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LZ23H3V1 Datasheet(PDF) 4 Page - Sharp Corporation

Part # LZ23H3V1
Description  1/3-type Interline Color CCD Area Sensor with 1 090 k Pixels
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Manufacturer  SHARP [Sharp Corporation]
Direct Link  http://sharp-world.com/
Logo SHARP - Sharp Corporation

LZ23H3V1 Datasheet(HTML) 4 Page - Sharp Corporation

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LZ23H3V1
4
CHARACTERISTICS (Drive method : 1/30 s frame accumulation)
(TA = +25 ˚C, Operating conditions : The typical values specified in "RECOMMENDED OPERATING CONDITIONS".
Color temperature of light source : 3 200 K, IR cut-off filter (CM-500, 1 mmt) is used.)
PARAMETER
SYMBOL
MIN.
TYP.
MAX.
UNIT
NOTE
Standard output voltage
VO
150
mV
2
Photo response non-uniformity
PRNU
10
%
3
Saturation output voltage
VSAT
450
530
mV
4
Dark output voltage
VDARK
0.5
3.0
mV
1, 6
Dark signal non-uniformity
DSNU
0.5
2.0
mV
1, 7
Sensitivity (green channel)
R
105
150
mV
8
Smear ratio
SMR
–75
–65
dB
9
NOTES :
• Within the recommended operating conditions of VOD,
VOFD of the internal output satisfies with ABL larger than
500 times exposure of the standard exposure conditions,
and VSAT larger than 330 mV.
1. TA = +60 ˚C
2. The average output voltage of G signal under uniform
illumination. The standard exposure conditions are
defined as when Vo is 150 mV.
3. The image area is divided into 10 x 10 segments under
the standard exposure conditions. Each segment's
voltage is the average output voltage of all pixels within
the segment. PRNU is defined by (Vmax – Vmin)/Vo,
where Vmax and Vmin are the maximum and minimum
values of each segment's voltage respectively.
4. The image area is divided into 10 x 10 segments. Each
segment's voltage is the average output voltage of all
pixels within the segment. VSAT is the minimum
segment's voltage under 10 times exposure of the
standard exposure conditions. The operation of OFDC is
high. (for still image capturing)
5. The image area is divided into 10 x 10 segments. Each
segment's voltage is the average output voltage of all
pixels within the segment. VSAT is the minimum
segment's voltage under 10 times exposure of the
standard exposure conditions. The operation of OFDC is
low.
6. The average output voltage under non-exposure
conditions.
7. The image area is divided into 10 x 10 segments under
non-exposure conditions. DSNU is defined by (Vdmax –
Vdmin), where Vdmax and Vdmin are the maximum and
minimum values of each segment's voltage respectively.
8. The average output voltage of G signal when a 1 000
lux light source with a 90% reflector is imaged by a lens
of F4, f50 mm.
9. The sensor is exposed only in the central area of V/10
square with a lens at F4, where V is the vertical image
size. SMR is defined by the ratio of the output voltage
detected during the vertical blanking period to the
maximum output voltage in the V/10 square.
10. The
sensor
is
exposed
at
the
exposure
level
corresponding to the standard conditions. AI is defined
by the ratio of the output voltage measured at the 1st
field during the non-exposure period to the standard
output voltage.
11. The sensor is exposed only in the central area of V/10
square, where V is the vertical image size. ABL is
defined by the ratio of the exposure at the standard
conditions to the exposure at a point where blooming is
observed.
12. The
sensor
is
exposed
at
the
exposure
level
corresponding to the standard conditions. LCR is defined
by (∆VG/VO) x 100, where ∆VG is the difference
between the average output voltage of G signal at the
1st field, and that of G signal at the 2nd field.
5
mV
410
330
11
500
ABL
Blooming suppression ratio
10
%
1.0
AI
Image lag
Output transistor drain current
IOD
4.0
8.0
mA
12
%
3.0
LCR
Line crawling


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