Compact Low Cost Cmos Integrated Spr Biosensor System
- doi: 10.1109/ICSENS.2013.6688130
-
title: Compact, low cost CMOS integrated SPR biosensor
system
- publisher: IEEE
- isbn: 978-1-4673-4642-9
- issn: 1930-0395
- rank: 1968
- access_type: LOCKED
- content_type: Conferences
-
abstract: In this report, we propose a low cost, single
chip, point of care CMOS integrated localized surface Plasmon resonance
(LSPR) biosensor system. This system is composed of three unique
functional layers in which two layers are integrated on to a single chip
using conventional CMOS fabrication process to cut down the cost and
improve the system sensitivity. Finite difference time domain (FDTD)
simulations of nanohole array for before and after binding of
antigen-antibody pairs gave a 10% change in the CMOS image sensor (CIS)
response.
- article_number: 6688130
-
pdf_url:
https://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=6688130
-
html_url:
https://ieeexplore.ieee.org/document/6688130/
-
abstract_url:
https://ieeexplore.ieee.org/document/6688130/
- publication_title: SENSORS, 2013 IEEE
- conference_location: Baltimore, MD, USA
- conference_dates: 3-6 Nov. 2013
- publication_number: 6679330
- is_number: 6688115
- publication_year: 2013
- publication_date: 3-6 Nov. 2013
- start_page: 1
- end_page: 4
- citing_paper_count: 0
- citing_patent_count: 0
- download_count: 242
- insert_date: 20131219
-
index_terms:
-
ieee_terms:
- Arrays
- Gold
- Photodiodes
- Biosensors
- Plasmons
- Optical surface waves
- Optical filters
-
dynamic_index_terms:
- Biosensor
- Point-of-care
- Surface Plasmon
- Function Of Layer
- Antigen Binding
- Localized Surface Plasmon
- Finite-difference Time-domain
- FDTD
- Finite-difference Time-domain Method
- Localized Surface Plasmon Resonance
- Localized Plasmon Resonance
- Refractive Index
- Refractive Indices
- Resonance Frequency
- Standard Process
- Glass Substrate
- Photodiode Array
- Metal Layer
- Spectral Response
- Refractive Index Change
- Gold Nanorods
- Refractive Index Of The Medium
- CMOS Process
- Standard CMOS
- Nanoimprint Lithography
- Readout Circuit
-
isbn_formats:
-
format: Electronic ISBN,
value: 978-1-4673-4642-9,
isbnType: New-2005
-
authors:
-
Author Name: Santosh Koppa
Affiliation: Department of Electrical and Computer
Engineering UTSA, San Antonio, TX, USA
Author URL:
https://ieeexplore.ieee.org/author/37541162100
ID: 37541162100
Order: 1
Author Affiliations:
-
Department of Electrical and Computer Engineering UTSA, San
Antonio, TX, USA
-
Author Name: Youngjoong Joo
Affiliation: Department of Electrical and Computer
Engineering UTSA, San Antonio, TX, USA
Author URL:
https://ieeexplore.ieee.org/author/37273019200
ID: 37273019200
Order: 2
Author Affiliations:
-
Department of Electrical and Computer Engineering UTSA, San
Antonio, TX, USA
Image Sensor
- sensor_type: CMOS
- resolution: 100µm x 100µm (per photodiode)
- dynamic_range: Not specified
- pixel_size: Not specified
- dark_current: Not specified
Optical Data
- focal_length: Not specified
- aperture: Not specified
- field_of_view: Not specified
- distortion: Not specified
Performance Metrics
Applications & Benefits
-
cell_imaging: Used for detecting biomolecular
interactions, such as antigen-antibody binding in biological samples.
-
benefits: Compact, low-cost, portable system for rapid
biosensing without the need for bulky optical setups.
Supporting Organizations
- supported_by: Not specified
Manuscript Details
- publication_date: 3-6 Nov. 2013
Relevancy Score
- score: 8
-
missing_fields:
- dynamic_range
- focal_length
- aperture
- field_of_view
- distortion
- frame_rate
- signal_to_noise_ratio
- sensitivity
- shutter_speed
- power_consumption
- noise
Processed JSON Filename
request_6a6b11ab-42a6-4fe7-a996-2426704379bb-compact_low_cost_cmos_integrated_spr_biosensor_system.json