CXA1391R Sony, CXA1391R Datasheet

no-image

CXA1391R

Manufacturer Part Number
CXA1391R
Description
Processing IC for Complementary Color Mosaic CCD Camera
Manufacturer
Sony
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
CXA1391R
Manufacturer:
SONY/索尼
Quantity:
20 000
Block Diagram and Pin Configuration
(Top View)
Description
signal processing in complementary color mosaic
CCD cameras.
Features
• Low power consumption (170mW)
• Number of delay lines used for signal processing
• The LPF peripheral to 1H delay line is built in
Structure
Applications
The CXA1391Q/R is a bipolar IC developed for
can
requirements
Bipolar silicon monolithic IC
Complementary color mosaic CCD cameras
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.
Processing IC for Complementary Color Mosaic CCD Camera
be
selected
LPF ADJ 1
LPF ADJ 2
LPF ADJ 3
DLY0 OUT
DLY1 OUT
CLP C YO
Y-r CONT
Y1 GAIN
Y2 GAIN
DLY1 IN
DLY2 IN
GND 2
YH IN
S2 IN
S1 IN
V
CC
according
59
49
50
51
52
53
54
55
56
57
58
60
62
63
64
61
GC
GC
(CLP2)
CLP
48
LPF
1
Y0
C0
(CLP4)
(CLP4)
47
CLP
CLP
2
Y0
LPF
r
to
46
Y1
Y2
3
GC
YH1
YH0
45
4
the
LPF
LPF
LPF
(CLP4)
CLP
(CLP4)
CLP
APCN
44
5
3H
system
LPF
LPF
43
6
APCN
GC
2H
C0
C1
YH1
Y0
YH0
Y1
42
7
(CLP2)
MPX
CLP
LPF
&
– 1 –
41
8
-CB
ABS
CR
Y
40
MATRIX
Absolute Maximum Ratings
• Supply voltage
• Storage temperature Tstg
• Allowable power dissipation
Recommended Operating Conditions
• Supply voltage
• Ambient temperature Topr
9
WB CONTROL
GC
64 pin QFP (Plastic)
CXA1391Q/R
39
10
CS VAP
B
G
R
V-APCN
CS-Y
WB AMP
38
11
CXA1391Q
MAX
37
12
CS
LPF
LPF
36
13
35
14
(CLP2)
CLP
(LQFP: Ta = 25°C, without P.C.B)
34
15
Vcc
P
Vcc
33
16
D
64 pin LQFP (Plastic)
32
30
29
26
23
20
19
18
17
31
28
27
25
24
22
21
C SLICE
WB DC
WB B
WB G
WB R
C-r CONT
GND 1
YL OUT
CS OUT
CS GAIN
R – Y HUE
B – Y HUE
R – Y OUT
B – Y OUT
B – Y GAIN
R – Y GAIN
–55 to +150
4.75 to 5.25
–20 to +75
CXA1391R
690
7
E89Z18-ST
mW
°C
°C
V
V

Related parts for CXA1391R

CXA1391R Summary of contents

Page 1

... APCN APCN V-APCN LPF YH0 YH1 CLP GC (CLP4) YH1 YH0 – 1 – CXA1391R 64 pin LQFP (Plastic) Vcc 7 –55 to +150 P 690 mW D (LQFP 25°C, without P.C.B) Vcc 4.75 to 5.25 – SLICE 32 CLP WB DC (CLP2 ...

Page 2

Pin Description PIn Symbol Pin voltage No. CLP 3. 3.65V H CLP C 3 2 2.7 to 3.1V OUT Note) Pin ...

Page 3

PIn Symbol Pin voltage No OUT1 1 OUT2 6 1.9 to 2.3V H 2 2.5 to 2.9V (G) 0V (0H Mode GAIN 8 H 1.8 ...

Page 4

PIn Symbol Pin voltage No. 5V CLP4 CLP2 VAP OUT 2.6 to 3.0V 1 VAP GAIN (Control) 13 CLP C VAP 3.4 to 3.8V V-APCN: Vertical Aperture Compensation Equivalent circuit 1k ...

Page 5

PIn Symbol Pin voltage No. 1 VAP SLICE 14 (Control) CLP 3.5 to 3.7V C-Couple CS IN input 16 2.9 to 3.3V Equivalent circuit 1k 147 14 30k 30k 40µA 2.6k 2.6k 147 147 180µA ...

Page 6

R–G output R–Y GAIN 17 1.8 to 5V: R–Y output 0V: B–G output B–Y GAIN 18 1.8 to 5V: B–Y output 1 GAIN (Control) 2.75 to 3.15V 19 B–Y OUT (Hue OFF) 2.35 to 2.75V ...

Page 7

PIn Symbol Pin voltage No OUT 1 OUT 1 GND1 0V: Typ. C- CONT 27 curve Equivalent circuit 431 24 200µA 431 25 80µA 1k 100k 30k 30k 147 40µA ...

Page 8

PIn Symbol Pin voltage SLICE Slice OFF 1 ...

Page 9

PIn Symbol Pin voltage No. CLP 3.0 to 3.6V 35 3.0 to 3.6V CLP CLP C B 3.0 to 3.6V 1 GAIN (Control) 1 GAIN (Control) ...

Page 10

PIn Symbol Pin voltage No 1 (Control) B MTX 42 0V (Preset) CLP C 43 2.7 to 3.1V MPX2 CLP C 44 2.7 to 3.1V MPX1 Equivalent circuit 1k 30k 147 41 40µA 1k ...

Page 11

PIn Symbol Pin voltage No. 1 (Control MTX 0V (Preset) C-Couple 48 DLC IN input 1 3.1 to 3.5V C-Couple 55 DLY IN input 1 3.6 to 4.0V C-Couple 56 DLY IN input 2 3.6 to ...

Page 12

PIn Symbol Pin voltage No. 51 CLP C Y 3.3 to 3. (3H Mode) Y GAIN (2H Mode) 58 GND2 LPF Adj. 1 1 LPF Adj. 2 1.8 to ...

Page 13

PIn Symbol Pin voltage No. LPF Adj 1.8 to 2.2V 62 Vcc 0V curve (Typ CONT 1 (Control 0.95V H Equivalent circuit 1k 300 300 61 120k 1k 100k 30k ...

Page 14

Electrical Characteristics Item Symbol Current consumption ID S2–S1 Amp Gain SSG DLC Max. DLC 1 gain control DLC Min. S1+S2 Amp SAG GY Gch Y Chroma matrix (Gch Note 3) GC – ...

Page 15

Item Symbol RCH RCONT Max. RCONT Min. RCL BCH BCONT Max. WB GAIN BCONT Min. BCL RGH RGAIN Max. BGAIN Max. BGH Conditions Input: DLC IN = –200mV 1 Conditions: C-level = 5V RCONT = 4.6V ( Calculations: ...

Page 16

Item Symbol R–G OUT/ BMBY WB-B R–Y OUT/ BMRY WB-B Bch color difference B–Y GAIN matrix BMG Max. Note 5) BMHH B–Y Hue Max. B–Y Hue Min. BMHL R–Y/R–G GMR Gch color difference matrix Note 5) B–Y/B–G GMB Conditions Input: ...

Page 17

Item Symbol CSLL Typ.–Min. C-Slice Typ.–Max. CSLH C- CONT=0V Typ. Gch-WB=400mV C- CONT=0V L8 Gch-WB=800mV C- CONT=0V L1 Gch-WB=100mV Gch C- CONT=1.8V M4 curve Gch-WB=400mV C- CONT=1.8V M8 Gch-WB=800mV C- CONT=1.8V M1 Gch-WB=100mV C- CONT=5V H4 Gch-WB=400mV C- CONT=5V H8 ...

Page 18

Item Symbol 1.0 (Typ.) Y 2.0/Y 1.0 Y 2.0 Y 0.5 Y 0.5/Y 1 0.5 (Max.)/ 1.0 Y 0.5 (Min.)/ 1.0 TPY TP (YH) TPDY TP (DLY ) H ...

Page 19

Item Symbol Y OUT OUT Y L Note 5) Y OUT OUT Y OUT OUT Y OUT1 (OH mode) YH1Z H Y OUT1 1H/0H YH1O ...

Page 20

Item Symbol Min DLY 1 gain Note 11) Max Min DLY 2 gain Note 11) Max VCS Typ. VCST CS VCSL VCS Min. Note 12) VCS Max. VCSH ...

Page 21

Note 1) For pins without specific instructions regarding input, feed the DC value shown on the Test Circuit. Calculations are mentioned utilizing the pin name or the electrical characteristics symbols. Otherwise, for exceptional notations explanatory notes, are given with every ...

Page 22

Timing Chart for Testing Input waveform 30µ 2µ CLP2 0V 5µ 5V 2µ CLP4 0V 15µ Output waveform DLY OUT B – Y OUT H Y OUT1 R – Y OUT H Y OUT2 CS ...

Page 23

CXA1391Q/R ...

Page 24

Standard Control Characteristics (Vcc = 5V 25°C) C1 GAIN control characteristics 3 GAIN converted into unit GAIN voltage (V) B-MTX coefficient 0.4 0.3 Preset 0.2 0 B-MTX voltage (V) ...

Page 25

C-SLICE control characteristics 1 C-LEVEL voltage (V) R–Y/B–Y GAIN control characteristics R–Y/B–Y GAIN voltage (V) Y1/Y2 GAIN control characteristics Y1/Y2 GAIN voltage (V) C-SLICE control characteristics ...

Page 26

DLY GAIN control characteristics DLY GAIN voltage (V) H VAP SLICE control characteristics 300 200 100 VAP GAIN = 0V Diminution of VAP OUT output level VAP SLICE voltage (V) ...

Page 27

Standard Design Data 1.2 1.0 0.8 0 0.4 3 0.2 0.2 0.4 1.4 1.2 1.0 0.8 0 0.4 3 0.2 0.2 0.4 1.0 0.8 0.6 0.4 0.2 0.2 0.4 Chroma curve (standardize) Standardize at typical input ...

Page 28

Pre-Filter Adjust characteristics <Group Delay> 300 250 200 150 100 10k 15k 20k 25k R [LPF ADJ1 (59PIN EXT Chroma Adjust characteristics 800 600 400 200 10k 20k 30k 1.5 1.0 0.5 10k 20k 30k DL Y0 ...

Page 29

CS-VAP Adjust characteristics (S1, S2 800 600 400 10k 20k 30k 1.5 1.0 0.5 10k 20k 30k CS OUT) <Group Delay> 40k 50k 60k R [LPF ADJ2 (60 PIN EXT <Cut Off> (fc: –3dB) 40k 50k 60k ...

Page 30

CS-Y LPF Adjust characteristics (CS IN 600 400 200 10k 20k 30k 2.0 1.5 1.0 0.5 10k 20k 30k VAP LPF Adjust characteristics CS OUT) <Group Delay> 40k 50k 60k R [LPF ADJ2 (60 PIN EXT <Cut ...

Page 31

VAP LPF Adjust characteristics (S1, S2 600 400 200 10k 20k 30k 1.5 1.0 0.5 10k 20k 30k VAP OUT) <Group Delay> 40k 50k 60k R [LPF ADJ3 (61 PIN EXT <Cut Off> (fc: –3dB) 40k 50k ...

Page 32

SYNC CTBLK SYNC-LEVEL CBLK SETUP BF FADER-SIG BFG FADER-MODE FSC-OUT Y-LEVEL NC SHP-OUT NC SHP-CLP2 LALT DLD 4FSC SHP-CLP1 CC DV DLE CLP R-Y LEVEL IN R-Y SHP- LEVEL C OUT B-Y R-CLP GAIN B-Y G-CLP GAIN R-Y B-CLP CS-IN ...

Page 33

... Package Outline Unit: mm CXA1391Q SONY CODE EIAJ CODE JEDEC CODE CXA1391R 49 64 0.5 ± 0.08 SONY CODE EIAJ CODE JEDEC CODE 64PIN QFP(PLASTIC) 23.9 ± 0.4 + 0.4 20.0 – 0 0.15 + 0.35 1.0 0.4 – 0.1 2.75 – 0.15 M ± 0.12 PACKAGE STRUCTURE PACKAGE MATERIAL EPOXY RESIN SOLDER/PALLADIUM QFP–64P–L01 LEAD TREATMENT ...

Related keywords