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PDF KAI-1020 Data sheet ( Hoja de datos )

Número de pieza KAI-1020
Descripción Interline CCD Image Sensor
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No Preview Available ! KAI-1020 Hoja de datos, Descripción, Manual

KAI-1020
1000 (H) x 1000 (V) Interline
CCD Image Sensor
Description
The KAI−1020 Image Sensor is a one megapixel interline CCD with
integrated clock drivers and on-chip correlated double sampling.
The progressive scan architecture and global electronic shutter
provide excellent image quality for full motion video and still image
capture.
The integrated clock drivers allow for easy integration with CMOS
logic timing generators. The sensor features a fast line dump for
high-speed sub-window readout and single (30 fps) or dual (48 fps)
output operation.
Table 1. GENERAL SPECIFICATIONS
Parameter
Architecture
Typical Value
Interline CCD, Progressive Scan
Total Number of Pixels
Number of Effective Pixels
Number of Active Pixels
Number of Outputs
Pixel Size
Active Image Size
1028 (H) × 1008 (V)
1004 (H) × 1004 (V)
1000 (H) × 1000 (V)
1 or 2
7.4 mm (H) × 7.4 mm (V)
7.4 mm (H) × 7.4 mm (V)
10.5 mm (Diagonal)
2/3Optical Format
Aspect Ratio
Saturation Signal
Output Sensitivity
Quantum Efficiency
ABA (500 nm)
CBA (620 nm, 540 nm, 460 nm)
FBA (600 nm, 540 nm, 460 nm)
Dark Noise
Dark Current (Typical)
Dynamic Range
Blooming Suppression
Image Lag
Smear
Maximum Data Rate
Frame Rate
Progressive Scan, One Output
Progressive Scan, Dual Outputs
Interlaced Scan, One Output
1:1
40,000 e
12 mV/e
44%
33%, 39%, 41%
39%, 42%, 44%
50 erms
< 0.5 nA/cm2
58 dB
100 X
< 10 e
< 0.03%
40 MHz/Channel (2 Channels)
30 fps
48 fps
49 fps
Integrated Vertical Clock Driver
Integrated Correlated Double Sampling (CDS)
Integrated Electronic Shutter Driver
Package
68 Pin PGA or 64 Pin CLCC
Cover Glass
AR Coated, 2 Sides
NOTE: All Parameters are specified at T = 40°C unless otherwise noted.
www.onsemi.com
Figure 1. KAI−1020 Interline
CCD Image Sensor
Features
10-Bits Dynamic Range at 40 MHz
Large 7.4 mm Square Pixels for High
Sensitivity
Progressive Scan (Non-Interlaced)
Integrated Correlated Double Sampling
(CDS) Up to 40 MHz
Integrated Electronic Shutter Driver
Reversible HCCD Capable of 40 MHz
Operation All Timing Inputs 0 to 5 V
Single or Dual Video Output Operation
Progressive Scan or Interlaced
Fast Dump Gate for High Speed
Sub-Window Readout
Anti-Blooming Protection
Applications
Machine Vision
Medical
Scientific
Surveillance
ORDERING INFORMATION
See detailed ordering and shipping information on page 2 of
this data sheet.
© Semiconductor Components Industries, LLC, 2015
October, 2015 − Rev. 4
1
Publication Order Number:
KAI−1020/D

1 page




KAI-1020 pdf
Pin Grid Array Pin Description
KAI−1020
Pin 1 Index
K1 J1 H1 G1 F1 E1 D1 C1 B1
VSUB
V2IN
J2
H2
G2
F2
E2
D2
C2
B2
V1IN
L2 K2
A2
V2OUT
L3
V2LOW
K3
SH VSH15
B3 A3
V2HIGH
L4
V2MID
K4
SHC2
B4
SHC1
A4
VSUB
L5
V2A
K5
V2S5
L6
V2S9
K6
FD V2B
L7 K7
VOUT1A
L8
VDD
K8
V1LOW
B5
SHD1C1
A5
V1OUT
B6
A6
V1S5
B7
V1MID
A7
VDD
B8
V1
A8
VOUT1B
L9
GND
K9
GND
B9
VOUT2A
A9
VDD
K10
R1
S1B H1BL H2S
GND
H2BR
S2A
VDD
VOUT2B
L10 J10 H10 G10 F10 E10 D10 C10 B10 A10
T1
S1A
H2BL
GND
H1S
H1BR
S2B
R2
T2
K11 J11
H11 G11 F11
E11 D11
C11 B11
Figure 4. PGA Package Pin Description (Top View)
Table 4. PIN DESCRIPTION
Pin Label
K2 V2IN
L2 VSUB
K3 V2LOW
L3 V2OUT
K4 V2MID
L4 V2HIGH
K5 fV2A
L5 VSUB
K6 V2S9
L6 V2S5
K7 fV2B
L7 fFD
Function
VCCD Gate Phase 2 Input
Substrate Voltage Input
VCCD Phase 2 Clock Driver Low
VCCD Phase 2 Clock Driver Output
VCCD Phase 2 Clock Driver Mid
VCCD Phase 2 Clock Driver High
VCCD Phase 2 Clock Driver Input A
Substrate Voltage Input
VCCD Phase 2 Clock Driver +9 V
VCCD Phase 2 Clock Driver +5 V Fast Dump Clock Driver +5 V
VCCD Phase 2 Clock Driver Input B
Fast Dump Clock Driver Input
www.onsemi.com
5

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KAI-1020 arduino
KAI−1020
TYPICAL PERFORMANCE CURVES
Monochrome Quantum Efficiency
0.50
0.45
0.40
0.35
0.30
0.25
0.20
0.15
0.10
0.05
0.00
300
Without Cover Glass
Without Cover Glass, without Microlens
400 500 600 700 800
Wavelength (nm)
Figure 6. Monochrome Quantum Efficiency
Color (Bayer RGB) Quantum Efficiency
0.5
900
1000
0.4
0.3
0.2
0.1
0
350 400 450 500 550 600 650 700 750 800 850 900 950 1000
Wavelength (nm)
Figure 7. Color (Bayer RGB) Quantum Efficiency
www.onsemi.com
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