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 CXD3410GA
Timing Generator and Signal Processor for Frame Readout CCD Image Sensor
Description The CXD3410GA is a timing generator and CCD signal processor IC for the ICX202/232, ICX224/284 CCD image sensor. Features * Timing generator functions * Horizontal drive frequency 12 to 18MHz (Base oscillation frequency 24 to 36MHz) * Supports frame readout/draft (quadruple speed) * High-speed/low-speed shutter function * Horizontal and vertical drivers for CCD image sensor * CCD signal processor functions * Correlated double sampling * Programmable gain amplifier (PGA) allows gain adjustment over a wide range (-6 to +42dB) * 10-bit A/D converter * Chip Scale Package (CSP): CSP allows vast reduction in the CCD camera block footprint Applications Digital still cameras Structure Silicon gate CMOS IC Applicable CCD Image Sensors ICX202 (1/3", 1250K pixels) ICX232 (1/3.6", 1250K pixels) ICX224 (1/2", 2020K pixels) ICX284 (1/2.7", 2020K pixels) 96 pin LFLGA (Plastic)
Absolute Maximum Ratings * Supply voltage VSS - 0.3 to +7.0 VDDa, VDDb, VDDc, VDDd VDDe, VDDf, VDDg VSS - 0.3 to +4.0 VL -10.0 to VSS VH VL - 0.3 to +26.0 * Input voltage (analog) VIN VSS - 0.3 to VDD + 0.3 * Input voltage (digital) VI * Output voltage VO1 VO2 VO3 * Operating temperature Topr * Storage temperature Tstg VSS - 0.3 to VDD + 0.3 VSS - 0.3 to VDD + 0.3 VL - 0.3 to VSS + 0.3 VL - 0.3 to VH + 0.3 -20 to +75 -55 to +125
V V V V V V V V V C C
Recommended Operating Conditions * Supply voltage VDDb 3.0 to 5.5 VDDa, VDDc, VDDd 3.0 to 3.6 VM 0.0 VH 14.5 to 15.5 VL -7.0 to -8.0 VDDe, VDDf, VDDg 3.0 to 3.6 * Operating temperature Topr -20 to +75
V V V V V V C
Sony reserves the right to change products and specifications without prior notice. This information does not convey any license by any implication or otherwise under any patents or other right. Application circuits shown, if any, are typical examples illustrating the operation of the devices. Sony cannot assume responsibility for any problems arising out of the use of these circuits.
-1-
E00Z01A26
CXD3410GA
Block Diagram
TEST3
TEST4
TEST5
DVDD1
DVDD2
DVSS3
DVSS1
A1 A2 C7 D8 D7
B8 B6 B9 A6 C5
A3 A4 B4
A5 C4
B5
E2 F2 F3
E3 F1
C4 C8 AVDD5 A9 AVSS6 A8 C7 B7 C8 A7 C9 C6 CCDIN C9 AVDD1 E9 AVDD2 E8 AVSS1 D9 AVSS2 E7 XSHPI F9 XSHDI F8 PBLKI F7 XSHP G9 XSHD G8 PBLK G7 XRS H7 VDD4 H8 VDD2 K7 RG K8 VSS2 K9 VDD3 H9 H1 J8 H2 J9 VSS3 J7 ID N9 WEN M9 L2 VH M5 VM L4 VL M6 V Driver Serial Port Register SSI1 M1 SCK1 N1 SEN1 L8 EBCKSM 1/2 Pulse Generator CDS PGA ADC Latch DAC Serial Port Register B3 B2 B1 D0 (LSB) D1 D2
DVSS2 C3 D3 C2 D4 C1 D5 D3 D6 D2 D7 D1 D8 E1 D9 (MSB) ADCLKI CLPOBI CLPDMI VSS4 ADCLK CLPOB CLPDM VSS5 OSCI OSCO CKI CKO MCKO G1 G2 G3 L3 H1 H2 H3 J3 L1 K1 J1 J2 K2 N8 DSGAT
AVDD3
AVDD4
AVSS3
AVSS4
AVSS5
SCK2
Preblanking
Dummy Pixel Auto Zero
SEN2
SSI2
NC
NC
C3
C2
C1
Black Level Auto Zero
M8 M3 M7 TEST1 TEST2 RST
L5 N5 M4 L6 V1A V1B V3A V2
N6 N4 N7 SUB V3B V4
N2 M2 HD VD
L9 VDD1
K3 L7 VDD5 VSS1
N3 VSS6
-2-
CXD3410GA
Pin Configuration (Top View)
A B C D E F G H J K L M N
NC D2 D5 D8 D9 DVSS2 ADCLKI ADCLK CKI OSCO OSCI SCK1 SEN1 1
NC D1 D4 D7 DVDD1 DVSS3 CLPOBI CLPOB CKO MCKO SSI1 VD HD 2
SCK2 D0 D3 D6 DVSS1 DVDD2 CLPDMI CLPDM VSS5 VDD5 VSS4 TEST1 VSS6 3
SSI2 SEN2 TEST4
TEST3 TEST5 AVSS5
AVSS4 AVDD4 C9
C8 C7 C3 C1 AVSS2 PBLKI PBLK XRS VSS3 VDD2
AVSS6 AVDD3 C4 C2 AVDD2 XSHDI XSHD VDD4 H1 RG EBCKSM RST DSGAT 8
AVDD5 AVSS3 CCDIN AVSS1 AVDD1 XSHPI XSHP VDD3 H2 VSS2 VDD1 WEN ID 9
VM V2 V4 4
V1A VH V1B 5
V3A VL V3B 6
VSS1 TEST2 SUB 7
-3-
CXD3410GA
Pin Description Pin No. A1 A2 A3 A4 A5 A6 A7 A8 A9 B1 B2 B3 B4 B5 B6 B7 B8 B9 C1 C2 C3 C4 C5 C6 C7 C8 C9 D1 D2 D3 D7 D8 D9 E1 E2 Symbol NC NC SCK2 SSI2 TEST3 AVSS4 C8 AVSS6 AVDD5 D2 D1 D0 SEN2 TEST5 AVDD4 C7 AVDD3 AVSS3 D5 D4 D3 TEST4 AVSS5 C9 C3 C4 CCDIN D8 D7 D6 C1 C2 AVSS1 D9 DVDD1 I/O -- -- I I I -- -- -- -- O O O I I -- -- -- -- O O O I -- -- -- -- I O O O -- -- -- O -- No connected. (Open) No connected. (Open) CCD signal processor block serial interface clock input. (Schmitt trigger) CCD signal processor block serial interface data input. (Schmitt trigger) CCD signal processor block test input 3. Connect to DVSS. CCD signal processor block analog GND. Capacitor connection. CCD signal processor block analog GND. CCD signal processor block analog power supply. ADC output. ADC output. ADC output (LSB). CCD signal processor block serial interface enable input. (Schmitt trigger) CCD signal processor block test input 5. Connect to DVDD. CCD signal processor block analog power supply. Capacitor connection. CCD signal processor block analog power supply. CCD signal processor block analog GND. ADC output. ADC output. ADC output. CCD signal processor block test input 4. Connect to DVSS. CCD signal processor block analog GND. Capacitor connection. Capacitor connection. Capacitor connection. CCD output signal input. ADC output. ADC output. ADC output. Capacitor connection. Capacitor connection. CCD signal processor block analog GND. ADC output (MSB). CCD signal processor block digital power supply. (Power supply for ADC) -4- Description
CXD3410GA
Pin No. E3 E7 E8 E9 F1 F2 F3 F7 F8 F9 G1 G2 G3 G7 G8 G9 H1 H2 H3 H7 H8 H9 J1 J2 J3 J7 J8 J9 K1 K2 K3 K7 K8 K9 L1
Symbol DVSS1 AVSS2 AVDD2 AVDD1 DVSS2 DVSS3 DVDD2 PBLKI XSHDI XSHPI ADCLKI CLPOBI CLPDMI PBLK XSHD XSHP ADCLK CLPOB CLPDM XRS VDD4 VDD3 CKI CKO VSS5 VSS3 H1 H2 OSCO MCKO VDD5 VDD2 RG VSS2 OSCI
I/O -- -- -- -- -- -- -- I I I I I I O O O O O O O -- -- I O -- -- O O O O -- -- O -- I
Description CCD signal processor block digital GND. (GND for ADC) CCD signal processor block analog GND. CCD signal processor block analog power supply. CCD signal processor block analog power supply. CCD signal processor block digital GND. CCD signal processor block digital GND. CCD signal processor block digital power supply. Pulse input for horizontal and vertical blanking period pulse cleaning. (Schmitt trigger) CCD data level sample-and-hold pulse input. (Schmitt trigger) CCD precharge level sample-and-hold pulse input. (Schmitt trigger) Clock input for analog/digital conversion. (Schmitt trigger) CCD optical black signal clamp pulse input. (Schmitt trigger) CCD dummy signal clamp pulse input. (Schmitt trigger) Pulse output for horizontal and vertical blanking period pulse cleaning. CCD data level sample-and-hold pulse output. CCD precharge level sample-and-hold pulse output. Clock output for analog/digital conversion. CCD optical black signal clamp pulse output. CCD dummy signal clamp pulse output. Sample-and-hold pulse output for analog/digital conversion phase alignment. Timing generator block digital power supply. (Power supply for CDS block) Timing generator block 3.0 to 5.0V power supply. (Power supply for H1/H2) Inverter input. Inverter output. Timing generator block digital GND. Timing generator block digital GND. CCD horizontal register clock output. CCD horizontal register clock output. Inverter output for oscillation. When not used, leave open or connect a capacitor. System clock output for signal processor IC. Timing generator block digital power supply. (Power supply for common logic block) Timing generator block digital power supply. (Power supply for RG) CCD reset gate pulse output. Timing generator block digital GND. Inverter input for oscillation. When not used, fix to low. -5-
CXD3410GA
Pin No. L2 L3 L4 L5 L6 L7 L8 L9 M1 M2 M3 M4 M5 M6 M7
Symbol SSI1 VSS4 VM V1A V3A VSS1 EBCKSM VDD1 SCK1 VD TEST1 V2 VH VL TEST2
I/O I -- -- O O -- I -- I I I O -- -- I
Description Timing generator block serial interface data input. Schmitt trigger input/No protective diode on power supply side. Timing generator block digital GND. Timing generator block digital GND. (GND for vertical driver) CCD vertical register clock output. CCD vertical register clock output. Timing generator block digital GND. Checksum enable. High: Checksum invalid, Low: Checksum valid (With pull-down resistor)
Timing generator block digital power supply.(Power supply for common logic block) Timing generator block serial interface clock input. Schmitt trigger input/No protective diode on power supply side. Vertical sync signal input. Timing generator block test input 1. Normally fix to GND. CCD vertical register clock output. Timing generator block 15.0V power supply. (Power supply for vertical driver) Timing generator block -7.5V power supply. (Power supply for vertical driver) Timing generator block test input 2. Normally fix to GND. (With pull-down resistor) (With pull-down resistor)
M8
RST
I
Timing generator block reset input. High: Normal operation, Low: Reset control Normally apply reset during power-on. Schmitt trigger input/No protective diode on power supply side Memory write timing pulse output. Timing generator block serial interface strobe input. Schmitt trigger input/No protective diode on power supply side Horizontal sync signal input. Timing generator block digital GND. CCD vertical register clock output. CCD vertical register clock output. CCD vertical register clock output. CCD electronic shutter pulse output. Pulse generator enable. High: enable, Low: disable (Schmitt trigger input/no protective diode on power supply side) Vertical direction line identification pulse output.
M9 N1 N2 N3 N4 N5 N6 N7 N8 N9
WEN SEN1 HD VSS6 V4 V1B V3B SUB DSGAT ID
O I I -- O O O O I O
-6-
CXD3410GA
Electrical Characteristics Timing Generator Block Electrical Characteristics DC Characteristics Item Pins Symbol VDDa VDDb VDDc VDDd VI + VI - VIH1 VIL1 VIH2 VIL2 VIH3 VIL3 VOH1 VOL1 VOH2 VOL2 Feed current where IOH = -22.0mA VDDb - 0.8 Pull-in current where IOL = 14.4mA Feed current where IOH = -3.3mA Pull-in current where IOL = 2.4mA Feed current where IOH = -3.3mA Pull-in current where IOL = 2.4mA Feed current where IOH = -10.4mA VDDd - 0.8 Pull-in current where IOL = 7.2mA Feed current where IOH = -10.4mA VDDd - 0.8 Pull-in current where IOL = 7.2mA Feed current where IOH = -2.4mA Pull-in current where IOL = 4.8mA V1A/B, V2, V3A/B, V4 = -8.25V V1A/B, V2, V3A/B, V4 = -0.25V V1A/B, V3A/B = 0.25V V1A/B, V3A/B = 14.75V SUB = -8.25V 5.4 5.0 -7.2 10.0 -5.0 VDDd - 0.8 0.4 0.4 0.4 VDDc - 0.8 0.4 VDDa - 0.8 0.4 0.4 0.8VDDd 0.2VDDd 0.8VDDd 0.2VDDd 0.7VDDd 0.3VDDd (Within the recommended operating conditions) Conditions Min. 3.0 3.0 3.0 3.0 0.8VDDd 0.2VDDd Typ. 3.3 3.3 3.3 3.3 Max. 3.6 5.5 3.6 3.6 Unit V 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
Supply voltage 1 VDD2 Supply voltage 2 VDD3 Supply voltage 3 VDD4 Supply voltage 4 VDD1, VDD5 Input voltage 11 Input voltage 22 Input voltage 33 Input voltage 4 Output voltage 1 Output voltage 2 RST, SCK1, SSI1, SEN1, DSGAT TEST1, TEST2 EBCKSM VD, HD H1, H2 RG
Output voltage 3
XSHP, XSHD, VOH3 XRS, PBLK, CLPOB, CLPDM, VOL3 ADCLK CKO MCKO ID, WEN VOH4 VOL4 VOH5 VOL5 VOH6 VOL6 IOL IOM1 IOM2 IOH IOSL
Output voltage 4 Output voltage 5 Output voltage 6
Output current 1
V1A, V1B, V3A, V3B, V2, V4
-4.0 mA IOSH SUB = 14.75V 1 This input pin is a schmitt trigger input and it does not have protective diode of the power supply side in the IC. 2 These input pins are with pull-down resistor in the IC. 3 These input pins are with pull-down resistor in the IC and they do not have protective diode of the power supply side in the IC. Note) The above table indicates the condition for 3.3V drive. -7-
Output current 2
SUB
CXD3410GA
Inverter I/O Characteristics for Oscillation Item Logical Vth Input voltage Output voltage Feedback resistor Oscillation frequency Pins OSCI OSCI Symbol LVth VIH VIL VOH VOL Conditions
(Within the recommended operating conditions) Min. Typ. VDDd/2 0.7VDDd 0.3VDDd Max. Unit V V V V 0.4 500k 20 2M 5M 50 V MHz
OSCO
Feed current where IOH = -3.6mA Pull-in current where IOL = 2.4mA VIN = VDDd or VSS
VDDd - 0.8
OSCI, OSCO RFB OSCI, OSCO f
Inverter Input Characteristics for Base Oscillation Clock Duty Adjustment (Within the recommended operating conditions) Item Logical Vth Input voltage Input amplitude CKI Pins Symbol LVth VIH VIL VIN fmax 50MHz sine wave 0.3 0.7VDDd 0.3VDDd Conditions Min. Typ. VDDd/2 Max. 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 Item Symbol TTLM Rise time TTMH TTLH TTML Fall time TTHM TTHL VCLH Output noise voltage VCLL VCMH VCML VL to VM VM to VH VL to VH VM to VL VH to VM VH to VL Conditions (VH = 15.0V, VM = GND, VL = -7.5V) Min. 200 200 30 200 200 30 Typ. 350 350 60 350 350 60 Max. 500 500 90 500 500 90 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 (0.1F or more) between each power supply pin (VH, VL) and GND. 3. To protect the CCD image sensor, clamp the SUB pin output at VH before input to the CCD image sensor. -8-
CXD3410GA
Switching Waveforms
TTMH 90%
TTHM VH 90%
V1A (V1B, V3A, V3B)
TTLM
10% 90%
10% 90%
TTML
VM
10%
10%
VL
TTLM 90% V2 (V4) 10% 90%
TTML
VM
10%
VL
TTLH 90% 90%
TTHL
VH
SUB
10%
10% VL
Waveform Noise
VM VCMH VCML
VCLH VCLL VL
-9-
Measurement Circuit
Serial interface data CKI
VD
HD C6 C4 C5 C5 C6 C6
+3.3V
+15.0V
-7.5V N3 L2 K2 K9 K8 K7 K1 L1 K3 J9 J8 J7 J3 J2 J1 H9 H8 H7 H3 H2 L3 G9 G8 G7 H2 RG H1 CKI XRS VSS6 VSS2 VDD5 VSS3 VSS5 CKO VDD3 SSI1 VDD2 OSCI VDD4 VSS4 XSHP MCKO OSCO CLPDM CLPOB XSHD PBLK CLPDMI G3 CLPOBI G2 ADCLK XSHPI XSHDI PBLKI DVDD2 DVSS3 H1 F9 F8 F7 F3 F2 ADCLKI G1 AVDD1 AVSS1 AVSS2 CXD3410GA DVSS2 DVSS1 DVDD1 AVDD2 C2 C1 D6 D7 D8 CCDIN C4 C3 C8 AVSS6 AVDD5 D2 D1 D0 SEN2 TEST5 AVDD4 C7 AVSS3 AVDD3 D5 D4 D3 TEST4 AVSS5 NC NC SCK2 SSI2 TEST3 AVSS4 C9 E9 D9 E7 F1 E3 E2 E8 D8 D7 D3 D2 D1 C9 C8 C7
M4 V2 M5 VH M6 VL E1 D9 L8 EBCKSM VDD1 L9 M1 SCK1 M2 VD M3 TEST1 N4 V4 N5 V1B N6 V3B M7 TEST2 M8 RST M9 WEN N1 SEN1 N2 HD L4 VM V1A V3A L5 L6 N7 SUB C3 N8 DSGAT N9 ID L7 VSS1
R1
C2
C2
R1
R1
C1 C2
C1 C2
C2 C2
C1 C2
- 10 - C3 820pF C4 30pF C5 180pF C6 10pF
C2
C2
C2
C2
R1
C1 C2
C2
C1
R1
C1
C2
C2 R2
R1
A2 A1 A3 A4 A5 A6 A7 A8 A9 B1 B2 B3 B4 B5 B6 B7 B9 B8 C1 C2 C3 C4 C5 C6
CXD3410GA
C1 R1
3300pF 30
C2 R2
560pF 10
CXD3410GA
AC Characteristics AC characteristics between the serial interface clocks
0.8VDDd SSI1 SCK1 SEN1 SEN1 ts2 0.2VDDd 0.8VDDd ts1 0.2VDDd ts3 0.8VDDd th1
(Within the recommended operating conditions) Symbol Definition SSI1 setup time, activated by the rising edge of SCK1 SSI1 hold time, activated by the rising edge of SCK1 SCK1 setup time, activated by the rising edge of SEN1 SEN1 setup time, activated by the rising edge of SCK1 Min. 20 20 20 20 Typ. Max. Unit ns ns ns ns
ts1 th1 ts2 ts3
Serial interface clock internal loading characteristics (1)
Example: During frame mode VD HD V1A Enlarged view
HD V1A
0.2VDDd
ts1 0.8VDDd SEN1
th1 0.2VDDd
Be sure to maintain a constantly high SEN1 logic level near the falling edge of the HD in the horizontal period during which V1A/B and V3A/B values take the ternary value and during that horizontal period. (Within the recommended operating conditions) Symbol Definition SEN1 setup time, activated by the falling edge of HD SEN1 hold time, activated by the falling edge of HD - 11 - Min. 0 102 Typ. Max. Unit ns s
ts1 th1
CXD3410GA
Serial interface clock internal loading characteristics (2)
Example: During frame mode VD HD Enlarged view
VD HD
0.2VDDd
ts1 SEN1 0.8VDDd
th1 0.2VDDd
Be sure to maintain a constantly high SEN1 logic level near the falling edge of VD. (Within the recommended operating conditions) Symbol Definition SEN1 setup time, activated by the falling edge of VD SEN1 hold time, activated by the falling edge of VD Min. 0 200 Typ. Max. Unit ns ns
ts1 th1
Serial interface clock output variation characteristics Normally, the serial interface data is loaded to the CXD3410GA 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 CXD3410GA and controlled at the rising edge of SEN1. See "Description of Operation".
SEN1
0.8VDDd
Output signal tpdPULSE
(Within the recommended operating conditions) Symbol Definition Min. 5 Typ. Max. 100 Unit ns
tpdPULSE Output signal delay, activated by the rising edge of SEN1
- 12 -
CXD3410GA
RST loading characteristics
RST
0.8VDDd 0.2VDDd tw1
(Within the recommended operating conditions) Symbol Definition RST pulse width Min. 35 Typ. Max. Unit ns
tw1
VD and HD loading characteristics
VD, HD
0.2VDDd ts1 th1
0.2VDDd
MCKO
0.8VDDd
MCKO load capacitance = 10pF (Within the recommended operating conditions) Symbol Definition VD and HD setup time, activated by the rising edge of MCKO VD and HD hold time, activated by the rising edge of MCKO Min. 20 5 Typ. Max. Unit ns ns
ts1 th1
DSGAT output timing characteristics
DSGAT H1, H2, RG, XSHP, XSHD, XRS, ADCLK, PBLK, CLPDM, CLPOB
0.2VDDd
0.2VDDd TpDSGAT
H1, H2 load capacitance = 180pF RG load capacitance = 30pF XSHP, XSHD, XRS, PBLK, CLPOB, CLPDM, ADCLK = 10pF Symbol TpDSGAT Definition
(Within the recommended operating conditions) Min. Typ. Max. 100 Unit ns
Time until the above outputs low after the fall of DSGAT.
- 13 -
CXD3410GA
Output variation characteristics
MCKO
0.8VDDd
WEN, ID tpd1
WEN and ID load capacitance = 10pF (Within the recommended operating conditions) Symbol tpd1 Definition Time until the above outputs change after the rise of MCKO Min. 20 Typ. Max. 60 Unit ns
- 14 -
CXD3410GA
CCD Signal Processor Block Electrical Characteristics DC Characteristics Item Pins Symbol VDDe VDDf (Fc = 18MSPS, DVDD1, 2 = AVDD1, 2, 3, 4, 5 = 3.3V, Ta = 25C) Conditions Min. 3.0 3.0 Typ. Max. Unit 3.3 3.3 3.6 3.6 V V
Supply voltage 1 DVDD1 Supply voltage 2 DVDD2 AVDD1, AVDD2, Supply voltage 3 AVDD3, AVDD4, AVDD5 Analog input capacitance CCDIN
VDDg
3.0
3.3
3.6
V
CIN
15 1.8
pF V
Input voltage
SCK2, SSI2, VI + SEN2, TEST3, TEST4, XSHDI, XSHPI, ADCLKI, VI - CLPOBI, CLPDMI, PBLKI ADCLKI VOH VOL Feed current where IOH = -2.0mA Pull-in current where IOL = 2.0mA VDDe - 0.9
1.1
V
A/D clock duty
50
% V 0.4 V
Output voltage D0 to D9
Analog Characteristics Item CCDIN input voltage amplitude PGA maximum gain PGA minimum gain ADC resolution ADC maximum conversion rate ADC integral non-linearity error ADC differential non-linearity error Signal-to-noise ratio CCDIN input voltage clamp level CCD optical black signal clamp level Fc max EL ED SNR1 CLP OB Symbol VIN Gmax Gmin
(Fc = 18MSPS, DVDD1, 2 = AVDD1, 2, 3, 4, 5 = 3.3V, Ta = 25C) Conditions PGA gain = 0dB, output full scale PGA gain setting data = "3FFh" PGA gain setting data = "000h" Min. Typ. Max. Unit 900 42 -6 10 18 PGA gain = 0dB PGA gain = 0dB CCDIN input connected to GND via a coupling capacitor PGA gain = 0dB 1100 mV dB dB bit MHz 1.0 5.0 LSB 0.5 1.0 LSB 62 1.5 OBLVL = "8h" PGA gain = 0dB 32 dB V LSB
1 SNR = 20 log (full-scale voltage/rms noise)
- 15 -
CXD3410GA
AC Characteristics AC characteristics between the serial interface clocks
0.8VDD SSI2 SCK2 SEN2 SEN2 ts2 0.2VDD 0.8VDD ts1 0.2VDD ts3 0.8VDD th1
The setting values are reflected to the operation 5 or 6 ADCLKI clocks after the serial data is loaded at the rise of SEN2. (Fc = 18MSPS, DVDD1, 2 = AVDD1, 2, 3, 4, 5 = 3.3V, Ta = 25C) Symbol Definition SCK2 clock period SSI2 setup time, activated by the rise of SCK2 SSI2 hold time, activated by the rise of SCK2 SCK2 setup time, activated by the rise of SEN2 SEN2 setup time, activated by the rise of SCK2 Min. 100 30 30 30 30 Typ. Max. Unit ns ns ns ns ns
tp1 ts1 th1 ts2 ts3
- 16 -
CXD3410GA
CDS/ADC Timing Chart
N CCDIN
N+1
N+2
N+3
XSHPI
XSHDI tw1
ADCLKI DL
D0 to D9
N - 10
N-9
N-8
N-7
Set the input pulse polarity setting data D13, D14 and D15 of the serial interface data to "0". (Fc = 18MSPS, DVDD1, 2 = AVDD1, 2, 3, 4, 5 = 3.3V, Ta = 25C) Symbol Definition ADCLKI clock period ADCLKI clock duty DL Data latency Min. 54 50 9 Typ. Max. Unit ns % clocks
tw1
Preblanking Timing Chart
PBLKI 11 Clocks
ADCLKI
11 Clocks D0 to D9 All "0"
- 17 -
CXD3410GA
Description of Operation Pulses output from the CXD3410GA's timing generator block are controlled mainly by the RST , DSGAT pin and by the serial interface data. The Pin Status Table is shown below, and the details of serial interface control are described on page 20 and thereafter. Pin Status Table Pin No. A1 A2 A3 A4 A5 A6 A7 A8 A9 B1 B2 B3 B4 B5 B6 B7 B8 B9 C1 C2 C3 C4 C5 C6 C7 C8 C9 D1 D2 Symbol NC NC SCK2 SSI2 TEST3 AVSS4 C8 AVSS6 AVDD5 D2 D1 D0 SEN2 TEST5 AVDD4 C7 AVDD3 AVSS3 D5 D4 D3 TEST4 AVSS5 C9 C3 C4 CCDIN D8 D7 CAM SLP STB -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- DS GAT RST Pin No. D3 D7 D8 D9 E1 E2 E3 E7 E8 E9 F1 F2 F3 F7 F8 F9 G1 G2 G3 G7 G8 G9 H1 H2 H3 H7 H8 H9 J1 - 18 - Symbol D6 C1 C2 AVSS1 D9 DVDD1 DVSS1 AVSS2 AVDD2 AVDD1 DVSS2 DVSS3 DVDD2 PBLKI XSHDI XSHPI ADCLKI CLPOBI CLPDMI PBLK XSHD XSHP ADCLK CLPOB CLPDM XRS VDD4 VDD3 CKI ACT ACT ACT ACT ACT ACT ACT ACT ACT L L L L L L L CAM SLP STB -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- -- L L L L L L L -- -- ACT ACT ACT L L L L L L L H ACT ACT ACT H H ACT DS GAT RST
CXD3410GA
Pin No. J2 J3 J7 J8 J9 K1 K2 K3 K7 K8 K9 L1 L2 L3 L4 L5 L6 L7
Symbol CKO VSS5 VSS3 H1 H2 OSCO MCKO VDD5 VDD2 RG VSS2 OSCI SSI1 VSS4 VM V1A V3A VSS1
CAM ACT
SLP ACT
STB L -- --
DS GAT ACT
RST ACT
Pin No. L9 M1 M2
Symbol VDD1 SCK1 VD TEST1 V2 VH VL TEST2 RST WEN SEN1 HD VSS6 V4 V1B V3B SUB DSGAT ID
CAM
SLP
STB --
DS GAT
RST
ACT ACT
ACT ACT
ACT ACT --
ACT ACT
DIS ACT
ACT ACT ACT ACT
L L ACT ACT
L L ACT L -- --
L L ACT ACT
ACT ACT ACT ACT
M3 M4 M5 M6 M7 M8
ACT
VM
VM -- -- --
VM
VM
ACT ACT ACT ACT
ACT L ACT ACT
ACT L ACT ACT --
ACT ACT ACT ACT
L L DIS ACT
ACT
L
L --
L
ACT
M9 N1
ACT ACT
ACT ACT
ACT ACT -- --
ACT ACT
ACT DIS
N2 N3 N4 N5
ACT ACT ACT ACT ACT ACT
VM VH VH VH ACT L
VM VH VH VH ACT L
VM VH VH VH L ACT
VL VM VL VL ACT L
ACT ACT
VH VH
VH VH --
VH VH
VM VL
N6 N7 N8
L8 EBCKSM
ACT
ACT
ACT
ACT
ACT
N9
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 M5), VM (Pin L4) and VL (Pin M6), respectively, in the controlled status.
- 19 -
CXD3410GA
Timing Generator Block Serial Interface Control The CXD3410GA's timing generator block basically loads and reflects the timing generator block serial interface data sent in the following format in the readout portion at the falling edge of HD. Here, readout portion specifies the horizontal period during which V1A/B and V3A/B, etc. take the ternary value. Note that some items reflect the timing generator block serial interface data at the falling edge of VD or the rising edge of SEN1.
SSI1 SCK1 SEN1
00
01
02
03
04
05
06
07
41
42
43
44
45
46
47
There are two categories of timing generator block serial interface data: CXD3410GA timing generator block drive control data (hereafter "control data") and electronic shutter data (hereafter "shutter data"). The details of each data are described below.
- 20 -
CXD3410GA
Control Data Data D00 to D07 D08 to D09 D10 to D11 D12 D13 to D14 D15 to D35 D36 to D37 D38 to D39 D40 to D47 LDAD Symbol CHIP Chip enable Function Data = 0 Data = 1 RST All 0 All 0 All 0 0 All 0 All 0 1 ADCLK logic phase switching See D36 to D37 LDAD. 0 STB Standby control See D38 to D39 STB. All 0 All 0
10000001 Enabled Other values Disabled
CTG
Category switching
See D08 to D09 CTG.
MODE CCD SMD
Drive mode switching CCD switching Electronic shutter mode switching
See D10 to D11 MODE. ICX224/284 ICX202/232
See D13 to D14 SMD.
--
--
--
--
CKSM
Checksum
See D40 to D47 CKSM.
- 21 -
CXD3410GA
Shutter Data Data D00 to D07 D08 to D09 D10 to D17 D18 to D27 D28 to D35 D36 to D39 D40 to D47 CKSM Symbol CHIP Chip enable Function Data = 0 Data = 1 RST All 0 All 0 All 0 All 0 All 0 All 0 All 0
10000001 Enabled Other values Disabled
CTG
Category switching
See D08 to D09 CTG.
SVD
Electronic shutter vertical period specification Electronic shutter horizontal period specification High-speed shutter position specification
See D10 to D17 SVD.
SHD
See D18 to D27 SHD.
SPL
See D28 to D35 SPL.
--
--
--
--
Checksum
See D40 to D47 CKSM.
- 22 -
CXD3410GA
Detailed Description of Each Data Shared data: D08 to D09 CTG [Category] Of the data provided to the CXD3410GA by the timing generator block serial interface, the CXD3410GA loads D10 and subsequent data to each data register as shown in the table below according to the combination of D08 and D09 . D09 0 0 1 D08 0 1 X Description of operation Loading to control data register Loading to shutter data register Test mode
Note that the CXD3410GA 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.
Shared data: D40 to D47 CKSM [Checksum] Checksum bit. Provide the data indicated as follows. This function is enabled when EBCKSM is "L". MSB D07 D06 D15 D14 D23 D22 D31 D30 D39 D38 +) D47 D46 0 0 D05 D13 D21 D29 D37 D45 0 D04 D12 D20 D28 D36 D44 0 D03 D11 D19 D27 D35 D43 0 D02 D10 D18 D26 D34 D42 0 D01 D09 D17 D25 D33 D41 0 LSB D00 D08 D16 D24 D32 D40 0 CKSM Reflected if Sum is "0".
Control data: D10 to D11 MODE [Drive mode] The CXD3410GA timing generator block drive mode can be switched as follows. However, the drive mode bits are loaded to the CXD3410GA and reflected at the falling edge of VD. D11 0 0 1 1 D10 0 1 0 1 Description of operation Draft mode (quadruple speed: default) Frame mode (A field readout) Frame mode (B Field readout) Frame mode
- 23 -
CXD3410GA
Control data: D12 CCD [CCD switching] Specify CCD image sensor to use. However, the CCD switching bits are loaded to the CXD3410GA and reflected at the falling edge of VD. The default is "ICX224/ICX284". D12 0 1 CCD ICX224/ICX284 ICX202/ICX232
Control data: D36 to D37 LDAD [ADCLK logic phase] This indicates the ADCLK logic phase adjustment data. The default is 90 relative to MCKO. D37 0 0 1 1 D36 0 1 0 1 Degree of adjustment () 0 90 180 270
Control data: D38 to D39 STB [Standby] The operating mode of the timing generator block is switched as follows. However, the standby bits are loaded to the CXD3410GA and control is applied immediately at the rising edge of SEN1. D39 X 0 1 D38 0 1 1 Symbol CAM SLP STB Operating mode Normal operating mode Sleep mode Standby mode
See the Pin Status Table for the pin status in each mode.
- 24 -
CXD3410GA
Control data/shutter data: [Electronic shutter] The CXD3410GA realizes various electronic shutter functions by using control data D13 to D14 SMD and shutter data D10 to D17 SVD, D18 to D27 SHD and D28 to D35 SPL. These functions are described in detail below. First, the various modes are shown below. These modes are switched using control data D13 to D14 SMD. D14 0 0 1 1 D13 0 1 0 1 Description of operation Electronic shutter stopped mode High-speed/low-speed shutter mode HTSG control mode
The electronic shutter data is expressed as shown in the table below using D18 to D27 SHD as an example. MSB D27 0 1 D26 1 D25 1 D24 1 C D23 0 D22 0 D21 0 D20 0 3 D19 1 LSB D18 1 SHD is expressed as 1C3h .
[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] During this mode, the shutter data items have the following meanings. Symbol SVD SHD SPL Data D10 to D17 D18 to D27 D28 to D35 Description Number of vertical periods specification (00h SVD FFh) Number of horizontal periods specification (000h SHD 3FFh) Vertical period specification for high-speed shutter operation (000h SPL FFh)
The period during which SVD and SHD are specified together is the shutter speed. Concretely, when specifying high-speed shutter, SVD is set to "00h". (See the figure.) During low-speed shutter, or in other words when SVD is set to "01h" 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 SHD can be considered as (number of SUB pulses - 1). Note) The bit data definition area is assured in terms of the CXD3410GA functions, and does not assure the CCD characteristics.
- 25 -
CXD3410GA
VD
SHD
SVD
V1A SUB WEN SMD SVD SHD 01 02h 10Fh 01 00h 050h
Further, SPL can be used during this mode to specify the SUB output at the desired vertical period during the low-speed shutter period. In the case below, SUB is output based on SHD at the SPL vertical period out of (SVD + 1) vertical periods.
SPL VD SHD V1A SUB WEN SMD SPL SVD SHD 10 01h 02h 10Fh 01 00h 00h 0A3h SVD
Incidentally, SPL is counted as "00h", "01h", "02h" and so on in conformance with SVD. 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.
- 26 -
CXD3410GA
[HTSG control mode] During this mode, all shutter data items are invalid. The V1A/B and V3A/B ternary level outputs are stopped, so the shutter speed is the value obtained by adding the shutter speed specified in the preceding vertical period to the vertical period during which these readout pulses are stopped as shown in the figure.
VD
V1A SUB Vck WEN SMD 01 11 01 Exposure time
- 27 -
Chart-1
* ICX224/ICX284
Vertical Direction Timing Chart
MODE Frame mode
A Field B Field
Applicable CCD image sensor
VD
25 31 24 31 (651) 650 1
(1300) 650 1
HD
SUB A C B
C
V1A
V1B
V2
V3A
1228
1230
1232
1234
1236
1225
1227
1229
1231
1233
PBLK
OBCLP
CLPDM
ID
WEN
CXD3410GA
The number of SUB pulses is determined by the serial interface. This chart shows the case where SUB pulses are output in each horizontal period. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component.
1235
- 28 -
1 3 5 7 9 1 3 5 7 9 11 13 15 17 19 21
V3B
V4
2 4 6 8 10 2 4 6 8 10 12 14 16 18
CCD OUT
Chart-2
* ICX224/ICX284
Vertical Direction Timing Chart
MODE Draft mode (Quadruple-speed)
Applicable CCD image sensor
VD
12 16 325 1 12 16
325 1
HD
SUB D D
V1A
V1B
V2
V3A
1215
1218
1223
1226
1231
1210
1215
1218
1223
1226
1234
1231
PBLK
OBCLP
CLPDM
ID
WEN
CXD3410GA
The number of SUB pulses is determined by the serial interface. This chart shows the case where SUB pulses are output in each horizontal period. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component.
1234
- 29 -
4 9 2 7 10 15 18 23 26 31 34 39 42 47 50 55 58
V3B
V4
4 9 2 7 10 15 18 23 26 31 34 39 42 47 50 55
CCD OUT
Chart-3
* ICX224/ICX284
Horizontal Direction Timing Chart
MODE Frame mode
Applicable CCD image sensor
(1848) 0 50 200 250 100 150
HD
MCKO
56 188
H1
H2
72 120
V1A/B
104 152
V2
56 136
V3A/B
88 168
- 30 -
88 152 56 51 104 104
V4
SUB
214
PBLK
13
OBCLP
190 214
CLPDM
ID
WEN
The HD of this chart indicates the actual CXD3410GA load timing. The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HD. The HD fall period should be between approximately 3.1 to 10.4s (when the drive frequency is 18MHz). This chart shows a period of 115ck (6.4s). SUB is output at the timing shown above when output is controlled by the serial interface data. ID and WEN are output at the timing shown above at the position shown in Chart-1.
CXD3410GA
Chart-4
* ICX224/ICX284
Horizontal Direction Timing Chart
MODE Draft mode (Quadruple-speed)
Applicable CCD image sensor
(1848) 0 50 100 150 200 250
HD
MCKO
56 188
H1
H2
56 152 88 120
V1A/B
72 104 136 168
V2
56 88 120 152
V3A/B
72 104 136 168
- 31 -
88 152 56 51 104 104
V4
SUB
214
PBLK
13
OBCLP
190 214
CLPDM
ID
WEN
The HD of this chart indicates the actual CXD3410GA load timing. The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HD. The HD fall period should be between approximately 3.1 to 10.4s (when the drive frequency is 18MHz). This chart shows a period of 115ck (6.4s). SUB is output at the timing shown above when output is controlled by the serial interface data. ID and WEN are output at the timing shown above at the position shown in Chart-2.
CXD3410GA
Chart-5
* ICX224/ICX284
Horizontal Direction Timing Chart (High-speed sweep: C)
MODE Frame mode
Applicable CCD image sensor
(1848) 0 50 200 250 100 150
HD
MCKO
56 188
H1
H2
56 84 112 140 168 196 224 252 280
V1A/B
70 182 98 126 154 210 238 266
V2
56 84 112 140 168 196 224 252 280
V3A/B
70 98 126 154 182 210 238 266
V4 #1
88 152
- 32 -
#2
56 51
#3
#4
SUB
PBLK
13
OBCLP
CLPDM
ID
WEN
The HD of this chart indicates the actual CXD3410GA load timing. The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HD. The HD fall period should be between approximately 3.1 to 10.4s (when the drive frequency is 18MHz). This chart shows a period of 115ck (6.4s). SUB is output at the timing shown above when output is controlled by the serial interface data. High-speed sweep of V1A/B, V2, V3A/B and V4 is performed up to 22H of 1848ck (#758).
CXD3410GA
Chart-6
* ICX224/ICX284
Horizontal Direction Timing Chart
MODE Frame mode
Applicable CCD image sensor
1027 1029
1071
1091
1131 1133
(1848) 0 (1848) 0
56 72 88 104 120 136 152 168 184 200 216
1175
56 72 88 104 120 136 152 168
HD [A]
[A Field]
V1A
V1B
V2
V3A
V3B
- 33 -
[B] Logic alignment portion
V4
[B Field]
V1A
V1B
V2
V3A
V3B
V4
CXD3410GA
The HD of this chart indicates the actual CXD3410GA load timing. The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HD. The HD fall period should be between approximately 3.0 to 13.4s (when the drive frequency is 18MHz). This chart shows a period of 115ck (6.4s).
Chart-7
* ICX224/ICX284
Horizontal Direction Timing Chart
MODE Draft mode (Quadruple-speed)
Applicable CCD image sensor
1027 1029
1131 1133
1071
1091
(1848) 0 1111 (1848) 0
56 72 88 104 120 136 152 168
1175
56 72 88 104 120 136 152 168
HD [D]
V1A
V1B
- 34 -
V2
V3A
V3B
V4
CXD3410GA
The HD of this chart indicates the actual CXD3410GA load timing. The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HD. The HD fall period should be between approximately 3.1 to 10.4s (when the drive frequency is 18MHz). This chart shows a period of 115ck (6.4s).
Chart-8
* ICX202/ICX232
Vertical Direction Timing Chart
MODE Frame mode
A Field B Field
Applicable CCD image sensor
VD
37 40 (526) 525 1 36 40
(1050) 525 1
HD
SUB E G F
G
V1A
V1B
V2
V3A
958
960
962
964
966
955
957
959
961
963
CCD OUT
1 3 1 3 5 7 9 11 13 15 17 19 21 23
PBLK
OBCLP
CLPDM
ID
WEN
CXD3410GA
The number of SUB pulses is determined by the serial interface data. This chart shows the case where SUB pulses are output in each horizontal period. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component.
965
- 35 -
V3B
V4
2 4 2 4 6 8 10 12 14 16 18 20
Chart-9
* ICX202/ICX232
Vertical Direction Timing Chart
MODE Draft mode (Quadruple-speed)
Applicable CCD image sensor
VD
17 20 262 1 17 20
262
1
HD
SUB H H
V1A
V1B
V2
V3A
949
952
957
960
965
944
949
952
957
960
CCD OUT
1 4 5 8 13 16 21 24 29 32 37 40 45
PBLK
OBCLP
CLPDM
ID
WEN
CXD3410GA
The number of SUB pulses is determined by the serial interface data. This chart shows the case where SUB pulses are output in each horizontal period. ID is low for lines where CCD OUT contains the R component, and high for lines where CCD OUT contains the B component.
965
- 36 -
V3B
V4
1 4 5 8 13 16 21 24 29 32 37 40
Chart-10
* ICX202/ICX232
Horizontal Direction Timing Chart
MODE Frame mode
Applicable CCD image sensor
(1560) 0 50 200 250 100 150
HD
MCKO
55 242
H1
H2
75 135
V1A/B
115 175
V2
55 155
V3A/B
95 195
- 37 -
95 155 55 50 115 115
V4
SUB
270
PBLK
10
OBCLP
244 270
CLPDM
ID
WEN
The HD of this chart indicates the actual CXD3410GA load timing. The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HD. The HD fall period should be between approximately 3.0 to 13.4s (when the drive frequency is 18MHz). This chart shows a period of 115ck (6.4s). SUB is output at the timing shown above when output is controlled by the serial interface data. ID and WEN are output at the timing shown above at the position shown in Chart-8.
CXD3410GA
Chart-11
* ICX202/ICX232
Horizontal Direction Timing Chart
MODE Draft mode (Quadruple-speed)
Applicable CCD image sensor
(1560) 0 50 200 250 100 150
HD
MCKO
55 242
H1
H2
55 95 135 175
V1A/B
75 115 155 195
V2
55 95 135 175
V3A/B
75 115 155 195
- 38 -
95 155 55 50 115 115
V4
SUB
270
PBLK
10
OBCLP
244 270
CLPDM
ID
WEN
The HD of this chart indicates the actual CXD3410GA load timing. The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HD. The HD fall period should be between approximately 3.0 to 13.4s (when the drive frequency is 18MHz). This chart shows a period of 115ck (6.4s). SUB is output at the timing shown above when output is controlled by the serial interface data. ID and WEN are output at the timing shown above at the position shown in Chart-9.
CXD3410GA
Chart-12
* ICX202/ICX232
Horizontal Direction Timing Chart (High-speed sweep: C)
MODE Frame mode
Applicable CCD image sensor
(1560) 0 50 200 250 100 150
HD
MCKO
55 242
H1
H2
55 95 135 175 215 255
V1A/B
75 115 155 195 235 275
V2
55 175 95 135 215 255
V3A/B
75 115 155 195 235 275
V4
95
- 39 -
#1
155 55 50
#2
#3
SUB
PBLK
10
OBCLP
CLPDM
ID
WEN
The HD of this chart indicates the actual CXD3410GA load timing. The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HD. The HD fall period should be between approximately 3.0 to 13.4s (when the drive frequency is 18MHz). This chart shows a period of 115ck (6.4s). SUB is output at the timing shown above when output is controlled by the serial interface data. High-speed sweep of V1A/B, V2, V3A/B and V4 is performed up to 33H of 1295ck (#659).
CXD3410GA
Chart-13
* ICX202/ICX232
Horizontal Direction Timing Chart
MODE Frame mode
Applicable CCD image sensor
(1560) 0 843 903 923 983 (1560) 0
55 75 95 115 135 155 175 195
55 75 95 115 135 155 175 195
HD [E]
[A Field]
V1A
V1B
V2
V3A
V3B
- 40 -
[F]
V4
[B Field]
V1A
V1B
V2
V3A
V3B
V4
CXD3410GA
The HD of this chart indicates the actual CXD3410GA load timing. The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HD. The HD fall period should be between approximately 3.0 to 13.4s (when the drive frequency is 18MHz). This chart shows a period of 115ck (6.4s).
Chart-14
* ICX202/ICX232
Horizontal Direction Timing Chart
MODE Draft mode (Quadruple-speed)
Applicable CCD image sensor
(1560) 0 843 903 923 983 (1560) 0
55 75 95 115 135 155 175 195
55 75 95 115 135 155 175 195
HD [H]
V1A
V1B
V2
- 41 -
V3A
V3B
V4
CXD3410GA
The HD of this chart indicates the actual CXD3410GA load timing. The numbers at the output pulse transition points indicate the count at the MCKO rise from the fall of HD. The HD fall period should be between approximately 3.0 to 13.4s (when the drive frequency is 18MHz). This chart shows a period of 115ck (6.4s).
Chart-15
* ICX224/ICX284/ICX202/ICX232
High-Speed Phase Timing Chart
MODE
Applicable CCD image sensor
HD
HD'
CKI
CKO
ADCLK
55/56 188/242
1
MCKO
- 42 -
H1
H2
RG
XSHP
XSHD
XRS
CXD3410GA
HD' indicates the HD which is the actual CXD3410GA 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 logical phase of ADCLK can be specified by the serial interface.
CXD3410GA
CCD Signal Processor Block Serial Interface Control The CXD3410GA's CCD signal processor block basically loads the CCD signal processor block serial interface data sent in the following format at the rising edge of SEN2, and the setting values are then reflected to the operation 6 ADCLKI clocks after that. CCD signal processor block serial interface control requires clock input to ADCLKI in order to load and reflect the serial interface data to operation, so this should normally be performed when the timing generator block is in the normal operation mode.
SSI2 SCK2 SEN2
00
01
02
03
04
05
06
07
08
09
10
11
12
13
14
15
There are four categories of CCD signal processor block serial interface data: standby control data, PGA gain setting data, OB clamp level setting data, and input pulse polarity setting data. Note that when data from multiple categories is loaded consecutively, the data for the category loaded last is valid and data from other categories is lost. When transferring data from multiple categories, raise SEN2 for each category and wait until the setting value 6 ADCKLI clocks after that has been reflected to operation, then transmit the next category. The detail of each data are described below. Standby Control Data Data D00 D01 to D03 D04 to D14 D15 Symbol TEST CTG Test code Category switching Function Data = 0 Set to 0. D01 to D03 CTG Data = 1
FIXED STB
-- Standby control
Set to All 0. Normal operating mode Standby mode
PGA Gain Setting Data Data D00 D01 to D03 D04 to D05 D06 to D15 Symbol TEST CTG Test code Category switching Function Data = 0 Set to 0. D01 to D03 CTG Data = 1
FIXED
--
Set to All 0.
GAIN
PGA gain setting data - 43 -
See D06 to D15 GAIN.
CXD3410GA
OB Clamp Level Setting Data Data D00 D01 to D03 D04 to D11 D12 to D15 Symbol TEST CTG Test code Category switching Function Data = 0 Set to 0. D01 to D03 CTG Data = 1
FIXED
--
Set to All 0.
OBLVL
OB clamp level setting data
See D12 to D15 OBLVL.
Input Pulse Polarity Setting Data Data D00 D01 to D03 D04 to D12 D13 to D15 Symbol TEST CTG Test code Category switching Function Data = 0 Set to 0. D01 to D03 CTG Data = 1
FIXED
--
Set to All 0.
POL
Input pulse polarity setting data
Set to All 0.
- 44 -
CXD3410GA
Detailed Description of Each Data Shared data: D01 to D03 CTG [Category] Of the data provided to the CXD3410GA by the CCD signal processor block serial interface, the CXD3410GA loads D04 and subsequent data to each data register as shown in the table below according to the combination of D01 to D03 . D01 0 0 0 0 1 D02 0 0 1 1 X D03 0 1 0 1 X Description of operation Loading to standby control data register Loading to PGA gain setting data register Loading to OB clamp level setting data register Loading to input pulse polarity setting data register Access prohibited
Standby control data: D15 STB [Standby] The operating mode of the CCD signal processor block is switched as follows. When the CCD signal processor block is in standby mode, only the serial interface is valid. D15 0 1 Description of operation Normal operating mode Standby mode
PGA gain setting data: D06 to D15 GAIN [PGA gain] The CXD3410GA can set the programmable gain amplifier (PGA) gain from -6dB to +42dB in 1024 steps by using PGA gain setting data D06 to D15 GAIN. The PGA gain setting data is expressed as shown in the table below using D06 to D15 GAIN. MSB D06 0 1 D07 1 D08 1 D09 1 C D10 0 D11 0 D12 0 D13 0 3 D14 1 LSB D15 1 GAIN is expressed as 1C3h .
For example, when GAIN is set to "000h", "080h", "220h", "348h" and "3FFh", the respective PGA gain setting values are -6dB, 0dB, +20dB, +34dB and +42dB.
- 45 -
CXD3410GA
OB clamp level setting data: D12 to D15 OBLVL [OB clamp level] The CXD3410GA can set the OPB clamp output value from 0 to 60LSB in 4LSB steps by using CCD signal processor block control data D12 to D15 OBLVL. The OPB clamp output setting data is expressed as shown in the table below using D12 to D15 OBLVL. MSB D12 0 D13 1 6 D14 1 LSB D15 0 OBLVL is expressed as 6h .
For example, when OBLVL is set to "0h", "1h", "8h" and "Fh", the respective OPB clamp output setting values are 0LSB, 4LSB, 32LSB and 60LSB.
- 46 -
Application Circuit Block Diagram
XSHPI XSHDI PBLKI CLPDMI CLPOBI XSHP
XSHD PBLK
CLPDM CLPOB ADCLK
ADCLKI
C7 0.1F
C8 0.1F B7 A2 NC NC D0 (LSB) D1 D2 D3 D4 C2 C1 D3 D2 D5 D6 D7 D1 D8 E1 J2 K2 M2 N2 N9 M9 M8 N8 L8 D9 (MSB) CKO MCKO VD HD ID WEN RST DSGAT EBCKSM Signal Processor Block A7
F9 F8 F7 G3 G2 CCDIN C9 D7 B3 D8 B2 B1 C3 C8 C7 A1 C1 C2 C3 C4
G9 G8 G7 H3 H2 H1
G1
C9 0.1F C6 SEN2 SCK2
CCD ICX202/232 ICX224/284
CCDOUT
1F
1F
390pF
390pF
240pF
H1 J8 J9 K8 L5 N5 M4 L5 N6 N4 N7 H2 RG V1A V1B V2 V3A V3B V4 SUB TG/CDS/PGA/ADC CXD3410GA
SSI1
SEN1
CKI
OSCI
SCK1
SSI2
OSCO
TEST1
TEST2
TEST3
TEST4
This block diagram illustrates connections with each circuit block, and is not an actual circuit diagram. See the CCD image sensor data sheet for an example of specific circuit connections with the CCD image sensor.
CXD3410GA
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.
TEST5
- 47 -
J1 K1 L1 M3 M7 A5 C4 B5
L2 N1 M1 A4 B4 A3
Controller
CXD3410GA
Notes on Operation 1. Be sure to start up the timing generator block VL and VH pin power supplies at the timing shown in the figure below in order to prevent the SUB pin of the CCD image sensor from going to negative potential. In addition, start up the timing generator block VDD1, VDD2, VDD3, VDD4 and VDD5 pin and CCD signal processor block DVDD1, DVDD2, AVDD1, AVDD2, AVDD3, AVDD4 and AVDD5 pin power supplies at the same time either before or at the same time as the VH pin power supply is started up.
15.0V
t1
20% 0V 20%
t2 t2 t1 -7.5V
2. Reset the timing generator block and CCD signal processor block during power-on. The timing generator block is reset by inputting the reset signal to the RST pin. The CCD signal processor block is reset by initializing the serial data. 3. Separate the timing generator block VDD1, VDD2, VDD3, VDD4 and VDD5 pins from the CCD signal processor block DVDD1, DVDD2, AVDD1, AVDD2, AVDD3, AVDD4 and AVDD5 pins. Also, the ADC output driver stage is connected to the dedicated power supply pin DVDD1. Separating this pin from other power supplies is recommended to avoid affecting the internal analog circuits. 4. The difference in potential between the timing generator block VDD4 pin supply voltage 3 VDDc and the CCD signal processor block DVDD1, DVDD2, AVDD1, AVDD2, AVDD3, AVDD4 and AVDD5 pin supply voltages 1 VDDe, 2 VDDf and 3 VDDg should be 0.1V or less. 5. The timing generator block and CCD signal processor block ground pins should use a shared ground which is connected outside the IC. When the set ground is divided into digital and analog blocks, connect the timing generator block ground pins to the digital ground and the CCD signal processor block ground pins to the analog ground. The difference in potential between the timing generator block VSS1, VSS2, VSS3, VSS4, VSS5, VSS6 and VM and the CCD signal processor block DVSS1, DVSS2, DVSS3, AVSS1, AVSS2, AVSS3, AVSS4, AVSS5 and AVSS6 should be 0.1V or less. 6. Do not perform serial communication with the CCD signal processor block during the effective image period, as this may cause the picture quality to deteriorate. In addition, using SCK2, SSI2 and SEN2, which are used by the CCD signal processor block, use of the dedicated ports is recommended. When using these pins as shared ports with the timing generator block or other ICs, be sure to thoroughly confirm the effects on picture quality before use. - 48 -
CXD3410GA
Package Outline Oita Ass'y
Unit: mm
0.2 SA 8.0
96PIN LFLGA
X
12.0
0.10MAX
SB
x4
DETAIL X
(0.3)
(0.3) 0.5 A N M L K J H G F E D C B A 0.5 (0.3) 12 3 4 5 6 7 8 9 0.8 0.5
LFLGA-96P-02 P-LFLGA96-12X8-0.8
0.8
96 -0.45 0.05 0.08 M S A B
0.9
B
0.9
(0.3) 0.5
1.2
0.8
3 - 0.50
PACKAGE STRUCTURE
PACKAGE MATERIAL TERMINAL TREATMENT TERMINAL MATERIAL PACKAGE MASS ORGANIC SUBSTRATE GOLD PLATING NICKEL PLATING 0.3 g
SONY CODE EIAJ CODE JEDEC CODE
HITACHI TOKYO Ass'y
0.2
SA 8.0
96PIN LFLGA
X
12.0
0.10MAX
SB
x4
(0.3)
(0.3)
0.5 A
0.8
96 -0.45 0.05 0.08 M S A B
DETAIL X
N M L K J H G F E D C B A 12 3 4 5 6 7 8 9 0.8 0.5
LFLGA-96P-051
0.9
B
0.9
(0.3) 0.5
1.2
0.8
3 - 0.50
0.5 (0.3)
PACKAGE STRUCTURE
PACKAGE MATERIAL ORGANIC SUBSTRATE
SONY CODE EIAJ CODE JEDEC CODE
TERMINAL TREATMENT NICKEL & GOLD PLATING TERMINAL MATERIAL PACKAGE MASS COPPER 0.3g
P-LFLGA96-12.0X8.0-0.8
- 49 -
S
0.15
0.2
0.2
S
0.10 S
PIN 1 INDEX
1.3 MAX
S
0.15
0.2
0.2
S
0.10 S
PIN 1 INDEX
1.3 MAX
Sony Corporation


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