Integrator With Pchannel Depletion Mos Switch
- doi: 10.1109/ICECS.2017.8292113
-
title: Integrator with p-channel depletion MOS switch
- publisher: IEEE
- isbn: 978-1-5386-1912-4
- issn:
- rank: 2814
- access_type: LOCKED
- content_type: Conferences
-
abstract: Current input, voltage output analog
integrators are important electronic components for photo-current
measurement applications such as diffuse light tomography and
spectroscopy applications. In this work, current input, analog voltage
output integrator has been designed and simulations have been tested for
biomedical imaging purpose. Researchers want to know photon
accumulations in different phantom layers for photon measurement
applications, especially for diffuse optical tomography (DOT) devices.
In continuous wave (CW) DOT (CWDOT) measurements, there is no way to
guess photon trajectories except running Monte Carlo (MC) simulations on
computer. In time resolved (TR) biomedical optic imaging systems there
are some ways to guess photon trajectories, but this modality is
requiring very expensive laboratory situations such as dark room,
optical table, photo-multiplier tubes (PMT), scientific camera systems,
etc. In this work, one analog integrator circuit has been designed to
use for CWDOT systems in the future. Electronic current measurement
sensor will be one pn type semiconductor photo-detector. Photo-detector
current is modelled by current-source in simulations. The circuit is one
integrator at top. Integrator has one operational amplifier, integrating
capacitance, and switching n-channel and p-channel metal-oxide silicon
(MOS) field-effect transistors (MOSFET). The purpose of this work is to
accomplish to acquire different depth layer photons by the pn-type
photo-detector from tissue or tissue phantom. To acquire different depth
layer photons, time difference circuit should be designed. Time
differences between different acquisitions are important parameter to
guess penetration depth of photon accumulations. Time difference will be
done by drawing layout of time delay circuit, but not in this work. One
micrometer conducting length difference is generating approximately five
femtoseconds time delay in average CMOS technology for polysilisium and
metal wires. One n-channel MOSFET transistor switch and one low-voltage
threshold inverse connected depletion mode p-channel MOSFET transistor
are connected cascade to photodetector for time delay purpose.
Integrating pulse signals are triggering switching transistors over
delay line wires.
- article_number: 8292113
-
pdf_url:
https://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=8292113
-
html_url:
https://ieeexplore.ieee.org/document/8292113/
-
abstract_url:
https://ieeexplore.ieee.org/document/8292113/
-
publication_title: 2017 24th IEEE International
Conference on Electronics, Circuits and Systems (ICECS)
- conference_location: Batumi, Georgia
- conference_dates: 5-8 Dec. 2017
- publication_number: 8283844
- is_number: 8291994
- publication_year: 2017
- publication_date: 5-8 Dec. 2017
- start_page: 165
- end_page: 169
- citing_paper_count: 0
- citing_patent_count: 0
- download_count: 355
- insert_date: 20180215
-
index_terms:
-
ieee_terms:
- Switching circuits
- MOSFET
- Photonics
- Capacitance
- Optical switches
- Delay effects
-
author_terms:
- Analog integrator
- p-channel depletion MOS switch
-
dynamic_index_terms:
- Time Difference
- Medical Imaging
- Clinical Imaging
- Diagnostic Imaging
- Time Delay
- Differences In Length
- Penetration Depth
- Continuous Wave
- Future Systems
- Field-effect Transistors
- Photomultiplier Tube
- Integrated Circuit
- Pulse Signal
- Delay Line
- Operational Amplifier
- Op-amp
- Diffuse Light
- Tissue Phantom
- Low Threshold Voltage
- Switching Transistors
- Diffuse Optical Tomography
- Diffuse Optical Imaging
- Depletion Mode
- Depletion Type
- Circuit Simulation
- Low-pass
- Low-pass Filter
- Transistor Channel
- Amplification Stage
- Differential Amplifier
- Circuit Design
- Phase Difference
- Simulation Results
-
isbn_formats:
-
format: Print on Demand(PoD) ISBN,
value: 978-1-5386-1912-4,
isbnType: New-2005
-
format: Electronic ISBN,
value: 978-1-5386-1911-7,
isbnType: New-2005
-
authors:
-
Author Name: Hüseyin Ozgur Kazanci
Affiliation: Department of Biomedical Engineering,
Akdeniz University Faculty of Engineering, Antalya, TURKEY
Author URL:
https://ieeexplore.ieee.org/author/37086313401
ID: 37086313401
Order: 1
Author Affiliations:
-
Department of Biomedical Engineering, Akdeniz University Faculty
of Engineering, Antalya, TURKEY
Image Sensor
-
sensor_type: pn-junction semiconductor photodetector
- resolution: Not specified
- dynamic_range: Not specified
- pixel_size: Not specified
- dark_current: 1 pA
Optical Data
- focal_length: Not specified
- aperture: Not specified
- field_of_view: Not specified
- distortion: Not specified
Performance Metrics
Applications & Benefits
-
cell_imaging: The research focuses on diffuse optical
tomography (DOT) for biomedical imaging, specifically for measuring
photon accumulation in different tissue layers.
-
benefits: The proposed analog integrator circuit
enables the acquisition of different depth layer photons from tissue or
tissue-like phantoms.
Supporting Organizations
- supported_by: Not specified
Manuscript Details
- publication_date: 5-8 Dec. 2017
Relevancy Score
- score: 3
-
missing_fields:
- sensor_type
- resolution
- dynamic_range
- pixel_size
- signal_to_noise_ratio
- sensitivity
- shutter_speed
- power_consumption
- frame_rate
- dark_current
- noise
Processed JSON Filename
request_54926b1a-7792-41a8-988e-8772eaefccdc-integrator_with_pchannel_depletion_mos_switch.json