I design and build automation systems that solve complex physical and digital bottlenecks. With an M.S. in Mechanical Engineering, I take projects from blank-page concept to functional build – bridging off-the-shelf equipment and custom hardware/software to meet specialized requirements.
Core capabilities: 3D modeling, prototyping, robotics, automation, and Python programming.
Need a prototype, mechanical design, or custom programming? I build systems that work – reliably, efficiently, and on spec.
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Role: Identify automation opportunities and maximize return on investment by evaluating lab processes, determining project feasibility, and defining system requirements.
Designed custom in-house solutions via rapid prototyping, custom circuitry, and bespoke software, while collaborating with vendors to integrate commercial equipment (e.g., Waters Andrew+, Integra Assist Plus).
Commissioned multiple laboratory automation systems, successfully reducing operational expenses and manual error rates while increasing overall quality.
Role: Design and develop a robust testbed for proof of concept and for conducting experiments with scaled up designs.
Developed a robust testbed and Python scripts with Raspberry Pi and Pi-Plates. Provided evidence for proof of concept and proposed several design solutions. Conducted experiments to solve for an optimal final design.
Enabled rapid prototyping and fast design iterations.
Role: Design, develop and commission a feedback temperature control system for a 120 kW induction heating system to be used in a canine clinical trial.
Developed a control system based on NI compact RIO and LabVIEW, integrating fiber optic temperature sensors, recirculating chiller, and an induction power supply. Tested the control system on a 1.2 kW induction heating system.
Commissioned the control system on a 120 kW power supply of an induction coil using a PID controller at Johns Hopkins School of Medicine.
Role: Design, develop, and commission a process monitoring system to monitor thermoforming parameters at a local factory to reduce production defects.
Developed an acquisition program with NI LabVIEW to acquire thermoforming parameters – temperature, vacuum, pressure, and displacement. Designed circuits to ensure compatibility between hardware and software.
Commissioned process monitoring system capable of simultaneous data acquisition from eight different sensors to be analyzed and used as inputs for control parameters.
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Competent in developing high-speed, timed application for National Instruments FPGA targets. Focus includes single-cycle timed loops, fixed-point math, DMA FIFO data transfer, and hardware-software integration.
Proficient in advanced graphical programming skills including complex data structures (clusters and arrays), design patterns such as state machines, file I/O operations, and error handling.
Proficient in National Instrument LabVIEW graphical programming environment covering basic dataflow programming, UI development, and modular subVI creations.
Proficient is 3D mechanical design, parametric modeling, assembly creation, and 2D engineering drawing generation. This credential demonstrates a strong foundation in core CAD principles, design intent, and mechanical drafting standards.
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Thesis: Intraoperative Radiofrequency Heating Device to Treat Infected Implants
Minor: Mechatronics
We will review the reports from both freelancer and employer to give the best decision. It will take 3-5 business days for reviewing after receiving two reports.