ML6426-1 FAIRCHILD [Fairchild Semiconductor], ML6426-1 Datasheet - Page 3

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ML6426-1

Manufacturer Part Number
ML6426-1
Description
High Bandwidth Triple Video Filters with Buffered Outputs for RGB or YUV
Manufacturer
FAIRCHILD [Fairchild Semiconductor]
Datasheet
DATA SHEET
Absolute Maximum Ratings
Absolute maximum ratings are those values beyond which the device could be permanently damaged. Absolute maximum
ratings are stress ratings only and functional device operation is not implied.
Operating Conditions
Electrical Characteristics
Unless otherwise specified, V
REV. 3A August 2004
Parameter
V
Junction Temperature
ESD
Analog and Digital I/O
Storage Temperature Range
Lead Temperature (Soldering, 10 sec)
Thermal Resistance ( θ
Parameter
Temperature Range
V
Symbol
General
I
A
V
t
V
OS
C
dG
d φ
T
PSRR
I
V
V
T
CC
CLAMP
SC
HD
MUX
CC
CC
V
OUT
I
IH
IL
L
Range
Supply Current
Low Frequency Gain (R, G, B)
Output Level during Sync (R, G, B,)
Output Capability
Clamp Response Time
Input Signal Dynamic Range (R, G, B,) AC Coupled
Peak Overshoot (R, G, B,)
Output Load Capacitance (R, G, B,)
Output Load Drive Capability, per Pin
(YUV or RGB Outputs)
Differential Gain (R, G, B,)
Differential Phase (R, G, B,)
Output Distortion (R, G, B,)
PSRR (R, G, B,)
Output Short Circuit Current (R, G, B,)
Input Voltage Logic High
Input Voltage Logic Low
Input Mux
Data Valid
Time
JA
Parameter
)
CC
= 5V±10%, T
A
= Operating Temperature Range (Note 1)
No Load (V
V
DURING SYNC
RL = 150 Ω , AC-coupled@1MHz
Settled to Within 10mV,
C
2V
All Outputs
One Load is 150 Ω
All Outputs at f
All Outputs at f
V
0.5V
Note 2
DISABLE, SYNC IN
DISABLE, SYNC IN
A/B Mux
Pin Valid
High or Low
IN
OUT
IN
P-P
= 100mV
= 0.1µF
P-P
= 2V
Output Pulse
(100kHz) at V
Conditions
P-P
CC
GND – 0.3
P-P
Min.
Min.
–0.3
= 5.5V)
at 1 MHz
–65
4.5
C
C
0
/2
/2
at 100KHz
CC
V
CC
>2000
Max.
Max.
150
100
150
260
5.5
70
7
+ 0.3
5.34 6.0
Min Typ Max
0.7
2.5
2
120
0.9
1.4
4.3
0.4
0.4
0.8
52
35
10
2
2
6.65
1.2
1.0
80
35
°C/W
Unit
Unit
°C
°C
°C
°C
V
V
V
V
Units
loads
ML6426
V
V
mA
mA
ms
dB
dB
pF
µs
P-P
%
%
P-P
%
V
V
V
°
3

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