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PDF ICX097AKE Data sheet ( Hoja de datos )

Número de pieza ICX097AKE
Descripción Diagonal 3mm (Type 1/6) CCD Image Sensor
Fabricantes Sony Corporation 
Logotipo Sony Corporation Logotipo



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ICX097AKE
Diagonal 3mm (Type 1/6) CCD Image Sensor for PAL Color Cameras
Description
The ICX097AKE is an interline CCD solid-state
image sensor suitable for PAL small color cameras.
Ye, Cy, Mg, and G complementary color mosaic
filters are used. At the same time, high sensitivity
and low dark current are achieved through the
adoption of Super HAD CCD technology.
This chip features a field period readout system
and an electronic shutter with variable charge-
storage time.
The package is a small 12-pin SON(LCC).
12 pin SON (Ceramic)
Features
High sensitivity and low dark current
Horizontal register: 3.3 to 5.0V drive
No voltage adjustment
(Reset gate and substrate bias are not adjusted.)
Low smear
Excellent antiblooming characteristics
Continuous variable-speed shutter
Recommended range of exit pupil distance: –10mm to –
Ye, Cy, Mg, and G complementary color mosaic filters on chip
12-pin ceramic SON(LCC) package
Pin 1
1
V
14
7
H 30
Pin 7
Optical black position
(Top View)
Device Structure
Interline CCD image sensor
Image size:
Number of effective pixels:
Total number of pixels:
Chip size:
Unit cell size:
Optical black:
Number of dummy bits:
Substrate material:
Diagonal 3mm (Type 1/6)
500 (H) × 582 (V) approx. 290K pixels
537 (H) × 597 (V) approx. 320K pixels
3.30mm (H) × 2.95mm (V)
4.90µm (H) × 3.15µm (V)
Horizontal (H) direction: Front 7 pixels, rear 30 pixels
Vertical (V) direction: Front 14 pixels, rear 1 pixel
Horizontal 16
Vertical 1 (even fields only)
Silicon
Super HAD CCD is a registered trademark of Sony Corporation. Super HAD CCD is a CCD that drastically improves sensitivity by introducing newly
developed semiconductor technology by Sony Corporation into Sony's high-performance HAD (Hole-Accumulation Diode) sensor.
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–
E97728A99

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ICX097AKE pdf
ICX097AKE
Drive Clock Waveform Conditions
(1) Readout clock waveform
100%
90%
II II
10%
0%
tr
(2) Vertical transfer clock waveform
Vφ1
VVT
twh
tf
Vφ3
φM
φM
2
0V
VVH1
VVHH
VVH
VVHH
VVHL
VVHL
VVHL
VVHH
VVHH
VVH3
VVHL
VVH
VVL1
VVLH
VVLL
VVL
Vφ2
VVHH
VVH2 VVHL
VVHH
VVH
VVHL
VVL3
VVL
Vφ4
VVH
VVHH
VVLH
VVLL
VVHH
VVHL
VVHL
VVH4
VVL2VVLH
VVLL
VVL
VVH = (VVH1 + VVH2)/2
VVL = (VVL3 + VVL4)/2
VφV = VVHn – VVLn (n = 1 to 4)
VVLH
VVLL
VVL4
–5–
VVL

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ICX097AKE arduino
ICX097AKE
7. Dark signal
Measure the average value of the Y signal output (Ydt [mV]) with the device ambient temperature 60°C and
the device in the light-obstructed state, using the horizontal idle transfer level as a reference.
8. Dark signal shading
After measuring 7, measure the maximum (Ydmax [mV]) and minimum (Ydmin [mV]) values of the Y signal
output and substitute the values into the following formula.
Ydt = Ydmax – Ydmin [mV]
9. Flicker
1) Fy
Set to standard imaging condition II. Adjust the luminous intensity so that the average value of the Y signal
output is 200mV, and then measure the difference in the signal level between fields (Yf [mV]). Then
substitute the value into the following formula.
Fy = (Yf/200) × 100 [%]
2) Fcr, Fcb
Set to standard imaging condition II. Adjust the luminous intensity so that the average value of the Y signal
output is 200mV, insert an R or B filter, and then measure both the difference in the signal level between
fields of the chroma signal (Cr, Cb) as well as the average value of the chroma signal output (CAr, CAb).
Substitute the values into the following formula.
Fci = (Ci/CAi) × 100 [%] (i = r, b)
10. Line crawls
Set to standard imaging condition II. Adjust the luminous intensity so that the average value of the Y signal
output is 200mV, and then insert a white subject and R, G, and B filters and measure the difference
between Y signal lines for the same field (Ylw, Ylr, Ylg, Ylb [mV]). Substitute the values into the
following formula.
Lci = (Yli/200) × 100 [%] (i = w, r, g, b)
11. Lag
Adjust the Y signal output value generated by strobe light to 200mV. After setting the strobe light so that it
strobes with the following timing, measure the residual signal (Ylag). Substitute the value into the following
formula.
Lag = (Ylag/200) × 100 [%]
FLD
V1
Strobe light
timing
Output
Light
Y signal output 200mV Ylag (lag)
– 11 –

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