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PDF CX099 Data sheet ( Hoja de datos )

Número de pieza CX099
Descripción ICX099AL
Fabricantes Sony 
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No Preview Available ! CX099 Hoja de datos, Descripción, Manual

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ICX099AL
1/2-inch Progressive Scan CCD Image Sensor with Square Pixel for B/W Cameras
For the availability of this product, please contact the sales office.
Description
The ICX099AL is a 1/2-inch optical interline CCD
solid-state image sensor with a square pixel array
and 800K effective pixels. Progressive scan allows all
pixels' signals to be output independently within
approximately 1/15 second. Also, the adoption of
high-speed mode supports 30 frames per second.
This chip features an electronic shutter with variable
charge-storage time which makes it possible to
realize high resolution, full-frame still image without a
mechanical shutter. Further, high sensitivity and low
dark current are achieved through the adoption of
HAD (Hole-Accumulation Diode) sensors.
This chip is suitable for applications such as high
resolution cameras for FA, etc.
Features
Progressive scan allows individual readout of the
image signals from all pixels.
High horizontal and vertical resolution still image
without a mechanical shutter.
Supports 30 frames per second mode
Square pixel
Horizontal drive frequency: 14.31818MHz
No voltage adjustments (reset gate and substrate
bias are not adjusted.)
High resolution, high sensitivity, low dark current
Continuous variable-speed shutter
Low smear
Excellent antiblooming characteristics
20 pin DIP (Cer-DIP)
Pin 1
2
V
3
Pin 11
H
7
40
Optical black position
(Top View)
Device Structure
Interline CCD image sensor
Optical size:
1/2-inch format
Number of effective pixels: 1034 (H) × 779 (V) approx. 800K pixels
Total number of pixels:
1077 (H) × 788 (V) approx. 850K pixels
Chip size:
7.60mm (H) × 6.20mm (V)
Unit cell size:
6.25µm (H) × 6.25µm (V)
Optical black:
Horizontal (H) direction: Front 3 pixels, rear 40 pixels
Vertical (V) direction: Front 7 pixels, rear 2 pixels
Number of dummy bits:
Horizontal 29
Vertical 1
Substrate material:
Silicon
Sony reserves the right to change products and specifications without prior notice. This information does not convey any license by
any implication or otherwise under any patents or other right. Application circuits shown, if any, are typical examples illustrating the
operation of the devices. Sony cannot assume responsibility for any problems arising out of the use of these circuits.
–1–
E97747-PS

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CX099 pdf
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Drive Clock Waveform Conditions
(1) Readout clock waveform
VT 100%
90%
10%
0%
II II
VVT
tr twh tf
φM
φM
2
0V
Note) Readout clock is used by composing vertical transfer clocks Vφ2A and Vφ2B.
(2) Vertical transfer clock waveform
Vφ1
VVH1
VVHH
VVHL
VVH
ICX099AL
VVL01
Vφ2A, Vφ2B
VVH02A, VVH02B
VVL1
VVLH
VVLL
VVHH
VVH2A, VVH2B
VVHL
VVL
VVH
VVL2A, VVL2B
VVLH
VVLL
Vφ3
VVH3
VVHH
VVHL
VVL
VVH
VVL03
VVLH
VVLL
VVH = VVH02A
VVL = (VVL01 + VVL03) /2
VVL3 = VVL03
–5–
VVL
VφV1 = VVH1 – VVL01
VφV2A = VVH02A – VVL2A
VφV2B = VVH02B – VVL2B
VφV3 = VVH3 – VVL03

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CX099 arduino
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ICX099AL
6. Dark signal shading
After measuring 5, measure the maximum (Vdmax [mV]) and minimum (Vdmin [mV]) values of the dark
signal output and substitute the values into the following formula.
Vdt = Vdmax – Vdmin [mV]
7. Lag
Adjust the signal output value generated by strobe light to 150mV. After setting the strobe light so that it
strobes with the following timing, measure the residual signal (Vlag). Substitute the value into the following
formula.
Lag = (Vlag/150) × 100 [%]
VD
V2A
Strobe light
timing
Output
Light
Signal output 150mV Vlag (Lag)
– 11 –

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