The gallery below has many of the “chips” that we have taped out over the past decade in the BioEE research group. Technologies include TSMC 0.180 µm, TSMC 65 nm, GF 65 nm, and GF 22 nm FDSOI. For more information about each of these, check out our publications page.

Roswell Chip Photo
IoT Temp Chip Photo
FSCV Die Photo
Helix Die Photo
3rd-order VCO only ADC
Ultra-Low Leakage ESD Protection
An ExG BioADC
A GMR Relaxation AFE
An Audio-bandwidth ADC with OTA Stacking
A Sub-pA Current Sensing Front-End
A Temperature Compensated Injection Locked Clock Multiplier
An Ultra-Low Power Wake-Up Radio
A 2-in-1 Temperature and Humidity Sensor
A Fast-Readout, Mismatch-Insensitive Magnetoresistive Biosensor Front-End Achieving Sub-ppm Sensitivity
A 1μW BioMote
A 16×20 Electrochemical Biosensor Array
A 7nW Wake-up Radio
Hourglass ADC
Closed-Loop Hourglass ADC
256 GMR SV Sensor Interface
8×10 Array of GMR SV Biosensors
4,096 Electrochemical Sensor Array
405 MHz UltraLow-Power Wake-up Radio
Adaptive ECG Analog-Front-End
4,096 Nanogap Array for DNA Sequencing
113.5 MHz UltraLow-Power Wake-up Radio
Microfluidic Biosensor Array
An ECG Amplifier Using AC-coupled OTA-Stacking
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Roswell Chip Photo
IoT Temp Chip Photo
FSCV Die Photo
Helix Die Photo
3rd-order VCO only ADC
Ultra-Low Leakage ESD Protection
An ExG BioADC
A GMR Relaxation AFE
An Audio-bandwidth ADC with OTA Stacking
A Sub-pA Current Sensing Front-End
A Temperature Compensated Injection Locked Clock Multiplier
An Ultra-Low Power Wake-Up Radio
A 2-in-1 Temperature and Humidity Sensor
A Fast-Readout, Mismatch-Insensitive Magnetoresistive Biosensor Front-End Achieving Sub-ppm Sensitivity
A 1μW BioMote
A 16×20 Electrochemical Biosensor Array
A 7nW Wake-up Radio
Hourglass ADC
Closed-Loop Hourglass ADC
256 GMR SV Sensor Interface
8×10 Array of GMR SV Biosensors
4,096 Electrochemical Sensor Array
405 MHz UltraLow-Power Wake-up Radio
Adaptive ECG Analog-Front-End
4,096 Nanogap Array for DNA Sequencing
113.5 MHz UltraLow-Power Wake-up Radio
Microfluidic Biosensor Array
An  ECG Amplifier Using AC-coupled OTA-Stacking
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