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01Profile 02Summary 03Education 04Projects 05CERTIFICATIONS 05Skills 06Experience 07Contact
Profile

Ameen
Chougle.

Computer Engineering student building reliable systems across hardware and software boundaries — from embedded C on STM32 to digital signal processing on Arm platforms.

Plano, Texas ameenchougle@gmail.com LinkedIn
Ameen Chougle
PHOTO
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Summary

Professional Summary

// design intent

Strong foundation in software development, embedded systems, and problem-solving — programming in C, C++, and Java to develop reliable systems across hardware and software boundaries. Hands-on with microcontrollers, Embedded C, debugging, and system-level testing, backed by a solid grasp of data structures, algorithms, and performance trade-offs. Collaborative, detail-oriented, and motivated to contribute to technically rigorous engineering teams building scalable, efficient systems.

Education

Academic Record

Institution University of Texas at Dallas
Degree Bachelor of Science, Computer Engineering — GPA 3.81
Graduation May 2027
Coursework Digital Circuits · Digital Systems · Signals and Systems · Electrical Network Analysis · Embedded Systems · Computer Architecture · Electronic Circuits · Electronic Devices
Projects

Component Reference

U1

IEEE Robotics — Electrical Team Member

AUG 2025 — CURRENT
  • Programmed an STM32F411CEU6 microcontroller in Embedded C to control sensors, actuators, and peripheral interfaces.
  • Developed firmware for time-of-flight sensors, standard servos, and analog servos with real-time control and signal handling.
  • Performed soldering, hardware bring-up, and debugging to validate electrical and software operation.
  • Contributed to an accessory PCB, coordinating hardware requirements with embedded software needs.
See more →
U2

Optimize Drive — To Be Patented

JUN 2025 — CURRENT
  • Designed and prototyped an embedded system integrating microcontrollers and sensors for reliable data acquisition.
  • Implemented ADC-based data collection and processing logic in Embedded C, validating timing, accuracy, and robustness.
  • Debugged hardware–software interactions and iteratively improved system performance through structured testing.
  • Documented system architecture, software behavior, and testing results for design reviews.
U3

Dallas Formula Racing SAE

JAN 2026 — CURRENT
  • Assigned to the Data Acquisition subteam and tasked with designing a linear potentiometer sensor for the car's suspension system, to measure suspension travel for the car's data acquisition pipeline.
  • Worked from the team's existing suspension sensor signal-chain design — an anti-aliasing filter and FIR digital filter running on an STM32, sampling through a sigma-delta ADC and outputting over CAN — to define the sensor's electrical requirements.
  • Since the car's overall design was largely finalized for the season, full integration wasn't feasible this cycle, so the sensor was scoped for next year's chassis instead.
  • Implementation is planned for next year's car and hasn't been carried out yet, making this year's contribution primarily design and specification work.
Certifications

Credentials

Digital Signal Processing Certification

ARM Technologies
JAN 2026
  • Implemented FIR, IIR, and FFT-based DSP algorithms on Arm-based platforms for real-time processing.
  • Analyzed sampling, reconstruction, aliasing, and frequency-domain behavior mathematically and experimentally.
  • Evaluated latency, noise sensitivity, and power efficiency trade-offs to support system-level decisions.
Technical Skills

Toolchain

CategoryParts
Programming / Software
C · Embedded C · Java · Low-level firmware development · Debugging & testing
Embedded & Systems
STM32 microcontrollers · Peripheral interfacing (ADC, sensors, actuators) · Real-time control logic · Hardware–software integration
Tools & Technologies
Arm-based microcontrollers · KiCad (schematics, PCB design) · Fusion 360 (mechanical / system modeling) · LTSpice (circuit simulation) · Qucs-s (circuit simulation)
Experience

Experience

Handshake AI

AI Trainer
JUN 2026 - JUL 2026
  • Designed and built analog circuit simulations in LTSpice and Qucs-S, ranging from basic passive networks to more complex active circuits.
  • Executed simulation runs to verify circuit behavior against expected outcomes, checking for correctness before tasks were submitted or finalized.

My Tutoring Spot

Lead Tutor
JUL 2025 — CURRENT
  • Explained technical and mathematical concepts clearly, strengthening communication skills essential for collaborative engineering teams.
  • Structured problem-solving approaches and validated solutions, reinforcing analytical rigor and attention to detail.
Contact

Let's build something reliable.

Open to embedded software, firmware, and hardware-adjacent engineering roles. Reach out directly or connect on LinkedIn.