AN2145NFHP, AN2146FHP, AN2147FHP
CCD Video Camera Signal Processor ICs
s
Overview
The AN2145NFHP is a CCD video camera signal
processor IC for 510H CCD. It incorporates full
chroma signal LPFs and horizontal aperture correc-
tion circuits. Because carrier-balance is rationalized
and ajustment-free, adjustments and necessary exter-
nal components are reduced half in number as com-
pared with conventional versions of ours.
The AN2146FHP is for 670H CCD, and the
AN2147FHP is for 768HCCD.
12.0±0.2
14.0±0.2
1
0.5
0.2
0.15
+ 0.1
– 0.05
1.3±0.1
2.8±0.2
(0.5)
(min0.25)
Unit:mm
0.1±0.1
s
Features
• Improved color reproduction with 4-channel white
balance
• Built-in high-luminance color-suppression circuit
• Improved S/N ratio at low brightness
12.0±0.2
14.0±0.2
80-Pin QFH Package (QFH080-P-1212)
s
Absolute Maximum Ratings (Ta=25 ˚C)
Parameter
Supply voltage
Supply current
Power dissipation
Note 2)
Operating ambient temperature
Note 1)
Storage temperature
Note
1)
Symbol
V
CC
I
CC
Rating
5.5
100
357
–20 to +75
–55 to +125
1.3±0.1
Unit
V
mA
mW
˚C
˚C
P
D
T
opr
T
stg
Note 1) Ta=25˚C except operating ambient temperature and storage temperatures unless otherwise specified.
Note 2) Allowable power dissipation of the package at Ta=70˚C.
s
Recommended Operating Range (Ta=25˚C)
Parameter
Operating supply voltage range
Symbol
V
CC
Range
4.4V to 4.8V
s
Electrical Characteristics (VCC=4.6V, Ta=25±2˚C)
Parameter
Total circuit current
Reference voltage (or V
REF
output voltage)
Pulse separation level CPOB
Pulse separation level PBLK
Pulse separation level CP2
Pulse separation level CBLK
Pulse separation level FH/2
Pulse separation level SP
Pulse separation level WBLK
Pulse separation level SYNC
Luminance AGC max. gain
Luminance AGC mini. gain
Color difference AGC min. gain
Note A)
Symbol
Itot
V
REF
V
CPOB
V
PBLK
V
CP2
V
CBLK
V
FH/2
V
SP
V
WBLK
V
DSYN
V
YMAX
V
YMIN
V
CMAX
V
CMIN
V
YGAM1
V
YGAM2
V
YGAM3
V
YFADE
V
HAP
V
BCLIP
V
YOUT
V
HCLIP
V
LCLIP
V
SYNC
V
PED1
V
PED2
V
CCLIP
V
SH
V
SW
V
SWOFF
V
RWB
V
CYG
V
BWB
V
YEG
V
RMAT
V
BMAT
V
GAML
V
CGAM1
Condition
min
42
1.68
2.1
0.6
2.1
0.6
0.6
0.4
0.6
1.1
typ
60
1.8
2.5
1.0
2.5
1.0
1.0
0.8
1.0
1.5
26
–6
26
–6
470
630
970
max
78
1.92
2.9
1.4
2.9
1.4
1.4
1.2
1.4
1.9
28.5
–4
28.5
–4
600
810
1260
–26
Unit
mA
V
V
V
V
V
V
V
V
V
dB
dB
dB
dB
mV
P–P
mV
P–P
mV
P–P
dB
dB
mV
P–P
mV
P–P
mV
mV
mV
P–P
mV
mV
dB
mV
P–P
mV
mV
mV
P–P
mV
P–P
mV
P–P
mV
P–P
mV
P–P
mV
P–P
mV
P–P
mV
P–P
V
65
=10STEP 50mV
P–P
V
65
=10STEP 1500mV
P–P
V
65
=Sin500kHz 50mV
P–P
V
65
=Sin500kHz 1500mV
P–P
V
69
=10STEP 1000mV
P–P
3rd step
V
69
=10STEP 1000mV
P–P
5 step
V
69
=10STEP 1000mV
P–P
10 step
V
16
=10STEP 300mV
P–P
V
16
=Sin3.5kHz 100mV
P–P
V
11
=Sin500kHz 40mV
P–P
V
29
=10STEP 600mV
P–P
V
29
=10STEP 1000mV
P–P
V
29
=10STEP 200mV
P–P
(reverse)
V
29
=C–GND
V
29
=C–GND
V
29
=C–GND
V
20
=Sin3.5MHz 600mV
P–P
(V
29
=white signal)
V
65
=square wave 500kHz
1V
P–P
V
48
, V
50
, V
54
, V
56
=C–GND
V
48
, V
50
, V
54
, V
56
=C–GND
V
56
=10STEP 200mV
P–P
V
54
=10STEP 200mV
P–P
V
50
=10STEP 200mV
P–P
V
48
=10STEP 200mV
P–P
V
50
=10STEP 200mV
P–P
V
56
=10STEP 200mV
P–P
V
24
=10STEP 500mV
P–P
V
22
=10STEP 500mV
P–P
V
24
=10STEP 1V
P–P
3rd step
V
22
=10STEP 500mV
P–P
V
24
=10STEP 1V
P–P
5 step
22.5
–9
22.5
–9
350
470
720
Color difference AGC max. gain
Note A)
Luminance g characteristics (1)
Luminance g characteristics (2)
Luminance g characteristics (3)
Luminance fade characteristics
Horizontal AP generation circuit characteristics
Note A)
Base clip characteristics
Note B)
Output luminance signal amplitude
Output high-clip characteristics
Output low-clip characteristics
Synchronous signal level
Pedestal control characteristics (1)
Pedestal control characteristics (2)
Chroma clip characteristics
Note B)
S/H characteristics
Switch level
Switch DC offset
RWB control characteristics
CY+G control characteristics
BWB control characteristics
YE+G control characteristics
R-Y matrix control characteristics
B-Y matrix control characteristics
γ
control signal leak
Color difference
γ
characteristics (1)
Color difference
γ
characteristics (2)
18.5
580
800
–50
268
40
–30
22
680
890
–28
295
60
–10
24.5
60
800
1100
–12
322
100
0
–20
300
–12
–30
420
420
420
420
380
380
450
0
0
580
580
580
580
520
520
600
12
30
760
760
760
760
710
710
100
300
410
530
V
CGAM2
380
530
690
mV
P–P
Note A) Sine wave with BLK and pedestal
Note B) Sine wave with BLK
The value in the above characteristics is not a guaranteed value, but reference one on design.
s
Electrical Characteristics (cont.) (VCC=4.6V, Ta=25±2˚C)
Parameter
Color difference
γ
characteristics (3)
Between channels
γ
characteristics
Color difference gain control characteristics (1)
Note B)
Color difference gain control characteristics (2)
Note B)
Iris
γ
characteristics (1)
Iris
γ
characteristics (2)
Iris
γ
characteristics (3)
Luminance signal blanking level
Iris signal blanking level
R-Y blanking level
B-Y blanking level
VAP generation circuit gain
Note C)
Edge suppression characteristics (1)
Note B)
Edge suppression characteristics (2)
Note B)
Luminance high-cut characteristics
AP mix circuit luminance amplification characteristics
Horizontal APDL group delay
Note A, D)
Aperture mix circuit HAP gain
Note B)
Symbol
V
CGAM3
V
GAM4
V
CGC1
V
CGC2
V
IGAM1
V
IGAM2
V
IGAM3
V
YBLK
V
IBLK
V
RBLK
V
BBLK
V
VAP
V
EDGE1
V
EDGE2
V
HC
V
APY
V
APDL
V
APHAP
V
APVAP
V
LLSP
V
WFADE
V
DLAMP1
V
DLAMP2
V
DLAMP3
V
DLAMP4
V
CHC
V
CFADE
V
SHLPF
V
CLPF
V
VLPF1
V
VLPF2
V
EHPF
Condition
V
22
=10STEP 500mV
P–P
V
24
=10STEP 1V
P–P
10 step
V
23
=10STEP 500mV
P–P
V
24
=10STEP 1V
V
22
=Sin500kHz 600mV
P–P
V
23
=Sin500kHz 600mV
P–P
V
5
=10STEP 1V
P–P
3rd step
V
5
=10STEP 1V
P–P
5 step
V
5
=10STEP 1V
P–P
10 step
V
69
=C–GND
V
5
=C–GND
V
22
=C–GND
V
23
=C–GND
V
54
=10STEP 200mV
P–P
V
56
=10STEP 200mV
P–P
V
22
=Sin500kHz 600mV
P–P
V
23
=Sin500kHz 600mV
P–P
V
65
=10STEP 1500mV
P–P
V
16
=10STEP 300mV
P–P
V
16
=Sin3.5MHz 100mV
P–P
V
13
=Sin3.5MHz 600mV
P–P
V
11
=Sin500kHz 600mV
P–P
V
13
=Sin3.5MHz 600mV
P–P
V
16
=Vref
V
37
=Sin500kHz 500mV
P–P
(V
38
=0.5V)
V
42
=Sin500kHz 500mV
P–P
(V
41
=0.5V)
V
37
=Sin500kHz 500mV
P–P
(V
38
=3.0V)
V
42
=Sin500kHz 500mV
P–P
(V
41
=3.0V)
V
22
=V
23
=Sin500kHz 600mV
P–P
(V
5
=white)
V
22
=V
23
=Sin500kHz 600mV
P–P
V
65
=Sin3.5MHz 1500mV
P–P
V
22
=V
23
=Sin3.5MHz 600mV
P–P
V
48
=V
50
=Sin500kHz 200mV
P–P
V
48
=V
50
=Sin3.5MHz 200mV
P–P
V
54
=V
56
=Sin500kHz 500mV
P–P
min
510
–2
700
700
220
350
470
–20
–20
–20
–20
310
typ
720
0
1150
1150
300
480
630
0
0
0
0
450
max
930
2
1500
1500
390
620
800
20
20
20
20
610
–20
–20
Unit
mV
P–P
dB
mV
P–P
mV
P–P
mV
P–P
mV
P–P
mV
P–P
mV
mV
mV
mV
mV
P–P
dB
dB
mV
dB
ns
dB
dB
dB
mV
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
350
6.9
120
3.4
3.3
–12
515
0
0
8
8
–26
–26
–30
–26
0
–25
–4
Aperture mix circuit VAP gain
Note B, E)
Aperture suppression characteristics
Note B)
White fade characteristics
Delay signal amp. gain (1)
Note A)
Delay signal amp. gain (2)
Note A)
Delay signal amp. gain (3)
Note A)
Delay signal amp. gain (4)
Note A)
Color difference high-clip characteristics
Note B)
Color difference fade characteristics
Note B)
S/H LPF characteristics
Note A)
Color difference LPF characteristics
Note B)
VAP LPF characteristics (1)
Note A)
VAP LPF characteristics (2)
Note A)
Edge HPF characteristics
Note A)
Note A) Sine waves with BLK and pedestal
Note B) Sine waves with BLK
Note C) For the AN2147FHP, 450mV
P-P
min., 665mV
P-P
typ., and 880mV
P-P
max. under the conditions
V
48
=10STEP 200mV
P-P
and V
50
=10STEP 200mV
P-P
.
Note D) 90ns typ. for the AN2146FHP and the AN2147FHP
Note E) 6.0dB typ. for the AN2147FHP
The value in the above characteristics is not a guaranteed value, but reference one on design.
s
Pin Descriptions
Pin No.
1
2
3
4
5
6
7
8
9
Pin name
R–Y·Out
WBLK·In
Iris·Out
BLK·Out
Iris·In
BW·Fade
Fade·In
R–Y·Gain
Fade·Out
Pin No.
Pin name
Pin No.
Pin name
Pin No.
61 SP1·In
62 SP2·In
63 CAGC·Cont
64 GND2
65 Sig·In
66 YAGC·Cont
67 HC·Cont
68 YAGC·Out
69
γ
· In
70 Knee·Cont
71 YDC·Cont
72 Vre (Typ. 1.8V Out)
73 SSG·In (Cp2, C. Blk)
74 BDC·Cont
75
γ
· Out
76 RDC·Cont
77 High·Clip
78 SUPP·Cont
79 B–Y·Out
80 SUPP·Set
Pin name
21 Dclamp
22 R–Y·In
23 B–Y·In
24 C
γ
·Cont
25 Edge·Test
26 Ped·Set
27 GND1
28 Y·Out
29 Y·In
30 R–Y·Matrix
31 RG·Out
32 B–Y·Matrix
33 BG·Out
34 Drive·In (Cpob, P. Blk)
35 FH2·In
36 V
CC2
(Typ. 4.6V)
37 CY1·In
38 CY1·Gain
39 CY1·Out
40 YE1·Out
41 YE1·Gain
42 YE1·In
43 YE+G·Gain
44 CY+Mg·Out
45 BWB·Gain
46 YE+G·Out
47 CY+G·Gain
48 YE2·In
49 Vref2 (Typ. 1.8V In)
50 CY2·In
51 CY+G·Out
52 V
CC3
(Typ. 4.6V)
53 YE+MG·Out
54 CY0·In
55 RWB·Gain
56 YE0·In
57 VAP·Out
58 CY·Out
59 YE·Out
60 VAP·Test
10 B–Y·Gain
11 VAP·In
12 Vref1 (Typ. 1.8V In)
13 HAP·In
14 HAP·Out
15 Sync·In
16 DL·In
17 Chroma·Clip
18 Chroma·Out
19 V
CC1
(Typ. 4.6V)
20 Chroma·In
s
Reference
P
D
–Ta
1000
900
800
Power dissipation P
D
(mW)
714mW
700
600
500
θj–a=140˚C/W
400
300
200
100
0
0
25
50
75
100
125
(Tjmax)
Ambient temperature Ta (˚C)
s
Block Diagrams (AN2145NFHP,AN2146FHP)
10kΩ
10kΩ
ATT
ATT
1H DL
1H DL
1H DL
1H DL
GAIN Cont.
GAIN Cont.
5.6kΩ
×
4
YE
CY
22kΩ
×
4
RWB
typ.
V
REF
1.8V
1.8V
typ.500mV
1.8V
typ.
500mV
YE1 GAIN
typ. 2.0V
typ.
V
REF
0.1µF
CYOIN
YE+MG
CY+G
CY2IN
0.1µF
YE2IN
0.1µF
CY+G
GAIN
BWB
typ.
V
REF
YE+G
typ.
V
REF
CY+MG
YE+G
GAIN
N
1.0µF
YE1IN
42
41
30kΩ
0.1µF
2.4V
±700mV
VAPTEST YEOUT CYOUT VAPOUT YEDIN
60
59
58
57
56
55
54
53
52
51
50
49
48
47
46
45
44
43
SP2
157ns
0.8V
SP1
157ns
0.8V
V
CC
4.6V
V
REF
1.8V
+
33µF
3.3kΩ
3.3kΩ
CDS
SIG
61
0.1µF
62
CAGC
CONT
S/H
LPF
(–3dB at 1MHz)
CLAMP
(CPOB)
BLK
(P.BLK)
R WB
+
–
GAIN
CONT
GAIN
CONT
40
39
38
YE1OUT
2.0V
typ.500mV
CY1OUT 2.0V
typ.500mV
+
GAIN
CONT
330kΩ
63
CAGC
CONT
64
C
65
0.1µF
YAGC
CONT
CLAMP
(CP2)
H1GH
CUT
YAGC
CAGC
S/H
CY1
GAIN
typ.500mV
+
33µF
22kΩ
3.3kΩ
typ.
3.3V
typ.500mV
1.5V
GAM IN
KNEE
typ. Opes
0.047 F
µ
2.5V
1.0V
CT2
CBLK
typ.
600mV
P–P
0.047 F
µ
GAM OUT 1.8V
V
REF
0.047µF
1
H
D
L
HIGH CLIP
typ. 2.8V
2.3kΩ
B–Y OUT
typ.
±500mV
2.2V
SUPPSET
typ. V
REF
80
Y
–
+
3.3kΩ
+
–
LPF
(–3dB at 1MHz)
CLAMP
(CPOB)
BLK
(P.BLK)
CY+G
GAIN
typ.
2.0V
typ.
300mV
CLAMP
(CPOB)
BLK
(P.BLK)
CT1 IN
1.8V
37
1.0
µF
N
V
CC
4.6V
36
35
DRIVE
34
IN
FH/2
1.0V
CPOB
P BLK
BG OUT
1.85V
typ.
±500mV
2.5V
1.0V
B WB
GAIN
CONT
+
–
66
330kΩ
HC
CONT
YAGC
CONT
CLAMP
(CPOB)
BLK
(P.BLK)
YE+G
GAIN
+
FH/2
CONT
PULSE
SEPA
67
0.1µF
YAGC
OUT
68
CLAMP
(CPOB)
BLK
(P BLK)
9dB
Amp.
Y
GAMMA
LPF
GAMMA
(–3dB at 1MHz)
–
+
FH/2
(
LOW
)
1IPF
CPOB PBLK
33
+
GAMMA
1IPF
Det.
B–Y
MAT
69
0.1µF
70
71
YDC
CONT
32
31
typ.
V
REF
RG OUT
R–Y
MAT
DC
CONT
(CP2)
DCCONT
(CP2)
OR
GAMMA
CONT
30
CLANP
(CP2)
HIGH
CUT
PED
BLK
(CBLK)
typ.
V
REF
1.85V
72
SSG
IN 73
74
BDC
CONT
1.8V
V
REF
PULSE
SEPA
CP3 CBLK
FADE
R–Y
Amp.
GAD
4
CONT
GAD
4
CONT
B–Y
Amp.
BLK
(CBLB)
LPF
(–3dB at 1MHz)
γ.HC
EDGE
typ.
±500mV
HICLIP
±890mV
CLAMP
(CPOB)
29
0.1µF
28
T.OUT
Y IN
1.0V
CLAMP
(CPOB)
BLK
(CBLK)
γ.HC
EDGE
CLAMP
(CPOB)
27
HCLIP
LCLIP
SYNC
PED
±300mV ±50mV
75
76
RDC
CONT
26
25
EDGE TEST
FADE
LPF
(–3dB at 1MHz)
PED SET
typ. V
REF
+
77
SUPP
CONT
78
79
SUPP
CONT
HIGH
CLIP
GAMMA
DL
(320ns)
FADE
BLK
(P BLK)
B/W
(P BLK)
DCCONT
(CP2)
2.7V
24
C GAM CONT
B–Y IN
0.1µF
R–Y IN
0.1µF
+
YDDL
(10ns)
DL
(90ns)
DL
(90ns)
23
22
21
0.1µF
HAP
3.3µF
GATE
LOWLUMI
SUPP
+
Det.
CLAMP
(CPOB)
FADE
CONT
BASE
CLIP
V
REF
1.8V
V
CC
4.6V
1
R–Y OUT
2.2V
2
3
4
5
N
2.2µF
6
7
8
9
10
FADE
OUT
B–Y
GAIN
typ.
V
REF
BLK IRIS
OUT IN
36kΩ
11
12
13
14
15
HAP HAP
VAP N
SYNC IN
IN
OUT
IN
2.2µF
30kΩ
V
REF
0.22µF
±400V
1.8V
±280V
1.8V
1.8V
16
17
DL IN
18
19
CHROMA
OUT
2.5V±1000mV
20
0.01µF
typ.
±500mV
typ.
±500mV
WBLK IN
1.0V
0V
1.0V IRIS OUT
typ. 500mV
1.0V typ. 500mV
1.8V±750mV
CHROMA
IN
B/W
FADE
typ.(Black)1
1.0V
FADE IN R–Y
typ. 3.3V GAIN
(Through) typ.
V
REF
typ.
1.3V
±500mV
1.5V
CHROMA
OUT
typ.
V
REF
1.0V
1kΩ
V
REF
LPF
1kΩ
Y