Title :
Design of DPSK modulator, demodulator and power telemetry for Epi-retinal and neural prostheses
Author :
Moni, D. Jackuline ; George, Saju
Author_Institution :
Dept. of ECE, Karunya Univ., Coimbatore, India
Abstract :
The simulation of a DPSK modulator, demodulator and power telemetry for Epi-retinal and neural prostheses is presented in this paper. The technique adopted in this method is DPSK telemetry system with a 22 MHz input frequency. A quad level power telemetry system is to generate high and low voltage outputs to the stimulators. To add flexibility to the stimulator, each pixel has a local digital controller, which enables the stimulator IC to generate 256 parallel stimulations with various pulse widths and amplitudes. The proposed retinal stimulator circuit is designed in 180nm technology using cadence virtuoso analog design environment. The DPSK transmitter, DPSK receiver and power telemetry consumes 93.7μW, 98.3μW, 8.554μW respectively at 1.8V and area occupied for the transmitter and the telemetry is 0.00113mm2 and 0.000648 mm2.
Keywords :
bioelectric phenomena; biomedical electronics; biomedical telemetry; demodulators; differential phase shift keying; eye; integrated circuit design; medical control systems; modulators; nanomedicine; neurophysiology; power transmission; prosthetics; receivers; transmitters; DPSK modulator design; DPSK receiver; DPSK telemetry system; DPSK transmitter; cadence virtuoso analog design environment; demodulator design; epiretinal prosthesis; frequency 22 MHz; high voltage output generation; input frequency; local digital controller; low voltage output generation; nanotechnology; neural prosthesis; parallel stimulation generation; pixel controller; power 8.554 muW; power 93.7 muW; power 98.3 muW; power telemetry design; pulse amplitude variation; pulse width variation; quad level power telemetry system; retinal stimulator circuit design; simulation; size 0.000648 mm; size 0.00113 mm; size 180 nm; stimulator IC; voltage 1.8 V; Differential phase shift keying; Prosthetics; Receivers; Retina; Telemetry; Transmitters; Voltage control; Differential Phase Shift Keying (DPSK); System on Chip (SoC);
Conference_Titel :
Electronics and Communication Systems (ICECS), 2015 2nd International Conference on
Conference_Location :
Coimbatore
Print_ISBN :
978-1-4799-7224-1
DOI :
10.1109/ECS.2015.7124935