CYPRESS CYILSN3000AA

LUPA 3000
485 FPS, 13.3 Gbit High Speed Image Sensor
Features
CYILSN3000AA
Product Brief
in 485 fps frame rate at full resolution. Higher frame rates can be
achieved by windowing which is programmable over the SPI
interface.
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1696 x 1710 active pixels
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8 µm X 8 µm square pixels
■
1" optical format
■
Monochrome or color digital output
■
485 fps frame rate
■
64 On-chip 8-bit ADCs
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32 LVDS serial outputs
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Random programmable ROI readout
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Pipelined, Triggered and Snapshot shutter
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Serial to Parallel Interface (SPI)
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Limited supplies: Nominal 2.5V (some supplies require 3.3V)
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0°C to 60°C operational temperature range
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399-pin BGA package
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Power dissipation: 1.1W
All required clocks, control and bias signals are generated
on-chip. The incoming high speed clock is divided to generate the
different low speed clocks required for the operation of the
sensor. The sensor generates all its bias signals from an internal
bandgap reference. An on-chip sequencer generates all the
required control signals for the image core, the ADCs and the on
chip digital data processing path. The settings of the sequencer
are stored in registers that can be programmed through the serial
command interface. The sequencer supports windowed readout
at frame rates up to 10000 fps.
The LUPA 3000 is housed in a 399-pin ceramic BGA package
and is available in a monochrome version or Bayer (RGB)
patterned color filter array with micro lens.
LUPA 3000 Die Photo
Applications
■
High speed machine vision
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Holographic data storage
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Motion analysis
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Intelligent traffic system
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Medical imaging
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Industrial imaging
Description
The LUPA 3000 is a high speed CMOS image sensors with an
image resolution of 1696 by 1710 pixels. The pixels are 8 µm x 8
µm in size and consist of high sensitivity 6T pipelined snapshot
shutter capability where integration during readout is possible.
The LUPA 3000 delivers 8-bit color or monochrome digital
images with a 3.0-megapixel resolution at 485 fps which makes
this product ideal for high speed vision machine, intelligent traffic
system and holographic data storage. The LUPA 3000 captures
complex high-speed events for traditional machine vision
applications as well as various high-speed imaging applications.
The sensor contains 64 on-chip 8 bit ADCs operating at 25.75
Msamples/s each, resulting in an aggregate pixel rate of 1.4
Gpix/s. The outputs of the 64 ADCs are multiplexed onto 32
LVDS serial links operating at 412 Mbit/s each resulting in an
aggregate date rate of 13.3Gbit/s. The 32 data channel LVDS
interface allows a very high data rate with a limited number of
pins. Each channel runs at 51.5 MSPS pixel rate which results
Cypress Semiconductor Corporation
Document Number: 001-49821 Rev. **
•
Ordering Information
Marketing Part Number
(ES Samples)
Mono/Color
CYIL1SN3000AA-BDCES
Micro-lens mono with glass
CYIL1SE3000AA-BDCES
Micro-lens color with glass
198 Champion Court
•
Package
399 pin
ceramic BGA
San Jose, CA 95134-1709
•
408-943-2600
Revised October 29, 2008
LUPA 3000
General Specifications
Parameter
Active Pixels
General Specifications
Specifications
Parameter
1696 (H) x 1710 (V)
Specifications
Extended Dynamic Range
Pixel Size
8 µm x 8µm.)
Pixel Type
Pipelined shutter pixel
Data Rate
412 Mbps (32 serial LVDS outputs)
Shutter Type
485 fps at 3.0 Mpixel (Can be
boosted by subsampling and windowing.))
Multiple slope (up to 80 dB optical
dynamic range)
Electro-Optical Specifications
Parameter
Specifications
Conversion gain
39.2uV/e
Full well charge
27000e
Frame Rate
485 fps at 3.0 Mpixel (Can be
boosted by sub sampling and windowing.)
Sensitivity
2800 V.m2/W.s @600nm with
micro-lens
Fill factor
36%
Master Clock
206 MHz
Parasitic light sensitivity
< 1/5000
Windowing (ROI)
Randomly programmable ROI read
out. Implemented as scanning of
lines or columns from an uploaded
position
Dark noise
21e-
QE x FF
37% @ 680nm
FPN
1.7% of Vsat
Read Out
Windowed, flipped, mirrored, and
subsampled read out.
PRNU
2.2% of Vsignal
Dark signal
250 mV/s @25°C
ADC Resolution
8-bit, on-chip
Power dissipation
1.1W @485 fps
Sensitivity
3.81 V/lux.s @ 550nm
Document History Page
Document Title: LUPA 3000, 485 FPS, 13.3 Gbit High Speed Image Sensor
Document Number:
REV.
ECN
Orig. of Change
Submission Date
**
2598180
VED
October 29, 2008
Description Of Change
New image sensor document
Sales, Solutions, and Legal Information
Worldwide Sales and Design Support
Cypress maintains a worldwide network of offices, solution centers, manufacturer’s representatives, and distributors. For more information on Image sensors, please contact at [email protected]
Cypress offers standard and customized CMOS image sensors for consumer as well as industrial and professional applications.
Consumer applications include the fast growing high volume cell phone, digital still cameras as well as automotive applications.
Cypress’ customized CMOS image sensors are characterized by very high pixel counts, large area, very high frame rates, large
dynamic range, and high sensitivity.
© Cypress Semiconductor Corporation, 2008. The information contained herein is subject to change without notice. Cypress Semiconductor Corporation assumes no responsibility for the use of any
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Disclaimer: CYPRESS MAKES NO WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, WITH REGARD TO THIS MATERIAL, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE. Cypress reserves the right to make changes without further notice to the materials described herein. Cypress does not
assume any liability arising out of the application or use of any product or circuit described herein. Cypress does not authorize its products for use as critical components in life-support systems where
a malfunction or failure may reasonably be expected to result in significant injury to the user. The inclusion of Cypress’ product in a life-support systems application implies that the manufacturer
assumes all risk of such use and in doing so indemnifies Cypress against all charges.
Use may be limited by and subject to the applicable Cypress software license agreement.
Document Number: 001-49821 Rev. **
Revised October 29, 2008
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