NJRC NJM2516

NJM2516
47µ
µF AC-Coupling Capacitor
Wide Band 3ch Video Driver with LPF
■GENERAL DESCRIPTION
The NJM2516 is 3ch video amplifier with LPF for the high definition
signal.
The NJRC original Technology “ASC(Advanced SAG Correction)”
realizes 47µF AC-Coupling Capacitor which enables to downsize
mounting space.
No worrying about beat noise caused by charge-pump circuit, and
over-current caused by circuit short out than Capacitor-less video driver.
The NJM2516 is suitable for the Video system to the high definition
signal output.
■PACKAGE OUTLINE
NJM2516VC3
■FEATURES
● Operating Voltage
4.5 to 9.5V
● AC-Coupling Capacitor 47µF
● Input Signal
Y,Pb,Pr
● Internal 6dB Amplifier
● Internal 75Ω Driver
● Internal LPF *fc=13.5MHz/30MHz SW
● Internal Power Save Circuit
● Bipolar Technology
● Package Outline
SSOP20-C3
■BLOCK DIAGRAM
GND
13.5MHz
LPF
YIN
0.1µF
CLAMP
V+
6dB
75ΩDRV
30MHz
LPF
YSAG
ASC
PbIN
13.5MHz
LPF
1µF
30MHz
LPF
BIAS
75Ω
YOUT 47µF
+
6dB
75ΩDRV
SREFY
SSIGY
75Ω
PbOUT47µF
+
PbSAG
ASC
SREFPb
SSIGPb
PrIN
13.5MHz
LPF
1µF
30MHz
LPF
BIAS
6dB
75ΩDRV
PrSAG
ASC
LPFSW
Ver.0.4
75Ω
PrOUT 47µF
+
SREFPr
SSIGPr
PS
-1-
NJM2516
■ABSOLUTE MAXIMUM RATINGS(Ta=25°C)
PARAMETER
SYMBOL
+
Supply Voltage
V
Power Dissipation
PD
Operating Temperature Range
Topr
Storage Temperature Range
Tstg
RATINGS
10
1500(Note1)
-40 to +85
-40 to +150
UNIT
V
mW
°C
°C
(Note1) At on a board of EIA/JEDEC specification. (114.3 x 76.2 x 1.6mm, 4 layers, FR-4)
■RECCOMENDED OPERATING CONDITIONS(Ta=25°C)
PARAMETER
Operating voltage
SYMBOL
Vopr
TEST CONDITION
MIN.
TYP.
MAX.
UNIT
4.5
-
9.5
V
MIN.
TYP.
MAX.
UNIT
No signal
-
40
60
mA
-
0.8
1.4
mA
+
V
+
■ELECTRICAL CHRACTERISTCS (V =5V, RL=150Ω,Ta=25°C)
PARAMETER
Supply Current
SYMBOL
ICC
TEST CONDITION
Supply Current
at Power Save Mode
Isave
Power save mode, No signal
Maximum Output Level
Vom
Vin=100kHz,sin-signal,THD=1%
2.4
-
-
Vp-p
Gv
Vin=1MHz, 1.0Vp-p sin-signal
5.5
6.0
6.5
dB
∆GvI
Vin=1MHz, 1.0Vp-p sin-signal
-0.25
0
+0.25
dB
GfSD13.5M
Vin=13.5MHz/1MHz,1.0Vp-p sin-signal
-1.0
0
1.0
dB
GfSD54 M
Vin=54MHz/1MHz,1.0Vp-p sin-signal
-
-40.0
-24.0
dB
GfHD30M
Vin=30MHz/1MHz,1.0Vp-p sin-signal
GfHD74M
Vin=74MHz/1MHz,1.0Vp-p sin-signal
Voltage Gain
Difference of Voltage Gain
Between Input Terminals
LPF Characteristics 1
LPF Characteristics 2
Differential Gain
DG
Differential Phase
DP
S/N Ratio
SN
YIN=1.0Vp-p, PBIN,PRIN=0.7Vp-p,
10step video signal
YIN=1.0Vp-p, PBIN,PRIN=0.7Vp-p,
10step video signal
YIN=1.0Vp-p, PBIN,PRIN=0.7Vp-p,
white video signal,
BW=100kHz to 6MHz,RL=75Ω
-2.0
dB
-
-40.0
-24.0
dB
-
0.5
-
%
-
0.3
-
deg
-
80
-
dB
2.5
-
V
+
V
SW Voltage High Level
VthH
Active
SW Voltage Low Level
VthL
Non-Active
0
-
1.0
V
SW Sink Current High Level
IthH
V=5V
-
-
120
µA
SW Sink Current Low Level
IthL
V=0.3V
-
-
8.0
µA
Ver.0.4
-2-
NJM2516
■CONTROL CHRACTERISTC
PARAMETER
STATUS
Power Save
LPF
MODE
H
Power save: OFF
L
Power save: ON
Non-Active mode (Mute)
OPEN
Power save: ON
Non-Active mode (Mute)
H
30MHz LPF
L
13.5MHz LPF
OPEN
13.5MHz LPF
Active mode
■PIN CONFIGURATION
1
20
2
1. YIN
11. PROUT
19
2. PBIN
12. GND2
3
18
3. PRIN
13. PBOUT
4
17
4. SREFPB
14. LPFSW
5
16
5. PBSAG
15. YOUT
6. SSIGPB
16. V
6
15
7. GND1
17. PS
7
14
8. SREFPR
18. SSIGY
8
13
9. PRSAG
19. YSAG
10. SSIGPR
20. SREFY
9
12
10
11
Ver 0.4
+
-3-
NJM2516
■ TEST CIRCUIT
75Ω
YIN
2
PBIN
SREFY 20
YSAG 19
68kΩ
1µF
68kΩ
0.1µF
1µF
75Ω
3
PRIN
4
SREFPB
5
PBSAG
SSIGY 18
1µF
75Ω
1µF
1
0.1µF
68kΩ
PS 17
V+ 16
0.1µF
0.1µF
VCC
47µF
68kΩ
6
Ver 0.4
+
1µF
68kΩ
0.1µF
68kΩ
SSIGPR
YOUT 15
7
GND1
LPFSW 14
8
SREFPR
PBOUT 13
9
PRSAG
GND2 12
10
SSIGPR
PROUT 11
+
47µF
75Ω
75Ω
75Ω
75Ω
75Ω
75Ω
+
47µF
+
47µF
-4-
NJM2516
■ APPLICATION CIRCUIT
75Ω
YIN
2
PBIN
SREFY 20
YSAG 19
68kΩ
1µF
68kΩ
0.1µF
1µF
75Ω
3
PRIN
4
SREFPB
5
PBSAG
SSIGY 18
1µF
75Ω
1µF
1
0.1µF
68kΩ
PS 17
V+ 16
0.1µF
0.1µF
+
47µF
VCC
68kΩ
6
SSIGPR
YOUT 15
+
47µF
75Ω
+
7
GND1
LPFSW 14
8
SREFPR
PBOUT 13
47µF
75Ω
+
47µF
75Ω
+
1µF
68kΩ
0.1µF
68kΩ
47µF
9
PRSAG
GND2 12
10
SSIGPR
PROUT 11
75Ω
+
47µF
75Ω
+
47µF
75Ω
[CAUTION]
The specifications on this databook are only
given for information , without any guarantee
as regards either mistakes or omissions. The
application circuits in this databook are
described only to show representative usages
of the product and not intended for the
guarantee or permission of any right including
the industrial rights.
Ver 0.4
-5-