Title :
Study on Wide-band Voltage Controlled Current Source for Electrical Impedance Tomography
Author :
Wang, Yinan ; Li, Nan ; Yu, Hongqi ; Sun, Zhaolin ; Nie, Hongshan ; Xu, Hui
Author_Institution :
Nat. Univ. of Defense Technol., Changsha, China
Abstract :
Electrical Impedance Tomography is applied to acquire the impedance characteristic, which is correlative with the physiological and pathological status of a body, and reconstruct the images of impedance distribution. Current injection with voltage measurement phantom is widely adopted in the application of biomedical detection. Voltage controlled current source (VCCS) develops an important part and its performance directly affects the precision of the system. In this paper we analyze and simulate the driving capability and operating bandwidth of the improved Howland current source. By using a wide-band, low noise amplifier, OPA843, we implement the current excitation circuit, which performs well. The maxim output impedance achieves 103.41Mohm under frequency from 1KHz to 100KHz. When driving a pure resistive load of 2Kohm, the -3dB bandwidth is 63MHz and decreases to 10.7MHz with resistive load of 10Kohm. When the output impedance decreases due to the stray capacitance, a general impedance converter is used in parallel with Howland. The simulation and test results show that the voltage controlled current source performs stably and provides great output impedance and superior driving bandwidth, which is suitable for EIT application.
Keywords :
constant current sources; electric impedance imaging; image reconstruction; low noise amplifiers; phantoms; voltage measurement; wideband amplifiers; Howland current source; bandwidth 10.7 MHz; bandwidth 63 MHz; biomedical detection; current excitation circuit; current injection; driving capability; electrical impedance tomography; frequency 1 kHz to 100 kHz; image reconstruction; impedance converter; impedance distribution; voltage measurement phantom; wideband low noise amplifier; wideband voltage controlled current source; Bandwidth; Impedance; Inductance; Operational amplifiers; Switches; Tomography; Voltage measurement; Current Source; Electrical Impedance Tomography; Improved Howland; Wide-band;
Conference_Titel :
Intelligent System Design and Engineering Application (ISDEA), 2012 Second International Conference on
Conference_Location :
Sanya, Hainan
Print_ISBN :
978-1-4577-2120-5
DOI :
10.1109/ISdea.2012.616