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 LZ2336
LZ2336
DESCRIPTION
Two-power supply (+5 V and +12 V) operation 1 / 3 type B/W CCD Area Sensor for EIA
PIN CONNECTIONS
16-PIN SDIP
TOP VIEW
U2336 is a 1 /3-type (6.0 mm) solid-state image sensor that consists of PN phote-diodes and CCDS (charge-coupled devices) driven by only positive voltages. Having approximately 190000 pixels (horizontal 384 X vertical 492), the sensor provides a stable B/W image.
d RS
RD
FEATURES
q Number of pixels : 362 (H) X 492 (V)
GND 0s OD d
H2B
,----_-- ------ ------ -- ,
, 1
Pixel pitch : 13.6 Mm (H) X 7.5 Am (V) Number of optical black pixels : Horizontal; front 2 and rear 20
q Low fixed pattern noise and lag q No sticking and no image distortion q Blooming suppression structure q Built-in output amplifier q Variable electronic shutter (1 /60 to 1/1 O 000S) q Compatible with EIA standard q Package : 16-pin SDIPICERDIP](WDIPO1 6-N-0500B)
I .--. ------ ------ ------
J
$ H2
dHIB
OFD GND
dTG
0s
OD RD d
,S
dH1
+H2
dHIB
dH2B
"In tie abwnce of conf!mtlon by device swIflcation sh=b, WARP Wes no reswsib(llv b any defeck hat cccur In quipmsnt us!ng any of SHARP's &vIces, zhom In catalcgs, I dats bwks, etc hnhct WARP (n waler to obb[n ti latest @mIon of tie dev(ce swdlcabon shwh bsti us!ng any SHARPs device
149
LZ2336 PIN DESCRIPTION
wOD
SYMBOL
PIN NAME
I Reset transistor drain Output transistor drain Video outl)ut ] Reset transistor gate clock Vertical shift register gate clock Horizontal shift register gate clock Transfer gate clock Overflow drain
Test terminal
I
0s
&dVl, dV2Yd V3, dV4 4HI,4H2,4H16,4H213
I
d TG OFD
TI
GND
Ground
ABSOLUTE MAXIMUM RATINGS
PARAMETER
Out~ut transistor drain voltage
Reset transistor drain voltage Test terminal, TI Reset sate clock voltage
(Ta = 2SC )
SYMBOL
VOD VRD VT1 vdRs Vdv V4H VdTG Vom
RATING
Oto Oto Oto
UNIT v
v v
+15
+15 +15
-0.3
to
+15
v v v v v `c `c
Vertical shift register clock voltage Horizontal shift register clock voltage
Transfer qate clock voltage
-0.3 to +15 -0.3 to +15 -0.3
to
+15 +27
Overflow drain voltage Storage temperature ODeratina ambient tem~rature
O to
Tstg Topr
- 4 0 t o +85
-20
to
+70
150
LZ2336 RECOMMENDED OPERATING CONDITIONS
PARAMHER
Operating ambient tem~rature Output transistor drain voltage Reset transistor drain voltage Overflow drain voltage When N is applied When pulse is applied p-p level
SYMSOL
Topr
MIN.
12.0
TYP.
25.0
MAX. 14.0 12.0
UNIT `c v v v v v
NOTE
Vm VRO Vom V40M
VT1
12.5 Voo
3,0 12.0 12.5
VOD
1 2 [ fi @ j
14.0
Test terminal, TI Ground voltage LOW level Transfer gate clock Vertical shift register clock Horizontal shift register clock Reset gate clink HIGH level LOW level HIGH level LOW level HIGH level LOW level HIGH level
GND V 4TGL V 4TGH
V4v14L V4v1-4H V 4H1-2L, V+ HIB-2BL - -
0.0
-0.05 12.0 0,05
4.7
v
0,05 14.0 0.05 6.0 0.05 6.0 Vm - 10,5
9.5
a
8 u
0.0 12.5 0.0 5.0 0,0 5.0
v v v v v v v v
kHz
MHz
0.05
4.7
~L
v
4H1-2H, VdHIB-ZBH
v4m v4R2n
f+v14
f+ Hi-2, f+ H1E2B
0.0
VRO -6.0 15.73
6.75
Vertical shift register clock frequency Horizontal shift register clock frequency Reset gate clock frequency Horizontal shift register clock phase
f+m
twl, tw2
6.75
MHz
0.0
5.0
10.0
ns
3
NOTES :
1. When DC voltage is applied, shutter speed is 1/@ seconds.
2. When pulse is applied, shutter speed is less than 1/60 seconds.
3" n_rL `Hi"
~ `H" " ,, :, ::
151
LZ2336 ELECTRICAL CHARACTERISTICS (Drive method : Field Accumulation)
(Ta=25C, Operating conditions : typical values for the recommended operating conditions, Color temperature of light source : 3200 K / IR cut-off filter (CM-500, 1 mmt))
PARAMETER
Photo response non-uniformity Saturation signal Dark output voltage Dark signal non-uniformity Sensitivity Smear ratio Image lag Blooming suppression ratio Output transistor drain current Output impedance . Tt?e standard output voltage is defined as 150 mV by the average output voltage under uniform illumination. q The standard exposure level is defined when the average output voltage is 150 mV under uniform illumination.
SYMBOL
PRNU Vsat Vdark DSNU R SMR Al ABL
iOD
MIN.
500
TYP.
MAX.
15
UNIT
`?/0
NOTE
2 3 1, 4 1, 5 6 7 8 9
mV
5.0
1.5 160 220 - 85
15.0 5.0
- 76 1.0
mV mV mV dB
0/0
1000 2.5 5.0 mA
Ro
400
Q
NOTES :
1. Ta : +60CC 2. The image area is divided into 10x 10 segments. The segment's voltage is the average output voltage of all the pixels within the segment. PRNU is defined by (Vmax - Vmin)/Vo, where Vmax and Vmin are the maximum and the minimum values of each segment's voltage respectively, when the average output voltage Vo is 150mV. 3. The image area is divided into 10x 10 segments. The saturation signal is defined as the minimum of each segment's voltage which is the average output voltage of all the pixels with!n the segment, when the exposure level is set as 10 times, compared to standard level, 4. The average output voltage under a non-exposure condition. 5. The image ~ea is d!vlded into 10x 10 segments. DSNU is defined by (Vdmex - Vdmin) under the non-exposure con-
6
7
8
9
dition where Vdmax and Vdmin are the maximum and the minimum values of each segment's voltage, respectively, that is the average output voltage over all pixels in the segment. The average output voltage when a 10W Iux I ight source attached with a 90"A reflector is imaged by a lens of F4, f50 mm. The sensor is adjusted to poslt(on a V/l O square at the center of image area where V is the vertical length of the image area, SMR is defined by the ratio of the output voltage detected during the vertical blanking period to the maximum of the pixel voltage in the V/l O square. The sensor is exposed at the exposure level corresponding to the standard condition preceding non-exposure condition. Al is defined by the ratio between the output voltage measured at the 1st field during the non-exposure period and the standard output voltage. The sensor is adjusted to position a V/l O square at the center of image area. ABL is the ratio between the exposure at the standard condition and the exposure at a point where a blooming is observed.
152
W2336 PIXEL STRUCTURE
OPTICAL BLACK (2 PIXELS) 362 (H) X 492
(v)
OPTICAL BLACK (20 PIXELS)
SPECTRAL RESPONSE EXAMPLE
100
80
/
\
20
o
400 800
1 Wo
1200
WAVE LENGTH (rim)
153
LZ2336 TIMING DIAGRAM EXAMPLE
VERTICAL TRANSFER TIMING
(ODD FIELD)
HD VD
525 1 mu
10 n n n
n
nnn u u n n u1 u n n u n n u u n n u u n n
nn u u n u u n
n u u n
n u u n
n u u n n
17
nnn u u n n u u n n u u n n u u n
nn u u n u u n n
nn u1 u n n u n n
I
17 1
n n
6TG
uuuuuuu
u n n u n n
~
u
n n
u n n
492
[u n n n n
u n
u n
nn
n II
nn
nn
~ +4 a + 6 ~ + 8 4 0
n
0s
(EVEN FIELD)
HD VD
485487489491
357911 i+++++ 2 4 6 8 10 12
JI
II
II
II
Iu
272 279
II
[ II
II Il.
263
1
~~~1 1
u
n u u
nnnn u u u u u
nn u u u n
n u u
n u u
nnn u u n u1 u n u n
4 V1
v
u
1
u
uu
u u
u u
u u
u u
u u
u
u
u
u
u~ u n n n n n nn n n
~~~~ U!l n d TG
483485467489491
nn
JI
6810 ::+++
0s
&26
&4;04;2
II
HORIZONTAL TRANSFER TIMING
HD
dH1
I
I
4,2 d es
0s
m~
...............362 OB(20) 0B(2) 1...0UTPUT(362) . . . . . . . . . . . . . . . . . . . . . .
I
I
I
I
U2336
READOUT (ODD FIELD)
4V4
n
dTG
I
I
(EVEN FIELD)
HD
d VI
d V2 r--
155
I
I
o
LZ2336
"$ ----
CCD OUT
O +RS O VOD O
I
L
I
I
o


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