I'm a junior at Northwestern studying Electrical Engineering. I work
mostly with FPGAs, microcontrollers, and the circuits around them.
Outside of work, I like to beekeep, bike, and hike in nature!
You are reading this off the vape. The full site,
with photos, is at jakackioscar.github.io.
This site also runs on a vape
I found a microcontroller (PY32F030) inside a disposable vape, so I
designed a breakout board around the same chip and got it serving a
copy of this page. It has 32 KB of flash, 4 KB of RAM, and no network
hardware. The traffic goes through the chip's SWD port.
See it running, or
read how it works in
Projects.
Silicon/RF Intern, Stealth startup
San Diego, Jun 2026 - Sept 2026
RF and embedded work for an IoT hardware startup. Built Python tooling
for hardware bring-up testing, including a GPS post-processing pipeline
with signal filtering that brought location accuracy to within 20 m.
Wrote a spectrum analyzer in software to run on our own hardware, used
for interference analysis in place of dedicated bench equipment. Also
worked on FPGA configuration and Linux test infrastructure.
Undergraduate Researcher, Embodied Systems Lab
Northwestern, Mar 2026 - present
A biosignal acquisition system built into smart glasses, detecting
heart rate and emotional state from wearable sensors. I designed the
op-amp signal conditioning circuits, built the conditioning PCB from
scratch, and work on the embedded C firmware running on an XIAO ESP32.
Electrical Team Member, Northwestern Solar Car
Evanston, Jan 2026 - present
Redesigned the battery management system with a teammate, moving to a
passive cell balancing architecture. Measurably improved cell voltage
uniformity and system efficiency.
Research Assistant, Querrey Simpson Institute for Bioelectronics
Northwestern, Sep 2025 - Jan 2026
Worked on wearable devices that collect vitals from newly transplanted
tissue in infants and adults. Improved PCB and enclosure designs in
Altium and Fusion 360, and collected and processed sample vitals data.
Undergraduate Researcher, Pleshko Lab, Temple University
Philadelphia, Dec 2024 - Sep 2025
Used O-PTIR spectroscopy to study bone composition, measuring how
sample orientation affects molecular vibration detection so O-PTIR data
can be compared against conventional FTIR.
Music genre classifier on an FPGA
Verilog, Spartan-7, Vivado
Audio goes in a line-in, the genre comes out on an OLED. A 1024-point
FFT, a 26-band mel filterbank and a quantised neural net, all in
hand-written Verilog with no processor, no OS and no vendor IP. Fixed
point throughout, so every stage needed its own number format. 86.3% on
held-out samples, 67% on real music played into the board.
The hardest bug wasn't in the design. The board has 12 MHz and 100 MHz
oscillators, and I'd mapped the wrong one in the constraints file, so
the real sample rate was 8x off and every frequency landed in the wrong
band. Simulation never caught it, because a testbench invents its own
clock, and timing never caught it either.
A PY32F030 from a disposable vape, serving HTTP with no network
hardware. A uIP stack speaking SLIP over ARM semihosting, tunnelled
through SWD bit-banged on a Raspberry Pi's GPIO with no debug probe.
The pads on the vape's own board wouldn't take solder reliably, so I
designed a breakout PCB around the same chip and had it fabbed at
JLCPCB. That board is what's running the server.
It didn't work for two days. OpenOCD was silently discarding every
incoming packet unless the chip happened to already be blocked in a
read, so traffic went out and nothing ever came back. Patching OpenOCD
to buffer that data instead of dropping it fixed it.
Attenda Health (Grand Prize - Second Place Overall)
WildHacks 2026, Next.js, React, Supabase
I pitched this one to my team after volunteering at a hospital, where
every patient request funnelled through a single central desk. Nurses
had to walk back for assignments, urgent medical needs sat in the same
queue as complaints about the food, and patients who didn't speak
English waited on a translator before anyone could help them.
We built a mobile app that puts the call bell in the nurse's pocket
instead. Voice requests are transcribed and translated automatically, a
bed map highlights in sync with the queue so you can see who's asking
from where, and an "On the Way" button signals back to the patient's
room. Repeated calls about the same thing collapse into one card with a
counter rather than spamming the list.
GlassTENG: Self-Powered Triboelectric Nanogenerator based Sensing of
Pulse, Jaw, and Upper Facial Activity from Everyday Glasses
Dave, R. N., Prodanich, J., Lai, Y., Jakacki, O., Lin, S., Thoene, J.,
Alshurafa, N., & Arora, N. (2026).
2026 International Symposium on Wearable Computers (ISWC 2026),
Notes and Briefs.
arXiv
Characterization of O-PTIR Orientation Effects on Bone
Jakacki, O., Kust, S., & Pleshko, N. (2025).
Temple University, Department of Bioengineering.
Poster presented at the Sci-X Conference, October 2025. First author.
Abstract
Education
Northwestern University, Evanston, IL
Electrical Engineering, Sept 2025 - Expected Jun 2028
Temple University, Philadelphia, PA
Bioengineering, Aug 2024 - May 2025