Hardware that thinks in the real world.
I design dependable embedded and connected products, from sensor nodes and low-power firmware to device telemetry and edge-ready prototypes.
From first voltage
to useful signal.
I work across the boundary where electronics, firmware, networks and physical environments meet. The goal is not simply to make a board function, it is to make the complete device observable, power-aware, resilient and ready for the conditions it will actually face.
Where I
go deep.
- Firmware architecture 01
- Sensor integration 02
- Low-power design 03
- Device connectivity 04
- Debug & validation 05
Orchard Mesh
Solar-assisted sensor nodes that sample soil moisture, temperature and leaf-wetness data, then relay compact telemetry across a resilient local mesh.
PulseRail
Edge acquisition firmware for vibration and current sensors, with timestamped sampling, fault flags and a compact diagnostic stream.
BioBand Edge
Low-power wearable prototype balancing sensor cadence, motion-aware duty cycling and privacy-conscious local preprocessing.
FieldLink
Device provisioning and telemetry architecture designed to keep the edge device useful even when connectivity becomes intermittent.
Measure. Make.
Stress-test. Repeat.
Sense
Define signals, constraints, sampling and failure modes.
Shape
Design firmware, power states, interfaces and data paths.
Stress
Probe timing, brownouts, packet loss and noisy real-world inputs.
Ship
Document the device, expose telemetry and prepare repeatable builds.