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INCH IMAGE SENSOR CCIR INCH IMAGE SENSOR CCIR KC73129-M inte


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KC73129-M
INCH IMAGE SENSOR CCIR
INCH IMAGE SENSOR CCIR
KC73129-M interline transfer area image sensor developed CCIR 1/3inch video cameras. used door phone, surveillance camera, object detection pattern recognition.
CERDIP
FEATURES
High Sensitivity Optical Size 1/3inch Format Variable Speed Electronic Shutter Dark Current High antiblooming Smear Horizontal Register Drive 16pin Ceramic Package Field Integration Read System
ORDERING INFORMATION
Device KC73129-M Package 16pin CERDIP Operating Temperature -10°C 50°C
STRUCTURE
Number total pixels Number effective pixels 6.00mm(H) 4.95mm(V) 9.80µm(H) Refer from below figure
Chip size
Unit pixel size Optical blacks dummy
PIN1
Dummy Pixels Optical Black Pixels Effective Pixels
Effective Imaging Area V-CCD OUTPUT H-CCD
KC73129-M
BLOCK DIAGRAM
INCH IMAGE SENSOR CCIR
VERTICAL SHIFT REGISTER
HORIZONTAL SHIFT REGISTER
VERTICAL SHIFT REGISTER
VERTICAL SHIFT REGISTER
VERTICAL SHIFT REGISTER
VOUT
DESCRIPTION
Symbol
Description
Vertical Transfer Clock Vertical Transfer Clock Vertical Transfer Clock Substrate Voltage Vertical Transfer Clock Protective Bias Voltage Ground Output drain Voltage
Symbol
VOUT
Description
Signal Output Output Gate Voltage Output Source Voltage Ground Reset Drain Voltage Charge Reset Clock Horizontal Transfer Clock Horizontal Transfer Clock
KC73129-M
ABSOLUTE MAXIMUM RATINGS
Characteristics Substrate Voltage Supply Voltage Vertical Clock Input Voltage Horizontal Clock Input Voltage Voltage Difference between Vertica Horizontal Clock Input Pins Output Clock Protection Circuit Bias Voltage Operating Temperature Storage Temperature
INCH IMAGE SENSOR CCIR
Symbols SUB-GND VDD, VRD,VOUT,VSS- V1,V2,V3,V4-GND V1,V2,V3,V4-VL H1,H2 V1,V2,V3,V4 H1,H2 H1,H2 RS,VGG TOPR TSTG
Min. -0.3 -0.3 -0.3 -0.3 -0.3 -0.3 -0.3
Max.
Unit
Warning Device destructive when absolute maximum rating voltage over.
CHARACTERISTICS
setting level transfer clock waveform
Item
Output Drain Voltage Output Gate Voltage Output Source Voltage Substrate Voltage Adjust Range Fluctuation Range after Voltage Protection Circuit Bias Voltage Output Stage Drain Current
Symbol
Min.
Typ.
Max.
Unit
Remark
14.55 15.0 15.5 Ground through 14.0
CLOCK VOLTAGE CONDITIONS
Item
Read-out Clock Voltage Vertical Transfer Clock Voltage Horizontal Transfer Clock Voltage Charge Reset Clock Voltage Substrate Clock Voltage
Symbol
VH1, VM1, VL1, HH1, HL1,
Min.
14.5 -0.2 -9.6 -0.2 -0.2
Typ.
15.0 -9.0 10.0
Max.
15.5 -8.2 11.5
Unit
Remark
High level Midium level level High level level High level level
KC73129-M
INCH IMAGE SENSOR CCIR
DRIVE CLOCK WAVEFORM CONDITIONS
Read clock waveform
100%
Vertical transfer clock waveform
VVHH VVHL VVH3 VVHL
VVHH
VVL1 VVLH VVLL
VVL3 VVLL
VVLH
VVHH
VVHH
VVHL
VVHH
VVHH
VVH2
VVHL
VVHL
VVH4
VVHL
VVL2 VVLL
VVLH VVLL
VVLH
VVL4
KC73129-M
INCH IMAGE SENSOR CCIR
Horizontal transfer clock waveform diagram
Reset gate clock waveform diagram
VRGH
Point waveform
VRGL 0.5V VRGL
VRGLH VRGLL
waveform
VRGLH maximum value VRGLL minimum value coupling waveform period from Point diagram about rise =(VRGLH +VRGLL RG=VRGH -VRGL
Substrate clock waveform
100%
VSUB
VSUB
KC73129-M
INCH IMAGE SENSOR CCIR
CLOCK EQUIVALENT CIRCUIT CONSTANT
Item
Capacitance between Vertical Transfer Clock
Symbol
CV1, CV2, CV12, CV34 CV23 CV41 CV13 CV24 CH1, CH12 CSUB RH1,
Typ.
1,300 1,300 1120
Unit
Remark
Capacitance between Vertical Transfer Clocks
Capacitance between Horizontal Transfer Clock Capacitance between Horizontal Transfer Clocks Capacitance between Reset Gate Clock Capacitance between Substrate Clock Vertical Transfer Clock Serial Resistor Vertical Transfer Clock Ground Resistor Horizontal Transfer Clock Serial Resistor Reset Gate Clock Serial Resistor
CV41
CV23
KC73129-M
INCH IMAGE SENSOR CCIR
IMAGE SENSOR CHARACTERISTICS
Item
Sensitivity Saturation Signal Smear Blooming Margin Uniformity Dark Signal Flicker
Symbol
YSAT
Min.
Typ.
Max.
Unit
mV/lux times
Test method
Remark
0.015 1,000
SPECTRAL RESPONSE CHARACTERISTICS
Excluding light source characteristics
SPECTRAL DISTRIBUTION RELATIVE RESPONSE RELATIVE RESPONSE
WAVE LENGTH(nm)
KC73129-M
TEST CONDITION
INCH IMAGE SENSOR CCIR
light source with color temperature 3,200K light source adjusted accordance with average value signals indicated each item. Through following tests substrate voltage reset gate clock value bias condition while device condition typical value bias clock conditions. Through following tests, defects excluded unless otherwise specified optical black level (hence forth referred reference output signal which taken signal output.
TEST METHODE
Measure light intensities when averaged illuminance output value standard illuminance output value, 150mV when half 150mV (1/2
L1YA
Adjust light intensity times that signal output average value value (Y=Y
150mV) then test signal minimum
Adjust light intensity times that signal output average value 150mV), then remove read-out clock drain signal photosensors electronic shutter operation respective horizontal blanking times with other clocks unchanged. Measure maximum illuminance output value SM).
100(%)
Adjust light indensity 1000 times that signal output average value dose appear.
150mv), then confirm that Blooming
Measure maximum minimum illuminance output value
YMIN) when light Intensity adjusted make
YMAX YMIN 100(%)
Measure signal output average value [mV] with horizontal idling time transfer level reference, when device ambient temperature light sources shielded. Adjust light intensity make Measure difference value between averaged illuminance signal values even fields.
KC73129-M
APPLICATION CIRCUITS
INCH IMAGE SENSOR CCIR
22µH XSUB XSG1 XSG3
10µF /10V
KS7221D
22µH
KC73129-M
0.47µF /20V
0.47µF /20V
VOUT
10µF /10V
10µF /20V
22µH
22µH OUTPUT
4.7K KSC1623 MA110 100K 3.3µF /20V
47µF /10V
3.3K
3.9K
180K
KSC2757
/20V
KC73129-M
READ-OUT CLOCK TIMING CHART
INCH IMAGE SENSOR CCIR
Unit:
FIELD
38.1
EVEN FIELD
KC73129-M
INCH IMAGE SENSOR CCIR
CLOCK TIMING CHART (VERTICAL SYNC.)
CLP1
CLOCK TIMING CHART (HORIZONTAL SYNC.)
XSHP XSHD CLP1 (During electronic shutter operation)
KC73129-M
PACKAGE DIMENSIONS
INCH IMAGE SENSOR CCIR
(Unit=mm) Center effective imaging area/ Center package 7.00 t=0.25+0.02
8.00+0.10 10.20+0.10
12.40+0.12
6.20
8.00+0.10 10.20+0.10 14.00+0.12
Rotation error =1.5
1.10+0.08 3.00+0.25 1.27+0.25 3.00
0.46+0.10 1.78+0.5 12.46+0.10 13.60+0.12
0.91+0.10
Optical center deviation from mechanical center ±0.15mm direction. Optical surface height from glass surface =1.1 ±0.15mm Optical surface height from package backside bottom =1.7 ±0.10mm
KC73129-M
HANDLING INSTRUCTIONS
INCH IMAGE SENSOR CCIR
Static charge prevention image sensors easily damaged static discharge. Before handling sure take following protective measures. chargeable gloves, clothes material. Also conductive shoes. When handling directly, earth band. Install conductive floor working table prevent generation static electricity. Ionized recommended discharging when handling image sensor. shipment mounted substrates, boxes treated prevention static charges. Soldering Make sure package temperature does exceed Solder dipping mounting furnace causes damage glass other defects. grounded soldering iron solder each less than seconds. repairs remount, cool sufficiently. dismount imaging device, solder suction equipment. When using electronic disoldering tool, thermal controler zero cross On/Off type connect ground Dust Dirt protection Operate clean environments (around class 1000 will appropriate). either touch glass plates hand have object come contact with glass surface. Should dirt stick glass surface blow with blow (for dirt stuck through static electricity ionized recommended). Clean with cotton ethyl alcohol glass surface grease stained. carful scratch glass. Keep case protect from dust dirt. prevent condensation, preheat precool when moving room whith great temperature differences. When protective tape applied before shipping, just before remove tape applied electrostatic protection. reuse tape. expose strong light (sun rays) long period, color filter discolored Exposure high temperatures humidity will affect characteristics. Accordingly avoid storage usage such conditions. image sensors precise optical equipment that should subject mechanical shocks.

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