Saleh Heidary Shalmany

Orcid: 0000-0003-3846-134X

According to our database1, Saleh Heidary Shalmany authored at least 15 papers between 2012 and 2020.

Collaborative distances:
  • Dijkstra number2 of five.
  • Erdős number3 of four.

Timeline

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Links

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Bibliography

2020
3.7 A 620µW BJT-Based Temperature-to-Digital Converter with 0.65mK Resolution and FoM of 190fJ·K<sup>2</sup>.
Proceedings of the 2020 IEEE International Solid- State Circuits Conference, 2020

2018
A Resistor-Based Temperature Sensor With a 0.13 pJ $\cdot$ K2 Resolution FoM.
IEEE J. Solid State Circuits, 2018

A 117DB in-Band CMRR 98.5DB SNR Capacitance-to-Digital Converter for Sub-NM Displacement Sensing with an Electrically Floating Target.
Proceedings of the 2018 IEEE Symposium on VLSI Circuits, 2018

2017
A BJT-Based Temperature-to-Digital Converter With ±60 mK (3~σ) Inaccuracy From -55 °C to +125 °C in 0.16-μm CMOS.
IEEE J. Solid State Circuits, 2017

A ±36-A Integrated Current-Sensing System With a 0.3% Gain Error and a 400-µA Offset From -55 °C to +85 °C.
IEEE J. Solid State Circuits, 2017

A 7 <i>μ</i>W Offset- and Temperature-Compensated pH-to-Digital Converter.
J. Sensors, 2017

9.1 A resistor-based temperature sensor with a 0.13pJ·K<sup>2</sup> resolution FOM.
Proceedings of the 2017 IEEE International Solid-State Circuits Conference, 2017

2016
A ±5A Integrated Current-Sensing System With ±0.3% Gain Error and 16μA Offset From -55°C +85°C.
IEEE J. Solid State Circuits, 2016

A BJT-based temperature-to-digital converter with ±60mK (3σ) inaccuracy from -70°C to 125°C in 160nm CMOS.
Proceedings of the 2016 IEEE Symposium on VLSI Circuits, 2016

A ± 36A integrated current-sensing system with 0.3% gain error and 400µA offset from -55°C to +85°C.
Proceedings of the 2016 IEEE Symposium on VLSI Circuits, 2016

2015
A fully integrated ±5A current-sensing system with ±0.25% gain error and 12μΑ offset from -40°C to +85°C.
Proceedings of the Symposium on VLSI Circuits, 2015

27.7 A 0.05mm<sup>2</sup> 1V capacitance-to-digital converter based on period modulation.
Proceedings of the 2015 IEEE International Solid-State Circuits Conference, 2015

2013
A ±5A battery current sensor with ±0.04% gain error from -55°C to +125°C.
Proceedings of the 5th IEEE International Workshop on Advances in Sensors and Interfaces, 2013

A micropower battery current sensor with ±0.03% (3σ) inaccuracy from -40 to +85°C.
Proceedings of the 2013 IEEE International Solid-State Circuits Conference, 2013

2012
An Energy-Efficient 15-Bit Capacitive-Sensor Interface Based on Period Modulation.
IEEE J. Solid State Circuits, 2012


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