to Digital, Analog, and Mixed-Signal IC Design. The facility emphasizes the indigenization of critical semiconductor components and advanced chip technologies across strategic sectors.

The core objective is to reduce the country’s dependence on imported semiconductor technologies by enabling localized, reliable, and cost-effective chip design capabilities, fostering innovation, strengthening the national semiconductor ecosystem, and contributing toward technological self-reliance, high-value exports, and sustainable economic growth.

PCB Engineering

Focus Areas

System Architecture Design

SoC & ASIC Architecture
Design Partitioning
Feasibility & Trade-off Analysis

Digital IC Design

RTL Design & Synthesis
FPGA Prototyping
Timing Closure

Design Verification

Functional & Formal Verification
UVM Testbench Development
Coverage-Driven Validation

Analog & Mixed-Signal Design

AMS Circuit Design
Schematic & Simulation
Pre-Silicon Characterization

Physical Design

Floorplanning & Place & Route
DRC/LVS Sign-off
Tape-out Support

Hardware Design

PCB & Schematic Design
Embedded Hardware Development
Prototype & Bring-up

Software Design

Firmware & Embedded Software
Device Drivers & BSP
RTOS Integration

System Architecture Design

Our experienced team collaborates closely with clients to define the chip architecture based on essential parameters such as performance goals, power limitations, and application requirements. This specification serves as the cornerstone for subsequent RTL design, verification, and physical implementation stages.

We carefully refine and optimize the architecture to achieve the desired balance of performance, power efficiency, and functionality. By evaluating design trade-offs and incorporating the latest industry advancements, we develop innovative and future-ready architectures.

System Architecture Design
Digital IC Design

Digital IC Design

We provide end-to-end chip design services covering all critical stages of the development cycle. Our expertise includes RTL coding, integration, and verification, enabling seamless execution and ensuring high-quality, reliable chip development.

By partnering with IRADA for RTL design, integration, and verification, you gain access to a highly skilled team dedicated to delivering engineering excellence. We emphasize transparent communication and close collaboration throughout the project, ensuring your requirements and insights are effectively integrated into the final design solution

Design Verification

Our expertise spans advanced verification methodologies and implementation flows, enabling us to ensure design accuracy, functionality, and manufacturability throughout the development lifecycle. We leverage industry-standard practices and tools to streamline development, reduce design iterations, and accelerate time-to-market while maintaining the highest quality standards.

Our capabilities include:
  • DFT (Design for Testability) implementation and optimization
  • Logic synthesis and design optimization
  • UVM-based verification environments
  • Functional and formal verification
  • Coverage analysis and closure
  • Debugging and issue resolution
Design Verification
Analog & Mixed-Signal Design

Analog & Mixed-Signal (AMS) Design

We provide specialized analog and mixed-signal design services focused on developing circuits that seamlessly interface digital systems with real-world signals.

Our engineering team has extensive experience in analog circuit design and mixed-signal integration, ensuring optimal interaction between analog and digital domains while maintaining signal integrity and system stability. Through detailed noise and signal analysis, we identify and mitigate performance limitations to achieve accurate, robust, and high-quality designs.

Physical Design

We provide comprehensive Physical Design services that transform logical circuit designs into optimized, manufacturable silicon layouts. Our expertise covers the complete physical implementation flow, ensuring designs meet stringent performance, power, area, and reliability requirements while remaining fully compliant with manufacturing standards.

From floorplanning and placement optimization to clock tree synthesis and routing, we carefully manage every stage of the design flow to achieve timing closure, signal integrity, and optimal power distribution across the chip.

Our capabilities include:
  • Floorplanning and layout optimization
  • Clock Tree Synthesis (CTS)
  • Routing and interconnect optimization
  • DRC/LVS verification and sign-off checks
Physical Design
Hardware Design

Hardware Design

We provide advanced hardware design services focused on developing robust hardware platforms and comprehensive validation systems for modern semiconductor and embedded applications. Our expertise enables the seamless transition from design concepts to fully functional and validated hardware solutions.

Our engineering team specializes in FPGA prototyping, PCB design, and system-level validation to ensure optimal functionality, reliability, and performance. By leveraging industry-standard tools and proven development methodologies, we create scalable and efficient hardware platforms that support rapid prototyping, testing, and product development.

Software Design

We provide specialized software development services that enable and enhance hardware functionality across a wide range of embedded and intelligent systems. Our expertise focuses on building reliable, efficient, and scalable software solutions that ensure seamless interaction between hardware and software components.

Our engineering team is skilled in developing embedded systems, device drivers, and integration layers that bridge the gap between hardware architecture and application-level software. We ensure smooth hardware-software integration, optimizing system performance, stability, and responsiveness for real-world applications.

Software Design

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