Electronics · Embedded firmware · Robotics

Engineering intelligence
into real systems.

I’m Aswin Santhanam, an electronics and embedded systems engineer working across circuit and PCB design, automotive control firmware, maritime communications, and sensor-integrated robotics.

Explore my work
Circuit & PCB designEmbedded C / C++Model-based developmentSIL / HIL validationRF & sensor integration

Selected projects

Research / Prototypes / Robotics

01 / MASTER’S THESIS · TUHH / DLR

Heterogeneous Wireless Communication Architecture in a Modular Research Vessel

Investigated wireless communication beyond Wi-Fi for harsh maritime environments, combining LoRa, Bluetooth Low Energy, and near-field magnetic induction (NFMI).

LoRaBLENFMIRF prototyping
Methods & contribution

Designed a custom NFMI hardware prototype, simulated communication metrics and indoor propagation models, and conducted transmission experiments in a steel enclosure. Relative-attenuation measurements supported evaluating NFMI as an alternative for the tested environment.

02 / MASTER’S PROJECT · TUHH / DLR

Integrated Control, Data Acquisition and Transmission for Autonomous Ships

Integrated control, sensing, and communication into a prototype research-vessel platform for real-time data acquisition and distributed system monitoring.

CANopenEthernetModbus TCP
Engineering contribution

Designed and synchronized multiple communication protocols and bus systems within a common architecture, supporting real-time control and data transmission with potential applications in smart fleet management.

03 / SPP2305 SMART SPHERES · 2023–2024
SPP Smart Ball prototype held in a hand, showing its spherical enclosure, USB connector, and illuminated red indicator
Sensor-integrated Smart Ball prototype.

SPP Ball — sensing motion in 3D

Worked in a four-person team representing TU Hamburg at the SPP Smart Spheres competition in Dresden, developing a ball for autonomous localization, 3D trajectory recording, and wireless data transmission.

Sensor integrationLocalizationWireless telemetry
04 / HUMANITARIAN TECHNOLOGY LABS · 2016

SWACHEK — autonomous room-cleaning robot

Developed an autonomous room-cleaning robot as a student researcher at Amrita’s HuT Labs. The team earned second place in the junior category at OMRG 2016, held at Nanyang Technological University, Singapore.

The project brought together hands-on robotics and embedded systems development for a practical household task.

Autonomous roboticsOMRG 20162nd place
Press coverage

The Hans India: Amrita students’ robotics awards in Singapore ↗

05 / BACHELOR’S THESIS · ICCS 2019

Low-Power AI Processor for Autonomous Mobile Robots

Co-designed a processor architecture with 64 parallel processing elements for energy-efficient computation in autonomous mobile robots, using VHDL and FPGA design methods.

VHDLFPGAParallel processing
Publication

“A Low Power AI Processor for Autonomous Mobile Robots,” 2019 International Conference on Intelligent Computing and Control Systems (ICCS), May 2019.

06 / ONGOING DEVELOPMENT · AUGUST 2026–PRESENT

FreeRTOS on STM32

Developing real-time applications using task creation, priority scheduling, and inter-task communication, with task-level debugging and timing analysis.

STM32FreeRTOSReal-time firmware

Electronics, circuits & PCB design

Simulation / Layout / Prototyping

Hands-on electronics development spanning circuit simulation, PCB layout, and physical prototypes, connecting board-level design with embedded systems and wireless communication.

01 / CIRCUIT & PCB DESIGN
3D PCB design showing a 12–24 V input terminal, inductor, capacitors, and connectors labelled 5 V and 3.3 V
PCB design with a 12–24 V input and connections labelled 5 V and 3.3 V.

From circuit to board

Circuit-level design, simulation, and debugging using NGSpice, LTSpice, and QUCS, alongside PCB design with KiCad and LibrePCB. Board-level work brings component placement, routing, and hardware interfaces together.

Circuit simulationPCB layoutHardware debugging
02 / NFMI HARDWARE PROTOTYPE
NFMI bench prototype with two wound copper coils connected to separate breadboard circuits
Coil-based near-field magnetic induction prototype on the bench.

Exploring magnetic communication

Designed a custom near-field magnetic induction (NFMI) hardware prototype for the master’s thesis on wireless communication in a modular research vessel. The work connected circuit prototyping with transmission experiments in a steel enclosure.

The bench setup shows the wound coils and breadboard circuits used to explore the communication approach.

NFMICoil-based circuitsExperimental validation
Research context

Evaluated NFMI alongside LoRa and BLE for harsh maritime environments, using communication modelling and relative-attenuation measurements. View the master’s thesis project.

Professional experience

Industry & applied research

Apr 2026–present
Remote

Electronic Engineer / AI Trainer · Micro1

Circuit-level design, simulation, and debugging using NGSpice, LTSpice, QUCS, and KiCad/LibrePCB.

Nov 2023–Mar 2026
Hamburg, Germany

Working Student, Maritime Energy Systems · DLR

Integrated embedded platforms for sensor acquisition and distributed monitoring; developed wireless communication prototypes and a motor test bench. Completed the master’s project and thesis in maritime embedded systems.

Dec 2022–Aug 2023
Hamburg, Germany

Working Student, Model Based System Design · Bertrandt

Developed SysML models in Cameo Systems Modeler for aircraft architectures and requirements-driven systems engineering.

Jan 2019–Aug 2022
Coimbatore, India

Software / Firmware Engineer → Senior Software Engineer · Bosch

Owned ApbMi, CDP, and ETRS functions across SGM vehicle programs, with responsibilities from requirements through implementation, testing, and release. Developed automotive control software using ASCET and Embedded C within an AUTOSAR-based architecture; performed SIL/HIL validation with Labcar and coordinated supplier and international testing activities.

Recognition at Bosch

Ownership & software quality

Robert Bosch · March 2022

Quality Champ

Recognized for coordinating embedded firmware releases with third-party suppliers and aligning supplier, Bosch, and customer requirements.

Robert Bosch · Early-career recognition

Bright Beginning

Recognized for rapidly taking ownership of three automotive control functions and developing capability across requirements, implementation, and testing.

About me

Curiosity built
into a career.

From a school science-fair hydraulic power plant to automotive firmware and maritime research, I’ve learned by building systems and understanding how they work.

At Amrita’s Humanitarian Technology Labs, I developed a lasting interest in robotics and embedded systems. Bosch gave me responsibility for safety-critical automotive functions; my master’s at TU Hamburg extended that foundation into integrated circuits and wireless communications.

My long-term goal is to design smart robotics and embedded systems that benefit people. I bring circuit and PCB design, hands-on prototyping, disciplined validation, and experience connecting teams across hardware, software, and testing.

M.Sc. Microelectronics and Microsystems
Technical University of Hamburg · November 2025
Minor: Embedded Systems

B.Tech. Electronics and Communications Engineering
Amrita Vishwa Vidyapeetham, Kollam · December 2018

Technical expertise

Tools & methods

Firmware & automotive

Embedded C / C++ · Python
FreeRTOS · Bare-metal systems
ASCET · MATLAB / Simulink
AUTOSAR · ASPICE · DOORS
SIL / HIL · Labcar · CANoe

Hardware & communications

STM32 · ESP32 · Raspberry Pi
CAN / CAN-FD / CANopen
Ethernet · Modbus TCP · Mavlink
SPI · I²C · UART
LoRa · BLE · NFMI

Electronics & verification

Circuit design · PCB layout
KiCad · LibrePCB · Cadence
LTSpice · NGSpice · QUCS
VHDL / Verilog · FPGA
JTAG · Oscilloscopes · Logic analyzers
Unit & component testing
Hardware–software root-cause analysis

Interested in electronics, circuit and PCB design, embedded systems, and RF communications.

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