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ML6424 参数 Datasheet PDF下载

ML6424图片预览
型号: ML6424
PDF下载: 下载PDF文件 查看货源
内容描述: CCIR601视频低通滤波器与可选的SiNx / X校正 [CCIR601 Video Lowpass Filter with Optional Sinx/x Correction]
分类和应用:
文件页数/大小: 12 页 / 153 K
品牌: MICRO-LINEAR [ MICRO LINEAR CORPORATION ]
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ML6424/ML6425
PIN DESCRIPTION
Pin #
Name
Description
Pin #
Name
Description
1,3,
5,11
2,10,
14
4
V
CC
GND
Positive supply voltages
(4.75V to 5.25V).
Ground voltages.
12
MODE
PULSE I/O U/V clamp switch control input/output
pin. When MODE is low, U/V clamp
control pulse can be applied to this
input pin. When MODE is high, the
internal circuit generates a U/V clamp
control signal to produce an output
pulse at this pin. When MODE is
floating, do not apply any voltage to
this pin since it is internally tied low in
this case. (See table below)
V
IN
P,
V
IN
M
Input to the filter. The input voltage for
the filter is applied to V
IN
P pin with
respect to V
IN
M pin which is
grounded. (With no connection to
MODE pin, input signal range should
be from V
IN
= 0.5V to 1.5V when
RANGE = Low, V
IN
= 0V to 1V when
RANGE = High). There is a 100µA
internal current source connected to
each of these inputs.
Input signal range control when
MODE is floating. When RANGE is
low, the input signal range is 0.5V to
1.5V, when RANGE is tied high the
input signal range is 0V to 1V.
Precision resistor to ground that
defines the cutoff frequency of the
filter. (Typical value = 10kΩ)
10% change in R
EXT
produces a 10%
change in f
C
(Fig. 28).
Input coupling mode control pin.
When MODE is low, U/V signal can
be applied through an external ac
coupling capacitor to V
IN
P. When
MODE is high, Y signal can be applied
through an external AC coupling
capacitor to V
IN
P. In this case, an
internal circuitry clamps the sinc tip of
the video input signal. When MODE is
set to mid supply or left floating, input
signal can be directly applied to the
input without an AC coupling capacitor.
Three state gain control pin. GAIN tied
low sets the input amplifier gain to 3/4
(0.75) and the output amplifier gain to
4/3 (1.333). When GAIN is tied high,
the input amplifier gain is 3/2 (1.5) and
the output amplifier gain is 4/3. When
GAIN is set to mid supply or left to
float, the input amplifier gain is 3/4
and the output gain is 8/3 (2.666).
(See table below)
The output from the filter is derived
from the V
OUT
P pin with respect to
the V
OUT
M pin which is grounded
typically. It can drive 1V
PP
/75Ω (0.5V
to 1.5V) or 2V
PP
/150Ω (0.5V to 2.5V).
If the ouput common-mode level
needs to be increased, it can be done
by raising the potential of V
OUT
M. In
this case, the output is measured from
V
OUT
P with respect to GND.
13
GAIN
6,7
15,16
V
OUT
P,
V
OUT
M
8
RANGE
9
R
EXT
MODE
Low
Float
High
INPUT COUPLING
AC for U/V
DC
AC for Y
PULSE
Input
Internally biased
Output
GAIN INPUT INPUT
SELECT
BUFFER
GAIN
Low
Float
1V
PP
1V
PP
0.75
0.75
OUTPUT
BUFFER
GAIN
1.333
2.666
OUTPUT OPTIMIZES
1V
PP
2V
PP
Differential
Phase
& Gain
Noise
Pulse Mode Table
High
1V
PP
1.50
1.333
2V
PP
Gain Table
3