Detail publikačního výsledku

ASIC for electro-chemical sensor conductivity measurement using bipolar pulse method

PROKOP, R.; FUJCIK, L.

Originální název

ASIC for electro-chemical sensor conductivity measurement using bipolar pulse method

Anglický název

ASIC for electro-chemical sensor conductivity measurement using bipolar pulse method

Druh

Článek recenzovaný mimo WoS a Scopus

Originální abstrakt

The microelectronic measuring system for conductivity electrochemical sensor measurement of liquid materials properties was designed in CMOS technology. The main parts of the system are current source with switchable ranges, the sensor switches allowing change of the current polarity in compliance with the bipolar pulse method, which was developed specially for this measurement purposes at the Dept.of Microelectronics. The most important part of the system is a sensor voltage drop measuring circuit using opamp offset switched compensation.

Anglický abstrakt

The microelectronic measuring system for conductivity electrochemical sensor measurement of liquid materials properties was designed in CMOS technology. The main parts of the system are current source with switchable ranges, the sensor switches allowing change of the current polarity in compliance with the bipolar pulse method, which was developed specially for this measurement purposes at the Dept.of Microelectronics. The most important part of the system is a sensor voltage drop measuring circuit using opamp offset switched compensation.

Klíčová slova

electro-chemical measurement, bipolar pulse, offset compensation

Klíčová slova v angličtině

electro-chemical measurement, bipolar pulse, offset compensation

Autoři

PROKOP, R.; FUJCIK, L.

Vydáno

19.09.2007

Nakladatel

TU-Sofia

Místo

Sofia

ISSN

1313-1842

Periodikum

Electronics

Svazek

16

Číslo

9

Stát

Bulharská republika

Strany od

43

Strany do

48

Strany počet

6

BibTex

@article{BUT45347,
  author="Roman {Prokop} and Lukáš {Fujcik}",
  title="ASIC for electro-chemical sensor conductivity measurement using bipolar pulse method",
  journal="Electronics",
  year="2007",
  volume="16",
  number="9",
  pages="43--48",
  issn="1313-1842"
}