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“We combine our extensive experience and profound prowess with operations spanning research, development, design and manufacturing for a wide range of applications as we believe the next major explosion is going to be when genetics and computers come together”.

BLR LABS helps you device semiconductor as your enterprise differentiator and provides the processes, equipment and people—to provide a competitive advantage to our customer.


BLR LABS provides semiconductor factory automation software solutions and consulting services. Our engineering team is dedicated to high-tech automation, with semiconductor automation being a strong focus for our experts.

Semiconductors forms the vital part of current technology trend, Integrated chips being the most important aspect which includes devices like laptops, scanners, and cell-phones.


The IP vendor should verify representative customer configurations using a number of sample SoC designs to verify performance and quality. SoC-level verification inputs are usually provided to IP vendors by their customers. Design performance drift verification is also important.

Design flow tool verification

Involves the testing of any tools used to configure and generate the IP, whether the tool suite is controlled by a graphical user interface (GUI), the command-line or both.

Verification provided

  • Architecture and implementation of the verification environment.
  • Building a thorough verification plan.
  • Building state-of-the-art test benches using HVL (System Verilog - OVM / VMM, Vera, Specman), C, C++, System C, Test Builder, scripting languages like Perl and Tcl.
  • Verification of ARM-based SoCs.
  • Verification IP Development and Integration.
  • Assembly language based verification for processor sub-systems.
  • Test system build and verification management.
  • Design Emulation using Quick turn.
  • Pre-silicon validation through FPGA prototyping.
  • Post-silicon functional validation.


BLR LABS offers a diverse array of flexible service solutions to increase equipment uptime and efficiency, enabling to focus on:

  • Architecture and detailed register specification.
  • System level modeling through C or ESL.
  • Micro-architecture and detailed design plan.
  • HDL implementation in Verilog / VHDL.
  • Supporting silicon bring-up and participating in post-silicon validation.


  • Video compression, Modem and multi-media cores.
  • High-performance Graphics cores.
  • Image processing.
  • Audio compression.