參數(shù)資料
型號: MAX9505
廠商: Maxim Integrated Products, Inc.
元件分類: 運動控制電子
英文描述: DirectDrive Video Amplifier with Reconstruction Filter and Analog Switch
中文描述: DirectDrive視頻放大器,帶有重建濾波器和模擬開關
文件頁數(shù): 9/16頁
文件大?。?/td> 407K
代理商: MAX9505
M
DirectDrive Video Amplifier with
Reconstruction Filter and Analog Switch
_______________________________________________________________________________________
9
Detailed Description
The MAX9505 completely eliminates the need for
capacitors in the video output by using Maxim’s
DirectDrive technology that includes an inverting
charge pump and linear regulator. The charge pump
and linear regulator create a clean negative supply
allowing the amplifier output to swing below ground.
The amplifier output can swing both positive and nega-
tive so that the video signal black level can be placed
at ground. The MAX9505 features a six-pole,
Butterworth filter to perform reconstruction filtering on
the video input signal from the DAC.
DirectDrive
Background
Integrated video filter/amplifier circuits operating from a
single, positive supply usually create video output sig-
nals that are level-shifted above ground to keep the
signal within the linear range of the output amplifier. For
applications in which the positive DC level shift of the
video signal is not acceptable, a series capacitor can
be inserted in the output connection in an attempt to
eliminate the positive DC level shift. The series capaci-
tor cannot truly level shift a video signal because the
average level of the video varies with picture content.
The series capacitor biases the video output signal
around ground, but the actual level of the video signal
can vary significantly depending upon the RC time con-
stant and the picture content.
The series capacitor creates a highpass filter. Since
the lowest frequency in video is the frame rate, which
can be between 24Hz and 30Hz, the pole of the high-
pass filter should ideally be an order of magnitude
lower in frequency than the frame rate. Therefore, the
series capacitor must be very large, typically from
220μF to 3000μF. For space-constrained equipment,
the series capacitor is unacceptable. Changing from a
single series capacitor to a SAG network that requires
two smaller capacitors can only reduce space and
cost slightly.
The series capacitor in the usual output connection
also prevents damage to the output amplifier if the con-
nector is shorted to a supply or to ground. While the
output connection of the MAX9505 does not have a
series capacitor, the MAX9505 will not be damaged if
the connector is shorted to a supply or to ground (see
the
Short-Circuit Protection
section).
Pin Description
PIN
QSOP
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
TQFN
15
16
1
2
3
4
5
6
7
8
9
10
11
12
13
14
EP
NAME
FUNCTION
V
SS
CPV
SS
C1N
CPGND
C1P
CPV
DD
BIAS
SGND
VIDIN
MODE0
MODE1
GND
V
DD
S
OUT
VIDOUT
S
IN
EP
Negative Power Supply. Connect to CPV
SS
.
Charge-Pump Negative Power Supply. Bypass with a 1μF capacitor to CPGND.
Charge-Pump Flying Capacitor Negative Terminal. Connect a 1μF capacitor from C1P to C1N.
Charge-Pump Power Ground
Charge-Pump Flying Capacitor Positive Terminal. Connect a 1μF capacitor from C1P to C1N.
Charge-Pump Positive Power Supply. Bypass with a 1μF capacitor to CPGND.
Common-Mode Voltage. Connect a 100k
resistor from BIAS to SGND.
Signal Ground. Connect to GND.
Video Input
Mode Logic Input 0. See Table 1.
Mode Logic Input 1. See Table 1.
Ground. Connect to SGND.
Positive Power Supply. Bypass with a 1μF capacitor to SGND.
Analog Switch Output
Video Output
Analog Switch Input
Exposed Paddle. Connect to GND.
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