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ML6420 Ver la hoja de datos (PDF) - Micro Linear Corporation

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ML6420 Datasheet PDF : 20 Pages
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APPLICATION GUIDELINES
OUTPUT CONSIDERATIONS
The triple filters have unity or 2X gain. The output circuit
W has unity or 2X gain (0dB) when connected to a 150
W W load, and a –6dB gain when driving a 75 load via a 75
series output resistor. The output may be either AC or DC
coupled. For AC coupling (Figure 6), the –3dB point
£ W should be 5Hz or less. There must also be a DC path of
500 to ground for biasing.
The dual filters have 2X gain. The filter has 2X gain (6dB)
W when connected to a 150 load, and a 0dB gain when
W W driving a 75 load via a 75 series output resistor. The
output may be either AC or DC coupled. For AC coupling,
£ W the –3dB point should be 5Hz or less. There must also be a
DC path of 500 to ground for output biasing.
INPUT CONSIDERATIONS
W The input resistance is 4k . The input may be either DC or
AC coupled. (Note that each input sources 80 to 125µA of
bias current).
LAYOUT CONSIDERATIONS
In order to obtain full performance from these triple filters,
layout is very important. Good high frequency decoupling
is required between each power supply and ground.
Otherwise, oscillations and/or excessive crosstalk may
occur. A ground plane is recommended.
Each filter has its own supply and ground pins. In the test
circuit, 0.1µF capacitors are connected in parallel with
0.001µF capacitors on pins VCC, VCCA, VCCB and VCCC for
maximum noise rejection (Figure 6A and Figure 1G).
Further noise reduction is achieved by using series ferrite
beads. In typical applications, this degree of bypassing
ML6420
may not be necessary.
Since there are three filters in one 16-pin SOIC package,
space the signal leads away from each other as much
as possible.
POWER CONSIDERATIONS
The ML6420 power dissipation follows the formula:
1 6   PD = ICC × VCC
VOUT2 × 3
RL
This is a measure of the amount of current the part sinks
(current in — current out to the load).
Under worst case conditions:
0 5   PD =
0.175 × 5.5
1.52 × 3
75
= 872.5mW
Power consumption can be reduced by not suppling VCC
to unused filter sections. (VCCA, VCCB or VCCC)
TEST CIRCUITS
Figures 6A shows the test circuitn used for measuring the
frequency and group delay. It is expected that actual
customer circuits will be much simpler, since board
bypasses already exist and DC coupling or clamping will
be utilized at the inputs.
ML6420 VIDEO LOW PASS FILTER
Filter Selection: The ML6420 provides several choices in
filter cut-off frequencies depending on
the application.
7

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