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NOIL1SN3000A 데이터시트 PDF




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부품번호 NOIL1SN3000A 기능
기능 High Speed CMOS Sensor
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NOIL1SN3000A 데이터시트, 핀배열, 회로
NOIL1SN3000A
LUPA3000: 3 MegaPixel
High Speed CMOS Sensor
Features
1696 x 1710 Active Pixels
8 mm x 8 mm Square Pixels
1.2 inch Optical Format
Monochrome or Color Digital Output
485 Frames per Second (fps) Frame Rate
64 On-Chip 8-Bit ADCs
32 LowVoltage Digital Signaling (LVDS) Serial Outputs
Random Programmable Region of Interest (ROI) Readout
Pipelined and Triggered Global Shutter
Serial Peripheral Interface (SPI)
Dynamic Range Extended by Double Slope
Limited Supplies: Nominal 2.5 V and 3.3 V
0°C to 60°C Operational Temperature Range
369-Pin mPGA Package
1.1 W Power Dissipation
These Devices are PbFree and are RoHS Compliant
http://onsemi.com
Applications
High Speed Machine Vision
Holographic Data Storage
Motion Analysis
Intelligent Traffic System
Medical Imaging
Industrial Imaging
Figure 1. LUPA3000 Package Photo
Description
The LUPA3000 is a high-speed CMOS image sensor with an image resolution of 1696 by 1710 pixels. The pixels are 8 mm
x 8 mm in size and consist of high sensitivity 6T pipelined global shutter capability where integration during readout is
possible. The LUPA3000 delivers 8-bit color or monochrome digital images with a 3 Megapixels resolution at 485 fps that
makes this product ideal for high-speed vision machine, intelligent traffic system, and holographic data storage. The
LUPA3000 captures complex high-speed events for traditional machine vision applications and various high-speed imaging
applications.
The LUPA3000 production package is housed in a 369-pin ceramic mPGA package and is available in a monochrome
version or Bayer (RGB) patterned color filter array with micro lens. Contact your local ON Semiconductor representative for
more information.
ORDERING INFORMATION
Marketing Part Number
Mono / Color
NOIL1SN3000A-GDC
NOIL1SE3000A-GDC
Mono micro lens with glass
Color micro lens with glass
NOTE: Refer to Ordering Code Definition on page 54 for more information.
Package
369pin mPGA
© Semiconductor Components Industries, LLC, 2012
June, 2012 Rev. 9
1
Publication Order Number:
NOIL1SN3000A/D




NOIL1SN3000A pdf, 반도체, 판매, 대치품
NOIL1SN3000A
Electrical Specifications
Exceeding maximum ratings may shorten the useful life of the device. User guidelines are not tested.
Table 5. POWER SUPPLY RATINGS (Notes 1, 2 and 3)
Limits in bold apply for TA = TMIN to TMAX, all other limits TA = +25°C. System speed = 50 MHz, Sensor clock = 200 MHz
Symbol
Power Supply
Parameter
Condition
Min Typ Max
Units
VANA, GNDANA Analog Supply
Operating Voltage
Dynamic Current
Clock enabled, lux = 0
-5% 2.5 +5% V
35 mA
Peak Current
Row overhead time (ROT)
100 mA
VDD, GNDDD
Digital Supply
Operating Voltage
Dynamic Current
Clock enabled, lux = 0
-5% 2.5 +5% V
1 mA
Peak Current
Frame overhead time (FOT)
80 mA
VDD_HS,
GNDDD_HS
Digital Supply
high speed
Operating Voltage
Dynamic Current
Clock enabled, lux = 0
-5% 2.5 +5% V
100 mA
Peak Current
FOT
60 mA
VPIX, GNDPIX
Pixel Supply
Operating Voltage
Peak Current during FOT
Transient duration = 2 ms
-5% 2.5 +5% V
210 mA
VLVDS,
GNDLVDS
LVDS Supply
Peak Current during ROT
Operating Voltage
Dynamic Current
Transient duration = 0.5 ms
Clock enabled, lux = 0
100 mA
-5% 2.5 +5% V
170 mA
Peak Current
ROT
80 mA
VADC, GNDADC ADC Supply
Operating Voltage
Dynamic Current
Clock enabled, lux = 0
-5% 2.5 +5% V
150 mA
Peak Current
Clock enabled, lux = 0
275 mA
VRES
Reset Supply
Operating Voltage
Peak current during FOT
Transient duration: 200 ns
-5% 3.3 +5% V
1000
mA
VRES_DS
Reset dual slope Operating Voltage
supply
1.8 2.5 3.5 V
VMEM_L
(Note 4)
Memory Element Operating Voltage
low level supply Peak current during FOT
Clock enabled, bright
-5% 2.5 +5% V
180 mA
VMEM_H
Memory Element Operating Voltage
high level supply Peak current during FOT
-5% 3.3 +5% V
90 mA
VPRECHARGE
Pre_charge
Driver Supply
Operating Voltage
Peak Current during FOT
Transient duration: 50 ns
-10% 0.4 +10% V
10 mA
VCM
Common mode Operating Voltage
(Refer to Table 44 on page 29)
voltage
0.9
V
1. All parameters are characterized for DC conditions after thermal equilibrium is established.
2. Peak currents are measured without the load capacitor from the LDO (Low Dropout Regulator). The 100 nF capacitor bank is connected
to the pin in question.
3. This device contains circuitry to protect the inputs against damage due to high static voltages or electric fields. However, take normal
precautions to avoid application of any voltages higher than the maximum rated voltages to this high impedance circuit.
4. The VMEM_L power supply should have a sourcing and sinking current capability.
Table 6. POWER DISSIPATION (Note 1)
Power supply specifications according to Table 5.
Symbol
Parameter
Dynamic Power Average power dissipation
Standby Power Power dissipation in standby
Condition
lux = 0, clock = 50 MHz
lux = 0, No clock
Min Typ Max Units
0.8 1.1 1.4 W
180 mW
http://onsemi.com
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NOIL1SN3000A 전자부품, 판매, 대치품
NOIL1SN3000A
Figure 4. Micro Lens Behavior for Mono
Figure 5. Micro Lens Behavior for Color
http://onsemi.com
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High Speed CMOS Sensor

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