A System Platform Design Of Travelling Wave Dielectrophoresis Microchip
Based On Sopc
- doi: 10.1109/CSSE.2008.537
-
title: A System Platform Design of Travelling Wave
Dielectrophoresis Microchip Based on SOPC
- publisher: IEEE
- isbn: 978-0-7695-3336-0
- issn:
- partnum: 08PR3336
- rank: 953
- access_type: LOCKED
- content_type: Conferences
-
abstract: This paper presents a control and acquisition
platform design method of travelling wave dielectrophoresis microchip
based on SOPC technique. The direct digital frequency synthesis (DDS)
modeling is built by using the digital signal processing (DSP)
development tool of FPGA, DSP Builder. By the controlling of NIOSII,
which embedded in the FPGA (CyclonII EP2C35) of Altera corp., the
four-phase DDS module outputs four channels AC signals with the same
magnitude, and their phase of four channels AC signals are 0deg, 90deg,
180deg and 270deg, respectively. They supply control signals for the
travelling wave ITO electrodes array. The travelling wave
dielectrophoresis electric field is created by the four-channel AC
signals, it drives biological particles direction moving to achieve
different biological particles separating in the microchannel of
dielectrophoresis micochip. Adopting the custom I2C module achieves the
configuration of 3-Megapixel CMOS image sensor, MT9T001, which achieves
the contactless detection of different biological particles. The design
of DDS IP core based on DSP Builder, the design of custom I2C module,
the hardware framework and software design of control system is mainly
introduced in article. The correctness and practicability of design
method is testified by simulation results.
- article_number: 4722565
-
pdf_url:
https://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=4722565
-
html_url:
https://ieeexplore.ieee.org/document/4722565/
-
abstract_url:
https://ieeexplore.ieee.org/document/4722565/
-
publication_title: 2008 International Conference on
Computer Science and Software Engineering
- conference_location: Wuhan, China
- conference_dates: 12-14 Dec. 2008
- publication_number: 4721667
- is_number: 4722542
- publication_year: 2008
- publication_date: 12-14 Dec. 2008
- start_page: 66
- end_page: 69
- citing_paper_count: 0
- citing_patent_count: 0
- download_count: 139
- insert_date: 20081222
-
index_terms:
-
ieee_terms:
- Dielectrophoresis
- Digital signal processing
- Design methodology
- Field programmable gate arrays
- Frequency synthesizers
- Control system synthesis
- Signal synthesis
- Indium tin oxide
- Electrodes
- Electric fields
-
author_terms:
- SOPC
- dielectric electrophoresis microchip
- DDS
- Matlab and DSP Builder
- CMOS image sensor
-
dynamic_index_terms:
- Traveling Wave
- Electrode
- System Design
- Image Sensor
- Camera Sensor
- Digital Signal Processing
- Particle Detection
- Biological Particles
- Acquisition Platform
- Series Data
- Analog-to-digital Converter
- Analog-to-digital
- Digital-to-analog Converter
- Lookup Table
- Dielectric Permittivity
- Sinusoidal Signal
- ITO Glass
- Control Words
-
isbn_formats:
-
format: Print ISBN,
value: 978-0-7695-3336-0,
isbnType: New-2005
-
authors:
-
Author Name: Honghua Liao
Affiliation: School of Information, Hubei Institute
for Nationalities, Enshi, Hubei, China
Author URL:
https://ieeexplore.ieee.org/author/37575490700
ID: 37575490700
Order: 1
Author Affiliations:
-
School of Information, Hubei Institute for Nationalities, Enshi,
Hubei, China
-
Department of Electronics Science and Technology, Huazhong
University of Science and Technology, Wuhan, Hubei Province,
China
-
Author Name: Jun Yu
Affiliation: Department of Electronics Science and
Technology, Huazhong University of Science and Technology, Wuhan,
Hubei Province, China
Author URL:
https://ieeexplore.ieee.org/author/37291382500
ID: 37291382500
Order: 2
Author Affiliations:
-
Department of Electronics Science and Technology, Huazhong
University of Science and Technology, Wuhan, Hubei Province,
China
-
Author Name: Jun Wang
Affiliation: Department of Electronics Science and
Technology, Huazhong University of Science and Technology, Wuhan,
Hubei Province, China
Author URL:
https://ieeexplore.ieee.org/author/37578795200
ID: 37578795200
Order: 3
Author Affiliations:
-
Department of Electronics Science and Technology, Huazhong
University of Science and Technology, Wuhan, Hubei Province,
China
-
Author Name: Jianjun Chen
Affiliation: Department of Electronics Science and
Technology, Huazhong University of Science and Technology, Wuhan,
Hubei Province, China
Author URL:
https://ieeexplore.ieee.org/author/37086539558
ID: 37086539558
Order: 4
Author Affiliations:
-
Department of Electronics Science and Technology, Huazhong
University of Science and Technology, Wuhan, Hubei Province,
China
-
Author Name: Honghua Liao
Affiliation: School of Information, Hubei Institute
for Nationalities, Enshi, Hubei Province, China
Author URL:
https://ieeexplore.ieee.org/author/37575490700
ID: 37575490700
Order: 5
Author Affiliations:
-
School of Information, Hubei Institute for Nationalities, Enshi,
Hubei Province, China
-
Author Name: Yu Liao
Affiliation: School of Information, Hubei Institute
for Nationalities, Enshi, Hubei Province, China
Author URL:
https://ieeexplore.ieee.org/author/37592152600
ID: 37592152600
Order: 6
Author Affiliations:
-
School of Information, Hubei Institute for Nationalities, Enshi,
Hubei Province, China
-
Author Name: Jinqiao Yi
Affiliation: School of Information, Hubei Institute
for Nationalities, Enshi, Hubei Province, China
Author URL:
https://ieeexplore.ieee.org/author/37595506400
ID: 37595506400
Order: 7
Author Affiliations:
-
School of Information, Hubei Institute for Nationalities, Enshi,
Hubei Province, China
Image Sensor
- sensor_type: CMOS
- resolution: 2048 x 1536
- dynamic_range: high dynamic range
- 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
- frame_rate: high output frame rate
- signal_to_noise_ratio: low noise
- power_consumption: low power consumption
Applications & Benefits
-
cell_imaging: Achieves the biomicroscopic images
acquiring.
-
benefits: High sensitivity, high output frame rate, low
noise, low power consumption, and high dynamic range.
Supporting Organizations
- supported_by: Micron Inc.
Manuscript Details
- publication_date: 12-14 Dec. 2008
Relevancy Score
- score: 9
-
missing_fields:
- pixel_size
- dark_current
- focal_length
- aperture
- field_of_view
- distortion
- sensitivity
- shutter_speed
- noise
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