
"Innovative Senior Hardware Engineer with 10+ years of experience leading complex digital and analog design projects for [Industry, e.g., IoT/Aerospace]. Proven ability to deliver cutting-edge hardware solutions, reducing development cycles by 20% and boosting product reliability through expertise in FPGA, high-speed interfaces (USB, DDR), and cross-functional team leadership. Seeking to leverage deep technical skills to drive next-generation product development at Rapidise.in."
Board Redesign of Elevator:
Requirement analysis, BOM optimization, redesigning the board with the new IC FT5000 and related circuit implementation, performing schematic capture, and partnering with the CAD resources on the PCB layout, board bring-up, and documentation
Marell Project:
Requirement Analysis., Schematic Analysis., Component selection, creating BOM optimisation., Design optimisation., Documentation.
Sierra Forest-AP:
The purpose of the Sierra Forest architecture design is to achieve ultra-high core counts for greater compute density that would benefit cloud and HPC server applications, requirement analysis, and efficiency calculation for all the FIVRS in post-silicon validation, CPS tuning, and trims test
Prismax:
The Prismax system is designed to give healthcare professionals more confidence in the delivery of continuous renal replacement therapy (CRRT) and therapeutic plasma exchange (TPE) therapies, requirement analysis, component selection, creating BOM, optimization, and documentation
ABS (Anti-lock Braking System):
ABS prevents wheel locking during braking by reducing the wheel brake pressure, enables steerability of the car, requires analysis, prepares a block diagram, selects components, creates a BOM, optimizes, performs schematic capture, and partners with the CAD resources on the PCB layout, board bring-up, system-level debugging, and documentation
ESP: Electronic Braking System increases driving stability actively in all driving situations, vehicle stabilization by individual braking and engine management control, requirement analysis, preparation of block diagram, component selection, creating BOM, and optimization, performing schematic capture, and partnering with the CAD resources on the PCB layout, board bring-up, and system-level debugging, documentation
I Booster: The booster is a vacuum-independent, electromechanical brake booster that meets the demands of a modern braking system, requirement analysis, preparation of a block diagram, component selection, creating a BOM, and optimization, performing schematic capture, and partnering with the CAD resources on the PCB layout, board bring-up, and system-level debugging, documentation
IPB: IPB is an electronic control unit for braking (ESP/ABS/i-Booster/IPB) required to be validated against the EMC requirements, requirement analysis, preparation of block diagram, component selection, creating BOM, and optimization, performing schematic capture, and partnering with the CAD resources on the PCB layout, board bring-up, and system-level debugging, and documentation. Static watt-hour meter, in this project we present hardware architecture that measures and registers active energy (watt-hour) used by the consumers, understanding the design, board bring-up, debugging, and documentation
Tri Vector Meter: In this project, we present hardware architecture that measures and registers the power and energy of active, reactive, and apparent in line, requirement analysis, preparation of block diagram, component selection, creating BOM, and optimization Performing schematic capture and partnering with the CAD resources on the PCB layout. Giving inputs to perform SI, PI, thermal analysis, and decoupling analysis. Documentation.