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LZ0P3610

型号:

LZ0P3610

描述:

四分之一式内置镜头彩色CCD传感器面积与270的k个像素[ 1/4-type Built-in Lens Color CCD Area Sensors with 270 k Pixels ]

品牌:

SHARP[ SHARP ELECTRIONIC COMPONENTS ]

页数:

14 页

PDF大小:

127 K

LZ0P3610/3611/3612/3615  
1/4-type Built-in Lens Color CCD  
Area Sensors with 270 k Pixels  
LZ0P3610/3611/  
3612/3615∫  
∫Under development  
• Package  
DESCRIPTION  
– 14-pin half-pitch WLCC* type  
The LZ0P3610/11/12/15are 1/4-type (4.5 mm)  
270 000-pixel built-in lens color CCD (charge-  
coupled device) area sensors. With their small lens  
and WLCC-type flat package, it is possible to make  
ultra small color camera easily.  
– Base section size : 12 mm (H) x 11 mm (V)  
Outline dimensions (MAX.) : 18 mm (H) x 11 mm (V)  
• Package height  
– Approx. 10 mm (single lens) : LZ0P3610  
– Approx. 13 mm (two pcs. of lenses) :  
LZ0P3611/12/15∫  
FEATURES  
* Window Leadless Chip Carrier  
• Number of effective pixels : 512 (H) x 492 (V)  
• Number of optical black pixels  
– Horizontal : 2 front and 28 rear  
• Pixel pitch : 7.2 µm (H) x 5.6 µm (V)  
• Mg, G, Cy, and Ye complementary color filters  
• Low fixed-pattern noise and lag  
• Blooming suppression structure  
• Built-in output amplifier  
PIN CONNECTIONS  
14-PIN HALF-PITCH WLCC TYPE  
TOP VIEW  
OD  
ØRS  
NC1  
OS  
1
2
3
4
5
6
7
14 GND  
13 ØV4  
12 ØV3  
11 ØV2  
10 ØV1  
• Built-in overflow drain voltage circuit and reset  
gate voltage circuit  
• Horizontal shift register clock and reset gate clock  
voltage : 3.3 V (TYP.)  
• Variable electronic shutter (1/60 to 1/10 000 s)  
• Compatible with NTSC standard  
• Built-in optical low-pass-filter  
• Integrated lens :  
NC2  
ØH2  
ØH1  
9
8
PW  
OFD  
Horizontal viewing angle  
LZ0P3610 : 52˚  
LZ0P3611 : 50˚  
∫LZ0P3612 : 62˚  
∫LZ0P3615 : 115˚  
COMPARISON TABLE  
LZ0P3610  
52˚  
Single  
LZ0P3611  
∫LZ0P3612  
62˚  
Two pcs.  
∫LZ0P3615  
Horizontal viewing angle  
Number of integrated lenses  
Package height  
50˚  
115˚  
Approx. 10 mm  
Approx. 13 mm  
Characteristics  
Lens specification  
Refer to each following specification.  
In the absence of confirmation by device specification sheets, SHARP takes no responsibility for any defects that may occur in equipment using any SHARP devices shown in  
catalogs, data books, etc. Contact SHARP in order to obtain the latest device specification sheets before using any SHARP device.  
1
LZ0P3610/3611/3612/3615  
PIN DESCRIPTION  
SYMBOL  
PIN NAME  
Output transistor drain  
OD  
OS  
Output signals  
ØRS  
Reset transistor clock  
Vertical shift register clock  
Horizontal shift register clock  
Overflow drain  
ØV1, ØV2, ØV3, ØV4  
ØH1, ØH2  
OFD  
PW  
P-well  
GND  
Ground  
NC1, NC2  
No connection  
ABSOLUTE MAXIMUM RATINGS  
PARAMETER  
Output transistor drain voltage  
Overflow drain voltage  
(TA = +25 ˚C)  
UNIT NOTE  
V
SYMBOL  
VOD  
VOFD  
VØRS  
VØV  
RATING  
0 to +18  
Internal output  
Internal output  
–10.5 to +17.5  
–0.3 to +12  
–28 to 0  
0 to +15  
–20 to +70  
–10 to +60  
V
V
1
2
Reset gate clock voltage  
Vertical shift register clock voltage  
Horizontal shift register clock voltage  
Voltage difference between P-well and vertical clock  
Voltage difference between vertical clocks  
Storage temperature  
V
V
V
VØH  
VPW-VØV  
VØV-VØV  
TSTG  
V
3
˚C  
˚C  
Ambient operating temperature  
TOPR  
NOTES :  
1. Do not connect to DC voltage directly. When OFD is connected to GND, connect VOD to GND. Overflow drain clock is  
applied below 26 Vp-p.  
2. Do not connect to DC voltage directly. When ØRS is connected to GND, connect VOD to GND. Reset gate clock is  
applied below 8 Vp-p.  
3. When clock width is below 10 µs, and clock duty factor is below 0.1%, voltage difference between vertical clocks will be  
below 27 V.  
2
LZ0P3610/3611/3612/3615  
TYP. MAX. UNIT NOTE  
RECOMMENDED OPERATING CONDITIONS  
PARAMETER  
Ambient operating temperature  
Output transistor drain voltage  
Overflow drain clock p-p level  
Ground  
SYMBOL  
MIN.  
TOPR  
VOD  
VØOFD  
25.0  
14.55 15.0 15.45  
˚C  
V
21.5  
23.5  
V
V
V
1
2
GND  
0.0  
P-well voltage  
VPW  
–9.0  
–8.5  
VØVL  
–7.5  
VØV1L, VØV2L  
VØV3L, VØV4L  
VØV1I, VØV2I  
VØV3I, VØV4I  
VØV1H, VØV3H  
VØH1L, VØH2L  
VØH1H, VØH2H  
VØRS  
LOW level  
–8.0  
0.0  
V
V
Vertical shift  
register clock  
INTERMEDIATE level  
HIGH level  
LOW level  
HIGH level  
14.55 15.0 15.45  
V
V
V
V
Horizontal shift  
register clock  
–0.05  
3.0  
3.0  
0.0  
3.3  
3.3  
0.05  
5.25  
5.25  
Reset gate clock p-p level  
1
fØV1, fØV2  
fØV3, fØV4  
fØH1, fØH2  
fØRS  
Vertical shift register clock frequency  
15.73  
kHz  
Horizontal shift register clock frequency  
Reset gate clock frequency  
9.53  
9.53  
MHz  
MHz  
NOTES :  
• Connect NC1 and NC2 to GND directly or through a capacitor larger than 0.047 µF.  
1. Use the circuit parameter indicated in "SYSTEM CONFIGURATION EXAMPLE", and do not connect to DC voltage directly.  
2. VPW is set below VØVL that is low level of vertical shift register clock, or is used with the same power supply that is connected  
to VL of V driver IC.  
* To apply power, first connect GND and then turn on VOD. After turning on VOD, turn on PW first and then turn on other powers  
and pulses. Do not connect the device to or disconnect it from the plug socket while power is being applied.  
3
LZ0P3610/3611/3612/3615  
CHARACTERISTICS FOR LZ0P3610 (Drive method : Field accumulation)  
(TA  
: +25 ˚C, Operating conditions : The typical values specified in "RECOMMENDED OPERATING CONDITIONS"  
.
Color temperature of light source : 3 200 K)  
PARAMETER  
Standard output voltage  
Saturation output voltage  
Sensitivity  
Resolution (at center)  
Resolution (at corner)  
Shading  
SYMBOL  
VO  
VSAT  
R
MIN.  
TYP.  
150  
MAX.  
UNIT  
mV  
mV  
NOTE  
1
2
3
4
5
6
7
700  
400  
250  
150  
50  
500  
300  
200  
65  
mV  
TV line  
TV line  
%
%
mA  
Difference of center position  
Output transistor drain current  
±10  
8.0  
IOD  
4.0  
NOTES :  
1. The average output voltage in the central area (H/10,  
V/10) under uniform illumination.  
can be distinguished on the B/W video monitor.  
5. The resolution in the peripheral area (image height : Y =  
0.8) under the conditions mentioned above.  
6. Defined by the following formula at the brightness of  
standard output voltage : (Vco/Vce) x 100 [%]  
Vco : Output voltage at edge of the image (at video output).  
Vce : Output voltage at center of the image (at video output).  
7. The difference between the center position of image and  
that of the monitor. This is the ratio for the horizontal  
underscanning monitor size which includes the decentering  
eccentricity when turning the lens head one time.  
The standard exposure conditions are defined as when  
VO is 150 mV.  
2. The average output voltage in the central area (H/10,  
V/10) under 10 times exposure of the standard exposure  
conditions.  
3. The average output voltage in the central area (H/10,  
V/10) when a 1 000 lux light source with a white board  
of 90% reflector is imaged.  
4. The resolution in the central area (H/10, V/10) at which  
the image of the TV resolution chart (ex. EIAJ test chart)  
LENS SPECIFICATION FOR LZ0P3610  
PARAMETER  
Construction  
Focal length  
F No.  
SPECIFICATION  
NOTE  
Single (non-spherical, plastic)  
4.0 mm [TYP. : reference]  
2.8±5%  
Viewing angle  
TV distortion  
Focus adjustment range  
Torque of focusing  
H : 52˚, V : 40˚, Diagonal : 65˚ [TYP. : reference]  
≤ –3.2%  
∞ to 10 cm  
0.00005 to 0.001 N·m  
1
2
3
NOTES :  
1. TV distortion is defined by the formula, (∆y/y) x 100 [%]  
at capturing rectangular pattern sized horizontal by  
vertical as 4 by 3.  
2. The best focus point of an object can be obtained by  
turning the lens head within this range.  
3. Torques which are necessary for turning the lens.  
"y" is defined as the vertical height of the center of the  
horizontal line.  
∆y is defined as the difference between the vertical height  
of the center of the horizontal line and an edge of it.  
* Be careful not to remove the lens head by turning it  
counterclockwise too much when adjusting macro.  
∆y  
y
4
LZ0P3610/3611/3612/3615  
CHARACTERISTICS FOR LZ0P3611 (Drive method : Field accumulation)  
(TA  
: +25 ˚C, Operating conditions : The typical values specified in "RECOMMENDED OPERATING CONDITIONS"  
.
Color temperature of light source : 3 200 K)  
PARAMETER  
Standard output voltage  
Saturation output voltage  
Sensitivity  
Resolution (at center)  
Resolution (at corner)  
Shading  
SYMBOL  
VO  
VSAT  
R
MIN.  
TYP.  
150  
MAX.  
UNIT  
mV  
mV  
NOTE  
1
2
3
4
5
6
7
700  
400  
250  
150  
40  
500  
300  
200  
60  
mV  
TV line  
TV line  
%
%
mA  
Difference of center position  
Output transistor drain current  
±10  
8.0  
IOD  
4.0  
NOTES :  
1. The average output voltage in the central area (H/10,  
V/10) under uniform illumination.  
can be distinguished on the B/W video monitor.  
5. The resolution in the peripheral area (image height : Y =  
0.8) under the conditions mentioned above.  
6. Defined by the following formula at the brightness of  
standard output voltage : (Vco/Vce) x 100 [%]  
Vco : Output voltage at edge of the image (at video output).  
Vce : Output voltage at center of the image (at video output).  
7. The difference between the center position of image and  
that of the monitor. This is the ratio for the horizontal  
underscanning monitor size which includes the decentering  
eccentricity when turning the lens head one time.  
The standard exposure conditions are defined as when  
VO is 150 mV.  
2. The average output voltage in the central area (H/10,  
V/10) under 10 times exposure of the standard exposure  
conditions.  
3. The average output voltage in the central area (H/10,  
V/10) when a 1 000 lux light source with a white board  
of 90% reflector is imaged.  
4. The resolution in the central area (H/10, V/10) at which  
the image of the TV resolution chart (ex. EIAJ test chart)  
LENS SPECIFICATION FOR LZ0P3611  
PARAMETER  
Construction  
Focal length  
F No.  
SPECIFICATION  
NOTE  
2 pcs. (non-spherical, plastic)  
3.9 mm [TYP. : reference]  
2.8±5%  
Viewing angle  
TV distortion  
Focus adjustment range  
Torque of focusing  
H : 50˚, V : 38˚, Diagonal : 60˚ [TYP. : reference]  
≤ –1.0%  
∞ to 10 cm  
0.00005 to 0.001 N·m  
1
2
3
NOTES :  
1. TV distortion is defined by the formula, (∆y/y) x 100 [%]  
at capturing rectangular pattern sized horizontal by  
vertical as 4 by 3.  
2. The best focus point of an object can be obtained by  
turning the lens head within this range.  
3. Torques which are necessary for turning the lens.  
"y" is defined as the vertical height of the center of the  
horizontal line.  
∆y is defined as the difference between the vertical height  
of the center of the horizontal line and an edge of it.  
* Be careful not to remove the lens head by turning it  
counterclockwise too much when adjusting macro.  
∆y  
y
5
LZ0P3610/3611/3612/3615  
∫Under development  
CHARACTERISTICS FOR LZ0P3612(Drive method : Field accumulation)  
(TA : +25 ˚C, Operating conditions : The typical values specified in "RECOMMENDED OPERATING CONDITIONS".  
Color temperature of light source : 3 200 K)  
PARAMETER  
Standard output voltage  
Saturation output voltage  
Sensitivity  
SYMBOL  
VO  
MIN.  
TYP.  
150  
MAX.  
UNIT  
mV  
mV  
NOTE  
1
2
3
4
5
6
7
VSAT  
R
700  
400  
250  
150  
500  
300  
200  
50  
mV  
Resolution (at center)  
Resolution (at corner)  
Shading  
TV line  
TV line  
%
%
mA  
Difference of center position  
Output transistor drain current  
±10  
8.0  
IOD  
4.0  
NOTES :  
1. The average output voltage in the central area (H/10,  
V/10) under uniform illumination.  
can be distinguished on the B/W video monitor.  
5. The resolution in the peripheral area (image height : Y =  
0.8) under the conditions mentioned above.  
6. Defined by the following formula at the brightness of  
standard output voltage : (Vco/Vce) x 100 [%]  
Vco : Output voltage at edge of the image (at video output).  
Vce : Output voltage at center of the image (at video output).  
7. The difference between the center position of image and  
that of the monitor. This is the ratio for the horizontal  
underscanning monitor size which includes the decentering  
eccentricity when turning the lens head one time.  
The standard exposure conditions are defined as when  
VO is 150 mV.  
2. The average output voltage in the central area (H/10,  
V/10) under 10 times exposure of the standard exposure  
conditions.  
3. The average output voltage in the central area (H/10,  
V/10) when a 1 000 lux light source with a white board  
of 90% reflector is imaged.  
4. The resolution in the central area (H/10, V/10) at which  
the image of the TV resolution chart (ex. EIAJ test chart)  
LENS SPECIFICATION FOR LZ0P3612∫  
PARAMETER  
SPECIFICATION  
NOTE  
Construction  
Focal length  
F No.  
2 pcs. (non-spherical, plastic)  
3.0 mm [TYP. : reference]  
2.8±5%  
Viewing angle  
TV distortion  
Focus adjustment range  
Torque of focusing  
H : 62˚, V : 49˚, Diagonal : 74˚ [TYP. : reference]  
≤ –1.0%  
1
2
3
∞ to 10 cm  
0.00005 to 0.001 N·m  
NOTES :  
1. TV distortion is defined by the formula, (∆y/y) x 100 [%]  
at capturing rectangular pattern sized horizontal by  
vertical as 4 by 3.  
2. The best focus point of an object can be obtained by  
turning the lens head within this range.  
3. Torques which are necessary for turning the lens.  
"y" is defined as the vertical height of the center of the  
horizontal line.  
∆y is defined as the difference between the vertical height  
of the center of the horizontal line and an edge of it.  
* Be careful not to remove the lens head by turning it  
counterclockwise too much when adjusting macro.  
∆y  
y
6
LZ0P3610/3611/3612/3615  
∫Under development  
CHARACTERISTICS FOR LZ0P3615(Drive method : Field accumulation)  
(TA : +25 ˚C, Operating conditions : The typical values specified in "RECOMMENDED OPERATING CONDITIONS".  
Color temperature of light source : 3 200 K)  
PARAMETER  
Standard output voltage  
Saturation output voltage  
Sensitivity  
SYMBOL  
VO  
MIN.  
TYP.  
150  
MAX.  
UNIT  
mV  
mV  
NOTE  
1
2
3
4
5
6
7
VSAT  
R
700  
400  
500  
300  
200  
45  
mV  
Resolution (at center)  
Resolution (at corner)  
Shading  
TV line  
TV line  
%
%
mA  
Difference of center position  
Output transistor drain current  
±10  
8.0  
IOD  
4.0  
NOTES :  
1. The average output voltage in the central area (H/10,  
V/10) under uniform illumination.  
can be distinguished on the B/W video monitor.  
5. The resolution in the peripheral area (image height : Y =  
0.8) under the conditions mentioned above.  
6. Defined by the following formula at the brightness of  
standard output voltage : (Vco/Vce) x 100 [%]  
Vco : Output voltage at edge of the image (at video output).  
Vce : Output voltage at center of the image (at video output).  
7. The difference between the center position of image and  
that of the monitor. This is the ratio for the horizontal  
underscanning monitor size which includes the decentering  
eccentricity when turning the lens head one time.  
The standard exposure conditions are defined as when  
VO is 150 mV.  
2. The average output voltage in the central area (H/10,  
V/10) under 10 times exposure of the standard exposure  
conditions.  
3. The average output voltage in the central area (H/10,  
V/10) when a 1000 lux light source with a white board of  
90% reflector is imaged.  
4. The resolution in the central area (H/10, V/10) at which  
the image of the TV resolution chart (ex. EIAJ test chart)  
LENS SPECIFICATION FOR LZ0P3615∫  
PARAMETER  
SPECIFICATION  
NOTE  
Construction  
Focal length  
F No.  
2 pcs. (non-spherical, plastic)  
1.53 mm [TYP. : reference]  
2.8±5%  
Viewing angle  
TV distortion  
Focus adjustment range  
Torque of focusing  
H : 115˚, V : 89˚, Diagonal : 138˚ [TYP. : reference]  
≤ –14%  
1
2
3
∞ to 10 cm  
0.00005 to 0.001 N·m  
NOTES :  
1. TV distortion is defined by the formula, (∆y/y) x 100 [%]  
at capturing rectangular pattern sized horizontal by  
vertical as 4 by 3.  
2. The best focus point of an object can be obtained by  
turning the lens head within this range.  
3. Torques which are necessary for turning the lens.  
"y" is defined as the vertical height of the center of the  
horizontal line.  
∆y is defined as the difference between the vertical height  
of the center of the horizontal line and an edge of it.  
* Be careful not to remove the lens head by turning it  
counterclockwise too much when adjusting macro.  
∆y  
y
7
LZ0P3610/3611/3612/3615  
PIXEL STRUCTURE  
OPTICAL BLACK  
(2 PIXELS)  
OPTICAL BLACK  
(28 PIXELS)  
512 (H) x 492 (V)  
1 pin  
COLOR FILTER ARRAY  
(1, 492)  
(512, 492)  
Mg  
G
Mg  
G
Mg  
G
Mg  
G
Mg  
G
Cy Ye Cy Ye Cy  
Mg Mg  
Cy Ye Cy Ye Cy  
Mg Mg Mg  
Cy Ye Cy Ye Cy  
Ye Cy Ye Cy Ye  
Mg Mg Mg  
Ye Cy Ye Cy Ye  
Mg Mg  
Ye Cy Ye Cy Ye  
G
G
G
G
G
G
G
G
G
G
G
Mg  
Cy Ye Cy Ye Cy  
Mg Mg Mg  
Cy Ye Cy Ye Cy  
Mg Mg  
Cy Ye Cy Ye Cy  
G
Mg  
G
Mg  
Ye Cy Ye Cy Ye  
Mg Mg  
Ye Cy Ye Cy Ye  
Mg Mg Mg  
Ye Cy Ye Cy Ye  
G
Mg  
G
Mg  
G
G
G
G
G
EVEN  
field  
G
G
G
G
G
ODD  
field  
(1, 1)  
(512, 1)  
8
LZ0P3610/3611/3612/3615  
TIMING CHART  
(ODD FIELD)  
VERTICAL TRANSFER TIMING  
Shutter speed  
1/2 000 s  
19  
525  
1
10  
17  
HD  
VD  
ØV1  
ØV2  
ØV3  
ØV4  
ØOFD  
484 486 488 490 492  
485 487 489 491  
1
2
3
4
5
6
7
8
9
11  
+
+
+
+
+
+
+
+
+
+
10 12  
OS  
(EVEN FIELD)  
263  
272  
279  
282  
HD  
VD  
ØV1  
ØV2  
ØV3  
ØV4  
ØOFD  
483 485 487 489 491  
484 486 488 490 492  
2
3
4
5
6
7
8
9
10  
+
+
+
+
+
+
+
+
+
+
1
11  
OS  
HORIZONTAL TRANSFER TIMING  
606, 1  
60  
HD  
ØH1  
ØH2  
ØRS  
OS  
OB (2)  
OUTPUT (512) 1πππππππ  
512  
OB (28)  
29  
49  
ØV1  
ØV2  
ØV3  
59  
39  
24  
54  
34  
64  
ØV4  
62  
72  
ØOFD  
9
LZ0P3610/3611/3612/3615  
READOUT TIMING  
(ODD FIELD)  
1
60  
606, 1  
60  
HD  
242  
290  
29 49  
39 59  
29 49  
39 59  
ØV1  
161  
449  
ØV2  
ØV3  
290  
338  
24 54  
34  
180  
54  
64  
34  
64  
ØV4  
(EVEN FIELD)  
1
60  
606, 1  
60  
HD  
242  
290  
290  
29 49  
39 59  
ØV1  
ØV2  
161  
59  
338  
24 54  
34  
180  
54  
64  
ØV3  
ØV4  
450  
64  
10  
LZ0P3610/3611/3612/3615  
SYSTEM CONFIGURATION EXAMPLE  
OD  
ØRS  
NC1  
OS  
GND  
ØV4  
ØV3  
ØV2  
NC2  
ØH2  
ØH1  
ØV1  
PW  
OFD  
+
+
POFD  
VMb  
VL  
VOFDH  
VH3BX  
OFDX  
V2X  
V2  
V4  
V1X  
NC  
V3B  
V3A  
V1B  
V1A  
VMa  
VH  
VH1AX  
V3X  
VDD  
+
GND  
VH3AX  
V4X  
VH1BX  
+
11  
PACKAGES FOR CCD AND CMOS DEVICES  
PACKAGES  
(Unit : mm)  
14 WLCC TYPE  
+0  
–0.2  
18  
14  
12  
Approx. 10  
5.0  
+0  
–0.05  
0.8  
±0.1  
+0  
1.27  
0.64  
–0.1  
±0.1  
2.0  
±0.1  
4-90˚  
No.1 index  
+0  
–0.05  
2-C0.2  
+0  
+0  
–0.05  
–0.1  
±0.1  
2-Ø0.8  
No.1 index  
Height 0.5  
1.0  
Ø11.0  
+0  
–0.1  
±0.05  
Ø12.0  
11.0  
¿Applicable models¡  
LZ0P3610/LZ0P3620  
±0.05  
11.0  
14 WLCC TYPE  
+0  
–0.2  
+0  
–0.05  
0.8  
18  
14  
Approx.12-13  
5.0  
±0.1  
+0  
1.27  
0.64  
–0.1  
±0.1  
3.0  
±0.1  
12  
4-90˚  
No.1 index  
+0  
–0.05  
2-C0.2  
+0  
2-Ø0.8  
+0  
–0.05  
–0.05  
No.1 index  
Height 0.5  
±0.1  
2.0  
Ø11.0  
Ø12.0  
+0  
–0.05  
±0.05  
11  
¿Applicable models¡  
LZ0P3611/12/15,  
LZ0P3621/22/25,  
LZ0P3641/42/45/46  
±0.05  
11.0  
12  
PRECAUTIONS FOR BUILT-IN LENS CCD AREA SENSORS  
PRECAUTIONS FOR BUILT-IN LENS CCD  
AREA SENSORS  
1. Package Breakage  
2. Electrostatic Damage  
In order to prevent the package, the lens holder,  
and the lens from being broken, follow the  
instructions below :  
As compared with general MOS-LSI, CCD has  
lower ESD. Therefore, take the following anti-static  
measures when handling the CCD :  
1) The CCD is a precise optical component and  
the package-base material is ceramic.  
Therefore,  
1) Always discharge static electricity by grounding  
the human body and the instrument to be used.  
To ground the human body, provide resistance  
of about 1 M$ between the human body and  
the ground to be on the safe side.  
2) When directly handling the device with the  
fingers, hold the lens holder and do not touch  
the lead.  
3) To avoid generating static electricity,  
a. do not scrub the device with cloth or plastic.  
b. do not attach any tape or labels.  
c. do not clean the device with dust-cleaning  
tape.  
4) When storing or transporting the device, put it in  
a container of conductive material.  
øTake care not to drop the device when  
mounting, handling, or transporting.  
øAvoid giving a shock to the package.  
Especially when leads are fixed to the socket  
or the circuit board, a small shock could  
break the package more easily than when the  
package isn’t fixed.  
2) When adjusting the focus, screw the lens holder  
to the circuit board before soldering the leads.  
At that time, make sure to use a circuit board  
with plenty of strength, and to avoid the  
package and the lens holder from being broken,  
the following screw and clamp torque are  
recommended.  
3. Dust and Contamination  
ø Recommended mounting screw :  
Ø1.7 tapping screw (B-tight type),  
Length, L = the thickness of the circuit board  
+ 5 mm  
Dust or contamination on the surface of the lens  
and the inside of the lens holder could deteriorate  
the output characteristics or cause a scar. In order  
to minimize dust or contamination on the device,  
take the following precautions :  
1) Do not remove the lens from the body.  
Especially when adjusting macro, be careful not  
to remove the lens by turning it counter-  
clockwise too much.  
2) Do not touch the surface of the lens with the  
fingers. If dust or contamination gets on the  
surface of the lens, the following cleaning  
method is recommended :  
ø Recommended clamp torque : 0.012 N·m  
[however, when the thickness of the circuit  
board is thinner than t = 2.0 mm]  
3) If any damage or breakage occurs on the  
surface of the lens, its characteristics could  
deteriorate.  
Therefore,  
ø Do not hit the lens.  
ø Do not give a shock large enough to cause  
distortion.  
ø Do not scrub or scratch the surface of the  
lens.  
ø Handle the built-in lens CCD in a clean  
environment such as a cleaned booth. (The  
cleanliness level should be, if possible, class  
1 000 at least.)  
– Even a soft cloth or applicator, if dry, could  
cause dust to scratch the lens.  
13  
PRECAUTIONS FOR BUILT-IN LENS CCD AREA SENSORS  
ø Dust from static electricity should be blown  
ø Make sure there is no dust or contamination  
on the lens and screw it on the lens holder.  
off with an ionized air blower. For anti-  
electrostatic measures, however, ground all  
the leads on the device before blowing off  
the dust.  
4. Other  
1) Soldering should be manually performed under  
the following conditions :  
ø The contamination on the surface of the lens  
should be wiped off with a clean applicator  
soaked in isopropyl alcohol. Wipe slowly and  
gently in one direction only.  
– Frequently replace the applicator and do not  
use the same applicator to clean more than  
one device.  
ø Use ESD-measured soldering iron  
ø The conditions of the soldering time in which  
the soldering iron touches the package,  
differs by the shape and the temperature of  
the iron end. Refer to the table below and  
take great care in soldering.  
THE SHAPE OF  
THE TEMPERATURE OF  
THE IRON END  
SOLDERING TIME  
THE IRON END  
R0.5  
Time touching the package should be less than 40 seconds  
Below 350 ˚C  
17  
17  
(Unit : mm)  
(Unit : mm)  
Time touching the package should be less than 25 seconds  
Time touching the package should be less than 35 seconds  
Below 300 ˚C  
Below 275 ˚C  
6.5  
0.5  
– In case where the soldering may exceed the  
time mentioned above, resume the work  
after the device returns to normal  
temperature.  
2) There is no guarantee of the performance of  
the device which has been removed or  
resoldered after being soldered once under the  
conditions mentioned above.  
ø Do not put too much force onto the lens and  
the lens holder while soldering.  
ø Be careful not to let the soldering iron touch  
the lens holder.  
– Soldering can be quickly/neatly done by  
laying the soldering iron so it lightly touches  
the border between the package and the  
circuit board and sliding it in sideways.  
– In case there seems to be an inferior device,  
consult with our sales office before removing  
it.  
3) Avoid using or storing the CCD at high  
temperature or high humidity as it is a precise  
optical component. Do not give a mechanical  
shock to the CCD.  
4) Do not expose the device to strong light. For  
the color device, long exposure to strong light  
will fade the color of the color filters.  
14  
厂商 型号 描述 页数 下载

APITECH

LZ0402B105MBNBB [ Data Line Filter, 1 Function(s), 25V, 0.05A, EIA STD PACKAGE SIZE 0402, 2 PIN ] 4 页

APITECH

LZ0402B105MBNBT [ Data Line Filter, 1 Function(s), 25V, 0.05A, EIA STD PACKAGE SIZE 0402, 2 PIN ] 4 页

APITECH

LZ0402Y155MBNBB [ Data Line Filter, 1 Function(s), 25V, 0.05A, EIA STD PACKAGE SIZE 0402, 2 PIN ] 4 页

APITECH

LZ0402Y155MBNBT [ Data Line Filter, 1 Function(s), 25V, 0.05A, EIA STD PACKAGE SIZE 0402, 2 PIN ] 4 页

APITECH

LZ0402Y205MBNBB [ Data Line Filter, 1 Function(s), 25V, 0.05A, EIA STD PACKAGE SIZE 0402, 2 PIN ] 4 页

APITECH

LZ0402Y205MBNBT [ Data Line Filter, 1 Function(s), 25V, 0.05A, EIA STD PACKAGE SIZE 0402, 2 PIN ] 4 页

APITECH

LZ0402Z824MBNBT [ Data Line Filter, 1 Function(s), 25V, 0.05A, EIA STD PACKAGE SIZE 0402, 2 PIN ] 4 页

APITECH

LZ0603A103MCNAB [ Data Line Filter, 1 Function(s), 25V, 0.1A, EIA STD PACKAGE SIZE 0603, 2 PIN ] 4 页

APITECH

LZ0603A103MCNAT [ Data Line Filter, 1 Function(s), 25V, 0.1A, EIA STD PACKAGE SIZE 0603, 2 PIN ] 4 页

APITECH

LZ0603A104MCNAB [ Data Line Filter, 1 Function(s), 25V, 0.1A, EIA STD PACKAGE SIZE 0603, 2 PIN ] 4 页

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