CXD3609R SONY | Alldatasheet

Document overview

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Technical content

Features

  • Base oscillation frequency 57.2/72MHz  Electronic shutter function  Supports draft/monitoring mode  T rigger shutter function  Vertical driver for CCD image sensor

Applications

 Digital still cameras  Image processor Structure Silicon gate CMOS IC Applicable CCD Image Sensors ICX274 (T ype 1/1.8, 2020K pixels) Pin Configuration Absolute Maximum Ratings  Supply voltage V DD Vss – 0.3 to +7.0 V VL –10.0 to Vss V VH VL – 0.3 to +26.0 V  Input voltage V I Vss – 0.3 to VDD + 0.3 V  Output voltage VO1 Vss – 0.3 to VDD + 0.3 V VO2 VL – 0.3 to VSS + 0.3 V VO3 VL – 0.3 to VH + 0.3 V  Operating temperature T opr –20 to +75 °C  Storage temperature Tstg –55 to +150 °C Recommended Operating Conditions  Supply voltage VDD a 3.0 to 5.25 V VDD b, VDD c 3.0 to 3.6 V VM 0.0 V VH 14.5 to 15.5 V VL –7.0 to –8.0 V  Operating temperature T opr –20 to +75 °C ∗ Groups of pins enclosed in the figure indicate sections for which power supply separation is possible. 1 2 3 4 5 6 7 8 9 10 11 12 252627282930313233343536

48 H2A

V DD 3 VDD 4 XSHP XSHD PBLK CLPDM OBCLP ADCLK V SS 4 CKO CKI TEST TRIG V DD 5 MCKO SSI SCK SEN VR HR V SS 5 H1B VDD 2 H1A VSS 2 RG SSGSL VDD 1 WEN ID/EXP SNCSL RST VSS 1 SUB V3C V3B VL V3A V2C V2B VH V2A VM

– 2 – CXD3609R Block Diagram 35 34 V2A V2B V2C WEN ID/EXP OBCLP CLPDM PBLK VSS 4 VDD 4 VR HR 367VDD 1 129 VDD 5 VSS 1 VSS 5 MCKO CKO CKI 27TEST RST 28TRIG

23 ADCLK

14 VSS 3

– 3 – CXD3609R Pin Description Pin No. Symbol I/O I I O O I O O O O O O O O O O O O I

Description

Internal system reset input. High: Normal operation, Low: Reset control. Normally apply reset during power-on. Schmitt trigger input/protective diode on power supply side Control input used to switch sync system. High: CKI sync, Low: MCKO sync. With pull-down resistor Vertical direction line identification pulse output/exposure time identification pulse output. Switching possible using the serial interface data. (Default: ID) Memory write timing pulse output. Internal SSG enable. High: Internal SSG valid, Low: External sync valid. With pull-down resistor 3.3V power supply. (Power supply for common logic block) CCD reset gate pulse output. Logic phase adjustment possible using the serial interface data. GND CCD horizontal register clock output. Logic phase adjustment possible using the serial interface data. 5/3.3V power supply. (Power supply for H) CCD horizontal register clock output. Logic phase adjustment possible using the serial interface data. CCD horizontal register clock output. Logic phase adjustment possible using the serial interface data. GND CCD horizontal register clock output. Logic phase adjustment possible using the serial interface data. 5/3.3V power supply. (Power supply for H) 3.3V power supply. (Power supply for CDS) CCD precharge level sample-and-hold pulse output. Logic phase adjustment possible using the serial interface data. CCD data level sample-and-hold pulse output. Logic phase adjustment possible using the serial interface data. Pulse output for horizontal and vertical blanking period pulse cleaning. CCD dummy signal clamp pulse output. CCD optical black signal clamp pulse output. The horizontal OB pattern can be changed using the serial interface data. Clock output for analog/digital conversion IC. Logic phase adjustment possible using the serial interface data. GND Inverter output. Inverter input. V SS 1 RST SNCSL ID/EXP WEN SSGSL V DD 1 RG V SS 2 H1A V DD 2 H1B H2A VSS 3 H2B V DD 3 VDD 4 XSHP XSHD PBLK CLPDM OBCLP ADCLK VSS 4 CKO CKI

– 4 – CXD3609R Pin No. Symbol TEST TRIG VDD 5 MCKO SSI SCK SEN VR HR VSS 5 VM V2A VH V2B V2C V3A VL V3B V3C SUB I/O I I O I I I I/O I/O I O O O O O O O O O IC test pin. normally fixed to GND. With pull-down resistor T rigger mode. Normally fix to power supply. 3.3V power supply. (Power supply for common logic block) System clock output for signal processing IC. Serial interface data input for internal mode settings. Schmitt trigger input/protective diode on power supply side. Serial interface data input for internal mode settings. Schmitt trigger input/protective diode on power supply side. Serial interface data input for internal mode settings. Schmitt trigger input/protective diode on power supply side. Vertical sync signal input/output. Horizontal sync signal input/output. GND GND (GND for vertical driver) CCD vertical register clock output. CCD vertical register clock output. CCD vertical register clock output. 15.0V power supply. (Power supply for vertical driver) CCD vertical register clock output. CCD vertical register clock output. CCD vertical register clock output. –7.5V power supply. (Power supply for vertical driver) CCD vertical register clock output. CCD vertical register clock output. CCD electronic shutter pulse output.

– 5 – CXD3609R

Electrical Characteristics

DC Characteristics (Within the recommended operating conditions) ∗1 These input pins are Schmitt trigger inputs, and have a protective diode on the power supply side in the IC. Therefore, they do not support 5V input. ∗2 This input pin is with pull-down resistor in the IC. Note) The above table indicates the condition for 3.3V drive. Item Pins Symbol Conditions Min. T yp. Max. Unit Supply voltage 1 Supply voltage 2 Supply voltage 3 Input voltage 1∗1 Input voltage 2∗2 Input voltage 3 Input/output voltage Output voltage 1 Output voltage 2 Output voltage 3 Output voltage 4 Output voltage 5 Output current 1 Output current 2 VDD 2, VDD 3 VDD 4 VDD 1, VDD 5 RST, SSI, SCK, SEN SNCSL, SSGSL, TEST TRIG VR, HR H1A, H1B, H2A, H2B XSHP , XSHD, PBLK, ADCLK, OBCLP , CLPDM CKO RG, MCKO ID/EXP , WEN V2A/B/C, V3A/B/C, V1, V4 SUB V DD a VDD b VDD c Vt+ Vt– VIH1 VIL1 VIH1 VIL1 VIH2 VIL2 VOH1 VOL1 VOH2 VOL2 VOH3 VOL3 VOH4 VOL4 VOH5 VOL5 VOH6 VOL6 IOL IOM1 IOM2 IOH IOSL IOSH Feed current where IOH = –1.2mA Pull-in current where IOL = 2.4mA Feed current where IOH = –22.0mA Pull-in current where IOL = 14.4mA Feed current where IOH = –3.3mA Pull-in current where IOL = 2.4mA Feed current where IOH = –6.9mA Pull-in current where IOL = 4.8mA Feed current where IOH = –3.3mA Pull-in current where IOL = 2.4mA Feed current where IOH = –2.4mA Pull-in current where IOL = 4.8mA V1, V2A to C, V3A to C, V4 = –8.25V V1, V2A to C, V3A to C, V4 = –0.25V V2A to C, V3A to C = 0.25V V2A to C, V3A to C = 14.75V SUB = –8.25V SUB = 14.75V 3.0 3.0 3.0 0.8VDD c 0.7VDD c 0.8VDD c 0.8VDD c VDD c – 0.8 VDD a – 0.8 VDD b – 0.8 VDD c – 0.8 VDD c – 0.8 VDD c – 0.8 10.0 5.0 5.4 3.3 3.3 3.3 5.25 3.6 3.6 0.2V DD c 0.3VDD c 0.2VDD c 0.2VDD c 0.4 0.4 0.4 0.4 0.4 0.4 –5.0 –7.2 –4.0 V V V V V V V V V V V V V V V V V V V V V V V mA mA mA mA mA mA

– 6 – CXD3609R Inverter Input Characteristics for Base Oscillation Clock Duty Adjustment Item Logical Vth Input voltage Input amplitude Pins CKI Symbol LVth VIH VIL VIN Conditions fmax = 50MHz sine wave Min. 0.7VDD c 0.3 Ty p. VDD c/2 Max. 0.3VDD c Unit V V V Vp-p Note)Input voltage is the input voltage characteristics for direct input from an external source. Input amplitude is the input amplitude characteristics in the case of input through a capacitor. Switching Characteristics (VH = 15.0V , VM = GND, VL = –7.5V) Item Rise time Fall time Output noise voltage Symbol TTLM TTMH TTLH TTML TTHM TTHL VCLH VCLL VCMH VCML Conditions VL to VM VM to VH VL to VH VM to VL VH to VM VH to VL Min. 200 200 200 200 Typ. 350 350 350 350 Max. 500 500 500 500 1.0 1.0 1.0 1.0 Unit ns ns ns ns ns ns V V V V Notes) 1) The MOS structure of this IC has a low tolerance for static electricity, so full care should be given for measures to prevent electrostatic discharge. 2) For noise and latch-up countermeasures, be sure to connect a by-pass capacitor (0.1µF or more) between each power supply pin (VH, VL) and GND. 3) T o protect the CCD image sensor, clamp the SUB pin output at VH before input to the CCD image sensor.

– 7 – CXD3609R Switching Waveforms Waveform Noise V2A (V2B, V2C, V3A, V3B, V3C) V1 (V4) SUB TTMH TTHM VH VM VL VM VL VH VL 90% 10% 90% 10%TTLM TTLM 90% 10% 90% 10% TTLH TTHL 90%90% 10% 10% TTML 90% 10% TTML 90% 10% VCMH VCML VM VL VCLH VCLL

– 8 – CXD3609R Measurement Circuit 1 2 3 4 5 6 7 8 9 11 12 2527282930313233343536 VR CKI C5C5C4 CXD3609R Serial interface data HR +3.3V –7.5V +15.0V C2 C2 R1 R1 C2C2 C2C2 C2C2 C1 C1 C1: 3300pF C2: 560pF C3: 820pF C4: 2pF C5: 97pF at 4-ch output C6: 10pF R1: 30Ω R2: 10Ω 194pF at 2-ch output

– 9 – CXD3609R AC Characteristics AC characteristics between the serial interface clocks (Within the recommended operating conditions) Symbol ts1 th1 ts2 ts3 Definition SSI setup time, activated by the rising edge of SCK SSI hold time, activated by the rising edge of SCK SCK setup time, activated by the rising edge of SEN SEN setup time, activated by the rising edge of SCK Min. T yp. Max. Unit ns ns ns ns Serial interface clock internal loading characteristics (1) ∗ Be sure to maintain a constantly high SEN logic level near the falling edge of the HR in the horizontal period during which V2A/B/C and V3A/B/C values take the ternary value and during that horizontal period. (Within the recommended operating conditions) Symbol ts1 th1 Definition SEN setup time, activated by the falling edge of HR SEN hold time, activated by the falling edge of HR Min. T yp. Max. Unit ns µs SSI 0.2VDD c 0.2VDD c 0.8VDD c ts2 th1ts1 ts3 0.8VDD c 0.8VDD c SCK SEN SEN VR HR HR SEN th1ts1 Enlarged view Example: During progressive scan (high-speed sweep present) V2A V2A 0.2VDD c 0.8VDD c 0.2VDD c ∗ Restriction for the operating frequency of 36MHz.

– 10 – CXD3609R Serial interface clock internal loading characteristics (2) ∗ Be sure to maintain a constantly high SEN logic level near the falling edge of VR. (Within the recommended operating conditions) Symbol ts1 th1 Definition SEN setup time, activated by the falling edge of VR SEN hold time, activated by the falling edge of VR Min. 200 T yp. Max. Unit ns ns Serial interface clock output variation characteristics Normally, the serial interface data is loaded to the CXD3609R at the timing shown in "Serial interface clock internal loading characteristics (1)" above. However, one exception to this is when the data such as STB is loaded to the CXD3609R and controlled at the rising edge of SEN. See "Description of Operation". (Within the recommended operating conditions) Symbol tpdPULSE Definition Output signal delay, activated by the rising edge of SEN Min. T yp. Max. 100 Unit ns VR HR SEN th1ts1 VR HR 0.2VDD c 0.8VDD c 0.2VDD c Enlarged view Example: During progressive scan (high-speed sweep present) RST loading characteristics (Within the recommended operating conditions) Symbol tw1 Definition RST pulse width Min. T yp. Max. Unit ns RST 0.2VDD c tw1 0.8VDD c 0.8VDD c SEN Output signal tpdPULSE

– 11 – CXD3609R VR and HR phase characteristics (Within the recommended operating conditions) Symbol ts1 th1 Definition VR setup time, activated by the falling edge of HR VR hold time, activated by the falling edge of HR Min. T yp. Max. Unit ns ns HR loading characteristics MCKO load capacitance = 10pF (Within the recommended operating conditions) Symbol ts1 th1 Definition HR setup time, activated by the rising edge of MCKO HR hold time, activated by the rising edge of MCKO Min. T yp. Max. Unit ns ns Output variation characteristics WEN and ID/EXP load capacitance = 10pF (Within the recommended operating conditions) Symbol tpd1 Definition Time until the above outputs change after the rise of MCKO Min. T yp. Max. Unit ns 0.2VDD c VR HR ts1 th1 0.2VDD c0.2VDD c 0.8VDD c HR MCKO ts1 th1 0.2VDD c0.2VDD c 0.8VDD cMCKO WEN, ID/EXP tpd1

– 12 – CXD3609R Description of Operation Pulses output from the CXD3609R are controlled mainly by the RST pin and by the serial interface data. The Pin Status T able is shown below, and the details of serial interface control are described on the following pages. Pin Status Table ∗1 It is for output. For input, all items are "ACT". Note)ACT means that the circuit is operating, and DIS means that loading is stopped. L indicates a low output level, and H a high output level in the controlled status. Also, VH, VM and VL indicate the voltage levels applied to VH (Pin 41), VM (Pin 37) and VL (Pin 45), respectively, in the controlled status. Note that in sleep mode and standby mode, VH and VL power supply should be stopped together with the CCD image sensor. L ACT ACT L ACT ACT ACT L L VM VM VM VM VM VM VM VM VH Pin No. Symbol VSS 1 RST SNCSL ID/EXP WEN SSGSL VDD 1 RG VSS 2 H1A VDD 2 H1B H2A VSS 3 H2B VDD 3 VDD 4 XSHP XSHD PBLK CLPDM OBCLP ADCLK VSS 4 CAM SLP STB RST Pin No. Symbol CKO CKI TEST TRIG VDD 5 MCKO SSI SCK SEN VR HR VSS 5 VM V2A VH V2B V2C V3A VL V3B V3C SUB CAM SLP STB RST ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT L L VM VM VH VH VH VH VH VH VH L ACT ACT L ACT ACT ACT L L VM VM VH VH VH VH VH VH VH ACT ACT DIS ACT DIS DIS DIS H H VM VL VM VM VM VL VL VL VL SSTSST ACT ACT L L ACT L L L L L L L L L L L ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT ACT L L ACT L L L L L L L L L L L ACT ACT L L ACT L L L L L L L L L L L L ACT L L ACT ACT ACT ACT ACT ACT ACT ACT H H H ACT

– 13 – CXD3609R Serial Interface Control The CXD3609R basically loads and reflects the serial interface data sent in the following format. The position at which the data is reflected differs depending on the data, but normally the data is reflected at the rising edge of SEN, the falling edge of VR, or immediately before the readout block. See the load column for the reflection position of each data. Note that as an exception, data loading is subject to restrictions during trigger shutter drive and long-time exposure. See these separate items for details. There are three categories of serial interface data: the CXD3609R drive control data (hereafter "control data"), electronic shutter data (hereafter "shutter data") and trigger shutter data (hereafter "TRIG data"). The details of each data are described below. SSI SCK SEN 00 01 02 03 04 05 06 07 42 4341 44 45 46 47

– 14 – CXD3609R Data D00 to D07 D08, D09 D10, D11 D12 to D15 D16 D17 D18, D19 D20 to D22 D23 D24, D25 D26, D27 D28, D29 D30, D31 D32 D33 D34, D35 D36, D37 D38, D39 D40 to D47 Symbol CHIP CTG MODE OSCH TRIGSL SMD STPHS LDHS LDRG LDSP LDSD EXP PTOB LDAD STB Function Chip enbale Category switching Drive mode switching Base oscillation switching TRIG control switching Electronic shutter mode switching H block stop control (2ch) H block logic phase adjustment RG logic phase adjustment XSHP logic phase adjustment XSHD logic phase adjustment ID/EXP output switching OBCLP waveform pattern switching ADCLK logic phase adjustment Standby control Data = 1 10000001 → Enabled Other values → Disabled See Category. See Drive mode. 28MHz 36MHz OFF ON See Electronic shutter mode switching. 4ch 2ch See Logic phase adjustment. See Logic phase adjustment. See Logic phase adjustment. See Logic phase adjustment. ID EXP See OBCLP waveform pattern. See Logic phase adjustment. See Standby. Control Data RST All All All All All All All All All All All All All Data = 0

– 15 – CXD3609R Data D00 to D07 D08, D09 D10 to D13 D14 to D23 D24 to D35 D36, D37 D38 to D47 Symbol CHIP CTG SVR SHR SPL Function Chip enable Category switching Electronic shutter vertical period specification Electronic shutter horizontal period specification High-speed shutter position specification Data = 0 Data = 1 10000001 → Enabled Other values → Disabled See Category. See Electronic shutter. See Electronic shutter. See Electronic shutter. Shutter Data RST All All All All All All All

– 16 – CXD3609R Data D00 to D07 D08, D09 D10, D11 D12 D13 to D23 D24 to D35 D36 to D40 D42 to D47 Symbol CHIP CTG TRHS TRSH TRSG SINT Function Chip enable Category switching (Under trigger shutter drive) High-speed sweep switching (Under trigger shutter drive) Electronic shutter horizontal period specification (Under trigger shutter drive) SG generation position specification Electronic shutter fine adjustment specification Data = 0 Data = 1 10000001 → Enabled Other values → Disabled See Category. Present Not present See T rigger shutter. See T rigger shutter. See Electronic shutter. TRIG Data RST All All All All All All All All

– 17 – CXD3609R Detailed Description of Each Data Shared data: D08 and D09 CTG [Category] Of the data provided to the CXD3609R by the serial interface, the CXD3609R loads D10 and subsequent data to each data register as shown in the table below according to the combination of D08 and D09 . D09 D08 Description of operation Loading to control data register Loading to shutter data register Loading to TRIG data register T est mode Note that the CXD3609R can apply these categories consecutively within the same vertical period. However, care should be taken as the data is overwritten if the same category is applied.

– 18 – CXD3609R Control data: D12 to D15 MODE [Drive mode] The CXD3609R realizes various drive modes using control data D12 to D15 MODE. The drive mode-related bits are loaded to the CXD3609R and reflected at the falling edge of VR. The details are described below. The various basic drive modes are switched using the upper two bits D12 and D13 of the control data MODE. Draft mode is the mode called 2/4-line readout mode in the ICX274. Monitoring mode is the mode called 2/8-line readout mode in the ICX274. This is a drive mode with an even higher frame rate than draft mode that can be used for purposes such as monitoring and auto focus (AF). Progressive scan mode is the ICX274 drive mode in which the data for all lines are read. Vertical transfer high- speed sweep period present/not present can be selected. See the ICX274 data sheet for details of the readout lines for other modes. The periods and Timing Charts when each mode is driven with the internal SSG are listed below. D14 Description of operation (D13/12) = (0, 0) Draft Draft Center scan 1 Center scan 2 D15 (D13/12) = (0, 1) Monitoring Monitoring AF1 AF2 (D13/12) = (1, 0) Progressive scan (high- speed sweep not present) Progressive scan (high- speed sweep not present) Center scan 3 Progressive scan (high- speed sweep present) (D13/12) = (1, 1) Addition 1 Addition 1 Addition 1 Addition 1 Progressive scan Progressive scan – High-speed sweep – Center scan 3 Draft Addtion Center scan 1 Center scan 2 Monitoring AF1 AF2 Mode Drive frequency fps Internal SSG period Hotizontal Vertical Normal High-speed sweep Frame shift Readout 1920ck 2070ck 2352ck Chart-11 Chart-13 Chart-12 1492H + 1860ck 1251H + 480ck 1741H + 1530ck 1563H + 1021ck × 2 497H + 1260ck 625H + 1200ck 692H + 810ck 870H + 900ck 692H + 810ck 870H + 900ck 461H + 1230ck 580H + 601ck 461H + 1230ck 580H + 601ck 405H + 1470ck × 2 510H + 1680ck 202H + 1323ck × 2 255H + 840ck 101H + 1323ck 127H + 1596ck Chart-1 Chart-4 Chart-7 Chart-7.1 Chart-2 Chart-10 Chart-5 Chart-5.1 Chart-6 Chart-6.1 Chart-3 Chart-8 Chart-8.1 Chart-9 Chart-9.1 Chart-23 Chart-29 Chart-25 Chart-26 Chart-27 Chart-28 Chart-24 Chart-30 Chart-4 Chart-16 Chart-15 Chart-17 Chart-18 Chart-20 Chart-19 Chart-21 Chart-22 120 V-Chart H-Chart

– 19 – CXD3609R Control data: D16 OSCH [Drive frequency pattern switching] This switches the internal SSG VR pattern. Change the base oscillation frequency applied to CKI to match each pattern. D14 Description of operation 28MHz operation drive 36MHz operation drive Control data: D17 TRIGSL [TRIG control switching] This sets the TRIG pulse standby mode for performing TRIG drive. See TRIG control for a detailed description of TRIG drive. Control data: D18 and D19 SMD [Electronic shutter mode switching] This enables the various electronic shutter settings. See Shutter control for a detailed description of shutter drive. D19 Description of operation Electronic shutter off Electronic shutter on Readout stopped setting, electronic shutter off Readout stopped setting, a part of electronic shutter enabled D18 Control data: D23 STPHS [H block stop control] This adjusts the driving capability by outputting the H driver output on 4ch or 2ch. During 2ch output, the H1B and H2B pins are stopped. In addition, the load applied to the CXD3609R increases during 2ch output, so use of an external driver should also be considered depending on the situation. D23 Description of operation 4ch output 2ch output Control data: D24 and D25 LDHS [H block logic phase] This indicates the H block logic phase adjustment data. The default is 0°. D25 D24 Degree of adjustment (°) 180 270 Control data: D26 to D31 LDRG, LDSP , LDSD [Each pulse logic phase] These indicate the RG, XSHP and XSHD logic phase adjustment data. The adjustment width is the same as for LDHS. The default is 0°.

– 20 – CXD3609R Control data: D33 EXP [ID/EXP output switching] The ID/EXP pin (Pin 4) output can be switched to the ID pulse or the EXP pulse using D33 EXP . The default is the "ID" pulse. See the Timing Charts for the ID pulse. The EXP pulse indicates the exposure time when it is high. Normally, high is indicated from the falling edge of the last SUB to the falling edge of the next SG. Note that the EXP pulse changes as follows when SUB does not rise. Mode Draft, 2-line addition 2, center scan 1 2-line addition 1, center scan 2 Monitoring, progressive scan, center scan 3, AF1, AF2 Last SG generation position 600, 750ck 1128, 1278ck 1100, 1250ck EXP pulse rise point 804ck 1296ck 1322ck Also, switching between ID and EXP is performed at the ID reset timing (the ID transition point during the horizontal period with each V1A/B/C and V3A/B/C ternary output), and the pulse is also reset to low at this point. See the explanatory diagrams under Electronic shutter for an image of ID/EXP pulse changes. Control data: D34 and D35 PTOB [OBCLP waveform pattern] This indicates the OBCLP waveform pattern. The default is "Normal".Control data: D36 and D37 LDAD [ADCLK logic phase] This indicates the ADCLK logic phase adjustment data. The default is "90°" relative to MCKO. D37 D36 Degree of adjustment (°) 180 270 Control data: D38 and D39 STB [Standby] The operating mode is switched as follows. However, the standby bits are loaded to the CXD3609R and control is applied immediately at the rising edge of SEN. See the Pin Status T able for the pin status in each mode. D39 X D38 Operating mode CAM SLP SST STB Normal operating mode Sleep mode Siesta mode Standby mode Symbol D35 D34 Waveform pattern (Normal) (Shifted rearward) (Shifted forward) (Wide)

– 21 – CXD3609R Shutter data: [Electronic shutter] The CXD3609R realizes various electronic shutter functions by using shutter data D18 and D19 SMD and shutter data D14 to D23 SVR, D24 to D35 SHR, D38 to D47 SPL and TRIG data D42 to D47 SINT . These functions are described in detail below. First, the various modes are shown below. These modes are switched using control data D13 and D14 SMD. MSB D35 X D34 D33 D32 D31 D30 D29 D28 LSB C → SHR is expressed as 1C3h . D27 D26 D25 D24 [Electronic shutter stopped mode] During this mode, all shutter data items are invalid. SUB is not output in this mode, so the shutter speed is the accumulation time for one field. [High-speed/low-speed shutter mode] The electronic shutter data is expressed as shown in the table below using D24 to D35 SHR as an example. However, MSB (D35) is a reserve bit for the future specification, and it is handled as a dummy on this IC.Symbol SVR SHR SPL SINT Data Shutter: D14 to D23 Shutter: D24 to D35 Shutter:D38 to D47 TRIG: D42 to D47 Number of vertical periods specification (000h ≤ SVR ≤ 3FFh) Number of horizontal periods specification (000h ≤ SHR ≤ 3FFh) Vertical period specification for high-speed shutter operation (000h ≤ SPL ≤ 3FFh) SUB position specification (mentioned later for details) Note)The bit data definition area is assured in terms of the CXD3609R functions, and does not assure the CCD characteristics. Description of SVR, SHR and SPL Operations The period during which SVR and SHR are specified together is the shutter speed. An image of the exposure time calculation formula is shown below. In actual operation, the precise exposure time is calculated from the operating frequency, VR and HR periods, decoding value during the horizontal period, and other factors. Here, SG means sensor gate, that is to say, ternary value of V2A/B/C and V3A/B/C. (Exposure time) = SVR × (1V period) + {(number of HR per 1V) – (SHR + 1)} × (1H period) + (distance from SUB↓ to SG↓ during the readout period) During this mode, the shutter data items have the following meanings. D14 Description of operation Electronic shutter stopped mode High-speed/low-speed shutter mode Readout stopped mode, Electronic shutter stopped mode Readout stopped mode, High-speed shutter mode D13 SVR Invalid SHR SPL Invalid SINT Readout block stop Invalid Valid Valid Invalid Valid Invalid Valid Valid

– 22 – CXD3609R Further, SPL can be used during this mode to specify the SUB output at the optional vertical period during the low-speed shutter period. In the case below, SUB is output based on SHR at the SPL vertical period out of (SVR + 1) vertical periods. Incidentally, SPL is counted as "000h", "001h", "002h" and so on in conformance with SVR. At this time even if SPL > SVR is set, operation conforms to the state when SPL = SVR. Using this function it is possible to achieve smooth exposure time transitions when changing from low-speed shutter to high-speed shutter or vice versa. VR SUB WEN EXP SHR 002h 10Fh 000h 050h SVR SHR SVR SMD Exposure time V2A SPL VR SUB WEN EXP SHR 002h 10Fh 000h 0A3h SVR SHR SVR 001h 000hSPL SMD Exposure time 000 001 002 V2A Concretely, when specifying high-speed shutter, SVR is set to "000h". (See the figure.) During low-speed shutter, or in other words when SVR is set to "001h" or higher, the serial interface data is not loaded until this period is finished. The vertical period indicated here corresponds to one field in each drive mode. In addition, the number of horizontal periods applied to SHR can be considered as (number of SUB pulses – 1).

– 23 – CXD3609R Description of SINT Operation The exposure time can be finely adjusted by specifying the TRIG data: D42 to D47 SINT in this setting. Concretely, this specifies the SUB output position during the horizontal period where the last SUB specified by SHR is output. The setting values are shown in the table below. When this function is disabled, the internal counter is also stopped. This function makes it possible to smoothly shift the exposure time even during ultra-high-speed shutter operation. Posi- tion Serial bits Progressive scan, center scan 3 Monitoring, AF1, AF2 Draft, 2-line addtion, center scan 1, center scan 2 D47/D46 D45 D44 D43 D42 A B C D E F G H I J K L M N O P ↑ position↓ position↑ position↓ position↑ position↓ position 187∗ 307 427 547 667 787 907 1027 1147 1267 1387 1507 1627 1747 1867 1987 (67) 247∗ 367 487 607 727 847 967 1087 1207 1327 1447 1567 1687 1807 1927 (7) 2047 (127) 619∗ 766 913 1060 1207 1354 1501 1648 1795 1942 2089 2236 2383 (31) 2530 (178) 2677 (325) 2824 (472) 679∗ 826 973 1120 1267 1414 1561 1708 1855 2002 2149 2296 2443 (91) 2590 (238) 2737 (385) 2884 (532) 334∗ 463 592 721 850 979 1108 1237 1366 1495 1624 1753 1882 2011 2140 (76) 2269 (205) 394∗ 523 652 781 910 1039 1168 1297 1426 1555 1684 1813 1942 2071 (1) 2200 (130) 2329 (259) HR P AB C D LM N O MNO P J K L 1920/2352/2070 Progressive scan, center scan 3 Monitoring, AF1, AF2 OPAB KLMN Draft, 2-line addition, center scan 1, center scan 2 A C

– 24 – CXD3609R [Readout stopped setting, electronic shutter stopped] This controls the V2A/B/C and V3A/B/C ternary outputs (readout pulse block). When this control is active, ternary output and modulation are stopped in the readout block. This realizes long-time exposure that is not limited by the internal counter. [Readout stopped setting, high-speed shutter enabled] This controls the V2A/B/C and V3A/B/C ternary outputs (readout pulse block). When this control is active, ternary output and modulation are stopped in the readout portion. In addition, electronic shutter SHR and SINT are enabled. This realizes optional long-time exposure that is not limited by the internal counter. VR SUB VCK WEN EXP 00SMD Exposure time V2A VR SUB VCK WEN EXP 00SMD Exposure time 10Fh 050hSHR V2A

– 25 – CXD3609R [TRIG control] The CXD3609R has a trigger shutter function for loading images at an optional timing. This control is different from the conventional electronic shutter in that it is a shutter mode that it allows optional setting of the exposure start time. When the trigger signal is applied to the TRIG pin with control data D17 TRIGSL set to ON (trigger standby mode), the TRIG data is loaded and reflected at the next HR falling edge. In addition, the exposure time (shutter speed) for this control is set by TRIG data D13 to D23 TRSH and D24 to D35 TRSG. In standby mode, SUB rises every 1H, and the charge accumulated in the sensor is constantly discarded. In addition, the V clocks (V1 to V4) also constantly operate, so the undesired charge inside the vertical CCD is eliminated. Therefore, the SG pulse stops until the external trigger is input, which means that the video cannot be monitored until the external trigger is input and signal readout is performed. After the external trigger is input, the preset number of shutter pulses and SG are generated. Note that when the serial data specifies number of SUB pulses > SG generation position, operation is the same as when number of SUB pulses = SG generation position. When the SG position is not input 2H or more before the VR falling edge, VR is not accepted internally and trigger drive continues. When exposure is completed under any conditions other than the above, the exposure charge is transferred and output using the falling edge of VR as the reference. In this case, V1 to V4, CLPDM, CLPOB, PBLK and other pulses outside the readout block are output in the same manner as progressive scan mode. When transfer finishes, the trigger standby mode repeats. Note that during trigger standby mode and trigger drive, serial data other than the following are not accepted, regardless of VR. In addition, TRIG is not accepted during trigger drive. Serial data accepted even during trigger standby and drive [Control data] STB, [Control data] TRIGSL, [TRIG data] TRHS, TRSH and TRSG Recovery to normal mode returns to the mode before entering the trigger standby mode. VR TRIG SUB WEN EXP TRSG TRSH MODE TRHS TRIGSL Exposure time V2A Progressive scan mode Trigger standby mode Trigger drive Trigger out driveTrigger standby mode Progressive scan mode Trigger input not accepted 1C3h 100h 1C3h 0 0100 TRSG TRSH TRSH

– 26 – CXD3609R Chart-1 Vertical Direction Timing Chart MODE Progressive scan mode – high-speed sweep not present – 28MHz (36MHz) drive Applicable CCD image sensor  ICX274 ∗ The number of SUB pulses is determined by the serial interface data. This chart shows the case where SUB pulses are output in all horizontal periods. ∗ ID/EXP of this chart shows ID. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component. ∗ During 28MHz drive, the VR period is 1493H, and at 1493H one horizontal period is 1860ck. During 36MHz drive, the VR period is 1252H, and at 1252H one horizontal period is 480ck. VR HR SUB V2A/B/C CCD OUT PBLK OBCLP CLPDM ID/EXP WEN V3A/B/C 1251 1236 1235 1236 1235 1493 (1252) 1493 (1252) A A 1251

– 27 – CXD3609R Chart-2 Vertical Direction Timing Chart MODE Draft mode 28MHz (36MHz) drive Applicable CCD image sensor  ICX274 ∗ The number of SUB pulses is determined by the serial interface data. This chart shows the case where SUB pulses are output in all horizontal periods. ∗ ID/EXP of this chart shows ID. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component. ∗ During 28MHz drive, the VR period is 693H, and at 693H one horizontal period is 810ck. During 36MHz drive, the VR period is 871H, and at 871H one horizontal period is 900ck. VR HR SUB V2C CCD OUT PBLK OBCLP CLPDM ID/EXP WEN V2A/B V3C V3A/B 693 (871) 693 (871) 1236 1235 1236 1235 1231 1232 A 624 624 A

– 28 – CXD3609R Chart-3 Vertical Direction Timing Chart MODE Monitoring mode 28MHz (36MHz) drive Applicable CCD image sensor  ICX274 ∗ The number of SUB pulses is determined by the serial interface data. This chart shows the case where SUB pulses are output in all horizontal periods. ∗ ID/EXP of this chart shows ID. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component. ∗ During 28MHz drive, the VR period is 407H, and at 406H and 407H one horizontal period is 1470ck. During 36MHz drive, the VR period is 511H, and at 511H one horizontal period is 1680ck. VR HR SUB V2A CCD OUT PBLK OBCLP CLPDM ID/EXP WEN V2B/C V3A V3B/C 407 (511) 407 (511) 1233 1230 1233 1230 1225 1225 A 313 313

– 29 – CXD3609R Chart-4 Vertical Direction Timing Chart MODE Progressive scan mode – high-speed sweep present – 28MHz (36MHz) drive Applicable CCD image sensor  ICX274 ∗ The number of SUB pulses is determined by the serial interface data. This chart shows the case where SUB pulses are output in all horizontal periods. ∗ ID/EXP of this chart shows ID. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component. ∗ During 28MHz drive, the VR period is 1742H, and at 1742H one horizontal period is 1530ck. During 36MHz drive, the VR period is 1565H, and at 1564H and 1565H one horizontal period is 1021ck. VR HR SUB V2A/B/C CCD OUT PBLK OBCLP CLPDM ID/EXP WEN V3A/B/C 1322 1236 1235 101236 1235 AD AD 1742 (1565) 1742 (1565) 1322

– 30 – CXD3609R Chart-5 Vertical Direction Timing Chart MODE Center scan 1 mode 28MHz drive Applicable CCD image sensor  ICX274 ∗ The number of SUB pulses is determined by the serial interface data. This chart shows the case where SUB pulses are output in all horizontal periods. ∗ ID/EXP of this chart shows ID. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component. ∗ At 462H one horizontal period is 1230ck. VR HR SUB V2C CCD OUT PBLK OBCLP CLPDM ID/EXP WEN V2A/B V3C V3A/B 462 1055 188 191 192 195 1055 1052 460 452 462 460 452 18 188 191 192 195 ADB ADB 1052

– 31 – CXD3609R Chart-5.1 Vertical Direction Timing Chart MODE Center scan 1 mode 36MHz drive Applicable CCD image sensor  ICX274 ∗ The number of SUB pulses is determined by the serial interface data. This chart shows the case where SUB pulses are output in all horizontal periods. ∗ ID/EXP of this chart shows ID. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component. ∗ At 581H one horizontal period is 601ck. VR HR SUB V2C CCD OUT PBLK OBCLP CLPDM ID/EXP WEN V2A/B V3C V3A/B 581 581 1188 1187 1188 1187 1184 1184 1183 1183 578 578 ADB ADB 577 577

– 32 – CXD3609R Chart-6 Vertical Direction Timing Chart MODE Center scan 2 mode 28MHz drive Applicable CCD image sensor  ICX274 ∗ The number of SUB pulses is determined by the serial interface data. This chart shows the case where SUB pulses are output in all horizontal periods. ∗ ID/EXP of this chart shows ID. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component. ∗ At 462H one horizontal period is 1230ck. VR HR SUB V2C CCD OUT PBLK OBCLP CLPDM ID/EXP WEN V2A/B V3C V3A/B 188 191 192 195 1055 1053 1052 1050 186 189 190 193 188 191 192 195 1055 1053 1052 1050 186 189 190 193 1051 1049 1048 1046 DB DB 454 462 454 462 A A

– 33 – CXD3609R Chart-6.1 Vertical Direction Timing Chart MODE Center scan 2 mode 36MHz drive Applicable CCD image sensor  ICX274 ∗ The number of SUB pulses is determined by the serial interface data. This chart shows the case where SUB pulses are output in all horizontal periods. ∗ ID/EXP of this chart shows ID. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component. ∗ At 581H one horizontal period is 601ck. VR HR SUB V2C CCD OUT PBLK OBCLP CLPDM ID/EXP WEN V2A/B V3C V3A/B 1188 1186 1187 1185 1184 1182 1183 1181 1188 1186 1187 1185 1184 1182 1183 1181 ADB ADB 578 581 578 581 577 577

– 34 – CXD3609R Chart-7 Vertical Direction Timing Chart MODE Center scan 3 mode 28MHz drive Applicable CCD image sensor  ICX274 ∗ The number of SUB pulses is determined by the serial interface data. This chart shows the case where SUB pulses are output in all horizontal periods. ∗ ID/EXP of this chart shows ID. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component. ∗ At 498H one horizontal period is 1260ck. VR HR SUB V2A/B/C CCD OUT PBLK OBCLP CLPDM ID/EXP WEN V3A/B/C 840 839 397 398 840 839 397 398 ADB D B 479 498 497 479 497 A498

– 35 – CXD3609R Chart-7.1 Vertical Direction Timing Chart MODE Center scan 3 mode 36MHz drive Applicable CCD image sensor  ICX274 ∗ The number of SUB pulses is determined by the serial interface data. This chart shows the case where SUB pulses are output in all horizontal periods. ∗ ID/EXP of this chart shows ID. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component. ∗ At 626H one horizontal period is 1200ck. VR HR SUB V2A/B/C CCD OUT PBLK OBCLP CLPDM ID/EXP WEN V3A/B/C 908 907 329 330 908 907 329 330 ADB ADB 625 626 610 610 626 625

– 36 – CXD3609R Chart-8 Vertical Direction Timing Chart MODE AF1 mode 28MHz drive Applicable CCD image sensor  ICX274 ∗ The number of SUB pulses is determined by the serial interface data. This chart shows the case where SUB pulses are output in all horizontal periods. ∗ ID/EXP of this chart shows ID. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component. ∗ At 203H and 204H one horizontal period is 1323ck. VR HR SUB V2A CCD OUT PBLK OBCLP CLPDM ID/EXP WEN V2B/C V3A V3B/C 958 286 289 953 958 286 289 953 ADB ADB 204 202 191 204 202 191

– 37 – CXD3609R Chart-8.1 Vertical Direction Timing Chart MODE AF1 mode 36MHz drive Applicable CCD image sensor  ICX274 ∗ The number of SUB pulses is determined by the serial interface data. This chart shows the case where SUB pulses are output in all horizontal periods. ∗ ID/EXP of this chart shows ID. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component. ∗ At 256H one horizontal period is 840ck. VR HR SUB V2A CCD OUT WEN V2B/C V3A V3B/C 1089 153 158 1089 1086 153 158 1086 ADB ADB 256 255 249 256 255 249 PBLK OBCLP CLPDM ID/EXP

– 38 – CXD3609R Chart-9 Vertical Direction Timing Chart MODE AF2 mode 28MHz drive Applicable CCD image sensor  ICX274 ∗ The number of SUB pulses is determined by the serial interface data. This chart shows the case where SUB pulses are output in all horizontal periods. ∗ ID/EXP of this chart shows ID. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component. ∗ At 102H one horizontal period is 1323ck. VR HR SUB V2A CCD OUT PBLK OBCLP CLPDM ID/EXP WEN V2B/C V3A V3B/C 705 537 542 702 705 537 542 702 ADB ADB 101 102 101 102

– 39 – CXD3609R Chart-9.1 Vertical Direction Timing Chart MODE AF2 mode 36MHz drive Applicable CCD image sensor  ICX274 ∗ The number of SUB pulses is determined by the serial interface data. This chart shows the case where SUB pulses are output in all horizontal periods. ∗ ID/EXP of this chart shows ID. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component. ∗ At 128H one horizontal period is 1596ck. PBLK OBCLP CLPDM ID/EXP VR HR SUB V2A CCD OUT WEN V2B/C V3A V3B/C 769 473 478 766 769 473 478 766 ADB ADB 128 127 109 128 127 109

– 40 – CXD3609R Chart-10 Vertical Direction Timing Chart MODE 2-line addition mode 28MHz (36MHz) drive Applicable CCD image sensor  ICX274 ∗ The number of SUB pulses is determined by the serial interface data. This chart shows the case where SUB pulses are output in all horizontal periods. ∗ ID/EXP of this chart shows ID. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component. ∗ During 28MHz drive, the VR period is 693H, and at 693H one horizontal period is 810ck. During 36MHz drive, the VR period is 871H, and at 871H one horizontal period is 900ck. PBLK OBCLP CLPDM ID/EXP VR HR SUB CCD OUT WEN V2A/B V3A/B 693 (871) 626 693 (871) 626 1236 1234 1235 1233 1232 1230 1231 1229 1236 1234 1235 1233 1232 1230 1231 1229 A A V2C V3C

– 41 – CXD3609R Chart-11 Horizontal Direction Timing Chart MODE Progressive scan mode – high-speed sweep present/not present – 28MHz (36MHz) drive Center scan 3 mode 28MHz (36MHz) drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. ∗ ID/EXP and WEN are output at the timings shown above at the vertical positions shown in Chart-1 and Chart-7. HR H1A/B H2A/B MCKO PBLK OBCLP (1) OBCLP (4) V2A/B/C 1920 CLPDM 300100 200 400 70 124 106 160 52 142 V3A/B/C 88 178 SUB 187 247 52 256 296284 52 284 OBCLP (2) 4420 3410 OBCLP (3) 5026 10 50 158 282 ID/EXP 258 158 WEN

– 42 – CXD3609R Chart-12 Horizontal Direction Timing Chart MODE Monitoring mode 28MHz (36MHz) drive AF1 and AF2 mode 28MHz (36MHz) drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. ∗ ID/EXP and WEN are output at the timings shown above at the vertical positions shown in Chart-3, Chart-8 and Chart-9. HR H1A/B H2A/B MCKO PBLK OBCLP (1) OBCLP (4) V2A/B/C CLPDM V3A/B/C SUB OBCLP (2) OBCLP (3) ID/EXP WEN 2352 0 600200 400 800 70 214 88 178 688 728716 52 716 4420 3410 5026 10 50 158 714690 158 100 300 500 700 124 268 358 412 502 556 106 250160 304 394 448 538 592 142 286 196 340 430 484 574 232 322 376 466 520 610 619 679

– 43 – CXD3609R Chart-13 Horizontal Direction Timing Chart MODE Draft mode 28MHz (36MHz) drive 2-line addition mode 28MHz (36MHz) drive Center scan 1 and center scan 2 mode 28MHz (36MHz) drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. ∗ ID/EXP and WEN are output at the timings shown above at the vertical positions shown in Chart-2, Chart-5, Chart-6 and Chart-10. HR H1A/B H2A/B MCKO PBLK OBCLP (1) OBCLP (4) V2A/B/C CLPDM V3A/B/C SUB OBCLP (2) OBCLP (3) ID/EXP WEN 2070 0 400300 214 88 178 406 446434 52 434 4420 3410 5026 10 50 158 432408 158 100 200 500 12470 268 106 250160 304 142 286196 232 322 334 394

– 44 – CXD3609R Chart-14 Horizontal Direction Timing Chart (D: high-speed sweep) MODE Progressive scan mode – high-speed sweep present – 28MHz (36MHz) drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. HR 1920 71H 1ck1800200 400 100 300 500 70 430214 286 52 124 196 142 268 340 358 412 #1865#1864 106 88 160 178 250 232 322 304 394 376 466 448 1834 1834 1816 1816 1798 1798 1780 1780 1762 1762 1744 1744 1726 1726 502 484 70 430214 286 52 124 196 142 268 340 358 412 106 88 160 178 250 232 322 304 394 376 466 448 502 484 256 284 296 4 1708 1708 18881852 #1866 1906 1906 1888 1870 1870 1852 H1A/B H2A/B MCKO V2A/B/C V3A/B/C

– 45 – CXD3609R Chart-15 Horizontal Direction Timing Chart (D: high-speed sweep) MODE Center scan 1 and center scan 2 mode 28MHz drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. HR 2070 460H or 462H 120001900200 400 100 300 500 70 430214 286 52 124 196 142 268 340 358 412 #229#228 106 88 160 178 250 232 322 304 394 376 466 448 2032 2014 1996 1978 1960 1942 1924502 484 70 430214 286 52 124 196 142 268 340 358 412 106 88 160 178 250 232 322 304 394 376 466 448 502 484 406 434 446 4 1906 2032 2014 1996 1978 1960 1942 1924 1906 H1A/B H2A/B MCKO V2A/B/C V3A/B/C

– 46 – CXD3609R Chart-15.1 Horizontal Direction Timing Chart (D: high-speed sweep) MODE Center scan 1 and center scan 2 mode 36MHz drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. HR 2070 581H 1 (2070)20001900200 400 100 300 500 70 430214 286 52 124 196 142 268 340 358 412 #85#84 106 88 160 178 250 232 322 304 394 376 466 448 2014 1996 1978 1960 1942 1924 1906502 484 70 430214 286 52 124 196 142 268 340 358 412 106 88 160 178 250 232 322 304 394 376 466 448 502 484 406 434 446 4 1870 2014 1996 1978 1960 1942 1924 1906 1870 H1A/B H2A/B MCKO V2A/B/C V3A/B/C

– 47 – CXD3609R Chart-16 Horizontal Direction Timing Chart (D: high-speed sweep) MODE Center scan 3 mode 28MHz drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. HR 1920 497H 11800200 400 100 300 500 70 430214 286 52 124 196 142 268 340 358 412 #479#478 106 88 160 178 250 232 322 304 394 376 466 448 1882 1864 1846 1828 1810 1792 1774502 484 70 430214 286 52 124 196 142 268 340 358 412 106 88 160 178 250 232 322 304 394 376 466 448 502 484 256 284 296 4 1756 1882 1864 1846 1828 1810 1792 1774 1756 H1A/B H2A/B MCKO V2A/B/C V3A/B/C

– 48 – CXD3609R Chart-16.1 Horizontal Direction Timing Chart (D: high-speed sweep) MODE Center scan 3 mode 36MHz drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. HR 1920 625H 11800200 400 100 300 500 70 430214 286 52 124 196 142 268 340 358 412 #399#398 106 88 160 178 250 232 322 304 394 376 466 448 1882 1864 1846 1828 1810 1792 1774502 484 70 430214 286 52 124 196 142 268 340 358 412 106 88 160 178 250 232 322 304 394 376 466 448 502 484 256 284 296 4 1756 1882 1864 1846 1828 1810 1792 1774 1756 H1A/B H2A/B MCKO V2A/B/C V3A/B/C

– 49 – CXD3609R Chart-17 Horizontal Direction Timing Chart (D: high-speed sweep) MODE AF1 mode, 28MHz drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. HR 2352 202H 12200 2300200 400 100 300 500 70 430214 286 52 124 196 142 268 340 358 412 #358#357 106 88 160 178 250 232 322 304 394 376 466 448 2290 2272 2254 2236 2218 2200 2182502 484 70 430214 286 52 124 196 142 268 340 358 412 106 88 160 178 250 232 322 304 394 376 466 448 502 484 2164 2290 2272 2254 2236 2218 2200 2182 2164 H1A/B H2A/B MCKO V2A/B/C V3A/B/C

– 50 – CXD3609R Chart-17.1 Horizontal Direction Timing Chart (D: high-speed sweep) MODE AF1 mode, 36MHz drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. HR 2352 255H 12200 2300200 400 100 300 500 70 430214 286 52 124 196 142 268 340 358 412 #195#194 106 88 160 178 250 232 322 304 394 376 466 448 2314 2296 2278 2260 2242 2224 2206 502 484 70 430214 286 52 124 196 142 268 340 358 412 106 88 160 178 250 232 322 304 394 376 466 448 502 484 2188 2314 2296 2278 2260 2242 2224 2206 2188 H1A/B H2A/B MCKO V2A/B/C V3A/B/C

– 51 – CXD3609R Chart-18 Horizontal Direction Timing Chart (D: high-speed sweep) MODE AF2 mode, 28MHz drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. HR 2352 101H 12200 2300200 400 100 300 500 70 430214 286 52 124 196 142 268 340 358 412 #652#651 106 88 160 178 250 232 322 304 394 376 466 448 2290 2272 2254 2236 2218 2200 2182502 484 70 430214 286 52 124 196 142 268 340 358 412 106 88 160 178 250 232 322 304 394 376 466 448 502 484 2164 2290 2272 2254 2236 2218 2200 2182 2164 H1A/B H2A/B MCKO V2A/B/C V3A/B/C

– 52 – CXD3609R Chart-18.1 Horizontal Direction Timing Chart (D: high-speed sweep) MODE AF2 mode, 36MHz drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. HR 2352 127H 12200 2300200 400 100 300 500 70 430214 286 52 124 196 142 268 340 358 412 #587#586 106 88 160 178 250 232 322 304 394 376 466 448 2314 2296 2278 2260 2242 2224 2206 502 484 70 430214 286 52 124 196 142 268 340 358 412 106 88 160 178 250 232 322 304 394 376 466 448 502 484 2188 2314 2296 2278 2260 2242 2224 2206 2188 H1A/B H2A/B MCKO V2A/B/C V3A/B/C

– 53 – CXD3609R Chart-19 Horizontal Direction Timing Chart (B: frame shift) MODE Center scan 1 and center scan 2 mode 28MHz drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. HR 2070 15H 900 1000200 400 100 300 500 106 394 844 70 214 358 250 502 952 988160 124 268 304 448 412 898 862 1042 1006 88 376 52 196 340 232 484 934 970178 142 286 322 466 430 916 880 1060 1024 406 H1A/B H2A/B MCKO V2A/B/C V3A/B/C

– 54 – CXD3609R Chart-19.1 Horizontal Direction Timing Chart (B: frame shift) MODE Center scan 1 and center scan 2 mode 36MHz drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. HR 2070 400 500200 400 100 300 500 106 394 322 70 214 358 250 502 430 466160 124 268 304 448 412 376 340 520 484 88 376 52 196 340 232 484 412 448178 142 286 322 466 430 394 358 538 502 406 H1A/B H2A/B MCKO V2A/B/C V3A/B/C

– 55 – CXD3609R Chart-20 Horizontal Direction Timing Chart (B: frame shift) MODE Center scan 3 mode 28MHz drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. HR 1920 32H 900 1000200 400 100 300 500 106 394 826 214 358 250 502 934 970160 124 268 304 448 412 880 844 1024 988 88 376 196 340 232 484 916 952178 142 286 322 466 430 898 862 1042 1006 256 H1A/B H2A/B MCKO V2A/B/C V3A/B/C

– 56 – CXD3609R Chart-20.1 Horizontal Direction Timing Chart (B: frame shift) MODE Center scan 3 mode 36MHz drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. HR 1920 27H 900 1000200 400 100 300 500 106 394 634 214 358 250 502 742 778160 124 268 304 448 412 688 652 832 796 88 376 196 340 232 484 724 760178 142 286 322 466 430 706 670 850 814 256 H1A/B H2A/B MCKO V2A/B/C V3A/B/C

– 57 – CXD3609R Chart-21 Horizontal Direction Timing Chart (B: frame shift) MODE AF1 mode, 28MHz drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. HR 2352 19H 1800 1900200 400 100 300 500 106 394 1738 70 214 358 250 502 1846 1882160 124 268 304 448 412 1792 1756 1936 1900 88 376 52 196 340 232 484 1828 1864178 142 286 322 466 430 1810 1774 1954 1918 H1A/B H2A/B MCKO V2A/B/C V3A/B/C

– 58 – CXD3609R Chart-21.1 Horizontal Direction Timing Chart (B: frame shift) MODE AF1 mode, 36MHz drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. HR 2352 11H 1600 1700200 400 100 300 500 106 394 1546 70 214 358 250 502 1654 1690160 124 268 304 448 412 1600 1564 1744 1708 88 376 52 196 340 232 484 1636 1672178 142 286 322 466 430 1618 1582 1762 1726 H1A/B H2A/B MCKO V2A/B/C V3A/B/C

– 59 – CXD3609R Chart-22 Horizontal Direction Timing Chart (B: frame shift) MODE AF2 mode, 28MHz drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. HR 2352 33H 500 600200 400 100 300 500 106 394 394 70 214 358 250 502 502 538160 124 268 304 448 412 448 412 592 556 88 376 52 196 340 232 484 484 520178 142 286 322 466 430 466 430 610 574 H1A/B H2A/B MCKO V2A/B/C V3A/B/C

– 60 – CXD3609R Chart-22.1 Horizontal Direction Timing Chart (B: frame shift) MODE AF2 mode, 36MHz drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. ∗ The HR fall period should be between approximately 5.0 to 28.7µs (when the drive frequency is 28MHz). This chart shows a period of 185ck (6.5µs). The internal SSG operates at this timing. HR 2352 31H 600 700 800200 400 100 300 500 106 394 586 70 214 358 250 502 694 730160 124 268 304 448 412 640 604 784 748 88 376 52 196 340 232 484 676 712178 142 286 322 466 430 658 622 802 766 H1A/B H2A/B MCKO V2A/B/C V3A/B/C

– 61 – CXD3609R Chart-23 Horizontal Direction Timing Chart (A: readout block) MODE Progressive scan mode – high-speed sweep not present – 28MHz (36MHz) drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. HR V2A/B/C 1920 1920 V3A/B/C SUB 282 342 282 342 70 124 106 160 52 142 196 88 178 214 1100 1250 106 124 142

– 62 – CXD3609R Chart-24 Horizontal Direction Timing Chart (A: readout block) MODE Monitoring mode 28MHz (36MHz) drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. HR V2A 2352 2352 V3A SUB V2B/C V3B/C 282 342 70 124 106 160 52 142 88 178 214 268 250 304 196 286 232 322 358 412 394 448 340 430 376 466 502 556 538 592 484 574 520 610 646 628 1100 1250 1322 1412 1466 1556 1376 1430 1520 1394 1484 15381340 1358 1448 1502 70 124 106 160 52 142 88 178 214 268 250 304 196 286 232 322 358 412 394 448 336 426 376 466 502 556 538 592 480 570 520 610 619 679

– 63 – CXD3609R Chart-25 Horizontal Direction Timing Chart (A: readout block) MODE Draft mode 28MHz (36MHz) drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. HR V2C 1920 V3C SUB V2A/B V3A/B 70 124 106 160 52 142 88 178 214 268 250 304 196 286 232 322 358 340 334 394 1920 70 124 106 160 52 142 88 178 214 268 250 304 196 286 232 322 358 340 334 394 600 840 822 876 858 804 894 930 984 966 1020 912 1002 948 1038 1056 1074 750 1332 1314 1368 1350 1296 1386 1422 1476 1458 1512 1404 1494 1440 1530

– 64 – CXD3609R Chart-26 Horizontal Direction Timing Chart (A: readout block) MODE 2-line addition mode 28MHz (36MHz) drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. HR V2C 1920 V3C SUB V2A/B V3A/B 70 124 106 160 52 142 88 178 214 268 250 304 196 286 232 322 358 340 334 394 1920 70 124 106 160 52 142 88 178 214 268 250 304 196 286 232 322 358 340 334 394 600 840 822 876 858 804 894 930 984 966 1020 912 1002 948 1038 1056 1074 750 1128 1278 1332 1314 1368 1350 1296 1386 1422 1476 1458 1512 1404 1494 1440 1530

– 65 – CXD3609R Chart-27 Horizontal Direction Timing Chart (A: readout block) MODE Center scan 1 mode 28MHz (36MHz) drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. HR V2C 2070 2070 V3C SUB V2A/B V3A/B 70 124 106 160 52 142 88 178 214 268 250 304 196 286 232 322 358 340 334 390 70 124 106 160 52 142 88 178 214 268 250 304 196 286 232 322 358 340 334 390 600 840 822 876 858 804 894 930 984 966 1020 912 1002 948 1038 1056 1074 750 1128 1110 1164 1146 1092 1182

– 66 – CXD3609R Chart-28 Horizontal Direction Timing Chart (A: readout block) MODE Center scan 2 mode 28MHz (36MHz) drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. HR V2C 2070 2070 V3C SUB V2A/B V3A/B 70 124 106 160 52 142 88 178 214 268 250 304 196 286 232 322 358 340 334 390 70 124 106 160 52 142 88 178 214 268 250 304 196 286 232 322 358 340 334 390 600 840 822 876 858 804 894 930 984 966 1020 912 1002 948 1038 1056 1074 750 1332 1314 1368 1128 1278 1350 1296 1386

– 67 – CXD3609R Chart-29 Horizontal Direction Timing Chart (A: readout block) MODE Center scan 3 mode 28MHz (36MHz) drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. HR V2A/B/C 1920 1920 V3A/B/C SUB 282 342 282 342 70 124 106 160 52 142 196 88 178 214 1100 1250 106 142 196 268 340 430 484 160 250 304 394 448 124 214 268 358 412 178 232 322 376 466

– 68 – CXD3609R Chart-30 Horizontal Direction Timing Chart (A: readout block) MODE AF1 and AF2 mode 28MHz (36MHz) drive Applicable CCD image sensor  ICX274 ∗ The HR of this chart indicates the actual CXD3609R load timing. ∗ The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HR. HR V2A 2352 2352 V3A SUB V2B/C V3B/C 619 679 70 124 106 160 52 142 88 178 214 268 250 304 196 286 232 322 358 412 394 448 340 430 376 466 502 556 538 592 484 574 520 610 646 628 1100 1250 1322 1412 1466 1556 1610 1700 1376 1430 1520 1574 1664 1394 1484 1538 1628 16821340 1358 1448 1502 1592 1646 70 124 106 160 52 142 88 178 214 268 250 304 196 286 232 322 358 412 394 448 336 426 376 466 502 556 538 592 480 570 520 610 619 679

– 69 – CXD3609R Chart-31 High-Speed Phase Timing Chart MODE Applicable CCD image sensor  ICX274 ∗ HR' of this chart indicates the actual CXD3606R load timing. ∗ The phase relationship of each pulse shows the logical position relationship. For the actual output waveform, a delay is added to each pulse. ∗ The logic phase of ADCLK can be specified by the serial interface data. HR ADCLK MCKO XSHD RG HR' CKI CKO XSHP H1A/B H2A/B 256/406/6881 52

– 70 – CXD3609R Chart-32 Vertical Direction Sequence Chart MODE Progressive scan mode – high-speed sweep not present – 28MHz (36MHz) drive → T rigger in mode → T rigger mode → T rigger out mode Applicable CCD image sensor  ICX274 ∗ The number of SUB pulses is determined by the serial interface data. This chart shows the case where SUB pulses are output in all horizontal periods. ∗ ID/EXP of this chart shows ID. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component. ∗ During 28MHz drive, the VR period is 1493H, and at 1493H one horizontal period is 1860ck. During 36MHz drive, the VR period is 1252H, and at 1252H one horizontal period is 480ck. ∗ The VD fall is not accepted until 2H after SG generation. For example, when SG is generated at 23H, VR is not accepted from 1H to 24H, but is accepted from 25H onward. ∗ Even when SG generation position > number of SUB pulses in the serial data, SG generation position = number of SUB pulses is used. VR HR SUB V2A/B/C CCD OUT PBLK OBCLP CLPDM ID/EXP WEN V3A/B/C 1251 123456789 10 123456789 10 1493 (1252) 1493 (1252) TRIG All pixels TRIG TRIG-OUT 1236 1235 TRIG-IN VD fall is not accepted until 2H after SG generation (71) (1) High-speed sweep existent/ not existent setting Number of SUB lines (ex. 75 lines, 72 to 4096 lines) SG generation position setting (ex. 85H, 72H, to 4096H)

– 71 – CXD3609R Application Circuit Block diagram Notes for Power-on the following order to prevent the SUB pin of the CCD image sensor from going to negative potential. Application circuits shown are typical examples illustrating the operation of the devices. Sony cannot assume responsibility for any problems arising out of the use of these circuits or for any infringement of third party patent and other right due to same. 26 31 32 232221201918 MCKO VR HR CKO Digital OUT ADCLK OBCLP CLPDM PBLK XSHD XSHP 1513 SCK 33SEN SSI CKI TEST TRIG CCD OUT V-Dr SSG WEN ID/EXP SSGSL SNCSL RST H1A 10 12H1B H2A H2B 8RG 40V2A 44V3A V3B V3C 48SUB V2C V2B CCD ICX274 CDS/ADC Block Signal Processor BlockTG CXD3609R Controller +15.0V –7.5V 20% 20% t2 ≥ t1

– 72 – CXD3609R Package Outline Unit: mm Sony Corporation SONY CODE EIAJ CODE JEDEC CODE PACKAGE MATERIAL LEAD TREATMENT LEAD MATERIAL PACKAGE MASS EPOXY RESIN COPPER ALLOY PACKAGE STRUCTURE 48PIN LQFP (PLASTIC) 9.0 ± 0.2 ∗ 7.0 ± 0.1 1 12 2536 48 (0.22) 0.18 – 0.03 + 0.08 0.2g LQFP-48P-L01 LQFP048-P-0707 (8.0) 0.5 ± 0.2 0.127 – 0.02 + 0.05 A 1.5 – 0.1 + 0.2 0.1 PALLADIUM PLATING NOTE: Dimension “∗” does not include mold protrusion. 0.1 ± 0.1 0.5 ± 0.2 0˚ to 10˚ DETAIL A 0.13 M 0.5 S S B DETAIL B:PALLADIUM 0.127 ± 0.040.18 ± 0.03