What we work on

Research threads.

Our core is analog and mixed-signal circuits for medicine — implantable, wearable, and ingestible systems that sense and stimulate the body — with a dedicated thread advancing power delivery for AI compute.

Circuit oriented

PMIC for AI systems

The power delivery that keeps modern AI compute fed — dense, efficient voltage regulation for demanding processors.

High-density integrated voltage regulators, fast-transient control, and multiphase conversion for AI/ML accelerators.

  • Integrated VR
  • Multiphase
  • Fast transient

Medical oriented

Closed-loop neural interfaces

Implantable systems that listen to the brain and respond in real time — toward therapies for epilepsy, paralysis, and chronic pain.

Ultra-low-power neural recording front-ends, on-chip spike detection, and safe adaptive stimulation within a sub-milliwatt power budget.

  • Low-noise AFE
  • ΔΣ ADC
  • Adaptive stim

Wearable & ingestible biosensing

Continuous, painless monitoring of the body's chemistry and vitals — catching disease earlier and outside the clinic.

Mixed-signal sensor interfaces for electrochemical and bio-impedance sensing, with energy harvesting and mm-scale integration.

  • Sensor IF
  • Energy harvest
  • Wireless

Miniaturized medical imaging

Shrinking imaging front-ends onto a chip to bring diagnostics to the point of care and inside the body.

Integrated ultrasound / bio-photonic front-ends: high-voltage TX, low-noise RX, and beamforming in advanced CMOS.

  • Ultrasound
  • HV CMOS
  • Beamforming